A Network Pharmacological Study of Qianjin Sanhuang Decoction in the Treatment of Osteoarthritic Knee Disease

Authors

  • Chenxin Zhao The First School of Clinical Medicine, Shaanxi University of Chinese medicine, Xianyang 712046, Shaanxi, China
  • Lixia Yao The First School of Clinical Medicine, Shaanxi University of Chinese medicine, Xianyang 712046, Shaanxi, China
  • Lu Wang The First School of Clinical Medicine, Shaanxi University of Chinese medicine, Xianyang 712046, Shaanxi, China
  • Yi Li The First School of Clinical Medicine, Shaanxi University of Chinese medicine, Xianyang 712046, Shaanxi, China

DOI:

https://doi.org/10.53469/jcmp.2024.06(10).07

Keywords:

Qianjin Sanhuang decoction, Network pharmacology, Osteoarthritis, Core targets, Pathway analysis

Abstract

Objective: To predict the action targets of Qianjin Sanhuang decoction in the treatment of knee osteoarthritis through network pharmacology, to explore its potential multi component, multi target, multi, pathway mechanism of action, and to elaborate the relationship between the pharmacological effects of the drug and the disease from the perspective of molecular mechanism. Methods: The Chinese herbal composition of Qianjin Sanhuang decoction was determined by reading ancient texts and reviewing data, and the chemical components of Qianjin Sanhuang decoction were collected through the Traditional Chinese Medicine Systematic Pharmacology Database and Analysis Platform (TCMSP), and the active ingredients of the drug were obtained after oral utilization (OB) and drug-like properties (DL) screening, and the active ingredient target prediction was performed, while the active ingredient targets were retrieved from GeneCards, OMIM, and DisGeNet database to retrieve knee osteoarthritis-related targets. After taking the intersecting targets, a software called cytoscape 3.9.0 was used for mapping, with the goal of constructing a component-target network map, followed by a string database for mapping, with the goal of making a network map of target protein-target protein interactions, and finally, a gene ontology (GO) enrichment analysis and a Kyoto Encyclopedia of Genes and Genomes (KEGG) pathway enrichment analysis, this analysis process was performed in the metascape database. Results: A total of 1272 targets related to osteoarthritis of the knee were collected in this study, 89 active ingredients of Qianjin Sanhuang decoction, involving 267 targets, and 121 therapeutic targets involving osteoarthritis of the knee, and the results of GO enrichment analysis showed that it involved the response to inorganic substances, positive regulation of cell migration, response to oxygen content, response to lipopolysaccharide, response to peptides, regulation of cell adhesion, response to extracellular stimuli, negative regulation of cell differentiation, positive regulation of cell death, glandular development, regulation of apoptotic signaling pathways, development of reproductive structures, response to trauma, response to growth factors, regulation of inflammatory response, cellular response to organic recycling compounds, regulation of proteolysis, etc. After KEGG analysis, the results showed that signaling pathways such as AGE-RAGE pathway and HIF-1 pathway were involved. Conclusion: Qianjin Sanhuang decoction can improve the inflammatory response of knee osteoarthritis through potential multi-pathways, multi-targets and multi-pathways, and can have potential therapeutic effects on osteoarthritis.

References

Mei Yifang. Current status and standardization of epidemiological studies on osteoarthritis in China [J]. Chinese Journal of Practical Internal Medicine, 2019, 39(08):663-665.

Tie Xiao-jia, ZHENG Ru-geng, ZHAO Meng, HAN Ya-jun, GUO Hong-liang, WANG Zhi-zhou, MA Guo-ju. Prevalence of knee osteoarthritis in middle-aged and elderly Chinese: a Meta-analysis [J]. Tissue Engineering Research in China, 2018, 22(04):650-656.

Lin Jianhao li-yi zhang. Treatment and research progress of Kaschin-Beck disease [J]. Chinese Journal of Endemology, 2021, 40(03):248-252.

Wei Qu Han Tao, sun kai, Chen Xin, Milky Way, li-guo zhu. The advantages, key issues and research strategies of traditional Chinese medicine in the prevention and treatment of bone and joint degenerative diseases [J]. General practice in China, 2021, 24(35):4421-4426.

Lin Tingting, He Dongyi. Clinical research progress of traditional Chinese medicine in the treatment of knee osteoarthritis [J]. Modern distance education of Chinese traditional medicine, 2019, 17(17):126-128.

Hu KX, Duan X, Han L Z, et al. Exploring pharmacological mechanisms of Xiang Ju Tablets in the treatment of allergic rhinitis via a network pharmacology approach [J]. Evid Based Complemet Alternat Med, 2019, 2019:6272073.

