Correlation between Anti-Toxoplasma gondii IgG Antibodies in Serum and Colostrum of Naturally Infected Sheep and Passive Immunization in Lambs
Abstract
:1. Introduction
2. Materials and Methods
2.1. Experimental Design
2.2. Sample Collection
2.3. Serological and Colostral Tests
2.4. Statistical Analysis
3. Results
4. Discussion
5. Conclusions
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Conflicts of Interest
References
- Dubey, J.P.; Beattie, C.P. Toxoplasmosis of Animals and Human, 2nd ed.; CRC Press: Boca Raton, FL, USA, 2010; 313p. [Google Scholar]
- Silva, S.S.; Batista, S.P.; Sarmento, W.F.; da Silva, R.F.; Sousa, L.N.; Bezerra, R.A.; Oliveira, C.S.M.; Brasil, A.W.L.; Feitosa, T.F.; Vilela, V.L.R. Seroprevalence and isolation of Toxoplasma gondii in sheep intended for human consumption in Paraíba, northeastern Brazil. Parasitol. Res. 2021, 120, 3925–3931. [Google Scholar] [CrossRef] [PubMed]
- Tadesse, B.; Tesfahun, A.; Molla, W.; Demisse, E.; Jemberu, W.T. Foot and mouth disease outbreak investigation and estimation of its economic impact in selected districts in northwest Ethiopia. Vet. Med. Sci. 2020, 6, 122–132. [Google Scholar] [CrossRef] [PubMed]
- Vilela, V.L.R.; Feitosa, T.F.; Simões, S.V.D.; Mota, R.A.; Katzer, F.; Bartley, P.M. An abortion storm in a goat farm in the Northeast Region of Brazil was caused by the atypical Toxoplasma gondii genotype #13. Curr. Res. Parasitol. Vector. Borne Dis. 2024, 21, 100157. [Google Scholar] [CrossRef]
- Holec-Gąsior, L.; Sołowińska, K. Detection of Toxoplasma gondii Infection in Small Ruminants: Old Problems, and Current Solutions. Animals 2023, 13, 2696. [Google Scholar] [CrossRef] [PubMed]
- IBGE. Sistema IBGE de Recuperação Automática. Banco de Dados Agregados. Efetivo dos Rebanhos, por tipo de Rebanho. 2022. Available online: https://www.ibge.gov.br/explica/producao-agropecuaria/ovino/br (accessed on 12 March 2024).
- Costa, F.T.R.; Nogueira, D.B.; Oliveira, M.A.G.; Silva, S.S.; Silva, R.F.; Sarmento, W.F.; Azevedo, S.S.; Gennari, S.M.; Pena, H.F.J.; Brasil, A.W.L.; et al. Vertical transmission of Toxoplasma gondii in naturally infected ewes in the semiarid region of Brazil. Comp. Immunol. Microbiol. Infect. Dis. 2021, 74, 101595. [Google Scholar] [CrossRef]
- Dubey, J.P.; Murata, F.H.A.; Cerqueira-Cézar, C.K.; Cwok, O.C.H.; Su, C. Economic and public health importance of Toxoplasma gondii infections in sheep: The last decade. Vet. Parasitol. 2020, 286, 109195. [Google Scholar] [CrossRef] [PubMed]
- Valencio, B.A.; Alves, B.F.; Bezerra, R.A.; Vilela, V.L.R.; Feitosa, T.F.; Amaku, M.; Azevedo, S.S.; Gennari, S.M. Longitudinal study of Toxoplasma gondii antibodies in female lambs from Paraíba State, Brazil. Small Rumin. Res. 2020, 188, 106125. [Google Scholar] [CrossRef]
- Vizcarra, E.A.; Goerner, A.L.; Ulu, A.; Hong, D.D.; Bergersen, K.V.; Talavera, M.A.; Le Roch, K.; Wilson, E.H.; White, M.W. An ex vivo model of Toxoplasma recrudescence reveals developmental plasticity of the bradyzoite stage. mBio 2023, 31, e01836-23. [Google Scholar] [CrossRef] [PubMed]
- Viola, I.; Tizzani, P.; Perona, G.; Lussiana, C.; Mimosi, A.; Ponzio, P.; Cornale, P. Hazelnut Skin in Ewes’ Diet: Effects on Colostrum Immunoglobulin G and Passive Transfer of Immunity to the Lambs. Animals 2022, 12, 3220. [Google Scholar] [CrossRef] [PubMed]
