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Updated: Jun 21, 2025

Primary Cell Cultures to Study the Regeneration Potential of Murine Müller Glia after MicroRNA Treatment
Published on: March 28, 2022
Investigating Müller glia reprogramming in mice: a retrospective of the last decade, and a look to the future
Zhiyuan Yin1, Jiahui Kang, Xuan Cheng
1Key Lab of Visual Damage and Regeneration & Restoration of Chongqing, Southwest Eye Hospital, Southwest Hospital, Third Military Medical University (Army Medical University), Chongqing, China.
Abstract:
Müller glia, as prominent glial cells within the retina, plays a significant role in maintaining retinal homeostasis in both healthy and diseased states. In lower vertebrates like zebrafish, these cells assume responsibility for spontaneous retinal regeneration, wherein endogenous Müller glia undergo proliferation, transform into Müller glia-derived progenitor cells, and subsequently regenerate the entire retina with restored functionality. Conversely, Müller glia in the mouse and human retina exhibit limited neural reprogramming. Müller glia reprogramming is thus a promising strategy for treating neurodegenerative ocular disorders. Müller glia reprogramming in mice has been accomplished with remarkable success, through various technologies. Advancements in molecular, genetic, epigenetic, morphological, and physiological evaluations have made it easier to document and investigate the Müller glia programming process in mice. Nevertheless, there remain issues that hinder improving reprogramming efficiency and maturity. Thus, understanding the reprogramming mechanism is crucial toward exploring factors that will improve Müller glia reprogramming efficiency, and for developing novel Müller glia reprogramming strategies. This review describes recent progress in relatively successful Müller glia reprogramming strategies. It also provides a basis for developing new Müller glia reprogramming strategies in mice, including epigenetic remodeling, metabolic modulation, immune regulation, chemical small-molecules regulation, extracellular matrix remodeling, and cell-cell fusion, to achieve Müller glia reprogramming in mice.
Insights
Müller glia can regenerate retinas in zebrafish but not mice. Researchers are exploring reprogramming strategies to enhance Müller glia reprogramming for treating eye diseases.
Area of Science:
- Neuroscience
- Ophthalmology
- Regenerative Medicine
Background:
- Müller glia are crucial for retinal homeostasis and spontaneous regeneration in zebrafish.
- Müller glia in mice and humans have limited regenerative capacity, highlighting a need for therapeutic strategies.
- Müller glia reprogramming is a promising avenue for treating neurodegenerative ocular disorders.
Purpose of the Study:
- To review recent advancements in Müller glia reprogramming strategies in mice.
- To identify key factors and mechanisms that influence reprogramming efficiency and maturity.
- To provide a foundation for developing novel Müller glia reprogramming approaches.
Main Methods:
- Review of current literature on Müller glia reprogramming technologies in mice.
- Analysis of molecular, genetic, epigenetic, morphological, and physiological evaluations.
- Exploration of various reprogramming strategies including epigenetic, metabolic, immune, chemical, ECM, and cell-cell fusion approaches.
Main Results:
- Müller glia reprogramming in mice has shown significant success using diverse technologies.
- Understanding reprogramming mechanisms is vital for improving efficiency and maturity.
- Several strategies like epigenetic remodeling and metabolic modulation show potential.
Conclusions:
- Müller glia reprogramming holds significant therapeutic potential for retinal diseases.
- Further research into reprogramming mechanisms is essential for optimizing strategies.
- Developing novel approaches is key to achieving successful Müller glia reprogramming in mice.

