亚科
药品
ATP结合盒运输机
抗药性
药理学
Abcg2型
多重耐药
维拉帕米
癌症
生物
癌症研究
运输机
色氨酸
化疗
癌细胞
临床试验
医学
生物信息学
生物化学
内科学
基因
遗传学
钙
氨基酸
作者
Javier Yu Peng Koh,Yoko Itahana,Alexander Krah,Habib Mostafa,Mingmin Ong,Sahana Iwamura,Dona Mariya Vincent,S. Krishnan,Weiying Ye,Pierre Wing Chi Yim,Tushar M. Khopade,Kunihiko Chen,Pui San Kong,Lin‐Fa Wang,Roderick W. Bates,Yasuhisa Kimura,Rajesh Viswanathan,Peter J. Bond,Koji Itahana
标识
DOI:10.1038/s42004-024-01225-z
摘要
Abstract Chemotherapy-induced drug resistance remains a major cause of cancer recurrence and patient mortality. ATP binding cassette subfamily B member 1 (ABCB1) transporter overexpression in tumors contributes to resistance, yet current ABCB1 inhibitors have been unsuccessful in clinical trials. To address this challenge, we propose a new strategy using tryptophan as a lead molecule for developing ABCB1 inhibitors. Our idea stems from our studies on bat cells, as bats have low cancer incidences and high ABCB1 expression. We hypothesized that potential ABCB1 substrates in bats could act as competitive inhibitors in humans. By molecular simulations of ABCB1-substrate interactions, we generated a benzylated Cyclo -tryptophan (C3N-Dbn-Trp2) that inhibits ABCB1 activity with efficacy comparable to or better than the classical inhibitor, verapamil. C3N-Dbn-Trp2 restored chemotherapy sensitivity in drug-resistant human cancer cells with no adverse effect on cell proliferation. Our unique approach presents a promising lead toward developing effective ABCB1 inhibitors to treat drug-resistant cancers.
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