癌细胞
内质网
膜
化学
膜脂
细胞器
高尔基体
胶束
细胞
细胞生物学
细胞膜
脱磷
线粒体
生物化学
酶
生物
癌症
物理化学
磷酸酶
水溶液
遗传学
作者
Jiaqing Wang,Weiyi Tan,Guanying Li,Difei Wu,Hongjian He,Jiashu Xu,Meihui Yi,Ye Zhang,S. Ali Aghvami,Seth Fraden,Bing Xu
标识
DOI:10.1002/chem.202002974
摘要
Abstract Although lipids contribute to cancer drug resistance, it is challenging to target diverse range of lipids. Here, we show enzymatically inserting exceedingly simple synthetic lipids into membranes for increasing membrane tension and selectively inhibiting drug resistant cancer cells. The lipid, formed by conjugating dodecylamine to d ‐phosphotyrosine, self‐assembles to form micelles. Enzymatic dephosphorylation of the micelles inserts the lipids into membranes and increases membrane tension. The micelles effectively inhibit a drug resistant glioblastoma cell (T98G) or a triple‐negative breast cancer cell (HCC1937), without inducing acquired drug resistance. Moreover, the enzymatic reaction of the micelles promotes the accumulation of the lipids in the membranes of subcellular organelles (e.g., endoplasmic reticulum (ER), Golgi, and mitochondria), thus activating multiple regulated cell death pathways. This work, in which for the first time membrane tension is increased to inhibit cancer cells, illustrates a new and powerful supramolecular approach for antagonizing difficult drug targets.
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