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人参皂苷促进骨形成的机制及应用研究进展。

Research progress of the mechanisms and applications of ginsenosides in promoting bone formation.

机构信息

Department of Oral Geriatrics, Hospital of Stomatology, Jilin University, Changchun, 130021, PR China.

Department of Oral Geriatrics, Hospital of Stomatology, Jilin University, Changchun, 130021, PR China.

出版信息

Phytomedicine. 2024 Jul;129:155604. doi: 10.1016/j.phymed.2024.155604. Epub 2024 Apr 8.

Abstract

BACKGROUND

Bone deficiency-related diseases caused by various factors have disrupted the normal function of the skeleton and imposed a heavy burden globally, urgently requiring potential new treatments. The multi-faceted role of compounds like ginsenosides and their interaction with the bone microenvironment, particularly osteoblasts can promote bone formation and exhibit anti-inflammatory, vascular remodeling, and antibacterial properties, holding potential value in the treatment of bone deficiency-related diseases and bone tissue engineering.

PURPOSE

This review summarizes the interaction between ginsenosides and osteoblasts and the bone microenvironment in bone formation, including vascular remodeling and immune regulation, as well as their therapeutic potential and toxicity in the broad treatment applications of bone deficiency-related diseases and bone tissue engineering, to provide novel insights and treatment strategies.

METHODS

The literature focusing on the mechanisms and applications of ginsenosides in promoting bone formation before March 2024 was searched in PubMed, Web of Science, Google Scholar, Scopus, and Science Direct databases. Keywords such as "phytochemicals", "ginsenosides", "biomaterials", "bone", "diseases", "bone formation", "microenvironment", "bone tissue engineering", "rheumatoid arthritis", "periodontitis", "osteoarthritis", "osteoporosis", "fracture", "toxicology", "pharmacology", and combinations of these keywords were used.

RESULTS

Ginsenoside monomers regulate signaling pathways such as WNT/β-catenin, FGF, and BMP/TGF-β, stimulating osteoblast generation and differentiation. It exerts angiogenic and anti-inflammatory effects by regulating the bone surrounding microenvironment through signaling such as WNT/β-catenin, NF-κB, MAPK, PI3K/Akt, and Notch. It shows therapeutic effects and biological safety in the treatment of bone deficiency-related diseases, including rheumatoid arthritis, osteoarthritis, periodontitis, osteoporosis, and fractures, and bone tissue engineering by promoting osteogenesis and improving the microenvironment of bone formation.

CONCLUSION

The functions of ginsenosides are diverse and promising in treating bone deficiency-related diseases and bone tissue engineering. Moreover, potential exists in regulating the bone microenvironment, modifying biomaterials, and treating inflammatory-related bone diseases and dental material applications. However, the mechanisms and effects of some ginsenoside monomers are still unclear, and the lack of clinical research limits their clinical application. Further exploration and evaluation of the potential of ginsenosides in these areas are expected to provide more effective methods for treating bone defects.

摘要

背景

各种因素导致的与骨量减少相关的疾病扰乱了骨骼的正常功能,在全球范围内造成了沉重负担,迫切需要新的潜在治疗方法。化合物如人参皂苷的多方面作用及其与骨微环境(特别是成骨细胞)的相互作用,可以促进骨形成,并具有抗炎、血管重塑和抗菌特性,在治疗与骨量减少相关的疾病和骨组织工程方面具有潜在价值。

目的

本综述总结了人参皂苷与成骨细胞和骨微环境在骨形成中的相互作用,包括血管重塑和免疫调节,以及它们在广泛的与骨量减少相关的疾病和骨组织工程治疗应用中的治疗潜力和毒性,为提供新的见解和治疗策略。

方法

在 PubMed、Web of Science、Google Scholar、Scopus 和 Science Direct 数据库中检索了截至 2024 年 3 月之前关于人参皂苷在促进骨形成方面的机制和应用的文献。使用了“植物化学物质”、“人参皂苷”、“生物材料”、“骨”、“疾病”、“骨形成”、“微环境”、“骨组织工程”、“类风湿关节炎”、“牙周炎”、“骨关节炎”、“骨质疏松症”、“骨折”、“毒理学”、“药理学”等关键词及其组合。

结果

人参皂苷单体通过调节 WNT/β-catenin、NF-κB、MAPK、PI3K/Akt 和 Notch 等信号通路,刺激成骨细胞的生成和分化,调节信号通路,从而调节骨周围微环境,发挥促血管生成和抗炎作用。通过调节 WNT/β-catenin、NF-κB、MAPK、PI3K/Akt 和 Notch 等信号通路,在治疗与骨量减少相关的疾病(包括类风湿关节炎、骨关节炎、牙周炎、骨质疏松症和骨折)和骨组织工程方面,通过促进成骨和改善骨形成的微环境,显示出治疗效果和生物安全性。

结论

人参皂苷在治疗与骨量减少相关的疾病和骨组织工程方面具有多种功能,很有前景。此外,在调节骨微环境、修饰生物材料以及治疗炎症相关骨疾病和牙科材料应用方面具有潜力。然而,一些人参皂苷单体的机制和作用仍不清楚,缺乏临床研究限制了它们的临床应用。进一步探索和评估人参皂苷在这些领域的潜力,有望为治疗骨缺损提供更有效的方法。

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