Hsin K Y, Ghosh S, Kitano H. Combining machine learning systems and multiple docking simulation packages to improve docking prediction reliability for network pharmacology [J]. PloS one, 2013, 8(12): e83922.

Wang Xiangpeng, BI Yifei, XIE Wenpeng, WANG Baoan, Song Xuyu, Bi Rongxiu. Distribution of traditional Chinese medicine syndrome types of knee osteoarthritis and clinical treatment of Cangxi Tongbi capsule [J]. Shi Zhen National medicine and National Medicine, 2022, 33(03):639-642.

Zhangyu, yan-ling ren, zheng qu, Ma Xian, Yang Yongju, angel lee, alex guan. Effect of Yougui pill on the short-term and long-term efficacy of knee osteoarthritis in the elderly with kidney-yang deficiency [J]. Chinese Journal of Traditional Chinese Medicine, 2021, 39(08):195-198.

Chen Liming, GUO Shengjun, XU Genrong, Li Xiaoliang, ZHAO Jiyang, DONG Shiyu, Bai Jing, Zhao Wanning. Analysis of traditional Chinese medicine characteristics of syndromes in 28763 patients with knee osteoarthritis [J]. Chinese Journal of Traditional Chinese Medicine, 2022, 37(02):1061-1064.

DU X, ZHAO B, LI J, et al. Astragalus polysaccharides enhance immune responses of HBV DNA vaccination via promoting the dendritic cell maturation and suppressing Treg frequency in mice [J]. Int Immunopharmacol, 2012, 14(4): 463.

ZHANG A, ZHENG Y, QUE Z, et al. Astragaloside Ⅳ inhibits progression of lung cancer by mediating immune function of Tregs and CTLs by interfering with IDO [J]. J Cancer Res Clin Oncol, 2014, 140(11): 1883.

Dinda B, Dinda S, Dassharma S, et al. Therapeutic potentials of baicalin and its aglycone, baicalein against inflammatory disorders [J]. Eur J Med Chem, 2017, 131(5): 68-80.

Xu Da-yong, LI Yun-Peng, WEI Jing-mei, et al. Baicalin through regulating the M2 macrophages polarization on inhibition of the inflammatory response in the rat spinal cord injury [J]. Journal of Jilin University (Medical Edition), 2021, 47(1):158-167.

Wang Min, Liu Xuping, Zhang Jianqin, et al. Baicalin effect on T, B lymphocyte proliferation in mice [J]. Journal of jiangxi medical college, 2007, 47(6): 17-19.

Su Zhichao, DU Xin, YAN Huaqiong, Lu Yi, ZHAO Na, LI Huanan. Live with parasitic soup combined cream rubbing method treatment of knee osteoarthritis wind cold dampness invigorating qi and kidney deficiency syndrome in 35 cases of clinical observation [J]. Chinese Medicine Journal, 2020, 61(03): 217-221. DOI:10. 13288/j.11-2166/r.2020.03.009.

Ban H S, Lira S S, Suzuki K, et al. Inhibitory effects of furanocoumarins isolated from the roots of Angelica dahurica on prostaglandin E2 production. Planta Med, 2003, 69(5):408-412

Waley, WenXiaoYin YanPeng, shen water capacity, liu xd, ke-fang lai. Research progress on the chemical components and pharmaceutical action of asarum [J]. Chinese journal of experimental formulas of Chinese medicine, 2021, 27(04):186-195. DOI:10.13422/j.cnki. syfjx.20202353.

Kuang BaiCheng, Hou ShuaiHeng, Zhan G Ji, Wang MengQin, Zhang JiaSi, Sun KaiLun, Wang ZhiHeng, Li QingWen, Gong NianQiao. [Effect of methyl eugenol on hypoxia/reoxygenation injury of human renal tubular epithelial cells and its mechanism]. [J]. Zhongguo Zhong yao za zhi = Zhongguo zhongyao zazhi = China journal of Chinese materia medica, 2021, 46(24).

Qiu L, Luo Y, Chen X. Quercetin attenuates mitochondrial dysfunction and biogenesis via upregulated AMPK/SIRT1signaling pathway in OA rats. Biomed Pharmacother, 2018, 103:1585-1591.

Haleagrahara N, Hodgson K, Miranda-Hernandez S, et al. Flavonoid quercetin-methotrexate combination inhibits inflammatory mediators and matrix metalloproteinase expression, providing protection to joints in collagen-induced athritis. Inflammopharmacology, 2018, 26(5): 1219-1232.

Jiang R, Hao P, Yu G, Liu C, Yu C, Huang Y, et al. Kaempferol protects chondrogenic ATDC5 cells against inflammatory injury triggered by lipopolysaccharide through down-regulating miR-146a [J]. Int Immunopharmacol, 2019, 69:373-381.

