A One Health Approach to Investigating Leptospira Serogroups and Their Spatial Distributions among Humans and Animals in Rio Grande do Sul, Brazil, 2013–2015
Abstract
:1. Introduction
2. Materials and Methods
2.1. Study Area
2.2. Study Design and Data Collection
2.3. Definitions
2.3.1. Confirmed Human Leptospirosis Case Definition
2.3.2. Confirmed Animal Leptospirosis Case Definition
2.3.3. Definitions for Interpreting MAT Results
MAT testing for humans:
- (1)
- Reactive ELISA-IgM sample in an acute sample and seroconversion in MAT from an acute sample to a second sample taken 14–60 days after symptom onset, with a titer greater than or equal to 200;
- (2)
- Increase of four times or more in MAT titers between two samples collected within 14 days after the onset of symptoms (maximum of 60 days) between them;
- (3)
- When two or more samples are not available, a single acute sample greater than or equal to a titer of 800 in MAT.
MAT testing for animals:
Presumptive serogroup MAT definition:
2.3.4. Ecoregion Definition
2.4. Data Analysis and Management
3. Results
4. Discussion
Author Contributions
Funding
Acknowledgments
Conflicts of Interest
Appendix A
Variable | 2013 n (% Total) | 2014 n (% Total) | 2015 n (% Total) | TOTAL n (% Total) |
---|---|---|---|---|
Sex | ||||
Female | 2 (2.22) | 4 (4.44) | 5 (5.56) | 11 (12.22) |
Male | 11 (12.22) | 38 (42.22) | 30 (33.33) | 79 (87.78) |
Race | ||||
Black | 2 (2.22) | - | 2 (2.22) | 4 (4.44) |
Parda | - | 1 (1.11) | - | 1 (1.11) |
White | 11 (12.22) | 41 (45.56) | 33 (36.67) | 85 (94.44) |
Human settlement | ||||
Urban | 10 (11.11) | 25 (27.78) | 23 (25.56) | 58 (64.44) |
Rural | 3 (3.33) | 16 (17.78) | 12 (13.33) | 31(34.44) |
Peri-urban | - | 1 (1.11) | - | 1 (1.11) |
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Serogroup | Species | |||||
---|---|---|---|---|---|---|
n (% Serogroup Total) | Total n (% Total) | |||||
Human | Bovine | Canine | Equine | Others | ||
Andamana | 4 (100) | - | - | - | - | 4 (1.04) |
Australis | 12 (42.86) | 7 (25.00) | 1 (3.57) | 8 (28.57) | - | 28 (7.27) |
Autumnalis | 1 (9.09) | 3 (27.27) | 1 (9.09) | 6 (54.55) | - | 11 (2.86) |
Ballum | 6 (100) | - | - | - | - | 6 (1.56) |
Bataviae | 2 (66.67) | 1 (33.33) | - | - | - | 3 (0.78) |
Canicola | 3 (33.33) | - | 3 (33.33) | 3 (33.33) | - | 9 (2.34) |
Castellonis | - | 1 (100) | - | - | - | 1 (0.26) |
Celledoni | - | 9 (39.13) | 6 (26.09) | 7 (30.43) | 1 (4.35) | 23 (5.97) |
Cynopteri | 3 (60.00) | - | 2 (40.00) | - | - | 5 (1.30) |
Djasiman | 1 (100) | - | - | - | - | 1 (0.26) |
Grippotyphosa | 7 (77.78) | 2 (22.22) | - | - | - | 9 (2.34) |
Hebdomadis | 2 (33.33) | 4 (66.67) | - | - | - | 6 (1.56) |
Icterohaemorrhagiae | 18 (50.00) | 10 (27.78) | 4 (11.11) | 2 (5.56) | 2 (5.56) | 36 (9.35) |
Javanica | 1 (33.33) | 1 (33.33) | - | 1 (33.33) | - | 3 (0.78) |
Mini | - | 1(100) | - | - | - | 1 (0.26) |
Panama | 1 (11.11) | 2 (22.22) | 2 (22.22) | 4 (44.44) | - | 9 (2.34) |
Pomona | 6 (60.00) | 4 (40.00) | - | - | - | 10 (2.60) |
Pyrogenes | 3 (75.00) | - | - | 1 (25.00) | - | 4 (1.04) |
Sejroe | 9 (4.62) | 142 (72.82) | - | 19 (9.74) | 25 (12.82) | 195 (50.65) |
Semaranga | 4 (100) | - | - | - | - | 4 (1.04) |
Shermani | 2 (100) | - | - | - | - | 2 (0.52) |
Tarassovi | 5 (33.33) | - | - | 10 (66.66) | - | 15 (3.90) |
TOTAL | 90 | 187 | 19 | 61 | 28 | 385 |
Variable | N (Total %) |
---|---|
Occupation | n = occupation |
Livestock farmer | 2 (2.22) |
Mason | 3 (3.33) |
Agriculture producer | 3 (3.33) |
Rice farmer | 4 (4.44) |
Part-time agricultural hire | 5 (5.56) |
Truck driver | 6 (6.67) |
Agricultural worker | 12 (13.33) |
