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用于蛋白质修饰的完全可降解亲水性聚缩醛

Fully degradable hydrophilic polyals for protein modification.

作者信息

Yurkovetskiy Alexander, Choi Sungwoon, Hiller Alexander, Yin Mao, McCusker Catherine, Syed Sakina, Fischman Alan J, Papisov Mikhail I

机构信息

Massachusetts General Hospital and Harvard Medical School, Boston, Massachusetts 02114-2696, USA.

出版信息

Biomacromolecules. 2005 Sep-Oct;6(5):2648-58. doi: 10.1021/bm049210k.

Abstract

Modification of proteins with hydrophilic polymers is an effective strategy for regulation of protein pharmacokinetics. However, conjugates of slowly or non-biodegradable materials, such as poly(ethylene glycol), are known to cause long-lasting cell vacuolization, in particular in renal epithelium. Conjugates of more degradable polymers, e.g., polysaccharides, have a significant risk of immunotoxicity. Polymers that combine complete degradability, long circulation in vivo, and low immuno and chemical toxicity would be most beneficial as protein conjugate components. This study explores new fully biodegradable hydrophilic polymers, hydrophilic polyals. They are nontoxic, stable at physiological conditions, and undergo proton-catalyzed hydrolysis at lysosomal pH. The model enzyme-polyal conjugates were prepared with 61-98% yield using conventional and novel conjugation techniques and retained 90-95% of specific activity. The model conjugates showed a significant prolongation of protein circulation in rodents, with a 5-fold reduction in the renal accumulation. The data suggests that hydrophilic polyals may be useful in designing protein conjugates with improved properties.

摘要

用亲水性聚合物修饰蛋白质是调节蛋白质药代动力学的有效策略。然而,已知缓慢或不可生物降解材料(如聚乙二醇)的缀合物会导致持久的细胞空泡化,尤其是在肾上皮细胞中。更易降解聚合物(如多糖)的缀合物具有显著的免疫毒性风险。结合完全可降解性、体内长循环以及低免疫和化学毒性的聚合物作为蛋白质缀合物成分将最为有益。本研究探索了新型的完全可生物降解的亲水性聚合物——亲水性聚醛。它们无毒,在生理条件下稳定,并在溶酶体pH值下发生质子催化水解。使用传统和新型缀合技术制备的模型酶-聚醛缀合物产率为61-98%,并保留了90-95%的比活性。模型缀合物在啮齿动物中显示出蛋白质循环的显著延长,肾脏蓄积减少了5倍。数据表明,亲水性聚醛可能有助于设计具有改善性能的蛋白质缀合物。

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本文引用的文献

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