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1.
Parasit Vectors ; 17(1): 264, 2024 Jun 18.
Artículo en Inglés | MEDLINE | ID: mdl-38890667

RESUMEN

BACKGROUND: Fleas, considered to be the main transmission vectors of Bartonella, are highly prevalent and show great diversity. To date, no investigations have focused on Bartonella vectors in Southeast China. The aim of this study was to investigate the epidemiological and molecular characteristics of Bartonella in fleas in Southeast China. METHODS: From 2016 to 2022, flea samples (n = 1119) were collected from 863 rodent individuals in seven inland and coastal cities in Southeast China. Flea species, region, gender, host species and habitat were recorded. The DNA samples from each individual flea were screened by real-time PCR for the Bartonella ssrA gene. All positive samples were confirmed by PCR based on the presence of the gltA gene and sequenced. The factors associated with Bartonella infection were analyzed by the Chi-square test and Fisher's exact test. ANOVA and the t-test were used to compare Bartonella DNA load. RESULTS: Bartonella DNA was detected in 26.2% (293/1119) of the flea samples, including in 27.1% (284/1047) of Xenopsylla cheopis samples, 13.2% (5/38) of Monopsyllus anisus samples, 8.3% (2/24) of Leptopsylla segnis samples and 20.0% (2/10) of other fleas (Nosopsyllus nicanus, Ctenocephalides felis, Stivalius klossi bispiniformis and Neopsylla dispar fukienensis). There was a significant difference in the prevalence of Bartonella among flea species, sex, hosts, regions and habitats. Five species of Bartonella fleas were identified based on sequencing and phylogenetic analyses targeting the gltA gene: B. tribocorum, B. queenslandensis, B. elizabethae, B. rochalimae and B. coopersplainsensis. CONCLUSIONS: There is a high prevalence and diversity of Bartonella infection in the seven species of fleas collected in Southeast China. The detection of zoonotic Bartonella species in this study, including B. tribocorum, B. elizabethae and B. rochalimae, raises public health concerns.


Asunto(s)
Infecciones por Bartonella , Bartonella , Infestaciones por Pulgas , Variación Genética , Insectos Vectores , Roedores , Siphonaptera , Animales , Bartonella/genética , Bartonella/aislamiento & purificación , Bartonella/clasificación , China/epidemiología , Siphonaptera/microbiología , Infecciones por Bartonella/epidemiología , Infecciones por Bartonella/veterinaria , Infecciones por Bartonella/microbiología , Infecciones por Bartonella/transmisión , Roedores/microbiología , Femenino , Infestaciones por Pulgas/epidemiología , Infestaciones por Pulgas/veterinaria , Infestaciones por Pulgas/parasitología , Insectos Vectores/microbiología , Masculino , Filogenia , ADN Bacteriano/genética , Enfermedades de los Roedores/epidemiología , Enfermedades de los Roedores/microbiología , Enfermedades de los Roedores/parasitología , Prevalencia
2.
Environ Sci Pollut Res Int ; 31(28): 40916-40924, 2024 Jun.
Artículo en Inglés | MEDLINE | ID: mdl-38834927

RESUMEN

Fleas, one of the most significant ectoparasites, play a crucial role as vectors in spreading zoonotic diseases globally. The Qinghai Province, as part of the Qinghai-Tibet Plateau, is one of the provinces in China with the largest number of flea species. In this study, we characterized the microbial communities of eighty-five adult fleas, belonging to nineteen species within four families (Ceratophyllidae, Ctenophthalmidae, Leptopsyllidae, and Pulicidae). We identified a total of 1162 unique operational taxonomic units at the genus level, with flea-borne pathogens such as Wolbachia, Bartonella, Rickettsia being the members of top abundant taxa. Except for comparison between Ctenophthalmidae and Leptopsyllidae families, the analyses of both alpha- and beta- diversity indicators suggested that bacterial diversity varied among flea families. This could be attributed to flea phylogeny, which also influenced by their geographical sites and animal hosts. Results of Linear discriminant analysis effect size (LEfSe) indicated that 29 genera in Ceratophylloidea, 11 genera in Ctenophthalmidae, 15 genera in Leptopsyllidae, and 22 genera in Pulicidae were significantly responsible for explaining the differences among the four flea families (linear discriminant analysis score > 2, P < 0.05). Phylogenetic Investigation of Communities by Reconstruction of Unobserved States (PICRUSt2) analyses showed that the functional pathways varied significantly across flea families, which was supported by the significant correlation between the functional pathways and the microbial communities.


