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Venom On-a-Chip: A Fast and Efficient Method for Comparative Venomics

机译:芯片上的毒液:一种快速有效的比较毒理学方法

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Venom research has attracted an increasing interest in disparate fields, from drug development and pharmacology, to evolutionary biology and ecology, and rational antivenom production. Advances in “-omics” technologies have allowed the characterization of an increasing number of animal venoms, but the methodology currently available is suboptimal for large-scale comparisons of venom profiles. Here, we describe a fast, reproducible and semi-automated protocol for investigating snake venom variability, especially at the intraspecific level, using the Agilent Bioanalyzer on-chip technology. Our protocol generated a phenotype matrix which can be used for robust statistical analysis and correlations of venom variation with ecological correlates, or other extrinsic factors. We also demonstrate the ease and utility of combining on-chip technology with previously fractionated venoms for detection of specific individual toxin proteins. Our study describes a novel strategy for rapid venom discrimination and analysis of compositional variation at multiple taxonomic levels, allowing researchers to tackle evolutionary questions and unveiling the drivers of the incredible biodiversity of venoms.
机译:毒液研究已经吸引了不同领域的兴趣,这些领域从药物开发和药理学到进化生物学和生态学以及合理的抗蛇毒血清生产。 “-组学”技术的进步已经可以表征越来越多的动物毒液,但是对于大规模比较毒液特征,当前可用的方法不够理想。在这里,我们描述了一种使用Agilent Bioanalyzer片上技术研究蛇毒变异性的快速,可重现和半自动化的方案,尤其是在种内水平上。我们的协议生成了一个表型矩阵,可用于稳健的统计分析以及毒液变化与生态相关性或其他外部因素的相关性。我们还证明了将片上技术与先前分离的毒液相结合以检测特定的个体毒素蛋白的简便性和实用性。我们的研究描述了一种新的策略,可以快速区分毒液并在多个分类学水平上分析成分变化,从而使研究人员能够解决进化问题并揭示令人难以置信的毒液生物多样性的驱动因素。

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