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首页> 外文期刊>Translational research: the journal of laboratory and clinical medicine >Reconstruction of limbal stem cell deficient corneal surface with induced human bone marrow mesenchymal stem cells on amniotic membrane.
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Reconstruction of limbal stem cell deficient corneal surface with induced human bone marrow mesenchymal stem cells on amniotic membrane.

机译:泻叶诱导人骨髓间充质干细胞的突出干细胞缺乏角膜表面的重建。

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摘要

The cornea can be damaged by a variety of clinical disorders or chemical, mechanical, and thermal injuries. The objectives of this study were to induce bone marrow mesenchymal stem cells (BMSCs) to corneal lineage, to form a tissue engineered corneal substitute (TEC) using BMSCs, and to treat corneal surface defects in a limbal stem cell deficiency model. BMSCs were induced to corneal lineage using limbal medium for 10?days. Induced BMSCs demonstrated upregulation of corneal stem cell markers; β1-integrin, C/EBPδ, ABCG2, and p63, increased protein expression of CK3 and p63 significantly compared with the uninduced ones. For TEC formation, passage 1 BMSCs were trypsinized and seeded on amniotic membrane in a transwell co-culture system and were grown in limbal medium. Limbal stem cell deficiency models were induced by alkaline injury, and the TEC was implanted for 8?weeks. Serial slit lamp evaluation revealed remarkable improvement in corneal regeneration in terms of corneal clarity and reduced vascularization. Histologic and optical coherence tomography analyses demonstrated comparable corneal thickness and achieved stratified epithelium with a compact stromal layer resembling that of normal cornea. CK3 and p63 were expressed in the newly regenerated cornea. In conclusion, BMSCs can be induced into corneal epithelial lineage, and these cells are viable for the formation of TEC, to be used for the reconstruction of the corneal surface in the limbal stem cell deficient model.
机译:角膜可受到各种临床疾病或化学,机械和热损伤的损坏。该研究的目的是诱导骨髓间充质干细胞(BMSC)以形成使用BMSC的组织工程角膜替代(TEC),并治疗斜缘干细胞缺乏模型中的角膜表面缺陷。使用斜缘培养基诱导BMSCs诱导角膜谱系10?天。诱导的BMSCs表现出角膜干细胞标志物的上调; β1-结合蛋白,C /EBPδ,ABCG2和P63,与未胁迫的情况相比,CK3和P63的蛋白质表达增加显着。对于TEC形成,在Transwell共培养系统中滴入并在羊膜上进行胰蛋白酶化并播种并在缘培养基中生长。通过碱性损伤诱导肢体干细胞缺乏模型,植入TEC 8?周。串行狭缝灯评估显示角膜清晰度和降低血管化方面的角膜再生显着改善。组织学和光学相干断层摄影分析证明了可比较的角膜厚度和实现分层上皮,其具有类似于正常角膜的紧凑型基质层。 CK3和P63在新再生角膜中表达。总之,BMSCs可以诱导角膜上皮谱系,并且这些细胞对于形成TEC的可行性,用于重建止血杆细胞缺陷模型中的角膜表面。

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