4.5 Article

Intraspecific venom variation of Mexican West Coast Rattlesnakes (Crotalus basiliscus) and its implications for antivenom production

期刊

BIOCHIMIE
卷 192, 期 -, 页码 111-124

出版社

ELSEVIER FRANCE-EDITIONS SCIENTIFIQUES MEDICALES ELSEVIER
DOI: 10.1016/j.biochi.2021.10.006

关键词

Crotamine; Crotoxin; Ontogeny; Polymorphism for crotoxin-like; RNA-seq; Transcriptomics

资金

  1. DGAPA-PAPIIT [IN211621]
  2. CONACYT [264255]
  3. FORDECYT PRONACE [1715618/2020]
  4. FORDECYT [303045]
  5. Clemson Univer-sity
  6. National Science Foundation [DEB 1822417]

向作者/读者索取更多资源

Intraspecific variation in snake venoms, specifically the Crotalus basiliscus venom in Mexico, was evaluated in this study. Adult venoms showed variation in biological and biochemical activities compared to juvenile venoms. The presence of certain toxins in the venom varied across different regions. The efficacy of antivenoms was tested, showing neutralization of venom lethality but not crotamine. The inclusion of crotamine-containing venoms in the production of antivenoms is recommended.
Intraspecific variation in snake venoms has been widely documented worldwide. However, there are few studies on this subject in Mexico. Venom characterization studies provide important data used to predict clinical syndromes, to evaluate the efficacy of antivenoms and, in some cases, to improve immunogenic mixtures in the production of antivenoms. In the present work, we evaluated the intraspecific venom variation of Crotalus basiliscus, a rattlesnake of medical importance and whose venom is used in the immunization of horses to produce one of the Mexican antivenoms. Our results demonstrate that there is variation in biological and biochemical activities among adult venoms and that there is an ontogenetic change from juvenile to adult venoms. Juvenile venoms were more lethal and had higher percentages of crotamine and crotoxin, while adult venoms had higher percentages of snake venom metalloproteases (SVMPs). Additionally, we documented crotoxin-like PLA(2) variation in which specimens from Zacatecas, Sinaloa and Michoacan (except 1) lacked the neurotoxin, while the rest of the venoms had it. Finally, we evaluated the efficacy of three lots of Birmex antivenom and all three were able to neutralize the lethality of four representative venoms but were not able to neutralize crotamine. We also observed significant differences in the LD50 values neutralized per vial among the different lots. Based on these results, we recommend including venoms containing crotamine in the production of antivenom for a better immunogenic mixture and to improve the homogeneity of lots. (C) 2021 Elsevier B.V. and Societe Francaise de Biochimie et Biologie Moleculaire (SFBBM). All rights reserved.

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