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Chromosomal instability accelerates the evolution of resistance to anti-cancer therapies. | LitMetric

AI Article Synopsis

  • Aneuploidy, often present in human tumors, generally lowers cellular fitness but can boost tumor growth under certain conditions.
  • By inducing chromosomal instability (CIN) in human cells and testing various environments, researchers found that temporary CIN helps cells develop resistance to anti-cancer treatments, marked by repeated aneuploidy events.
  • The study revealed that higher levels of intrinsic CIN are linked to poorer responses to therapies, indicating that aneuploidy might play a significant role in why some cancer treatments fail.

Article Abstract

Aneuploidy is a ubiquitous feature of human tumors, but the acquisition of aneuploidy typically antagonizes cellular fitness. To investigate how aneuploidy could contribute to tumor growth, we triggered periods of chromosomal instability (CIN) in human cells and then exposed them to different culture environments. We discovered that transient CIN reproducibly accelerates the acquisition of resistance to anti-cancer therapies. Single-cell sequencing revealed that these resistant populations develop recurrent aneuploidies, and independently deriving one chromosome-loss event that was frequently observed in paclitaxel-resistant cells was sufficient to decrease paclitaxel sensitivity. Finally, we demonstrated that intrinsic levels of CIN correlate with poor responses to numerous therapies in human tumors. Our results show that, although CIN generally decreases cancer cell fitness, it also provides phenotypic plasticity to cancer cells that can allow them to adapt to diverse stressful environments. Moreover, our findings suggest that aneuploidy may function as an under-explored cause of therapy failure.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8933054PMC
http://dx.doi.org/10.1016/j.devcel.2021.07.009DOI Listing

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