<?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>0001-6002</journal-id>
<journal-title><![CDATA[Acta Médica Costarricense]]></journal-title>
<abbrev-journal-title><![CDATA[Acta méd. costarric]]></abbrev-journal-title>
<issn>0001-6002</issn>
<publisher>
<publisher-name><![CDATA[Colegio de Médicos y Cirujanos de Costa Rica]]></publisher-name>
</publisher>
</journal-meta>
<article-meta>
<article-id>S0001-60022013000400012</article-id>
<title-group>
<article-title xml:lang="es"><![CDATA[Resúmenes de conferencias magistrales]]></article-title>
</title-group>
<aff id="A">
<institution><![CDATA[,  ]]></institution>
<addr-line><![CDATA[ ]]></addr-line>
</aff>
<pub-date pub-type="pub">
<day>00</day>
<month>07</month>
<year>2013</year>
</pub-date>
<pub-date pub-type="epub">
<day>00</day>
<month>07</month>
<year>2013</year>
</pub-date>
<volume>55</volume>
<fpage>60</fpage>
<lpage>62</lpage>
<copyright-statement/>
<copyright-year/>
<self-uri xlink:href="http://www.scielo.sa.cr/scielo.php?script=sci_arttext&amp;pid=S0001-60022013000400012&amp;lng=en&amp;nrm=iso"></self-uri><self-uri xlink:href="http://www.scielo.sa.cr/scielo.php?script=sci_abstract&amp;pid=S0001-60022013000400012&amp;lng=en&amp;nrm=iso"></self-uri><self-uri xlink:href="http://www.scielo.sa.cr/scielo.php?script=sci_pdf&amp;pid=S0001-60022013000400012&amp;lng=en&amp;nrm=iso"></self-uri></article-meta>
</front><body><![CDATA[ <div class="Section1">     <div>     <div>     <div>     <p class="MsoNormal" style="text-align: right;" align="right"><b  style=""><span style="font-family: Verdana;">Res&#250;menes de conferencias magistrales<o:p></o:p></span></b></p>     <p class="MsoNormal" style="text-align: center;" align="center"><b  style=""><span style="font-size: 11pt; font-family: Verdana;">Avances en el conocimiento de los principales vectores de <span class="SpellE"><i>Rickettsia</i></span><i> </i>en Latinoam&#233;rica<o:p></o:p></span></b></p>     <p class="MsoNormal" style="text-align: center;" align="center"><b  style=""><span style="font-size: 11pt; font-family: Verdana;"  lang="EN-US">(Advances in the knowledge of the principal vectors of <span class="SpellE"><i>Rickettsia</i></span> in <st1:place w:st="on">Latin America</st1:place>)<o:p></o:p></span></b></p>     <p class="MsoNormal" style="text-align: center;" align="center"><b  style=""><span style="font-size: 11pt; font-family: Verdana;">Santiago Nava<o:p></o:p></span></b></p>     <p class="MsoNormal"><span  style="font-size: 10pt; font-family: Verdana;"></span></p> <hr style="width: 100%; height: 2px;">     <p style="text-align: justify;" class="MsoNormal"><span  style="font-size: 10pt; font-family: Verdana;">Las garrapatas son ectopar&#225;sitos hemat&#243;fagos causantes de perjuicios por el parasitismo <span class="SpellE"><i>per</i></span><i> se</i> o por la transmisi&#243;n de agentes pat&#243;genos que pueden provocar enfermedades en animales y humanos. Dentro de este grupo de par&#225;sitos, tres de las especies con mayor importancia sanitaria son <span class="SpellE"><i>Rhipicephalus</i></span><i> <span class="SpellE">sanguineus</span></i> <span class="SpellE">sensu</span> lato, <span class="SpellE"><i>Amblyomma</i></span><i> <span  class="SpellE">cajennense</span></i> y <span class="SpellE"><i>Amblyomma</i></span><i> triste</i>. Estudios recientes han demostrado que los taxones <i>R. <span class="SpellE">sanguineus</span></i> <span class="SpellE">s.s</span> y <i>A. <span class="SpellE">cajennense</span></i> en realidad constituyen complejos de especies. Particularmente en Sudam&#233;rica, existen evidencias que indican que el complejo <i>R. <span  class="SpellE">sanguineus</span></i> est&#225; formado por al menos dos especies, mientras que <i>A. <span class="SpellE">cajennense</span> </i>es un complejo de la menos seis especies. <span class="SpellE"><i>Amblyomma</i></span><i> <span class="SpellE">cajennense</span></i> ha sido incriminada como una de las especies con mayor relevancia sanitaria