97%,内毒素<1EU/μg,诱导MCF-7细胞趋化ED50<10μg/mL,比活>100IU/mg,高纯度高活性低内毒素批间一致,属三叶因子家族,是胃黏膜黏液凝胶稳定剂,维持胃黏膜分化,胃癌中下调、乳腺/前列腺癌中上调,抑制草酸钙结晶生成,适用于胃肠黏膜研究、肿瘤标志物探究、肾结石机制实验、相关药物筛选。" data-qmeta="description">

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Engineered bioorthogonal POLY-PROTAC nanoparticles for tumour-specific protein degradation and precise cancer therapy

Gao Jing, Hou Bo, Zhu Qiwen, Yang Lei, Jiang Xingyu, Zou Zhifeng, Li Xutong, Xu Tianfeng, Zheng Mingyue, Chen Yi-Hung, Xu Zhiai, Xu Huixiong, Yu Haijun

Journal:Nature Communications

IF:17.69

DOI:10.1038/s41467-022-32050-4

PMID:35882867

Published:2022-07-26

research field:生物材料生物医学工程再生医学组织工程眼科学

Abstract

PROteolysis TArgeting Chimeras (PROTACs) has been exploited to degrade putative protein targets. However, the antitumor performance of PROTACs is impaired by their insufficient tumour distribution. Herein, we present de novo designed polymeric PROTAC (POLY-PROTAC) nanotherapeutics for tumour-specific protein degradation. The POLY-PROTACs are engineered by covalently grafting small molecular PROTACs onto the backbone of an amphiphilic diblock copolymer via the disulfide bonds. The POLY-PROTACs self-assemble into micellar nanoparticles and sequentially respond to extracellular matrix metalloproteinase-2, intracellular acidic and reductive tumour microenvironment. The POLY-PROTAC NPs are further functionalized with azide groups for bioorthogonal click reaction-amplified PROTAC delivery to the tumour tissue. For proof-of-concept, we demonstrate that tumour-specific BRD4 degradation with the bioorthogonal POLY-PROTAC nanoplatform combine with photodynamic therapy efficiently regress tumour xenografts in a mouse model of MDA-MB-231 breast cancer. This study suggests the potential of the POLY-PROTACs for precise protein degradation and PROTAC-based cancer therapy.

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