Asunto(s)
Siphonaptera , Animales , Siphonaptera/microbiología , Tibet , Animales Salvajes , Microbiota , China , Filogenia
3.
mBio ; 15(6): e0012424, 2024 Jun 12.
Artículo en Inglés | MEDLINE | ID: mdl-38722159

RESUMEN

Transmission of Yersinia pestis by fleas depends on the formation of condensed bacterial aggregates embedded within a gel-like matrix that localizes to the proventricular valve in the flea foregut and interferes with normal blood feeding. This is essentially a bacterial biofilm phenomenon, which at its end stage requires the production of a Y. pestis exopolysaccharide that bridges the bacteria together in a cohesive, dense biofilm that completely blocks the proventriculus. However, bacterial aggregates are evident within an hour after a flea ingests Y. pestis, and the bacterial exopolysaccharide is not required for this process. In this study, we characterized the biochemical composition of the initial aggregates and demonstrated that the yersinia murine toxin (Ymt), a Y. pestis phospholipase D, greatly enhances rapid aggregation following infected mouse blood meals. The matrix of the bacterial aggregates is complex, containing large amounts of protein and lipid (particularly cholesterol) derived from the flea's blood meal. A similar incidence of proventricular aggregation occurred after fleas ingested whole blood or serum containing Y. pestis, and intact, viable bacteria were not required. The initial aggregation of Y. pestis in the flea gut is likely due to a spontaneous physical process termed depletion aggregation that occurs commonly in environments with high concentrations of polymers or other macromolecules and particles such as bacteria. The initial aggregation sets up subsequent binding aggregation mediated by the bacterially produced exopolysaccharide and mature biofilm that results in proventricular blockage and efficient flea-borne transmission. IMPORTANCE: Yersinia pestis, the bacterial agent of plague, is maintained in nature in mammal-flea-mammal transmission cycles. After a flea feeds on a mammal with septicemic plague, the bacteria rapidly coalesce in the flea's digestive tract to form dense aggregates enveloped in a viscous matrix that often localizes to the foregut. This represents the initial stage of biofilm development that potentiates transmission of Y. pestis when the flea later bites a new host. The rapid aggregation likely occurs via a depletion-aggregation mechanism, a non-canonical first step of bacterial biofilm development. We found that the biofilm matrix is largely composed of host blood proteins and lipids, particularly cholesterol, and that the enzymatic activity of a Y. pestis phospholipase D (Ymt) enhances the initial aggregation. Y. pestis transmitted by flea bite is likely associated with this host-derived matrix, which may initially shield the bacteria from recognition by the host's intradermal innate immune response.


Asunto(s)
Biopelículas , Fosfolipasa D , Siphonaptera , Yersinia pestis , Yersinia pestis/enzimología , Fosfolipasa D/metabolismo , Siphonaptera/microbiología , Biopelículas/crecimiento & desarrollo , Peste/microbiología , Peste/transmisión , Matriz Extracelular de Sustancias Poliméricas/química , Matriz Extracelular de Sustancias Poliméricas/microbiología , Matriz Extracelular de Sustancias Poliméricas/ultraestructura , Polisacáridos/metabolismo , Microscopía Electrónica de Transmisión , Proteoma/metabolismo , Animales , Ratones , Lípidos/análisis
4.
PLoS Negl Trop Dis ; 18(5): e0012202, 2024 May.
Artículo en Inglés | MEDLINE | ID: mdl-38814990

RESUMEN

INTRODUCTION: Plague continues to be a major public health concern in African countries. Several social practices and environmental conditions have been associated with the reoccurrence of bubonic plague, especially in places where the disease is prevalent. Therefore, it remains important to understand people knowledge, behavior and practices related to disease risks in order to identify factors that may hinder prevention and control strategies in the foci. METHODS AND RESULTS: A study survey of 100 households was conducted in Mbulu district to assess plague knowledge, factors that influence flea bite and measures used for rodent and flea control. Majority of participants (86%) were familiar with the plague disease and about (50%) mentioned swelling lymph nodes as a common symptom. Most of the participants (62%) claimed to observe human plague cases during the long rain season. The majority of participants (97%) reported to experience flea bite in their domestic settings, with most stating that they experienced more flea bites during the dry season. Houses with livestock had a greater likelihood of flea bite (OR = 2.7; 95% CI: 0.36-18.80, p = 0.267) compared to houses with no livestock. Furthermore, residents reported using both local and chemical methods to control rodents and flea inside houses. Most respondents preferred using local methods in flea control. Respondents stated that the efficacy of flea control methods being applied ranged from few days to several months. There was limited knowledge of the residual effects of the agricultural chemicals being used to control fleas among the surveyed community. CONCLUSION: Our study highlights the importance of raising awareness and adopting effective control methods for controlling fleas and lower the risk of plague transmission and other flea borne diseases in the local communities. Sensitization of the local community on the use of appropriate chemicals for flea control is urgent to avoid any potential long-term impacts of the residual effects on the health of the local communities.


