<?xml version="1.0" encoding="ISO-8859-1"?><article xmlns:mml="http://www.w3.org/1998/Math/MathML" xmlns:xlink="http://www.w3.org/1999/xlink" xmlns:xsi="http://www.w3.org/2001/XMLSchema-instance">
<front>
<journal-meta>
<journal-id>0120-5552</journal-id>
<journal-title><![CDATA[Revista Salud Uninorte]]></journal-title>
<abbrev-journal-title><![CDATA[Salud, Barranquilla]]></abbrev-journal-title>
<issn>0120-5552</issn>
<publisher>
<publisher-name><![CDATA[Fundación Universidad del Norte, División de Ciencias de la]]></publisher-name>
</publisher>
</journal-meta>
<article-meta>
<article-id>S0120-55522016000100010</article-id>
<article-id pub-id-type="doi">10.14482/sun.32.1.8598</article-id>
<title-group>
<article-title xml:lang="es"><![CDATA[Bacterias causantes de enfermedades transmitidas por alimentos: una mirada en Colombia]]></article-title>
<article-title xml:lang="en"><![CDATA[Bacteria causing of foodborne diseases: an overview at Colombia]]></article-title>
</title-group>
<contrib-group>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Soto Varela]]></surname>
<given-names><![CDATA[Zamira]]></given-names>
</name>
<xref ref-type="aff" rid="A01"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Pérez Lavalle]]></surname>
<given-names><![CDATA[Liliana]]></given-names>
</name>
<xref ref-type="aff" rid="A02"/>
</contrib>
<contrib contrib-type="author">
<name>
<surname><![CDATA[Estrada Alvarado]]></surname>
<given-names><![CDATA[Dalidier]]></given-names>
</name>
<xref ref-type="aff" rid="A03"/>
</contrib>
</contrib-group>
<aff id="A01">
<institution><![CDATA[,Universidad Simón Bolívar  ]]></institution>
<addr-line><![CDATA[ ]]></addr-line>
</aff>
<aff id="A02">
<institution><![CDATA[,Universidad Simón Bolívar  ]]></institution>
<addr-line><![CDATA[ ]]></addr-line>
</aff>
<aff id="A03">
<institution><![CDATA[,Universidad Simón Bolívar  ]]></institution>
<addr-line><![CDATA[ ]]></addr-line>
</aff>
<pub-date pub-type="pub">
<day>00</day>
<month>01</month>
<year>2016</year>
</pub-date>
<pub-date pub-type="epub">
<day>00</day>
<month>01</month>
<year>2016</year>
</pub-date>
<volume>32</volume>
<numero>1</numero>
<fpage>105</fpage>
<lpage>122</lpage>
<copyright-statement/>
<copyright-year/>
<self-uri xlink:href="http://www.scielo.org.co/scielo.php?script=sci_arttext&amp;pid=S0120-55522016000100010&amp;lng=en&amp;nrm=iso"></self-uri><self-uri xlink:href="http://www.scielo.org.co/scielo.php?script=sci_abstract&amp;pid=S0120-55522016000100010&amp;lng=en&amp;nrm=iso"></self-uri><self-uri xlink:href="http://www.scielo.org.co/scielo.php?script=sci_pdf&amp;pid=S0120-55522016000100010&amp;lng=en&amp;nrm=iso"></self-uri><abstract abstract-type="short" xml:lang="es"><p><![CDATA[Objetivo: Las enfermedades de transmisión alimentaria constituyen un grave problema de salud pública a nivel mundial; entre sus causas más frecuentes se encuentran los patógenos bacterianos, los cuales generan desde síntomas gastrointestinales hasta complicaciones que pueden conducir a la muerte. En esta revisión se describen estudios sobre detección de patógenos bacterianos en diferentes alimentos en Colombia publicados entre 2010 y 2013, y se presenta información acerca de las características y prevalencia de los microorganismos encontrados, alimentos implicados y caracterización de los aislados. La búsqueda en bases de datos arrojó un total de 16 artículos enfocados directamente a la detección de cinco patógenos: Salmonella spp., Listeria monocytogenes, Escherichia coli, Aeromonas spp. y Vibrio spp. La mayor parte de los estudios correspondió al género Salmonella. No se hallaron investigaciones relacionadas con otras bacterias causantes de enfermedades de transmisión alimentaria. Los productos analizados fueron principalmente de origen animal, desde alimentos crudos, como pescado y carnes, hasta alimentos listos para el consumo. Esta revisión evidencia que a pesar de la importancia a nivel de salud pública de detectar y caracterizar bacterias patógenas trasmitidas por alimentos existen muy pocos estudios publicados relacionados con esta temática en el periodo revisado. Asimismo, los trabajos se encaminaron primordialmente a la búsqueda del microorganismo en el producto final y no a lo largo de la cadena productiva.]]></p></abstract>
<abstract abstract-type="short" xml:lang="en"><p><![CDATA[Objetive: Food-borne diseases are a serious public health problem worldwide; with pathogenic bacteria as the most common cause, leading to gastrointestinal disorders which can eventually lead to death. In this review are described studies about the detection of food-borne pathogenic bacteria in Colombia publicized between the years 2010-2013, looks at information on the characteristics and prevalence factor of found pathogens, the foods implicated in the studies and the characterization of isolated microorganisms. The database search yielded a total of 16 articles focused directly to the detection of five pathogens: Salmonella spp., Listeria monocytogenes, Escherichia coli, Aeromonas spp. and Vibrio spp.; nevertheless, most of the studies focused on Salmonella. There were no research projects on any other food-borne diseasecausing pathogens. The products tested were mainly raw or ready-to-eat animal-based foods such as sea food and meat. This review reveals that despite the importance of detecting and characterizing pathogens transmitted by contaminated food, there are very few published studies on this topic for the given review period. Likewise, the research work was directed primarily to the search of microorganisms as a final product rather than contamination along the production line.]]></p></abstract>
<kwd-group>
<kwd lng="es"><![CDATA[enfermedades transmitidas por alimentos]]></kwd>
<kwd lng="es"><![CDATA[bacterias]]></kwd>
<kwd lng="es"><![CDATA[Colombia]]></kwd>
<kwd lng="en"><![CDATA[foodborne diseases]]></kwd>
<kwd lng="en"><![CDATA[bacteria]]></kwd>
<kwd lng="en"><![CDATA[Colombia]]></kwd>
</kwd-group>
</article-meta>
</front><body><![CDATA[  <font face="verdana" size="2">      <p align="right"><a href="http://dx.doi.org/10.14482/sun.32.1.8598" target="_blank">http://dx.doi.org/10.14482/sun.32.1.8598</a></p>   <font size="4">    <p align="center"><b>Bacterias causantes de enfermedades transmitidas por alimentos: una mirada en Colombia</b></p></font> <font size="3">    <p align="center"><b>Bacteria causing of foodborne diseases: an overview at Colombia</b></p></font>     <p><b>Zamira Soto Varela<sup><a name="nu1"></a><a href="#num1">1</a></sup></b></p>     <p><b>Liliana P&eacute;rez Lavalle<sup><a name="nu2"></a><a href="#num2">2</a></sup></b></p>     <p><b>Dalidier Estrada Alvarado<sup><a name="nu3"></a><a href="#num3">3</a></sup></b></p>     <p><sup><a name="num1"></a><a href="#nu1">1</a></sup>&nbsp;Docente investigador, Universidad Sim&oacute;n Bol&iacute;var. Barranquilla (Colombia). <a href="zsoto1@unisimonbolivar. edu.co" target="_blank">zsoto1@unisimonbolivar. edu.co</a></p>     <p><sup><a name="num2"></a><a href="#nu2">2</a></sup>&nbsp;Docente investigador, Universidad Sim&oacute;n Bol&iacute;var. Barranquilla (Colombia). <a href="lperez70@unisimonbolivar.edu.co" target="_blank">lperez70@unisimonbolivar.edu.co</a></p>     <p><sup><a name="num3"></a><a href="#nu3">3</a></sup>&nbsp;Estudiante Programa de Microbiolog&iacute;a, Universidad Sim&oacute;n Bol&iacute;var. Barranquilla (Colombia). <a href="zsoto1@unisimonbolivar.edu.co" target="_blank">zsoto1@unisimonbolivar.edu.co</a></p>     ]]></body>
