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1.
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
2.
PeerJ ; 12: e17394, 2024.
Article in English | MEDLINE | ID: mdl-38827296

ABSTRACT

The increasing frequency of zoonotic spillover events and viral mutations in low and middle-income countries presents a critical global health challenge. Contributing factors encompass cultural practices like bushmeat consumption, wildlife trade for traditional medicine, habitat disruption, and the encroachment of impoverished settlements onto natural habitats. The existing "vaccine gap" in many developing countries exacerbates the situation by allowing unchecked viral replication and the emergence of novel mutant viruses. Despite global health policies addressing the root causes of zoonotic disease emergence, there is a significant absence of concrete prevention-oriented initiatives, posing a potential risk to vulnerable populations. This article is targeted at policymakers, public health professionals, researchers, and global health stakeholders, particularly those engaged in zoonotic disease prevention and control in low and middle-income countries. The article underscores the importance of assessing potential zoonotic diseases at the animal-human interface and comprehending historical factors contributing to spillover events. To bridge policy gaps, comprehensive strategies are proposed that include education, collaborations, specialized task forces, environmental sampling, and the establishment of integrated diagnostic laboratories. These strategies advocate simplicity and unity, breaking down barriers, and placing humanity at the forefront of addressing global health challenges. Such a strategic and mental shift is crucial for constructing a more resilient and equitable world in the face of emerging zoonotic threats.


Subject(s)
Developing Countries , Zoonoses , Humans , Animals , Zoonoses/prevention & control , Zoonoses/virology , Zoonoses/epidemiology , Zoonoses/transmission , Mutation , Health Policy/legislation & jurisprudence , Global Health , Communicable Diseases, Emerging/prevention & control , Communicable Diseases, Emerging/epidemiology , Communicable Diseases, Emerging/virology , Communicable Diseases, Emerging/transmission
3.
PLoS Negl Trop Dis ; 18(5): e0012115, 2024 May.
Article in English | MEDLINE | ID: mdl-38696362

ABSTRACT

Rheumatic heart disease (RHD) and acute rheumatic fever (ARF) disproportionately affect individuals in low-resource settings. ARF is attributed to an immune response to Group A Streptococcus (GAS) following GAS pharyngitis and potentially GAS impetigo in which infection can be initiated by scabies infestation. The burden of ARF and RHD in Aboriginal and Torres Strait Islander people in Australia is among the highest globally. Following recent calls to include dog management programs in ARF and RHD prevention programs, we believe it is timely to assess the evidence for this, particularly since previous recommendations excluded resources to prevent zoonotic canine scabies. While phylogenetic analyses have suggested that the Sarcoptes mite is host specific, they have differed in interpretation of the strength of their findings regarding species cross-over and the need for canine scabies control to prevent human itch. Given that there is also indication from case reports that canine scabies leads to human itch, we propose that further investigation of the potential burden of zoonotic canine scabies and intervention trials of canine scabies prevention on the incidence of impetigo are warranted. Considering the devastating impacts of ARF and RHD, evidence is required to support policy to eliminate all risk factors.


Subject(s)
Dog Diseases , Rheumatic Heart Disease , Scabies , Animals , Scabies/veterinary , Scabies/prevention & control , Scabies/epidemiology , Dogs , Humans , Dog Diseases/prevention & control , Dog Diseases/parasitology , Dog Diseases/epidemiology , Rheumatic Heart Disease/prevention & control , Rheumatic Heart Disease/epidemiology , Australia/epidemiology , Zoonoses/prevention & control , Impetigo/microbiology , Impetigo/prevention & control , Streptococcus pyogenes , Streptococcal Infections/veterinary , Streptococcal Infections/prevention & control , Streptococcal Infections/epidemiology , Streptococcal Infections/microbiology , Risk Factors , Rheumatic Fever/prevention & control
8.
Onderstepoort J Vet Res ; 91(1): e1-e8, 2024 Apr 18.
Article in English | MEDLINE | ID: mdl-38708768

