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与人类粒细胞集落刺激因子偶联的二价聚乙二醇单元对体内外生物学活性的影响。

Effect of divalent polyethylene glycol units, conjugated on human granulocyte colony-stimulating factor, on biological activities in vitro and in vivo.

作者信息

Yamasaki M, Asano M, Yokoo Y, Okabe M

机构信息

Tokyo Research Laboratories, Japan.

出版信息

Drugs Exp Clin Res. 1998;24(4):191-6.

Abstract

New divalent (two-chain type) polyethylene glycol (PEG) conjugates of a derivative of human recombinant granulocyte colony-stimulating factor (rhG-CSF), ND28, were synthesized by a novel conjugation method using triazine ring and amino butyric acid, and separated into mono-, di- and tri-PEG2(two chains)-ND28 with high purity of more than 90%, to examine the effect of the number of PEG units on their biological properties. Three species of PEG2-ND28 conjugates showed reduced but clear in vitro bioactivity and receptor binding inhibitory activity, and an inverse correlation between the number of PEG units and the activity was seen. On the other hand, the in vivo granulopoietic effect of tri-PEG2-ND28 in mice was observed to be most potent and long-lasting for 6 days after only one administration, and was followed by di-PEG2-ND28 and mono-PEG2-ND28. The plasma concentration of tri-PEG2-ND28 was maintained at a high level for 3 days after administration, while that of PEG-unbound ND28 disappeared within 30 h. There was a positive correlation between the number of PEG units and both the granulopoietic effect and the plasma half-life. These results suggest that the number of PEG units attached to the rhG-CSF can increase their stability during circulation in the plasma of mice, in turn resulting in a long-lasting granulopoietic effect in vivo.

摘要

采用一种使用三嗪环和氨基丁酸的新型偶联方法,合成了人重组粒细胞集落刺激因子(rhG-CSF)衍生物ND28的新型二价(双链型)聚乙二醇(PEG)偶联物,并将其分离为单聚、二聚和三聚PEG2(双链)-ND28,纯度高于90%,以研究PEG单元数量对其生物学特性的影响。三种PEG2-ND28偶联物的体外生物活性和受体结合抑制活性均有所降低但仍明显可见,且PEG单元数量与活性呈负相关。另一方面,观察到三聚PEG2-ND28在小鼠体内的粒细胞生成作用最为显著且持久,单次给药后持续6天,其次是二聚PEG2-ND28和单聚PEG2-ND28。给药后,三聚PEG2-ND28的血浆浓度在3天内维持在较高水平,而未结合PEG的ND28在30小时内消失。PEG单元数量与粒细胞生成作用和血浆半衰期均呈正相关。这些结果表明,连接到rhG-CSF上的PEG单元数量可增加其在小鼠血浆循环中的稳定性,进而在体内产生持久的粒细胞生成作用。

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