Zwitterionic Polycatechols for Covalent Conjugation With Bortezomib and pH-Triggered Release

IF 2.5 4区 化学 Q3 POLYMER SCIENCE
Naikuan Fu, Ao Li, Jing Zhang, Peng Zhang, Hong Zhang, Shicheng Yang, Jianhua Zhang
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引用次数: 0

Abstract

The therapeutic efficacy of Bortezomib (BTZ) is severely limited by its low solubility, poor stability in vivo and nonspecific toxicity. PEGylated nanocarriers can improve drug delivery efficiency, but their applications often suffer from low drug loading, premature leakage and accelerated blood clearance phenomenon. Herein a kind of catechol-functionalized and sulfobetaine-based zwitterionic block copolymer (PGMAD-PSBMA) is prepared by RAFT copolymerization and an epoxy-amino click reaction. And then PGMAD-PSBMA is readily used to conjugate with BTZ by the formation of dynamic boronate bonds to obtain zwitterionic BTZ prodrug (PGMAD@BTZ-PSBMA) and PGMAD@BTZ-PSBMA micelles. The structure and morphology, physicochemical characteristics, drug loading, pH-triggered drug release as well as in vitro cytotoxicity of PGMAD@BTZ-PSBMA micelles are investigated in detail. The results demonstrate that PGMAD@BTZ-PSBMA micelles can not only possess high drug loading (12.9%) and stable dispersion in physiological pH condition (pH 7.4), but also respond to the tumor acid microenvironment and achieve pH-responsive BTZ release. The nanocarriers designed here readily combine the desirable functions of polycatechols for stable conjugation and acid-triggered release and polysulfobetaines for long circulation in blood, which have great potential to enhance therapeutic efficacy and reduce toxic side effects of BTZ and other boronic acid-containing drugs, such as Ixazomib and Steboronine.

两性离子型多儿茶酚与硼替佐米共价偶联及ph触发释放
硼替佐米(BTZ)的溶解度低、体内稳定性差和非特异性毒性严重限制了其治疗效果。聚乙二醇化纳米载体可以提高给药效率,但其应用往往存在载药量低、过早渗漏和加速血液清除的现象。通过RAFT共聚和环氧-氨基键合反应制备了一种儿茶酚功能化磺基两性离子嵌段共聚物(PGMAD-PSBMA)。然后PGMAD-PSBMA很容易与BTZ结合,形成动态硼酸键,得到两性离子BTZ前药(PGMAD@BTZ-PSBMA)和PGMAD@BTZ-PSBMA胶束。详细研究了PGMAD@BTZ-PSBMA胶束的结构形态、物理化学特性、载药量、ph触发药物释放以及体外细胞毒性。结果表明,PGMAD@BTZ-PSBMA胶束不仅能在生理pH条件下(pH 7.4)具有较高的载药量(12.9%)和稳定的分散,而且能响应肿瘤酸微环境,实现pH响应的BTZ释放。本文设计的纳米载体极易结合多儿茶酚稳定偶联酸触发释放的理想功能和多亚砜甜菜碱在血液中长循环的理想功能,在BTZ和其他含硼酸药物(如伊沙唑米和斯特博宁)的治疗效果和毒副作用方面具有很大的潜力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Macromolecular Chemistry and Physics
Macromolecular Chemistry and Physics 化学-高分子科学
CiteScore
4.30
自引率
4.00%
发文量
278
审稿时长
1.4 months
期刊介绍: Macromolecular Chemistry and Physics publishes in all areas of polymer science - from chemistry, physical chemistry, and physics of polymers to polymers in materials science. Beside an attractive mixture of high-quality Full Papers, Trends, and Highlights, the journal offers a unique article type dedicated to young scientists – Talent.
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