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1.
PLoS Negl Trop Dis ; 18(5): e0012174, 2024 May.
Article En | MEDLINE | ID: mdl-38748731

BACKGROUND: In the last two decades, several rapid lateral flow immunoassays (LFIs) for the diagnosis of human leptospirosis were developed and commercialized. However, the accuracy and reliability of these LFIs are not well understood. In this study, we aimed to evaluate the accuracy of leptospirosis LFIs as well as the factors affecting the test efficiency using systematic review and meta-analysis. METHODS AND RESULTS: Original articles reporting the accuracy of human leptospirosis LFIs against microagglutination tests (MAT) or immunofluorescent assays (IFA) were searched from PubMed, Embase, and Scopus, and selected as per pre-set inclusion and exclusion criteria. A total of 49 data entries extracted from 24 eligible records published between 2003 and 2023 were included for meta-analysis. A meta-analysis was performed using STATA. The quality of the included studies was assessed according to the revised QUADAS-2. Only nine studies (32.1%) were considered to have a low risk of bias and no concern for applicability. Pooled sensitivity and specificity were calculated to be 68% (95% confidence interval, CI: 57-78) and 93% (95% CI: 90-95), respectively. However, the ranges of sensitivity (3.6 - 100%) and specificity (53.5 - 100%) of individual entries are dramatically broad, possibly due to the heterogeneity found in both study designs and LFIs themselves. Subgroup analysis demonstrated that IgM detection has better sensitivity than detection of IgG alone. Moreover, the test performance seems to be unaffected by samples from different phases of infection. CONCLUSIONS: The pooled specificity of LFIs observed is somewhat acceptable, but the pooled sensitivity is low. These results, however, must be interpreted with caution because of substantial heterogeneity. Further evaluations of the LFIs with well-standardized design and reference test will be needed for a greater understanding of the test performance. Additionally, IgM detection type should be employed when leptospirosis LFIs are developed in the future.


Leptospirosis , Sensitivity and Specificity , Leptospirosis/diagnosis , Leptospirosis/immunology , Humans , Immunoassay/methods , Antibodies, Bacterial/blood , Leptospira/immunology , Leptospira/isolation & purification , Reproducibility of Results
2.
PLoS Negl Trop Dis ; 18(5): e0011292, 2024 May.
Article En | MEDLINE | ID: mdl-38758957

BACKGROUND: Leptospirosis is a zoonosis caused by pathogenic species of bacteria belonging to the genus Leptospira. Most studies infer the epidemiological patterns of a single serogroup or aggregate all serogroups to estimate overall seropositivity, thus not exploring the risks of exposure to distinct serogroups. The present study aims to delineate the demographic, socioeconomic and environmental factors associated with seropositivity of Leptospira serogroup Icterohaemorraghiae and serogroup Cynopteri in an urban high transmission setting for leptospirosis in Brazil. METHODS/PRINCIPAL FINDINGS: We performed a cross-sectional serological study in five informal urban communities in the city of Salvador, Brazil. During the years 2018, 2020 2021, we recruited 2.808 residents and collected blood samples for serological analysis using microagglutination assays. We used a fixed-effect multinomial logistic regression model to identify risk factors associated with seropositivity for each serogroup. Seropositivity to Cynopteri increased with each year of age (OR 1.03; 95% CI 1.01-1.06) and was higher in those living in houses with unplastered walls (exposed brick) (OR 1.68; 95% CI 1.09-2.59) and where cats were present near the household (OR 2.00; 95% CI 1.03-3.88). Seropositivity to Icterohaemorrhagiae also increased with each year of age (OR 1.02; 95% CI 1.01-1.03) and was higher in males (OR 1.51; 95% CI 1.09-2.10), in those with work-related exposures (OR 1.71; 95% CI 1.10-2.66) or who had contact with sewage (OR 1.42; 95% CI 1.00-2.03). Spatial analysis showed differences in distribution of seropositivity to serogroups Icterohaemorrhagiae and Cynopteri within the five districts where study communities were situated. CONCLUSIONS/SIGNIFICANCE: Our data suggest distinct epidemiological patterns associated with the Icterohaemorrhagiae and Cynopteri serogroups in the urban environment at high risk for leptospirosis and with differences in spatial niches. We emphasize the need for studies that accurately identify the different pathogenic serogroups that circulate and infect residents of low-income areas.


Leptospira interrogans , Leptospira , Leptospirosis , Serogroup , Leptospirosis/epidemiology , Leptospirosis/microbiology , Leptospirosis/transmission , Brazil/epidemiology , Humans , Male , Adult , Female , Cross-Sectional Studies , Middle Aged , Leptospira/classification , Leptospira/immunology , Leptospira/isolation & purification , Young Adult , Adolescent , Leptospira interrogans/immunology , Leptospira interrogans/classification , Leptospira interrogans/isolation & purification , Risk Factors , Seroepidemiologic Studies , Urban Population , Antibodies, Bacterial/blood , Animals , Child , Aged
3.
Res Vet Sci ; 174: 105292, 2024 Jul.
Article En | MEDLINE | ID: mdl-38759347