<body><![CDATA[<p><b>Correspondencia: </b>Zamira Soto Varela. Universidad Sim&oacute;n Bol&iacute;var, Programa de Microbiolog&iacute;a, carrera 59 n&deg; 59-92. Barranquilla (Atl&aacute;ntico). Tel&eacute;fono: 344 4333, Fax: 3682892. <a href="mailto:zsoto1@unisimonbolivar.edu.co" target="_blank">zsoto1@unisimonbolivar.edu.co</a></p>      <p><b>Fecha de recepci&oacute;n:</b> 23 de abril de 2015     <br><b>Fecha de aceptaci&oacute;n: </b>25 de noviembre de 2015</p> <hr>        <p><b>Resumen</b></p>     <p><b><i>Objetivo: </i></b><i>Las enfermedades de transmisi&oacute;n alimentaria constituyen un grave problema de salud p&uacute;blica a nivel mundial; entre sus causas m&aacute;s frecuentes se encuentran los pat&oacute;genos bacterianos, los cuales generan desde s&iacute;ntomas gastrointestinales hasta complicaciones que pueden conducir a la muerte. En esta revisi&oacute;n se describen estudios sobre detecci&oacute;n de pat&oacute;genos bacterianos en diferentes alimentos en Colombia publicados entre 2010 y 2013, y se presenta informaci&oacute;n acerca de las caracter&iacute;sticas y prevalencia de los microorganismos encontrados, alimentos implicados y caracterizaci&oacute;n de los aislados. La b&uacute;squeda en bases de datos arroj&oacute; un total de 16 art&iacute;culos enfocados directamente a la detecci&oacute;n de cinco pat&oacute;genos: Salmonella spp., Listeria monocytogenes, Escherichia coli, Aeromonas spp. y Vibrio spp. La mayor parte de los estudios correspondi&oacute; al g&eacute;nero Salmonella. No se hallaron investigaciones relacionadas con otras bacterias causantes de enfermedades de transmisi&oacute;n alimentaria. Los productos analizados fueron principalmente de origen animal, desde alimentos crudos, como pescado y carnes, hasta alimentos listos para el consumo. Esta revisi&oacute;n evidencia que a pesar de la importancia a nivel de salud p&uacute;blica de detectar y caracterizar bacterias pat&oacute;genas trasmitidas por alimentos existen muy pocos estudios publicados relacionados con esta tem&aacute;tica en el periodo revisado. Asimismo, los trabajos se encaminaron primordialmente a la b&uacute;squeda del microorganismo en el producto final y no a lo largo de la cadena productiva.</i></p>     <p><b>Palabras clave: </b>enfermedades transmitidas por alimentos, bacterias, Colombia.</p>  <hr>     <p><b>Abstract</b></p>     <p><b><i>Objetive: </i></b><i>Food-borne diseases are a serious public health problem worldwide; with pathogenic bacteria as the most common cause, leading to gastrointestinal disorders which can eventually lead to death. In this review are described studies about the detection of food-borne pathogenic bacteria in Colombia publicized between the years 2010-2013, looks at information on the characteristics and prevalence factor of found pathogens, the foods implicated in the studies and the characterization of isolated microorganisms. The database search yielded a total of 16 articles focused directly to the detection of five pathogens: Salmonella spp., Listeria monocytogenes, Escherichia coli, Aeromonas spp. and Vibrio spp.; nevertheless, most of the studies focused on Salmonella. There were no research projects on any other food-borne diseasecausing pathogens. The products tested were mainly raw or ready-to-eat animal-based foods such as sea food and meat. This review reveals that despite the importance of detecting and characterizing pathogens transmitted by contaminated food, there are very few published studies on this topic for the given review period. Likewise, the research work was directed primarily to the search of microorganisms as a final product rather than contamination along the production line.</i></p>     <p><b>Keywords: </b>foodborne diseases, bacteria, Colombia.</p> <hr>     <p><b>INTRODUCCI&Oacute;N</b></p>     ]]></body>
<body><![CDATA[<p>La enfermedad trasmitida por alimentos (ETA) es el s&iacute;ndrome originado por la ingesti&oacute;n de alimentos y/o agua que contienen agentes etiol&oacute;gicos en cantidades tales que afectan la salud del consumidor (1). Estas enfermedades se caracterizan por una variedad de s&iacute;ntomas gastrointestinales, como n&aacute;useas, v&oacute;mito, diarrea, dolor abdominal y fiebre; en algunos casos se pueden presentar complicaciones severas, como sepsis, meningitis, abortos, s&iacute;ndrome de Reiter, s&iacute;ndrome de Guillan Barr&eacute; o la muerte (2, 3).</p>     <p>Ciertas complicaciones son producto de toxinas de origen bacteriano, como por ejemplo, la toxina producida por <i>Clostridium botullinum, </i>que puede llegar a generar fallas respiratorias (4), y la toxina shiga, producida por cepas de <i>Escherichia coli, </i>causante del s&iacute;ndrome hemol&iacute;tico ur&eacute;mico (5).</p>     <p>De acuerdo con la Organizaci&oacute;n Mundial de la Salud (OMS), las ETA constituyen uno de los problemas sanitarios m&aacute;s comunes que aquejan la salud de las personas en el mundo, y afectan con mayor severidad a ni&ntilde;os, mujeres embarazadas, ancianos y personas con otros padecimientos; sin embargo, estas enfermedades no solo afectan la salud, sino que tienen un impacto socioecon&oacute;mico negativo, debido a que ocasionan una disminuci&oacute;n en la productividad y el comercio e imponen una carga sustancial en los sistemas de salud al generar gastos en hospitalizaciones y medicamentos (6, 7).</p>     <p>En Estados Unidos, el Centro para el Control y Prevenci&oacute;n de enfermedades (CDC) report&oacute; en 2013 un total de 19 056 infecciones alimentarias, 4200 hospitalizaciones y 80 muertes (8). Por su parte, la Autoridad Europea de Seguridad Alimentaria (EFSA) y el Centro Europeo para el Control y Prevenci&oacute;n de Enfermedades (ECDC) reportaron para 2012 un total de 55 453 casos, 5118 hospitalizaciones y 41 muertes (9). En Colombia en el a&ntilde;o 2014 se notificaron al Sistema Nacional de Vigilancia en Salud P&uacute;blica (SIVIGILA) del Instituto Nacional de Salud, un total de 9.730 casos de Enfermedades transmitidas por alimentos o agua (10).</p>        <p>Entre las ETA m&aacute;s frecuentes est&aacute;n aquellas causadas por una contaminaci&oacute;n de tipo biol&oacute;gico, evidenciado por los reportes entre 1993-2010 realizados al sistema de informaci&oacute;n regional de la Organizaci&oacute;n Panamericana de la Salud (OPS); en los que se indica que de 9180 brotes reportados, el 69 % por bacterias, el 9,7 % por virus y el 1,8 % por par&aacute;sitos; el porcentaje restante correspondi&oacute; a otras causas de origen qu&iacute;mico (11).