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1.
Parasite ; 31: 34, 2024.
Article in English | MEDLINE | ID: mdl-38949636

ABSTRACT

Wild rodents serve as reservoirs for Cryptosporidium and are overpopulated globally. However, genetic data regarding Cryptosporidium in these animals from China are limited. Here, we have determined the prevalence and genetic characteristics of Cryptosporidium among 370 wild rodents captured from three distinct locations in the southern region of Zhejiang Province, China. Fresh feces were collected from the rectum of each rodent, and DNA was extracted from them. The rodent species was identified by PCR amplifying the vertebrate cytochrome b gene. Cryptosporidium was detected by PCR amplification and amplicon sequencing the small subunit of ribosomal RNA gene. Positive samples of C. viatorum and C. parvum were further subtyped by analyzing the 60-kDa glycoprotein gene. A positive Cryptosporidium result was found in 7% (26/370) of samples, involving five rodent species: Apodemus agrarius (36), Niviventer niviventer (75), Rattus losea (18), R. norvegicus (155), and R. tanezumi (86). Their respective Cryptosporidium positive rates were 8.3%, 5.3%, 11.1%, 7.1%, and 7.0%. Sequence analysis confirmed the presence of three Cryptosporidium species: C. parvum (4), C. viatorum (1), and C. muris (1), and two genotypes: Cryptosporidium rat genotype IV (16) and C. mortiferum-like (4). Additionally, two subtypes of C. parvum (IIdA15G1 and IIpA19) and one subtype of C. viatorum (XVdA3) were detected. These results demonstrate that various wild rodent species in Zhejiang were concurrently infected with rodent-adapted and zoonotic species/genotypes of Cryptosporidium, indicating that these rodents can play a role in maintaining and dispersing this parasite into the environment and other hosts, including humans.


Title: Transmission interspécifique de Cryptosporidium chez les rongeurs sauvages de la région sud de la province chinoise du Zhejiang et son impact possible sur la santé publique. Abstract: Les rongeurs sauvages servent de réservoirs à Cryptosporidium et ont des grandes populations à l'échelle mondiale. Cependant, les données génétiques concernant Cryptosporidium chez ces animaux en Chine sont limitées. Ici, nous avons déterminé la prévalence et les caractéristiques génétiques de Cryptosporidium parmi 370 rongeurs sauvages capturés dans trois endroits distincts de la région sud de la province du Zhejiang, en Chine. Des excréments frais ont été collectés dans le rectum de chaque rongeur et l'ADN en a été extrait. L'espèce de rongeur a été identifiée par amplification par PCR du gène du cytochrome b des vertébrés. Cryptosporidium a été détecté par amplification PCR et séquençage d'amplicons de la petite sous-unité du gène de l'ARN ribosomal. Les échantillons positifs de C. viatorum et C. parvum ont ensuite été sous-typés en analysant le gène de la glycoprotéine de 60 kDa. Un résultat positif pour Cryptosporidium a été trouvé dans 7 % (26/370) des échantillons, impliquant cinq espèces de rongeurs : Apodemus agrarius (36), Niviventer niviventer (75), Rattus losea (18), R. norvegicus (155) et R. tanezumi (86). Leurs taux respectifs de positivité pour Cryptosporidium étaient de 8,3 %, 5,3 %, 11,1 %, 7,1 % et 7,0 %. L'analyse des séquences a confirmé la présence de trois espèces de Cryptosporidium : C. parvum (4), C. viatorum (1) et C. muris (1), et de deux génotypes : Cryptosporidium génotype IV de rat (16) et C. mortiferum-like (4). De plus, deux sous-types de C. parvum (IIdA15G1 et IIpA19) et un sous-type de C. viatorum (XVdA3) ont été détectés. Ces résultats démontrent que diverses espèces de rongeurs sauvages du Zhejiang sont simultanément infectées par des espèces/génotypes de Cryptosporidium zoonotiques et adaptés aux rongeurs, ce qui indique que ces rongeurs peuvent jouer un rôle dans le maintien et la dispersion de ce parasite dans l'environnement et d'autres hôtes, y compris les humains.


Subject(s)
Animals, Wild , Cryptosporidiosis , Cryptosporidium , Feces , Rodent Diseases , Rodentia , Animals , Cryptosporidiosis/epidemiology , Cryptosporidiosis/parasitology , Cryptosporidiosis/transmission , China/epidemiology , Cryptosporidium/genetics , Cryptosporidium/isolation & purification , Cryptosporidium/classification , Feces/parasitology , Rodent Diseases/parasitology , Rodent Diseases/epidemiology , Rodent Diseases/transmission , Animals, Wild/parasitology , Rats/parasitology , Rodentia/parasitology , Prevalence , Public Health , Disease Reservoirs/parasitology , Disease Reservoirs/veterinary , Phylogeny , Humans , DNA, Protozoan/isolation & purification , Murinae/parasitology , Polymerase Chain Reaction , Zoonoses/parasitology , Zoonoses/transmission , Zoonoses/epidemiology , Genotype
2.
Front Cell Infect Microbiol ; 14: 1409685, 2024.
Article in English | MEDLINE | ID: mdl-38957795

