International Journal of Molecular Sciences (Dec 2023)

MicroRNA-152-3p and MicroRNA-196a-5p Are Downregulated When Müller Cells Are Promoted by Components of the Internal Limiting Membrane: Implications for Macular Hole Healing

  • Hung-Da Chou,
  • Shine-Gwo Shiah,
  • Lan-Hsin Chuang,
  • Wei-Chi Wu,
  • Yih-Shiou Hwang,
  • Kuan-Jen Chen,
  • Eugene Yu-Chuan Kang,
  • Ling Yeung,
  • Chung-Yi Nien,
  • Chi-Chun Lai

DOI
https://doi.org/10.3390/ijms242417188
Journal volume & issue
Vol. 24, no. 24
p. 17188

Abstract

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Müller cells play a critical role in the closure of macular holes, and their proliferation and migration are facilitated by the internal limiting membrane (ILM). Despite the importance of this process, the underlying molecular mechanism remains underexplored. This study investigated the effects of ILM components on the microRNA (miRNA) profile of Müller cells. Rat Müller cells (rMC-1) were cultured with a culture insert and varying concentrations of ILM component coatings, namely, collagen IV, laminin, and fibronectin, and cell migration was assessed by measuring cell-free areas in successive photographs following insert removal. MiRNAs were then extracted from these cells and analyzed. Mimics and inhibitors of miRNA candidates were transfected into Müller cells, and a cell migration assay and additional cell viability assays were performed. The results revealed that the ILM components promoted Müller cell migration (p p 1.5). Moreover, miR-152-3p and miR-196a-5p reduced cell migration (p p < 0.001), and their suppressive effects were reversed by their respective inhibitors. In conclusion, miRNAs were regulated in ILM component-activated Müller cells, with miR-152-3p and miR-196a-5p regulating Müller cell migration and proliferation. These results serve as a basis for understanding the molecular healing process of macular holes and identifying potential new target genes in future research.

Keywords