</p>     <p>Entre los pat&oacute;genos bacterianos m&aacute;s frecuentes en Estados Unidos en 2013 se encontraron, en su orden, <i>Salmonella, Campylobacter, Shigella, Escherichia coli, </i>productora de toxina shiga (STEC) O157, STEC O157, <i>Vibrio, Yersinia y histeria </i>(8).</p>     <p>En el caso de Europa, la mayor&iacute;a de los brotes de 2012 fueron causados por <i>Salmonella, </i>toxinas bacterianas, virus y <i>Campylobacter </i>(9).</p>     <p>En Colombia, los principales agentes etiol&oacute;gicos identificados en brotes de ETA en 2010 fueron <i>Staphylococcus coagulasa </i>positiva, <i>Escherichia coli </i>y <i>Salmonella </i>spp.; bacterias establecidas en la normativa nacional para los diferentes tipos de alimentos; no obstante, se demostr&oacute; la presencia de otras bacterias, como <i>Listeria monocytogenes </i>y <i>Shiguella </i>spp. (12); de all&iacute; la necesidad de investigar otros pat&oacute;genos en diferentes tipos de alimentos.</p>     <p>En este estudio se realiz&oacute; una b&uacute;squeda de art&iacute;culos publicados en las bases de datos y bibliotecas virtuales: EBSCO, OVID, PROQUEST, Biblioteca Virtual en Salud P&uacute;blica de Latinoam&eacute;rica (BVS), Biblioteca Virtual para la vigilancia en Salud P&uacute;blica de Colombia (BVS-VSP Col), Medline-Pubmed, Science Direct, Biblioteca Digital de Colombia (BDCOL), Scientific Electronic Library on Line-SciELO y Literatura Latinoamericana y del Caribe en Ciencias de la Salud (LILACS), utilizando como palabras de b&uacute;squeda cada uno de los nombres de los pat&oacute;genos bacterianos: <i>Aeromonas hydrofila, Bacillus cereus, Brucella mellitensis, Brucella abortus, Campylobacter, Clostridium botulinum, Clostridium perfringens, Coxiella burnetti, Enterobacter sakasaki, E. coli, Staphylococcus aureus, Listeria monocytogenes, Plesiomonas shigueloides, Salmonella, Shiguella, Streptococcus pyogenes, Vibrio, Mycobacterium bovis </i>y <i>Yersinia</i>; junto con las palabras alimento y Colombia dentro de los a&ntilde;os 2010-2013.</p>     <p>El objetivo de esta revisi&oacute;n fue mostrar las publicaciones sobre la detecci&oacute;n de pat&oacute;genos bacterianos en diferentes alimentos en Colombia; proporcionando informaci&oacute;n sobre sus caracter&iacute;sticas y datos de importancia en salud p&uacute;blica, lo cual es de relevancia para la evaluaci&oacute;n de riesgos microbiol&oacute;gicos.</p>     ]]></body>
<body><![CDATA[<p>En los resultados obtenidos se encontraron estudios enfocados a los siguientes pat&oacute;genos ver <a href="#t_01">Tabla 1</a>.</p>     <p><b><i>Salmonella spp.</i></b></p>     <p><i>Salmonella </i>spp. es un bacilo Gram negativo, no esporulado y m&oacute;vil; a excepci&oacute;n de los serotipos S. Gallinarum y S. Pullorum, que no poseen esta &uacute;ltima caracter&iacute;stica, pertenece a la familia <i>Entereobacteriaceae </i>tribu <i>Salmonellae </i>(13). En la actualidad se reconocen dos especies: <i>Salmonella ent&eacute;rica, </i>la cual incluye las subespecie I, II, IIIa, IIIb, IV, y VI, y <i>Salmonella bongori, </i>con la subespecie V (14); dentro de estas existen m&aacute;s de 2500 serotipos, los cuales se clasifican de acuerdo con el ant&iacute;geno flagelar H y el ant&iacute;geno som&aacute;tico O (15).</p>     <p>El g&eacute;nero <i>Salmonella </i>tiene gran impacto en salud p&uacute;blica; datos epidemiol&oacute;gicos indican que la gastroenteritis y la fiebre tifoidea son de distribuci&oacute;n mundial, y ocurren en pa&iacute;ses desarrollados y subdesarrollados (16, 17).</p>     <p>Las salmonellas no tifoideas (diferentes a <i>Salmonella </i>Typhi y <i>Salmonella </i>Paratyphi), principalmente los serotipos de <i>Salmonella ent&eacute;rica, </i>subespecie <i>ent&eacute;rica, </i>son las que se relacionan con gastroenteritis de origen alimentario (18, 19). Los alimentos en los que se ha detectado principalmente este pat&oacute;geno son la carne de pollo, carne de cerdo, carne de pavo, productos con carne cruda, huevos y jam&oacute;n de cerdo (20-22).</p>     <p>Los m&eacute;todos para la detecci&oacute;n de esta bacteria se fundamentan en el cultivo microbiol&oacute;gico, pero su aislamiento se dificulta por el bajo n&uacute;mero de c&eacute;lulas presentes en el alimento y la inhibici&oacute;n por otros microorganismos m&aacute;s competentes que puedan estar presentes; por ello, los m&eacute;todos moleculares como la Reacci&oacute;n en Cadena de la Polimerasa-PCR se est&aacute;n implementando por su bajo l&iacute;mite de detecci&oacute;n, alta sensibilidad y especificidad (23,24).</p>     <p>En la actualidad, una de las principales preocupaciones relacionadas con este pat&oacute;geno es el aumento de su resistencia a los antibi&oacute;ticos, debido a que cada vez son m&aacute;s frecuentes los aislamientos de origen animal y alimentario resistentes a antibi&oacute;ticos como el &aacute;cido nalid&iacute;xico, sulfafurazol y la penicilina (25, 26); raz&oacute;n por la cual diversos esfuerzos est&aacute;n enfoc&aacute;ndose en la prevenci&oacute;n, con el dise&ntilde;o de vacunas para animales (27) y la implementaci&oacute;n de tecnolog&iacute;as de control en la industria de alimentos (28).</p>     <p>En Colombia, los estudios realizados entre 2010 y 2013 que buscaron este pat&oacute;geno en alimentos se centraron en el an&aacute;lisis de muestras provenientes de diferentes establecimientos de ventas ambulantes y restaurantes. Dos de estos fueron realizados en Bogot&aacute;. El primero en un sector del norte de la ciudad, el cual incluy&oacute; 40 establecimientos de venta establecida y 20 de venta ambulatoria.</p>     <p>Los resultados obtenidos se&ntilde;alan que el 25 % de los alimentos ambulantes y el 7,5 % de los alimentos de venta establecida, como chorizo, fritos, ensaladas de frutas, yogur con cereal, arepa rellena y pincho de carne, fueron positivos para <i>Salmonella </i>spp.</p>     <p>En este estudio tambi&eacute;n se realiz&oacute; coprocultivo a los manipuladores de alimentos para la b&uacute;squeda de este microorganismo, y se obtuvo una prevalencia del 15 % en ambulantes y 10 % en restaurantes; y se resalta que este personal no present&oacute; manifestaciones gastrointestinales (29).</p>     ]]></body>