ABSTRACT

Introduction: Wild rodents can serve as reservoirs or carriers of E. bieneusi, thereby enabling parasite transmission to domestic animals and humans. This study aimed to investigate the prevalence of E. bieneusi in wild rodents from the Inner Mongolian Autonomous Region and Liaoning Province of China. Moreover, to evaluate the potential for zoonotic transmission at the genotype level, a genetic analysis of the isolates was performed. Methods: A total of 486 wild rodents were captured from two provinces in China. Polymerase chain reaction (PCR) was performed to amplify the vertebrate cytochrome b (cytb) gene in the fecal DNA of the rodents to detect their species. The genotype of E. bieneusi was determined via PCR amplification of the internal transcribed spacer (ITS) region of rDNA. The examination of genetic characteristics and zoonotic potential requires the application of similarity and phylogenetic analysis. Results: The infection rates of E. bieneusi in the four identified rodent species were 5.2% for Apodemus agrarius (n = 89), 4.5% for Cricetulus barabensis (n = 96), 11.3% for Mus musculus (n = 106), and 38.5% for Rattus norvegicus (n = 195). Infection was detected at an average rate of 17.4% among 486 rodents. Of the 11 identified genotypes, nine were known: SHR1 (detected in 32 samples), D (30 samples), EbpA (9 samples), PigEbITS7 (8 samples), HNR-IV (6 samples), Type IV (5 samples), HNR-VII (2 samples), HNH7 (1 sample), and HNPL-V (1 sample). Two novel genotypes were also discovered, NMR-I and NMR-II, each comprising one sample. The genotypes were classified into group 1 and group 13 via phylogenetic analysis. Discussion: Based on the initial report, E. bieneusi is highly prevalent and genetically diverse in wild rodents residing in the respective province and region. This indicates that these animals are crucial for the dissemination of E. bieneusi. Zoonotic E. bieneusi-carrying animals present a significant hazard to local inhabitants. Therefore, it is necessary to increase awareness regarding the dangers presented by these rodents and reduce their population to prevent environmental contamination.


Subject(s)
Animals, Wild , Enterocytozoon , Feces , Genotype , Host Specificity , Microsporidiosis , Phylogeny , Rodentia , Zoonoses , Animals , Enterocytozoon/genetics , Enterocytozoon/isolation & purification , Enterocytozoon/classification , China/epidemiology , Zoonoses/microbiology , Zoonoses/transmission , Microsporidiosis/epidemiology , Microsporidiosis/veterinary , Microsporidiosis/microbiology , Rodentia/microbiology , Feces/microbiology , Animals, Wild/microbiology , Prevalence , Cytochromes b/genetics , Disease Reservoirs/microbiology , Mice , DNA, Ribosomal Spacer/genetics , Humans , Rodent Diseases/microbiology , Rodent Diseases/epidemiology , Polymerase Chain Reaction , DNA, Fungal/genetics , Rats
3.
Viruses ; 16(7)2024 Jun 27.
Article in English | MEDLINE | ID: mdl-39066204

ABSTRACT

In recent years, the transmission of viruses from wildlife to humans has raised significant public health concerns, exemplified by the COVID-19 pandemic caused by the betacoronavirus SARS-CoV-2. Human activities play a substantial role in increasing the risk of zoonotic virus transmission from wildlife to humans. Rats and mice are prevalent in urban environments and may act as reservoirs for various pathogens. This study aimed to evaluate the presence of zoonotic viruses in wild rats and mice in both urban and rural areas, focusing on well-known zoonotic viruses such as betacoronavirus, hantavirus, arenavirus, kobuvirus, and monkeypox virus, along with other viruses occasionally detected in rats and mice, including rotavirus, norovirus, and astrovirus, which are known to infect humans at a high rate. A total of 128 animals were captured, including 70 brown rats (Rattus norvegicus), 45 black rats (Rattus rattus), and 13 house mice (Mus musculus), and feces, lung, and liver were collected. Among brown rats, one fecal sample tested positive for astrovirus RNA. Nucleotide sequencing revealed high sequence similarity to both human and rat astrovirus, suggesting co-presence of these viruses in the feces. Murine kobuvirus (MuKV) was detected in fecal samples from both black (n = 7) and brown (n = 6) rats, primarily from urban areas, as confirmed by sequence analysis. These findings highlight the importance of surveillance and research to understand and mitigate the risks associated with the potential transmission of pathogens by rodents.


Subject(s)
Feces , Zoonoses , Animals , Humans , Mice , Rats/virology , Feces/virology , Zoonoses/virology , Zoonoses/transmission , Phylogeny , COVID-19/virology , COVID-19/transmission , COVID-19/epidemiology , Viral Zoonoses/transmission , Viral Zoonoses/virology , Animals, Wild/virology , Disease Reservoirs/virology , Muridae/virology , SARS-CoV-2/genetics , SARS-CoV-2/isolation & purification , Viruses/classification , Viruses/isolation & purification , Viruses/genetics
4.
Viruses ; 16(7)2024 Jul 17.
Article in English | MEDLINE | ID: mdl-39066316

ABSTRACT

Hantaviruses are zoonotic agents responsible for causing Hantavirus Cardiopulmonary Syndrome (HCPS) in the Americas, with Brazil ranking first in number of confirmed HCPS cases in South America. In this study, we simulate the monthly spread of highly lethal hantavirus in natural hosts by conjugating a Kermack-McCormick SIR model with a cellular automata model (CA), therefore simultaneously evaluating both in-cell and between-cell infection dynamics in host populations, using recently compiled data on main host species abundances and confirmed deaths by hantavirus infection. For both host species, our models predict an increase in the area of infection, with 22 municipalities where no cases have been confirmed to date expected to have at least one case in the next decade, and a reduction in infection in 11 municipalities. Our findings support existing research and reveal new areas where hantavirus is likely to spread within recognized epicenters. Highlighting spatial-temporal trends and potential expansion, we emphasize the increased risk due to pervasive habitat fragmentation and agricultural expansion. Consistent prevention efforts and One Health actions are crucial, especially in newly identified high-risk municipalities.


