Sivan Padma Priya, Syed Sakinah, Mok Pooi-Ling, Higuchi Akon, Murugan Kadarkarai, Alarfaj Abdullah A, Munusamy Murugan A, Awang Hamat Rukman, Umezawa Akihiro, Kumar Suresh
Department of Medical Microbiology and Parasitology, Universiti Putra Malaysia (UPM), 43400 Serdang, Selangor, Malaysia; Department of Basic Medical Science and Department of Surgical Sciences, Ajman University of Science and Technology-Fujairah Campus, Al Fujairah, UAE.
Department of Medical Microbiology and Parasitology, Universiti Putra Malaysia (UPM), 43400 Serdang, Selangor, Malaysia.
Stem Cells Int. 2016;2016:8304879. doi: 10.1155/2016/8304879. Epub 2016 May 15.
Sustenance of visual function is the ultimate focus of ophthalmologists. Failure of complete recovery of visual function and complications that follow conventional treatments have shifted search to a new form of therapy using stem cells. Stem cell progenitors play a major role in replenishing degenerated cells despite being present in low quantity and quiescence in our body. Unlike other tissues and cells, regeneration of new optic cells responsible for visual function is rarely observed. Understanding the transcription factors and genes responsible for optic cells development will assist scientists in formulating a strategy to activate and direct stem cells renewal and differentiation. We review the processes of human eye development and address the strategies that have been exploited in an effort to regain visual function in the preclinical and clinical state. The update of clinical findings of patients receiving stem cell treatment is also presented.
维持视觉功能是眼科医生的最终关注点。传统治疗后视觉功能未能完全恢复以及随之而来的并发症,促使人们将探索方向转向使用干细胞的新型治疗方法。尽管干细胞祖细胞在我们体内数量稀少且处于静止状态,但它们在补充退化细胞方面发挥着主要作用。与其他组织和细胞不同,很少观察到负责视觉功能的新视细胞的再生。了解负责视细胞发育的转录因子和基因将有助于科学家制定激活和引导干细胞更新与分化的策略。我们回顾了人类眼睛发育的过程,并探讨了在临床前和临床状态下为恢复视觉功能而采用的策略。还介绍了接受干细胞治疗患者的临床研究结果更新情况。