<body><![CDATA[<p>En el segundo trabajo, realizado en un sector universitario en 2010, se detectaron 2 muestras positivas para <i>Salmonella ent&eacute;rica </i>de 42 muestras analizadas (11.1 %): una muestra fue hamburguesa y otra chorizo. Asimismo, en el proceso se aislaron en 18 muestras otras enterobacterias, como <i>Citrobacter freundii, Edwardsiella tarda, Escherichia coli </i>y <i>Pantotea agglomerans.</i></p>     <p>En este trabajo tambi&eacute;n se realiz&oacute; la prueba de susceptibilidad antimicrobiana, y se encontr&oacute; que un aislamiento de <i>Salmonella ent&eacute;rica </i>fue sensible a la Ciprofloxacina y Ceftriaxona (30).</p>     <p>En otro sector universitario tambi&eacute;n se realiz&oacute; un an&aacute;lisis de muestras de alimentos como ensaladas crudas, jugos, salsas y agua procedentes de 4 expendios, con el objetivo de evaluar el riesgo de adquirir una ETA por la comunidad de este sector; sin embargo, en la b&uacute;squeda de <i>Salmonella </i>no se detect&oacute; su presencia en ninguna de las muestras analizadas, a diferencia de los coliformes totales y fecales que no estuvieron dentro de los valores permitidos; siendo dif&iacute;cil establecer el impacto de este hallazgo debido a que el estudio no especifica el n&uacute;mero de muestras y no incluye an&aacute;lisis microbiol&oacute;gicos a productos de origen animal que tambi&eacute;n son muy comercializados en el sector universitario y en donde es m&aacute;s probable encontrar este y otros pat&oacute;genos, como Staphylococcus aureus, el cual tampoco fue detectado (31).</p>     <p>En la ciudad de Leticia (Putumayo, Colombia) en 2011 se analizaron 92 alimentos preparados de origen animal y 32 alimentos crudos provenientes de diferentes establecimientos. En el primer caso solo se aisl&oacute; <i>Salmonella </i>spp. en una muestra (1,1%) y en el segundo caso en 11 muestras (34,4 %).</p>     <p>En este trabajo se logr&oacute; la serotipificaci&oacute;n de los aislamientos; 10 de estos, procedentes de carne de res cruda, fueron identificados como <i>Salmonella ent&eacute;rica </i>Sainpaul, un aislamiento en carne de cerdo cruda como <i>Salmonella ent&eacute;rica </i>Sendai y otro en carne cocida de res como <i>Salmonella enterica </i>Livingtone (32).</p>     <p>En el mismo a&ntilde;o, en Popay&aacute;n (Cauca, Colombia) un estudio caracteriz&oacute; aislamientos de <i>Salmonella </i>Enteritidis asociados a un brote; y por an&aacute;lisis fenot&iacute;pico y genot&iacute;pico por electroforesis en campo pulsado se confirm&oacute; la asociaci&oacute;n entre los aislamientos de los pacientes con un emparedado de pollo como la fuente de infecci&oacute;n; se observ&oacute; resistencia de los aislamientos al &aacute;cido nalid&iacute;xico (33).</p>     <p>Se resalta en estos dos trabajos la caracterizaci&oacute;n de los aislamientos debido a que muchos estudios solo llegan hasta la identificaci&oacute;n de g&eacute;nero, lo cual no permite conocer la circulaci&oacute;n de serotipos y asociarlos con un brote determinado.</p>     <p>Otro de los productos alimenticios asociados a contaminaci&oacute;n con <i>Salmonella </i>spp. es el huevo; sin embargo, en un estudio realizado en Medell&iacute;n (Colombia) y su &aacute;rea metropolitana no se logr&oacute; aislar <i>Salmonella </i>en 228 huevos, pero se aislaron otros g&eacute;neros bacterianos, como <i>Bacillus </i>sp., <i>Pseudomonas </i>sp., <i>Enterobacter </i>sp., <i>Serratia sp., Citrobacter </i>sp., <i>E. coli, Streptococcus viridans, Klebsiella </i>sp., <i>Staphylococcus sp., Aeromonas sp., Sarcinas sp., Acinetobacter sp., E. hermanii, Proteus y Stenotrophomonas maltophilia </i>(34).</p>     <p><b><i>Escherichia coli</i></b></p>     <p><i>Escherichia coli </i>es un bacilo Gram negativo, anaerobio facultativo, usualmente m&oacute;vil por flagelos peritricos, cuyo h&aacute;bitat es el intestino de animales de sangre caliente (35, 36). Esta bacteria es utilizada como indicador de posible contaminaci&oacute;n fecal y presencia de pat&oacute;genos en agua y alimentos debido a que se encuentra abundantemente en heces de humanos y animales (37).</p>     ]]></body>
<body><![CDATA[<p>Aunque <i>Escherichia coli </i>puede ser un residente inocuo del tracto gastrointestinal, varios estudios han documentado que ciertas cepas de <i>E. coli </i>producen diarrea y otras enfermedades extraintestinales en humanos (38-42). Estas cepas de <i>E. coli </i>patog&eacute;nicas constituyen un grupo heterog&eacute;neo de organismos con diferentes propiedades de virulencia, serotipos O:H, epidemiolog&iacute;a y enfermedades asociadas. Con base en sus factores de virulencia espec&iacute;ficos y rasgos fenot&iacute;picos se han subdividido en seis grupos pat&oacute;genos: <i>E. coli </i>enteropatog&eacute;nica (EPEC), <i>E. coli </i>ente-roagregante (EAEC), <i>E. coli </i>enterotoxig&eacute;nica (ETEC), <i>E. coli </i>de adhesi&oacute;n difusa (DAEC), <i>E. coli </i>enteroinvasora (EIEC) y <i>E. coli </i>enterohe-morr&aacute;gica (EHEC) (43, 44).</p>     <p>Estos grupos han sido detectados en diferentes productos, como c&aacute;rnicos, l&aacute;cteos, pescados, mariscos, bebidas, hielo y leguminosas (44-50).</p>     <p><i>E. coli </i>O157:H7 es reconocido como uno de los serotipos m&aacute;s representativos de <i>E. coli </i>ente-rohemorr&aacute;gica (EHEC). Esta bacteria es capaz de producir dos tipos de toxina shiga, Stx1 y Stx2, que ocasionan diarrea, colitis hemorr&aacute;gica y s&iacute;ndrome ur&eacute;mico hemol&iacute;tico (51-53).</p>     <p>Desde que <i>E. coli </i>O157:H7 fue reportada por primera vez en Estados Unidos en 1982 como agente causal de un brote que afect&oacute; al menos a 47 personas en Oregon y Michigan por el consumo de carne de hamburguesa poco cocida, ha sido ampliamente asociada a varios casos y muertes alrededor del mundo (54-57).</p>     <p>Esta bacteria se encuentra regularmente en las heces del ganado sano y es transmitida al hombre principalmente por la ingesti&oacute;n de productos bovinos; aunque se ha relacionado tambi&eacute;n con la leche no pasteurizada, bebidas contaminadas, verduras frescas y a trav&eacute;s del contacto persona a persona (58, 59).</p>     <p>En 2013 se public&oacute; un estudio en el cual se determin&oacute; <i>E. coli </i>y se identific&oacute; el serotipo O157:H7 en carne de cerdo comercializada en diferentes supermercados de la ciudad de Cartagena de Indias, durante agosto y septiembre de 2008. De 60 muestras analizadas se obtuvo 36 con <i>E. coli </i>en niveles no aceptables seg&uacute;n las exigencias del Instituto Nacional de Vigilancia de Medicamentos y Alimentos (INVIMA) para productos c&aacute;rnicos, y se identific&aacute;ndose el serotipo O157:H7 en 17 muestras; sin embargo, esta caracterizaci&oacute;n debe considerarse como presuntiva de acuerdo al m&eacute;todo utilizado, debido a que en el estudio no se demuestra su confirmaci&oacute;n por otros m&eacute;todos como los moleculares, que adem&aacute;s pueden permitir la identificaci&oacute;n de genes productores de toxinas (60).</p>     <p>En otro estudio divulgado en 2010 se llev&oacute; a cabo una caracterizaci&oacute;n molecular para la identificaci&oacute;n de patotipos de <i>E. coli </i>en 76 muestras de alimentos, conformadas por 38 muestras de carne obtenidas de dos supermercados y 38 muestras de vegetales recolectadas a partir de ocho mercados minoristas de la ciudad de Bogot&aacute;.</p>     <p>Se encontr&oacute; 16 muestras de carne positivas para <i>E. coli, </i>una de estas correspondiente al patotipo productor de toxina shiga (STEC). En el caso de los vegetales 12 muestras presentaron <i>E. coli, </i>una de estas positiva para <i>E. coli </i>productora de toxina shiga (STEC) y otra para <i>E. coli </i>enteroagregante (61).</p>     <p>En relaci&oacute;n a estudios limitados solo a la detecci&oacute;n de <i>E. coli </i>como indicador de contaminaci&oacute;n fecal, sin tener en cuenta el car&aacute;cter patog&eacute;nico de las cepas; en el municipio de Pamplona (Norte de Santander, Colombia) se analizaron 51 muestras de pescado fresco, de las cuales el 8 % present&oacute; un nivel inaceptable de <i>E. coli </i>seg&uacute;n las recomendaciones establecidas por la Comisi&oacute;n Internacional de Especificaciones Microbiol&oacute;gicas (ICMSF) (62).</p>     <p>En 2011 se detect&oacute; la presencia de <i>E. coli </i>en 19 muestras, de un total de 912 procedentes de 228 huevos de graneros de Medell&iacute;n y el &aacute;rea metropolitana del Valle de Aburr&aacute; (34).</p>     ]]></body>