Subject(s)
Hantavirus Infections , Orthohantavirus , Brazil/epidemiology , Animals , Hantavirus Infections/epidemiology , Hantavirus Infections/virology , Humans , Disease Reservoirs/virology , Hantavirus Pulmonary Syndrome/epidemiology , Hantavirus Pulmonary Syndrome/virology , Zoonoses/epidemiology , Zoonoses/virology
5.
Vopr Virusol ; 69(3): 255-265, 2024 Jul 05.
Article in English | MEDLINE | ID: mdl-38996374

ABSTRACT

INTRODUCTION: Bats are natural reservoirs of coronaviruses (Coronaviridae), which have caused three outbreaks of human disease SARS, MERS and COVID-19 or SARS-2 over the past decade. The purpose of the work is to study the diversity of coronaviruses among bats inhabiting the foothills and mountainous areas of the Republics of Dagestan, Altai and the Kemerovo region. MATERIALS AND METHODS: Samples of bat oral swabs and feces were tested for the presence of coronavirus RNA by reverse transcription-polymerase chain reaction (RT-PCR). RESULTS: It has been shown that the greater horseshoe bats (Rhinolophus ferrumequinum), inhabiting the Republic of Dagestan, are carriers of two different coronaviruses. One of the two coronaviruses is a member of the Sarbecovius subgenus of the Betacoronavirus genus, which includes the causative agents of SARS and COVID-19. The second coronavirus is assigned to the Decacovirus subgenus of the Alphacoronavirus genus and is most similar to viruses identified among Rhinolophus spp. from European and Middle Eastern countries. In the Altai Republic and Kemerovo region, coronaviruses belonging to the genus Alphacoronavirus, subgenus Pedacovirus, were found in the smooth-nosed bats: Ikonnikov`s bat (Myotis ikonnikovi) and the eastern bat (Myotis petax). The virus from the Altai Republic from M. ikonnikovi is close to viruses from Japan and Korea, as well as viruses from Myotis spp. from European countries. The virus from the Kemerovo region from M. petax groups with coronaviruses from Myotis spp. from Asian countries and is significantly different from coronaviruses previously discovered in the same natural host.


Subject(s)
Chiroptera , Animals , Chiroptera/virology , Siberia/epidemiology , Phylogeny , Disease Reservoirs/virology , Coronavirus/genetics , Coronavirus/isolation & purification , Coronavirus/classification , Humans , Feces/virology , SARS-CoV-2/genetics , SARS-CoV-2/isolation & purification , COVID-19/virology , COVID-19/epidemiology , COVID-19/veterinary , Coronavirus Infections/virology , Coronavirus Infections/veterinary , Coronavirus Infections/epidemiology
6.
PLoS Negl Trop Dis ; 18(7): e0012286, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38959260

ABSTRACT

BACKGROUND: Habitat modification and land use changes impact ecological interactions and alter the relationships between humans and nature. Mexico has experienced significant landscape modifications at the local and regional scales, with negative effects on forest cover and biological biodiversity, especially in the Yucatan peninsula in southeastern Mexico. Given the close relationship between landscape modification and the transmission of zoonotic and vector-borne diseases, it is essential to develop criteria for identifying priority zoonoses in the south of the country. METHODOLOGY/PRINCIPAL FINDINGS: We reviewed 165 published studies on zoonotic and vector-borne diseases in the region (2015-2024). We identified the most frequent vectors, reservoirs, and hosts, the most prevalent infections, and the factors associated with transmission risk and the anthropogenic landscape modification in urban, rural, ecotone, and sylvatic habitats. The most relevant pathogens of zoonotic risk included Trypanosoma cruzi, arboviruses, Leishmania, Rickettsia, Leptospira, and Toxoplasma gondii. Trypanosoma cruzi was the vector-borne agent with the largest number of infected vertebrate species across habitats, while Leishmania and arboviruses were the ones that affected the greatest number of people. Dogs, cats, backyard animals, and their hematophagous ectoparasites are the most likely species maintaining the transmission cycles in human settlements, while rodents, opossums, bats, and other synanthropic animals facilitate connection and transmission cycles between forested habitats with human-modified landscapes. Pathogens displayed different prevalences between the landscapes, T. cruzi, arbovirus, and Leptospira infections were the most prevalent in urban and rural settlements, whereas Leishmania and Rickettsia had similar prevalence across habitats, likely due to the diversity and abundance of the infected vectors involved. The prevalence of T. gondii and Leptospira spp. may reflect poor hygiene conditions. Additionally, results suggest that prevalence of zoonotic and vector-borne diseases is higher in deforested areas and agricultural aggregates, and in sites with precarious health and infrastructure services. CONCLUSIONS: Some hosts, vectors, and transmission trends of zoonotic and vector-borne diseases in the YP are well known but others remain poorly recognized. It is imperative to reinforce practices aimed at increasing the knowledge, monitoring, prevention, and control of these diseases at the regional level. We also emphasize the need to perform studies on a larger spatio-temporal scale under the socio-ecosystem perspective, to better elucidate the interactions between pathogens, hosts, vectors, environment, and sociocultural and economic aspects in this and many other tropical regions.


Subject(s)
Vector Borne Diseases , Zoonoses , Animals , Humans , Zoonoses/transmission , Zoonoses/epidemiology , Vector Borne Diseases/transmission , Vector Borne Diseases/epidemiology , Prevalence , Mexico/epidemiology , Ecosystem , Trypanosoma cruzi/isolation & purification , Disease Vectors , Disease Reservoirs/microbiology , Leptospira/isolation & purification , Leptospira/genetics , Leptospira/classification , Chagas Disease/transmission , Chagas Disease/epidemiology , Toxoplasma , Arboviruses/physiology , Leishmania/isolation & purification , Leishmaniasis/transmission , Leishmaniasis/epidemiology
7.
Res Vet Sci ; 176: 105341, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38963992