Leptospirosis is a neglected bacterial zoonosis that affects a wide range of mammals, with important implications from a One Health perspective. Over the past years feline leptospirosis has gained increased attention in the scientific community. Here we describe a systematic review with meta-analysis that followed the PRISMA guidelines, with an additional PROSPERO registration. The study provides global seropositivity, urinary shedding rates, global serogroup distribution, descriptive data of leptospires that had been isolated from cats and clinical and laboratory features presented by symptomatic cats with acute disease. The search was carried out in six different databases, with the identification of 79 reports describing leptospiral infection in cats. The pooled frequency of seroreactive cats was 11% (95% CI: 9%-13%), with Javanica and Pomona as the most frequent serogroups found. Frequency for urinary shedding was 8% (95% CI: 5%-10%), with L. interrogans identified in most samples. A total of 16 isolates were isolated from cats, with Bataviae as the most frequent serogroup. Twenty symptomatic cats with confirmed leptospiral infection were identified. Anorexia, lethargy, polydipsia, and bleeding disorders were the clinical signs most frequently reported. The results suggest that cats from some locations are exposed to leptospires and may act as urinary shedders of this pathogen, thus indicating a possible role of this species in disease transmission. Clinical data indicates that acute infection is mostly atypical when compared to dogs, and due to difficulties to define an archetypal clinical presentation in cats, feline leptospirosis is likely to be underdiagnosed disease in this species.


Cat Diseases , Leptospirosis , Animals , Cats , Cat Diseases/microbiology , Leptospira/isolation & purification , Leptospira/immunology , Leptospirosis/veterinary , Leptospirosis/epidemiology , Leptospirosis/microbiology
4.
Sci Rep ; 14(1): 12263, 2024 05 28.
Article En | MEDLINE | ID: mdl-38806576

Bacterial zoonoses are diseases caused by bacterial pathogens that can be naturally transmitted between humans and vertebrate animals. They are important causes of non-malarial fevers in Kenya, yet their epidemiology remains unclear. We investigated brucellosis, Q-fever and leptospirosis in the venous blood of 216 malaria-negative febrile patients recruited in two health centres (98 from Ijara and 118 from Sangailu health centres) in Garissa County in north-eastern Kenya. We determined exposure to the three zoonoses using serological (Rose Bengal test for Brucella spp., ELISA for C. burnetti and microscopic agglutination test for Leptospira spp.) and real-time PCR testing and identified risk factors for exposure. We also used non-targeted metagenomic sequencing on nine selected patients to assess the presence of other possible bacterial causes of non-malarial fevers. Considerable PCR positivity was found for Brucella (19.4%, 95% confidence intervals [CI] 14.2-25.5) and Leptospira spp. (1.7%, 95% CI 0.4-4.9), and high endpoint titres were observed against leptospiral serovar Grippotyphosa from the serological testing. Patients aged 5-17 years old had 4.02 (95% CI 1.18-13.70, p-value = 0.03) and 2.42 (95% CI 1.09-5.34, p-value = 0.03) times higher odds of infection with Brucella spp. and Coxiella burnetii than those of ages 35-80. Additionally, patients who sourced water from dams/springs, and other sources (protected wells, boreholes, bottled water, and water pans) had 2.39 (95% CI 1.22-4.68, p-value = 0.01) and 2.24 (1.15-4.35, p-value = 0.02) times higher odds of exposure to C. burnetii than those who used unprotected wells. Streptococcus and Moraxella spp. were determined using metagenomic sequencing. Brucellosis, leptospirosis, Streptococcus and Moraxella infections are potentially important causes of non-malarial fevers in Garissa. This knowledge can guide routine diagnosis, thus helping lower the disease burden and ensure better health outcomes, especially in younger populations.


Fever , Leptospira , Leptospirosis , Humans , Kenya/epidemiology , Adolescent , Male , Child , Female , Adult , Child, Preschool , Middle Aged , Leptospirosis/diagnosis , Leptospirosis/epidemiology , Leptospirosis/blood , Leptospirosis/microbiology , Fever/microbiology , Fever/diagnosis , Fever/epidemiology , Animals , Young Adult , Leptospira/genetics , Leptospira/isolation & purification , Leptospira/immunology , Bacterial Zoonoses/diagnosis , Bacterial Zoonoses/epidemiology , Bacterial Zoonoses/microbiology , Brucellosis/diagnosis , Brucellosis/epidemiology , Brucellosis/blood , Brucellosis/microbiology , Brucella/isolation & purification , Brucella/immunology , Brucella/genetics , Outpatients , Q Fever/diagnosis , Q Fever/epidemiology , Q Fever/microbiology , Q Fever/blood , Aged , Serologic Tests , Zoonoses/microbiology , Zoonoses/diagnosis , Zoonoses/epidemiology
5.
Comp Immunol Microbiol Infect Dis ; 109: 102171, 2024 Jun.
Article En | MEDLINE | ID: mdl-38598876

Leptospirosis is a (re) emerging zoonosis that occurs worldwide. This study aimed to assess seroprevalence of leptospirosis and to identify the most common reactive serovars and risk factors for seropositivity in apparently healthy stray dogs of unknown vaccination status in the Sarajevo region of Bosnia and Herzegovina. Positive microscopic agglutination test titres (≥ 1:25) were detected in 3.87% (156/4028) of samples and most of the sera reacted against one serovar (85.9%). Dogs were most commonly reactive to Canicola (40.4%) and Hardjo (33.3%), followed by Pomona (15.4%) Tarassovi (14.7%), Icterohaemorrhagiae (8.3%), Grippotyphosa (5.8%), Bratislava (1.3%) and Saxkoebing (0.6%). Dogs older than one year had higher odds of seropositivity compared to younger dogs. The seropositivity was higher in spring and autumn than in summer. These results advocate for the need of a control strategy for this zoonosis in the country, which should include sero-surveillance, monitoring, and the inclusion of additional serovars in the testing.


