Modulation of the microRNA-6089/E2F transcription factor2 axis by querceting: implications for osteoblast viability, proliferation, migration, and osteogenic differentiation in fracture healing.

IF 2 4区 医学 Q3 PHYSIOLOGY Journal of Physiology and Pharmacology Pub Date : 2024-04-01 Epub Date: 2024-05-06 DOI:10.26402/jpp.2024.2.06
R Dong, M Y Liu, G B Zhu, K M Tan, Y Q Wang, L Li
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Abstract

Quercetin is widely distributed in plants as a flavonol compound with multiple biological activities. It has been found that quercetin can regulate bone homeostasis through multiple pathways and targets. This study investigated the role and specific molecular mechanisms of quercetin in regulating osteoblast viability, proliferation, migration and osteogenic differentiation. A mouse model of traumatic fracture was established and then 100 mg/kg quercetin corn oil suspension was gavaged at the same time every day for 28 days. miR-6089 and E2F transcription factor 2 (E2F2) expression levels in mice were measured. Fracture healing in mice was observed. MC3T3-E1 cells were transfected with plasmids targeting miR-6089 and E2F2, and cell viability, proliferation, migration, apoptosis, and osteogenic differentiation were determined. The targeting relationship between miR-6089 and E2F2 was verified. In vivo experiments showed that quercetin significantly increased osteocalcin (OCN) expression (P<0.05) and promoted fracture healing in traumatic fracture (TF) mice. miR-6089 expression was down-regulated (P<0.05) and E2F2 expression was up-regulated (P<0.05) in TF mice. Quercetin promoted miR-6089 expression and inhibited E2F2 expression (both P<0.05). In vitro results showed that quercetin promoted miR-6089 expression and inhibited E2F2 expression in a dose-dependent manner (both P<0.05). Quercetin dose-dependently promoted MC3T3-E1 cell viability, proliferation, migration, and osteogenic differentiation, and inhibited MC3T3-E1 cell apoptosis (all P<0.05). Up-regulating miR-6089 further promoted MC3T3-E1 cell viability, proliferation, migration and osteogenic differentiation, and inhibited MC3T3-E1 cell apoptosis (all P<0.05). miR-6089 targeted and regulated E2F2 expression. Up-regulating E2F2 attenuated the promoting effect of up-regulated miR-6089 on MC3T3-E1 cell viability, proliferation, migration, osteogenic differentiation, and inhibition of apoptosis (all P<0.05). We conclude that quercetin enhances osteoblast viability, proliferation, migration, and osteogenic differentiation by modulating the miR-6089/E2F2 axis, thereby promoting fracture healing.

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槲皮素对microRNA-6089/E2F转录因子2轴的调节:对骨折愈合中成骨细胞活力、增殖、迁移和成骨分化的影响
槲皮素作为一种黄酮醇化合物广泛分布于植物中,具有多种生物活性。研究发现,槲皮素可通过多种途径和靶点调节骨稳态。本研究探讨了槲皮素在调节成骨细胞活力、增殖、迁移和成骨分化中的作用和具体分子机制。研究建立了创伤性骨折小鼠模型,然后每天同一时间灌胃 100 毫克/千克槲皮素玉米油混悬液,连续 28 天,测定小鼠体内 miR-6089 和 E2F 转录因子 2(E2F2)的表达水平。观察小鼠骨折愈合情况。用靶向 miR-6089 和 E2F2 的质粒转染 MC3T3-E1 细胞,测定细胞活力、增殖、迁移、凋亡和成骨分化。实验验证了 miR-6089 和 E2F2 之间的靶向关系。体内实验表明,槲皮素能显著增加骨钙素(OCN)的表达(P
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CiteScore
4.00
自引率
22.70%
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0
审稿时长
6-12 weeks
期刊介绍: Journal of Physiology and Pharmacology publishes papers which fall within the range of basic and applied physiology, pathophysiology and pharmacology. The papers should illustrate new physiological or pharmacological mechanisms at the level of the cell membrane, single cells, tissues or organs. Clinical studies, that are of fundamental importance and have a direct bearing on the pathophysiology will also be considered. Letters related to articles published in The Journal with topics of general professional interest are welcome.
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