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Martinez-Valdebenito, C.

Publications and source records attributed to Martinez-Valdebenito, C..

2 recordsLinked to original sources

First identification of trombiculid mites (Acari: Trombiculidae) on rodents captured on Chiloe Island, an endemic region of scrub typhus in southern Chile

BackgroundScrub typhus in an emerging vector-borne zoonosis, caused by Orientia spp. and transmitted by larvae of trombiculid mites, called chiggers. It mainly occurs within a certain region of the Asia-Pacific, called tsutsugamushi triangle, where rodents are known as the most relevant hosts for the trombiculid vector. The disease has recently been discovered on Chiloe Island in southern Chile. Still, the reservoir(s) and vector(s) of the scrub typhus outside Asia-Pacific are unknown. The aim of the present work was to study the prevalence of chiggers on different rodent species captured in sites identified as probably hot spots of scrub typhus on Chiloe Island in southern Chile.\n\nMethodology/Principal FindingsDuring austral summer 2018, rodents were live-trapped in six sites and examined for chigger infestation. During a total of 4,713 trap-nights, 244 rodents of seven species were captured: the most abundant was Abrothrix olivacea. All study sites were rural areas on Chiloe Island, previously identified as localities of probable human infection with scrub typhus. Chiggers were detected on all seven rodent species with a 55% prevalence rate. Chiggers showed low host specificity and varied according to site specific host abundance. We identified trombiculids of three genera. Colicus was the most abundant chigger (93%), prevalent in five of six sites, followed by Quadraseta (7%) and Paratrombicula (7%), which were in only one site. Infestation rates showed site specific differences, which were statistically different using a GLM model with binomial errors.\n\nConclusions/SignificanceThis study firstly reports the presence of different rodent-associated chigger mites in a region with endemic scrub typhus in southern Chile. Colicus and two other genera of mites were found with high infestation rates in sites previously identified as hot spots of scrub typhus, suggesting their role as vectors and reservoirs of this emerging zoonosis in South America.\n\nAuthor SummaryScrub typhus is a chigger-transmitted zoonotic infection, which is endemic in the tsutsugamushi triangle in Asia-Pacific. Recently, a first focus of scrub typhus in South America has been confirmed on Chiloe Island in southern Chile. Still, the vectors of scrub typhus in this region remain unknown. We undertook a survey to study the prevalence of chiggers on different rodent species in areas identified as probable hot spots of scrub typhus on Chiloe Island. The study showed that 55% of rodents were infested by trombiculids. Three chigger genera were identified, of which Colicus was the most abundant. Chiggers showed low host specificity, but spatial differences. This first demonstration of rodent-associated chigger mites in hot spots of scrub typhus suggests their possible role as vectors of this infection in Chile.

zoology

Single nucleotide variant at the alphaVbeta3 integrin associated to Andes virus infection susceptibility.

BackgroundANDV, agent of hantavirus cardiopulmonary syndrome, enters through integrin cell protein. A change from leucine-to-proline at residues 33 in the PSI-domain (L33P) inhibits ANDV recognition. We assessed the association between this human-variant and ANDV infection.\n\nResultsWe defined susceptible genotype to \"TT\" (coding leucine) and protective \"CC\" (coding proline). TT was in 89.2% (66/74) of a first cohort of ANDV-cases and in 60% (63/105) of exposed close-household contacts who remained unifected (p<0.05). Protective genotype was absent in all 85 ANDV cases in both cohorts and was present at 11.4% in exposed close-household contacts who remained uninfected. Logistic regression modeling to become a case had an OR 6.2-12.6 (p<0.05) in presence of TT and ANDV well-known risk activities. Moreover, OR of 7.3 was obtained when TT condition was analyzed for two groups exposed to the same environmental risk.\n\nConclusionHost genetic background has an important role in ANDV-infection susceptibility in the studied population.\n\nAuthor summaryHantavirus is a worldwide infection known to cause two different diseases: the hemorrhagic fever with renal syndrome (HFRS) and hantavirus cardiopulmonary syndrome (HCPS or HPS), diseases seen in the old world and new world hantaviruses, respectively. Andes orthohantavirus (ANDV), is the etiological agent of HCPS in Chile and South of Argentina, and is the only hantavirus recognized to be transmited person-to-person. It has been suggested that {beta}3-integrin is a cellular receptor for ANDV entry into cells. Here we try to understand the role of one human genetic variant of {beta}3-integrin in susceptibility to ANDV-infection. We compared, exposed infected and non infected subjects, and their genotype differences regarding a {beta}3 integrin variant that change a Leucine to Proline at PSI domain of the receptor. Leucine and proline aminoacids at the PSI domain, turn the cell susceptible or resistant to ANDV-infection, respectively. We were able to show genotype differences in cases and close-household contact that suggest differences in ANDV-infection susceptibility. Our results propose that the TT genotype, that codes to leucine, is a risk factor to become infected with ANDV, and the CC genotype that codes for proline at PSI domain, is a protective factor. (193/200)

microbiology