ABSTRACT

Interface areas shared by humans, domestic and wild animals may serve as high transmission contexts for Toxoplasma gondii. However, knowledge about the epidemiology of T. gondii in such areas is currently limited. The present study assessed the seroprevalence of T. gondii in different hosts from Mpumalanga, South Africa. Furthermore, we investigated the local knowledge and related practices about T. gondii by conducting a questionnaire study in the community. Blood samples were obtained and analysed for T. gondii antibodies using a commercial multispecies latex agglutination kit. The seroprevalence detected in humans (n = 160; patients showing signs of acute febrile illness), cats (n = 9), chickens (n = 336) and goats (n = 358) was 8.8%, 0.0%, 4.2% and 11.2%, respectively. Seroprevalence in impalas (n = 97), kudus (n = 55), wild dogs (n = 54), wildebeests (n = 43), warthogs (n = 97) and zebras (n = 68) was calculated at 5.2%, 7.3%, 100.0%, 20.9%, 13.4% and 9.1%, respectively. The questionnaire revealed that 63.0% of household owners were subsistence farmers, and 35.9% were pet owners. A high level of female participation was found (75.3%) when compared to male participation (24.7%). The results show a low circulation of T. gondii in the domestic cycle and suggest the presence of possible bridges between the wildlife cycle and the surrounding domestic cycle.Contribution: The study contributes to identifying transmission patterns and risk factors of T. gondii within human and animal populations. This topic fits within the scope of the journal presenting original research in veterinary science, with the focus on wild and domestic populations on the African continent on a topic of universal importance.


Subject(s)
Animals, Wild , Toxoplasma , Toxoplasmosis, Animal , Animals , South Africa/epidemiology , Humans , Seroepidemiologic Studies , Toxoplasmosis, Animal/epidemiology , Female , Male , Toxoplasmosis/epidemiology , Cats , Livestock/parasitology , Antibodies, Protozoan/blood , Zoonoses , Goats , Surveys and Questionnaires
9.
Sci Rep ; 14(1): 10431, 2024 05 07.
Article in English | MEDLINE | ID: mdl-38714841

ABSTRACT

Reverse zoonotic respiratory diseases threaten great apes across Sub-Saharan Africa. Studies of wild chimpanzees have identified the causative agents of most respiratory disease outbreaks as "common cold" paediatric human pathogens, but reverse zoonotic transmission pathways have remained unclear. Between May 2019 and August 2021, we conducted a prospective cohort study of 234 children aged 3-11 years in communities bordering Kibale National Park, Uganda, and 30 adults who were forest workers and regularly entered the park. We collected 2047 respiratory symptoms surveys to quantify clinical severity and simultaneously collected 1989 nasopharyngeal swabs approximately monthly for multiplex viral diagnostics. Throughout the course of the study, we also collected 445 faecal samples from 55 wild chimpanzees living nearby in Kibale in social groups that have experienced repeated, and sometimes lethal, epidemics of human-origin respiratory viral disease. We characterized respiratory pathogens in each cohort and examined statistical associations between PCR positivity for detected pathogens and potential risk factors. Children exhibited high incidence rates of respiratory infections, whereas incidence rates in adults were far lower. COVID-19 lockdown in 2020-2021 significantly decreased respiratory disease incidence in both people and chimpanzees. Human respiratory infections peaked in June and September, corresponding to when children returned to school. Rhinovirus, which caused a 2013 outbreak that killed 10% of chimpanzees in a Kibale community, was the most prevalent human pathogen throughout the study and the only pathogen present at each monthly sampling, even during COVID-19 lockdown. Rhinovirus was also most likely to be carried asymptomatically by adults. Although we did not detect human respiratory pathogens in the chimpanzees during the cohort study, we detected human metapneumovirus in two chimpanzees from a February 2023 outbreak that were genetically similar to viruses detected in study participants in 2019. Our data suggest that respiratory pathogens circulate in children and that adults become asymptomatically infected during high-transmission times of year. These asymptomatic adults may then unknowingly carry the pathogens into forest and infect chimpanzees. This conclusion, in turn, implies that intervention strategies based on respiratory symptoms in adults are unlikely to be effective for reducing reverse zoonotic transmission of respiratory viruses to chimpanzees.


