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藏药止血镇痛胶囊化学成分的定性定量分析及药理作用的系统评价

Qualitative and quantitative analyses of chemical constituents and and systematic evaluation of the pharmacological effects of Tibetan medicine Zhixue Zhentong capsules.

作者信息

Song Yinglian, Liang Yan, Zeng Rong, Li Ran, Zhou You, Huang Sheng, Li Xiaoli, Zhang Ning, Xu Min, Xiong Kaipeng, Fu Ke, Ye Huixuan, Wu Lei, Yu Shaopeng, Chen Wanyue, Tang Ce, Jiang Miao, Wang Zhang

机构信息

College of Pharmacy, Chengdu University of Traditional Chinese Medicine, Chengdu, China.

State Key Laboratory of Southwestern Chinese Medicine Resources, Chengdu University of Traditional Chinese Medicine, Chengdu, China.

出版信息

Front Pharmacol. 2023 Jul 17;14:1204947. doi: 10.3389/fphar.2023.1204947. eCollection 2023.

Abstract

Zhixue Zhentong capsules (ZXZTCs) are a Tibetan medicine preparation solely composed of (Benth.) Kudo. is the only species of the genus (family Lamiaceae) that has medicinal constituents derived from the grass or root and rhizome. is one of the most extensively used folk medicines by Tibetan, Mongolian, Naxi, and other ethnic groups in China and has been listed as a first-class endangered Tibetan medicine. The biological effects of the plant include hemostasis, analgesia, and the removal of blood stasis and swelling. This study aimed to profile the overall metabolites of ZXZTCs and those entering the blood. Moreover, the contents of six metabolites were measured and the hemostatic, analgesic, and anti-inflammatory effects of ZXZTCs were explored. Ultra-performance liquid chromatography-tandem quadrupole time-of-flight high-resolution mass spectrometry (UPLC-Q-TOF-MS) was employed for qualitative analysis of the metabolites of ZXZTCs and those entering the blood. Six metabolites of ZXZTCs were quantitatively determined via high-performance liquid chromatography The hemostatic, analgesic, and anti-inflammatory effects of ZXZTCs were evaluated in various animal models. A total of 36 metabolites of ZXZTCs were identified, including 13 iridoid glycosides, 9 flavonoids, 9 phenylethanol glycosides, 4 phenylpropanoids, and 1 other metabolite. Overall, 11 metabolites of ZXZTCs entered the blood of normal rats. Quantitative analysis of the six main metabolites, shanzhiside methyl ester, chlorogenic acid, 8-O-acetyl shanzhiside methyl ester, forsythin B, luteoloside, and verbascoside, was extensively performed. ZXZTCs exerted hemostatic effects by reducing platelet aggregation and thrombosis and shortening bleeding time. Additionally, ZXZTCs clearly had an analgesic effect, as observed through the prolongation of the latency of writhing, reduction in writhing, and increase in the pain threshold of experimental rats. Furthermore, significant anti-inflammatory effects of ZXZTCs were observed, including a reduction in capillary permeability, the inhibition of foot swelling, and a reduction in the proliferation of granulation tissue. Speculative identification of the overall metabolites of ZXZTCs and those entering the blood can provide a foundation for determining its biologically active constituents. The established method is simple and reproducible and can help improve the quality control level of ZXZTCs as a medicinal product. Evaluating the hemostatic, analgesic, and anti-inflammatory activities of ZXZTCs can help reveal its mechanism.

摘要

止血镇痛胶囊(ZXZTCs)是一种仅由藏药独一味(Lamiophlomis rotata (Benth.) Kudo)制成的藏药制剂。独一味是独一味属(唇形科)中唯一一种其地上部分或根及根茎含有药用成分的植物。它是中国藏族、蒙古族、纳西族等民族使用最为广泛的民间药物之一,已被列为一级濒危藏药。该植物的生物学效应包括止血、镇痛、化瘀消肿。本研究旨在分析止血镇痛胶囊及其入血成分的整体代谢产物。此外,测定了6种代谢产物的含量,并探究了止血镇痛胶囊的止血、镇痛及抗炎作用。采用超高效液相色谱 - 串联四极杆飞行时间高分辨质谱(UPLC - Q - TOF - MS)对止血镇痛胶囊及其入血成分的代谢产物进行定性分析。通过高效液相色谱法定量测定了止血镇痛胶囊的6种代谢产物。在多种动物模型中评估了止血镇痛胶囊的止血、镇痛及抗炎作用。共鉴定出止血镇痛胶囊的36种代谢产物,包括13种环烯醚萜苷、9种黄酮类、9种苯乙醇苷、4种苯丙素类及1种其他代谢产物。总体而言,止血镇痛胶囊的11种代谢产物进入了正常大鼠的血液。对6种主要代谢产物山栀苷甲酯、绿原酸、8 - O - 乙酰山栀苷甲酯、连翘酯苷B、木犀草苷和毛蕊花糖苷进行了广泛的定量分析。止血镇痛胶囊通过减少血小板聚集和血栓形成以及缩短出血时间发挥止血作用。此外,从扭体潜伏期延长、扭体次数减少以及实验大鼠痛阈提高可看出,止血镇痛胶囊具有明显的镇痛作用。此外,还观察到止血镇痛胶囊具有显著的抗炎作用,包括降低毛细血管通透性、抑制足肿胀以及减少肉芽组织增生。推测性鉴定止血镇痛胶囊及其入血成分的整体代谢产物可为确定其生物活性成分提供依据。所建立的方法简便且可重复,有助于提高止血镇痛胶囊作为药品的质量控制水平。评估止血镇痛胶囊的止血、镇痛及抗炎活性有助于揭示其作用机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/16af/10389267/78cc23a14f24/fphar-14-1204947-g001.jpg

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