<body><![CDATA[<p>En otra investigaci&oacute;n no se detect&oacute; <i>E. coli </i>en ensaladas y salsas procedentes de cuatro cafeter&iacute;as de una comunidad universitaria en Colombia; sin embargo, no se relaciona esta ausencia con otros factores intr&iacute;nsecos como el pH (31).</p>     <p><b><i>Histeria monocytogenes</i></b></p>     <p>El g&eacute;nero Listeria se compone de diecisiete especies, que incluye a <i>Listeria monocytogenes, Listeria ivanovii, Listeria seeligeri, Listeria riparia, histeria grandensis, histeria floridensis, Listeria cornellensis, Listeria aquatica, Listeria innocua, histeria welshimeri, histeria grayi, Listeria marthii, Listeria rocourtiae, Listeria murrayi, Listeria denitrificans, histeria fleischmannii </i>y <i>Listeria weihenstephanensis. </i>Dentro de estas, <i>Listeria monocytogenes </i>se considera pat&oacute;gena tanto para humanos y animales (63).</p>     <p><i>Listeria monocytogenes </i>es un bacilo Gram positivo, pat&oacute;geno facultativo intracelular y no formador de esporas. Puede sobrevivir o crecer a valores de pH tan bajos como 4.4 y a concentraciones de sal hasta del 14 %. Esta bacteria es psicrotr&oacute;fica y crece a temperaturas entre 1 y 45 &deg;C; los alimentos refrigerados son un ambiente ideal para este pat&oacute;geno (64-66).</p>     <p>Este microorganismo est&aacute; ampliamente distribuido en el medio ambiente y puede colonizar las plantas de procesamiento de alimentos, persistiendo durante varios meses y a&ntilde;os (66-71).</p>     <p>La formaci&oacute;n de biopel&iacute;culas protege a esta bacteria contra la desinfecci&oacute;n y favorece su supervivencia en las superficies que est&aacute;n en contacto con los alimentos; lo cual aumenta la contaminaci&oacute;n cruzada de estos y los convierte en un veh&iacute;culo para llegar al hombre y causar la enfermedad (72, 73).</p>     <p><i>Listeria monocytogenes </i>es el agente causal de la listeriosis, la cual se manifiesta de forma invasiva o no invasiva. La forma invasiva puede provocar mortinatos, abortos, partos prematuros, y en los reci&eacute;n nacidos e inmunodeprimidos puede conducir a septicemia, meningitis y encefalitis. En la forma no invasiva se producen s&iacute;ntomas como fiebre, dolor de cabeza y diarrea.</p>     <p>La mortalidad por listeriosis es del 20 al 30 % en grupos vulnerables (74-76).</p>     <p>La infecci&oacute;n en humanos se produce principalmente por el consumo de alimentos contaminados, como leche, quesos, verduras frescas, mariscos, productos c&aacute;rnicos y alimentos listos para el consumo, los cuales son considerados como importantes fuentes (77-82).</p>     <p>En Colombia, en 2012 se mostraron prevalencias de <i>L. monocytogenes </i>de 3.7 y 33.9 % en carne en canal y cortes de carne, respectivamente, procedentes de 23 plantas de procesamiento de cerdo. Asimismo, se report&oacute; una prevalencia de 4.0 % para chorizo, 6.13 % para jam&oacute;n y 7.69 % en salchicha (83).</p>     ]]></body>
<body><![CDATA[<p>En otro tipo de alimentos, como el pescado fresco, tambi&eacute;n se ha aislado este microorganismo, as&iacute; como otras especies de <i>Listeria. </i>Esto se evidenci&oacute; en un estudio realizado en la plaza de mercado de la ciudad de Pamplona, donde se encontraron prevalencias de <i>L. monocytogenes </i>de 3.9 %, <i>L. innocua </i>de 17.6 % y <i>L. grayi </i>de 13.7 % en este tipo de productos, con una incidencia total del 35.3 % (62).</p>     <p>En estos trabajos solo se lleg&oacute; hasta la identificaci&oacute;n de especie; no realiz&aacute;ndose serotipificaci&oacute;n. Por otra parte, no se llev&oacute; a cabo la b&uacute;squeda de esta bacteria en ambientes de procesamiento, donde se recomienda la toma de muestra para determinar una posible fuente de contaminaci&oacute;n.</p>       <p>Se han identificado trece serotipos de <i>Listeria monocytogenes; </i>entre ellos, los serotipos 1/2a, 1/2b y 4b son los involucrados en la mayor parte de los casos de listeriosis humana, y el serotipo 4b es el m&aacute;s virulento. Los serotipos 1/2a, 1/2b, 1/2c se a&iacute;slan con m&aacute;s frecuencia en alimentos y en ambientes de f&aacute;bricas (66, 84-89).</p>     <p>En Colombia se determin&oacute; la frecuencia de serotipos de <i>L. monocytogenes </i>aislados de alimentos durante 2000-2009. De 1424 aislamientos confirmados como <i>L. monocytogenes, </i>la mayor&iacute;a pertenec&iacute;a al serotipo 4b, con 820 aislamientos; seguido por los serotipos 4d- 4e, 1/2b y 1/2a, con 140, 154, y 135 aislamientos, respectivamente; los restantes correspondieron a otros serotipos.</p>     <p>Los aislamientos procedieron principalmente de Bogot&aacute;, 1035 (73 %), de Antioquia, 199 (14 %), de Nari&ntilde;o, 109 (8 %), del Valle del Cauca, 50 (3.5 %) y de otros departamentos, 33 (2.3 %).</p>     <p>Los grupos de alimentos con mayor frecuencia de esta bacteria fueron los quesos frescos, los c&aacute;rnicos cocidos y las leches (90).</p>     <p>En otra investigaci&oacute;n realizada entre 2002 y 2008 se identific&oacute; la presencia de este pat&oacute;geno en alimentos listos para el consumo procedentes de plazas de mercado y &quot;delicatessen&quot; de supermercados de cadena en Bogot&aacute;. De 600 muestras analizadas, 68 fueron positivas para <i>L. monocytogenes </i>(11.3 %); 26 (38.25 %) correspond&iacute;an a &quot;delicatesen&quot; y42 (61.76 %) a plazas de mercado. El serotipo aislado con mayor frecuencia fue 4b en 53 (78 %) aislamientos, y entre los alimentos m&aacute;s contaminados estuvieron los quesos frescos y madurados (91).</p>     <p>En 2012 se serotipificaron molecularmente 108 cepas de <i>L. monocytogenes </i>aisladas de diferentes fuentes; de estas, 60.2 % (65 cepas) pertenec&iacute;an al serotipo 4b-4d-4e, 17.6 % (19 cepas) al 1/ 2a-3a, 14.81 % (16 cepas) al serotipo 4a-4c, 3.7 % (4 cepas) al 1/2c-3c y 1/2b-3b-7. Del serotipo 4b-4d-4e, el 47,7 % (31 cepas) procedieron de muestras de leche, queso, carne y vegetales; el 27,7 % (18 cepas) a ambientes de procesamiento de alimentos y equipos como cortadoras y selladoras; 18,5 % (12 cepas) a muestras cl&iacute;nicas, espec&iacute;ficamente l&iacute;quido cefalorraqu&iacute;deo y cultivos de sangre, y el 6,2 % restante (4 cepas) correspondi&oacute; a muestras veterinarias (92).</p>     <p><b><i>Vibrio spp.</i></b></p>     <p>El g&eacute;nero <i>Vibrio </i>comprende a bacterias Gram negativas, incluidas en el grupo gamma de las proteobacterias, con morfolog&iacute;a celular de bacilos cortos, que a menudo son curvados o en forma de coma (93, 94).</p>     ]]></body>
