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用于移植的生物工程化人角膜内皮

Bioengineered human corneal endothelium for transplantation.

作者信息

Lai Jui-Yang, Chen Ko-Hua, Hsu Wen-Ming, Hsiue Ging-Ho, Lee Yen-Hsien

机构信息

Department of Chemical Engineering, National Tsing Hua University, Hsinchu, Taiwan.

出版信息

Arch Ophthalmol. 2006 Oct;124(10):1441-8. doi: 10.1001/archopht.124.10.1441.

Abstract

OBJECTIVE

To investigate whether the bioengineered human corneal endothelial cell (HCEC) monolayers harvested from thermoresponsive culture supports could be used as biological tissue equivalents.

METHODS

Untransformed adult HCECs derived from eye bank corneas were cultivated on a thermoresponsive poly-N-isopropylacrylamide-grafted surface for 3 weeks at 37 degrees C. Confluent cell cultures with a phenotype and cell density similar to HCECs in vivo were detached as a laminated sheet by lowering the culture temperature to 20 degrees C. In vitro characteristics of the HCEC sheets were determined evaluating their viability and by scanning electron microscopy, immunohistochemistry, and histological studies.

RESULTS

After separation from culture surfaces via a thermal stimulus, the HCEC sheets remained viable. Polygonal cell morphology and multiple cellular interconnections were observed throughout the HCEC sheets. Immunolocalization of zonula occludens-1 and Na+,K+-adenosine triphosphatase (ATPase) indicated the formation of tight junctions and the distribution of ionic pumps at the cell boundary. In addition, we ascertained that cultured HCECs have a monolayered architecture that mimics native corneal endothelium.

CONCLUSION

These data suggest that a well-organized and functional HCEC monolayer can feasibly be used as tissue equivalents for replacing compromised endothelium.Clinical Relevance Bioengineered human corneal endothelium fabricated from thermoresponsive supports can potentially offer a new therapeutic strategy for corneal endothelial cell loss.

摘要

目的

研究从热响应性培养支架上收获的生物工程化人角膜内皮细胞(HCEC)单层是否可作为生物组织替代物。

方法

将来自眼库角膜的未转化成年HCEC在热响应性聚N-异丙基丙烯酰胺接枝表面于37℃培养3周。通过将培养温度降至20℃,将具有与体内HCEC相似表型和细胞密度的汇合细胞培养物作为层状片分离。通过评估其活力并借助扫描电子显微镜、免疫组织化学和组织学研究来确定HCEC片的体外特性。

结果

通过热刺激从培养表面分离后,HCEC片仍保持活力。在整个HCEC片中观察到多边形细胞形态和多个细胞间连接。紧密连接蛋白-1和钠钾-三磷酸腺苷酶(ATP酶)的免疫定位表明在细胞边界形成了紧密连接并分布有离子泵。此外,我们确定培养的HCEC具有模仿天然角膜内皮的单层结构。

结论

这些数据表明,组织良好且功能正常的HCEC单层可切实用作替代受损内皮的组织替代物。临床意义 由热响应性支架制造的生物工程化人角膜内皮可能为角膜内皮细胞丢失提供一种新的治疗策略。

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