Asunto(s)
Conocimientos, Actitudes y Práctica en Salud , Peste , Siphonaptera , Peste/epidemiología , Peste/prevención & control , Peste/transmisión , Tanzanía/epidemiología , Humanos , Animales , Femenino , Adulto , Masculino , Siphonaptera/microbiología , Persona de Mediana Edad , Adulto Joven , Encuestas y Cuestionarios , Roedores , Adolescente , Mordeduras y Picaduras de Insectos/epidemiología , Mordeduras y Picaduras de Insectos/prevención & control , Enfermedades Endémicas
5.
Front Cell Infect Microbiol ; 14: 1384284, 2024.
Artículo en Inglés | MEDLINE | ID: mdl-38725451

RESUMEN

Japanese spotted fever (JSF) is caused by Rickettsia japonica, mainly vectored by hard ticks. However, whether R. japonica can be transmitted by other arthropods remains unknown. Moreover, it is of interest to investigate whether other Rickettsia species cause spotted fever in endemic areas. In this study, a survey of Rickettsia species was performed in hematophagous arthropods (mosquitoes, tabanids, and ticks) from endemic areas for JSF in Hubei Province, central China. The results showed that the diversity and prevalence of Rickettsia species in mosquitoes are low, suggesting that mosquitoes may not be the vector of zoonotic Rickettsia species. A novel Rickettsia species showed a high prevalence (16.31%, 23/141) in tabanids and was named "Candidatus Rickettsia tabanidii." It is closely related to Rickettsia from fleas and mosquitoes; however, its pathogenicity in humans needs further investigation. Five Rickettsia species were identified in ticks. Rickettsia japonica, the agent of JSF, was detected only in Haemaphysalis longicornis and Haemaphysalis hystricis, suggesting that they may be the major vectors of R. japonica. Notably, two novel species were identified in H. hystricis ticks, one belonging to the spotted fever group and the other potentially belonging to the ancestral group. The latter one named "Candidatus Rickettsia hubeiensis" may provide valuable insight into the evolutionary history of Rickettsia.


Asunto(s)
Filogenia , Rickettsia , Rickettsiosis Exantemáticas , Animales , Rickettsia/aislamiento & purificación , Rickettsia/genética , Rickettsia/clasificación , China/epidemiología , Rickettsiosis Exantemáticas/microbiología , Rickettsiosis Exantemáticas/epidemiología , Garrapatas/microbiología , Humanos , Artrópodos/microbiología , ADN Bacteriano/genética , Culicidae/microbiología , ARN Ribosómico 16S/genética , Enfermedades Endémicas , Análisis de Secuencia de ADN , Siphonaptera/microbiología
6.
Trends Parasitol ; 40(4): 324-337, 2024 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-38458883

RESUMEN

Ctenocephalides felis, the cat flea, is among the most prevalent and widely dispersed vectors worldwide. Unfortunately, research on C. felis and associated pathogens (Bartonella and Rickettsia spp.) lags behind that of other vectors and vector-borne pathogens. Therefore, we aimed to review fundamental aspects of C. felis as a vector (behavior, epidemiology, phylogenetics, immunology, and microbiome composition) with an emphasis on key techniques and research avenues employed in other vector species. Future laboratory C. felis experimental infections with Bartonella, Rickettsia, and Wolbachia species/strains should examine the vector-pathogen interface utilizing contemporary visualization, transcriptomic, and gene-editing techniques. Further environmental sampling will inform the range and prevalence of C. felis and associated pathogens, improving the accuracy of vector and pathogen modeling to improve infection/infestation risk assessment and diagnostic recommendations.


Asunto(s)
Bartonella , Enfermedades de los Gatos , Ctenocephalides , Felis , Infestaciones por Pulgas , Rickettsia felis , Rickettsia , Siphonaptera , Animales , Gatos , Ctenocephalides/microbiología , Infestaciones por Pulgas/veterinaria , Infestaciones por Pulgas/epidemiología , Infestaciones por Pulgas/microbiología , Biología , Rickettsia felis/genética , Siphonaptera/microbiología
7.
Comp Immunol Microbiol Infect Dis ; 107: 102153, 2024 Apr.
Artículo en Inglés | MEDLINE | ID: mdl-38460359