no solo por el efecto delet&#233;reo causado por el parasitismo <span class="SpellE"><i>per</i></span><i> se</i>, sino tambi&#233;n por su capacidad para transmitir agentes pat&#243;genos a los humanos. Una de las enfermedades en la que las garrapatas del complejo <i>A. <span class="SpellE">cajenense</span> </i>se constituyen en el principal vector es la fiebre manchada por <span class="SpellE"><i>Rickettsia</i></span> <span  class="SpellE"><i>rickettsii</i></span>. Esta es la <span  class="SpellE">rickettsiosis</span> humana transmitida por garrapatas m&#225;s importante de Latinoam&#233;rica. Ha sido reportada en M&#233;xico, Panam&#225;, Costa Rica, Colombia, Brasil y Argentina, con casos fatales en la mayor&#237;a de estos pa&#237;ses. Hasta el momento, todos los casos fatales por <span  class="SpellE">rickettsiosis</span> en humanos reportados en Latinoam&#233;rica fueron provocados por <i>R. <span class="SpellE">rickettsii</span></i>. Las garrapatas del complejo <i>R. <span class="SpellE">sanguineus</span></i> pueden actuar como vectores y reservorios de <span class="SpellE"><i>Ehrlichia</i></span><i> <span class="SpellE">canis</span></i>, el agente causal de la <span  class="SpellE">erlichiosis</span> canina, y son tambi&#233;n vectores potenciales de otros agentes <span  class="SpellE">rickettsiales</span> como <i>R. <span class="SpellE">rickettsii</span></i>, <i>R. <span class="SpellE">massiliae</span></i> y <span class="SpellE"><i>Anaplasma</i></span><i> <span class="SpellE">platys</span></i>. Este nuevo escenario taxon&#243;mico referido a <span class="SpellE"><i>A</i></span><i>. <span  class="SpellE">cajennense</span></i> <span class="SpellE">s.s</span> y <i>R. <span class="SpellE">sanguineus</span></i> <span class="SpellE">s.s</span> conlleva implicancias ecol&#243;gicas y epidemiol&#243;gicas relacionadas a diferencias en la din&#225;mica estacional, distribuci&#243;n y capacidad vectorial entre las especies que forman los dos complejos. <span class="SpellE"><i>Amblyomma</i></span><i> triste</i> es una garrapata filogen&#233;ticamente tambi&#233;n presenta una amplia distribuci&#243;n, desde el sur de Estados Unidos al sur de Uruguay y centro de Argentina. Sin embargo, las poblaciones de <i>A. triste </i>involucradas en la transmisi&#243;n de <span class="SpellE"><i>Rickettsia</i></span> <span  class="SpellE"><i>parkeri</i></span> a humanos est&#225;n restringidas a localidades de la Cuenca del Plata, en Argentina, Brasil y Uruguay. Estudios publicados recientemente y en curso han mostrado que <i>A. triste</i> presenta una distribuci&#243;n m&#225;s amplia que la usualmente reconocida. Asimismo, se han establecido diferencias morfol&#243;gicas asociadas a poblaciones con distinto origen geogr&#225;fico. En esta presentaci&#243;n se detallan y discuten los avances mencionados sobre sistem&#225;tica y ecolog&#237;a de estas tres garrapatas con importancia sanitaria en la regi&#243;n Neotropical.    ]]></body>
<body><![CDATA[<br> </span></p>     <p style="text-align: justify;" class="MsoNormal"><span  style="font-size: 10pt; font-family: Verdana;">Instituto Nacional de Tecnolog&#237;a Agropecuaria, Estaci&#243;n Experimental Agropecuaria Rafaela y Consejo Nacional de Investigaciones Cient&#237;ficas y T&#233;cnicas, Argentina. </span><span class="SpellE"><span  style="font-size: 10pt; font-family: &quot;Arial Unicode MS&quot;;">&#8201;</span><span  style="font-size: 10pt; font-family: Verdana;">nava.santiago@inta.gob.ar</span></span>    <br> <span style="font-size: 10pt; font-family: Verdana;"><o:p></o:p></span></p>     <p class="MsoNormal" style="text-align: center;" align="center"><b  style=""><span style="font-size: 11pt; font-family: Verdana;">Vigilancia de enfermedades <span class="SpellE">rickettsiales</span> en poblaciones animales<o:p></o:p></span></b></p>     <p class="MsoNormal" style="text-align: center;" align="center"><b  style=""><span style="font-size: 11pt; font-family: Verdana;"  