国际眼科纵览

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利用静电纺丝技术构建组织工程角膜缘的研究现状

高晴琴1 李贵刚2 王玮2 王平1   

  1. 1三峡大学附属仁和医院眼科,湖北宜昌 443000;2华中科技大学同济医学院附属同济医院眼科,武汉 430030
  • 收稿日期:2019-05-08 出版日期:2019-10-22 发布日期:2019-10-30
  • 通讯作者: 王平,Email:272593422@qq.com

Research status of tissue engineering limbus by electrospun

Gao Qingqin1, Li Guigang2, Wang Wei2, Wang Ping1   

  1. 1 Department of Ophthalmology, Affiliated Renhe Hospital of China Three Gorges University, Yichang Hubei, 443000, China;  2 Department of Ophthalmology, Tongji Hospital, Tongji Medical College,Huazhong University of Science and Technology, Wuhan 430030, China
  • Received:2019-05-08 Online:2019-10-22 Published:2019-10-30
  • Contact: Wang Ping, Email: 272593422@qq.com

摘要:

角膜缘干细胞失代偿是由各种原因所致的角膜缘干细胞缺乏以及角膜缘微环境破坏引起,严重可致患者失明。利用组织工程技术构建可供移植的组织工程角膜缘是目前角膜病研究领域的方向之一。采用静电纺丝技术构建三维支架,为角膜缘干细胞和角膜缘微环境细胞提供生长条件,获得组织工程角膜缘,可治疗双眼角膜缘干细胞失代偿患者。其优点是成膜薄,与人体角膜缘组织的三维结构相似,并可根据实际调整纤维结构。本文综述了静电纺丝技术的原理、聚合物材料的选择、接种细胞的选择、静电纺丝制作组织工程支架的优势和静电纺丝在构建角膜缘方面的研究进展与方向。(国际眼科纵览,2019, 43:328-331)

 

Abstract:

Limbal stem cell deficiency is caused by the lack of limbal stem cells and the damage of the limbal microenvironment caused by various reasons, which can cause blindness in patients. It is one of the directions in the field of corneal disease to construct tissue engineering limbus for transplantation. Three\|dimensional scaffolds were constructed by electrospinning technology to provide growth conditions for limbal stem cells and limbal niches cells, and tissue engineered limbus was obtained, which can treat patients with binocular limbal stem cell deficiency. The advantage of electrospinning technology is that the film formation is thin, similar to the three\|dimensional structure of the limbal tissue of the human, and the fiber structure can be adjusted according to the specific situation. This article mainly summarizes the research status of tissue engineering limbus by electrospun, including the principle of electrospinning technology, the choice of polymer materials, the selection of seed cells, the advantages of electrospinning for tissue engineering scaffolds and the research progress and direction of electrospinning in the construction of tissue engineering limbus.(Int Rev Ophthalmol, 2019, 43:   328-331)