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1621“…(Spirochaetales: Spirochaetaceae), B. burgdorferi sensu lato, B. miyamotoi, B. mayonii, Babesia microti (Piroplasmida: Babesiidae), Anaplasma phagocytophilum (Rickettsiales: Anaplasmataceae), Francisella tularensis (Thiotrichales: Francisellaceae), and Rickettsia rickettsii (Rickettsiales: Rickettsiaceae) by PCR. …”
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1622por Riswari, Silvita Fitri, Prodjosoewojo, Susantina, Mony, Siti Rasnawati, Megantara, Imam, Iskandar, Shelly, Mayasari, Wulan, Heryaman, Henhen, de Mast, Quirijn, van der Ven, Andre, Kosasih, Herman, Alisjahbana, Bachti“…Murine typhus (MT), an infection caused by the gram-negative bacteria Rickettsia typhi (R. typhi), is a significant cause of acute febrile illness (AFI) in Southeast Asia but is rarely reported in Indonesia. …”
Publicado 2023
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1623por Holguin-Rocha, Andres F., Calle-Tobon, Arley, Vásquez, Gissella M., Astete, Helvio, Fisher, Michael L., Tobon-Castano, Alberto, Velez-Tobon, Gabriel, Maldonado-Ruiz, L. Paulina, Silver, Kristopher, Park, Yoonseong, Londono-Renteria, Berlin“…The most prevalent bacteria found in each region were Corynebacterium in Bolivar, Staphylococcus in Antioquia, and Pseudomonas in Cordoba. Rickettsia-like endosymbionts, mainly recognized as the etiological agent of rickettsioses in Colombia, were detected in the Cordoba samples. …”
Publicado 2023
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1624“…INTRODUCTION: Scrub typhus is an acute febrile illness caused by obligate intracellular bacteria of the family Rickettsia after an incubation period of 6-21 days. …”
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1625por Feldmeier, Hermann“…The PUBMED database was searched using a combination of the terms “pediculus humanus” OR “body lice” OR “head lice” AND “pathogen” OR “Rickettsia prowazekii” OR “Bartonella quintana” OR “Borrelia recurrentis” OR “Coxiella burneti” without a time limit. …”
Publicado 2023
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1626por Yousefi-Behzadi, Manijeh, Mehrabi, Atefeh, Ahmadinezhad, Mozhgan, Rohani, Mahdi, Naddaf, Saied Reza, Bagheri, Amin, Shams-Ghahfarokhi, Masoomeh, Maghsoudlou, Ebrahim, Mojahed, Nooshin, Mounesan, Leila, Tahmasebi, Zahra, Sohrabi, Aria, Salehi-Vaziri, Mostafa, Salehi, Zahra, Razzaghi-Abyaneh, Mehdi“…RESULTS: Among hundreds of intestinal microbiota identified by metagenomics, various pathogenic microorganisms distributed in 30 genera and species including those responsible for tick-borne diseases resided in the genera Coxiella, Rickettsia, and Burkholderia were found. CONCLUSION: Our results indicated that metagenomics identifies bacteria genera and species which cannot be easily recognized by routine methods. …”
Publicado 2023
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1627por Tufa, Tafese Beyene, Margos, Gabriele, Fingerle, Volker, Hartberger, Christine, Poppert, Sven, Birtles, Richard J., Kraiczy, Peter, Kempf, Volkhard A. J., Frickmann, Hagen, Feldt, Torsten“…Human lice, Pediculus humanus, can transmit various pathogens, including Bartonella quintana, Borrelia recurrentis, and Rickettsia prowazekii. Xenosurveillance is an epidemiological approach to assessing human infection risks performed by screening vectors of infectious disease agents. …”
Publicado 2023
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1628por Ioannidis, Panagiotis, Hotopp, Julie C Dunning, Sapountzis, Panagiotis, Siozios, Stefanos, Tsiamis, Georgios, Bordenstein, Seth R, Baldo, Laura, Werren, John H, Bourtzis, Kostas“…RESULTS: Using features that have been previously experimentally verified in the alpha-Proteobacterium Caulobacter crescentus, the origin of DNA replication (ori) regions were identified in silico for Wolbachia strains and eleven other related bacteria belonging to Ehrlichia, Anaplasma, and Rickettsia genera. These features include DnaA-, CtrA- and IHF-binding sites as well as the flanking genes in C. crescentus. …”
Publicado 2007
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1629por Barquero-Calvo, Elías, Conde-Alvarez, Raquel, Chacón-Díaz, Carlos, Quesada-Lobo, Lucía, Martirosyan, Anna, Guzmán-Verri, Caterina, Iriarte, Maite, Mancek-Keber, Mateja, Jerala, Roman, Gorvel, Jean Pierre, Moriyón, Ignacio, Moreno, Edgardo, Chaves-Olarte, Esteban“…It is proposed that this adaptive trend is relevant in other intracellular α-Proteobacteria like Bartonella, Rickettsia, Anaplasma, Ehrlichia and Wolbachia.…”
Publicado 2009
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1630por Felsheim, Roderick F., Chávez, Adela S. Oliva, Palmer, Guy H., Crosby, Liliana, Barbet, Anthony F., Kurtti, Timothy J., Munderloh, Ulrike G.“…The obligate intracellular growth requirement of the bacteria poses a challenging obstacle to their genetic manipulation, a problem shared with other prokaryotes in the genera Anaplasma, Ehrlichia, and Rickettsia. Following our successful transformation of the human anaplasmosis agent, A. phagocytophilum, we produced plasmid constructs (a transposon bearing plasmid, pHimarAm-trTurboGFP-SS, and a transposase expression plasmid, pET28Am-trA7) designed to mediate random insertion of the TurboGFP and spectinomycin/streptomycin resistance genes by the Himar1 allele A7 into the A. marginale chromosome. …”
Publicado 2010