Subject(s)
Common Cold , Pan troglodytes , Animals , Humans , Child , Female , Male , Child, Preschool , Common Cold/epidemiology , Common Cold/virology , Adult , Uganda/epidemiology , Prospective Studies , Zoonoses/epidemiology , Zoonoses/virology , COVID-19/epidemiology , COVID-19/virology , COVID-19/transmission , Ape Diseases/epidemiology , Ape Diseases/virology , Respiratory Tract Infections/epidemiology , Respiratory Tract Infections/virology , Respiratory Tract Infections/veterinary , Rhinovirus/isolation & purification , Rhinovirus/genetics , SARS-CoV-2/isolation & purification , Incidence
10.
Ned Tijdschr Geneeskd ; 1682024 May 14.
Article in Dutch | MEDLINE | ID: mdl-38747614

ABSTRACT

BACKGROUND: Worldwide, disease in children due to exposure to rats is increasing, also in the Netherlands. Not only the generally known pathogen Leptospira should be considered, also S. moniliformis, Yersinia pestis, Lymphocytic choriomeningitis virus, Hantavirus, Francisella tularensis and Pasteurella multocida are also known rat-associated zoonosis. CASE DESCRIPTION: An 12-year-old boy visited the pediatrician with fever, headache and nausea, followed by generalized erythema and arthritis. The boy had a pet rat. The patient's blood culture was positive for S. moniliformis. The patient was treated with antibiotics and made a full recovery. CONCLUSION: Just like many rat-associated diseases have 'rat-bite fever' caused by S. moniliformis an nonspecific clinical presentation. It is not necessary to have had a rat bite, to develop rat-bite fever. Better awareness and knowledge about rat related diseases should contribute to earlier diagnosis and treatment. Which is of great importance because of increased morbidity and mortality associated to rat related diseases.


Subject(s)
Anti-Bacterial Agents , Rat-Bite Fever , Child , Male , Humans , Rat-Bite Fever/diagnosis , Rat-Bite Fever/drug therapy , Animals , Anti-Bacterial Agents/therapeutic use , Rats , Treatment Outcome , Streptobacillus/isolation & purification , Zoonoses/diagnosis
11.
BMC Public Health ; 24(1): 1272, 2024 May 09.
Article in English | MEDLINE | ID: mdl-38724984

ABSTRACT

BACKGROUND: Zoonotic infections are a recognised risk for the veterinary community. Veterinary students are at risk, due to the range of activities they participate with on training coupled with their inexperience; yet the prevalence and severity of infections in veterinary students has been little studied. In this study, a survey explored zoonotic infections in UK and Irish veterinary students. METHODS: A survey containing both open and closed questions, was distributed to undergraduate veterinary students at all veterinary schools in the UK and Republic of Ireland. Descriptive statistics, and univariable logistic regression were used to explore quantitative data; thematic analysis was used to explore qualitative data. RESULTS: There were 467 responses, 31.5% (95% CI 27.3-35.9, n = 147) of those students reported having contracted at least one zoonotic infection during their studies. The most prevalent self-reported infections were cryptosporidiosis (15.2% of all respondents), dermatophytosis (5.6%), and other gastrointestinal infections assumed to be of zoonotic origin (4.5%). 7% of respondents reported having acquired a zoonosis within the last 12 months, 91% of these infections were acquired during farm placements. Thematic analysis (n = 34) showed that infection was an accepted risk, particularly on farm, and students were often reluctant to take time off their studies or placements as a result of infection. Reporting was very low, meaning universities would not have accurate figures on infection risk or particularly risky placement providers. CONCLUSIONS: Based on these survey results, veterinary students appear to be at increased risk of contracting zoonotic diseases, particularly on farm placements. Attitude and behaviour change at multiple levels is required to reduce the risk of infection to students and normalise reporting of illness.