Antibodies, Bacterial , Dog Diseases , Leptospira , Leptospirosis , Animals , Leptospirosis/epidemiology , Leptospirosis/veterinary , Leptospirosis/microbiology , Dogs , Seroepidemiologic Studies , Bosnia and Herzegovina/epidemiology , Dog Diseases/epidemiology , Dog Diseases/microbiology , Leptospira/immunology , Antibodies, Bacterial/blood , Risk Factors , Male , Female , Seasons , Serogroup , Agglutination Tests/veterinary , Zoonoses/epidemiology
6.
Vaccine ; 42(13): 3220-3229, 2024 May 10.
Article En | MEDLINE | ID: mdl-38641497

Leptospirosis, a globally significant zoonotic disease caused by pathogenic Leptospira, continues to threaten the health and public safety of both humans and animals. Current clinical treatment of leptospirosis mainly relies on antibiotics but their efficacy in severe cases is controversial. Passive immunization has a protective effect in the treatment of infectious diseases. In addition, chicken egg yolk antibody (IgY) has gained increasing attention as a safe passive immunization agent. This study aimed to investigate whether hens produce specific IgY after immunization with inactivated Leptospira and the protective effect of specific IgY against leptospirosis. First, it was demonstrated that specific IgY could be extracted from the eggs of hens vaccinated with inactivated Leptospira and that specific IgY can specifically recognize and bind homotypic Leptospira with a high titre, as shown by MAT and ELISA. Next, we tested the therapeutic effects of IgY in early and late leptospirosis using a hamster model. The results showed that early specific IgY treatment increased the survival rate of hamsters to 100%, alleviated pathological damage to the liver, kidney, and lung, reduced leptospiral burden, and restored haematological indices as well as functional indicators of the liver and kidney. The therapeutic effect of early specific IgY was comparable to that of doxycycline. Late IgY treatment also enhanced the survival rate of hamsters and improved the symptoms of leptospirosis similar to early IgY treatment. However, the therapeutic effect of late IgY treatment was better when combined with doxycycline. Furthermore, no Leptospira colonization was observed in the kidneys, livers, or lungs of the surviving hamsters treated with specific IgY. Mechanistically, IgY was found to inhibit the growth and adhesion to cells of Leptospira. In conclusion, passive immunotherapy with specific IgY can be considered an effective treatment for leptospirosis, and may replace antibiotics regarding its therapeutic effects.


Antibodies, Bacterial , Immunization, Passive , Immunoglobulins , Leptospira , Leptospirosis , Animals , Cricetinae , Female , Antibodies, Bacterial/immunology , Chickens/immunology , Disease Models, Animal , Doxycycline/therapeutic use , Doxycycline/administration & dosage , Doxycycline/pharmacology , Egg Yolk/immunology , Immunization, Passive/methods , Immunoglobulins/immunology , Immunoglobulins/administration & dosage , Kidney/pathology , Kidney/immunology , Kidney/microbiology , Leptospira/immunology , Leptospirosis/immunology , Leptospirosis/prevention & control , Leptospirosis/therapy , Liver/immunology , Liver/pathology , Liver/microbiology , Mesocricetus , Vaccines, Inactivated/immunology , Vaccines, Inactivated/administration & dosage
7.
PLoS Negl Trop Dis ; 16(2): e0010191, 2022 02.
Article En | MEDLINE | ID: mdl-35192629

Leptospirosis is a fatal zoonosis caused by contact between skin or a mucosal surface and contaminated soil or water. Hamsters were infected by intraperitoneal injection fto establish experimental leptospirosis, which is not a natural route of infection. There are no reports of nasal mucosal infection in hamsters. In this study, infection of the nasal mucosa was performed to establish a model of natural infection. Both methods of infection can cause lethal models with similar symptoms in the later stages of infection, such as weight loss, blood concentration, increased neutrophils (GRAN), and decreased lymphocytes (LYM) in the blood, severe organ damage and liver function obstruction. The burden of Leptospira in the organs and blood was lower in the mucosal inoculation groups at 1 day after infection. However, mucosal infection induced a higher Leptospira burden in urine than intraperitoneal infection in the late stages of infection. After nasal mucosal infection, antibody levels were higher and lasted longer. These results indicated that the route of nasal mucosal infection is a good choice for studying leptospirosis in hamsters.


Disease Models, Animal , Leptospira/physiology , Leptospirosis/microbiology , Nasal Mucosa/microbiology , Animals , Antibodies, Bacterial/blood , Cricetinae , Female , Humans , Leptospira/immunology , Leptospirosis/blood , Leptospirosis/mortality , Liver/microbiology
8.
PLoS Negl Trop Dis ; 16(1): e0010100, 2022 Jan.
Article En | MEDLINE | ID: mdl-35041681

