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119 result(s) for "Babesia spp"
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Deciphering Babesia-Vector Interactions
Understanding host-pathogen-tick interactions remains a vitally important issue that might be better understood by basic research focused on each of the dyad interplays. Pathogens gain access to either the vector or host during tick feeding when ticks are confronted with strong hemostatic, inflammatory and immune responses. A prominent example of this is the spp.-tick-vertebrate host relationship. spp. are intraerythrocytic apicomplexan organisms spread worldwide, with a complex life cycle. The presence of transovarial transmission in almost all the species is the main difference between their life cycle and that of other piroplasmida. With more than 100 species described so far, are the second most commonly found blood parasite of mammals after trypanosomes. The prevalence of spp. infection is increasing worldwide and is currently classified as an emerging zoonosis. and are the most frequent etiological agents associated with human babesiosis in North America and Europe, respectively. Although the -tick system has been extensively researched, the currently available prophylactic and control methods are not efficient, and chemotherapeutic treatment is limited. Studying the molecular changes induced by the presence of in the vector will not only elucidate the strategies used by the protozoa to overcome mechanical and immune barriers, but will also contribute toward the discovery of important tick molecules that have a role in vector capacity. This review provides an overview of the identified molecules involved in -tick interactions, with an emphasis on the fundamentally important ones for pathogen acquisition and transmission.
Detection of Ticks and Tick-Borne Pathogens of Urban Stray Dogs in South Africa
This study aimed to identify ticks infesting dogs admitted to the Potchefstroom Animal Welfare Society (PAWS) and to detect tick-borne pathogens they are harbouring. A total of 592 ticks were collected from 61 stray dogs admitted to PAWS originating from several suburbs in and near Potchefstroom, South Africa. The dog ticks were identified as Haemaphysalis elliptica (39%) and Rhipicephalus sanguineus (61%) by both morphological and DNA analyses. Of these ticks, H. elliptica consisted of 67.5% (156/231) and 32.5% (75/231) female and male ticks, respectively, whilst R. sanguineus consisted of 48.5% (175/361) and 51.5% (186/361) female and male ticks, respectively. Microscopic examination of blood smears from engorged female ticks indicated overall occurrences of 0.5% (1/204) for Babesia spp. from R. sanguineus, 1% (2/204) of Anaplasma spp. from H. elliptica, and 22% (45/204) of Rickettsia spp. from both H. elliptica and R. sanguineus. Using pooled samples molecular detection of tick-borne pathogens indicated overall occurrences of 1% (1/104) for A. phagocytophilum in H. elliptica, 9.6% (10/104) of Rickettsia spp. in H. elliptica and R. sanguineus, 5.8% (6/104) of Ehrlichia canis in H. elliptica and R. sanguineus, and 13.5% (14/104) of Coxiella spp. in both H. elliptica and R. sanguineus. Additionally, PCR detected 6.5% (2/31) of Coxiella spp. DNA from H. elliptica eggs. Our data indicate that urban stray dogs admitted at PAWS are infested by H. elliptica and R. sanguineus ticks which are harbouring several pathogenic organisms known to cause tick-borne diseases.
Prevalence of gastro-intestinal and haemoparasitic infections among domestic cats of Kerala
The population of domesticated cats has drastically increased during the last decades. With the recently identified rise in cat population an upsurge in the parasitic infections associated with domestic cats is evident. A total of 122 domestic cats were screened for gastro-intestinal and haemoparasites. Screening for gastro-intestinal parasites revealed an overall prevalence of 19 per cent (23/122). Ancylostoma spp. was the major gastro-intestinal parasite noticed (61 per cent) followed by Toxocara cati (13.04 per cent) , Isospora spp. (8.7 per cent), Diphyllobothrium latum (4.35 per cent) and mixed infection of these (13 per cent). Blood smear examination revealed Cytauxzoon spp. in three cats (2.46 per cent) and Babesia spp. in two cats (1.6 per cent). None of the cats were positive for gamonts of Hepatozoon spp. Molecular analysis revealed Hepatozoon spp. infection in seven cats (5.7 per cent), Cytauxzoon spp. in 29 cats (23.8 per cent) and Babesia spp. in two cats (1.6 per cent). Present study highlights the inevitability of molecular techniques in the identification of haemoparasites. Establishment of proper preventive measures are required to control parasitic infection among domestic cats.