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1631“…Similar to many other intracellular bacteria that replicate within the cytosol, such as Listeria, Shigella, Burkholderia, and Rickettsia, the virulence of F. tularensis depends on its ability to modulate biogenesis of its phagosome and to escape into the host cell cytosol where it proliferates. …”
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1632por Syhavong, Bounkong, Rasachack, Bouachanh, Smythe, Lee, Rolain, Jean-Marc, Roque-Afonso, Anne-Marie, Jenjaroen, Kemajittra, Soukkhaserm, Vimone, Phongmany, Simmaly, Phetsouvanh, Rattanaphone, Soukkhaserm, Sune, Thammavong, Te, Mayxay, Mayfong, Blacksell, Stuart D., Barnes, Eleanor, Parola, Philippe, Dussaix, Elisabeth, Raoult, Didier, Humphreys, Isla, Klenerman, Paul, White, Nicholas J., Newton, Paul N.“…Serology (hepatitis A, B, C and E, leptospirosis, dengue, rickettsia), antigen tests (dengue), PCR assays (hepatitis A, C and E) and blood cultures (septicaemia) were performed on samples from 392 patients admitted with jaundice or raised transaminases (≥ × 3) to Mahosot Hospital, Vientiane, Laos over 3 years. …”
Publicado 2010
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1633por Blacksell, Stuart D., Jenjaroen, Kemajittra, Phetsouvanh, Rattanaphone, Tanganuchitcharnchai, Ampai, Phouminh, Phonlavanh, Phongmany, Simalee, Day, Nicholas P. J., Newton, Paul N.“…Sensitivity and specificity for the MT IBT determined by using the criteria of a four-fold increase in IgM against Rickettsia typhi between paired serum samples were 61.2% (95% CI = 53.7–68.3%) and 86.5% (95% CI = 84.1–88.8%), respectively. …”
Publicado 2010
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1634por Villar, Margarita, Torina, Alessandra, Nuñez, Yolanda, Zivkovic, Zorica, Marina, Anabel, Alongi, Angela, Scimeca, Salvatore, La Barbera, Giuseppa, Caracappa, Santo, Vázquez, Jesús, Fuente, José de la“…From 300 collected ticks, only 16 were found to be infected: R. sanguineus with Rickettsia conorii and Ehrlichia canis; R. bursa with Theileria annulata; and R. turanicus with Anaplasma ovis. …”
Publicado 2010
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1635por Leroy, Quentin, Lebrigand, Kevin, Armougom, Fabrice, Barbry, Pascal, Thiéry, Richard, Raoult, Didier“…We also found undescribed but comparable clusters of regulation in previously reported transcriptomic analyses of intracellular bacteria, including Rickettsia sp. and Listeria monocytogenes. The transcriptomic patterns of C. burnetii observed under temperature stresses permits the recognition of unpredicted clusters of regulation for which the trigger mechanism remains unidentified but which may be the result of a new mechanism of epigenetic regulation.…”
Publicado 2010
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1636por Neary, Joseph M., Trees, Alexander J., Ekale, David D., Tanya, Vincent N., Hetzel, Udo, Makepeace, Benjamin L.“…Many, but not all, filarial nematodes carry within their tissues endosymbiotic, Rickettsia-like bacteria of the genus Wolbachia. Onchocerca spp. infections in cattle offer the most relevant, analogous host–parasite model system. …”
Publicado 2010
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1637por Punjabi, Narain H., Taylor, Walter R. J., Murphy, Gerald S., Purwaningsih, Sri, Picarima, Helena, Sisson, John, Olson, James G., Baso, Samuel, Wangsasaputra, Ferry, Lesmana, Murad, Oyofo, Buhari A., Simanjuntak, Cyrus H., Subekti, Decy, Corwin, Andrew L., Richie, Thomas L.“…Investigations included malaria blood films, blood culture, paired serologic samples analysis for dengue, Japanese encephalitis, leptospirosis, scrub typhus, murine typhus, and spotted fever group rickettsia. During 1997–2000, 226 patients (127 males and 99 females) 1–80 years of age (median age = 25 years) were enrolled. …”
Publicado 2012
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1638por Pradhan, Rahul, Shrestha, Umesh, Gautam, Samir C., Thorson, Stephen, Shrestha, Kabindra, Yadav, Bharat K., Kelly, Dominic F., Adhikari, Neelam, Pollard, Andrew J., Murdoch, David R.“…Blood from all patients was tested by conventional culture and by real-time PCR for Rickettsia typhi. RESULTS: Putative etiological agents for fever were identified in 164 (15%) patients. …”
Publicado 2012
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1639por Alix, Eric, Chesnel, Laurent, Bowzard, Brad J., Tucker, Aimee M., Delprato, Anna, Cherfils, Jacqueline, Wood, David O., Kahn, Richard A., Roy, Craig R.“…Here, the role of the RalF capping domain was investigated by comparing biochemical and effector activities mediated by this domain in both the Legionella RalF protein (LpRalF) and in a RalF ortholog isolated from the unrelated intracellular pathogen Rickettsia prowazekii (RpRalF). These data indicate that both RalF proteins contain a functional Sec7 domain and that the capping domain regulates RalF GEF activity. …”
Publicado 2012
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1640por Paris, D H, Chansamouth, V, Nawtaisong, P, Löwenberg, E C, Phetsouvanh, R, Blacksell, S D, Lee, S J, Dondorp, A M, van der Poll, T, Newton, P N, Levi, M, Day, N PJ“…Scrub typhus (caused by Orientia tsutsugamushi) and murine typhus (caused by Rickettsia typhi) cause up to 28% of febrile episodes in Thailand and Laos. …”
Publicado 2012
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