BACKGROUND: Leptospirosis is a zoonotic disease with a worldwide distribution, caused by pathogenic serovars in the genus Leptospira. Feral pigs are known carriers of Leptospira species and pig hunting using dogs is a common recreational activity in Queensland, Australia. METHODOLOGY AND PRINCIPAL FINDINGS: This study aimed to determine the seroprevalence of Leptospira spp. serovars in pig-hunting dogs above the Tropic of Capricorn in Queensland and by establishing the geographic distribution, serovars and incidence of human cases of leptospirosis in Queensland, identify potential overlap between human and canine exposure. We also explored the knowledge and risk-taking behaviours of pig-hunting dog owners towards zoonotic diseases. Ninety-eight pig-hunting dogs deemed healthy by physical examination and owned by 41 people from Queensland had serum submitted for Microscopic Agglutination Testing (MAT) to determine antibody titres against Leptospira serovars, while 40/41 dog owners completed a survey on their knowledge of diseases relating to pig hunting. Human leptospirosis cases (n = 330) notified to Queensland Health between 2015-2018 were analysed. Approximately one quarter (23/87; 26%) of unvaccinated pig-hunting dogs were seropositive to Leptospira spp. Although harder to interpret, 8/11 (73%) vaccinated dogs were seropositive to Leptospira spp. Pig hunters may be more likely to contract leptospirosis compared with the general Queensland population, based on responses from surveyed hunters. The highest concentration of human leptospirosis was in the wet tropics region of Far North Queensland. There was little overlap between the serovars dogs were exposed to and those infecting humans. The dominant serovar identified in unvaccinated dogs was Australis (13/23; 57%), with serovar Arborea (36/330; 10.9%) responsible for the highest number of human leptospirosis cases. Topaz was the second most common serovar in both humans and dogs and was previously unrecorded in Australian dogs. Most hunters surveyed used hand washing as a zoonotic disease risk reduction technique. CONCLUSIONS: Leptospirosis is an emerging disease of growing significance. The infection requires a 'one health' approach to understand its epidemiology. With shifting climatic patterns influencing human-animal-environment interactions, ongoing monitoring of diseases like leptospirosis is critical to helping prevent infection of individuals and disease outbreaks.


Dog Diseases/epidemiology , Leptospirosis/epidemiology , Leptospirosis/veterinary , Vaccination/veterinary , Animals , Australia/epidemiology , Bacterial Vaccines/immunology , Communicable Diseases, Emerging/epidemiology , Communicable Diseases, Emerging/microbiology , Dog Diseases/microbiology , Dogs , Female , Hand Disinfection , Humans , Hunting/statistics & numerical data , Leptospira/immunology , Male , Personal Protective Equipment/statistics & numerical data , Queensland/epidemiology , Swine/microbiology , Swine Diseases/microbiology
9.
Infect Immun ; 90(1): e0049221, 2022 01 25.
Article En | MEDLINE | ID: mdl-34694919

Pathogenic Leptospira species cause leptospirosis, a neglected zoonotic disease recognized as a global public health problem. It is also the cause of the most common cattle infection that results in major economic losses due to reproductive problems. γδ T cells play a role in the protective immune response in livestock species against Leptospira, while human γδ T cells also respond to Leptospira. Thus, activation of γδ T cells has emerged as a potential component in the optimization of vaccine strategies. Bovine γδ T cells proliferate and produce gamma interferon (IFN-γ) in response to vaccination with inactivated leptospires, and this response is mediated by a specific subpopulation of the WC1-bearing γδ T cells. WC1 molecules are members of the group B scavenger receptor cysteine-rich (SRCR) superfamily and are composed of multiple SRCR domains, of which particular extracellular domains act as ligands for Leptospira. Since WC1 molecules function as both pattern recognition receptors and γδ TCR coreceptors, the WC1 system has been proposed as a novel target to engage γδ T cells. Here, we demonstrate the involvement of leptospiral protein antigens in the activation of WC1+ γδ T cells and identify two leptospiral outer membrane proteins able to interact directly with them. Interestingly, we show that the protein-specific γδ T cell response is composed of WC1.1+ and WC1.2+ subsets, although a greater number of WC1.1+ γδ T cells respond. Identification of protein antigens will enhance our understanding of the role γδ T cells play in the leptospiral immune response and in recombinant vaccine development.


Antigens, Bacterial/immunology , Bacterial Proteins/immunology , Leptospira/immunology , Leptospirosis/immunology , Receptors, Antigen, T-Cell, gamma-delta/immunology , T-Lymphocyte Subsets/immunology , Vaccine Development , Animals , Cattle , Cattle Diseases/immunology , Cattle Diseases/microbiology , Cattle Diseases/prevention & control , Immunization , Immunophenotyping , Leptospirosis/microbiology , Leptospirosis/prevention & control , Ligands , Protein Binding , Protein Interaction Domains and Motifs , Recombinant Proteins , T-Lymphocyte Subsets/metabolism , Vaccines, Synthetic/immunology
10.
Methods Mol Biol ; 2410: 325-344, 2022.
Article En | MEDLINE | ID: mdl-34914055

Leptospirosis is a bacterial zoonotic disease with significant impact on health all over the world. Currently, bacterins are the only vaccines available for prevention of this disease, despite several drawbacks. In an effort to develop a more effective vaccine against leptospirosis, reverse and structural vaccinology have been applied to design recombinant constructions composed of leptospiral surface-exposed antigens. Herein, we describe a protocol for design and development of Leptospirosis recombinant vaccines using immunoinformatic approaches.


