首页> 美国卫生研究院文献>Acta Naturae >Chemical Polysialylation and In Vivo Tetramerization Improve Pharmacokinetic Characteristics of Recombinant Human Butyrylcholinesterase-Based Bioscavengers
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Chemical Polysialylation and In Vivo Tetramerization Improve Pharmacokinetic Characteristics of Recombinant Human Butyrylcholinesterase-Based Bioscavengers

机译:化学聚唾液酸化和体内四聚作用提高了基于重组人丁酰胆碱酯酶的生物清除剂的药代动力学特性。

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摘要

Organophosphate toxins (OPs) are the most toxic low-molecular compounds. The extremely potent toxicity of OPs is determined by their specificity toward the nerve system. Human butyrylcholinesterase (hBChE) is a natural bioscavenger against a broad spectrum of OPs, which makes it a promising candidate for the development of DNA-encoded bioscavengers. The high values of the protective index observed for recombinant hBChE (rhBChE) make it appropriate for therapy against OP poisoning, especially in the case of highly toxic warfare nerve agents. Nevertheless, large-scale application of biopharmaceuticals based on hBChE is restricted due to its high cost and extremely rapid elimination from the bloodstream. In the present study, we examine two approaches for long-acting rhBChE production: I) chemical polysialylation and II) in-vivo tetramerization. We demonstrate that both approaches significantly improve the pharmacokinetic characteristics of rhBChE (more than 5 and 10 times, respectively), which makes it possible to use rhBChE conjugated with polysialic acids (rhBChE-CAO) and tetrameric rhBChE (4rhBChE) in the treatment of OP poisonings.
机译:有机磷酸毒素(OPs)是毒性最高的低分子化合物。 OP对神经系统的特异性决定了其极强的毒性。人丁酰胆碱酯酶(hBChE)是针对各种OP的天然生物清除剂,这使其成为开发DNA编码生物清除剂的有希望的候选者。重组hBChE(rhBChE)观察到的高保护指数使其适合于OP中毒治疗,尤其是在高毒性的战争神经毒剂的情况下。然而,基于hBChE的生物药物的大规模应用由于其高成本和从血流中的快速清除而受到限制。在本研究中,我们研究了长效rhBChE生产的两种方法:I)化学聚唾液酸化和II)体内四聚化。我们证明这两种方法都可以显着改善rhBChE的药代动力学特性(分别是其5倍和10倍以上),这使得可以使用与多唾液酸(rhBChE-CAO)和四聚体rhBChE(4rhBChE)共轭的rhBChE中毒。

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