Regenerative capacity of the corneal transition zone for endothelial cell therapy

被引:38
作者
Sie, Nicole Ming [1 ,2 ]
Yam, Gary Hin-Fai [1 ,3 ]
Soh, Yu Qiang [1 ,2 ]
Lovatt, Matthew [1 ]
Dhaliwal, Deepinder [3 ]
Kocaba, Viridiana [1 ,4 ]
Mehta, Jodhbir S. [1 ,2 ,5 ,6 ]
机构
[1] Singapore Eye Res Inst, Tissue Engn & Cell Therapy Grp, 20 Coll Rd,Discovery Tower,Level 6, Singapore 169856, Singapore
[2] Singapore Natl Eye Ctr, Singapore 168751, Singapore
[3] Univ Pittsburgh, Dept Ophthalmol, Pittsburgh, PA 15213 USA
[4] Netherland Inst Innovat Ocular Surg, Rotterdam, Netherlands
[5] Duke NUS Grad Med Sch, Ophthalmol & Visual Sci Acad Clin Program, Singapore 169857, Singapore
[6] Nanyang Technol Univ, Sch Mat Sci & Engn, Singapore 637551, Singapore
基金
英国医学研究理事会;
关键词
Cornea endothelium; Corneal endothelial progenitors; Schwalbe's line; transitional zone; corneal endothelial cell degeneration; NEURAL CREST DERIVATIVES; TRABECULAR MESHWORK; STEM-CELLS; PERIOCULAR MESENCHYME; POSTERIOR LIMBUS; ROCK INHIBITOR; TRANSPLANTATION; EYE; PRECURSORS; EXISTENCE;
D O I
10.1186/s13287-020-02046-2
中图分类号
Q813 [细胞工程];
学科分类号
摘要
The corneal endothelium located on the posterior corneal surface is responsible for regulating stromal hydration. This is contributed by a monolayer of corneal endothelial cells (CECs), which are metabolically active in a continuous fluid-coupled efflux of ions from the corneal stroma into the aqueous humor, preventing stromal over-hydration and preserving the orderly arrangement of stromal collagen fibrils, which is essential for corneal transparency. Mature CECs do not have regenerative capacity and cell loss due to aging and diseases results in irreversible stromal edema and a loss of corneal clarity. The current gold standard of treatment for this worldwide blindness caused by corneal endothelial failure is the corneal transplantation using cadaveric donor corneas. The top indication is Fuchs corneal endothelial dystrophy/degeneration, which represents 39% of all corneal transplants performed. However, the global shortage of transplantable donor corneas has restricted the treatment outcomes, hence instigating a need to research for alternative therapies. One such avenue is the CEC regeneration from endothelial progenitors, which have been identified in the peripheral endothelium and the adjacent transition zone. This review examines the evidence supporting the existence of endothelial progenitors in the posterior limbus and summarizes the existing knowledge on the microanatomy of the transitional zone. We give an overview of the isolation and ex vivo propagation of human endothelial progenitors in the transition zone, and their growth and differentiation capacity to the corneal endothelium. Transplanting these bioengineered constructs into in vivo models of corneal endothelial degeneration will prove the efficacy and viability, and the long-term maintenance of functional endothelium. This will develop a novel regenerative therapy for the management of corneal endothelial diseases.
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页数:13
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共 103 条
  • [1] Anatomic Studies of the Miniature Swine Cornea
    Abhari, Sarag
    Eisenback, Michael
    Kaplan, Henry J.
    Walters, Eric
    Prather, Randall S.
    Scott, Patrick A.
    [J]. ANATOMICAL RECORD-ADVANCES IN INTEGRATIVE ANATOMY AND EVOLUTIONARY BIOLOGY, 2018, 301 (11): : 1955 - 1967
  • [2] ALEXANDER R A, 1989, Eye (London), V3, P719
  • [3] Increased endothelial cell density in the paracentral and peripheral regions of the human cornea
    Amann, J
    Holley, GP
    Lee, SB
    Edelhauser, HF
    [J]. AMERICAN JOURNAL OF OPHTHALMOLOGY, 2003, 135 (05) : 584 - 590
  • [4] Treatment of corneal endothelial damage in a rabbit model with a bioengineered graft using human decellularized corneal lamina and cultured human corneal endothelium
    Arnalich-Montiel, Francisco
    Moratilla, Adrian
    Fuentes-Julian, Sherezade
    Aparicio, Veronica
    Martin, Marta Cadenas
    Peh, Gary
    Mehta, Jodhbir S.
    Adnan, Khadijah
    Porrua, Laura
    Perez-Sarriegui, Ane
    De Miguel, Maria P.
    [J]. PLOS ONE, 2019, 14 (11):
  • [5] Bednarz J, 1998, IN VITRO CELL DEV-AN, V34, P149
  • [6] Allogeneic Descemet's Membrane Transplantation Enhances Corneal Endothelial Monolayer Formation and Restores Functional Integrity Following Descemet's Stripping
    Bhogal, Maninder
    Lwin, Chan N.
    Seah, Xin-Yi
    Peh, Gary
    Mehta, Jodhbir S.
    [J]. INVESTIGATIVE OPHTHALMOLOGY & VISUAL SCIENCE, 2017, 58 (10) : 4249 - 4260
  • [7] Molecular mechanisms underlying the corneal endothelial pump
    Bonanno, Joseph A.
    [J]. EXPERIMENTAL EYE RESEARCH, 2012, 95 (01) : 2 - 7
  • [8] Breazzano Mark P, 2013, J Ophthalmic Vis Res, V8, P9
  • [9] Coexistence of Congenital Hereditary Endothelial Dystrophy and Fuchs Endothelial Corneal Dystrophy Associated With SLC4A11 Mutations in Affected Families
    Chaurasia, Sunita
    Ramappa, Muralidhar
    Annapurna, Mohini
    Kannabiran, Chitra
    [J]. CORNEA, 2020, 39 (03) : 354 - 357
  • [10] Treatment with retinoic acid and lens epithelial cell-conditioned medium in vitro directed the differentiation of pluripotent stem cells towards corneal endothelial cell-like cells
    Chen, Ping
    Chen, Jun-Zhao
    Shao, Chun-Yi
    Li, Chuan-Yin
    Zhang, Yi-Dan
    Lu, Wen-Juan
    Fu, Yao
    Gu, Ping
    Fan, Xianqun
    [J]. EXPERIMENTAL AND THERAPEUTIC MEDICINE, 2015, 9 (02) : 351 - 360