Subject(s)
Zoonoses , Humans , Ireland/epidemiology , Cross-Sectional Studies , United Kingdom/epidemiology , Male , Female , Animals , Zoonoses/epidemiology , Adult , Young Adult , Students/statistics & numerical data , Students/psychology , Surveys and Questionnaires , Prevalence , Adolescent
12.
Nat Commun ; 15(1): 4171, 2024 May 16.
Article in English | MEDLINE | ID: mdl-38755147

ABSTRACT

Human Ebola virus (EBOV) outbreaks caused by persistent EBOV infection raises questions on the role of zoonotic spillover in filovirus epidemiology. To characterise filovirus zoonotic exposure, we collected cross-sectional serum samples from bushmeat hunters (n = 498) in Macenta Prefecture Guinea, adjacent to the index site of the 2013 EBOV-Makona spillover event. We identified distinct immune signatures (20/498, 4.0%) to multiple EBOV antigens (GP, NP, VP40) using stepwise ELISA and Western blot analysis and, live EBOV neutralisation (5/20; 25%). Using comparative serological data from PCR-confirmed survivors of the 2013-2016 EBOV outbreak, we demonstrated that most signatures (15/20) were not plausibly explained by prior EBOV-Makona exposure. Subsequent data-driven modelling of EBOV immunological outcomes to remote-sensing environmental data also revealed consistent associations with intact closed canopy forest. Together our findings suggest exposure to other closely related filoviruses prior to the 2013-2016 West Africa epidemic and highlight future surveillance priorities.


Subject(s)
Antibodies, Viral , Ebolavirus , Hemorrhagic Fever, Ebola , Humans , Animals , Guinea/epidemiology , Ebolavirus/immunology , Ebolavirus/isolation & purification , Hemorrhagic Fever, Ebola/epidemiology , Hemorrhagic Fever, Ebola/immunology , Hemorrhagic Fever, Ebola/virology , Hemorrhagic Fever, Ebola/blood , Hemorrhagic Fever, Ebola/transmission , Adult , Male , Antibodies, Viral/blood , Antibodies, Viral/immunology , Middle Aged , Zoonoses/virology , Zoonoses/epidemiology , Zoonoses/transmission , Female , Cross-Sectional Studies , Disease Outbreaks , Young Adult , Aged , Enzyme-Linked Immunosorbent Assay , Viral Zoonoses/epidemiology , Viral Zoonoses/transmission , Viral Zoonoses/virology , Antigens, Viral/immunology
13.
Article in English | MEDLINE | ID: mdl-38747851

ABSTRACT

Microsporum canis, one of the most widespread dermatophytes worldwide, is a zoonotic microorganism that transmits infection from reservoirs such as cats and dogs to humans. This microorganism is associated with Tinea corporis and other clinical manifestations; however, few studies have used genetic surveillance to determine and characterize the process of zoonotic transmission. In this study, we show a clear example of zoonotic transmission from a cat to an intrafamilial environment, where it caused Tinea corporis by infection with M. canis. Molecular characterization using the b-tubulin gene and Random Amplified Polymorphic DNA analysis made it possible to determine that the six isolates of M. canis obtained in this study belonged to the same genetic variant or clone responsible for reservoir-reservoir or reservoir-human transmission.


Subject(s)
Cat Diseases , Microsporum , Tinea , Zoonoses , Microsporum/isolation & purification , Microsporum/genetics , Microsporum/classification , Cats/microbiology , Animals , Tinea/microbiology , Tinea/transmission , Tinea/veterinary , Cat Diseases/microbiology , Cat Diseases/transmission , Zoonoses/microbiology , Zoonoses/transmission , Pets/microbiology , Humans , Dogs , Random Amplified Polymorphic DNA Technique , Male , Female , Dog Diseases/microbiology , Dog Diseases/transmission , DNA, Fungal/genetics
14.
Vet Parasitol Reg Stud Reports ; 51: 101024, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38772639

ABSTRACT

Dogs play an important role as hosts and reservoirs for many zoonotic diseases. Ehrlichiosis, babesiosis and hepatozoonosis are a group of canine vector-borne diseases that can be transmitted via ectoparasites from dog to dog and also from dog to humans. This study focused on three main blood parasites of dog (i.e., Babesia spp., Ehrlichia spp. and Hepatozoon spp.) among two different landscape types of eight villages of Santhong Sub-district, Nan Province, Thailand. In this study, 149 dogs were surveyed and blood samples were collected. Blood parasite infections in dogs were assessed using molecular detection approach. Babesia canis vogeli, Babesia gibsoni, Ehrlichia canis and Hepatozoon canis were detected with prevalence of infection at 10.7%, 8.1%, 3.4% and 0.7%, respectively. In terms of landscape type, prevalence of overall blood parasites, particularly Babesia spp. infections were higher in dogs living in upland forested areas (28.3%) compared to dogs from lowland agricultural areas (12.3%). Data obtained from the questionnaires on perceptions of dog owners showed that dogs raised all the time outside owner's house, and those dogs whose owners have never bathed and cleaned were more likely to be exposed to blood parasites. As infected dogs could play an important role as reservoirs of the blood parasites, attitude of dog owners may affect public health in terms of zoonotic disease transmission. Effective control measures and surveillance program of arthropod vectors and blood parasite infection in dogs still need to be advocated to minimize zoonotic disease transmission.