Leptospira , Leptospirosis , Antigens, Bacterial , Bacterial Vaccines , Humans , Leptospira/genetics , Leptospira/immunology , Leptospirosis/prevention & control , Vaccines, Synthetic/genetics
11.
PLoS Negl Trop Dis ; 15(12): e0009708, 2021 12.
Article En | MEDLINE | ID: mdl-34874936

BACKGROUND: Leptospirosis is a zoonotic disease transmitted through the urine of wild and domestic animals, and is responsible for over 50,000 deaths each year. In East Africa, prevalence varies greatly, from as low as 7% in Kenya to 37% in Somalia. Transmission epidemiology also varies around the world, with research in Nicaragua showing that rodents are the most clinically important, while studies in Egypt and Chile suggest that dogs may play a more important role. There are no published studies of leptospirosis in Rwanda. METHODS & FINDINGS: We performed a cross-sectional survey of asymptomatic adults recruited from five occupational categories. Serum samples were tested using ELISA and Microscopic Agglutination Test (MAT). We found that 40.1% (151/377) of asymptomatic adults had been exposed to Leptospira spp. Almost 36.3% of positive subjects reported contact with rats (137/377) which represent 90.7% among positive leptospira serology compared with 48.2% of negative subjects (182/377) which represent 80.5% among negative leptospira serology (OR 2.37, CI 1.25-4.49) and 1.7 fold on prevalence ratio and 2.37 of odd ratio. Furthermore, being a crop farmer was significantly associated with leptospirosis (OR 2.06, CI 1.29-3.28). We identified 6 asymptomatic subjects (1.6%) who met criteria for acute infection. CONCLUSIONS: This study demonstrates a high prevalence of leptospiral antibodies infection among asymptomatic adults in rural Rwanda, particularly relative to neighboring countries. Although positive subjects were more likely to report rat contact, we found no independent association between rats and leptospirosis infection. Nonetheless, exposure was high among crop farmers, which is supportive of the hypothesis that rats together with domestic livestock might contribute to the transmission. Further studies are needed to understand infecting Leptospira servers and elucidate the transmission epidemiology in Rwanda and identify means of host transmitters.


Antibodies, Bacterial/blood , Leptospira/immunology , Leptospirosis/blood , Adult , Aged , Agglutination Tests , Animals , Asymptomatic Diseases/epidemiology , Cross-Sectional Studies , Female , Humans , Leptospira/classification , Leptospira/genetics , Leptospira/isolation & purification , Leptospirosis/epidemiology , Leptospirosis/microbiology , Leptospirosis/transmission , Male , Middle Aged , Prevalence , Rodentia/microbiology , Rwanda/epidemiology , Seroepidemiologic Studies , Young Adult , Zoonoses/blood , Zoonoses/epidemiology , Zoonoses/microbiology , Zoonoses/transmission
12.
PLoS Negl Trop Dis ; 15(12): e0009993, 2021 12.
Article En | MEDLINE | ID: mdl-34905535

BACKGROUND: Leptospirosis is considered an endemic disease among agricultural workers in Okinawa Prefecture, which is the southernmost part of Japan and has a subtropical climate, but data on the current status and trend of this disease are scarce. METHODOLOGY/PRINCIPAL FINDINGS: We conducted a retrospective study of clinically suspected leptospirosis patients whose sample and information were sent to the Okinawa Prefectural Institute of Health and Environment from November 2003 to December 2020. Laboratory diagnosis was established using culture, nested polymerase chain reaction (PCR), and/or microscopic agglutination test (MAT) with blood, cerebrospinal fluid, and/or urine samples. Statistical analyses were performed to compare the epidemiological information, clinical features, and sensitivities of diagnostic methods among laboratory-confirmed cases. Serogroups and the species of Leptospira isolates were determined by MAT using 13 antisera and flaB sequencing. A total of 531 clinically suspected patients were recruited, among whom 246 (46.3%) were laboratory confirmed to have leptospirosis. Among the confirmed cases, patients aged 20-29 years (22.4%) and male patients (85.7%) were the most common. The most common estimated sources of infection were recreation (44.5%) and labor (27.8%) in rivers. Approximately half of the isolates were of the L. interrogans serogroup Hebdomadis. The main clinical symptoms were fever (97.1%), myalgia (56.3%), and conjunctival hyperemia (52.2%). Headache occurred significantly more often in patients with Hebdomadis serogroup infections than those with other serogroup infections. The sensitivities of culture and PCR exceeded 65% during the first 6 days, while the sensitivity of MAT surpassed that of culture and PCR in the second week after onset. PCR using blood samples was a preferable method for the early diagnosis of leptospirosis. CONCLUSIONS/SIGNIFICANCE: The results of this study will support clinicians in the diagnosis and treatment of undifferentiated febrile patients in Okinawa Prefecture as well as patients returning from Okinawa Prefecture.


Leptospira/pathogenicity , Leptospirosis/diagnosis , Leptospirosis/epidemiology , Academies and Institutes , Adult , Conjunctivitis/epidemiology , Conjunctivitis/microbiology , Endemic Diseases , Female , Fever/epidemiology , Fever/microbiology , Headache/epidemiology , Headache/microbiology , Humans , Japan/epidemiology , Leptospira/classification , Leptospira/genetics , Leptospira/immunology , Leptospirosis/physiopathology , Male , Myalgia/epidemiology , Myalgia/microbiology , Retrospective Studies , Serogroup , Young Adult
13.
PLoS Negl Trop Dis ; 15(11): e0009859, 2021 11.
Article En | MEDLINE | ID: mdl-34780473

