斑马鱼作为评估动物毒液和毒素的多功能模型:当前应用与未来展望

Zebrafish Pub Date : 2024-04-12 DOI:10.1089/zeb.2023.0088
Fajar Sofyantoro, Nur Indah Septriani, D. S. Yudha, Ega Adhi Wicaksono, D. Priyono, Wahyu Aristyaning Putri, Alfian Primahesa, Anita Restu Puji Raharjeng, Y. A. Purwestri, T. R. Nuringtyas
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引用次数: 0

摘要

动物毒液和毒素有望成为新型候选药物、治疗剂和生物分子的来源。要充分利用它们的潜力,就必须开发可靠的测试方法,以全面了解它们的作用和作用机制。然而,由于毒液剂量水平不切实际,传统的啮齿类动物试验难以模拟毒液对人体的影响。为了寻找可靠的测试方法,斑马鱼(Danio rerio)应运而生,成为评估动物毒液和毒素的多功能模式生物。斑马鱼与人类基因相似,发育迅速,透明度高,适合高通量检测,是评估动物毒液和毒素影响的理想选择。这篇综述强调了斑马鱼的独特属性,并探讨了斑马鱼在研究蛇、水母、墨鱼、海葵、蜘蛛和锥螺等不同物种的毒液和毒素诱导效应方面的应用。通过以斑马鱼为基础的研究,揭示了毒液诱导的复杂生理反应、发育改变和潜在的治疗干预。CRISPR/Cas9 基因编辑、光遗传学和高通量筛选等新技术为推进毒液研究带来了巨大希望。随着基于斑马鱼的洞察力与其他模型的研究结果相融合,人们对毒液诱导效应的全面认识将不断扩大,从而指导有针对性的干预措施的开发,促进科学知识和实际应用的发展。
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Zebrafish as Versatile Model for Assessing Animal Venoms and Toxins: Current Applications and Future Prospects.
Animal venoms and toxins hold promise as sources of novel drug candidates, therapeutic agents, and biomolecules. To fully harness their potential, it is crucial to develop reliable testing methods that provide a comprehensive understanding of their effects and mechanisms of action. However, traditional rodent assays encounter difficulties in mimicking venom-induced effects in human due to the impractical venom dosage levels. The search for reliable testing methods has led to the emergence of zebrafish (Danio rerio) as a versatile model organism for evaluating animal venoms and toxins. Zebrafish possess genetic similarities to humans, rapid development, transparency, and amenability to high-throughput assays, making it ideal for assessing the effects of animal venoms and toxins. This review highlights unique attributes of zebrafish and explores their applications in studying venom- and toxin-induced effects from various species, including snakes, jellyfish, cuttlefish, anemones, spiders, and cone snails. Through zebrafish-based research, intricate physiological responses, developmental alterations, and potential therapeutic interventions induced by venoms are revealed. Novel techniques such as CRISPR/Cas9 gene editing, optogenetics, and high-throughput screening hold great promise for advancing venom research. As zebrafish-based insights converge with findings from other models, the comprehensive understanding of venom-induced effects continues to expand, guiding the development of targeted interventions and promoting both scientific knowledge and practical applications.
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