RESUMEN

Climate change is causing many vectors of infectious diseases to expand their geographic distribution as well as the pathogens they transmit are also conditioned by temperature for their multiplication. Within this context, it is worth highlighting the significant role that fleas can play as vectors of important pathogenic bacteria. For this purpose, our efforts focused on detecting and identifying a total of 9 bacterial genera (Rickettsia sp.; Bartonella sp.; Yersinia sp.; Wolbachia sp., Mycobacterium sp., Leishmania sp., Borrelia sp., Francisella sp. and Coxiella sp.) within fleas isolated from domestic and peridomestic animals in the southwestern region of Spain (Andalusia). Over a 19-months period, we obtained flea samples from dogs, cats and hedgehogs. A total of 812 fleas was collected for this study. Five different species were morphologically identified, including C. felis, C. canis, S. cuniculi, P. irritans, and A. erinacei. Wolbachia sp. was detected in all five species identified in our study which a total prevalence of 86%. Within Rickettsia genus, two different species, R. felis and R. asembonensis were mainly identified in C. felis and A. erinacei, respectively. On the other hand, our results revealed a total of 131 fleas testing positive for the presence of Bartonella sp., representing a prevalence rate of 16% for this genus identifying two species B. henselae and B. clarridgeiae. Lastly, both Y. pestis and L. infantum were detected in DNA of P. irritans and C. felis, respectively isolated from dogs. With these data we update the list of bacterial zoonotic agents found in fleas in Spain, emphasizing the need to continue conducting future experimental studies to assess and confirm the potential vectorial role of certain synanthropic fleas.


Asunto(s)
Bartonella , Ctenocephalides , Felis , Infestaciones por Pulgas , Rickettsia felis , Rickettsia , Siphonaptera , Animales , Perros , Siphonaptera/microbiología , España/epidemiología , Ctenocephalides/genética , Rickettsia felis/genética , Infestaciones por Pulgas/epidemiología , Infestaciones por Pulgas/veterinaria , Infestaciones por Pulgas/microbiología , Bartonella/genética
8.
PLoS Negl Trop Dis ; 18(3): e0012036, 2024 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-38452122

RESUMEN

Plague is a flea-borne fatal disease caused by the bacterium Yersinia pestis, which persists in rural Madagascar. Although fleas parasitizing rats are considered the primary vectors of Y. pestis, the human flea, Pulex irritans, is abundant in human habitations in Madagascar, and has been found naturally infected by the plague bacterium during outbreaks. While P. irritans may therefore play a role in plague transmission if present in plague endemic areas, the factors associated with infestation and human exposure within such regions are little explored. To determine the socio-ecological risk factors associated with P. irritans infestation in rural households in plague-endemic areas of Madagascar, we used a mixed-methods approach, integrating results from P. irritans sampling, a household survey instrument, and an observational checklist. Using previously published vectorial capacity data, the minimal P. irritans index required for interhuman bubonic plague transmission was modeled to determine whether household infestations were enough to pose a plague transmission risk. Socio-ecological risk factors associated with a high P. irritans index were then identified for enrolled households using generalized linear models. Household flea abundance was also modeled using the same set of predictors. A high P. irritans index occurred in approximately one third of households and was primarily associated with having a traditional dirt floor covered with a plant fiber mat. Interventions targeting home improvement and livestock housing management may alleviate flea abundance and plague risk in rural villages experiencing high P. irritans infestation. As plague-control resources are limited in developing countries such as Madagascar, identifying the household parameters and human behaviors favoring flea abundance, such as those identified in this study, are key to developing preventive measures that can be implemented at the community level.


Asunto(s)
Infestaciones por Pulgas , Peste , Siphonaptera , Yersinia pestis , Humanos , Animales , Ratas , Peste/microbiología , Madagascar/epidemiología , Siphonaptera/microbiología , Infestaciones por Pulgas/epidemiología , Factores de Riesgo
9.
Acta Parasitol ; 69(1): 776-784, 2024 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-38418764

RESUMEN

INTRODUCTION: To date, a total of 2574 validated flea species have been discovered. Vermipsyllidae is a family of fleas that comprises at least eight species. Vermipsylla is a genus of the family Vermipsyllidae within the order Siphonaptera of fleas. Here a novel Vermipsylla species was described, and rickettsial agent was also detected in it. METHODS: A total of 128 fleas were collected directly from 260 pastured sheep in China. Of these, eight representative fleas (four males and four females) were identified by key morphological features. Meanwhile, 120 flea DNAs, including six flea samples for molecular taxonomy, were subjected to Rickettsia spp. DNA detection. The molecular identity of fleas was determined by amplification and sequenmce analysis of four genetic markers (the 28S rDNA genes, the 18S rDNA genes, the mitochondrial cytochrome c oxidase subunit I and subunit II). In addition, five Rickettsia-specific gene fragments were used to identify the species of the rickettsial agents. The amplified products were sequenced and phylogenetically analyzed. RESULTS: The morphological characteristics of the flea species identified in this study were similar to Vermipsylla alakurt, but presented difference in hair number of the metepimeron, the third tergum, the genitals and the tibiae of hind leg. The 18S rDNA, 28S rDNA and COII genetic markers from fleas showed the highest identity to those of V. alakurt, shared 98.45% (954/969), 95.81% (892/931) and 85.86% (571/665) similarities, respectively. However, the COI sequence showed the highest identity to that of Dorcadia ioffi with 88.48% (576/651) similarity. Rickettsia raoutii tested positive in 14.17% (17/120) flea DNA samples. CONCLUSION: Our study reports the detection of R. raoultii in V. alakurt-like fleas infesting sheep in China.