During 2019-2020, the Virgin Islands Department of Health investigated potential animal reservoirs of Leptospira spp., the bacteria that cause leptospirosis. In this cross-sectional study, we investigated Leptospira spp. exposure and carriage in the small Indian mongoose (Urva auropunctata, syn: Herpestes auropunctatus), an invasive animal species. This study was conducted across the three main islands of the U.S. Virgin Islands (USVI), which are St. Croix, St. Thomas, and St. John. We used the microscopic agglutination test (MAT), fluorescent antibody test (FAT), real-time polymerase chain reaction (lipl32 rt-PCR), and bacterial culture to evaluate serum and kidney specimens and compared the sensitivity, specificity, positive predictive value, and negative predictive value of these laboratory methods. Mongooses (n = 274) were live-trapped at 31 field sites in ten regions across USVI and humanely euthanized for Leptospira spp. testing. Bacterial isolates were sequenced and evaluated for species and phylogenetic analysis using the ppk gene. Anti-Leptospira spp. antibodies were detected in 34% (87/256) of mongooses. Reactions were observed with the following serogroups: Sejroe, Icterohaemorrhagiae, Pyrogenes, Mini, Cynopteri, Australis, Hebdomadis, Autumnalis, Mankarso, Pomona, and Ballum. Of the kidney specimens examined, 5.8% (16/270) were FAT-positive, 10% (27/274) were culture-positive, and 12.4% (34/274) were positive by rt-PCR. Of the Leptospira spp. isolated from mongooses, 25 were L. borgpetersenii, one was L. interrogans, and one was L. kirschneri. Positive predictive values of FAT and rt-PCR testing for predicting successful isolation of Leptospira by culture were 88% and 65%, respectively. The isolation and identification of Leptospira spp. in mongooses highlights the potential role of mongooses as a wildlife reservoir of leptospirosis; mongooses could be a source of Leptospira spp. infections for other wildlife, domestic animals, and humans.


Disease Reservoirs/microbiology , Herpestidae/microbiology , Leptospira/isolation & purification , Agglutination Tests , Animals , Cross-Sectional Studies , Herpestidae/physiology , Humans , Introduced Species/statistics & numerical data , Kidney/microbiology , Leptospira/genetics , Leptospira/immunology , Leptospirosis/microbiology , Leptospirosis/transmission , Phylogeny , United States Virgin Islands
14.
PLoS One ; 16(11): e0260052, 2021.
Article En | MEDLINE | ID: mdl-34784395

Diagnosis and surveillance of pathogenic Leptospira is difficult as organisms may be intermittently shed and in small numbers. Therefore, serologic testing by the microscopic agglutination test (MAT) is the primary screening method for leptospirosis. While a MAT titer ≥1:100 is considered to be a positive result, interpretation is complicated by the use of commercial vaccines in pigs. Most guidelines for interpretation of MAT titers in pigs were published in the 1970's and 1980's, prior to the development of the current multivalent vaccines. We evaluated MAT titers in routinely vaccinated healthy research pigs compared to their unvaccinated cohorts. Our study confirmed previous reports that the Pomona serovar elicits minimal antibody response even after a second booster 6 months after initial vaccination. However, MAT titers of ≥1:3,200 were detected as early as 4 weeks post initial vaccination for serovars Bratislava and Icterohaemorrhagiae and remained as high as ≥1:1,600 prior to booster at 24 weeks post vaccination. Our study determined that high levels of MAT titers can occur from vaccination alone and high titers are not necessarily indicative of infection. Therefore, the interpretation of MAT titers as indicators of Leptospira infection should be readdressed.


Leptospira/immunology , Leptospirosis/veterinary , Swine Diseases/immunology , Vaccines, Combined/administration & dosage , Agglutination Tests , Animals , Leptospirosis/diagnosis , Leptospirosis/immunology , Population Surveillance , Practice Guidelines as Topic , Serogroup , Swine , Swine Diseases/diagnosis , Swine Diseases/microbiology , Vaccination/veterinary , Vaccines, Combined/immunology
15.
Sci Rep ; 11(1): 19785, 2021 10 05.
Article En | MEDLINE | ID: mdl-34611273

In the present study, we developed a genus-specific rGroEL1-524 IgM-ELISA assay for use in screening diagnosis of suspected leptospirosis among acute undifferentiated febrile illness patients during acute fever. The diagnostic accuracies of the rGroEL1-524 IgM-ELISA, commercial Panbio IgM-ELISA, and Virion-Serion Classic IgG-ELISA were evaluated using 133 Thai leptospirosis sera and 210 controls. Sensitivities were 91.7%, 59.6%, and 17.7% for acute infection, and the specificities were 92.6%, 90.2%, and 88.3% for the non-leptospirosis control, respectively. The rGroEL1-524 IgM-ELISA had high sensitivity, at 92.3% and 91.7%, among culture-positive and MAT-negative cases at 1-3 days post-onset of symptoms (DPO1-3), respectively. Impaired specificity on scrub typhus was found, possibly from antibody cross-reaction to ortholog GroEL. Commercial Panbio IgM-ELISA had sensitivities at DPO1-3 of 30.8% and 41.7% for culture-positive and MAT-negative cases whereas Virion-Serion IgG-ELISA showed sensitivities of 5.9% and 13.3%, respectively. The rGroEL1-524 IgM-ELISA could be useful as a screening test for early diagnosis. The performance of the commercial ELISA suggests the applicability of IgM-ELISA for diagnosis, while IgG-ELISA is useful for seroprevalence surveys. However, confirmation by reference tests is recommended.


