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肉桂与桂皮水提物的差异成分鉴定。

Identification of Differential Compositions of Aqueous Extracts of Cinnamomi Ramulus and Cinnamomi Cortex.

机构信息

Henan University of Chinese Medicine, Zhengzhou 450046, China.

Engineering Technology Research Center for Comprehensive Development and Utilization of Authentic Medicinal Materials in Henan Province, Henan University of Chinese Medicine, Zhengzhou 450046, China.

出版信息

Molecules. 2023 Feb 21;28(5):2015. doi: 10.3390/molecules28052015.

Abstract

Cinnamomi ramulus (CR) and Cinnamomi cortex (CC), both sourced from Presl, are commonly used Chinese medicines in the Chinese Pharmacopeia. However, while CR functions to dissipate cold and to resolve external problems of the body, CC functions to warm the internal organs. To clarify the material basis of these different functions and clinical effects, a simple and reliable UPLC-Orbitrap-Exploris-120-MS/MS method combined with multivariate statistical analyses was established in this study with the aim of exploring the difference in chemical compositions of aqueous extracts of CR and CC. As the results indicated, a total of 58 compounds was identified, including nine flavonoids, 23 phenylpropanoids and phenolic acids, two coumarins, four lignans, four terpenoids, 11 organic acids and five other components. Of these compounds, 26 significant differential compounds were identified statistically including six unique components in CR and four unique components in CC. Additionally, a robust HPLC method combined with hierarchical clustering analysis (HCA) was developed to simultaneously determine the concentrations and differentiating capacities of five major active ingredients in CR and CC: coumarin, cinnamyl alcohol, cinnamic acid, 2-methoxycinnamic acid and cinnamaldehyde. The HCA results showed that these five components could be used as markers for successfully distinguishing CR and CC. Finally, molecular docking analyses were conducted to obtain the affinities between each of the abovementioned 26 differential components, focusing on targets involved in diabetes peripheral neuropathy (DPN). The results indicated that the special and high-concentration components in CR showed high docking scores of affinities with targets such as HbA1c and proteins in the AMPK-PGC1-SIRT3 signaling pathway, suggesting that CR has greater potential than CC for treating DPN.

摘要

肉桂(CR)和肉桂皮(CC)均来源于 Presl,是《中国药典》中常用的中药。然而,CR 具有散寒解表的作用,而 CC 则具有温通脏腑的作用。为了阐明这些不同功能和临床疗效的物质基础,本研究建立了一种简单可靠的 UPLC-Orbitrap-Exploris-120-MS/MS 方法,并结合多元统计分析,旨在探讨 CR 和 CC 水提物化学成分的差异。结果表明,共鉴定出 58 种化合物,包括 9 种黄酮类、23 种苯丙素类和酚酸类、2 种香豆素类、4 种木脂素类、4 种萜类、11 种有机酸类和 5 种其他成分。其中,有 26 种差异化合物通过统计学方法鉴定,包括 CR 中 6 种特有成分和 CC 中 4 种特有成分。此外,还建立了一种稳健的 HPLC 方法,并结合层次聚类分析(HCA),同时测定 CR 和 CC 中 5 种主要活性成分:香豆素、肉桂醇、肉桂酸、2-甲氧基肉桂酸和肉桂醛的浓度和区分能力。HCA 结果表明,这 5 种成分可作为成功区分 CR 和 CC 的标志物。最后,进行了分子对接分析,以获得上述 26 种差异成分与糖尿病周围神经病变(DPN)相关靶点的亲和力。结果表明,CR 中特殊且高浓度的成分与 HbA1c 和 AMPK-PGC1-SIRT3 信号通路中的蛋白质等靶点具有较高的亲和力 docking 评分,提示 CR 在治疗 DPN 方面比 CC 更具潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04a3/10004064/fcea12ca7a3a/molecules-28-02015-g001.jpg

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