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与含亚砜聚合物共轭的蛋白质显示出巨噬细胞摄取减少和药代动力学改善。

Proteins Conjugated with Sulfoxide-Containing Polymers Show Reduced Macrophage Cellular Uptake and Improved Pharmacokinetics.

作者信息

Yu Ye, Xu Weizhi, Huang Xumin, Xu Xin, Qiao Ruirui, Li Yuhuan, Han Felicity, Peng Hui, Davis Thomas P, Fu Changkui, Whittaker Andrew K

机构信息

ARC Centre of Excellence in Convergent Bio-Nano Science and Technology, Monash Institute of Pharmaceutical Sciences, Monash University, 381 Royal Parade, Parkville, Victoria 3052, Australia.

出版信息

ACS Macro Lett. 2020 Jun 16;9(6):799-805. doi: 10.1021/acsmacrolett.0c00291. Epub 2020 May 19.

Abstract

The conjugation of hydrophilic polymers to proteins is an effective approach to prolonging their circulation time in the bloodstream and, hence, improving their delivery to the target region of interest. In this work, we report the synthesis of protein-polymer conjugates using a highly water-soluble sulfoxide-containing polymer, poly(2-(methylsulfinyl)ethyl acrylate) (PMSEA), through a combination of "grafting-to" and "grafting-from" methods. Oligomeric MSEA was synthesized by conventional reversible addition-fragmentation chain transfer (RAFT) polymerization and subsequently conjugated to lysozyme to produce a macromolecular chain transfer agent. This was followed by a visible light-mediated chain extension polymerization of MSEA to obtain a lysozyme-PMSEA conjugate (Lyz-PMSEA). It was found that the Lyz-PMSEA conjugate exhibited much reduced macrophage cellular uptake compared with unmodified and PEGylated lysozyme. Moreover, the Lyz-PMSEA conjugate was able to circulate longer in the bloodstream, demonstrating significantly improved pharmacokinetics demanded for pharmaceutical applications.

摘要

将亲水性聚合物与蛋白质共轭是延长其在血流中循环时间的有效方法,从而改善其向目标感兴趣区域的递送。在这项工作中,我们报告了通过“接枝到”和“接枝自”方法的组合,使用高度水溶性的含亚砜聚合物聚(2-(甲基亚磺酰基)乙基丙烯酸酯)(PMSEA)合成蛋白质-聚合物共轭物。通过常规的可逆加成-断裂链转移(RAFT)聚合合成低聚MSEA,随后将其与溶菌酶共轭以产生大分子链转移剂。接着进行MSEA的可见光介导的链延伸聚合以获得溶菌酶-PMSEA共轭物(Lyz-PMSEA)。发现与未修饰的和聚乙二醇化的溶菌酶相比,Lyz-PMSEA共轭物表现出大大降低的巨噬细胞摄取。此外,Lyz-PMSEA共轭物能够在血流中循环更长时间,证明了药物应用所需的药代动力学有显著改善。

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