- Borges, H.D.S.; Oliveira-Scussel, A.C.M.; Oliveira, Â.M.M.; Abdallah, V.O.S.; Pajuaba, A.C.A.M.; Mineo, J.R. Comparative Detection of Immunoglobulin Isotypes and Subclasses against Toxoplasma gondii Soluble Antigen in Serum and Colostrum Samples from Puerperal Women. Int. J. Environ. Res. Public Health 2022, 19, 7953. [Google Scholar] [CrossRef] [PubMed]
- Camargo, M.E. Introdução às técnicas de imunofuorescência. Rev. Bras. Patol. Clin. 1974, 10, 143–171. [Google Scholar]
- Figliuolo, L.P.C.; Kasai, N.; Ragozo, A.M.A.; Paula, V.S.O.; Dias, R.A.; Souza, S.L.P.; Gennari, S.M. Prevalence of anti-Toxoplasma gondii and anti-Neospora caninum antibodies in ovine from São Paulo State, Brazil. Vet. Parasitol. 2004, 123, 161–166. [Google Scholar] [CrossRef] [PubMed]
- Camillo, G.; Cezar, A.S.; Antonello, A.M.; Sangioni, L.A.; Flores, E.F.; Pereira, G.R.; Gonçalves, P.B.D.; Vogel, F.S.F. Detecção de anticorpos anti-Neospora caninum em amostras individuais e coletivas de leite de bovinos pela reação de imunofluorescência indireta. Pesq. Vet. Bras. 2011, 31, 482–486. [Google Scholar] [CrossRef]
- Landis, J.R.; Koch, G.G. The measurement of observer agreement for categorical data. Biometrics 1977, 33, 159–174. [Google Scholar] [CrossRef] [PubMed]
- Liu, Y.M.; Zhang, Y.Y.; Wang, L.; Wang, H.Y.; Li, C.H.; Jiang, Y.H.; Sun, W.W. Toxoplasma gondii Antibodies in Raw Milk and Sera of Cows in China. Pathogens 2022, 11, 1079. [Google Scholar] [CrossRef] [PubMed]
- Pereyra, R.; Mansilla, F.C.; Petersen, M.I.; Suarez, V.; Capozzo, A.V. Evidence of reduced vertical transmission of Neospora caninum associated with higher IgG1 than IgG2 serum levels and presence of IFN-γ in non-aborting chronically infected cattle under natural condition. Vet. Immunol. Immunopathol. 2019, 208, 53–57. [Google Scholar] [CrossRef] [PubMed]
Identification of the Ewes and Their Lambs | Days after Partum | Serum Titration of Ewes | Colostrum Titration | Serum Titration of Lambs |
---|---|---|---|---|
1 | 4 | 2048 | 256 | 128 |
2 | 4 | 256 | 512 | 64 |
3 | 3 | 512 | 64 | 512 |
9 | 2 | 512 | 128 | <64 |
10 | 5 | 2048 | 128 | 64 |
11 | 2 | 128 | 256 | 128 |
12-L1 | 3 | 256 | 64 | 128 |
12-L2 | 3 | 256 | 64 | 64 |
12-L3 | 3 | 256 | 64 | 64 |
15-L1 | 3 | 256 | 64 | 1024 |
15-L2 | 3 | 256 | 64 | 128 |
20 | 2 | 128 | 64 | 256 |
21 | 2 | 64 | 256 | 1024 |
22-L1 | 2 | 512 | 512 | 1024 |
22-L2 | 2 | 512 | 512 | 2048 |
23 | 2 | 2048 | 256 | 4096 |
24 | 2 | 128 | 64 | 1024 |
27-L1 | 4 | 64 | <64 | 64 |
27-L2 | 4 | 64 | <64 | 64 |
31 | 3 | 256 | 256 | 128 |
33 | 4 | 256 | 128 | 2048 |
34 | 3 | 64 | 64 | 128 |
41-L1 | 5 | 128 | 64 | 512 |
41-L2 | 5 | 128 | 64 | 64 |
41-L3 | 5 | 128 | 64 | 64 |
42 | 4 | 256 | 64 | 1024 |
44 | 4 | 256 | 64 | 128 |
45 | 2 | 256 | 64 | 512 |
46-L1 | 3 | 128 | 256 | 512 |
46-L2 | 3 | 128 | 256 | 64 |
47 | 3 | 1024 | 64 | 256 |
48-L1 | 4 | 16,384 | 2048 | 64 |
48-L2 | 4 | 16,384 | 2048 | 128 |
50 | 4 | 128 | <64 | <64 |
51 | 3 | 128 | 1024 | 128 |
53-L1 | 2 | 8192 | 1024 | 512 |
53-L2 | 2 | 8192 | 1024 | 256 |
54 | 3 | 128 | 64 | <64 |
55 | 4 | 512 | 512 | 64 |
57 | 4 | 64 | 512 | 64 |
58 | 2 | 2048 | 64 | 128 |
59 | 3 | 4096 | 64 | 64 |
60 | 4 | 1024 | 1024 | 256 |
61 | 2 | 4096 | 128 | 128 |
63 | 2 | 512 | 64 | 128 |
64 | 2 | 256 | 64 | 128 |