Not mentioned | 55 (61.11) |
Reported exposure risk factors | n = risk Factors |
Water tank | 7 (7.78) |
Sewage | 12 (13.33) |
Direct contact rodents | 27 (30.00) |
Water, mud, flooding | 31 (34.44) |
Rubbish/rubble | 32 (35.56) |
Proximity to river/stream/dam | 36 (40.00) |
Grain/food storage | 37 (41.11) |
Wasteland | 41 (45.56) |
Planting/harvesting | 49 (54.44) |
Animal breeding | 65 (72.22) |
Local rodents | 86 (95.56) |
Variable | Ecoregions | |||||
---|---|---|---|---|---|---|
n (% Species by Ecoregion) | ||||||
Araucaria | Atlantic | Parana-Paraiba | Savannah | Serra do Mar | Total | |
Species | ||||||
Human | 8 (33.33) | 1 (100) | 46 (52.87) | 34 (12.5) | 1 (100) | 90 (23.38) |
Bovine | 11 (45.83) | - | 33 (37.93) | 143 (52.57) | - | 187 (48.57) |
Equine | 2 (8.33) | - | 5 (5.75) | 54 (19.85) | - | 61 (15.84) |
Canine | - | - | - | 19 (6.99) | - | 19 (4.94) |
Others | 3 (12.50) | - | 3 (3.45) | 22 (8.09) | - | 28 (7.27) |
Serogroups | ||||||
Andamana | - | 1 (100) | 2 (2.30) | 1 (0.37) | - | 4 (1.04) |
Australis | - | - | 10 (11.49) | 18 (6.12) | - | 28 (7.27) |
Autumnalis | - | - | 1 (1.15) | 10 (3.68) | - | 11 (2.86) |
Ballum | 2 (8.33) | - | 2 (2.30) | 2 (0.74) | - | 6 (1.56) |
Bataviae | - | - | 2 (2.30) | 1 (0.37) | - | 3 (0.78) |
Canicola | 1 (4.17) | - | 1 (1.15) | 7 (2.57) | - | 9 (2.34) |
Castellonis | - | - | - | 1 (0.37) | - | 1 (0.26) |
Celledoni | 2 (8.33) | - | 3 (3.45) | 18 (6.62) | - | 23 (5.97) |
Cynopteri | - | - | 1 (1.15) | 4 (1.47) | - | 5 (1.30) |
Djasiman | - | - | - | 1 (0.37) | - | 1 (0.26) |
Grippotyphosa | 1 (4.17) | - | 5 (5.75) | 3 (1.10) | - | 9 (2.34) |
Hebdomadis | - | - | 1 (1.15) | 5 (1.84) | - | 6 (1.56) |
Icterohaemorrhagiae | 5 (20.83) | - | 13 (14.94) | 18 (6.62) | - | 36 (9.35) |
Javanica | 1 (4.17) | - | - | 2 (0.74) | - | 3 (0.78) |
Mini | - | - | - | 1 (0.37) | - | 1 (0.26) |
Panama | 1 (4.17) | - | 1 (1.15) | 7 (2.57) | - | 9 (2.34) |
Pomona | 2 (8.33) | - | 4 (4.60) | 3 (1.10) | 1 (100) | 10 (2.60) |
Pyrogenes | - | - | 2 (2.30) | 2 (0.74) | - | 4 (1.04) |
Sejroe | 7 (29.17) | - | 35 (40.23) | 153 (56.25) | - | 195 (50.65) |
Semaranga | 1 (4.17) | - | 1 (1.15) | 2 (0.74) | - | 4 (1.04) |
Shermani | 1 (4.17) | - | - | 1 (0.37) | - | 2 (0.52) |
Tarassovi | - | - | 3 (3.45) | 12 (4.41) | - | 15 (3.90) |
TOTAL | 24 | 1 | 87 | 272 | 1 | 385 |
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Polo, N.; Machado, G.; Rodrigues, R.; Nájera Hamrick, P.; Munoz-Zanzi, C.; Pereira, M.M.; Bercini, M.; Timm, L.N.; Schneider, M.C. A One Health Approach to Investigating Leptospira Serogroups and Their Spatial Distributions among Humans and Animals in Rio Grande do Sul, Brazil, 2013–2015. Trop. Med. Infect. Dis. 2019, 4, 42. https://doi.org/10.3390/tropicalmed4010042
Polo N, Machado G, Rodrigues R, Nájera Hamrick P, Munoz-Zanzi C, Pereira MM, Bercini M, Timm LN, Schneider MC. A One Health Approach to Investigating Leptospira Serogroups and Their Spatial Distributions among Humans and Animals in Rio Grande do Sul, Brazil, 2013–2015. Tropical Medicine and Infectious Disease. 2019; 4(1):42. https://doi.org/10.3390/tropicalmed4010042
Chicago/Turabian StylePolo, Noemi, Gustavo Machado, Rogerio Rodrigues, Patricia Nájera Hamrick, Claudia Munoz-Zanzi, Martha Maria Pereira, Marilina Bercini, Loeci Natalina Timm, and Maria Cristina Schneider. 2019. "A One Health Approach to Investigating Leptospira Serogroups and Their Spatial Distributions among Humans and Animals in Rio Grande do Sul, Brazil, 2013–2015" Tropical Medicine and Infectious Disease 4, no. 1: 42. https://doi.org/10.3390/tropicalmed4010042