ABSTRACT

Recently, an increased number of reports have described pathogens of animal origin that cause a variety of infections and a rise in their transmission to humans. Streptococcus gallolyticus, a member of the Streptococcus bovis/Streptococcus equinus complex (SBSEC), is one of these pathogens and infects a wide range of hosts from mammals to poultry and has a broad functionality ranging from pathogenicity to food fermentation. As S. gallolyticus causes complications including bacteremia, infective endocarditis, and colorectal malignancy in humans, it is important to investigate its occurrence in various hosts, including geese, to prevent potential zoonotic transmissions. This study aimed to investigate the presence of S. gallolyticus in the droppings of clinically healthy and diarrheic geese, which were raised intensively and semi-intensively, by the in vitro culture method, characterize the isolates recovered by PCR and sequence-based molecular methods and determine their antibiotic susceptibility by the disk diffusion and gradient test methods. For this purpose, 150 samples of fresh goose droppings were used. Culture positivity for S. gallolyticus was determined as 8% (12/150). PCR analysis identified 54.55% (n = 6) of the isolates as S. gallolyticus subsp. gallolyticus and 45.45% (n = 5) as S. gallolyticus subsp. pasteurianus. Following the 16S rRNA sequence and ERIC-PCR analyses, S. gallolyticus subspecies exhibited identical cluster and band profiles that could be easily distinguished from each other and were clonally identified. High rates of susceptibility to florfenicol, penicillin, rifampicin, and vancomycin were detected among the isolates, regardless of the subspecies diversity. Both subspecies showed high levels of resistance to bacitracin, clindamycin, doxycycline, tetracycline, trimethoprim-sulfamethoxazole, and erythromycin and multiple MDR profiles, indicating their potential to become superbugs. This first report from Türkiye demonstrates the occurrence of the S. gallolyticus subspecies in geese. In view of the recent increase of geese production and the consumption of goose meat in Türkiye, the occurrence of S. gallolyticus in geese should not be ignored to prevent zoonotic transmission.


Subject(s)
Disease Reservoirs , Geese , Poultry Diseases , Streptococcal Infections , Streptococcus gallolyticus , Animals , Geese/microbiology , Streptococcus gallolyticus/genetics , Streptococcal Infections/veterinary , Streptococcal Infections/microbiology , Streptococcal Infections/transmission , Poultry Diseases/microbiology , Poultry Diseases/transmission , Disease Reservoirs/microbiology , Disease Reservoirs/veterinary , Colonic Neoplasms/microbiology , Colonic Neoplasms/veterinary , Humans , Feces/microbiology , Anti-Bacterial Agents/pharmacology
8.
Sci Rep ; 14(1): 16326, 2024 07 15.
Article in English | MEDLINE | ID: mdl-39009688

ABSTRACT

Government policy in England aims for the elimination of bovine tuberculosis (bTB). This policy includes culling of European badger (Meles meles) to reduce cattle TB incidence. The rationale is based on a field trial, the Randomised Badger Culling Trial (RBCT) 1998-2005, which reported a substantial decrease in bTB herd incidence where badger culling had been implemented, in comparison to untreated control areas. The RBCT was undertaken because previous studies of reductions in badgers by culling, reported a possible association between bTB in badger and cattle, but none could directly show causation. The effect of intensive widespread (proactive) culling in the RBCT was reported in 2006 in the journal Nature. Analysis of an extensive badger removal programme in England since 2013 has raised concerns that culling has not reduced bTB herd incidence. The present study re-examined RBCT data using a range of statistical models. Most analytical options showed no evidence to support an effect of badger culling on bTB herd incidence 'confirmed' by visible lesions and/or bacterial culture post mortem following a comparative intradermal skin test (SICCT). However, the statistical model chosen by the RBCT study was one of the few models that showed an effect. Various criteria suggest that this was not an optimal model, compared to other analytical options available. The most likely explanation is that the RBCT proactive cull analysis over-fitted the data with a non-standard method to control for exposure giving it a poor predictive value. Fresh appraisal shows that there was insufficient evidence to conclude RBCT proactive badger culling affected bTB breakdown incidence. The RBCT found no evidence of an effect of culling on 'total' herd incidence rates. Total herd incidences include those confirmed as bTB at necropsy and those herds where there was at least one animal animal positive to the comparative intradermal skin test, the standard diagnostic test used for routine surveillance, but not confirmed at necropsy. This was also the case using the more suitable statistical models. Use only of 'confirmed' herd incidence data, together with a more recent (2013) published perception that RBCT data presented 'a strong evidence base….with appropriate detailed statistical or other quantitative analysis' should be reconsidered. The results of the present report are consistent with other analyses that were unable to detect any disease control benefits from badger culling in England (2013-2019). This study demonstrates one form of potential driver to the reproducibility crisis, in this case with disease control management in an increasingly intensified livestock industry.


Subject(s)
Animal Culling , Mustelidae , Tuberculosis, Bovine , Animals , Mustelidae/microbiology , Cattle , Tuberculosis, Bovine/prevention & control , Tuberculosis, Bovine/epidemiology , England/epidemiology , Incidence , Mycobacterium bovis , Disease Reservoirs/veterinary , Disease Reservoirs/microbiology
9.
PLoS Negl Trop Dis ; 18(7): e0012306, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38976750

ABSTRACT

BACKGROUND: Rodents are recognized as major reservoirs of numerous zoonotic pathogens and are involved in the transmission and maintenance of infectious diseases. Furthermore, despite their importance, diseases transmitted by rodents have been neglected. To date, there have been limited epidemiological studies on rodents, and information regarding their involvement in infectious diseases in the Republic of Korea (ROK) is still scarce. METHODOLOGY/PRINCIPAL FINDINGS: We investigated rodent-borne pathogens using nested PCR/RT-PCR from 156 rodents including 151 Apodemus agrarius and 5 Rattus norvegicus from 27 regions in eight provinces across the ROK between March 2019 and November 2020. Spleen, kidney, and blood samples were used to detect Anaplasma phagocytophilum, Bartonella spp., Borrelia burgdorferi sensu lato group, Coxiella burnetii, Leptospira interrogans, and severe fever with thrombocytopenia syndrome virus (SFTSV). Of the 156 rodents, 73 (46.8%) were infected with Bartonella spp., 25 (16.0%) with C. burnetii, 24 (15.4%) with L. interrogans, 21 (13.5%) with A. phagocytophilum, 9 (5.8%) with SFTSV, and 5 (3.2%) with Borrelia afzelii. Co-infections with two and three pathogens were detected in 33 (21.1%) and 11 rodents (7.1%), respectively. A. phagocytophilum was detected in all regions, showing a widespread occurrence in the ROK. The infection rates of Bartonella spp. were 83.3% for B. grahamii and 16.7% for B. taylorii. CONCLUSIONS/SIGNIFICANCE: To the best of our knowledge, this is the first report of C. burnetii and SFTSV infections in rodents in the ROK. This study also provides the first description of various rodent-borne pathogens through an extensive epidemiological survey in the ROK. These results suggest that rodents harbor various pathogens that pose a potential threat to public health in the ROK. Our findings provide useful information on the occurrence and distribution of zoonotic pathogens disseminated among rodents and emphasize the urgent need for rapid diagnosis, prevention, and control strategies for these zoonotic diseases.


