Polymerization Induced Self-Assembly of a Site-Specific Interferon α-Block Copolymer Conjugate into Micelles with Remarkably Enhanced Pharmacology

被引:78
|
作者
Liu, Xinyu [1 ]
Sun, Mengmeng [1 ]
Sun, Jiawei [1 ]
Hu, Jin [1 ]
Wang, Zhuoran [1 ]
Guo, Jianwen [1 ]
Gao, Weiping [1 ]
机构
[1] Tsinghua Univ, Sch Med, Dept Biomed Engn, Beijing 100084, Peoples R China
基金
中国国家自然科学基金;
关键词
AQUEOUS DISPERSION POLYMERIZATION; TRANSFER RADICAL POLYMERIZATION; CHRONIC HEPATITIS-C; I INTERFERONS; PROTEIN; PHARMACOKINETICS; GROWTH; TERMINUS; EFFICACY; PEGASYS;
D O I
10.1021/jacs.8b06013
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Conjugating a hydrophilic and protein-resistant polymer to a protein is a widely used strategy to extend the in vivo half-life of the protein; however, the benefit of the half-life extension is usually limited by the bioactivity decrease. Herein we report a supramolecular self-assembly strategy of site-specific in situ polymerization induced self-assembly (SI-PISA) to address the dilemma. An amphiphilic block copolymer (POEGMA-PHPMA) was directly grown from the C-terminus of an important therapeutic protein interferon-alpha (IFN) to in situ form IFN-POEGMA-PHPMA conjugate micelles. Notably, the in vitro bioactivity of the micelles was 21.5-fold higher than that of the FDA-approved PEGylated interferon-alpha PEGASYS. Particularly, the in vivo half-life of the micelles (83.8 h) was 1.7- and 100-fold longer than those of PEGASYS (49.5 h) and IFN (0.8 h), respectively. In a tumor-bearing mouse model, the micelles completely suppressed tumor growth with 100% animal survival, whereas at the same dose, PEGASYS and IFN were much less effective. These findings suggest that SI-PISA is promising as a next-generation technology to remarkably enhance the pharmacological performance of therapeutic proteins with short circulation half-lives.
引用
收藏
页码:10435 / 10438
页数:4
相关论文
共 50 条
  • [2] Site-specific protein-polymer conjugate micelles with dramatically enhanced pharmacology
    Hua Lu
    ScienceChinaMaterials, 2018, 61 (12) : 1627 - 1628
  • [3] Site-specific protein-polymer conjugate micelles with dramatically enhanced pharmacology
    Hua Lu
    Science China Materials, 2018, 61 : 1627 - 1628
  • [4] Site-specific protein-polymer conjugate micelles with dramatically enhanced pharmacology
    Lu, Hua
    SCIENCE CHINA-MATERIALS, 2018, 61 (12) : 1627 - 1628
  • [5] Self-assembly of block copolymer micelles in an ionic liquid
    He, Yiyong
    Li, Zhibo
    Simone, Peter
    Lodge, Timothy P.
    Journal of the American Chemical Society, 2006, 128 (08): : 2745 - 2750
  • [6] Self-assembly of block copolymer micelles in an ionic liquid
    He, YY
    Li, ZB
    Simone, P
    Lodge, TP
    JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 2006, 128 (08) : 2745 - 2750
  • [7] Block copolymer self-assembly to pattern gold nanodots for site-specific placement of DNA origami and attachment of nanomaterials
    Ranasinghe, Dulashani R.
    Doerk, Gregory
    Aryal, Basu R.
    Pang, Chao
    Davis, Robert C.
    Harb, John N.
    Woolley, Adam T.
    NANOSCALE, 2023, 15 (05) : 2188 - 2196
  • [8] Effect of salt on self-assembly in charged block copolymer micelles
    Borisov, OV
    Zhulina, EB
    MACROMOLECULES, 2002, 35 (11) : 4472 - 4480
  • [9] Degradable Block Copolymer Nanoparticles Synthesized by Polymerization-Induced Self-Assembly
    Zhang, Shudi
    Li, Ruoyu
    An, Zesheng
    ANGEWANDTE CHEMIE-INTERNATIONAL EDITION, 2024, 63 (12)
  • [10] Hierarchical self-assembly of nanoparticles in block-copolymer micelles and bilayers
    Park, So-Jung
    Sanchez-Gaytan, Brenda L.
    Hickey, Robert
    Kamps, Amanda
    ABSTRACTS OF PAPERS OF THE AMERICAN CHEMICAL SOCIETY, 2009, 238