Assessment of Babesia spp. prevalence in various domestic animals across Southern Punjab, Pakistan
Abstract Parasitic diseases, notably babesiosis, exert a substantial impact on the global cattle industry, posing challenges to commerce, economies, and human health. This study, conducted in Southern Punjab, Pakistan, aimed to assess the prevalence of Babesia spp. across various livestock species using microscopic and PCR methods. A total of 180 blood samples (60 from each district) were systematically collected from apparently healthy animals, with 36 samples obtained from each domestic animal species, including camel, cattle, buffalo, goat, and sheep, noting that 12 samples were collected from each district for each animal species. Overall prevalence was determined to be 32.8% (59/180), with varying rates among species: 25.0% in cattle, 41.66% in buffalo, 30.55% in goats, 33.3% in sheep, and 33.3% in camels. Microscopic examination revealed slightly varied infection rates among large and small domestic animals (22.2%), while PCR results indicated a 32.8% overall infection rate in both large and small domestic animals, with no statistical significance. District-wise analysis showed regional variations, with Muzaffargarh recording a prevalence rate of 23.33% through microscopic examination, while Lodhran and Bahawalpur recorded 21.67%. PCR results revealed higher rates (38.33%, 26.67%, and 33.33%, respectively), underlining the importance of employing PCR for accurate detection. Examining ruminant types, large ruminants exhibited a 32.4% infection rate, while small domestic animals showed 33.3%, with no significant difference (p=0.897). District-wise prevalence showcased significant variation, with Muzaffargarh demonstrating a 25% prevalence, Lodhran 22%, and Bahawalpur 22%, through microscopic examination. PCR results displayed 38.33%, 27%, and 33.3%, respectively, with no statistical significance. Detailed analysis of individual districts highlighted variations in infection rates among camels, cattle, buffalo, goats, and sheep. The binomial test indicated significant differences through microscopic analysis (P=0.011) but non-significant variations through PCR (P=0.065), emphasizing the precision of PCR. Regional variations in prevalence, notably with Punjab exhibiting the highest frequency (33.87%) and KPK the lowest (13.24%), suggest potential influences from varying veterinary practices and environmental factors. This study underscores the pivotal role of PCR alongside microscopy for accurate babesiosis diagnosis. These findings contribute to the broader understanding of babesiosis prevalence, emphasizing the necessity of advanced molecular techniques for informed control measures. Resumo Doenças parasitárias, especialmente a babesiose, exercem um impacto substancial na indústria global de bovinos, apresentando desafios ao comércio, às economias e à saúde humana. Este estudo, realizado no Sul do Punjab, Paquistão, teve como objetivo avaliar a prevalência de Babesia spp. em várias espécies de animais domésticos, utilizando métodos microscópicos e de PCR. Um total de 180 amostras de sangue (60 de cada distrito) foi coletado sistematicamente de animais aparentemente saudáveis, com 36 amostras obtidas de cada espécie de animal doméstico, incluindo camelo, gado, búfalo, cabra e ovelha, observando que 12 amostras foram coletadas de cada distrito para cada espécie de animal. A prevalência global foi determinada em 32,8% (59/180), com taxas variáveis entre as espécies: 25,0% em bovinos, 41,66% em búfalos, 30,55% em cabras, 33,3% em ovelhas e 33,3% em camelos. A análise microscópica revelou taxas de infecção ligeiramente variadas entre animais domésticos grandes e pequenos (22,2%), enquanto os resultados da PCR indicaram uma taxa global de infecção de 32,8% em ambos os grupos, sem significância estatística. A análise por distrito mostrou variações regionais, com Muzaffargarh registrando uma taxa de prevalência de 23,33% através de exame microscópico, enquanto Lodhran e Bahawalpur registraram 21,67%. Resultados da PCR revelaram taxas mais altas (38,33%, 26,67% e 33,33%, respectivamente), destacando a importância da PCR para detecção precisa. Ao examinar tipos de ruminantes, ruminantes grandes apresentaram uma taxa de infecção de 32,4%, enquanto animais domésticos pequenos mostraram 33,3%, sem diferença significativa (p=0,897). A prevalência por distrito mostrou variação significativa, com Muzaffargarh demonstrando uma prevalência de 25%, Lodhran 22% e Bahawalpur 22%, através de exame microscópico. Resultados da PCR exibiram 38,33%, 27% e 33,3%, respectivamente, sem significância estatística. Análise detalhada dos distritos individuais destacou variações nas taxas de infecção entre camelos, bovinos, búfalos, cabras e ovelhas. O teste binomial indicou diferenças significativas através da análise microscópica (P=0,011), mas variações não significativas através da PCR (P=0,065), enfatizando a precisão da PCR. Variações regionais na prevalência, notadamente com Punjab exibindo a maior frequência (33,87%) e KPK a menor (13,24%), sugerem influências potenciais de práticas veterinárias variadas e fatores ambientais. Este estudo destaca o papel fundamental da PCR juntamente com a microscopia para um diagnóstico preciso da babesiose. Essas descobertas contribuem para uma compreensão mais ampla da prevalência da babesiose, enfatizando a necessidade de técnicas moleculares avançadas para medidas de controle informadas.
