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迷迭香酸对钛表面MC3T3-E1成骨细胞分化和矿化的影响。

Effect of rosmarinic acid on differentiation and mineralization of MC3T3-E1 osteoblastic cells on titanium surface.

作者信息

Jeong Moon-Jin, Lim Do-Seon, Kim Sung Ok, Park Cheol, Choi Yung Hyun, Jeong Soon-Jeong

机构信息

Department of Oral Histology and Developmental Biology, School of Dentistry, Chosun University, Gwangju, Korea.

Department of Dental Hygiene, Graduate School of Public Health Science, Eulji University, Seongnam, Korea.

出版信息

Anim Cells Syst (Seoul). 2021 Feb 18;25(1):46-55. doi: 10.1080/19768354.2021.1886987.

Abstract

Titanium (Ti) is a widely used biomaterial for dental implants because of its outstanding biocompatibility for hard tissues. Osseointegration, the interaction between implanted biomaterials and living cells in bone, is essential for successful implantation. Rosmarinic acid (RA) is a plant-derived phytochemical with low toxicity and side effects and has various effects that can be applied as a therapeutic substance. The MC3T3-E1 osteoblastic cells on the Ti surface in medium with or without 14 μg/ml RA were used to test RA effects on osteoblast differentiation, cell viability and mineralization during differentiation. RA treatment increased osteoblast differentiation, cell viability and mineralization in MC3T3-E1 osteoblastic cells on Ti surface during differentiation, upregulating Runx-2 and OPG, but downregulating RANKL. This study suggest that RA should be applied as an effective functional and therapeutic substance to enhance osseointegration of osteoblast cells by increasing differentiation, mineralization, and bone formation through the RANKL/RANK/OPG pathway during the differentiation in MC3T3-E1 osteoblastic cells on the Ti surface.

摘要

钛(Ti)因其对硬组织具有出色的生物相容性,是牙科植入物中广泛使用的生物材料。骨整合,即植入生物材料与骨中活细胞之间的相互作用,对于成功植入至关重要。迷迭香酸(RA)是一种植物来源的植物化学物质,具有低毒性和副作用,并且具有多种可作为治疗物质应用的作用。在含有或不含有14μg/ml RA的培养基中,使用Ti表面上的MC3T3-E1成骨细胞来测试RA对分化过程中成骨细胞分化、细胞活力和矿化的影响。RA处理增加了分化过程中Ti表面上MC3T3-E1成骨细胞的成骨细胞分化、细胞活力和矿化,上调了Runx-2和OPG,但下调了RANKL。本研究表明,RA应作为一种有效的功能性治疗物质应用,通过在Ti表面的MC3T3-E1成骨细胞分化过程中通过RANKL/RANK/OPG途径增加分化、矿化和骨形成,来增强成骨细胞的骨整合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/21aa/7935130/33895fdf5945/TACS_A_1886987_F0001_OB.jpg

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