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简要综述:用于组织工程化结膜上皮替代物的培养膜比较

Concise Review: Comparison of Culture Membranes Used for Tissue Engineered Conjunctival Epithelial Equivalents.

作者信息

Eidet Jon Roger, Dartt Darlene A, Utheim Tor Paaske

机构信息

Department of Ophthalmology, Oslo University Hospital, Oslo 0424, Norway.

Schepens Eye Research Institute, Massachusetts Eye and Ear/Harvard Medical School, Boston, MA 02114, USA.

出版信息

J Funct Biomater. 2015 Dec 11;6(4):1064-84. doi: 10.3390/jfb6041064.

Abstract

The conjunctival epithelium plays an important role in ensuring the optical clarity of the cornea by providing lubrication to maintain a smooth, refractive surface, by producing mucins critical for tear film stability and by protecting against mechanical stress and infectious agents. A large number of disorders can lead to scarring of the conjunctiva through chronic conjunctival inflammation. For controlling complications of conjunctival scarring, surgery can be considered. Surgical treatment of symblepharon includes removal of the scar tissue to reestablish the deep fornix. The surgical defect is then covered by the application of a tissue substitute. One obvious limiting factor when using autografts is the size of the defect to be covered, as the amount of healthy conjunctiva is scarce. These limitations have led scientists to develop tissue engineered conjunctival equivalents. A tissue engineered conjunctival epithelial equivalent needs to be easily manipulated surgically, not cause an inflammatory reaction and be biocompatible. This review summarizes the various substrates and membranes that have been used to culture conjunctival epithelial cells during the last three decades. Future avenues for developing tissue engineered conjunctiva are discussed.

摘要

结膜上皮通过提供润滑以维持光滑的屈光表面、产生对泪膜稳定性至关重要的黏蛋白以及抵御机械应力和感染因子,在确保角膜的光学清晰度方面发挥着重要作用。大量疾病可通过慢性结膜炎症导致结膜瘢痕形成。为控制结膜瘢痕形成的并发症,可考虑手术治疗。睑球粘连的手术治疗包括切除瘢痕组织以重建深部穹窿。然后应用组织替代物覆盖手术缺损。使用自体移植物时一个明显的限制因素是要覆盖的缺损大小,因为健康结膜的量很少。这些限制促使科学家们开发组织工程化结膜替代物。组织工程化结膜上皮替代物需要易于手术操作,不引起炎症反应且具有生物相容性。本综述总结了过去三十年中用于培养结膜上皮细胞的各种基质和膜。还讨论了组织工程化结膜未来的发展途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d3d/4695911/1313712e850d/jfb-06-01064-g001.jpg

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