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与聚乙二醇偶联的单链Fv蛋白的循环寿命延长:偶联化学和化合物的比较。

Prolonged circulating lives of single-chain Fv proteins conjugated with polyethylene glycol: a comparison of conjugation chemistries and compounds.

作者信息

Lee L S, Conover C, Shi C, Whitlow M, Filpula D

机构信息

Enzon Inc./SCA Ventures, 20 Kingsbridge Road, Piscataway, New Jersey 08854-3969, USA.

出版信息

Bioconjug Chem. 1999 Nov-Dec;10(6):973-81. doi: 10.1021/bc990076o.

Abstract

The utility of single-chain Fv proteins as therapeutic agents would be substantially broadened if the circulating lives of these minimal antigen-binding polypeptides were both prolonged and adjustable. Poly(ethylene glycol) (PEG) bioconjugate derivatives of the model single-chain Fv, CC49/218 sFv, were constructed using six different linker chemistries that selectively conjugate either primary amines or carboxylic acid groups. Activated PEG polymers with molecular weights of 2000, 5000, 10 000, 12 000, and 20 000 were included in the sFv bioconjugate evaluation. Additionally, the influence of PEG conjugate geometry in branched PEG strands (U-PEG) and the effect of multimeric PEG-sFv bioconjugates on circulating life and affinity were examined. Although random and extensive PEG polymer conjugations have been achievable in highly active derivatives of the prototypical PEG-enzymes, PEGylation of CC49/218 sFv required stringent adjustment of reaction conditions in order to preserve antigen-binding affinity as measured in either mucin-specific or whole cell immunoassays. Purified bioconjugates with PEG:sFv ratios of 1:1 through 2:1 were identified as promising candidates which exhibit sFv affinity (K(d)) values within 2-fold of the unmodified sFv protein. Interestingly, PEG conjugation to carboxylic acid moieties, using a PEG-hydrazide chemistry, achieved significant activity retention in bioconjugates at a higher PEG:sFv ratio (5:1) than with any of the amine-reactive activated PEG polymers. Prolonged circulating life in mice was demonstrated for each of the PEG conjugates. An increase in PEG polymer length was found to be more effective for serum half-life extension than a corresponding increase in total PEG mass. For example, CC49/218 sFv conjugated to either one strand of PEG-20000, or four strands of PEG-5000, displayed about 20- or 14-fold increased serum half-life, respectively, relative to the unmodified sFv. The demonstrated suitability of established random conjugation chemistries for PEGylation of sFv proteins, in conjunction with innovative site-specific conjugation methods, indicates that production of a panoply of sFv proteins with both engineered affinity and tailored circulating life may now be achievable.

摘要

如果这些最小的抗原结合多肽的循环寿命能够延长且可调节,那么单链Fv蛋白作为治疗剂的效用将得到显著扩展。使用六种不同的连接化学方法构建了模型单链Fv CC49/218 sFv的聚乙二醇(PEG)生物共轭衍生物,这些方法可选择性地共轭伯胺或羧酸基团。在sFv生物共轭物评估中纳入了分子量为2000、5000、10000、12000和20000的活化PEG聚合物。此外,还研究了支链PEG链(U-PEG)中PEG共轭几何结构的影响以及多聚体PEG-sFv生物共轭物对循环寿命和亲和力的影响。尽管在原型PEG-酶的高活性衍生物中已实现随机且广泛的PEG聚合物共轭,但CC49/218 sFv的PEG化需要严格调整反应条件,以保持在粘蛋白特异性或全细胞免疫测定中测得的抗原结合亲和力。PEG:sFv比率为1:1至2:1的纯化生物共轭物被确定为有前景的候选物,其sFv亲和力(K(d))值在未修饰sFv蛋白的2倍范围内。有趣的是,使用PEG-酰肼化学方法将PEG共轭到羧酸部分,在比任何胺反应性活化PEG聚合物更高的PEG:sFv比率(5:1)下,生物共轭物中实现了显著的活性保留。每种PEG共轭物在小鼠体内的循环寿命都得到了延长。发现PEG聚合物长度的增加对血清半衰期延长比总PEG质量的相应增加更有效。例如,与一条PEG-20000链或四条PEG-5000链共轭的CC49/218 sFv,相对于未修饰的sFv,血清半衰期分别增加了约20倍或14倍。已证明既定的随机共轭化学方法适用于sFv蛋白的PEG化,结合创新的位点特异性共轭方法,表明现在可能实现生产一系列具有工程化亲和力和定制循环寿命的sFv蛋白。

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