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Phenotypic Change and Induction of Cytokeratin Expression During In Vitro Culture of Corneal Stromal Cells

机译:角膜基质细胞体外培养过程中的表型变化和细胞角蛋白表达的诱导

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Purpose: Cells of the corneal epithelium and stroma can be distinguished in vivo by different intermediate filaments, cytokeratins for corneal epithelial cells (CEC) and vimentin for keratocytes. Isolated and cultured keratocytes change phenotype, losing expression of keratocyte markers and gaining markers associated with mesenchymal stromal cells (MSC). This study investigates this change in phenotype in relation to intermediate filament expression in cultured corneal stromal cells (CSC) compared to CEC. Methods: Expression of epithelial markers (CK3, CK12, CK19, pan cytokeratin, E-cadherin), keratocyte markers (CD34, vimentin), and MSC markers (CD73, CD90, and CD105) were compared in CEC and CSC by immunocytochemistry and reverse transcription-quantitative polymerase chain reaction (RT-qPCR). Expression was evaluated at different stages of CSC culture and compared to another stromal cell type, extracted from Wharton's jelly (WJ-MSC). Results: In vivo keratocytes did not express cytokeratins. However, cultured CSC expressed epithelial-associated CK3, CK12, and CK19, but not other cytokeratins. Expression of cytokeratins increased as CSC were passaged and decreased as CSC were induced to become quiescent. Comparatively, WJ-MSC expressed lower levels of CK3, CK12, and CK19, but also stained for pan cytokeratin and expressed KRT5. Conclusions: Cultured CSC undergo phenotypic change during culture, expressing specific cytokeratin filaments normally associated with CEC. Cytokeratin expression begins as cells are cultured on plastic and increases with passage. This discovery may influence the way in which differences are discerned between cultured CEC and CSC. Investigators need to be aware that the expression of cytokeratins does not necessarily represent epithelial contamination, and that CEC and CSC may be more related than previously recognized.
机译:目的:体内的角膜上皮细胞和间质细胞可以通过不同的中间丝,角膜上皮细胞的细胞角蛋白(CEC)和角膜细胞的波形蛋白来区分。分离和培养的角膜细胞改变表型,失去角膜细胞标记物的表达并获得与间充质基质细胞(MSC)相关的标记物。这项研究调查了与CEC相比在培养的角膜基质细胞(CSC)中与中间丝表达相关的表型变化。方法:通过免疫细胞化学法和反向免疫法比较CEC和CSC中上皮标志物(CK3,CK12,CK19,泛细胞角蛋白,E-钙粘蛋白),角化细胞标志物(CD34,波形蛋白)和MSC标志物(CD73,CD90和CD105)的表达。转录定量聚合酶链反应(RT-qPCR)。在CSC培养的不同阶段评估表达,并将其与从沃顿氏胶冻(WJ-MSC)中提取的另一种基质细胞类型进行比较。结果:体内角膜细胞不表达细胞角蛋白。但是,培养的CSC表达上皮相关的CK3,CK12和CK19,但不表达其他细胞角蛋白。细胞角蛋白的表达随着CSC的传代而增加,而随着CSC被诱导变得静止而降低。相比之下,WJ-MSC表达较低水平的CK3,CK12和CK19,但也对泛细胞角蛋白染色并表达KRT5。结论:培养的CSC在培养过程中发生表型变化,表达通常与CEC相关的特异性细胞角蛋白细丝。细胞角蛋白的表达开始于在塑料上培养细胞,并随传代而增加。这一发现可能会影响在培养的CEC和CSC之间发现差异的方式。研究者需要意识到,细胞角蛋白的表达并不一定代表上皮污染,而且CEC和CSC可能比以前认识的更为相关。

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