Unlocking intracellular targets: Smart multistage-responsive polyionic vesicular platforms for advancing protein-based therapy
文献类型: 外文期刊
作者: Hongyan Cui;Wei Gong;Xiaolan Yin;Liuwei Zhang;Zhen Li;Deqiang Liu;Qin Wu;Changgui Tong;Heejeong Kim;Jingyun Wang;Lei Li;Haidong Li;Qixian Chen
作者机构:
关键词: (0-1-9)Atherosclerotic therapy;Smart multistage-responsive vesicles platform;Therapeutics proteins;Tumor treatment
期刊名称: Journal of Controlled Release
ISSN: 0168-3659
年卷期: 2025 年 388 卷
页码:
收录情况: SCIE(2025版) ; ; EI(2025版)
摘要: The intrinsic structural and physicochemical attributes of proteins are intrinsically associated with the limited ability of protein drugs to traverse cellular membrane barriers, thereby constraining their utility in regulating intracellular processes. To address this challenge, we developed a smart, multistage-responsive polyion complex vesicles (PICsomes) platform, engineered from biodegradable poly(amino acid) networks to overcome the sequential biological barriers encountered during protein delivery. PICsomes can encapsulate a range of proteins with different molecular weights and charge characteristics, and have demonstrated efficacy in the treatment of intractable diseases such as tumors and atherosclerosis. Functionalization with RGD-targeting ligands, which display high affinity for integrins overexpressed in tumor and atherosclerotic microenvironments, enables PICsomes to actively accumulate at lesion sites and enhance cellular internalization via endocytosis. Once internalized, the PICsomes exhibit precisely tuned spatiotemporal responsiveness to the acidic pH and reductive potential of the target microenvironment, triggering programmed protein release within subcellular compartments to achieve therapeutic effects. This platform thus represents a promising innovation and a potentially generalizable strategy for intracellular protein delivery, enabling more effective engagement with intracellular targets and expanding the scope of protein-based therapeutics.
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