Subject(s)
Anaplasma phagocytophilum , Bartonella , Coxiella burnetii , Zoonoses , Animals , Republic of Korea/epidemiology , Zoonoses/epidemiology , Zoonoses/microbiology , Rats , Coxiella burnetii/isolation & purification , Coxiella burnetii/genetics , Bartonella/isolation & purification , Bartonella/genetics , Anaplasma phagocytophilum/isolation & purification , Anaplasma phagocytophilum/genetics , Rodentia/microbiology , Murinae/microbiology , Animals, Wild/microbiology , Animals, Wild/virology , Rodent Diseases/epidemiology , Rodent Diseases/microbiology , Rodent Diseases/virology , Phlebovirus/genetics , Phlebovirus/isolation & purification , Disease Reservoirs/microbiology , Leptospira interrogans/isolation & purification , Leptospira interrogans/genetics
10.
Parasit Vectors ; 17(1): 318, 2024 Jul 24.
Article in English | MEDLINE | ID: mdl-39044228

ABSTRACT

BACKGROUND: Cutaneous leishmaniasis (CL) is understudied in sub-Saharan Africa. The epidemiology of CL is determined by the species involved in its transmission. Our objectives were to systematically review available data on the species of Leishmania, along with vectors and reservoirs involved in the occurrence of human cases of CL in sub-Saharan Africa, and to discuss implications for case management and future research. METHODS: We systematically searched PubMed, Scopus, Cochrane and African Index Medicus. There was no restriction on language or date of publication. The review was conducted according to PRISMA guidelines and was registered on PROSPERO (CRD42022384157). RESULTS: In total, 188 published studies and 37 reports from the grey literature were included. An upward trend was observed, with 45.7% of studies published after 2010. East Africa (55.1%) represented a much greater number of publications than West Africa (33.3%). In East Africa, the identification of reservoirs for Leishmania tropica remains unclear. This species also represents a therapeutic challenge, as it is often resistant to meglumine antimoniate. In Sudan, the presence of hybrids between Leishmania donovani and strictly cutaneous species could lead to important epidemiological changes. In Ghana, the emergence of CL in the recent past could involve rare species belonging to the Leishmania subgenus Mundinia. The area of transmission of Leishmania major could expand beyond the Sahelian zone, with scattered reports in forested areas. While the L. major-Phlebotomus duboscqi-rodent complex may not be the only cycle in the dry areas of West Africa, the role of dogs as a potential reservoir for Leishmania species with cutaneous tropism in this subregion should be clarified. Meglumine antimoniate was the most frequently reported treatment, but physical methods and systemic agents such as ketoconazole and metronidazole were also used empirically to treat L. major infections. CONCLUSIONS: Though the number of studies on the topic has increased recently, there is an important need for intersectional research to further decipher the Leishmania species involved in human cases of CL as well as the corresponding vectors and reservoirs, and environmental factors that impact transmission dynamics. The development of molecular biology in sub-Saharan Africa could help in leveraging diagnostic and research capacities and improving the management of human cases through personalized treatment strategies.


Subject(s)
Disease Reservoirs , Leishmania , Leishmaniasis, Cutaneous , Africa South of the Sahara/epidemiology , Humans , Leishmaniasis, Cutaneous/epidemiology , Leishmaniasis, Cutaneous/transmission , Leishmaniasis, Cutaneous/parasitology , Animals , Disease Reservoirs/parasitology , Leishmania/classification , Leishmania/isolation & purification , Leishmania/genetics , Leishmania/drug effects , Insect Vectors/parasitology , Dogs
11.
J R Soc Interface ; 21(216): 20240106, 2024 Jul.
Article in English | MEDLINE | ID: mdl-39045680

ABSTRACT

Lassa fever is a West African rodent-borne viral haemorrhagic fever that kills thousands of people a year, with 100 000 to 300 000 people a year probably infected by Lassa virus (LASV). The main reservoir of LASV is the Natal multimammate mouse, Mastomys natalensis. There is reported asynchrony between peak infection in the rodent population and peak Lassa fever risk among people, probably owing to differing seasonal contact rates. Here, we developed a susceptible-infected-recovered ([Formula: see text])-based model of LASV dynamics in its rodent host, M. natalensis, with a persistently infected class and seasonal birthing to test the impact of changes to seasonal birthing in the future owing to climate and land use change. Our simulations suggest shifting rodent birthing timing and synchrony will alter the peak of viral prevalence, changing risk to people, with viral dynamics mainly stable in adults and varying in the young, but with more infected individuals. We calculate the time-average basic reproductive number, [Formula: see text], for this infectious disease system with periodic changes to population sizes owing to birthing using a time-average method and with a sensitivity analysis show four key parameters: carrying capacity, adult mortality, the transmission parameter among adults and additional disease-induced mortality impact the maintenance of LASV in M. natalensis most, with carrying capacity and adult mortality potentially changeable owing to human activities and interventions.


Subject(s)
Lassa Fever , Lassa virus , Murinae , Animals , Lassa Fever/epidemiology , Lassa Fever/transmission , Lassa Fever/virology , Lassa virus/physiology , Murinae/virology , Humans , Models, Biological , Disease Reservoirs/virology , Africa, Western/epidemiology , Seasons , Female
12.
Emerg Infect Dis ; 30(8): 1609-1620, 2024 Aug.
Article in English | MEDLINE | ID: mdl-39043403

ABSTRACT

SARS-CoV-2 can infect wildlife, and SARS-CoV-2 variants of concern might expand into novel animal reservoirs, potentially by reverse zoonosis. White-tailed deer and mule deer of North America are the only deer species in which SARS-CoV-2 has been documented, raising the question of whether other reservoir species exist. We report cases of SARS-CoV-2 seropositivity in a fallow deer population located in Dublin, Ireland. Sampled deer were seronegative in 2020 when the Alpha variant was circulating in humans, 1 deer was seropositive for the Delta variant in 2021, and 12/21 (57%) sampled deer were seropositive for the Omicron variant in 2022, suggesting host tropism expansion as new variants emerged in humans. Omicron BA.1 was capable of infecting fallow deer lung type-2 pneumocytes and type-1-like pneumocytes or endothelial cells ex vivo. Ongoing surveillance to identify novel SARS-CoV-2 reservoirs is needed to prevent public health risks during human-animal interactions in periurban settings.