Asunto(s)
Infestaciones por Pulgas , Filogenia , Rickettsia , Enfermedades de las Ovejas , Siphonaptera , Animales , Rickettsia/aislamiento & purificación , Rickettsia/genética , Rickettsia/clasificación , Siphonaptera/microbiología , Ovinos , China , Enfermedades de las Ovejas/parasitología , Enfermedades de las Ovejas/microbiología , Infestaciones por Pulgas/veterinaria , Infestaciones por Pulgas/parasitología , Masculino , Femenino , Infecciones por Rickettsia/veterinaria , Infecciones por Rickettsia/microbiología , ADN Ribosómico/genética , ADN Ribosómico/química , ADN Bacteriano/genética
10.
Vector Borne Zoonotic Dis ; 24(4): 201-213, 2024 04.
Artículo en Inglés | MEDLINE | ID: mdl-38422214

RESUMEN

Purpose: Flea-borne rickettsioses, collectively referred to as a term for etiological agents Rickettsia felis, Rickettsia typhi, and RFLOs (R. felis-like organisms), has become a public health concern around the world, specifically in the United States. Due to a shared arthropod vector (the cat flea) and clinical signs, discriminating between Rickettsia species has proven difficult. While the effects of microbial coinfections in the vector can result in antagonistic or synergistic interrelationships, subsequently altering potential human exposure and disease, the impact of bacterial interactions within flea populations remains poorly defined. Methods: In this study, in vitro and in vivo systems were utilized to assess rickettsial interactions in arthropods. Results: Coinfection of both R. felis and R. typhi within a tick-derived cell line indicated that the two species could infect the same cell, but distinct growth kinetics led to reduced R. felis growth over time, regardless of infection order. Sequential flea coinfections revealed the vector could acquire both Rickettsia spp. and sustain coinfection for up to 2 weeks, but rickettsial loads in coinfected fleas and feces were altered during coinfection. Conclusion: Altered rickettsial loads during coinfection suggest R. felis and R. typhi interactions may enhance the transmission potential of either agent. Thus, this study provides a functional foundation to disentangle transmission events propelled by complex interspecies relationships during vector coinfections.


Asunto(s)
Enfermedades de los Gatos , Coinfección , Ctenocephalides , Felis , Infestaciones por Pulgas , Rickettsia felis , Rickettsia , Siphonaptera , Animales , Humanos , Gatos , Rickettsia typhi , Ctenocephalides/microbiología , Coinfección/veterinaria , Siphonaptera/microbiología , Infestaciones por Pulgas/veterinaria
11.
Vector Borne Zoonotic Dis ; 24(5): 308-320, 2024 May.
Artículo en Inglés | MEDLINE | ID: mdl-38232706

RESUMEN

Background: Fleas are ectoparasitic insects with holometabolous development. It has a hematophagous habit with mouthparts adapted to sting and suck its hosts. There are about 3000 species in the world, ∼61 in Brazil, and 19 in Rio Grande do Sul state. The objective of the research is to catalog the diversity of fleas recorded in the state, their respective hosts, and endosymbionts. Materials and Methods: To this end, a search was carried out in the scientific literature, from articles, books, to abstracts submitted to congresses. Results: The 19 species of fleas occurring in Rio Grande do Sul are divided into 7 families and 10 genera. These ectoparasites, in addition to being found in the environment, were associated with 10 different families of hosts in Rio Grande do Sul, and on the endosymbiont, agents found associated with fleas, there were 7 different species. The main agents researched in the state are Rickettsia spp. and Bartonella spp. The relationships between parasites, hosts, environment, and etiological agents present different scenarios, whether anthropized or conserved, but unknown. Sometimes, this overlap, a factor that aggravates the possibility of spillovers, either from cosmopolitan fleas in these conserved areas, or from their endosymbionts. Conclusion: Thus, it is important to characterize the environment so that the complexities of each location are known for the adoption of environmental and public health policies in each case. The challenges are extensive, but necessary in view of the One Health perspective.