<body><![CDATA[<p>Las especies de <i>Vibrio </i>est&aacute;n presentes en ambientes acu&aacute;ticos, principalmente marinos y estuarinos, gracias a su capacidad para adaptarse a los factores f&iacute;sicos y qu&iacute;micos presentes en este tipo de ecosistemas.</p>     <p>En varios estudios se ha encontrado correlaci&oacute;n entre la abundancia de varias especies pat&oacute;genas con diversas condiciones, como salinidad, temperatura, conductividad el&eacute;ctrica y s&oacute;lidos disueltos (95, 96).</p>     <p>Otros trabajos evidencian un incremento en la tolerancia de <i>Vibrio cholerae </i>a temperatura, pH y desecaci&oacute;n asociado a la colonizaci&oacute;n de caparazones de camarones; lo cual puede tener implicaciones en la seguridad alimentaria y epidemiolog&iacute;a de esta especie (97).</p>     <p>Existen m&aacute;s de 100 especies de <i>Vibrio; </i>solo tres especies: <i>Vibrio cholerae, Vibrio parahaemolyticus </i>y <i>Vibrio vulnificus, </i>se encuentran principalmente asociadas a casos de gastroenteritis; la especie m&aacute;s frecuente es el <i>Vibrio parahaemolyticus </i>(98-103).</p>     <p>Los serogrupos O1 y O139 de <i>Vibrio cholerae </i>causan epidemias de c&oacute;lera, mientras que los serogrupos restantes pueden causar diarrea espor&aacute;dica (104).</p>     <p><i>Vibrio vulnificus </i>puede ocasionar fascitis necrotizante y sepsis por el consumo de mariscos crudos o pocos cocidos, con una tasa de mortalidad mayor del 50 % (105, 106).</p>     <p>Los alimentos en los que se a&iacute;slan m&aacute;s frecuentemente estas especies de <i>Vibrio </i>son los productos de origen marino, como pescado, ostras, mejillones, camarones y almejas (107109).</p>     <p>A nivel nacional, en el periodo 2010 - 2013 se encontr&oacute; un solo estudio en el que se aislaron e identificaron especies de <i>Vibrio </i>en 67 ostras obtenidas en 5 puntos de la Ci&eacute;naga de la Virgen en la ciudad de Cartagena de Indias en 2006. Los resultados mostraron positividad para <i>Vibrio </i>spp. en 30 muestras (45 %). Las especies predominantes fueron <i>V. alginolyticus </i>(23 %), <i>V. fluvialis </i>(20 %), V <i>parahaemolyticus </i>(10 %), <i>V. carchariae </i>y <i>V. mimicus </i>(13 %), <i>V. vulnificus, V. cincimatiensis </i>y <i>V. campbelli </i>(7 %).</p>     <p>No se evidenci&oacute; la presencia de <i>V. cholerae </i>en las muestras analizadas, argumentado por la falta de serotipos hal&oacute;filos; no obstante, la metodolog&iacute;a no describe que fue medido el par&aacute;metro de salinidad en los puntos de muestreo (110).</p>     <p><b><i>Aeromonas </i>spp.</b></p>     ]]></body>
<body><![CDATA[<p>El g&eacute;nero <i>Aeromonas </i>es muy ubicuo; est&aacute; conformado por bacilos Gram negativos anaerobios facultativos y no esporulados distribuidos en diversos ambientes, sobre todo acu&aacute;ticos (111). En la actualidad, este g&eacute;nero se encuentra clasificado en la familia <i>Aeromonadaceae, </i>a pesar de que por varios a&ntilde;os estuvo incluido en la familia <i>Vibrionaceae, </i>pero por an&aacute;lisis de secuencias del gen 16S rRNA lo ubican en una l&iacute;nea diferente dentro de las Gammaproteobacteria; donde fenot&iacute;picamente se han propuesto 13 especies pero genot&iacute;picamente se consideran 19 (112).</p>     <p>Las bacterias de este g&eacute;nero tambi&eacute;n han sido clasificadas en dos grandes grupos de acuerdo con sus caracter&iacute;sticas de crecimiento: el primero de ellos es el grupo mes&oacute;filo, que crece entre 35 - 37&deg;C, son m&oacute;viles y est&aacute;n asociados con enfermedad en seres humanos, como <i>A. hidr&oacute;fila, A. caviae, A. sobria </i>y <i>A. veronii, </i>(113); el segundo grupo corresponde a los psicr&oacute;filos, con crecimiento &oacute;ptimo entre 22-25 &deg;C, no m&oacute;viles y asociados a enfermedad en peces, como la especie <i>A. salmonicida </i>(114).</p>     <p>A nivel de salud, estudios indican que <i>Aeromonas </i>es causa potencial de gastroenteritis en seres humanos; aislamientos con genes de virulencia, principalmente relacionados con la producci&oacute;n de enterotoxinas, se han encontrado en pacientes con diarrea (115). Adem&aacute;s de la gastroenteristis se pueden presentar otras manifestaciones cl&iacute;nicas, como infecci&oacute;n de heridas, septicemia, abcesos en el h&iacute;gado e infecci&oacute;n respiratoria (116).</p>     <p>Las principales fuentes de contaminaci&oacute;n con este microorganismo son el agua, los vegetales, comida de mar y comida de origen animal (117).</p>     <p>En Colombia se realiz&oacute; un estudio en el que se aisl&oacute; e identific&oacute; <i>Aeromonas </i>spp. en diferentes especies de peces comercializados en la ciudad de Pamplona. De un total de 51 muestras de diferentes pescados, como trucha, rampuche, dorada, bagre, bocachico, sierra y mojarra, 39 presentaron crecimiento de <i>Aeromonas </i>spp. (76,47 %). En cuanto a las especies identificadas, se encontr&oacute; principalmente <i>A. hydrophila </i>(29,7 %) y <i>A. veronii </i>sobria (19,1 %), seguidas de <i>A. jandaei </i>y <i>A. veronii veronii </i>(17 %), <i>A. popoffii </i>(6,4%), <i>A. caviae/A. media </i>(4,3 %), <i>A. eucrenophila</i> (4,3 %) y <i>A. schubertii </i>(2,1 %) (118).</p>     <p>En un estudio posterior, a un total de 47 de estas cepas se le determin&oacute; la presencia de factores de virulencia fenot&iacute;picos, y se estableci&oacute; una frecuencia de 87 % en la producci&oacute;n de nucleasas, 83 % con actividad phemol&iacute;tica sobre eritrocitos humanos, 68 % con producci&oacute;n de lipasas, el 63 % fueron proteol&iacute;ticas y el 53 % resultaron hemol&iacute;ticas sobre eritrocitos de cordero. Estos datos indican el posible potencial pat&oacute;geno de las cepas (119).</p>       <p align="center"><a name="t_01"></a><img src="img/revistas/sun/v32n1/v32n1a10f01.jpg"></p>       <p><b>Conclusiones</b></p>     <p>Las enfermedades de transmisi&oacute;n alimentaria constituyen un grave problema de salud p&uacute;blica a nivel mundial; por ello, las autoridades de salud de diferentes pa&iacute;ses han implementado una serie de acciones con objeto de disminuir la incidencia de estas enfermedades. Adicionalmente, esta problem&aacute;tica ha despertado el inter&eacute;s de varios investigadores, que han llevado a cabo diversos estudios con el fin de buscar pat&oacute;genos bacterianos causantes de ETA, determinar los alimentos asociados, las prevalencias de estos microorganismos, especies y serotipos predominantes; lo cual es de utilidad para la evaluaci&oacute;n de riesgos microbiol&oacute;gicos en alimentos.</p>     <p>En esta revisi&oacute;n se encontraron con los par&aacute;metros de b&uacute;squeda mencionados 16 art&iacute;culos entre los a&ntilde;o 2010 a 2013 enfocados directamente a la detecci&oacute;n de cinco pat&oacute;genos: <i>Salmonella </i>spp., <i>Listeria monocytogenes, Escherichia coli, Aeromonas </i>spp. y <i>Vibrio </i>spp. cabe resaltar que en algunos estudios se encontraron otros microorganismos indicadores y pat&oacute;genos como <i>Staphylococcus aureus; </i>sin embargo, no fue el objeto principal del trabajo.</p>     ]]></body>
