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MiR-145 regulates osteogenic differentiation of human adipose-derived mesenchymal stem cells through targeting FoxO1

机译:MiR-145通过靶向FoxO1调节人脂肪来源的间充质干细胞的成骨分化

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摘要

In this study, we aimed to investigate the expression of miR-145 before and after hASCs osteogenic differentiation. We also intended to explore the influence of the target relationship between miR-145 and FoxO1 on osteogenic differentiation. Dual-luciferase reporter gene assay and real-time PCR were used to confirm the target relationship between miR-145 and FoxO1. Furthermore, the modulatory effects of miR-145 and FoxO1 on hASCs osteoinductive differentiation were measured by real-time PCR , Western blot, ALP staining, ARS staining, and cell immunofluorescence assay. After osteogenic differentiation, miR-145 was gradually down-regulated, while FoxO1 was up-regulated in hASCs. MiR-145 could directly target FoxO1 3′UTR. FoxO1 was negatively regulated by miR-145. After osteoinductive differentiation, BSP, Ocn, and OPN expression was lowered with the overexpression of miR-145 or the knockdown of FoxO1. Furthermore, ALP and ARS staining assay results showed weakened ALP activity and extracellular matrix calcification. When overexpressing miR-145 and FoxO1 simultaneously, no obvious change in ALP activity and extracellular matrix calcification was seen. MiR-145 could suppress hASCs osteoinductive differentiation by suppressing FoxO1 directly.Impact statementResearching on ASCs was a promising strategy to study osteogenic differentiation. The regulatory role of miR-145 on hASCs osteogenic differentiation remained partially explored.Our study revealed a novel mechanism of the osteogenic differentiation process and suggested that miR-145 and its target gene FoxO1 may be potential targets for the therapy of human osteogenic-related disorders.
机译:在这项研究中,我们旨在研究hASCs成骨分化之前和之后miR-145的表达。我们还打算探讨miR-145和FoxO1之间的靶标关系对成骨分化的影响。用双荧光素酶报告基因测定和实时PCR证实miR-145和FoxO1之间的靶标关系。此外,通过实时荧光定量PCR,Western印迹,ALP染色,ARS染色和细胞免疫荧光法检测了miR-145和FoxO1对hASCs骨诱导分化的调节作用。成骨细胞分化后,miR-145逐渐下调,而FoxO1在hASCs中上调。 MiR-145可以直接靶向FoxO1 3'UTR。 FoxO1受到miR-145的负调控。经过骨诱导分化后,miR-145的过表达或FoxO1的敲低导致BSP,Ocn和OPN的表达降低。此外,ALP和ARS染色测定结果表明ALP活性减弱和细胞外基质钙化。当同时过量表达miR-145和FoxO1时,未观察到ALP活性和细胞外基质钙化的明显变化。 MiR-145可通过直接抑制FoxO1来抑制hASCs的骨诱导分化。影响陈述研究ASCs是研究成骨分化的有前途的策略。仍然部分探讨了miR-145对hASCs成骨分化的调控作用。我们的研究揭示了成骨分化过程的新机制,并表明miR-145及其靶基因FoxO1可能是治疗人类成骨相关疾病的潜在靶标。

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