Subject(s)
Babesia , Babesiosis , Dog Diseases , Animals , Dogs , Thailand/epidemiology , Dog Diseases/epidemiology , Dog Diseases/parasitology , Babesiosis/epidemiology , Babesiosis/parasitology , Female , Male , Prevalence , Babesia/isolation & purification , Humans , Ehrlichiosis/veterinary , Ehrlichiosis/epidemiology , Zoonoses/parasitology , Coccidiosis/veterinary , Coccidiosis/epidemiology , Coccidiosis/parasitology , Eucoccidiida/isolation & purification , Ehrlichia canis/isolation & purification
15.
Vet Parasitol Reg Stud Reports ; 51: 101025, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38772640

ABSTRACT

Egyptians are becoming more interested in owning and raising pets; however, most of them lack essential awareness about the risk of zoonotic parasites that could be transmitted. The objective of the present investigation was to evaluate the degree of awareness Egyptian pet owners possess concerning zoonotic parasitic diseases, the risk of transmission, and preventative measures. A cross-sectional study was conducted using an e-survey. Among 246 pet owners, 64.2% (158) were females, and 67.9% (167) belonged to the 20-30 age group. The majority, 78.9% (194), were raising cats. Only 13.8% (34) visited the veterinarian regularly, with significantly higher results among dog owners (p < 0.05). Only 31.3% (77) participants were regularly deworming their pets, and 19.9% (49) were giving their pets prophylaxis against ectoparasites, with significantly higher results among those who visited the veterinarian regularly (p < 0.0001) and among dog owners (p < 0.05). Only 54.1% (133) had heard about the term "zoonoses" before, and about 8.9% (22) of participants showed a history of zoonotic parasitic diseases, with significantly higher results among those who allowed their animals to play with other animals of neighbors and friends (p < 0.05). The obtained results concluded that the surveyed group had a relatively good degree of knowledge regarding pets as a source of zoonotic illness; raising pet owners' awareness regarding the importance of routine medical examinations and minimizing the contact of pets with other stray animals is essential.


Subject(s)
Health Knowledge, Attitudes, Practice , Pets , Zoonoses , Animals , Egypt/epidemiology , Zoonoses/prevention & control , Zoonoses/parasitology , Humans , Female , Male , Adult , Cross-Sectional Studies , Cats , Dogs , Young Adult , Pets/parasitology , Middle Aged , Cat Diseases/parasitology , Cat Diseases/prevention & control , Cat Diseases/epidemiology , Surveys and Questionnaires , Parasitic Diseases, Animal/prevention & control , Parasitic Diseases, Animal/epidemiology , Parasitic Diseases, Animal/parasitology , Dog Diseases/prevention & control , Dog Diseases/parasitology , Dog Diseases/transmission , Dog Diseases/epidemiology , Adolescent
16.
Acta Trop ; 255: 107249, 2024 Jul.
Article in English | MEDLINE | ID: mdl-38740319