Xiao Y, Liu L, Zheng Y, Liu W, Xu Y. Kaempferol attenuates the effects of XIST/miR-130a/STAT3 on inflammation and extracellular matrix degradation in osteoarthritis [J]. Future Med Chem, 2021, 13(17): 1451-1464.

Guo Qingqing, Li Li, Zheng Kang, Zheng Guang, Shu Haiyang, Shi Yingjie, Lu Cheng, Shu Jun, Guan Daogang, Lu Aiping, He Xiaojuan. Imperatorin and β-sitosterol have synergistic activities in alleviating collagen-induced arthritis. [J]. Journal of leukocyte biology, 2020, 108(2).

Qian Kai, Zheng Xue Xia, Wang Chen, Huang Wen Guang, Liu Xiao Bao, Xu Shu Di, Liu Dan Kai, Liu Min Ying, Lin Chang Song. β-Sitosterol Inhibits Rheumatoid Synovial Angiogenesis Through Suppressing VEGF Signaling Pathway [J]. Frontiers in Pharmacology, 2022, 12.

LIAO Peichun, LAI MH, HSU KP, et al. identification of β‐sitos‐terol as in vitro anti‐inflammatory constituent in moringa oleifera [J]. J Agric Food Chem, 2018, 66(41):10748‐10759.

Zeng Liping, Xu Xianzhu, Rao Hua, et al. Effects of β-sitosterol from Eucommia ulmoides leaves on osteoblasts and ovarian granulosa cells [J]. Shi Zhen, Chinese Medicine and Chinese Medicine, 2012, 23(5): 1051‐1053.

BANDERO C, MARCHESAN S, TONELLO R, et al.Anti-no-cieptive effect of stigmasterol in mouse models of acute and chronic pain, Naunyn Schmiedebergs Arch [J]. Pharmacol, 2017, 390: 1163-1172.

ANTWI AO, OBIRI DD, OSAFO Net al. Stigmasterol Alleviates Cutaneous Allergic Responses in Rodents [J]. Biomed Res Int, 2018, 2018: 3984068.

Chidinma I C, Chigozie I J. Anti-Diabetic Effect of a Flavonoid and Sitosterol-Rich Aqueous Extract ofPleurotus tuberregiumSclerotia in Alloxan-Induced Diabetic Rabbits [J]. Endocr. Metab. Immune Disord. Drug Targets, 2019, 19: 1148-1156.

Zhao Haoming. Interleukin - 6 gamma induced by estrogen related receptors temporomandibular joint osteoarthritis model extracellular matrix degradation and angiogenesis in vitro [D]. Shandong University, 2020.

TongLei Gu Feng, Fan Li, liu. The relationship between the levels of interleukin-1β, interleukin-17 and prostaglandin E2 in synovial fluid of knee joint and the prognosis of elderly patients with knee osteoarthritis [J]. The Journal of Traditional Chinese Orthopedics and Traumatology, 2022, 34(01):33-36+40.

Xu jing, oh ok jiao, xiao-yang yuan, zhang feng, config-ext-qq, yun-fang zhang, wei, yan is still learning. TNF alpha induced rat chondrocytes jiao wu model establishment and evaluation of [J]. Journal of anhui medical university, 2022, 57(05):781-786.

Yang R, Li Y H, Zhang H, et al. The correlation between serum levels of MMP-9 and TNF-α and the severity of knee osteoarthritis and bone mineral density [J]. Modern practical medicine, 2019, 31(8):1048-1050.

JIANG H W, CUI H, WANG T, et al. CCL2 /CCR2 signaling elicits itch-and pain-like behavior in a murine model of allergic contact dermatitis[J]Brain Behav Immun, 2019, 80: 464-473.

Kang Boyin Wu Yuanjun. Matrix metalloproteinase-9 and inhibitor of metalloproteinase-1 and their value in evaluating the severity of knee osteoarthritis [J]. Chinese journal of bone and joint, 2020, 9(10):758-761.

Zhang L, Jin L, Guo J, et al. Chronic intermittent hypobaric hy-poxia enhances bone fracture healing [ J]. Front Endocrinol (Lausanne), 2021, 11:582670.

Wang Z, Han T, Zhu H, et al. Potential osteoinductive effects ofhydroxyapatite nanoparticles on mesenchymal stem cells by endo-thelial cell interaction [J]. Nanoscale Res Lett, 2021, 16(1):67.

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Published

2024-10-29

How to Cite

Zhao, C., Yao, L., Wang, L., & Li, Y. (2024). A Network Pharmacological Study of Qianjin Sanhuang Decoction in the Treatment of Osteoarthritic Knee Disease. Journal of Contemporary Medical Practice, 6(10), 33–41. https://doi.org/10.53469/jcmp.2024.06(10).07