Theileria luwenshuni and Novel Babesia spp. Infections in Humans, Yunnan Province, China
Piroplasmid parasites such as Theileria luwenshuni protozoa pose a global threat to both animal and human health. However, human theileriosis remains underexplored compared to infections caused by Plasmodium and Babesia species parasites. We investigated potential hemoparasite infections among 1,721 persons with fever, anemia, or both in Yunnan Province, China. Molecular detection identified 13 cases positive for T. luwenshuni protozoa, of which 5 patients were further confirmed by Western blot antibody analysis. We also identified 6 babesiosis cases, 3 infections with B. microti and 3 with novel Babesia spp. Subsequent vector and host investigations in the vicinity of the index cases revealed T. luwenshuni protozoa in 1 tick and 53 livestock animals. Of note, 3.3% combined vector-host samples tested positive for genetically diverse Babesia species. Our findings highlight the endemic circulation of T. luwenshuni and Babesia spp. parasites in southwest China, underscoring their importance as emerging public health concerns.
Efficacy and mechanism of action of cipargamin as an antibabesial drug candidate
Babesiosis is a disease brought on by intraerythrocytic parasites of the genus Babesia . Current chemotherapies are accompanied by side effects and parasite relapse. Therefore, it is crucial to develop highly effective drugs against Babesia . Cipargamin (CIP) has shown inhibition against apicomplexan parasites, mainly Plasmodium and Toxoplasma . This study evaluated the growth-inhibiting properties of CIP against Babesia spp. and investigated the mechanism of CIP on B. gibsoni . The half inhibitory concentration (IC 50 ) values of CIP against the in vitro growth of B. bovis and B. gibsoni were 20.2 ± 1.4 and 69.4 ± 2.2 nM, respectively. CIP significantly inhibited the growth of B. microti and B. rodhaini in vivo. Resistance was conferred by L921V and L921I mutations in BgATP4, which reduced the sensitivity to CIP by 6.1- and 12.8-fold. The inhibitory potency of CIP against BgATP4-associated ATPase activity was moderately reduced in mutant strains, with a 1.3- and 2.4-fold decrease in BgATP4 L921V and BgATP4 L921I , respectively, compared to that of BgATP4 WT . An in silico investigation revealed reductions in affinity for CIP binding to BgATP4 L921V and BgATP4 L921I compared to BgATP4 WT . Resistant strains showed no significant cross-resistance to atovaquone or tafenoquine succinate (TQ), with less than a onefold change in IC 50 values. Combining CIP with TQ effectively eliminated B. microti infection in SCID mice with no relapse, and parasite DNA was not detected by qPCR within 90 days post-infection. Our findings reveal the efficacy of CIP as an antibabesial agent, its limitations as a monotherapy due to resistance development, and the potential of combination therapy with TQ to overcome said resistance and achieve complete parasite clearance.