65-L1 | 4 | 4096 | 64 | 128 |
65-L2 | 4 | 4096 | 64 | 256 |
66 | 4 | 2048 | 64 | 128 |
67 | 3 | 8192 | 512 | 512 |
68 | 4 | 4096 | 64 | 64 |
74 | 3 | 8192 | 64 | <64 |
75 | 4 | 512 | 64 | 64 |
79-L1 | 4 | 256 | 512 | 1024 |
79-L2 | 4 | 256 | 512 | 1024 |
80 | 3 | 4096 | 2048 | 128 |
81 | 4 | 256 | 64 | 128 |
85 | 2 | 512 | 64 | 512 |
86 | 3 | 256 | 64 | 2048 |
87 | 4 | 8192 | 64 | 4096 |
88 | 3 | 8192 | 64 | 8192 |
89 | 4 | 512 | 64 | 4096 |
93 | 3 | 4096 | 128 | 512 |
96 | 2 | 4096 | 512 | 128 |
101 | 5 | 2048 | 128 | 1024 |
105 | 3 | 512 | 64 | 2048 |
111 | 4 | 1024 | <64 | <64 |
113 | 3 | 64 | 64 | 512 |
115 | 4 | 1024 | 64 | 8192 |
117 | 2 | 64 | 64 | 512 |
118 | 3 | 128 | 64 | 256 |
136 | 2 | 64 | 64 | 64 |
141 | 4 | 64 | 64 | 64 |
145 | 4 | 1024 | 64 | 4096 |
146 | 5 | 1024 | 64 | 128 |
147 | 4 | 64 | 256 | 512 |
149 | 3 | 1024 | 256 | 256 |
151 | 3 | 4096 | 2048 | 256 |
152 | 4 | 256 | 256 | 64 |
154 | 3 | 128 | 512 | 256 |
155 | 3 | 64 | 512 | 512 |
156 | 3 | 512 | 256 | 512 |
157 | 5 | 128 | 256 | 512 |
161 | 3 | 256 | <64 | <64 |
162 | 3 | 8192 | 512 | 64 |
Titer of the Ewes | Positive/Analyzed Ewes (%) | Positive Colostrum/Positive Ewes (%) | Kappa |
---|---|---|---|
1:64 | 10/162 (6.2) | 9/10 (90) | 0.944 |
1:128 | 10/162 (6.2) | 9/10 (90) | 0.944 |
1:256 | 13/162 (8.0) | 12/13 (92.3) | 0.957 |
1:512 | 10/162 (6.2) | 10/10 (100) | 1.000 |
1:1024 | 7/162 (4.3) | 6/7 (85.7) | 0.920 |
1:2048 | 7/162 (4.3) | 7/7 (100) | 1.000 |
1:4096 | 9/162 (5.6) | 9/9 (100) | 1.000 |
1:8192 | 6/162 (3.7) | 6/6 (100) | 1.000 |
1:16,384 | 1/162 (0.6) | 1/1 (100) | 1.000 |
Total | 73/162 (45.1) | 69/73 (94.52) | 0.950 1 |
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Alvares, F.B.V.; Lima, B.A.; Lima, A.M.S.; Batista, S.P.; Aguiar, A.A.R.M.; Ferreira, L.C.; Silva, W.I.; Feitosa, T.F.; Vilela, V.L.R. Correlation between Anti-Toxoplasma gondii IgG Antibodies in Serum and Colostrum of Naturally Infected Sheep and Passive Immunization in Lambs. Microbiol. Res. 2024, 15, 1806-1813. https://doi.org/10.3390/microbiolres15030120
Alvares FBV, Lima BA, Lima AMS, Batista SP, Aguiar AARM, Ferreira LC, Silva WI, Feitosa TF, Vilela VLR. Correlation between Anti-Toxoplasma gondii IgG Antibodies in Serum and Colostrum of Naturally Infected Sheep and Passive Immunization in Lambs. Microbiology Research. 2024; 15(3):1806-1813. https://doi.org/10.3390/microbiolres15030120
Chicago/Turabian StyleAlvares, Felipe Boniedj Ventura, Brendo Andrade Lima, Ana Maria Santos Lima, Samira Pereira Batista, Antônia Aniellen Raianne Moisés Aguiar, Larissa Claudino Ferreira, Welitânia Inácia Silva, Thais Ferreira Feitosa, and Vinícius Longo Ribeiro Vilela. 2024. "Correlation between Anti-Toxoplasma gondii IgG Antibodies in Serum and Colostrum of Naturally Infected Sheep and Passive Immunization in Lambs" Microbiology Research 15, no. 3: 1806-1813. https://doi.org/10.3390/microbiolres15030120
APA StyleAlvares, F. B. V., Lima, B. A., Lima, A. M. S., Batista, S. P., Aguiar, A. A. R. M., Ferreira, L. C., Silva, W. I., Feitosa, T. F., & Vilela, V. L. R. (2024). Correlation between Anti-Toxoplasma gondii IgG Antibodies in Serum and Colostrum of Naturally Infected Sheep and Passive Immunization in Lambs. Microbiology Research, 15(3), 1806-1813. https://doi.org/10.3390/microbiolres15030120