Subject(s)
COVID-19 , Deer , SARS-CoV-2 , Animals , SARS-CoV-2/immunology , SARS-CoV-2/genetics , COVID-19/epidemiology , COVID-19/veterinary , Humans , Deer/virology , Ireland/epidemiology , Seroepidemiologic Studies , Urban Population , Disease Reservoirs/virology , Disease Reservoirs/veterinary , Animals, Wild/virology , Antibodies, Viral/blood , Antibodies, Viral/immunology , Female , Male
13.
Trop Med Int Health ; 29(8): 657-667, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38994702

ABSTRACT

ΟBJECTIVES: Although Buruli ulcer, tuberculosis, and leprosy are the three most common mycobacterial diseases, One Health dimensions of these infections remain poorly understood. This narrative review aims at exploring the scientific literature with respect to the presence of animal reservoir(s) and other environmental sources for the pathogens of these infections, their role in transmission to humans and the research on/practical implementation of One Health relevant control efforts. METHODS: The literature review was conducted using the online databases PubMed, Scopus, ProQuest and Google Scholar, reviewing articles that were written in English in the last 15 years. Grey literature, published by intergovernmental agencies, was also reviewed. RESULTS: For the pathogen of Buruli ulcer, evidence suggests possums as a possible animal reservoir and thus having an active role in disease transmission to humans. Cattle and some wildlife species are deemed as established animal reservoirs for tuberculosis pathogens, with a non-negligible proportion of infections in humans being of zoonotic origin. Armadillos constitute an established animal reservoir for leprosy pathogens with the transmission of the disease from armadillos to humans being deemed possible. Lentic environments, soil and other aquatic sources may represent further abiotic reservoirs for viable Buruli ulcer and leprosy pathogens infecting humans. Ongoing investigation and implementation of public health measures, targeting (sapro)zoonotic transmission can be found in all three diseases. CONCLUSION: Buruli ulcer, tuberculosis and leprosy exhibit important yet still poorly understood One Health aspects. Despite the microbiological affinity of the respective causative mycobacteria, considerable differences in their animal reservoirs, potential environmental sources and modes of zoonotic transmission are being observed. Whether these differences reflect actual variations between these diseases or rather knowledge gaps remains unclear. For improved disease control, further investigation of zoonotic aspects of all three diseases and formulation of One Health relevant interventions is urgently needed.


Subject(s)
Buruli Ulcer , Disease Reservoirs , Leprosy , One Health , Tuberculosis , Buruli Ulcer/transmission , Buruli Ulcer/epidemiology , Buruli Ulcer/microbiology , Humans , Animals , Leprosy/epidemiology , Leprosy/transmission , Leprosy/microbiology , Disease Reservoirs/microbiology , Tuberculosis/epidemiology , Tuberculosis/transmission , Tuberculosis/microbiology , Animals, Wild/microbiology , Zoonoses/microbiology , Zoonoses/epidemiology , Zoonoses/transmission
14.
Infect Dis Poverty ; 13(1): 40, 2024 Jun 01.
Article in English | MEDLINE | ID: mdl-38822386

ABSTRACT

BACKGROUND: Opisthorchiid flukes, particularly Opisthorchis viverrini, Opisthorchis felineus, Clonorchis sinensis, and Metorchis spp. are the most common fish-borne zoonotic human liver flukes (hLFs). Liver fluke infections are more prevalent in resource-deprived and underprivileged areas. We herein estimated the prevalence of the metacercariae (MC) of major hLFs in common large freshwater fishes (lFWF) marketed for human consumption from some selected areas of Bangladesh along with detection of their molluscan vectors and reservoirs. METHODS: The current status of fish-borne zoonotic hLF infections in lFWF was investigated along with their molluscan vectors and mammalian reservoir hosts in Mymensingh and Kishoreganj in Bangladesh from July 2018-June 2022 using conventional and multiple molecular techniques, such as PCR, PCR-restriction fragment length polymorphism (RFLP), sequencing, and bioinformatic analyses. The infection rate of fishes was analyzed using the Z-test and the loads of MC were compared using the chi-squared (χ2) test. RESULTS: The MC of C. sinensis, Opisthorchis spp., and Metorchis spp. were detected in 11 species of common and popular lFWF. In lFWF, the estimated prevalence was 18.7% and the mean load was 137.4 ± 149.8 MC per 100 g of fish. The prevalence was the highest (P < 0.05) in spotted snakehead fishes (Channa punctata, 63.6%). The highest rate of infection (P < 0.05) was observed with the MC of C. sinensis (11.8%). Metacercariae were almost equally (P > 0.05) distributed between the head and body of fishes. The infection rate was slightly higher in cultured (19.6%) fishes. The MC of C. sinensis, O. felineus, O. viverrini, and Metorchis orientalis in fishes were confirmed using PCR, PCR-RFLP and bioinformatics. The cercariae of opisthorchiid (Pleurolophocercus cercariae) flukes were only recovered from Bithynia spp. (3.9%, 42 out of 1089). The ova of hLFs from dogs (4.3%, 5 out of 116) and cats (6.0%, 6 out of 100), and adult flukes (M. orientalis) from ducks (41.1% 113 out of 275) were detected. CONCLUSIONS: The MC of hLFs are highly prevalent in fresh water fishes in Bangladesh. Reservoir hosts, such as street dogs, cats, and ducks carried the patent infection, and residents of Bangladesh are at risk.