Asunto(s)
Infestaciones por Pulgas , Siphonaptera , Animales , Siphonaptera/clasificación , Siphonaptera/microbiología , Brasil/epidemiología , Infestaciones por Pulgas/veterinaria , Infestaciones por Pulgas/parasitología , Infestaciones por Pulgas/epidemiología , Salud Única , Humanos , Biodiversidad , Interacciones Huésped-Parásitos
12.
Am J Trop Med Hyg ; 110(1): 150-154, 2024 Jan 03.
Artículo en Inglés | MEDLINE | ID: mdl-38052087

RESUMEN

Flea-borne typhus is a vector-borne disease caused by Rickettsia typhi that occurs worldwide, except in Antarctica. In the United States, most cases are restricted to California, Hawaii, and Texas. The syndrome is characterized by nonspecific signs and symptoms: fever, headache, rash, arthralgia, cough, hepatosplenomegaly, diarrhea, and abdominal pain. Although flea-borne typhus can cause pulmonary, neurological, and renal complications, the cardiovascular system is rarely affected. We present a case of endocarditis resulting from flea-borne typhus diagnosed by blood microbial cell-free DNA testing that required valve replacement and antibiotic therapy for 6 months. In addition, we review 20 cases of presumed and confirmed cardiovascular manifestations resulting from flea-borne typhus in the literature.


Asunto(s)
Siphonaptera , Tifus Endémico Transmitido por Pulgas , Tifus Epidémico Transmitido por Piojos , Humanos , Animales , Tifus Epidémico Transmitido por Piojos/tratamiento farmacológico , Tifus Endémico Transmitido por Pulgas/diagnóstico , Rickettsia typhi , Antibacterianos/uso terapéutico , Siphonaptera/microbiología
13.
Med Vet Entomol ; 38(1): 23-37, 2024 Mar.
Artículo en Inglés | MEDLINE | ID: mdl-37736686

RESUMEN

Outbreaks of acute encephalitis syndrome (AES) with unknown aetiology are reported every year in Gorakhpur district, Uttar Pradesh, India, and Orientia tsutsugamushi, the rickettsial pathogen, responsible for scrub typhus has been attributed as the primary cause of AES problem. However, information on the prevalence of other rickettsial infections is lacking. Hence, this study was carried out to assess any occurrence of tick- and flea-borne rickettsial agents in villages reporting AES cases in this district. In total, 825 peridomestic small mammals were trapped, by setting 9254 Sherman traps in four villages with a trap success rate of 8.9%. The Asian house shrew, Suncus murinus, constituted the predominant animal species (56.2%) and contributed to the maximum number (87.37%) of ectoparasites. In total, 1552 ectoparasites comprising two species of ticks and one species each of flea and louse were retrieved from the trapped rodents/shrews. Rhipicephalus sanguineus, the brown dog tick, was the predominant species retrieved from the trapped rodents/shrews, and the overall infestation rate was 1.75 per animal. In total, 4428 ectoparasites comprising five tick species, three louse species and one flea species were collected from 1798 domestic animals screened. Rhipicephalus microplus was the predominant tick species collected from the domestic animals. The cat flea, Ctenocephalides felis, constituted 1.5% of the total ectoparasites. Of all the ectoparasite samples (5980) from domestic animals and rodents, tested as 1211 pools through real-time PCR assays, 64 pools were positive for 23S rRNA gene of rickettsial agents. The PCR-positive samples were subjected to multi-locus sequence typing (MLST). In BLAST and phylogenetic analysis, the ectoparasites were found to harbour Rickettsia asembonensis (n = 9), Rickettsia conorii (n = 3), Rickettsia massiliae (n = 29) and Candidatus Rickettsia senegalensis (n = 1). A total of 22 pools were detected to have multiple rickettsial agents. The prevalence of fleas and high abundance of tick vectors with natural infections of rickettsial agents indicates the risk of transmission of tick- and flea-borne rickettsial diseases in rural villages of Gorakhpur. Further epidemiological studies are required to confirm the transmission of these agents to humans.