<body><![CDATA[<p>La mayor parte de los estudios correspondieron al g&eacute;nero <i>Salmonella; </i>considerada una bacteria de investigaci&oacute;n obligatoria para una gran variedad de productos alimenticios seg&uacute;n la legislaci&oacute;n colombiana. La mitad de los estudios sobre este microorganismo tuvo como factor com&uacute;n el hallazgo de la especie ent&eacute;rica, mientras que los restantes se limitaron a la b&uacute;squeda hasta a nivel de g&eacute;nero, dejando a un lado la indagaci&oacute;n de especies y serotipos circulantes.</p>     <p>En relaci&oacute;n con <i>Listeria monocytogenes, </i>a pesar de no ser un pat&oacute;geno exigido en Colombia, fue objeto de varias investigaciones, en las cuales el queso fue el alimento con mayor frecuencia de este microorganismo entre una variedad de productos. Este dato es relevante para individuos susceptibles, como mujeres embarazadas, las cuales deben tener en cuenta una serie de medidas y precauciones en el consumo de alimentos crudos o poco cocidos de origen animal como los quesos frescos.</p>     <p>Para el caso de <i>E. coli, </i>los estudios se enfocaron principalmente en su aislamiento en productos c&aacute;rnicos y vegetales, no solo como indicador fecal sino determin&aacute;ndose diferentes patotipos, como <i>E. coli </i>productora de toxina shiga y <i>E. coli </i>enteroagregante; lo cual es importante a nivel epidemiol&oacute;gico para el conocimiento de las cepas circulantes y la definici&oacute;n de la gravedad de los casos.</p>     <p>Otros estudios sobre bacterias de ambientes acu&aacute;ticos, como <i>Vibrio </i>spp. y <i>Aeromonas </i>spp., en pescados y mariscos, determinaron la frecuencia de algunas especies y factores de virulencia. Para el caso de <i>Vibrio </i>se resalta que no se encontr&oacute; la especie <i>cholerae, </i>sino otras como <i>V. parahaemolyticus y V. vulnificus, </i>que a nivel mundial se han visto involucrados en casos de gastroenteritis y otras patolog&iacute;as.</p>     <p>Finalmente, en esta revisi&oacute;n la mayor&iacute;a de los trabajos encontrados se enfoc&oacute; en determinar el microorganismo en productos elaborados y no a lo largo de la cadena de producci&oacute;n, lo cual es imprescindible en la evaluaci&oacute;n de riesgos en alimentos. Adicionalmente, no se hallaron estudios de otros pat&oacute;genos, como <i>Campylobacter y Shigella, </i>lo cual evidencia un vac&iacute;o investigativo en esta &aacute;rea.</p>     <p><b>Conflicto de intereses: </b>ninguno.</p>      <p><b>Financiaci&oacute;n: </b>Universidad Sim&oacute;n Bol&iacute;var.</p>  <hr>      <p><b>Referencias</b></p>     <!-- ref --><p>1.&nbsp;Instituto Nacional de Salud y Ministerio de la Protecci&oacute;n de Colombia. <i>Protocolo de vigilancia en Salud Publica. Enfermedades trasmitidas por alimentos. </i>Bogot&aacute;, D. C.: Grupo Enfermedades Transmisibles, Equipo ETA; 2014. Protocolo n&deg; PRO-R02.001.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700133&pid=S0120-5552201600010001000001&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>     ]]></body>
<body><![CDATA[<!-- ref --><p>2.&nbsp;Linscott AJ. Food-Borne illnesses. <i>Clinical microbiology newsletter </i>2011; 33(6): 41- 45.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700135&pid=S0120-5552201600010001000002&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>     <!-- ref --><p>3.&nbsp;Steniner T. Treating foodborne illness. <i>Infect Dis Clin North Am </i>2013; 27(3): 555 -76.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700137&pid=S0120-5552201600010001000003&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>     <!-- ref --><p>4.&nbsp;Witoonpanich R, Vichayanrat E, Tantisiriwit K, Wongtanate M, Sucharitchan N, Oranrigsupak P et al. Survival analysis for respiratory failure in patients with food-borne botulism. <i>Clin Toxicol </i>2010; 48(3): 177-183.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700139&pid=S0120-5552201600010001000004&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>     <!-- ref --><p>5.&nbsp;Mayer C, Leibowitz CL, Kurosawa S, Stearns-Kurosawa D. Shiga Toxins and the Pathophysiology of Hemolytic Uremic Syndrome in Humans and Animals. <i>Toxins </i>(Basel) 2012; 4(11): 1261-1287.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700141&pid=S0120-5552201600010001000005&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>     <!-- ref --><p>6.&nbsp;Organizaci&oacute;n Mundial de la Salud (OMS). <i>Estrategia global de la OMS para la inocuidad de los alimentos: alimentos m&aacute;s sanos para una salud mejor. </i>Ginebra: Departamento de Inocuidad de los Alimentos; 2002.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700143&pid=S0120-5552201600010001000006&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>     ]]></body>
<body><![CDATA[<!-- ref --><p>7.&nbsp;Kopper G, Calder&oacute;n G, Schneider S, Dom&iacute;nguez W, Guti&eacute;rrez G. <i>Enfermedades transmitidas por alimentos y su impacto socioecon&oacute;mico. Estudios de caso en Costa Rica, El Salvador, Guatemala, Honduras y Nicaragua. </i>Informe t&eacute;cnico sobre ingenier&iacute;a agr&iacute;cola y veterinaria n&deg; 6. Roma: Organizaci&oacute;n de las Naciones Unidas para la Agricultura y la Alimentaci&oacute;n; 2009.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700145&pid=S0120-5552201600010001000007&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>     <!-- ref --><p>8.&nbsp;Crim SM, Iwamoto M, Huang JY, Griffin PM, Gilliss D, Cronquist A. Incidence and Trends of Infection with Pathogens Transmitted Commonly Through Food Food-borne Diseases Active Surveillance Network, 10 U.S. Sites, 2006-2013. <i>Morbidity and Mortality Weekly Report (MMWR) </i>&#91;Internet&#93; 2014; 63(15): 328-332. Disponible en:<a href="http://www.cdc.gov/mmwr/preview/mmwrhtml/mm6315a3.htm?s_cid=mm6315a3_w" target="_blank">http://www.cdc.gov/mmwr/preview/mmwrhtml/mm6315a3.htm?s_cid=mm6315a3_w</a>&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700147&pid=S0120-5552201600010001000008&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --><!-- ref --><p>9.&nbsp;European Food Safety Authority y European Centre for Disease Prevention and Control. The European Union Summary Report on Trends and Sources of Zoonoses, Zoonotic Agents and Food-borne Outbreaks in 2012. EFSA Journal 2014; 12(2):3547. Disponible en:<a href="http://www.efsa.europa.eu/en/efsajournal/doc/3547.pdf" target="_blank">http://www.efsa.europa.eu/en/efsajournal/doc/3547.pdf</a>.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700148&pid=S0120-5552201600010001000009&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>     <!-- ref --><p>10.