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PMID: 25669750 Published · epublish English

Temporally sequenced anticancer drugs overcome adaptive resistance by targeting a vulnerable chemotherapy-induced phenotypic transition.

Nature communications ·Vol. 6 ·2016-02-01

Goldman Aaron, Majumder Biswanath, Dhawan Andrew, Ravi Sudharshan, Goldman David, Kohandel Mohammad, Majumder Pradip K, Sengupta Shiladitya

Abstract

Understanding the emerging models of adaptive resistance is key to overcoming cancer chemotherapy failure. Using human breast cancer explants, in vitro cell lines, mouse in vivo studies and mathematical modelling, here we show that exposure to a taxane induces phenotypic cell state transition towards a favoured transient CD44(Hi)CD24(Hi) chemotherapy-tolerant state. This state is associated with a clustering of CD44 and CD24 in membrane lipid rafts, leading to the activation of Src Family Kinase (SFK)/hemopoietic cell kinase (Hck) and suppression of apoptosis. The use of pharmacological inhibitors of SFK/Hck in combination with taxanes in a temporally constrained manner, where the kinase inhibitor is administered post taxane treatment, but not when co-administered, markedly sensitizes the chemotolerant cells to the chemotherapy. This approach of harnessing chemotherapy-induced phenotypic cell state transition for improving antitumour outcome could emerge as a translational strategy for the management of cancer.

Article Info
Journal
Nature communications
Abbr.
Nat Commun
Published
2016-02-01
Indexed
2015-02-11
Updated
2016-11-25
Language
English
Country/Region
England
NLM ID
101528555
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