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miR-33a hinders the differentiation of adipose mesenchymal stem cells towards urothelial cells in an inductive condition by targeting β-catenin and TGFR

机译:miR-33a通过靶向β-catenin和TGFR阻止脂肪间充质干细胞在诱导条件下向尿路上皮细胞分化

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摘要

Tissue engineering technology offers an appealing approach for tissue reconstruction of the urothelium. Adipose-derived mesenchymal stem cells (ADSCs) represent an abundant source for tissue engineering applications. However, ASCs primarily possess mesoderm lineage differentiation potential. It is difficult to induce differentiation of ASCs towards urothelial cells that are derived from the endoderm, although a recent findings have reported that a conditioned medium may drive ADSCs towards differentiation into the urothelium phenotype. In the present study, human ADSCs were isolated from abdominal adipose tissues and incubated in this conditioned medium for indicated time periods. Western blotting showed that protein expression levels of urothelial specific marks, including CK7, CK20 and UPIII, were increased after seven days' incubation, but immunofluorescence microscopy determined that cells with CK7 and UPIII staining were scarce, which suggested a low-efficiency for the differentiation. Prolonging the incubation time did not further increase CK20 and UPIII expression. Furthermore, miR-33a expression was increased with ADSC differentiation. Using synthetic miRNAs to mimic or inhibit the action of miR-33a revealed that miR-33a hinders the differentiation of ADSCs towards urothelial cells. Furthermore, luciferase reporter assay confirmed that β-catenin and transforming growth factor-β receptor (TGFR) are targets of miR-33a. Inhibition of miR-33a expression increased β-catenin and TGFR expression and improved the efficiency of ADSCs towards differentiation into the urothelium phenotype. The present novel finding suggests that miR-33 may be an important target in tissue engineering and regenerative medicine for urothelium repair.
机译:组织工程技术为尿路上皮的组织重建提供了一种有吸引力的方法。脂肪来源的间充质干细胞(ADSC)代表了组织工程应用的丰富来源。但是,ASC主要具有中胚层谱系分化潜能。尽管最近的发现报道条件培养基可能驱使ADSC分化为尿路上皮表型,但很难诱导ASC分化为源自内胚层的尿路上皮细胞。在本研究中,从腹部脂肪组织中分离出人ADSC,并在此条件培养基中孵育指定的时间。 Western印迹显示孵育7天后尿路上皮特异性标记(包括CK7,CK20和UPIII)的蛋白表达水平增加,但是免疫荧光显微镜检查发现CK7和UPIII染色的细胞稀少,这表明分化的效率低。延长孵育时间不会进一步增加CK20和UPIII的表达。此外,随着ADSC分化,miR-33a表达增加。使用合成的miRNA来模仿或抑制miR-33a的作用表明,miR-33a阻碍了ADSC向尿道上皮细胞的分化。此外,萤光素酶报告基因测定证实,β-catenin和转化生长因子-β受体(TGFR)是miR-33a的靶标。抑制miR-33a表达可增加β-catenin和TGFR表达,并提高ADSC分化为尿路上皮表型的效率。目前的新发现表明,miR-33可能是组织工程和再生医学中修复尿路上皮的重要靶标。

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