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1.
Acta Pharmaceutica Sinica ; (12): 3644-3652, 2022.
Article in Chinese | WPRIM | ID: wpr-964330

ABSTRACT

In this study, the molecular mechanism of Cinnamomi Cortex-Rehmanniae Radix (CR) in the prevention and treatment of osteoporosis (OP) was investigated by integrating compatibility analysis of compound, bioinformatics and metabolomics. The rat OP models were established, and the Micro-CT indexes and pathological sections were comprehensively evaluated. The results showed that compared with the model group, the indexes such as bone mineral density (BMD) and bone volume/tissue volume (BV/TV) were significantly increased after CR treatment (P < 0.05), and the bone trabeculae were arranged into mesh. The results of UHPLC-Q-TOF/MS mainly involved amino acid metabolism, lipid metabolism and estrogen metabolism pathways. Integrating bioinformatics and metabolomics analysis, it was finally found that: ① cinnamic acid and ethylcinnamate inhibit inflammatory factors such as TNF, IL-1β, and IL-13, thereby preventing and treating OP; ② multiple active ingredients of CR target ESR2, PPARG, and CYP19A1, GABRA1 and other targets, regulate cAMP synthesis, AMPK signaling pathway and lipid metabolism, thereby regulating estrogen levels to prevent and treat OP; ③ oleic acid, arachic acid, etc. act on AR, VDR and other targets, and regulate HIF-1 signaling pathway and AGE-RAGE signaling pathway, thereby regulating osteoblasts and osteoclasts, and affecting calcium and phosphorus absorption to maintain bone homeostasis. This study clarified the molecular mechanism of CR in preventing and treating OP from the perspective of multi-directional regulation of inflammatory factors, estrogen and bone homeostasis, and provided theoretical basis for the clinical application of CR and the development of compound. This experiment complied with the ethical standards of animal experiments and was approved by the Animal Ethics Committee of Shaanxi University of Chinese Medicine (No. SUCMDL20210309002).

2.
China Journal of Chinese Materia Medica ; (24): 1137-1143, 2022.
Article in Chinese | WPRIM | ID: wpr-928035

ABSTRACT

The discovery and identification of effective components are pivotal in the research on Chinese medicinal prescriptions. Given two basic conditions for effective components in Chinese medicinal prescriptions, i.e., active structure and a certain level of drug exposure in the body(including the intestine), a "six-step strategy" for the effective compounds in Chinese medicinal prescriptions based on in vitro-in vivo integration(SSS for short) has been proposed and established, as well as the key technologies. SSS contains qualitative and quantitative analyses of components in five steps, including those in Chinese medicinal extract, intestinal contents, portal vein blood, liver, and peripheral blood. The components(prototype components and metabolites) with a certain exposure level(including in the intestine) and those with large differences between in vitro content and in vivo exposure or in exposure among various parts in the body are selected as the minority prioritized candidates. The sixth step is to screen the pharmacological activity of candidate components specifically extracted from Chinese medicinal materials or artificially synthesized. SSS can significantly narrow the screening range, enhance the hit rate, and speed up the identification of effective components specifically targeting indications. Based on the effective components identified by the SSS, the "upstream" can be linked(mechanism research based on the effective components with clear structures) and the "downstream" can be combined(development of innovative component-based Chinese medicine with definite pharmacodynamic composition). In this study, the concept of component-based Chinese medicine and specific applications of SSS in the development of component-based Chinese medicine are also introduced.


Subject(s)
China , Drugs, Chinese Herbal/pharmacology , Medicine, Chinese Traditional , Prescriptions
3.
World Science and Technology-Modernization of Traditional Chinese Medicine ; (12): 1300-1304, 2015.
Article in Chinese | WPRIM | ID: wpr-476912

ABSTRACT

Angiogenesis is an important link of tumor growth, invasion and metastasis. The tumor angiogenesis targeting strategy for the treatment of cancer has become a hot spot in oncology research currently. Signal transduction of tumor angiogenesis is a complex, multi-factor, multi-way and cross network system. Treatment for a single target is often not sufficient to halt or reverse its highly heterogeneous structure and abnormal shape. Therefore, it will be an important research direction that the combination of different pathways and mechanisms of medications effect on signaling pathway in tumor angiogenesis by multi-target. A number of experimental studies found that qi-reinforcing and blood-activating medication can play a regulating role of multiple targets, multiple pathways in tumor angiogenesis. It had different effect on tumor angiogenesis against tumor invasion and metastasis.Qi-reinforcing and blood-activating medication will have broad prospects in the treatment of tumor and angiogenesis.

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