lang="EN-US">(Surveillance of <span class="SpellE">rickettsial</span> diseases in animal populations)<o:p></o:p></span></b></p>     <p class="MsoNormal" style="text-align: center;" align="center"><b  style=""><span style="font-size: 11pt; font-family: Verdana;"  lang="PT-BR">Adriano <span class="SpellE">Pinter</span><o:p></o:p></span></b></p>     <p style="text-align: justify;" class="MsoNormal"><span  style="font-size: 10pt; font-family: Verdana;" lang="EN-US">The Brazilian Spotted Fever (BSF) is the most severe tick-borne-disease in <st1:country-region w:st="on"><st1:place  w:st="on">Brazil</st1:place></st1:country-region>. It is caused by infection with the bacterial organism <span  class="SpellE"><i>Rickettsia</i></span> <span class="SpellE"><i>rickettsii</i></span>. In the last 10 years, approximately 80 cases of BSF have been reported annually and over 50% lethality. In the last ten years, several other <span class="SpellE"><i>Rickettsia</i></span> species have been detected infecting ticks in <st1:place w:st="on">South America</st1:place>, for most of them the potential threat to human being is yet to be confirmed. The disease epidemiology is strongly associated with the life cycle and ecology of the tick vectors, and therefore with the behavior of their hosts.<o:p></o:p></span></p>     <div style="text-align: justify;"></div>     <p style="text-align: justify;" class="MsoNormal"><span  style="font-size: 10pt; font-family: Verdana;" lang="EN-US">Detecting the presence of <span class="SpellE">rickettsial</span> agents in a tick population is a very important step to evaluate the risk that the human population is exposed in a determined local and an important surveillance tool to categorize areas in regard to the risk of disease transmission. This ought to be used by local public health services in order to focus efforts only upon the areas which are infested by infected ticks. Besides it can be used as a screening approach to areas where no information is available.<o:p></o:p></span></p>     <div></div>     ]]></body>
<body><![CDATA[<p style="text-align: justify;" class="MsoNormal"><span  style="font-size: 10pt; font-family: Verdana;" lang="EN-US">In order to categorize a specific area it is necessary to determine whether <span class="SpellE">rickettsial</span> agents are circulating among the ticks and whether it is pathogenic to humans or not. A direct survey for <span class="SpellE">rickettsia</span> on the tick population through techniques such as PCR or cell culture isolation is very assertive but is limited by a very high financial cost, thus it cannot be used in surveillance protocols for large areas, although it must be encouraged in research projects for <span class="SpellE">rickettsial</span> agents characterization.<o:p></o:p></span></p>     <p style="text-align: justify;" class="MsoNormal"><span  style="font-size: 10pt; font-family: Verdana;" lang="EN-US">Indirect protocols are a better choice for surveillance, specifically the <span class="SpellE">serosurvey</span> on sentinel vertebrate hosts. Since ticks are strict <span class="SpellE">haematophagous</span> parasites, the vertebrate hosts living in a specific area are highly exposed to that tick population and consequently to the <span class="SpellE">rickettsial</span> agents.<o:p></o:p></span></p>     <p style="text-align: justify;" class="MsoNormal"><span  style="font-size: 10pt; font-family: Verdana;" lang="EN-US">The elected vertebrate host species to take part of the survey must be primary hosts for that specific tick species found in this area. Part of the host population must be accessed in order to have a sample of blood individually collected, labeled and stocked until the moment of processing. The number of animals that must be tested depends on the size of the population and can be calculated by the simple random sample for prevalence determination, expect prevalence must be set up to 50%, significance to 95% and acceptable error to 10%.