Targeting Bcl-xL with Navitoclax Effectively Eliminates Senescent Tumor Cells That Appear Following CEP-1347-Induced

Senri Takenouchi1, Yasufumi Ito1,2, Kazuki Nakamura1,3

  • 1Department of Molecular Cancer Science, Yamagata University School of Medicine, 2-2-2 Iida-Nishi, Yamagata 990-9585, Japan.

Insights

CEP-1347 induces senescence in glioma stem cells (GSCs), making them vulnerable to senolytics. Combining CEP-1347 with Bcl-xL targeting eliminates GSCs, improving glioblastoma treatment outcomes.

Area of Science:

  • Oncology
  • Cell Biology
  • Cancer Research

Background:

  • Cellular senescence, a state of irreversible cell cycle arrest, is linked to tumor cell reprogramming.
  • Glioma stem cells (GSCs) drive glioblastoma recurrence and therapy resistance.
  • CEP-1347, an MLK inhibitor, was previously shown to differentiate GSCs.

Purpose of the Study:

  • To investigate if CEP-1347 induces senescence in GSCs.
  • To determine if senescent GSCs can be eliminated using senolytic agents.
  • To explore combination therapies for glioblastoma treatment.

Main Methods:

  • Examined cell death induced by CEP-1347 with senolytics or BCL2 family gene knockdown.
  • Assessed CEP-1347's effects on senescence markers and anti-apoptotic Bcl-2 proteins.
  • Tested navitoclax, a senolytic BH3 mimetic, in combination with CEP-1347.

Main Results:

  • CEP-1347 induced senescence in GSCs, increasing Bcl-xL expression.
  • Navitoclax efficiently induced GSC death when combined with CEP-1347 at achievable concentrations.
  • Bcl-xL knockdown enhanced CEP-1347-induced GSC death more than Bcl-2 knockdown.

Conclusions:

  • CEP-1347 induces GSC senescence, upregulating Bcl-xL.
  • Combining CEP-1347 with Bcl-xL targeting offers a rational strategy for GSC elimination.
  • This approach may improve glioblastoma treatment outcomes by targeting senescent GSCs.