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Zwitterlation mitigates protein bioactivity loss in vitro over PEGylation

机译:与聚乙二醇化相比两性离子化减轻了体外蛋白质生物活性的损失

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摘要

Conjugation with poly(ethylene glycol) (PEG) or PEGylation is a widely used tool to overcome the shortcomings of native proteins, such as poor stability, inadequate pharmacokinetic (PK) profiles, and immunogenicity. However, PEGylation is often accompanied by an unwanted detrimental effect on bioactivity, particularly, resulting from the amphiphilic nature of PEG. This is especially true for PEGylated proteins with large binding targets. Pegasys, a PEGylated interferon alpha-2a (IFN-α2a) bearing a 40 kDa branched PEG, is a typical example that displays only 7% in vitro activity of the unmodified IFN-α2a. In this work, by employing IFN-α2a as a model protein, we demonstrated that a protein conjugated with zwitterionic polymers (or zwitterlation) could significantly mitigate the antiproliferative bioactivity loss in vitro after polymer conjugation. The retained antiproliferative activity of zwitterlated IFN-α2a is 4.4-fold higher than that of the PEGylated IFN-α2a with the same polymer molecular weight, or 3-fold higher than that of the PEGylated IFN-α2a with a similar hydrodynamic size. It is hypothesized that nonspecific interactions between zwitterionic polymers and IFN-α2a/IFN-α2a receptors can be mitigated due to the super-hydrophilic nature of zwitterionic polymers. This, in turn, reduces the ‘nonspecific blocking’ between IFN-α2a and IFN-α2a receptors. In addition, we demonstrated that zwitterlated IFN-α2a showed a prolonged circulation time and a mitigated accelerated blood clearance after repeated injections in rats.
机译:与聚(乙二醇)(PEG)结合或PEG化是一种广泛使用的工具,可以克服天然蛋白质的缺点,例如稳定性差,药代动力学(PK)不足和免疫原性。然而,PEG化常常伴随着对生物活性的有害的有害作用,特别是由于PEG的两亲性质。对于具有大结合靶标的聚乙二醇化蛋白尤其如此。 Pegasys是一种带有40 kDa分支PEG的PEG化干扰素α-2a(IFN-α2a),是一个典型的例子,其未修饰的IFN-α2a的体外活性仅为7%。在这项工作中,通过将IFN-α2a用作模型蛋白,我们证明了与两性离子聚合物(或两性离子化)偶联的蛋白可以显着减轻聚合物偶联后体外的抗增殖生物活性损失。两性离子化的IFN-α2a保留的抗增殖活性比具有相同聚合物分子量的聚乙二醇化的IFN-α2a保留的抗增殖活性高4.4倍,或比具有相似流体动力学尺寸的聚乙二醇化的IFN-α2a保留的抗增殖活性高3倍。据推测,由于两性离子聚合物的超亲水性质,两性离子聚合物与IFN-α2a/IFN-α2a受体之间的非特异性相互作用可以得到缓解。反过来,这减少了IFN-α2a和IFN-α2a受体之间的“非特异性阻断”。另外,我们证明了在大鼠反复注射后,两性离子化的IFN-α2a表现出延长的循环时间和减轻的加速血液清除。

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