Chaperonin 60/immunology , Enzyme-Linked Immunosorbent Assay/methods , Enzyme-Linked Immunosorbent Assay/standards , Immunoglobulin M/immunology , Leptospirosis/diagnosis , Leptospirosis/epidemiology , Reagent Kits, Diagnostic , Antibodies, Bacterial/immunology , Epitopes/immunology , Humans , Leptospira/immunology , Mass Screening , Sensitivity and Specificity , Seroepidemiologic Studies , Thailand/epidemiology
16.
Vet Microbiol ; 262: 109220, 2021 Nov.
Article En | MEDLINE | ID: mdl-34509026

Leptospirosis vaccines that elicit broad protection against a range of pathogenic Leptospira spp. would overcome a major drawback of currently licensed bacterin vaccines. Live attenuated vaccine produced from a lipopolysaccharide (LPS) mutant strain of L. interrogans serovar Manilae M1352 (Live M1352) stimulated better protective efficacy than heat killed M1352 (HK M1352) against a heterologous challenge with L. interrogans serovar Pomona. To identify antigens of Live M1352 potentially responsible for cross protection, in vivo-induced antigen technology (IVIAT), a powerful tool to identify in vivo-induced (ivi) genes expressed during infection, was employed in this study. Pooled sera from hamsters immunized with Live M1352 were sequentially adsorbed with various preparations of in vitro grown M1352. The pre-adsorbed sera were used to screen a genomic expression library of M1352. Nineteen strongly reactive clones were selected for DNA sequencing. These ivi genes are conserved in most Leptospira strains. Four selected genes including LIMLP_04965 (tolB), LIMLP_01535, LIMLP_06785 (fliI), and LIMLP_14930 were confirmed for their upregulated expression in kidneys of infected hamsters by RT-qPCR, suggesting their role in leptospiral infection. These ivi proteins represent potential targets for vaccine candidates that warrant further investigation for their protective efficacy.


Bacterial Vaccines , Leptospira , Leptospirosis , Lipopolysaccharides , Animals , Antibodies, Bacterial/immunology , Bacterial Vaccines/immunology , Bacterial Vaccines/standards , Cricetinae , Leptospira/genetics , Leptospira/immunology , Leptospira interrogans/genetics , Leptospira interrogans/immunology , Leptospirosis/prevention & control , Leptospirosis/veterinary , Lipopolysaccharides/genetics , Lipopolysaccharides/immunology , Vaccines, Attenuated/immunology
17.
Front Immunol ; 12: 712123, 2021.
Article En | MEDLINE | ID: mdl-34394114

The WC1 cell surface family of molecules function as hybrid gamma delta (γδ) TCR co-receptors, augmenting cellular responses when cross-linked with the TCR, and as pattern recognition receptors, binding pathogens. It is known that following activation, key tyrosines are phosphorylated in the intracytoplasmic domains of WC1 molecules and that the cells fail to respond when WC1 is knocked down or, as shown here, when physically separated from the TCR. Based on these results we hypothesized that the colocalization of WC1 and TCR will occur following cellular activation thereby allowing signaling to ensue. We evaluated the spatio-temporal dynamics of their interaction using imaging flow cytometry and stochastic optical reconstruction microscopy. We found that in quiescent γδ T cells both WC1 and TCR existed in separate and spatially stable protein domains (protein islands) but after activation using Leptospira, our model system, that they concatenated. The association between WC1 and TCR was close enough for fluorescence resonance energy transfer. Prior to concatenating with the WC1 co-receptor, γδ T cells had clustering of TCR-CD3 complexes and exclusion of CD45. γδ T cells may individually express more than one variant of the WC1 family of molecules and we found that individual WC1 variants are clustered in separate protein islands in quiescent cells. However, the islands containing different variants merged following cell activation and before merging with the TCR islands. While WC1 was previously shown to bind Leptospira in solution, here we showed that Leptospira bound WC1 proteins on the surface of γδ T cells and that this could be blocked by anti-WC1 antibodies. In conclusion, γδ TCR, WC1 and Leptospira interact directly on the γδ T cell surface, further supporting the role of WC1 in γδ T cell pathogen recognition and cellular activation.


Flow Cytometry/methods , Leptospira/immunology , Lymphocyte Activation , Membrane Glycoproteins/immunology , Microscopy, Fluorescence/methods , Protein Interaction Mapping/methods , Receptors, Antigen, T-Cell, gamma-delta/immunology , T-Lymphocyte Subsets/immunology , Animals , Bacterial Vaccines , CD3 Complex/immunology , Cattle , Cattle Diseases/prevention & control , Fluorescence Resonance Energy Transfer , Immunologic Memory , Leptospira/ultrastructure , Leptospirosis/prevention & control , Leptospirosis/veterinary , Protein Binding , Stochastic Processes , T-Lymphocyte Subsets/ultrastructure , Vaccines, Inactivated
18.
PLoS Negl Trop Dis ; 15(8): e0009670, 2021 08.
Article En | MEDLINE | ID: mdl-34403427

BACKGROUND: Fever with jaundice is a common symptom of some infectious diseases. In public health surveillance within the Democratic Republic of the Congo (DRC), yellow fever is the only recognized cause of fever with jaundice. However, only 5% of the surveillance cases are positive for yellow fever and thus indicate the involvement of other pathogens. Leptospira spp. are the causative agents of leptospirosis, a widespread bacterial zoonosis, a known cause of fever with jaundice. This study aimed to determine the seropositivity of anti-Leptospira antibodies among suspected yellow fever cases and map the geographical distribution of possible leptospirosis in the DRC. METHODS: We conducted a retrospective study using 1,300 samples from yellow fever surveillance in the DRC from January 2017 to December 2018. Serum samples were screened for the presence of IgM against Leptospira spp. by a whole cell-based IgM ELISA (Patoc-IgM ELISA) at the Institut National de Recherche Biomedicale in Kinshasa (INRB) according to World Health Organization (WHO) guidance. Exploratory univariable and multivariable logistic regression analyses were undertaken to assess associations between socio-demographic factors and the presence of Leptospira IgM. RESULTS: Of the 1,300 serum samples screened, 88 (7%) showed evidence of IgM against Leptospira spp. Most positive cases (34%) were young adult males in the 20-29-year group. There were statistically significant associations between having Leptospira IgM antibodies, age, sex, and living area. Observed positive cases were mostly located in urban settings, and the majority lived in the province of Kinshasa. There was a statistically significant association between seasonality and IgM Leptospira spp. positivity amongst those living in Kinshasa, where most of the positive cases occurred during the rainy season. CONCLUSIONS: This study showed that leptospirosis is likely an overlooked cause of unexplained cases of fever with jaundice in the DRC and highlights the need to consider leptospirosis in the differential diagnosis of fever with jaundice, particularly in young adult males. Further studies are needed to identify animal reservoirs, associated risk factors, and the burden of human leptospirosis in the DRC.