Asunto(s)
Encefalopatía Aguda Febril , Enfermedades de los Gatos , Ctenocephalides , Enfermedades de los Perros , Rhipicephalus sanguineus , Infecciones por Rickettsia , Rickettsia , Siphonaptera , Perros , Gatos , Animales , Humanos , Siphonaptera/microbiología , Tipificación de Secuencias Multilocus/veterinaria , Musarañas/genética , Musarañas/microbiología , Encefalopatía Aguda Febril/veterinaria , Filogenia , Prevalencia , Rhipicephalus sanguineus/genética , Rickettsia/genética , Infecciones por Rickettsia/epidemiología , Infecciones por Rickettsia/veterinaria , Infecciones por Rickettsia/microbiología , Ctenocephalides/microbiología
14.
J Med Entomol ; 61(1): 201-211, 2024 01 12.
Artículo en Inglés | MEDLINE | ID: mdl-38038662

RESUMEN

Plague is a zoonotic vector-borne disease caused by the bacterium Yersinia pestis. In Madagascar, it persists in identified foci, where it is a threat to public health generally from September to April. A more complete understanding of how the disease persists could guide control strategies. Fleas are the main vector for transmission between small mammal hosts and humans, and fleas likely play a role in the maintenance of plague. This study characterized the dynamics of flea populations in plague foci alongside the occurrence of human cases. From 2018 to 2020, small mammals were trapped at sites in the central Highlands of Madagascar. A total of 2,762 small mammals were captured and 5,295 fleas were collected. The analysis examines 2 plague vector species in Madagascar (Synopsyllus fonquerniei and Xenopsylla cheopis). Generalized linear models were used to relate flea abundance to abiotic factors, with adjustments for trap location and flea species. We observed significant effects of abiotic factors on the abundance, intensity, and infestation rate by the outdoor-associated flea species, S. fonquerniei, but weak seasonality for the indoor-associated flea species, X. cheopis. A difference in the timing of peak abundance was observed between the 2 flea species during and outside the plague season. While the present study did not identify a clear link between flea population dynamics and plague maintenance, as only one collected X. cheopis was infected, the results presented herein can be used by local health authorities to improve monitoring and control strategies of plague vector fleas in Madagascar.


Asunto(s)
Infestaciones por Pulgas , Peste , Siphonaptera , Yersinia pestis , Animales , Humanos , Peste/microbiología , Siphonaptera/microbiología , Insectos Vectores/microbiología , Infestaciones por Pulgas/epidemiología , Infestaciones por Pulgas/veterinaria , Mamíferos , Dinámica Poblacional
15.
Am J Trop Med Hyg ; 110(1): 142-149, 2024 Jan 03.
Artículo en Inglés | MEDLINE | ID: mdl-38109767

RESUMEN

Flea-borne typhus (FBT), also referred to as murine typhus, is an acute febrile disease in humans caused by the bacteria Rickettsia typhi. Currently, cases of FBT are reported for public health surveillance purposes (i.e., to detect incidence and outbreaks) in a few U.S. states. In California, healthcare providers and testing laboratories are mandated to report to their respective local public health jurisdictions whenever R. typhi or antibodies reactive to R. typhi are detected in a patient, who then report cases to state health department. In this study, we characterize the epidemiology of flea-borne typhus cases in California from 2011 to 2019. A total of 881 cases were reported during this period, with most cases reported among residents of Los Angeles and Orange Counties (97%). Demographics, animal exposures, and clinical courses for case patients were summarized. Additionally, spatiotemporal cluster analyses pointed to five areas in southern California with persistent FBT transmission.


Asunto(s)
Siphonaptera , Tifus Endémico Transmitido por Pulgas , Tifus Epidémico Transmitido por Piojos , Animales , Ratones , Humanos , Tifus Endémico Transmitido por Pulgas/diagnóstico , Rickettsia typhi , California/epidemiología , Siphonaptera/microbiología
17.
Acta Trop ; 248: 107034, 2023 Dec.
Artículo en Inglés | MEDLINE | ID: mdl-37793492

RESUMEN

Rickettsia felis is an emerging flea-borne spotted fever pathogen that causes febrile illness in humans. In Vietnam, R. felis was detected in hospitalized patients, but there is no information on its presence in the Vietnamese community. This cross-sectional study aimed to determine the presence of R. felis in humans of the Central Highlands of Vietnam. A total of 158 blood and 213 serum samples were subjected to PCR and IFAT, respectively, to detect the presence of R. felis DNA and antibodies against R. felis. PCR assays detected R. felis DNA in four out of 158 blood samples, accounting for a prevalence of 2.53 % (95 % CI: 0.81 %-6.76 %). Phylogenetic analysis indicated the presence of R. felis and R. felis genotype RF2125 in the communities in the Central Highlands of Vietnam. The result of IFAT identified seven out of 213 serum samples (3.29 %, 95 % CI: 1.45 %-6.93 %) positive for antibodies against R. felis. This study was the first to demonstrate the presence of active R. felis infections in the communities in the Central Highlands of Vietnam utilizing both molecular and serological methods.


