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April 23, 2026International Journal of Molecular Sciences0 citationsOpen Access

miR-136-5p Preferentially Suppresses Cancer Stem-like Cells in Pancreatic Cancer

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HYHiroyuki YamamotoYYYuhki YokoyamaSKShihori Kouda

Key Points

  • The study aims to identify microRNAs that can suppress cancer stem-like properties in pancreatic cancer.
  • Isolation of a proteasome-low CSC population using fluorescence-activated cell sorting.
  • MicroRNA expression profiling to identify candidates targeting CSC-related molecules.
  • Evaluation of miR-136-5p in a xenograft model for its therapeutic potential.
  • MiR-136-5p was downregulated in CSC-like cells and successfully reduced DCLK1 expression.
  • Systemic delivery of miR-136-5p in mice significantly suppressed pancreatic tumor growth.
  • Indicated that miR-136-5p restoration may provide a novel approach to targeting CSC-driven tumors.

Abstract

In pancreatic cancer, cancer stem-like cells (CSCs) contribute to tumor initiation, reduced drug sensitivity, and recurrence. Limited strategies are currently available to target this cell population. Here we used a proteasome-low CSC enrichment system to identify microRNAs that negatively regulate CSC-like properties. From PANC-1 cells expressing a ZsGreen–ODC degron reporter, a proteasome-low population was isolated through sequential fluorescence-activated cell sorting of ZsGreen-positive cells. Molecular and functional analyses confirmed the CSC-like phenotype of this cell population. Integrated in silico analysis was used to select 31 microRNAs predicted to target CSC-related molecules, which were then evaluated by in vitro viability-based screening to identify candidates that selectively suppressed the viability of CSC-like cells, relative to non-CSCs. Moreover, comprehensive miRNA expression profiling revealed that miR-136-5p was downregulated in the CSC-like population and was therefore selected for further analysis. Mechanistically, miR-136-5p directly targets the 3′ untranslated region of DCLK1 and reduces its expression, with a greater reduction in the short isoform. Finally, in a CSC-derived xenograft mouse model, systemic delivery of miR-136-5p using super carbonate apatite nanoparticles significantly suppressed tumor growth. Taken together, these findings suggest that miR-136-5p restoration may provide a therapeutic approach for targeting CSC-driven tumor growth in pancreatic cancer.

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Cite This Study

Yamamoto et al. (2026) studied this question.

synapsesocial.com/papers/69e9baa885696592c86ecc96https://doi.org/10.3390/ijms27083686
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