&nbsp;Instituto Nacional de Salud. Bogot&aacute;, D. C.: Sistema de Vigilancia en Salud P&uacute;blica. Disponible en:<a href="http://www.ins.gov.co/lineasdeaccion/SubdireccionVigilancia/sivigila/Paginas/vigilanciarutinaria.aspx" target="_blank">http://www.ins.gov.co/lineasdeaccion/SubdireccionVigilancia/sivigila/Paginas/vigilanciarutinaria.aspx</a>.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700150&pid=S0120-5552201600010001000010&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>     <!-- ref --><p>11.&nbsp;Pires S, Vieira A, Lo Fo Wong D. Attributing human foodborne illness to food sources and water in Latin America and the Caribbean using data from outbreak investigations. <i>Int J Food Microbiol </i>2012; 152(3): 129-138.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700152&pid=S0120-5552201600010001000011&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>     <!-- ref --><p>12.&nbsp;Ministerio de Salud y Protecci&oacute;n Social, Organizaci&oacute;n de las Naciones Unidas para la Alimentaci&oacute;n y la Agricultura. <i>Documento de Estado Actual de Inocuidad de los Alimentos. </i>Bogot&aacute;, D. 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<body><![CDATA[<p>73.&nbsp;Rodriguez A, Autio WR, McLandsborough LA. Effect of biofilm dryness on the transfer of <i>Listeria monocytogenes </i>biofilms grown on stainless steel to bologna and hard salami. <i>J Food Prot </i>2007; 70: 2480-2484.</p>     <!-- ref --><p>74.&nbsp;Swaminathan B, Gerner P. The epidemiology of human listeriosis. <i>Microbes Infect.Epub </i>2007; 9(10): 1236 -1243.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700276&pid=S0120-5552201600010001000074&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>     <!-- ref --><p>75.&nbsp;DiMaio H. Listeria infection in women. Primary Care Update for Ob/Gyns 2000; 7(1): 40-45. doi:10.1016/S1068-607X(99)00039-6&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700278&pid=S0120-5552201600010001000075&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --><!-- ref --><p>76.&nbsp;Silk B, Date K, Jackson K, Pouillot R, Holt K, Graves L et al. Invasive listeriosis in the foodborne diseases active surveillance network (FoodNet), 2004-2009: further targeted prevention needed for higherrisk groups. <i>Cli Infec Dis </i>2012; 54 (5): 396-404.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700279&pid=S0120-5552201600010001000076&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>     <!-- ref --><p>77.&nbsp;Chen M, Wu Q, Zhang J, Yan Z, Wang J. Prevalence and characterization of <i>Listeria monocytogenes </i>isolated from retaillevel ready to eat foods in South China. <i>Food Control </i>2014; 38:1-7.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700281&pid=S0120-5552201600010001000077&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>     <!-- ref --><p>78.&nbsp;Beale DJ, Morrison PD, Palombo EA. Detection of <i>Listeria </i>in milk using nontargeted metabolic profiling of <i>Listeria monocytogenes: </i>A proof of concept application. <i>Food Control </i>2014; 42: 343-346.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700283&pid=S0120-5552201600010001000078&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>     ]]></body>
<body><![CDATA[<!-- ref --><p>79.&nbsp;Schoder D, Stessl B, Szakmary K, Rossmanith P, Wagner M. Population diversity of <i>Listeria monocytogenes </i>in quargel (acid curd cheese) lots recalled during the multinational listeriosis outbreak 2009-2010. <i>Food Microbiol </i>2014; 39: 68-73.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700285&pid=S0120-5552201600010001000079&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>     <!-- ref --><p>80.&nbsp;Lund&eacute;n J, Tolvanen R, Korkeala H. Listeriosis Outbreaks Linked to Dairy Products in Europe. <i>J Dairy Sc </i>2004, 87: 6-12.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700287&pid=S0120-5552201600010001000080&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>     <!-- ref --><p>81.&nbsp;Tham W, Ericsson H, Loncarevic S, Unnerstad H, Danielsson ML. Lessons from an outbreak of listeriosis related to vacuumpacked gravad and coldsmoked fish. <i>Inter J Food Microbiol </i>2000; 62(3): 173 -175.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700289&pid=S0120-5552201600010001000081&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>      <!-- ref --><p>82.&nbsp;Little CL, Amar CF, Awofisayo A, Grant. Hospital acquired listeriosis associated with sandwiches in the UK: a cause for concern. <i>J Hosp Infec </i>2012; 82 (1): 13 -18.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700291&pid=S0120-5552201600010001000082&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>     <!-- ref --><p>83.&nbsp;Gamboa A, Buitrago S, P&eacute;rez K, Mercado M, Poutou R, Carrascal A. Prevalencia de <i>Listeria monocytogenes </i>en carnes y derivados de la industria porc&iacute;cola colombiana. <i>Rev. MVZ C&oacute;rdoba </i>2012; 17(1): 2827-2833.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700293&pid=S0120-5552201600010001000083&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>     ]]></body>
<body><![CDATA[<!-- ref --><p>84.&nbsp;Jamali H, Thong K. Genotypic characterization and antimicrobial resistance of <i>Listeria monocytogenes </i>from ready to eat foods. <i>Food</i><i>Control </i>2014; 44:1-6.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700295&pid=S0120-5552201600010001000084&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>     <!-- ref --><p>85.&nbsp;Yu T, Jiang X. Prevalence and characterization of <i>Listeria monocytogenes </i>isolated from retail food in Henan, China. <i>Food Control </i>2014; 37: 228-231.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700297&pid=S0120-5552201600010001000085&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>     <!-- ref --><p>86.&nbsp;Kramarenko T, Roasto M, Meremae K, Kuningas M, P&oacute;ltsama P, Elias T. <i>Listeria monocytogenes </i>prevalence and serotype diversity in various foods. <i>Food Control </i>2013; 30(1): 24-29.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700299&pid=S0120-5552201600010001000086&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>     <!-- ref --><p>87.&nbsp;Makino SI, Kawamoto K, Takeshi K, Okada Y, Yamasaki M, Yamamoto S. An outbreak of food borne listeriosis due to cheese in Japan, during 2001. <i>Int J Food Microbiol </i>2005; 104(2): 189 -196.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700301&pid=S0120-5552201600010001000087&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>     <!-- ref --><p>88.&nbsp;Swaminathan B, Gerner-Smidt P. The epidemiology of human listeriosis. <i>Microbes Infect</i> 2007; 9(10): 1236-1243.    &nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;[&#160;<a href="javascript:void(0);" onclick="javascript: window.open('/scielo.php?script=sci_nlinks&ref=3700303&pid=S0120-5552201600010001000088&lng=','','width=640,height=500,resizable=yes,scrollbars=1,menubar=yes,');">Links</a>&#160;]<!-- end-ref --></p>     ]]></body>
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