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Varanid Lizard Venoms Disrupt the Clotting Ability of Human Fibrinogen through Destructive Cleavage

机译:Varanid蜥蜴毒液通过破坏性切割破坏人类纤维蛋白原的凝血能力。

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摘要

The functional activities of Anguimorpha lizard venoms have received less attention compared to serpent lineages. Bite victims of varanid lizards often report persistent bleeding exceeding that expected for the mechanical damage of the bite. Research to date has identified the blockage of platelet aggregation as one bleeding-inducing activity, and destructive cleavage of fibrinogen as another. However, the ability of the venoms to prevent clot formation has not been directly investigated. Using a thromboelastograph (TEG5000), clot strength was measured after incubating human fibrinogen with Heloderma and Varanus lizard venoms. Clot strengths were found to be highly variable, with the most potent effects produced by incubation with Varanus venoms from the Odatria and Euprepriosaurus clades. The most fibrinogenolytically active venoms belonged to arboreal species and therefore prey escape potential is likely a strong evolutionary selection pressure. The results are also consistent with reports of profusive bleeding from bites from other notably fibrinogenolytic species, such as V. giganteus. Our results provide evidence in favour of the predatory role of venom in varanid lizards, thus shedding light on the evolution of venom in reptiles and revealing potential new sources of bioactive molecules useful as lead compounds in drug design and development.
机译:与蛇血统相比,Anguimorpha蜥蜴毒液的功能活动受到的关注较少。 varanid蜥蜴的叮咬受害者经常报告持续流血,超出了咬伤的机械性损害所预期的范围。迄今为止的研究已经确定,阻塞血小板凝集是一种引起出血的活性,而破坏性地切割血纤蛋白原是另一种。但是,毒液防止血块形成的能力尚未直接研究。使用血栓弹力描记器(TEG5000),将人纤维蛋白原与Heloderma和Varanus蜥蜴毒孵育后,测量凝块强度。发现凝块的强度是高度可变的,与来自Odatria和Euprepriosaurus进化枝的Varanus毒液一起孵化会产生最有效的作用。纤维蛋白水解活性最强的毒液属于树栖物种,因此猎物逃逸的可能性可能是一个强大的进化选择压力。该结果也与其他明显的纤维蛋白原分解物种(如巨大弧菌)咬伤引起的大量出血有关。我们的结果提供了证据,表明蛇毒在varanid蜥蜴中具有掠夺性作用,从而阐明了蛇毒在爬行动物中的进化,并揭示了可用作药物设计和开发中先导化合物的生物活性分子的潜在新来源。

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