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Get Free AccessIntroduction: Qin medicines are medicinal plants growing in habitat around the peak of Qinling Mountain. Their unique curative effects on bone metabolic diseases and pain diseases have been favoured by the local people in clinical trials for thousands of years. Libanotis buchtormensis (Fisch.) DC. (LBD), is one of the popular Qin herbs, which has been widely used for the treatment of various diseases, such as osteoporosis, rheumatic, and cardiovascular diseases. However, due to the multiple compounds in LBD, the underlying molecular mechanisms of LBD remain unclear. Objective: This study aimed to systemically investigate the underlying mechanisms of LBD against bone diseases. Methods: In this study, a systems pharmacology platform included the potential active compound screening, target fishing, and network pharmacological analysis was employed to decipher the ac-tion mechanisms of LBD. Results: As a result, 12 potential active compounds and 108 targets were obtained. Furthermore, compound-target network and target-pathway network analysis showed that multi-components in-teracted with multi-targets and multi-pathways, i.e., MARK signalling pathway, mTORC1 signal-ling pathway, etc., involved in the regulation of the immune system and circulatory system. These results suggested the mechanisms of the therapeutic effects of LBD on various diseases through most compounds targeted by multiple targets. Conclusion: In conclusion, we successfully predicted the LBD bioactive compounds and potential targets, implying that LBD could be applied as a novel therapeutic herb in osteoporosis, rheumatic, and cardiovascular diseases. This work provides insight into the therapeutic mechanisms of LBD for treating various diseases.
Rundong Feng, Lifang Wang, Hu Chai, Jie Jiao, Peng Zhang, Zheng Xu, Haijing Liu, Wenjuan Zhang, Suli Wu (2023). Systems Pharmacology Strategy for the Investigation of Action Mechanisms of Qin Herb Libanotis Buchtormensis (Fisch.) DC. in Bone Diseases. Endocrine Metabolic & Immune Disorders - Drug Targets, 24(1), pp. 142-152, DOI: 10.2174/1871530323666230720143415.
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Type
Article
Year
2023
Authors
9
Datasets
0
Total Files
0
Language
English
Journal
Endocrine Metabolic & Immune Disorders - Drug Targets
DOI
10.2174/1871530323666230720143415
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