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角膜缘成纤维细胞和骨髓间充质干细胞向角膜上皮细胞的分化潜能。

Differentiation potential of limbal fibroblasts and bone marrow mesenchymal stem cells to corneal epithelial cells.

机构信息

Schepens Eye Research Institute, Massachusetts Eye and Ear, Boston, Massachusetts, USA.

出版信息

Stem Cells. 2014 Mar;32(3):717-29. doi: 10.1002/stem.1541.

Abstract

The cornea is covered by a stratified epithelium that is renewed by stem cells located in the peripheral region of the cornea known as the limbus. This stroma of the limbus contains stromal keratocytes that, when expanded in culture, are termed limbal fibroblasts (LFs). It is thought that LFs exhibit similar characteristics to bone marrow mesenchymal stem cells (BM MSCs) and help maintain the epithelial stem cell phenotype in the limbal region. In this study, we aimed at reprogramming stage-specific embryonic antigen-4 (SSEA4+) LFs and BM MSCs into corneal epithelial lineage using a three-dimensional culture system and embryonic stem cell medium. After enrichment, SSEA4+ cells showed a higher level of stem cell marker expression such as Sox2, Oct4, Nanog, Rex1, ABCG2, and TRA-1-60, and colony-forming efficiency than did SSEA4- cells. SSEA4+, as compared to SSEA4- cells, had a greater propensity to form spheres that, in turn, were induced into ectodermal lineage and further differentiated into functional corneal epithelium. Results show that LFs were similar to BM MSCs in marker profiles, and together with the differences noted between SSEA4+ and SSEA4- cells, point to LFs' being tissue-specific MSCs. However, LFs showed a greater potential for differentiation into corneal epithelium, indicating the potential importance of tissue-specific adult progenitors in their reprogramming capacity into cells of interest. This study opens a new avenue for investigating the molecular mechanism involved in maintaining a limbal stem cell niche and thus a potentially important clinical application to treat corneal epithelial stem cell loss.

摘要

角膜被复层上皮覆盖,这些上皮由位于角膜周边区域的称为角膜缘的干细胞不断更新。该角膜缘的基质包含角膜基质细胞,当在培养中扩增时,被称为角膜缘成纤维细胞(LFs)。人们认为 LFs 具有与骨髓间充质干细胞(BM MSCs)相似的特征,并有助于维持角膜缘区域的上皮干细胞表型。在这项研究中,我们旨在使用三维培养系统和胚胎干细胞培养基将阶段特异性胚胎抗原 4(SSEA4+)LFs 和 BM MSCs 重编程为角膜上皮谱系。在富集后,SSEA4+细胞表现出更高水平的干细胞标志物表达,例如 Sox2、Oct4、Nanog、Rex1、ABCG2 和 TRA-1-60,以及集落形成效率,高于 SSEA4-细胞。与 SSEA4-细胞相比,SSEA4+细胞更倾向于形成球体,这些球体继而被诱导为外胚层谱系,并进一步分化为功能性角膜上皮。结果表明,LFs 在标志物谱上与 BM MSCs 相似,并且与 SSEA4+和 SSEA4-细胞之间的差异一起表明 LFs 是组织特异性 MSC。然而,LFs 具有更大的分化为角膜上皮的潜力,这表明组织特异性成体祖细胞在其重编程为感兴趣的细胞的能力中具有潜在的重要性。这项研究为研究维持角膜缘干细胞龛的分子机制开辟了新途径,因此具有治疗角膜上皮干细胞丧失的潜在重要临床应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/be75/8262232/935a84eab89c/nihms-1716174-f0001.jpg

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