Targeting senescent retinal pigment epithelial cells facilitates retinal regeneration in mouse models of age-related macular degeneration

被引:0
作者
Jae-Byoung Chae
Hyoik Jang
Chanok Son
Chul-Woo Park
Huyeon Choi
Seongeon Jin
Ho-Yeon Lee
Hyungwoo Lee
Ja-Hyoung Ryu
Namshin Kim
Chaekyu Kim
Hyewon Chung
机构
[1] Konkuk University School of Medicine,Department of Ophthalmology
[2] Ulsan National Institute of Science and Technology,Department of Chemistry
[3] Genome Editing Research Center,Department of Bioinformatics
[4] Korea Research Institute of Bioscience and Biotechnology (KRIBB),Department of Ophthalmology
[5] KRIBB School of Bioscience,undefined
[6] Korea University of Science and Technology (UST),undefined
[7] Konkuk University Medical Center,undefined
关键词
Aging; Age-related macular degeneration; Cellular senescence; Retina; Senolytic;
D O I
暂无
中图分类号
学科分类号
摘要
Although age-related macular degeneration (AMD) is a multifactorial disorder with angiogenic, immune, and inflammatory components, the most common clinical treatment strategies are antiangiogenic therapies. However, these strategies are only applicable to neovascular AMD, which accounts for less than 20% of all AMD cases, and there are no FDA-approved drugs for the treatment of dry AMD, which accounts for ~ 80% of AMD cases. Here, we report that the elimination of senescent cells is a potential novel therapeutic approach for the treatment of all types of AMD. We identified senescent retinal pigment epithelium (RPE) cells in animal models of AMD and determined their contributions to retinal degeneration. We further confirmed that the clearance of senescent RPE cells with the MDM2-p53 inhibitor Nutlin-3a ameliorated retinal degeneration. These findings provide new insights into the use of senescent cells as a therapeutic target for the treatment of AMD.
引用
收藏
页码:2809 / 2833
页数:24
相关论文
共 353 条
  • [31] Daniel E(2018)Clearance of senescent glial cells prevents tau-dependent pathology and cognitive decline Nature 562 578-330
  • [32] Ying GS(2018)The progression of geographic atrophy secondary to age-related macular degeneration Ophthalmology 125 369-61
  • [33] Pan W(2012)DICER1 loss and Alu RNA induce age-related macular degeneration via the NLRP3 inflammasome and MyD88 Cell 149 847-2211
  • [34] Jaffe GJ(2013)Retinal angiogenesis suppression through small molecule activation of p53 J Clin Invest 123 4170-2199
  • [35] Lux A(2011)DICER1 deficit induces Alu RNA toxicity in age-related macular degeneration Nature 471 325-176
  • [36] Llacer H(2018)cGAS drives noncanonical-inflammasome activation in age-related macular degeneration Nat Med 24 50-1182
  • [37] Heussen FM(2013)Laser-induced choroidal neovascularization model to study age-related macular degeneration in mice Nat Protoc 8 2197-487
  • [38] Joussen AM(2014)Angiopoietin-1 suppresses choroidal neovascularization and vascular leakage Invest Ophthalmol Vis Sci 55 2191-136
  • [39] Tozer K(2020)A two-stage laser-induced mouse model of subretinal fibrosis secondary to choroidal neovascularization Transl Vis Sci Technol 9 3-805
  • [40] Roller AB(2017)Cellular senescence promotes adverse effects of chemotherapy and cancer relapse Cancer Discov 7 165-441