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Multivalent plant-derived cholinesterases for nerve gas intoxication.

机译:多价植物来源的胆碱酯酶,用于神经毒气中毒。

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摘要

Organophosphate nerve agents exert their acute toxicity by the inhibition of acetylcholinesterase at cholinergic synapses and neuromuscular junctions. Current therapies can reduce mortality, but fail to prevent the debilitating symptoms associated with organophosphate toxicity. As an alternative, prophylactic protection and postexposure treatment with human cholinesterases has been proposed. This "cholinesterase therapy" has been shown to prevent all symptoms associated with organophosphate poisoning, however, the cholinesterases are necessary in stoichiometric rather than catalytic quantities. This requirement has exceeded all known production platforms. As a solution, I have proposed using plant biotechnology to produce these valuable therapeutics. Plants enjoy near limitless scalability and freedom from the safety concerns that plague mammalian-based production systems. In this work, I report molecular cloning, production, and purification of plant-derived acetylcholinesterase and butyrylcholinesterase, a related serum cholinesterase. I show that conjugation of these cholinesterases to long chain polyethylene glycol is sufficient to provide the required biological half-life for therapeutic administration. I demonstrate that these recombinant cholinesterases are capable of preventing all acute mortality and morbidity associated with organophosphate toxicity. In addition to these acute symptoms, organophosphates also induce severe long-term consequences, including neuromuscular junction dysmorphology, immunosupression, and significant upregulation of a soluble acetylcholinesterase variant called acetylcholinesterase-R, which itself is a potent inflammatory mediator and modulator of stress responses. With transient prophylactic administration of plant-produced acetylcholinesterase-R, I am capable of conferring protection from all of these deleterious consequences. Interestingly, I see soluble acetylcholinesterase-R and its C-terminal peptide derivative acetylcholinesterase readthrough peptide as an effective means to increase levels of pro-inflammatory cytokines such as tumor necrosis factor-alpha and interleukin 6 that have been reduced by organophosphate poisoning. Furthermore, I propose a novel molecular mechanism for the immunosupression induced by the organophosphate toxins that causes induction of the cholinergic anti-inflammatory response. Thus, I have demonstrated a multivalent approach for the prevention of both the acute and chronic symptoms associated with organophosphate toxicity.
机译:有机磷酸神经药通过抑制胆碱能突触和神经肌肉接头处的乙酰胆碱酯酶发挥其急性毒性。当前的疗法可以降低死亡率,但是不能防止与有机磷酸酯毒性相关的使人衰弱的症状。作为替代方案,已经提出了用人胆碱酯酶的预防性保护和暴露后治疗。已经表明这种“胆碱酯酶疗法”可以预防与有机磷酸酯中毒有关的所有症状,但是,胆碱酯酶是化学计量的而不是催化的量是必需的。此要求已超出所有已知的生产平台。作为解决方案,我建议使用植物生物技术生产这些有价值的疗法。植物享有几乎无限的可扩展性,并且摆脱了困扰哺乳动物生产系统的安全隐患。在这项工作中,我报告了植物来源的乙酰胆碱酯酶和丁酰胆碱酯酶(一种相关的血清胆碱酯酶)的分子克隆,生产和纯化。我表明这些胆碱酯酶与长链聚乙二醇的缀合足以提供治疗性给药所需的生物学半衰期。我证明这些重组胆碱酯酶能够预防与有机磷酸酯毒性有关的所有急性死亡和发病。除了这些急性症状外,有机磷酸酯还引起严重的长期后果,包括神经肌肉接头畸形,免疫抑制以及称为乙酰胆碱酯酶-R的可溶性乙酰胆碱酯酶变体的显着上调,后者本身是有效的炎症介质和应激反应的调节剂。通过短暂预防性施用植物产生的乙酰胆碱酯酶-R,我能够针对所有这些有害后果提供保护。有趣的是,我认为可溶性乙酰胆碱酯酶-R及其C端肽衍生物乙酰胆碱酯酶通读肽是增加促炎细胞因子(如肿瘤坏死因子-α和白介素6)水平的有效手段,这些因子已被有机磷酸中毒所降低。此外,我提出了一种新的分子机制,用于诱导有机磷酸毒素诱导的免疫抑制,从而诱导胆碱能抗炎反应。因此,我已经证明了一种预防与有机磷酸酯毒性有关的急性和慢性症状的多价方法。

著录项

  • 作者

    Geyer, Brian Christopher.;

  • 作者单位

    Arizona State University.;

  • 授予单位 Arizona State University.;
  • 学科 Biology Molecular.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 97 p.
  • 总页数 97
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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