<o:p></o:p></span></p>     <div style="text-align: justify;"></div>     <p style="text-align: justify;" class="MsoNormal"><span  style="font-size: 10pt; font-family: Verdana;" lang="EN-US">Sera collected from sampled animals must be tested for presence of anti-<span class="SpellE"><i>Rickettsia</i></span> antibodies through Indirect <span class="SpellE">Immunofluorescence</span> Assay (IFA), this technique depends on glass slides prepared with cell cultured <span  class="SpellE"><i>Rickettsia</i></span>. IFA test shows a cross reaction among all <span class="SpellE"><i>Rickettsia</i></span> species from the spotted fever group. It is possible to determine the likely homologous reaction if each individual serum is tested against different <span class="SpellE"><i>Rickettsia</i></span> species, if the title obtained against one species is four times higher than the other tested species, it is highly probable that it is an homologous reaction, whereas if just one or few species of <span class="SpellE"><i>Rickettsia</i></span> is tested the positive outcome may only be informative to Spotted Fever Group <span class="SpellE"><i>Rickettsia</i></span>.<o:p></o:p></span></p>     <p style="text-align: justify;" class="MsoNormal"><span  style="font-size: 10pt; font-family: Verdana;" lang="EN-US">The <span  class="SpellE">serosurvey</span> outcome must be used to classify a restricted area in regards to the threat to the human population. Suggestions on area classification to vector-borne-diseases have been proposed for several authors, but most of those are intended to insect vectors and may not be suitable to tick vectors.<o:p></o:p></span></p>     <div style="text-align: justify;"></div>     <p style="text-align: justify;" class="MsoNormal"><span  style="font-size: 10pt; font-family: Verdana;" lang="EN-US">An example of this difference in terminology is the areas where the vector is well established but laboratory tests yielded negative for presence of pathogens. In case of insect-borne-diseases this area is classified as &#8220;predisposed&#8221; because insect vector complete several generation per year and can disperse very easily; therefore, populations can be overtaken or mixed with other migrant populations. On the other hand, most ticks complete one or two generations per year and ecology of the hosts and environment play a very important role to regulate the presence or absence of a pathogen, which makes tick populations more stable. Thus, the absence of a pathogen in a tick population may show that the ecological conditions that this population is exposed to might create a refractory profile to infection. In fact, when a tick population is found free of pathogenic <span class="SpellE">rickettsial</span> agents the question should not be &#8220;When will a <span class="SpellE">rickettsial</span> agent be introduced?&#8221; but rather, &#8220;What prevents this population from being infected for so long?<span  class="GramE">&#8221;.</span> An exception may be the tick species <span  class="SpellE"><i>Rhipicephalus</i></span><i> <span class="SpellE">sanguineus</span></i>, because this species is extremely <span class="SpellE">anthropophilic</span> and population of this tick can rise very fast and be suitable to have <span  class="SpellE">rickettsial</span> agent introduced in by hosts that are also fed on by native tick species, such as hunting dogs that go into forests and dwell nearby or in human houses, which may cause an epizootic profile and eventually human infection, but this situation is not natural and especially different from the expected behavior of New World endemic tick species.<o:p></o:p></span></p>     <p class="MsoNormal"><span  style="font-size: 10pt; font-family: Verdana;" lang="EN-US">As a result, the terminology &#8220;predisposed areas&#8221; might not be used, but &#8220;alert areas&#8221; is suggested instead.<o:p></o:p></span></p>     <p style="text-align: justify;" class="MsoNormal"><span  style="font-size: 10pt; font-family: Verdana;" lang="EN-US">The full classification for areas created upon <span class="SpellE">serosurvey</span> results in regards to tick-borne-<span class="SpellE">rickettsial</span> agents is suggested below:<o:p></o:p></span></p>     ]]></body>