ABSTRACT

BACKGROUND: Natural human infections by Plasmodium cynomolgi and P. inui have been reported recently and gain the substantial attention from Southeast Asian countries. Zoonotic transmission of non-human malaria parasites to humans from macaque monkeys occurred through the bites of the infected mosquitoes. The objective of this study is to establish real-time fluorescence loop-mediated isothermal amplification (LAMP) assays for the detection of zoonotic malaria parasites by combining real-time fluorescent technology with the isothermal amplification technique. METHODS: By using 18S rRNA as the target gene, the primers for P. cynomolgi, P. coatneyi and P. inui were newly designed in the present study. Four novel real-time fluorescence LAMP assays were developed for the detection of P. cynomolgi, P. coatneyi, P. inui and P. knowlesi. The entire amplification process was completed in 60 min, with the assays performed at 65 °C. By using SYTO-9 as the nucleic acid intercalating dye, the reaction was monitored via real-time fluorescence signal. RESULTS: There was no observed cross-reactivity among the primers from different species. All 70 field-collected monkey samples were successfully amplified by real-time fluorescence LAMP assays. The detection limit for P. cynomolgi, P. coatneyi and P. knowlesi was 5 × 109 copies/µL. Meanwhile, the detection limit of P. inui was 5 × 1010 copies/µL. CONCLUSION: This is the first report of the detection of four zoonotic malaria parasites by real-time fluorescence LAMP approaches. It is an effective, rapid and simple-to-use technique. This presented platform exhibits considerable potential as an alternative detection for zoonotic malaria parasites.


Subject(s)
Malaria , Molecular Diagnostic Techniques , Nucleic Acid Amplification Techniques , Plasmodium , RNA, Ribosomal, 18S , Sensitivity and Specificity , Zoonoses , Animals , Nucleic Acid Amplification Techniques/methods , Malaria/diagnosis , Malaria/parasitology , Malaria/veterinary , RNA, Ribosomal, 18S/genetics , Molecular Diagnostic Techniques/methods , Plasmodium/genetics , Plasmodium/isolation & purification , Plasmodium/classification , Zoonoses/parasitology , Zoonoses/diagnosis , Humans , DNA Primers/genetics , Fluorescence , Macaca/parasitology , Monkey Diseases/parasitology , Monkey Diseases/diagnosis
17.
Infect Dis Poverty ; 13(1): 37, 2024 May 23.
Article in English | MEDLINE | ID: mdl-38783378

ABSTRACT

Natural, geographical barriers have historically limited the spread of communicable diseases. This is no longer the case in today's interconnected world, paired with its unprecedented environmental and climate change, emphasising the intersection of evolutionary biology, epidemiology and geography (i.e. biogeography). A total of 14 articles of the special issue entitled "Geography and health: role of human translocation and access to care" document enhanced disease transmission of diseases, such as malaria, leishmaniasis, schistosomiasis, COVID-19 (Severe acute respiratory syndrome corona 2) and Oropouche fever in spite of spatiotemporal surveillance. High-resolution satellite images can be used to understand spatial distributions of transmission risks and disease spread and to highlight the major avenue increasing the incidence and geographic range of zoonoses represented by spill-over transmission of coronaviruses from bats to pigs or civets. Climate change and globalization have increased the spread and establishment of invasive mosquitoes in non-tropical areas leading to emerging outbreaks of infections warranting improved physical, chemical and biological vector control strategies. The translocation of pathogens and their vectors is closely connected with human mobility, migration and the global transport of goods. Other contributing factors are deforestation with urbanization encroaching into wildlife zones. The destruction of natural ecosystems, coupled with low income and socioeconomic status, increase transmission probability of neglected tropical and zoonotic diseases. The articles in this special issue document emerging or re-emerging diseases and surveillance of fever symptoms. Health equity is intricately connected to accessibility to health care and the targeting of healthcare resources, necessitating a spatial approach. Public health comprises successful disease management integrating spatial surveillance systems, including access to sanitation facilities. Antimicrobial resistance caused, e.g. by increased use of antibiotics in health, agriculture and aquaculture, or acquisition of resistance genes, can be spread by horizontal gene transfer. This editorial reviews the key findings of this 14-article special issue, identifies important gaps relevant to our interconnected world and makes a number of specific recommendations to mitigate the transmission risks of infectious diseases in the post-COVID-19 pandemic era.


Subject(s)
Health Services Accessibility , Zoonoses , Humans , Animals , Zoonoses/epidemiology , COVID-19/transmission , COVID-19/epidemiology , Communicable Diseases/epidemiology , Communicable Diseases/transmission , SARS-CoV-2 , Geography
18.
Emerg Infect Dis ; 30(6): 1258-1262, 2024 Jun.
Article in English | MEDLINE | ID: mdl-38782140

ABSTRACT

Ancylostoma ceylanicum is the second most common hookworm infecting humans in the Asia-Pacific region. Recent reports suggest presence of the parasite in the Americas. We report A. ceylanicum infections in coyotes from the Guanacaste Conservation Area, Costa Rica. Our findings call for active surveillance in humans and animals.