Asunto(s)
Infecciones por Rickettsia , Rickettsia felis , Rickettsia , Siphonaptera , Animales , Humanos , Rickettsia felis/genética , Infecciones por Rickettsia/microbiología , Filogenia , Estudios Transversales , Vietnam/epidemiología , Siphonaptera/microbiología , ADN , Rickettsia/genética
18.
Comp Immunol Microbiol Infect Dis ; 101: 102042, 2023 Oct.
Artículo en Inglés | MEDLINE | ID: mdl-37660454

RESUMEN

The genus Bartonella (Hyphomicrobiales: Bartonellaceae) encompasses facultative intracellular α-proteobacteria that parasite erythrocytes and endothelial cells from a wide range of vertebrate hosts and can cause disease in animals and humans. Considering the large diversity of vertebrate species that may act as reservoirs and arthropod species that may be associated with Bartonella transmission, the exposure of animals and humans to these microorganisms is likely underestimated. The present study aimed to investigate the occurrence of Bartonella sp. in wild tapirs (Tapirus terrestris; Perissodactyla: Tapiridae) from two biomes in Brazil: Pantanal and Cerrado. Ninety-nine GPS-monitored wild tapirs were sampled in Pantanal (n = 61/99) and Cerrado (n = 38/99). A qPCR (quantitative real-time polymerase chain reaction) assay targeting the nuoG gene was used for the screening for Bartonella spp. DNA. Positive samples were additionally subjected to conventional PCR assays targeting five molecular markers (ribC, gltA, rpoB, groEL, ITS). Eight (8/99; 08,08%) animals were positive in the qPCR assay for Bartonella spp.: 7 from Cerrado (7/8; 87.5%) and 1 from Pantanal (1/8; 12.5%). The 5 Bartonella ribC sequences obtained from tapirs' blood samples grouped together with Bartonella henselae obtained from cats, humans, wild felids and Ctenocephalides felis (Siphonaptera: Pulicidae) fleas. To the best of author's knowledge, this is the first report of Bartonella sp. in Tapirus terrestris. This finding contributes to the understanding of the occurrence of B henselae in wild mammals from Brazil as well as expands the knowledge regarding the potential vector-borne pathogens that may affect wild tapis from Cerrado and Pantanal biomes.


Asunto(s)
Infecciones por Bartonella , Bartonella , Siphonaptera , Animales , Humanos , Bartonella/genética , Brasil/epidemiología , Células Endoteliales , Mamíferos/genética , Siphonaptera/microbiología , Perisodáctilos/genética , Reacción en Cadena en Tiempo Real de la Polimerasa/veterinaria , Infecciones por Bartonella/epidemiología , Infecciones por Bartonella/veterinaria , Infecciones por Bartonella/diagnóstico
20.
Microbiol Spectr ; 11(4): e0020323, 2023 08 17.
Artículo en Inglés | MEDLINE | ID: mdl-37466430

RESUMEN

Yersinia pestis is the etiological agent of plague. Marmota himalayana of the Qinghai-Tibetan plateau is the primary host of flea-borne Y. pestis. This study is the report of isolation of Mu-like bacteriophages of Y. pestis from M. himalayana. The isolation and characterization of four Mu-like phages of Y. pestis were reported, which were named as vB_YpM_3, vB_YpM_5, vB_YpM_6, and vB_YpM_23 according to their morphology. Comparative genome analysis revealed that vB_YpM_3, vB_YpM_5, vB_YpM_6, and vB_YpM_23 are phylogenetically closest to Escherichia coli phages Mu, D108 and Shigella flexneri phage SfMu. The role of LPS core structure of Y. pestis in the phages' receptor was pinpointed. All the phages exhibit "temperature dependent infection," which is independent of the growth temperature of the host bacteria and dependent of the temperature of phage infection. The phages lyse the host bacteria at 37°C, but enter the lysogenic cycle and become prophages in the chromosome of the host bacteria at 26°C. IMPORTANCE Mu-like bacteriophages of Y. pestis were isolated from M. himalayana of the Qinghai-Tibetan plateau in China. These bacteriophages have a unique temperature dependent life cycle, follow a lytic cycle at the temperature of warm-blooded mammals (37°Ð¡), and enter the lysogenic cycle at the temperature of its flea-vector (26°Ð¡). A switch from the lysogenic to the lytic cycle occurred when lysogenic bacteria were incubated from lower temperature to higher temperature (initially incubating at 26°C and shifting to 37°C). It is speculated that the temperature dependent lifestyle of bacteriophages may affect the population dynamics and pathogenicity of Y. pestis.


Asunto(s)
Bacteriófagos , Peste , Siphonaptera , Yersinia pestis , Animales , Yersinia , Bacteriófagos/genética , Temperatura , Peste/microbiología , Yersinia pestis/genética , Siphonaptera/microbiología , Receptores de Bacteriógrafos , Mamíferos
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