<body><![CDATA[<div style="text-align: justify;"></div>     <p style="text-align: justify;" class="MsoNormal"><span class="GramE"><span  style="font-size: 10pt; font-family: Verdana;" lang="EN-US">-&#8221;Silence areas&#8221;, when no information about presence or absence of tick species is known.</span></span><span  style="font-size: 10pt; font-family: Verdana;" lang="EN-US"><o:p></o:p></span></p>     <div style="text-align: justify;"></div>     <p style="text-align: justify;" class="MsoNormal"><span class="GramE"><span  style="font-size: 10pt; font-family: Verdana;" lang="EN-US">-&#8221;Non-infested areas&#8221;, when repeated searches for ticks yielded negative.</span></span><span  style="font-size: 10pt; font-family: Verdana;" lang="EN-US"><o:p></o:p></span></p>     <div style="text-align: justify;"></div>     <p style="text-align: justify;" class="MsoNormal"><span class="GramE"><span  style="font-size: 10pt; font-family: Verdana;" lang="EN-US">-&#8221;Alert areas&#8221;, presence of competent vector tick species but absence of a pathogenic <span  class="SpellE">rickettsial</span> agent.</span></span><span  style="font-size: 10pt; font-family: Verdana;" lang="EN-US"><o:p></o:p></span></p>     <div style="text-align: justify;"></div>     <p style="text-align: justify;" class="MsoNormal"><span  style="font-size: 10pt; font-family: Verdana;" lang="EN-US">-&#8221;Risk areas&#8221;, presence of competent vector tick species and presence of a pathogenic <span class="SpellE">rickettsial</span> agent, but no human cases of disease have been reported.<o:p></o:p></span></p>     <div style="text-align: justify;"></div>     <p style="text-align: justify;" class="MsoNormal"><span  style="font-size: 10pt; font-family: Verdana;" lang="EN-US">-&#8221;Transmission areas&#8221;, presence of competent vector tick species, presence of a pathogenic <span  class="SpellE">rickettsial</span> agent, and human cases of disease have been reported within the last five years.<o:p></o:p></span></p>     ]]></body>
<body><![CDATA[<div style="text-align: justify;"></div>     <p style="text-align: justify;" class="MsoNormal"><span  style="font-size: 10pt; font-family: Verdana;" lang="EN-US">To confirm a specific area as a &#8220;Risk Area&#8221;, the <span class="SpellE">seropositive</span> prevalence threshold value for a sampled group of animal depends of some variables such as the average age and animal species, and the higher the average title obtained by the IFA the higher the chance of a recent <span class="SpellE">rickettsial</span> epizootic event. Different studies on dogs and horses in South-eastern <st1:country-region  w:st="on"><st1:place w:st="on">Brazil</st1:place></st1:country-region> have shown a <span class="SpellE">seroprevalence</span> higher than 40% for endemic areas and smaller than 5% for non-endemic areas.<o:p></o:p></span></p>     <p class="MsoNormal"><span  style="font-size: 10pt; font-family: Verdana;" lang="EN-US">The parameters of a surveillance program must be determined specifically for each Country and ought to be an important research focus for the forthcoming years.    <br> </span></p>     <p class="MsoNormal"><span  style="font-size: 10pt; font-family: Verdana;" lang="PT-BR">Superintend&#234;ncia de Controle de Endemias - SUCEN, Brasil. apinter@sucen.sp.gov.br</span>    <br> <span style="font-size: 10pt; font-family: Verdana;" lang="EN-US"><o:p></o:p></span></p>     <p class="MsoNormal" style="text-align: center;" align="center"><b  style=""><span style="font-size: 11pt; font-family: Verdana;">Ecolog&#237;a de las <span class="SpellE">rickettsiosis</span> en America Latina<o:p></o:p></span></b></p>     <p class="MsoNormal" style="text-align: center;" align="center"><b  style=""><span style="font-size: 11pt; font-family: Verdana;"  lang="EN-US">(Ecology of spotted fever <span class="SpellE">rickettsioses</span> in <st1:place w:st="on">Latin America</st1:place>)<o:p></o:p></span></b></p>     <p class="MsoNormal" style="text-align: center;" align="center"><b  style=""><span style="font-size: 11pt; font-family: Verdana;"  lang="PT-BR">Marcelo B. <span class="SpellE">Labruna</span><o:p></o:p></span></b></p>     <div style="text-align: justify;"> </div>     ]]></body>
