Nutrient capsules maintain tear film homeostasis for human corneal lenticule transplantation

移植 平衡 眼科 营养物 化学 医学 生物 细胞生物学 外科 有机化学
作者
Jing Zhao,Zhe Zhang,Fei Xia,Gang Li,Qimanguli Saiding,Lei Xiang,Haipeng Xu,Peijun Yao,Xiaoying Wang,Zhengwei Cai,Wenguo Cui,Xingtao Zhou
出处
期刊:Chemical Engineering Journal [Elsevier BV]
卷期号:450: 138078-138078 被引量:8
标识
DOI:10.1016/j.cej.2022.138078
摘要

A novel human corneal tissue preservative system of nutrient capsule, which simulates the human tear film homeostasis for the three-dimensional preservation of corneal tissue. In vitro , the nutrient capsule prolonged the storage time and maintained the structural integrity, transparency, and cellular activity of human corneal lenticules. Furthermore, the corneal lenticules preserved by the capsules were safe and effective after human corneal lenticule transplantation. • A novel human corneal lenticules preservative system of nutrient capsule. • Maintaining the fiber density, transparency, and cellular activity of lenticules. • Lenticules preserved by capsules were safe for human allogeneic transplantation. • Nutrient capsule provides a new approach for other living tissues preservation. Corneal lenticule transplantation can be applied in the correction of refractive errors and various corneal diseases. However, current techniques to preserve cornea are limited due to their short preservation time and the structures and optical retention of cornea tissues. Inspired by the composition of the natural human tear film, a nutrient hydrogel capsule that could maintain the homeostasis of tear film was constructed for preserving human corneal lenticules in this study. The nutritional preservation solution containing sodium alginate was coordinated with calcium ions by rapid diffusion to form a stereoscopic capsule, in which chondroitin sulfate interacted with the corneal lenticule surface electrostatically to form a lubricating layer for three-dimensional preservation and nutritional supply. The light transmittance, cell activity, and collagen fiber density of human corneal lenticules after mid-term preservation in nutrient capsules were higher than those traditional preservation methods. Furthermore, after human allogeneic transplantation, the implanted lenticules remained transparent without displacement or graft rejection, and the corrected distance visual acuity increased by two or more lines in 70% of the patients’ operated eyes after surgery. Nutrient capsules could provide not only a simple, safe, and controlled strategy for three-dimensional preservation, but also new approach for other living tissues preservation.
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