Fever/diagnosis , Fever/epidemiology , Fever/microbiology , Leptospirosis/diagnosis , Leptospirosis/epidemiology , Adolescent , Adult , Animals , Antibodies, Bacterial/blood , Child , Child, Preschool , Democratic Republic of the Congo/epidemiology , Humans , Immunoglobulin M/blood , Infant , Infant, Newborn , Jaundice/diagnosis , Jaundice/epidemiology , Jaundice/microbiology , Leptospira/immunology , Logistic Models , Male , Middle Aged , Multivariate Analysis , Retrospective Studies , Yellow Fever/diagnosis , Yellow Fever/epidemiology , Yellow Fever/microbiology , Young Adult
19.
BMC Vet Res ; 17(1): 221, 2021 Jun 21.
Article En | MEDLINE | ID: mdl-34154583

BACKGROUND: Leptospirosis is an endemic zoonosis in Brazil, with a great impact on human and animal health. Although dogs are frequently infected by pathogenic Leptospira, the current epidemiological understanding of canine leptospirosis is mainly based on serological tests that predict the infecting serogroup/serovar. Thus, the present study aimed at identifying the causative agent for severe cases of canine leptospirosis in a highly endemic area through the isolation and characterization of the isolated strains. RESULTS: Urine, serum and blood samples were collected from 31 dogs with suspected acute leptospirosis treated at the Veterinary Hospital Service of Santo Amaro University between 2018 and 2019. Acute infection was confirmed in 17 dogs (54.8%) by the associated use of Polymerase Chain Reaction (PCR), Microscopic Agglutination (MAT) and bacteriological culture. Eleven dogs (35.5%) had titers ≥800, with the most frequent serogroups being Autumnalis and Icterohaemorrhagiae (n = 4 each) and Canicola (n = 2). Leptospires were recovered from four dogs, and Multilocus Sequence Analysis (MLSA) revealed infection caused by L. interrogans, which were further characterized as serogroups Canicola (n = 1) and Icterohaemorrhagiae (n = 3). CONCLUSION: The identity of the isolates and serological pattern of MAT suggest that dogs are highly exposed to the serogroup Icterohaemorrhagiae and Canicola, also indicating possible circulation of serogroups not yet isolated in Brazil, notably serogroup Autumnalis. Our findings also reinforce the usefulness of using multiple diagnostic approaches to confirm acute canine leptospirosis.


Dog Diseases/diagnosis , Leptospira/isolation & purification , Leptospirosis/veterinary , Agglutination Tests/veterinary , Animals , Brazil , Dog Diseases/microbiology , Dogs , Leptospira/classification , Leptospira/genetics , Leptospira/immunology , Leptospira interrogans/isolation & purification , Leptospirosis/diagnosis , Leptospirosis/microbiology , Multilocus Sequence Typing/veterinary , Polymerase Chain Reaction/veterinary , Serogroup
20.
Sci Rep ; 11(1): 10365, 2021 05 14.
Article En | MEDLINE | ID: mdl-33990653

Leptospirosis is a zoonosis caused by pathogenic Leptospira spp. Cats have been reported to be infected with Leptospira spp. and shed the bacteria in the urine. However, the importance of cats as an infection source for humans remains unclear. In this study, Leptospira infection in cats in Okinawa Prefecture, Japan, where leptospirosis is endemic, was investigated by leptospiral antibody and DNA detection using microscopic agglutination test and nested PCR, respectively. Moreover, multilocus sequence typing (MLST) and whole genome sequencing (WGS) were conducted on the Leptospira borgpetersenii serogroup Javanica isolated from cats, black rats, a mongoose, and humans. Anti-Leptospira antibodies were detected in 16.6% (40/241) of the cats tested, and the predominant reactive serogroup was Javanica. The leptospiral flaB gene was detected in 7.1% (3/42) of cat urine samples, and their sequences were identical and identified as L. borgpetersenii. MLST and WGS revealed the genetic relatedness of L. borgpetersenii serogroup Javanica isolates. This study indicated that most seropositive cats had antibodies against the serogroup Javanica and that cats excreted L. borgpetersenii in the urine after infection. Further, genetic relatedness between cat and human isolates suggests that cats may be a maintenance host for L. borgpetersenii serogroup Javanica and a source for human infection.


Cat Diseases/microbiology , Leptospira/genetics , Leptospirosis/veterinary , Animals , Antibodies, Bacterial/blood , Antibodies, Bacterial/immunology , Cats , DNA, Bacterial/genetics , DNA, Bacterial/isolation & purification , Female , Japan/epidemiology , Leptospira/immunology , Leptospira/isolation & purification , Leptospirosis/blood , Leptospirosis/epidemiology , Leptospirosis/microbiology , Male , Molecular Epidemiology , Multilocus Sequence Typing , Whole Genome Sequencing
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