<body><![CDATA[<p style="text-align: justify;" class="MsoNormal"><span class="SpellE"><span      style="font-size: 10pt; font-family: Verdana;" lang="PT-BR">Spotted</span></span><span      style="font-size: 10pt; font-family: Verdana;" lang="PT-BR">     <span class="SpellE">fever</span> rickettsioses are <span      class="SpellE">caused</span>     <span class="SpellE">by</span> <span class="SpellE">bacteria</span> <span      class="SpellE">of</span> <span class="SpellE">the</span> <span      class="SpellE">genus</span>     <span class="SpellE"><i>Rickettsia</i></span><i>, </i><span      class="SpellE">which</span>     ]]></body>
<body><![CDATA[are <span class="SpellE">primarily</span> <span class="SpellE">transmitted</span>     to <span class="SpellE">humans</span> <span class="SpellE">through</span>     t</span><span style="font-size: 10pt; font-family: Verdana;"      lang="EN-US">he     bite of infected ticks. These bacteria belong to the so called spotted     fever     group (SFG), currently composed by over 20 valid species distributed     through     the world. While some SFG species are agents of human illness (SFG <span      class="SpellE">rickettsioses</span>), others have been described only     ]]></body>
<body><![CDATA[from ticks,     and are considered non-pathogenic or of unknown <span class="SpellE">pathogenicity</span>.     In <st1:place w:st="on">Latin America</st1:place>, at least four     tick-borne SFG     <span class="SpellE">rickettsiae</span> have been reported to cause     illness in     humans: <span class="SpellE"><i>Rickettsia</i></span><i> <span      class="SpellE">rickettsii</span>,     <span class="SpellE">Rickettsia</span> <span class="SpellE">parkeri</span>,     <span class="SpellE">Rickettsia</span> <span class="SpellE">massiliae</span>,     ]]></body>
<body><![CDATA[</i>and     strain Atlantic rainforest (a <i>R. <span class="SpellE">parkeri</span>-</i>like     agent). <span class="SpellE"><i>Rickettsia</i></span><i> <span      class="SpellE">rickettsii</span></i>     is the agent of Rocky Mountain spotted fever, a severe, acute disease     caused by     the bacterium <span class="SpellE"><i>Rickettsia</i></span><i> <span      class="SpellE">rickettsii</span>, </i>which has been reported in <st1:country-region      w:st="on">Canada</st1:country-region>, the <st1:country-region      w:st="on">United States</st1:country-region>, <st1:country-region     ]]></body>
<body><![CDATA[ w:st="on">Mexico</st1:country-region>,     <st1:country-region w:st="on">Costa Rica</st1:country-region>, <st1:country-region      w:st="on">Panama</st1:country-region>, <st1:country-region w:st="on">Colombia</st1:country-region>,     <st1:country-region w:st="on">Argentina</st1:country-region>, and <st1:country-region      w:st="on"><st1:place w:st="on">Brazil</st1:place></st1:country-region>.     In this     later country, the disease was named as Brazilian spotted fever (BSF).     Current     fatality rates of BSF are between 30-40% in <st1:country-region      w:st="on"><st1:place w:st="on">Brazil</st1:place></st1:country-region>.     ]]></body>
<body><![CDATA[In the state of <st1:city w:st="on">S&#227;o Paulo</st1:city>, southeastern     <st1:country-region w:st="on"><st1:place w:st="on">Brazil</st1:place></st1:country-region>,     <i>R. <span class="SpellE">rickettsii</span>     </i>is transmitted mainly by <span class="SpellE"><i>Amblyomma</i></span><i>     <span class="SpellE">cajennense</span> </i>in the country side, and by     <span class="SpellE"><i>Amblyomma</i></span><i> <span class="SpellE">aureolatum</span>     </i>in     the Metropolitan area. For both ticks under natural conditions, <i>R. <span      class="SpellE">rickettsii</span>-</i>infection rates are usually very     low, below     ]]></body>
