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PAX2 的下调促进了人 CD34 细胞来源的足细胞的体外分化。

Down-regulation of PAX2 promotes in vitro differentiation of podocytes from human CD34 cells.

机构信息

Department of Biotechnology, Sri Venkateswara Institute of Medical Sciences, Tirupati, Andhra Pradesh, 517 507, India.

Department of Hematology, Sri Venkateswara Institute of Medical Sciences, Tirupati, Andhra Pradesh, India.

出版信息

Cell Tissue Res. 2017 Dec;370(3):477-488. doi: 10.1007/s00441-017-2680-2. Epub 2017 Aug 29.

Abstract

Podocytes are major kidney cells that help in glomerular filtration and any damage or loss is a major event in the progression of kidney diseases. Understanding podocytes development will help in designing therapeutic strategies against these renal diseases. Therefore, in vitro generation of podocytes from adult hematopoietic CD34 stem cells is explored in the present study. Apheretically, isolated human HSCs from peripheral blood showed the presence of CD34 surface glycoprotein through immunocytochemistry (ICC) and flowcytometry. Initially, these HSCs were induced with activin-A (10 ng/ml), retinoic acid (RA) (10 ng/ml) and bone morphogenic protein (BMP-7) (2.5 ng/ml) for 5 days. Transdifferentiation of HSCs to podocytes through intermediate mesoderm was studied with positive selection of Osr1 cells. Subsequently, thus-obtained Osr1 cells were induced further with activin-A (10 ng/ml), RA (10 ng/ml), BMP-7 (2.5 ng/ml), EGF (30 ng/ml) and bFGF (30 ng/ml) for 9 days. Distinct cobblestone morphological changes were observed on staining with Leishman's stain. Consequently, differentiated cells were immunopositive for anti-podocin, anti-synaptopodin and anti-GLEPP1 monoclonal antibodies. These cells showed expression of early podocyte markers PAX2 and Wt1 at day 3 followed by day 6 and mature podocyte markers NPHS1, SULT1B1, NPHS2 and Synaptopodin at day 9. Interestingly, on day 9, diminished expression of PAX2 was noted. Differentiated cells showed high tyrosine kinase activity signifying that phosphorylation controls slit diaphragm proteins. Synaptopodin regulates the integrity of cytoskeleton and cell motility of podocytes and this phenomenon was confirmed through scratch assay using agarose molds that showed high cell mobility and migration. These findings establish HSCs as ideal candidates for regenerative therapies of damaged podocytes.

摘要

足细胞是肾脏的主要细胞,有助于肾小球滤过,任何损伤或丢失都是肾脏疾病进展的主要事件。了解足细胞的发育将有助于设计针对这些肾脏疾病的治疗策略。因此,本研究探索了从成人造血 CD34 干细胞体外生成足细胞。通过免疫细胞化学(ICC)和流式细胞术,从外周血中分离出的人 HSCs 表现出存在 CD34 表面糖蛋白。最初,这些 HSCs 用激活素 A(10ng/ml)、视黄酸(RA)(10ng/ml)和骨形态发生蛋白-7(BMP-7)(2.5ng/ml)诱导 5 天。通过 Osr1 细胞的阳性选择研究 HSCs 向中胚层的转分化。随后,进一步用激活素 A(10ng/ml)、RA(10ng/ml)、BMP-7(2.5ng/ml)、EGF(30ng/ml)和 bFGF(30ng/ml)诱导获得的 Osr1 细胞 9 天。用 Leishman 染色观察到明显的鹅卵石状形态变化。随后,分化细胞对足细胞、突触蛋白和 GLEPP1 单克隆抗体呈免疫阳性。这些细胞在第 3 天表达早期足细胞标志物 PAX2 和 Wt1,随后在第 6 天表达成熟足细胞标志物 NPHS1、SULT1B1、NPHS2 和突触蛋白,在第 9 天表达。有趣的是,在第 9 天,PAX2 的表达减少。分化细胞表现出高酪氨酸激酶活性,表明磷酸化控制裂孔隔膜蛋白。突触蛋白调节足细胞的细胞骨架和细胞迁移的完整性,通过琼脂糖模具的划痕实验证实了这一现象,该实验显示出高细胞迁移率和迁移。这些发现确立了 HSCs 作为受损足细胞再生治疗的理想候选者。

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