Rebuilding the Retina: Prospects for M?ller Glial-mediated Self-repair

被引:16
|
作者
Langhe, Rahul [1 ]
Pearson, Rachael A. [1 ]
机构
[1] UCL, Inst Ophthalmol, 11-43 Bath St, London EC1V 9EL, England
关键词
M?ller glia; regeneration; stem cells; neurogenesis; endogenous repair; retinal degeneration; photoreceptors; PLURIPOTENT STEM-CELLS; MULLER GLIA; CILIARY MARGIN; NEURAL REGENERATION; REGIONAL DIFFERENCES; HOST PHOTORECEPTORS; ENDOGENOUS REPAIR; ZEBRAFISH RETINA; PROGENITOR CELLS; SONIC HEDGEHOG;
D O I
10.1080/02713683.2019.1669665
中图分类号
R77 [眼科学];
学科分类号
100212 ;
摘要
Retinal degeneration is a leading cause of untreatable blindness in the industrialised world. It is typically irreversible and there are few curative treatments available. The use of stem cells to generate new retinal neurons for transplantation purposes has received significant interest in recent years and is beginning to move towards clinical trials. However, such approaches are likely to be most effective for relatively focal areas of repair. An intriguing complementary approach is endogenous self-repair. Retinal cells from the ciliary marginal zone (CMZ), retinal pigment epithelium (RPE) and M?ller glial cells (MG) have all been shown to play a role in retinal repair, typically in lower vertebrates. Among them, MG have received renewed interest, due to their distribution throughout (centre to periphery) the neural retina and their potential to re-acquire a progenitor-like state following retinal injury with the ability to proliferate and generate new neurons. Triggering these innate self-repair mechanisms represents an exciting therapeutic option in treating retinal degeneration. However, these cells behave differently in mammalian and non-mammalian species, with a considerably restricted potential in mammals. In this short review, we look at some of the recent progress made in our understanding of the signalling pathways that underlie MG-mediated regeneration in lower vertebrates, and some of the challenges that have been revealed in our attempts to reactivate this process in the mammalian retina.
引用
收藏
页码:349 / 360
页数:12
相关论文
共 7 条
  • [1] Restoring vision and rebuilding the retina by M?ller glial cell reprogramming
    Agarwal, Devansh
    Do, Hope
    Mazo, Kevin W.
    Chopra, Manan
    Wahlin, Karl J.
    STEM CELL RESEARCH, 2023, 66
  • [2] Müller Glial Cell-Dependent Regeneration of the Retina in Zebrafish and Mice
    Jui, Jonathan
    Goldman, Daniel
    ANNUAL REVIEW OF GENETICS, 2024, 58 : 67 - 90
  • [3] The Rax homeoprotein in Müller glial cells is required for homeostasis maintenance of the postnatal mouse retina
    Yoshimoto, Takuya
    Chaya, Taro
    Varner, Leah R.
    Ando, Makoto
    Tsujii, Toshinori
    Motooka, Daisuke
    Kimura, Kazuhiro
    Furukawa, Takahisa
    JOURNAL OF BIOLOGICAL CHEMISTRY, 2023, 299 (12)
  • [4] Müller glial cells located in the peripheral retina are more susceptible to high pressure: implications for glaucoma
    Pereiro, Xandra
    Ruzafa, Noelia
    Azkargorta, Mikel
    Elortza, Felix
    Acera, Arantxa
    Ambrosio, Antonio Francisco
    Santiago, Ana Raquel
    Vecino, Elena
    CELL AND BIOSCIENCE, 2024, 14 (01)
  • [5] Induction of a Müller Glial Cell-Specific Protective Pathway Safeguards the Retina From Diabetes-Induced Damage
    Lin, Cheng-Hui
    Wu, Man-Ru
    Tanasa, Bogdan
    Prakhar, Praveen
    Deng, Boxiong
    Davis, Alexander E.
    Li, Liang
    Xia, Alexander
    Shan, Yang
    Fort, Patrice E.
    Wang, Sui
    DIABETES, 2025, 74 (01) : 96 - 107
  • [6] Chemokine-mediated inflammation in the degenerating retina is coordinated by Müller cells, activated microglia, and retinal pigment epithelium
    Matt Rutar
    Riccardo Natoli
    RX Chia
    Krisztina Valter
    Jan M Provis
    Journal of Neuroinflammation, 12
  • [7] TREATMENT WITH UDP-GLUCOSE, GDNF, AND MEMANTINE PROMOTES SVZ AND WHITE MATTER SELF-REPAIR BY ENDOGENOUS GLIAL PROGENITOR CELLS IN NEONATAL RATS WITH ISCHEMIC PVL
    Li, W. -J.
    Mao, F. -X.
    Chen, H. -J.
    Qian, L. -H.
    Buzby, J. S.
    NEUROSCIENCE, 2015, 284 : 444 - 458