<body><![CDATA[1%. Interestingly, laboratory studies have shown that while <i>A. <span      class="SpellE">aureolatum</span> </i>ticks are highly susceptible to <i>R.     <span class="SpellE">rickettsii</span> </i>(usually 100% of the ticks     become infected     after feeding on <span class="SpellE">rickettsemic</span> guinea pigs)<i>,     A. <span class="SpellE">cajennense</span> </i>are partially     refractory (only &#8776;20% of     the ticks become infected after feeding on <span class="SpellE">rickettsemic</span>     guinea pigs). In addition, <span class="SpellE">transovarial</span>     transmission     ]]></body>
<body><![CDATA[of <i>R. <span class="SpellE">rickettsii</span> </i>is highly     efficient in <i>A. <span class="SpellE">aureolatum</span>, </i>and     very low in <i>A. <span class="SpellE">cajennense</span>.     </i>Thus, populations of <i>A. <span class="SpellE">cajennense</span>     </i>might     not be capable to sustain <i>R. <span class="SpellE">rickettsii</span>     </i>infection     though successive generations, unless new cohorts of infected ticks are     frequently created through the feeding on <span class="SpellE">rickettsemic</span>     amplifier hosts, such as capybaras (<span class="SpellE"><i>Hydrochoerus</i></span><i>     ]]></body>
<body><![CDATA[<span class="SpellE">hydrochoeris</span></i>), a common host of <i>A. <span      class="SpellE">cajennense</span> </i>in BSF-endemic areas in the     country side of     the state of <st1:city w:st="on"><st1:place w:st="on">S&#227;o Paulo</st1:place></st1:city>.     In fact, experimental studies have shown that capybaras are competent     amplifier     hosts of <i>R. <span class="SpellE">rickettsii</span> </i>for <i>A.     <span class="SpellE">cajennense</span> </i>ticks. Despite of the high     susceptibility of     <i>A. <span class="SpellE">aureolatum</span> </i>to <i>R. <span     ]]></body>
<body><![CDATA[ class="SpellE">rickettsii</span>     </i>infection, this tick also might not be able to sustain <span      class="SpellE">rickettsial</span>     infection for a long term due to the deleterious effect that <i>R. <span      class="SpellE">rickettsii</span> </i>elicits to engorged females. In     this case,     the participation of amplifier hosts (yet to be determined) might also     be     needed for maintenance of infection amongst <i>A. <span class="SpellE">aureolatum</span>     </i>populations in the metropolitan area of <st1:city w:st="on"><st1:place     ]]></body>
<body><![CDATA[ w:st="on">S&#227;o Paulo</st1:place></st1:city>, although in a lesser     extent. Anyhow, BSF has occurred with similar incidences, always low,     in both     the country side and the metropolitan areas. In this case, low number     of cases     in the metropolitan area might occur because the highly competent     vector (<i>A.     <span class="SpellE">aureolatum</span></i>) only rarely bites human; on     the other     side, even that <i>A. <span class="SpellE">cajennense</span> </i>frequently     ]]></body>
<body><![CDATA[bites     humans, the low incidence of the disease in the country side might be a     result     of the low vector competence of this tick, since it is partially     refractory to <i>R.     <span class="SpellE">rickettsii</span> </i>infection. Finally, a     recent study     showed that <i>R. <span class="SpellE">rickettsii</span> </i>infection<i>     </i>among     <i>A. <span class="SpellE">aureolatum</span> </i>populations in the <st1:city     ]]></body>
