中国组织工程研究 ›› 2026, Vol. 30 ›› Issue (29): 7639-7647.doi: 10.12307/2026.276

• 组织构建综述 tissue construction review • 上一篇    下一篇

人参有效成分治疗骨骼肌肉退行性疾病的相关信号通路

夏天戈1,2,周  毅1,2,李绍烁2,王建伟2,邵  阳2   

  1. 1南京中医药大学,江苏省南京市   210023;2南京中医药大学附属无锡医院,无锡市中医医院骨伤科,江苏省无锡市   214071
  • 收稿日期:2025-08-09 修回日期:2025-12-08 出版日期:2026-10-18 发布日期:2026-03-06
  • 通讯作者: 王建伟,博士,教授,博士生导师,南京中医药大学附属无锡医院,无锡市中医医院骨伤科,江苏省无锡市 214071 并列通讯作者:邵阳,博士,硕士生导师,南京中医药大学附属无锡医院,无锡市中医医院骨伤科,江苏省无锡市 214071
  • 作者简介:夏天戈,男,1999年生,江苏省泰州市人,汉族,南京中医药大学在读硕士,主要从事中医骨伤科学方面的研究。
  • 基金资助:
    国家自然科学基金面上项目(82274546),项目负责人:王建伟;国家自然科学基金面上项目(82405520),项目负责人:李绍烁;无锡市“双百”中青年医疗卫生拔尖人才项目 (HB2023072),项目负责人:邵阳;无锡市卫健委科研项目(Q202232),项目负责人:李绍烁;无锡市“双百”中青年医疗卫生拔尖人才项目(HB2023074),项目负责人:李绍烁;江苏省中医药科技发展计划青年人才项目(QN202322),项目负责人:李绍烁;江苏省研究生科研与实践创新计划项目(SJCX25_1080),项目负责人:周毅

Signaling pathways related to active ingredients of ginseng in the treatment of musculoskeletal degenerative diseases

Xia Tiange1, 2, Zhou Yi1, 2, Li Shaoshuo2, Wang Jianwei2, Shao Yang2    

  1. 1Nanjing University of Chinese Medicine, Nanjing 210023, Jiangsu Province, China; 2Department of Orthopedics, Wuxi TCM Hospital Affiliated to Nanjing University of Chinese Medicine, Wuxi 214071, Jiangsu Province, China
  • Received:2025-08-09 Revised:2025-12-08 Online:2026-10-18 Published:2026-03-06
  • Contact: Wang Jianwei, MD, Professor, Doctoral supervisor, Department of Orthopedics, Wuxi TCM Hospital Affiliated to Nanjing University of Chinese Medicine, Wuxi 214071, Jiangsu Province, China Co-corresponding author: Shao Yang, MD, Master’s supervisor, Department of Orthopedics, Wuxi TCM Hospital Affiliated to Nanjing University of Chinese Medicine, Wuxi 214071, Jiangsu Province, China
  • About author:Xia Tiange, MS candidate, Nanjing University of Chinese Medicine, Nanjing 210023, Jiangsu Province, China; Department of Orthopedics, Wuxi TCM Hospital Affiliated to Nanjing University of Chinese Medicine, Wuxi 214071, Jiangsu Province, China
  • Supported by:
    National Natural Science Foundation of China (General Program), No. 82274546 (to WJW); National Natural Science Foundation of China (General Program), No. 82405520 (to LSS); Wuxi “Double Hundred” Top-notch Young and Middle-aged Medical and Health Talents Project, No. HB2023072 (to SY); Wuxi Health Commission Scientific Research Project, No. Q202232 (to LSS); Wuxi "Double Hundred" Top-notch Young and Middle-aged Medical and Health Talents Project, No. HB2023074 (to LSS); Jiangsu Province Traditional Chinese Medicine Science and Technology Development Plan (Young Talent Project), No. QN202322 (to LSS); Jiangsu Province Graduate Research and Practice Innovation Program Project, No. SJCX25_1080 (to ZY) 

摘要:



文题释义:

骨骼肌肉退行性疾病:是一类由年龄增长、慢性劳损、遗传或环境因素引发的进行性疾病,特征为骨骼、肌肉、关节及相关结缔组织的持续性结构破坏与功能衰退。病理本质在于组织细胞的渐进性衰老、凋亡及代谢失衡,伴随慢性炎症反应与自我修复能力下降,最终导致疼痛、活动受限、功能障碍及残疾风险升高。该疾病群涵盖骨质疏松症、椎间盘退变、骨关节炎和肌肉减少症等临床类型,其慢性进展特性不仅显著降低患者的生活质量,更易诱发骨折等严重并发症。
人参:为五加科人参属多年生草本植物,是传统中医重要补益药材,其活性成分以人参皂苷(如Rg1、Rb1、Rg3)为主,辅以多糖、肽类、挥发油等复合物质。现代药理研究证实,人参具有调节中枢神经、保护心血管、增强免疫及抗氧化等功效。

