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A Novel ALDH1A1 Inhibitor Targets Cells with Stem Cell Characteristics in Ovarian Cancer. | LitMetric

AI Article Synopsis

  • A population of cancer stem cells (CSCs) contributes to the recurrence of ovarian cancer (OC), prompting research into targeted therapies to eliminate them.
  • A new molecule called CM37 inhibits ALDH1A1 activity, which is a marker for CSCs in OC, leading to decreased cell growth and reduced expression of stem cell markers.
  • CM37 treatment results in increased DNA damage and reactive oxygen species (ROS) levels in OC cells, suggesting its potential as a promising strategy for targeting treatment-resistant ovarian cancer.

Article Abstract

A small of population of slow cycling and chemo-resistant cells referred to as cancer stem cells (CSC) have been implicated in cancer recurrence. There is emerging interest in developing targeted therapeutics to eradicate CSCs. Aldehyde-dehydrogenase (ALDH) activity was shown to be a functional marker of CSCs in ovarian cancer (OC). ALDH activity is increased in cells grown as spheres versus monolayer cultures under differentiating conditions and in OC cells after treatment with platinum. Here, we describe the activity of CM37, a newly identified small molecule with inhibitory activity against ALDH1A1, in OC models enriched in CSCs. Treatment with CM37 reduced OC cells' proliferation as spheroids under low attachment growth conditions and the expression of stemness-associated markers ( and ) in ALDH+ cells fluorescence-activated cell sorting (FACS)-sorted from cell lines and malignant OC ascites. Likewise, siRNA-mediated knockdown reduced OC cells' proliferation as spheres, expression of stemness markers, and delayed tumor initiation capacity in vivo. Treatment with CM37 promoted DNA damage in OC cells, as evidenced by induction of γH2AX. This corresponded to increased expression of genes involved in DNA damage response, such as , as measured in ALDH+ cells treated with CM37 or in cells where was knocked down. By inhibiting ALDH1A1, CM37 augmented intracellular ROS accumulation, which in turn led to increased DNA damage and reduced OC cell viability. Cumulatively, our findings demonstrate that a novel ALDH1A1 small molecule inhibitor is active in OC models enriched in CSCs. Further optimization of this new class of small molecules could provide a novel strategy for targeting treatment-resistant OC.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6521036PMC
http://dx.doi.org/10.3390/cancers11040502DOI Listing

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