Subject(s)
Disease Reservoirs , Fish Diseases , Fishes , Fresh Water , Zoonoses , Animals , Bangladesh/epidemiology , Fishes/parasitology , Fresh Water/parasitology , Fish Diseases/parasitology , Fish Diseases/epidemiology , Humans , Disease Reservoirs/parasitology , Disease Reservoirs/veterinary , Zoonoses/parasitology , Zoonoses/epidemiology , Zoonoses/transmission , Disease Vectors , Prevalence , Opisthorchis/genetics , Opisthorchis/isolation & purification , Metacercariae/genetics , Metacercariae/isolation & purification , Clonorchis sinensis/genetics , Clonorchis sinensis/isolation & purification , Mollusca/parasitology
15.
Emerg Infect Dis ; 30(7): 1447-1449, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38916636

ABSTRACT

We report the effect of a rodent control program on the incidence of zoonotic cutaneous leishmaniasis in an endemic region of Iran. A 1-year interruption in rodent control led to 2 years of increased incidence of zoonotic cutaneous leishmaniasis. Restarting rodent control led to a decline of zoonotic cutaneous leishmaniasis.


Subject(s)
Leishmaniasis, Cutaneous , Zoonoses , Iran/epidemiology , Leishmaniasis, Cutaneous/epidemiology , Leishmaniasis, Cutaneous/prevention & control , Animals , Zoonoses/epidemiology , Zoonoses/prevention & control , Humans , Incidence , Rodent Control/methods , Rodentia/parasitology , Disease Reservoirs/parasitology , Disease Reservoirs/veterinary
16.
Emerg Infect Dis ; 30(7): 1454-1458, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38916725

ABSTRACT

Few cases of hantavirus pulmonary syndrome have been reported in northeastern Argentina. However, neighboring areas show a higher incidence, suggesting underreporting. We evaluated the presence of antibodies against orthohantavirus in small rodents throughout Misiones province. Infected Akodon affinis montensis and Oligoryzomys nigripes native rodents were found in protected areas of Misiones.


Subject(s)
Antibodies, Viral , Orthohantavirus , Animals , Argentina/epidemiology , Orthohantavirus/immunology , Orthohantavirus/classification , Orthohantavirus/isolation & purification , Antibodies, Viral/blood , Hantavirus Infections/epidemiology , Hantavirus Infections/veterinary , Hantavirus Infections/virology , Rodentia/virology , Rodent Diseases/epidemiology , Rodent Diseases/virology , Humans , Hantavirus Pulmonary Syndrome/epidemiology , Disease Reservoirs/virology
17.
Appl Environ Microbiol ; 90(7): e0082224, 2024 Jul 24.
Article in English | MEDLINE | ID: mdl-38899883

ABSTRACT

Borrelia burgdorferi, a Lyme disease spirochete, causes a range of acute and chronic maladies in humans. However, a primary vertebrate reservoir in the United States, the white-footed deermouse Peromyscus leucopus, is reported not to have reduced fitness following infection. Although laboratory strains of Mus musculus mice have successfully been leveraged to model acute human Lyme disease, the ability of these rodents to model B. burgdorferi-P. leucopus interactions remains understudied. Here, we compared infection of P. leucopus with B. burgdorferi B31 with infection of the traditional B. burgdorferi murine models-C57BL/6J and C3H/HeN Mus musculus, which develop signs of inflammation akin to human disease. We find that B. burgdorferi was able to reach much higher burdens (10- to 30-times higher) in multiple M. musculus skin sites and that the overall dynamics of infection differed between the two rodent species. We also found that P. leucopus remained transmissive to larval Ixodes scapularis for a far shorter period than either M. musculus strain. In line with these observations, we found that P. leucopus does launch a modest but sustained inflammatory response against B. burgdorferi in the skin, which we hypothesize leads to reduced bacterial viability and rodent-to-tick transmission in these hosts. Similarly, we also observe evidence of inflammation in infected P. leucopus hearts. These observations provide new insight into reservoir species and the B. burgdorferi enzootic cycle.IMPORTANCEA Lyme disease-causing bacteria, Borrelia burgdorferi, must alternate between infecting a vertebrate host-usually rodents or birds-and ticks. In order to be successful in that endeavor, the bacteria must avoid being killed by the vertebrate host before it can infect a new larval tick. In this work, we examine how B. burgdorferi and one of its primary vertebrate reservoirs, Peromyscus leucopus, interact during an experimental infection. We find that B. burgdorferi appears to colonize its natural host less successfully than conventional laboratory mouse models, which aligns with a sustained seemingly anti-bacterial response by P. leucopus against the microbe. These data enhance our understanding of P. leucopus host-pathogen interactions and could potentially serve as a foundation to uncover ways to disrupt the spread of B. burgdorferi in nature.


Subject(s)
Borrelia burgdorferi , Disease Reservoirs , Lyme Disease , Mice, Inbred C3H , Mice, Inbred C57BL , Peromyscus , Animals , Peromyscus/microbiology , Mice , Lyme Disease/microbiology , Lyme Disease/transmission , Lyme Disease/veterinary , Borrelia burgdorferi/physiology , Borrelia burgdorferi/genetics , Disease Reservoirs/microbiology , Disease Models, Animal , Ixodes/microbiology
18.
Res Vet Sci ; 176: 105339, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38941712

ABSTRACT

Brucellosis, caused by various Brucella species, poses a significant threat to global public health and livestock industries. This study aims to fill the knowledge gap concerning the presence of Brucella spp. in rodents on livestock farms in Iran. Both bacteriological and molecular surveys were conducted to assess the prevalence of Brucella spp. in these rodent populations. A total of 16 rodents were captured in four seropositive dairy cattle farms (n = 7) and two seropositive sheep farms (n = 9) and were then examined for the presence of the Brucella-infection. Five cow milk samples and 53 bovine lymph node samples from these farms were also tested for Brucella spp. Lymph node samples from dairy cattle farms contained 32 B. abortus biovar 3 isolates and one B. melitensis Rev1 vaccine isolate. The bacterial culture of rodents identified 12.5% of them (Mus musculus and Rattus norvegicus) harboring Brucella strains in dairy cattle farms. The rodents had B. abortus biovar 3 and B. melitensis biovar 1, suggesting a reservoir for these bacteria. A two-step molecular assay, utilizing the Omp28 sequences in tissue samples of rodents, demonstrated that 68.75% (n = 11) of the tested rodents yielded positive results. Bruce-ladder PCR and wboA typing on isolated bacteria revealed a close relationship to field strain of Brucella species. The study reveals that rodents on seropositive livestock farms in Iran harbor Brucella spp., indicating a potential reservoir for these bacteria. This highlights the importance of monitoring rodent populations through the molecular and bacterial methods to manage and control brucellosis in livestock.


