¿Se puede controlar la población de nematodos gastrointestinales que parasitan a ovinos y caprinos por bloqueo del desenvaine larval?
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Asociación Médica Mundial (19 octubre 2024). Declaración de Helsinki de la AMM: principios éticos para las investigaciones médicas en seres humanos. Fecha de consulta 09/07/26 en https://www.wma.net/es/policies-post/declaracion-de-helsinki-de-la-amm-principios-eticos-para-las-investigaciones-medicas-en-seres-humanos/.
Besier RB, Kahn LP, Sargison ND y Van Wyk JA. 2016. The Pathophysiology, Ecology and Epidemiology of Haemonchus contortus Infection in Small Ruminants. En Advances in Parasitology (Vol. 93, pp. 95-143). Elsevier.
Brunet S, Aufrere J, El Babili F, Fouraste I y Hoste H. 2007. The kinetics of exsheathment of infective nematode larvae is disturbed in the presence of a tannin-rich plant extract (sainfoin) both in vitro and in vivo. Parasitology 134(9):1253-1262.
Brunet S, Martinez-Ortiz de Montellano C, Torres-Acosta JFJ, Sandoval-Castro CA, Aguilar-Caballero AJ, Capetillo-Leal CM y Hoste H. 2008. Effect of the consumption of Lysiloma latisiliquum on the larval establishment of gastrointestinal nematodes in goats. Veterinary Parasitology 157(1-2):81-88.
Burden DJ, Bartley DJ, Besier RB, Claerebout E., Elliott TP., Höglund J., Rehbein S., Torres-Acosta JFJ, Van Wyk JA, y Yazwinski T. 2024. World Association for the Advancement of Veterinary Parasitology (W.A.A.V.P.): Third edition of the guideline for evaluating efficacy of anthelmintics in ruminants (bovine, ovine, caprine). Veterinary Parasitology, 329, 110187.
Crilly JP, Evans M, Tähepõld K y Sargison N. 2020. Haemonchosis: Dealing with the increasing threat of the barber’s pole worm. Livestock, 25(5), 237-246.
Flay KJ, Hill FI y Muguiro DH. 2022. A review: Haemonchus contortus infection in pasture-based sheep production systems, with a focus on the pathogenesis of anaemia and changes in haematological parameters. Animals 12(10):1238.
Hertzberg H, Huwyler U, Kohler L, Rehbein S y Wanner M. 2002. Kinetics of exsheathment of infective ovine and bovine strongylid larvae in vivo and in vitro. Parasitology, 125(1), 65-70.
Jackson F y Hoste H. 2010. In Vitro Methods for the Primary Screening of Plant Products for Direct Activity against Ruminant Gastrointestinal Nematodes. En P. E. Vercoe, H. P. S. Makkar, & A. C. Schlink (Eds.), In vitro screening of plant resources for extra-nutritional attributes in ruminants: Nuclear and related methodologies (pp. 25-45).
Jain AK, Singh D, Dubey K, Maurya R, Mittal S y Pandey AK. 2018. Models and methods for in vitro toxicity. En: Dhawan A y Kwon S (eds.). In vitro toxicology. Academic Press. Cambridge. pp. 45-65.
Lonngren KJ, Barone CD, Zajac AM, Brown RN, Reed JD, Krueger CG y Petersson KH. (2020). Effect of birdsfoot trefoil cultivars on exsheathment of Haemonchus contortus in fistulated sheep. Veterinary Parasitology, 287, 109271.
Marin-Tun CG, Mancilla-Montelongo MG, Torres-Acosta JFJ, Capetillo-Leal CM, Sandoval-Castro CA, Hoste H y Borges-Argáez R. 2023. An in vitro rumen incubation method to study exsheathment kinetics of Haemonchus contortus third-stage infective larvae. Parasitology Research, 122(3), 833-845.
Méndez-Ortiz FA, Sandoval-Castro CA, Ventura-Cordero J, Sarmiento-Franco LA, Santos-Ricalde RH y Torres-Acosta JFJ. 2019. Gymnopodium floribundum fodder as a model for the in vivo evaluation of nutraceutical value against Haemonchus contortus. Tropical Animal Health and Production, 51(6), 1591-1599.
Miranda-Miranda DY, Marin-Tun CG, Capetillo-Leal CM, Mancilla-Montelongo MG, Sandoval-Castro CA y Torres-Acosta JFJ. 2026. The in vitro exsheathment kinetics of Trichostrongylus colubriformis L3 in ruminal, abomasal, and two-stage incubation protocols (SSRN Scholarly Paper No. 6019775). Social Science Research Network.
Nisbet AJ, Meeusen EN, González JF y Piedrafita DM. 2016. Inmunity to Haemonchus contortus and vaccine development. En: Gasser RB y Von Samson-Himmelstjerna G (eds.) Advances in parasitology. Haemonchus contortus and Haemonchosis – past, present and future trends. Elsevier. Amsterdam. pp. 353-396.
O'Connor LJ, Walkden-Brown SW y Kahn LP. 2006. Ecology of the free-living stages of major trichostrongylid parasites of sheep. Veterinary Parasitology 142(1-2):1-15.
Torres-Fajardo RA, González-Pech PG, Torres-Acosta JFJ y Sandoval-Castro CA. 2021. Nutraceutical Potential of the Low Deciduous Forest to Improve Small Ruminant Nutrition and Health: A Systematic Review. Agronomy, 11(7), Article 7.
Villalba JJ y Provenza FD. 2010. Challenges in extrapolating in vitro findings to in vivo evaluation of plant resources. En: Vercoe PE, Makkar HPS y Schlink AC (eds.). In vitro screening of plant resources for extra-nutritional attributes in ruminants: nuclear and related methodologies. Springer. Dordrecht. pp. 233-242.
DOI: http://dx.doi.org/10.56369/BAC.7127
Copyright (c) 2026 Mario Antonio Mendoza-Nuñez, Juan Felipe Torres-Acosta, María Gabriela Mancilla-Montelongo, Carlos Alfredo Sandoval-Castro

Este obra está bajo una licencia de Creative Commons Reconocimiento 4.0 Internacional.
Bioagrociencias, revista electrónica, es una publicación semestral editada por la Universidad Autónoma de Yucatán, a través de la Facultad de Medicina Veterinaria y Zootecnia, km. 15.5 carretera Mérida-Xmatkuil s/n, Mérida, Yucatán, México. Tel. 999 942 32 00. Editor Responsable: Alfonso Aguilar-Perera (alfonso.aguilar@correo.uady.mx), 04-2017-062617313100-203, ISSN 2007-431X.


