超分子化学
结合
化学
肽
自组装
超分子组装
侧链
生物物理学
组合化学
立体化学
结晶学
生物化学
聚合物
有机化学
生物
晶体结构
数学分析
数学
作者
Qingxin Yao,Guangqi Wu,Hao Hao,Hua Lu,Yuan Gao
出处
期刊:Biomacromolecules
[American Chemical Society]
日期:2021-05-07
卷期号:22 (6): 2563-2572
被引量:8
标识
DOI:10.1021/acs.biomac.1c00300
摘要
The construction of reversible supramolecular self-assembly in vivo remains a significant challenge. Here, we demonstrate the redox-triggered reversible supramolecular self-assembly governed by the “check and balance” of two secondary conformations within a brushlike peptide–selenopolypeptide conjugate. The conjugate constitutes a polypeptide backbone whose side chain contains selenoether functional moieties and double bonds to be readily grafted with β-sheet-prone short-peptide NapFFC. The backbone of the conjugate initially assumes a robust and rigid α-helical conformation, which inhibits the supramolecular assembly of the short peptide in the side chain and yields an overall irregular aggregate morphology under native/reduced conditions. Upon oxidation of the selenoether to more hydrophilic selenoxide, the backbone helix switches to a flexible and disordered conformation, which unleashes the side-chain NapFFC self-assembly into nanofibrils via the adoption of β-sheet conformation. The reversible switch of the supramolecular morphology enables efficient loading and tumor-microenvironment-triggered release of anticancer drugs for in vivo cancer treatment with satisfactory efficacy and biocompatibility. The interplay and interaction between two well-defined secondary structures within one scaffold offer tremendous opportunity for the design and construction of functional supramolecular biomaterials.
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