化学
两亲性
胶束
共价键
双功能
半胱氨酸
聚合物
高分子化学
组合化学
有机化学
共聚物
水溶液
催化作用
酶
作者
Tobias Bauer,Irina Alberg,Lydia Zengerling,Pol Besenius,Kaloian Koynov,Bram Slütter,Rudolf Zentel,Ivo Que,Heyang Zhang,Matthias Barz
出处
期刊:Biomacromolecules
[American Chemical Society]
日期:2023-07-14
卷期号:24 (8): 3545-3556
被引量:4
标识
DOI:10.1021/acs.biomac.3c00308
摘要
Core cross-linked polymeric micelles (CCPMs) are designed to improve the therapeutic profile of hydrophobic drugs, reduce or completely avoid protein corona formation, and offer prolonged circulation times, a prerequisite for passive or active targeting. In this study, we tuned the CCPM stability by using bifunctional or trifunctional cross-linkers and varying the cross-linkable polymer block length. For CCPMs, amphiphilic thiol-reactive polypept(o)ides of polysarcosine-block-poly(S-ethylsulfonyl-l-cysteine) [pSar-b-pCys(SO2Et)] were employed. While the pCys(SO2Et) chain lengths varied from Xn = 17 to 30, bivalent (derivatives of dihydrolipoic acid) and trivalent (sarcosine/cysteine pentapeptide) cross-linkers have been applied. Asymmetrical flow field-flow fraction (AF4) displayed the absence of aggregates in human plasma, yet for non-cross-linked PM and CCPMs cross-linked with dihydrolipoic acid at [pCys(SO2Et)]17, increasing the cross-linking density or the pCys(SO2Et) chain lengths led to stable CCPMs. Interestingly, circulation time and biodistribution in mice of non-cross-linked and bivalently cross-linked CCPMs are comparable, while the trivalent peptide cross-linkers enhance the circulation half-life from 11 to 19 h.
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