Subject(s)
Brucella , Brucellosis , Animals , Cattle , Iran/epidemiology , Rats , Brucella/isolation & purification , Brucella/classification , Sheep , Brucellosis/veterinary , Brucellosis/epidemiology , Brucellosis/microbiology , Mice , Sheep Diseases/microbiology , Sheep Diseases/epidemiology , Prevalence , Brucellosis, Bovine/epidemiology , Brucellosis, Bovine/microbiology , Milk/microbiology , Brucella abortus/isolation & purification , Brucella abortus/classification , Disease Reservoirs/veterinary , Disease Reservoirs/microbiology , Female
19.
Prev Vet Med ; 229: 106228, 2024 Aug.
Article in English | MEDLINE | ID: mdl-38850871

ABSTRACT

To prevent foodborne infections from pigs and cattle, the whole food chain must act to minimize the contamination of products, including biosecurity measures which prevent infections via feed and the environment in production farms. Rodents and other small mammals can be reservoirs of and key vectors for transmitting zoonotic bacteria and viruses to farm animals, through direct contact but more often through environmental contamination. In line with One Health concept, we integrated results from a sampling study of small mammals in farm environments and data from a capture-recapture experiment into a probabilistic model which quantifies the degree of environmental exposure of zoonotic bacteria by small mammals to farm premises. We investigated more than 1200 small mammals trapped in and around 38 swine and cattle farm premises in Finland in 2017/2018. Regardless of the farm type, the most common species caught were the yellow-necked mouse (Apodemus flavicollis), bank vole (Clethrionomys glareolus), and house mouse (Mus musculus). Of 554 intestine samples (each pooled from 1 to 10 individuals), 33% were positive for Campylobacter jejuni. Yersinia enterocolitica was detected in 8% of the pooled samples, on 21/38 farm premises. Findings of Salmonella and the Shiga-toxin producing Escherichia coli (STEC) were rare: the pathogens were detected in only single samples from four and six farm premises, respectively. The prevalence of Campylobacter, Salmonella, Yersinia and STEC in small mammal populations was estimated as 26%/13%, 1%/0%, 2%/3%, 1%/1%, respectively, in 2017/2018. The exposure probability within the experimental period of four weeks on farms was 17-60% for Campylobacter and 0-3% for Salmonella. The quantitative model is readily applicable to similar integrative studies. Our results indicate that small mammals increase the risk of exposure to zoonotic bacteria in animal production farms, thus increasing risks also for livestock and human health.


Subject(s)
Cattle Diseases , Swine Diseases , Animals , Cattle , Swine , Prevalence , Swine Diseases/epidemiology , Swine Diseases/microbiology , Swine Diseases/prevention & control , Swine Diseases/transmission , Finland/epidemiology , Cattle Diseases/epidemiology , Cattle Diseases/microbiology , Cattle Diseases/transmission , Rodentia/microbiology , Bacterial Zoonoses/epidemiology , Bacterial Zoonoses/microbiology , Zoonoses/epidemiology , Disease Reservoirs/veterinary , Disease Reservoirs/microbiology , Risk Assessment , Farms
20.
Virol J ; 21(1): 146, 2024 Jun 25.
Article in English | MEDLINE | ID: mdl-38918816

ABSTRACT

The genus Jeilongvirus comprises non-segmented negative-stranded RNA viruses that are classified within the Paramyxoviridae family by phylogeny. Jeilongviruses are found in various reservoirs, including rodents and bats. Rodents are typical viral reservoirs with diverse spectra and zoonotic potential. Little is currently known about jeilongviruses in rodents from central China. The study utilized high-throughput and Sanger sequencing to obtain jeilongvirus genomes, including those of two novel strains (HBJZ120/CHN/2021 (17,468 nt) and HBJZ157/CHN/2021 (19,143 nt)) and three known viruses (HBXN18/CHN/2021 (19,212 nt), HBJZ10/CHN/2021 (19,700 nt), HBJM106/CHN/2021 (18,871 nt)), which were characterized by genome structure, identity matrix, and phylogenetic analysis. Jeilongviruses were classified into three subclades based on their topology, phylogeny, and hosts. Based on the amino acid sequence identities and phylogenetic analysis of the L protein, HBJZ120/CHN/2021 and HBJZ157/CHN/2021 were found to be strains rather than novel species. Additionally, according to specific polymerase chain reaction screening, the positive percentage of Beilong virus in Hubei was 6.38%, suggesting that Beilong virus, belonging to the Jeilongvirus genus, is likely to be widespread in wild rodents. The identification of novel strains further elucidated the genomic diversity of jeilongviruses. Additionally, the prevalence of jeilongviruses in Hubei, China, was profiled, establishing a foundation for the surveillance and early warning of emerging paramyxoviruses.


Subject(s)
Genome, Viral , Phylogeny , Rodentia , Animals , China , Rodentia/virology , Animals, Wild/virology , Paramyxovirinae/genetics , Paramyxovirinae/classification , Paramyxovirinae/isolation & purification , RNA, Viral/genetics , Paramyxoviridae Infections/veterinary , Paramyxoviridae Infections/virology , Paramyxoviridae Infections/epidemiology , High-Throughput Nucleotide Sequencing , Disease Reservoirs/virology , Sequence Analysis, DNA
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