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利用交联羊膜支架构建组织工程化人角膜内皮用于角膜内皮再生。

Construction of tissue-engineered human corneal endothelium for corneal endothelial regeneration using a crosslinked amniotic membrane scaffold.

机构信息

Key Laboratory for Corneal Tissue Engineering, College of Marine Life Sciences, Ocean University of China, Qingdao 266003, Shandong Province, China.

Key Laboratory for Corneal Tissue Engineering, College of Marine Life Sciences, Ocean University of China, Qingdao 266003, Shandong Province, China; Present address: Department of traditional Chinese Medicine and Immunizations, Institute of Chinese Medicine and Pharmacy, Shandong University of traditional Chinese Medicine, Jinan 250355, Shandong Province, China.

出版信息

Acta Biomater. 2022 Jul 15;147:185-197. doi: 10.1016/j.actbio.2022.03.039. Epub 2022 May 17.

DOI:10.1016/j.actbio.2022.03.039
PMID:35358736
Abstract

Descemet's membrane endothelial keratoplasty (DMEK) may provide fast visual rehabilitation in the therapy of corneal endothelial disorders. However, due to shortage of donated corneas, how to construct a corneal endothelial substitute with powerful functions that can be used for DMEK is still unsolved. Herein, we introduced the method of corneal crosslinking (CXL) and conjugated the components of native Descemet's membrane (DM) to improve the mechanical properties and the biocompatibility of denuded amniotic membrane (dAM), further assessed their effects on cell adhesion, proliferation, YAP translocation, and metabolic activity in human corneal endothelial (HCE) cells. Using modified crosslinked dAM (mcdAM) and non-transfected HCE cells, we constructed a tissue-engineered HCE (TE-HCE) and evaluated its functions in cat and monkey models as well. Our results showed that the mechanical properties of mcdAM were improved effectively by CXL, and the adhesion, proliferation, and YAP translocation of HCE cells were dose-dependently improved after ECM modification. The combination of 0.01 mg/mL laminin with 0.1 mg/mL fibronectin showed the highest efficacy. Then, the TE-HCE was constructed in vitro, with a high density of 3612 ± 243 cells/mm. Results of DMEK in animal models showed that corneal transparency was maintained, accompanied with normal morphology and histological structure of the regenerated corneal endothelium. Therefore, CXL combined with DM-mimic-coating methods could effectively improve the mechanical properties of dAM and enhance the biocompatibility with HCE cells. The constructed TE-HCE had normal histological structure and functioned well in animal models via DMEK, which could be used as a promising powerful equivalent of HCE. STATEMENT OF SIGNIFICANCE: Using high-quality corneal endothelium and an appropriate endothelial keratoplasty is the most effective way for the treatment of corneal endotheliopathy. Descemet's membrane endothelial keratoplasty (DMEK) which can provide better visual acuity, lower immunological rejection rates, and improved graft survival is an ideal surgery at present. However, due to the shortage of donated corneas, it is urgent to find an equivalent substitute of corneal endothelial donor which is suitable for the DMEK surgery to solve the problem of corneal endothelial regeneration. Herein, we introduced the clinical cornea-crosslinking and Descemet's membrane-mimic-coating methods to build the modified crosslinked denuded amniotic membrane scaffold and further constructed a high-quality corneal endothelial functional substitute that can be used in DMEK surgery.

摘要

Descemet's membrane endothelial keratoplasty (DMEK) 可能为角膜内皮疾病的治疗提供快速的视力康复。然而,由于供体角膜短缺,如何构建具有强大功能的角膜内皮替代物,可用于 DMEK,仍然是一个未解决的问题。在此,我们介绍了角膜交联 (CXL) 的方法,并将天然 Descemet 膜 (DM) 的成分与去表皮羊膜 (dAM) 结合,以提高其机械性能和生物相容性,进一步评估其对人角膜内皮 (HCE) 细胞黏附、增殖、YAP 易位和代谢活性的影响。我们使用改良交联的 dAM (mcdAM) 和未转染的 HCE 细胞构建了组织工程化的 HCE (TE-HCE),并在猫和猴模型中进行了功能评估。我们的结果表明,CXL 可有效提高 mcdAM 的机械性能,细胞外基质修饰后,HCE 细胞的黏附、增殖和 YAP 易位呈剂量依赖性提高。0.01mg/mL 层粘连蛋白和 0.1mg/mL 纤连蛋白的组合效果最高。然后,在体外构建了 TE-HCE,细胞密度为 3612±243 个细胞/mm。动物模型中的 DMEK 结果表明,角膜透明性得以维持,再生的角膜内皮具有正常的形态和组织学结构。因此,CXL 联合 DM 模拟涂层方法可有效提高 dAM 的机械性能,增强与 HCE 细胞的生物相容性。通过 DMEK 在动物模型中构建的 TE-HCE 具有正常的组织学结构,功能良好,可作为一种有前途的 HCE 有效替代品。

意义声明

使用高质量的角膜内皮和适当的角膜内皮移植是治疗角膜内皮病变最有效的方法。Descemet's membrane endothelial keratoplasty (DMEK) 可以提供更好的视力、更低的免疫排斥率和更高的移植物存活率,是目前理想的手术。然而,由于供体角膜短缺,迫切需要找到一种适合 DMEK 手术的角膜内皮供体替代物来解决角膜内皮再生问题。在此,我们引入了临床角膜交联和 Descemet 膜模拟涂层方法,构建了改良交联的去表皮羊膜支架,并进一步构建了可用于 DMEK 手术的高质量角膜内皮功能替代物。

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