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Pigment Epithelium-Derived Factor Enhances Differentiation and Mineral Deposition of Human Mesenchymal Stem Cells

机译:颜料上皮衍生的因子增强了人间充质干细胞的分化和矿物沉积

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Pigment epithelium-derived factor (PEDF) is a potent antiangiogenic factor found in a wide variety of tissues. Recent findings indicated that lack of PEDF leads to osteo-genesis imperfecta type VI whose hallmark is a defect in mineralization. We investigated the effects of PEDF on human mesenchymal stem cells (hMSCs) and signaling pathways through which PEDF displays its activities in hMSCs. hMSCs incubated in a medium supplemented with PEDF induced expression of osteoblastic-related genes. In addition, PEDF induced alkaline phosphatase (ALP) activity in MSCs at 14 days of incubation in maintenance medium; hMSCs incubated in osteogenic medium in presence of PEDF expressed 19% more ALP activity (35.655 ± 1.827 U/mg protein, p = .041 than cells incubated in the same medium without PEDF supplementation (29.956 ± 2.100 U/mug protein). hMSCs incubated in osteogenic medium in presence of PEDF deposited 50% more mineral (2.108 ± 0.306 OD/ml per well per 1 x 10~4 cells per square centimeter, p = .017) than MSCs incubated in absence of the protein (1.398 ± 0.098 OD/ml per well per 1 x 10~4 cells per square centimeter) as determined by Alizarin Red quantitation. Reduction in PEDF expression in MSCs by siRNA led to decreased ALP activity (33.552 ± 2.009 U/ng protein of knockdown group vs. 39.269 ±3.533 U/ng protein of scrambled siRNA group, p = .039) and significant reduction in mineral deposition (0.654 ± 0.050 OD/ml per well per 1 x 10~4 cells per square centimeter of knockdown group vs. 1.152 ± 0.132 OD/ml per well per 1 x 104 cells per square centimeter of wild-type group, p = .010). Decreased ALP activity and mineral deposition were restored by supplementation with exogenous PEDF protein. PEDF activated ERK and AKT signaling pathways in MSCs to induce expression of osteoblastic-related genes. These data suggest that PEDF is involved in MSCs osteoblastic differentiation.
机译:颜料上皮衍生因子(PEDF)是一种在各种组织中发现的有效的抗血管生成因子。最近的发现表明,缺乏PEDF导致骨质创世纪缺乏型VI,其标志性是矿化的缺陷。我们研究了PEDF对人间充质干细胞(HMSCs)和信号通路的影响,PEDF在HMSC中显示其活性。 HMSCs在补充有PEDF诱导的骨细胞相关基因的培养基中孵育。此外,在维持介质中孵育的14天内,PEDF诱导MSCs中的碱性磷酸酶(ALP)活性;在Pedf存在下在骨质发生培养基中孵育的HMSC表达了19%的ALP活性(35.655±1.827 U / Mg蛋白,P = .041,比在没有PEDF补充的相同培养基中孵育的细胞(29.956±2.100 U / Mug蛋白)。HMSCs孵育在PEDF存在下沉积50%的矿物质培养基(每平方厘米每平方厘米每条平方厘米,P = 0.017的每条平方厘米2.108±0.306个OD / ml,P = .017)比在不存在蛋白质的情况下(1.398±0.098 OD每平方厘米每平方厘米/ mL每平方厘米),如茜素红色定量所确定的。siRNA通过siRNA的PEDF表达降低导致ALP活性降低(33.552±2.009 U / NG蛋白质的敲低组蛋白质与39.269±39.269±39.269 3.533炒siRNA组的U / NG蛋白,p = .039)和矿物沉积显着降低(每平方厘米敲击组每平方厘米,每平方为0.654±0.050 OD / ml。与1.152±0.132 OD /每平方厘米每平方厘米/×104个细胞,P = .010)。减少通过补充外源性PEFF蛋白来恢复ALP活性和矿物沉积。 PEDF活化ERK和MSC中的AKT信号通路,以诱导骨细胞相关基因的表达。这些数据表明,PEDF参与MSCS骨展分化。

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