A survey for piroplasmids in questing Ixodes fuscipes ticks reveals undescribed Babesia lineages in Uruguay
Background Ixodes fuscipes is a tick species found in the Southern Cone of America and the only member of the Ixodes ricinus complex present in Uruguay. Members of this complex are particularly recognized as vectors of diseases affecting human health, such as babesiosis, caused by parasites of the genus Babesia (Apicomplexa: Piroplasmida). However, even though potential hosts of I. fuscipes in Uruguay (rodents, birds, and artiodactyls) are known carriers of Babesia species, the potential role of I. fuscipes as a vector of piroplasmids has not been studied. Methods In this study, questing I. fuscipes ticks were collected from five locations in Uruguay, and the presence of piroplasmid DNA was assessed using polymerase chain reaction (PCR) to amplify fragments of the small subunit ribosomal RNA ( 18S rRNA) and cytochrome c oxidase subunit 1 ( COI ) genes. Results A total of 953 ticks (larvae, nymphs, and adults) were collected; 14 samples (two larval pools and 12 nymphs) tested positive. Genetic analyses using 18S rDNA and COI sequences revealed the presence of undescribed Babesia lineages, belonging to the Babesia odocoilei clade and others to the Babesia microti sensu stricto clade. Conclusions This work represents the first association of Babesia spp. with I. fuscipes and highlights the importance of this type of study to detect and mitigate the emergence of diseases associated with these arthropods. Graphical Abstract
Molecular detection and genetic diversity of bovine Babesia spp., Theileria orientalis, and Anaplasma marginale in beef cattle in Thailand
Babesia spp., Theileria orientalis, and Anaplasma marginale are significant tick-borne pathogens that affect the health and productivity of cattle in tropical and subtropical areas. In this study, we used PCR to detect the presence of Babesia bovis, Babesia bigemina, and T. orientalis in 279 beef cattle from Western Thailand and A. marginale in 608 beef cattle from the north, northeastern, and western regions. The PCRs were performed using species-specific primers based on the B. bovis spherical body protein 2 (BboSBP2), B. bigemina rhoptry-associated protein 1a (BbiRAP-1a), T. orientalis major piroplasm surface protein (ToMPSP), and A. marginale major surface protein 4 (AmMSP4) genes. To determine the genetic diversity of the above parasites, amplicons of B. bovis and B. bigemina ITS1-5.8s rRNA gene-ITS2 regions (B. bovis ITS, B. bigemina ITS), ToMPSP, and AmMSP4 genes were sequenced for phylogenetic analysis. PCR results revealed that the prevalence of B. bovis, B. bigemina, T. orientalis, and A. marginale in the Western region was 11.1, 12.5, 7.8, and 39.1 %, respectively. Coinfections of two or three parasites were observed in 17.9 % of the animals sampled. The study revealed that the prevalence of A. marginale in the western region was higher than in the north and northeastern regions (7 %). Sequence analysis showed the BboSBP2 gene to be more conserved than B. bovis ITS in the different isolates and, similarly, the BbiRAP-1a was more conserved than B. bigemina ITS. In the phylogenetic analysis, T. orientalis MPSP sequences were classified into types 3, 5, and 7 as previously reported. A. marginale MSP4 gene sequences shared high identity and similarity with each other and clustered with isolates from other countries. This study provides information on the prevalence and genetic diversity of tick-borne pathogens in beef cattle and highlights the need for effective strategies to control these pathogens in Thailand.
Emerging Human Babesiosis with “Ground Zero” in North America
The first case of human babesiosis was reported in the literature in 1957. The clinical disease has sporadically occurred as rare case reports in North America and Europe in the subsequent decades. Since the new millennium, especially in the last decade, many more cases have apparently appeared not only in these regions but also in Asia, South America, and Africa. More than 20,000 cases of human babesiosis have been reported in North America alone. In several cross-sectional surveys, exposure to Babesia spp. has been demonstrated within urban and rural human populations with clinical babesiosis reported in both immunocompromised and immunocompetent humans. This review serves to highlight the widespread distribution of these tick-borne pathogens in humans, their tick vectors in readily accessible environments such as parks and recreational areas, and their phylogenetic relationships.
Babesiosis as a potential threat for bovine production in China
Babesiosis is a tick-borne disease with global impact caused by parasites of the phylum Apicomplexa, genus Babesia. Typically, acute bovine babesiosis (BB) is characterized by fever, anemia, hemoglobinuria, and high mortality. Surviving animals remain persistently infected and become reservoirs for parasite transmission. Bovids in China can be infected by one or more Babesia species endemic to the country, including B. bovis , B. bigemina , B. orientalis , B. ovata , B. major , B. motasi , B. U sp. Kashi and B. venatorum . The latter may pose a zoonotic risk. Occurrence of this wide diversity of Babesia species in China may be due to a combination of favorable ecological factors, such as the presence of multiple tick vectors, including Rhipicephalus and Hyalomma , the coexistence of susceptible bovid species, such as domestic cattle, yaks, and water buffalo, and the lack of efficient measures of tick control. BB is currently widespread in several regions of the country and a limiting factor for cattle production. While some areas appear to have enzootic stability, others have considerable cattle mortality. Research is needed to devise solutions to the challenges posed by uncontrolled BB. Critical research gaps include risk assessment for cattle residing in endemic areas, understanding factors involved in endemic stability, evaluation of parasite diversity and pathogenicity of regional Babesia species, and estimation of whether and how BB should be controlled in China. Research should allow the design of comprehensive interventions to improve cattle production, diminish the risk of human infections, and increase the availability of affordable animal protein for human consumption in China and worldwide. In this review, we describe the current state of BB with reference to the diversity of hosts, vectors, and parasite species in China. We also discuss the unique risks and knowledge gaps that should be taken into consideration for future Babesia research and control strategies.