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miR-152 通过靶向 RICTOR 调控成骨细胞分化影响骨质疏松症。

MiR-152 influences osteoporosis through regulation of osteoblast differentiation by targeting RICTOR.

机构信息

Department of Traumatic Orthopedics, Jining No. 1 People's Hospital , Jining , China.

Department of Spine Surgery, Jining No, 1 People's Hospital , Jining , China.

出版信息

Pharm Biol. 2019 Dec;57(1):586-594. doi: 10.1080/13880209.2019.1657153.

Abstract

Evidence suggests that microRNA (miRNA) regulate gene expression and bone tissue homoeostasis of osteoporosis. MiR-152 has found to be abnormally expressed in osteoporosis, but its role in osteoblast differentiation has not been elucidated. To understand the potential mechanism of miR-152 in osteoblast differentiation via regulation of RICTOR. The expression of miR-152 and RICTOR were tested in ovariectomized rat models of osteoporosis. Primary osteoblasts and MC3T -E1 cells were assigned into four groups, namely Control, miR-152 inhibitor, miR-control and miR-152 inhibitor + siRICTOR groups. qRT PCR and Western blot were performed to detect the expressions of miR-152 and RICTOR, respectively. MTT assay was used to evaluate cell viability, and ALP activity determination and mineralization analyses were also conducted. In ovariectomy-induced osteoporotic rats, miR-152 (3.06 ± 0.35) in femoral tissues increased significantly, while RICTOR (0.31 ± 0.04) decreased. Compared with Control group, miR-152 inhibitor group presented appreciable reduction of miR-152 in primary osteoblasts and MC3T3-E1 cells, as well as remarkable increases in RICTOR, p-Akt(s473)/Akt ratio, and osteogenesis-related genes, with enhanced cell viability, ALP activity and mineralization. In comparison with cells in the miR-152 inhibitor group, those in the miR-152 inhibitor + siRICTOR group had no observable difference in miR-152, but were dramatically up-regulated in RICTOR, as well as the corresponding opposite tendencies of other factors. Inhibiting miR-152 promoted osteoblasts differentiation and alleviated osteoporosis by up-regulating RICTOR. Therefore, miR-152 may be an essential mediator of osteoblast differentiation and a new therapeutic strategy for osteoporosis.

摘要

有证据表明,微小 RNA(miRNA)调节基因表达和骨质疏松症的骨组织动态平衡。miR-152 在骨质疏松症中发现异常表达,但它在成骨细胞分化中的作用尚未阐明。为了了解 miR-152 通过调节 RICTOR 在成骨细胞分化中的潜在机制。在去卵巢骨质疏松症大鼠模型中检测 miR-152 和 RICTOR 的表达。将原代成骨细胞和 MC3T-E1 细胞分为对照组、miR-152 抑制剂组、miR-对照和 miR-152 抑制剂+siRICTOR 组。分别通过 qRT-PCR 和 Western blot 检测 miR-152 和 RICTOR 的表达。MTT 法检测细胞活力,ALP 活性测定和矿化分析。在卵巢切除诱导的骨质疏松症大鼠中,股骨组织中的 miR-152(3.06±0.35)明显增加,而 RICTOR(0.31±0.04)减少。与对照组相比,miR-152 抑制剂组原代成骨细胞和 MC3T3-E1 细胞中的 miR-152 明显减少,RICTOR、p-Akt(s473)/Akt 比值和成骨相关基因显著增加,细胞活力、ALP 活性和矿化增强。与 miR-152 抑制剂组细胞相比,miR-152 抑制剂+siRICTOR 组细胞中的 miR-152 无明显差异,但 RICTOR 明显上调,其他因素也呈相应的相反趋势。抑制 miR-152 通过上调 RICTOR 促进成骨细胞分化并缓解骨质疏松症。因此,miR-152 可能是成骨细胞分化的重要介质,也是骨质疏松症的新治疗策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0793/6747012/dff4c25d64c5/IPHB_A_1657153_F0001_B.jpg

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