Subject(s)
Ancylostoma , Ancylostomiasis , Coyotes , Zoonoses , Costa Rica/epidemiology , Animals , Ancylostomiasis/epidemiology , Ancylostomiasis/veterinary , Ancylostomiasis/parasitology , Ancylostomiasis/diagnosis , Ancylostoma/isolation & purification , Zoonoses/parasitology , Coyotes/parasitology , Humans
19.
Elife ; 122024 May 16.
Article in English | MEDLINE | ID: mdl-38753426

ABSTRACT

Zoonotic disease dynamics in wildlife hosts are rarely quantified at macroecological scales due to the lack of systematic surveys. Non-human primates (NHPs) host Plasmodium knowlesi, a zoonotic malaria of public health concern and the main barrier to malaria elimination in Southeast Asia. Understanding of regional P. knowlesi infection dynamics in wildlife is limited. Here, we systematically assemble reports of NHP P. knowlesi and investigate geographic determinants of prevalence in reservoir species. Meta-analysis of 6322 NHPs from 148 sites reveals that prevalence is heterogeneous across Southeast Asia, with low overall prevalence and high estimates for Malaysian Borneo. We find that regions exhibiting higher prevalence in NHPs overlap with human infection hotspots. In wildlife and humans, parasite transmission is linked to land conversion and fragmentation. By assembling remote sensing data and fitting statistical models to prevalence at multiple spatial scales, we identify novel relationships between P. knowlesi in NHPs and forest fragmentation. This suggests that higher prevalence may be contingent on habitat complexity, which would begin to explain observed geographic variation in parasite burden. These findings address critical gaps in understanding regional P. knowlesi epidemiology and indicate that prevalence in simian reservoirs may be a key spatial driver of human spillover risk.


Zoonotic diseases are infectious diseases that are transmitted from animals to humans. For example, the malaria-causing parasite Plasmodium knowlesi can be transmitted from monkeys to humans through mosquitos that have previously fed on infected monkeys. In Malaysia, progress towards eliminating malaria is being undermined by the rise of human incidences of 'monkey malaria', which has been declared a public health threat by The World Health Organisation. In humans, cases of monkey malaria are higher in areas of recent deforestation. Changes in habitat may affect how monkeys, insects and humans interact, making it easier for diseases like malaria to pass between them. Deforestation could also change the behaviour of wildlife, which could lead to an increase in infection rates. For example, reduced living space increases contact between monkeys, or it may prevent behaviours that help animals to avoid parasites. Johnson et al. wanted to investigate how the prevalence of malaria in monkeys varies across Southeast Asia to see whether an increase of Plasmodium knowlesi in primates is linked to changes in the landscape. They merged the results of 23 existing studies, including data from 148 sites and 6322 monkeys to see how environmental factors like deforestation influenced the amount of disease in different places. Many previous studies have assumed that disease prevalence is high across all macaques, monkey species that are considered pests, and in all places. But Johnson et al. found that disease rates vary widely across different regions. Overall disease rates in monkeys are lower than expected (only 12%), but in regions with less forest or more 'fragmented' forest areas, malaria rates are higher. Areas with a high disease rate in monkeys tend to further coincide with infection hotspots for humans. This suggests that deforestation may be driving malaria infection in monkeys, which could be part of the reason for increased human infection rates. Johnsons et al.'s study has provided an important step towards better understanding the link between deforestation and the levels of monkey malaria in humans living nearby. Their study provides important insights into how we might find ways of managing the landscape better to reduce health risks from wildlife infection.


Subject(s)
Malaria , Plasmodium knowlesi , Primates , Zoonoses , Animals , Humans , Asia, Southeastern/epidemiology , Ecosystem , Malaria/epidemiology , Malaria/transmission , Malaria/parasitology , Prevalence , Primate Diseases/epidemiology , Primate Diseases/parasitology , Primate Diseases/transmission , Primates/parasitology , Zoonoses/epidemiology , Zoonoses/parasitology , Zoonoses/transmission
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