结直肠癌
级联
癌症研究
肿瘤微环境
衰减
医学
癌症
肿瘤科
内科学
化学
物理
色谱法
光学
作者
Yan Lü,Yufei Cao,Xiaowen Guo,Yijie Gao,Xue Chen,Zixi Zhang,Zhishen Ge,Dake Chu
标识
DOI:10.1002/adhm.202400797
摘要
Abstract The Notch signaling is a key molecular pathway that regulates cell fate and development. Aberrant Notch signaling can lead to carcinogenesis and progression of malignant tumors. However, current therapies targeting Notch pathway lack specificity and induce high toxicity. In this report, a tumor microenvironment‐responsive and injectable hydrogel is designed to load plasmid DNA complexes as a cascade gene delivery system to achieve precise Notch‐targeted gene therapy of colorectal cancer (CRC). The hydrogels are prepared through cross‐linking between phenylboric acid groups containing poly(oligo(ethylene glycol)methacrylate) (POEGMA) and epigallocatechin gallate (EGCG), used to load the complexes between plasmid DNA encoding short hairpin RNAs of Notch1 (shNotch1) and fluorinated polyamidoamine (PAMAM‐F) (PAMAM‐F/shNotch1). In response to low pH and H 2 O 2 in tumor microenvironment, the hydrogel can be dissociated and release the complexes for precise delivery of shNotch1 into tumor cells and inhibit Notch1 activity to suppress malignant biological behaviors of CRC. In the subcutaneous tumor model of CRC, PAMAM‐F/shNotch1‐loaded hydrogels can accurately attenuate Notch1 activity and significantly inhibit tumor growth without affecting Notch signal in adjacent normal tissues. Therefore, this therapeutic system can precisely inhibit Notch1 signal in CRC with high responsiveness and low toxicity, providing a promising Notch‐targeted gene therapeutic for human malignancy.
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