背景:骨骼肌肉退行性疾病的现有疗法仅缓解症状且不良反应显著。人参作为传统中药,其活性成分通过多靶点调控信号通路发挥骨肌保护作用,近年机制研究取得突破。
目的:系统综述人参有效成分(皂苷、多糖、肽类)通过关键信号通路防治骨骼肌肉疾病的最新分子机制,为靶向药物开发提供依据。
方法:计算机检索 PubMed、Web of Science、Embase、中国知网、万方及维普数据库,检索时限为各数据库建库至2025年4月。中文检索词包括“骨骼肌肉疾病,骨质疏松症,骨关节炎,椎间盘突出,肌肉减少症,人参皂苷,人参多糖,人参肽类,信号通路”,英文检索词包括“musculoskeletal degenerative diseases,osteoporosis,osteoarthritis,intervertebral disc degeneration,sarcopenia,ginsenosides,ginseng polysaccharides,ginseng peptides,signaling pathways”,最终纳入75篇符合要求的文献。
结果与结论:①皂苷类(如Rg3、Rh4、Rc):靶向核转运蛋白α2-核因子κB轴抑制破骨细胞分化,减少骨吸收;激活沉默信息调节因子1通路增强线粒体生物合成,延缓肌少症;调控Yes相关蛋白1/转录共激活因子和p38丝裂原活化蛋白激酶减轻椎间盘退变;②多糖类:加工工艺影响免疫调节活性,通过丝裂原活化蛋白激酶/核因子κB通路抑制炎症;③肽类:激活NAD+/沉默信息调节因子1/过氧化物酶体增殖物激活受体γ共激活因子1α轴改善线粒体功能。提示人参通过“多成分-多靶点”协同调节骨代谢平衡、抑制软骨降解及延缓肌肉衰老,但需解决生物利用度低及缺乏大样本临床试验的转化瓶颈。

https://orcid.org/0009-0004-5616-436X (夏天戈) 


中国组织工程研究杂志出版内容重点:干细胞;骨髓干细胞;造血干细胞;脂肪干细胞;肿瘤干细胞;胚胎干细胞;脐带脐血干细胞;干细胞诱导;干细胞分化;组织工程

关键词: 人参皂苷, 线粒体生物合成, 破骨细胞分化, 免疫调节, 细胞外基质降解, 靶向递送, 衰老相关疾病, 协同调控, 组织稳态

Abstract: BACKGROUND: Current therapies for musculoskeletal degenerative diseases merely alleviate symptoms with significant adverse effects. As a traditional Chinese medicine, active ingredients of ginseng exhibit protective effects on bone and muscle through multi-target regulation of signaling pathways, and breakthroughs have been made in mechanism research in recent years. 
OBJECTIVE: To provide a systematical review of the latest molecular mechanisms of active ingredients of ginseng (ginsenosides, polysaccharides, and peptides) in preventing and treating musculoskeletal degenerative diseases via key signaling pathways, providing a basis for targeted drug development. 
METHODS: A systematic search was performed in multiple databases, including PubMed, Web of Science, Embase, CNKI, WanFang, and VIP databases, for publications from database inception until April 2025. The search terms were "musculoskeletal degenerative diseases, osteoporosis, osteoarthritis, intervertebral disc degeneration, sarcopenia, ginsenosides, ginseng polysaccharides, ginseng peptides, signaling pathways" in both English and Chinese. Ultimately, 75 articles meeting the inclusion criteria were selected for review. 
RESULTS AND CONCLUSION: (1) Ginsenosides (such as Rg3, Rh4, and Rc) inhibit osteoclast differentiation and bone resorption by targeting the nuclear transport protein α2-nuclear factor κB axis; it delays sarcopenia via silent information regulator 1-mediated mitochondrial biogenesis and attenuates disc degeneration via Yes-associated protein 1/transcriptional coactivator and p38 mitogen-activated protein kinase pathways. (2) Processing-dependent immunomodulation of polysaccharides affects immunomodulatory activity, inhibiting inflammation via mitogen activated protein kinase/nuclear factor kappa B pathway. (3) Peptides improve mitochondrial function by activating the NAD+/silence information regulatory factor 1/peroxisome proliferator activated receptor γ coactivator 1α axis. (4) It is concluded that ginseng is proposed to regulate bone metabolism balance, suppress cartilage degradation, and attenuate muscle aging via synergistic multi-component, multi-target actions. However, challenges such as low bioavailability and a lack of large-scale clinical trials remain to be addressed.

Key words: ginsenosides, mitochondrial biogenesis, osteoclast differentiation, immunomodulation, extracellular matrix degradation, targeted delivery, age-related disorders, synergistic regulation, tissue homeostasis

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