<body><![CDATA[ w:st="on"><st1:place w:st="on">S&#227;o Paulo</st1:place></st1:city>     metropolitan area was significantly associated with degraded Atlantic     forest     fragments, especially in the southern part of the metropolitan area.     The agent <span class="SpellE"><i>Rickettsia</i></span><i> <span      class="SpellE">parkeri</span> </i>has     been reported infecting ticks in the <st1:country-region w:st="on">United     States</st1:country-region>, <st1:country-region w:st="on">Peru</st1:country-region>,     <st1:country-region w:st="on">Bolivia</st1:country-region>, <st1:country-region      w:st="on">Brazil</st1:country-region>, <st1:country-region w:st="on">Argentina</st1:country-region>,     ]]></body>
<body><![CDATA[and <st1:country-region w:st="on"><st1:place w:st="on">Uruguay</st1:place></st1:country-region>.     In South America, human cases of <i>R. <span class="SpellE">parkeri</span>-</i>caused     <span class="SpellE">rickettsioses</span> have been reported only in <st1:country-region      w:st="on">Uruguay</st1:country-region> and <st1:country-region      w:st="on"><st1:place w:st="on">Argentina</st1:place></st1:country-region>,     where the agent is     transmitted by <span class="SpellE"><i>Amblyomma</i></span><i> <span      class="SpellE">triste</span> </i>ticks. In the Atlantic coast of <st1:country-region      w:st="on"><st1:place w:st="on">Brazil</st1:place></st1:country-region>,     <span class="SpellE"><i>Rickettsia</i></span><i> </i>sp. strain     ]]></body>
<body><![CDATA[Atlantic rainforest     (SARF) causes a disease very similar to <i>R. <span class="SpellE">parkeri</span>.     </i>In fact, this strain is genetically very similar to <i>R. <span      class="SpellE">parkeri</span>, </i>raising the possibility that both     agents could     be strains of a single species. SARF is primarily transmitted by the     tick <span class="SpellE"><i>Amblyomma</i></span><i> <span      class="SpellE"><span class="GramE">ovale</span></span><span      class="GramE">,</span> </i>although <i>A. <span class="SpellE">aureolatum</span>     </i>might     ]]></body>
<body><![CDATA[also be important in some areas where both tick species coexist. While     both <i>R.     <span class="SpellE">parkeri</span> </i>and SARF are usually found     infecting     around 10% of the ticks in nature, nothing is known about <span      class="SpellE">transovarial</span>     and <span class="SpellE">transstadial</span> transmission of these     agents in     ticks, and neither if there is any amplifier vertebrate host for the     bacteria     ]]></body>
<body><![CDATA[in nature. Finally, recent studies have reported the presence of <i>R.     <span class="SpellE">massiliae</span> </i>infecting <span      class="SpellE"><i>Rhipicephalus</i></span><i>     <span class="SpellE">sanguineus</span> </i>ticks in <st1:country-region      w:st="on"><st1:place w:st="on">Argentina</st1:place></st1:country-region>,     from where at least one     case of <i>R. <span class="SpellE">massiliae</span>-</i>caused <span      class="SpellE">rickettsioses</span> was reported. Since <i>R. <span      class="SpellE">massiliae</span>     </i>is considered a pathogenic species in <span class="SpellE">Eurupe</span>,     ]]></body>
<body><![CDATA[where it is transmitted by ticks of the <i>R. <span class="SpellE">sanguineus</span>     </i>group, it is possible that the presence of this agent in the south     cone of <st1:place w:st="on">South America</st1:place> is much broader     than currently recognized.    <br> </span></p>     <p style="text-align: justify;" class="MsoNormal"><span  style="font-size: 10pt; font-family: Verdana;" lang="PT-BR">Departamento de Medicina Veterin&#225;ria Preventiva e Sa&#250;de Animal, Faculdade de Medicina Veterin&#225;ria e Zootecnia, Universidade de S&#227;o <span class="GramE">Paulo,</span>Brasil. apinter@sucen.sp.gov.brlabruna@<span class="SpellE">usp</span>.<span  class="SpellE">br</span></span>    <br> <span style="font-size: 10pt; font-family: Verdana;" lang="EN-US"><o:p></o:p></span></p> </div> </div> </div> </div>      ]]></body>
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