Laboratório de Biotecnologia, Programa de Pós-Graduação em Medicina, Universidade Nove de Julho (UNINOVE), São Paulo 01504-001, SP, Brazil.
Centro Bioindustrial, Instituto Butantan, São Paulo 05503-900, SP, Brazil.
Toxins (Basel). 2024 Oct 25;16(11):458. doi: 10.3390/toxins16110458.
This comprehensive review explores the cutting-edge advancements in snake venom research, focusing on the integration of proteomics, genomics, transcriptomics, and bioinformatics. Highlighting the transformative impact of these technologies, the review delves into the genetic and ecological factors driving venom evolution, the complex molecular composition of venoms, and the regulatory mechanisms underlying toxin production. The application of synthetic biology and multi-omics approaches, collectively known as venomics, has revolutionized the field, providing deeper insights into venom function and its therapeutic potential. Despite significant progress, challenges such as the functional characterization of toxins and the development of cost-effective antivenoms remain. This review also discusses the future directions of venom research, emphasizing the need for interdisciplinary collaborations and new technologies (mRNAs, cryo-electron microscopy for structural determinations of toxin complexes, synthetic biology, and other technologies) to fully harness the biomedical potential of venoms and toxins from snakes and other animals.
这篇全面综述探讨了蛇毒研究的前沿进展,重点关注蛋白质组学、基因组学、转录组学和生物信息学的整合。该综述强调了这些技术的变革性影响,深入探讨了驱动毒液进化的遗传和生态因素、毒液的复杂分子组成以及毒素产生的调节机制。合成生物学和多组学方法(统称为 venomomics)的应用彻底改变了该领域,为毒液功能及其治疗潜力提供了更深入的见解。尽管取得了重大进展,但仍存在一些挑战,如毒素的功能表征和经济高效抗蛇毒血清的开发。本综述还讨论了蛇毒研究的未来方向,强调需要开展跨学科合作和利用新技术(mRNA、毒素复合物的结构测定的冷冻电子显微镜、合成生物学和其他技术),以充分挖掘蛇类和其他动物毒液和毒素的生物医药潜力。