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miR-101-3p/Rap1b signal pathway plays a key role in osteoclast differentiation after treatment with bisphosphonates

机译:双膦酸盐治疗后miR-101-3p / Rap1b信号通路在破骨细胞分化中起关键作用

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摘要

Bisphosphonates are the mainstay of therapy worldwide for osteoporosis. However, bisphosphonates also have limitations. The objective of this study was to determine the role of miR-101-3p/Rap1b signal pathway in osteoclast differentiation after treatment with bisphosphonates. Our results revealed that miR-101-3p was an important regulator in bisphosphonates treated-osteoclasts. When miR-101-3p was down-regulated in bone marrow-derived macrophage-like cells (BMMs), the development of mature osteoclasts was promoted, and vice versa. However, alendronate decreased multinucleated cell number regardless of whether miR-101-3p was knocked down or over-expressed. TRAP activity assay confirmed the above results. Luciferase assay indicated that miR-101-3p was a negative regulator of Rap1b. Western blot analysis revealed that protein expression level of Rap1b in BMMs transfected with OV-miR-101-3p was lower than that in BMMs transfected with an empty vector. Rap1b overexpression increased TRAP-positive multinucleated cells, while Rap1b inhibition decreased the cell numbers. In vivo data showed that miR-101-3p inhibited osteoclast differentiation in ovariectomized mice while overexpressed of Rap1b blocked the differentiation. Taken together, our data demonstrate that miR-101-3p/Rap1b signal pathway plays a key role in osteoclast differentiation after treatment with bisphosphonates.
机译:双膦酸盐是全世界骨质疏松症治疗的主要手段。但是,双膦酸酯也有局限性。这项研究的目的是确定用双膦酸盐治疗后,miR-101-3p / Rap1b信号通路在破骨细胞分化中的作用。我们的结果表明,miR-101-3p是双膦酸盐处理的破骨细胞中的重要调节剂。当miR-101-3p在骨髓衍生的巨噬细胞样细胞(BMM)中下调时,促进了成熟的破骨细胞的发育,反之亦然。然而,无论miR-101-3p是否被敲低或过表达,阿仑膦酸钠均会降低多核细胞数量。 TRAP活性测定证实了以上结果。萤光素酶测定表明miR-101-3p是Rap1b的负调控因子。 Western blot分析显示,OV-miR-101-3p转染的BMMs中Rap1b的蛋白表达水平低于空载体转染的BMMs中Rap1b的蛋白表达水平。 Rap1b过表达增加TRAP阳性多核细胞,而Rap1b抑制则减少细胞数。体内数据显示,miR-101-3p抑制去卵巢小鼠的破骨细胞分化,而过表达的Rap1b阻止了分化。两者合计,我们的数据表明miR-101-3p / Rap1b信号通路在双膦酸盐治疗后在破骨细胞分化中起关键作用。

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