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A Rapid and Effective HPLC Method for Identification of Bovis Calculus in Chinese Patent Medicines 被引量:3
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作者 XIA Jing XIA Li +3 位作者 WANG Wei-yi SHA Yi-wei WANG Ke JI Shen 《Chinese Herbal Medicines》 CAS 2013年第3期224-233,共11页
Objective Due to the limited resource and the large demand,many kinds of Bovis Calculus(BC) including artificial Bovis Calculus(ABC),in vivo cultured Bovis Calculus(in vivo CBC),and in vitro cultured Bovis Calculus(in... Objective Due to the limited resource and the large demand,many kinds of Bovis Calculus(BC) including artificial Bovis Calculus(ABC),in vivo cultured Bovis Calculus(in vivo CBC),and in vitro cultured Bovis Calculus(in vitro CBC)were used in Chinese patent medicines(CPMs).Previous studies have shown that the chemical constituents of ABC and their properties were different from other BC.The two types of CBC with much higher price than ABC were approximately equivalent with natural Bovis Calculus in quality and clinical effect.The aim of the study is to establish a rapid and effective method for the identification of BC in CPMs.Methods An HPLC method with the higher specificity for analyzing bilirubin was established to distinguish ABC from other three kinds of BC by comparing the change of bilirubin content with the addition of EDTA-2Na as the extraction solvent and stabilizer.Results The bilirubin content in CPMs containing ABC was basically unchanged,while that in CPMs containing other kinds of BC showed significant difference.The proposed method was employed to analyze a variety of CPMs containing Bovis Calculus(CPMBCs) and proven to be universal.Conclusion An effective analytical method is established for the quality control of CPMBCs and further ensures the safety and efficacy of these drugs in clinical practice. 展开更多
关键词 artificial bovis calculus BILIRUBIN bovis calculus Chinese patent medicines cultured bovis calculus EDTA-2Na solution
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Effects of in vitro cultivated Calculus Bovis compound on pulmonary lesions in rabbits with schistosomiasis 被引量:10
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作者 Li, Tao Yang, Zhen +4 位作者 Cai, Hong-Jiao Song, Li-Wei Lu, Ke-Yu Zhou, Zheng Wu, Zai-De 《World Journal of Gastroenterology》 SCIE CAS CSCD 2010年第6期749-754,共6页
AIM:To explore the interventional effects and mechanism of in vitro cultivated Calculus Bovis compound preparation(ICCBco) on pulmonary lesions in portal hypertensive rabbits with schistosomiasis. METHODS:The experime... AIM:To explore the interventional effects and mechanism of in vitro cultivated Calculus Bovis compound preparation(ICCBco) on pulmonary lesions in portal hypertensive rabbits with schistosomiasis. METHODS:The experimental group included 20 portal hypertensive rabbits with schistosomiasis treated by ICCBco.The control group included 20 portal hypertensive rabbits with schistosomiasis treated by praziquantel. The morphological changes of the pulmonary tissues were observed under light and electron microscopy.The expression of fibronectin(FN) and laminin(LN) in the lung tissues was analyzed by immunohistochemistry. RESULTS:Under light microscope,the alveolar exudation in the lung tissue was more frequently observed in the control group,while the alveolar space was fairly dry in the lung tissue of ICCBco group.Under electron microscope,more alveolar exudation in the lung tissue,and moremacrophages,alveolar angiotelectasis and the blurred three-tier structure of alveolar-capillary barrier could be seen in the control group.In ICCBco group,fibers within the alveolar interspace slightly increased in some lung regions,and the structure of typeⅠepithelium,basement membrane and endodermis was complete,and no obvious exudation from the alveolar space,and novascular congestion could be observed.There was a positive or strong positive expression of FN and LN in the lung tissue of the control group,while there was a negative or weak positive expression of FN and LN in ICCBco group. CONCLUSION:ICCBco can effectively prevent pulmonary complications in portal hypertensive rabbits with schistosomiasis by means of improving lung microcirculation and lowering the content of extracellular matrix. 展开更多
关键词 In vitro cultivated calculus bovis compound preparation SCHISTOSOMIASIS Portal hypertension Lung lesion FIBRONECTIN LAMININ Pulmonary microcirculation
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The Protective Effects of In Vitro Cultivated Calculus Bovis on the Cerebral and Myocardial Cells in Hypoxic Mice 被引量:2
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作者 蔡红娇 官阳 +2 位作者 刘烈刚 姚平 裘法祖 《Journal of Huazhong University of Science and Technology(Medical Sciences)》 SCIE CAS 2007年第6期635-638,共4页
The protective effects of in vitro cultivated calculus bovis (ICCB) on the cerebral and myocardial cells in hypoxic mice and the mechanism were examined. In one group, mice were intragastrically (i.g.) given ICCB ... The protective effects of in vitro cultivated calculus bovis (ICCB) on the cerebral and myocardial cells in hypoxic mice and the mechanism were examined. In one group, mice were intragastrically (i.g.) given ICCB for 15 days and then they were subjected to acute cerebral ischemia by decapitation, and then the panting time was recorded. In the other group, 12 min after exposure to hypoxia, mice was administered the ICCB i.g. for 5 days, and then the blood serum and tissues of brain, heart, liver were harvested and examined for SOD, GSH-px and T-AOC activity and content of MDA. The tissues of brain and heart were observed electron-microscopically for ultrastructural changes. The corpus striatum and hippocampus of brain were collected and examined for content of dopamine (DA) and norepinephrine (NE). The ultrastrural examination showed that the pathological change in brain and heart in the ICCB group was very slight, while abnormal changes in the control group were obviously more serious. ICCB significantly prolonged the panting time of the hypoxic mice (P〈0.001), increased the activity of SOD, GSH-px, T-AOC in serum and tissues of brain, liver, heart and elevated the content of DA and NE. ICCB also pronouncedly reduced content of MDA in serum and tissues of brain, heart and liver. Significant differences in these parameters were noted between ICCB group and controls. It is concluded that ICCB can exert protective effect on the cells of brain and myocardium by enhancing the tolerance of the tissues to hypoxia and the body's ability to remove free radicals and regulating the neurotransmitters. 展开更多
关键词 in vitro cultivated calculus bovis tolerance to hypoxia free radicals NEUROTRANSMITTER
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Calculus bovis inhibits M2 tumor-associated macrophage polarization via Wnt/β-catenin pathway modulation to suppress liver cancer
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作者 Zhen Huang Fan-Ying Meng +12 位作者 Lin-Zhu Lu Qian-Qian Guo Chang-Jun Lv Nian-Hua Tan Zhe Deng Jun-Yi Chen Zi-Shu Zhang Bo Zou Hong-Ping Long Qing Zhou Sha Tian Si Mei Xue-Fei Tian 《World Journal of Gastroenterology》 SCIE CAS 2024年第29期3511-3533,共23页
BACKGROUND Calculus bovis(CB),used in traditional Chinese medicine,exhibits anti-tumor effects in various cancer models.It also constitutes an integral component of a compound formulation known as Pien Tze Huang,which... BACKGROUND Calculus bovis(CB),used in traditional Chinese medicine,exhibits anti-tumor effects in various cancer models.It also constitutes an integral component of a compound formulation known as Pien Tze Huang,which is indicated for the treatment of liver cancer.However,its impact on the liver cancer tumor microenvironment,particularly on tumor-associated macrophages(TAMs),is not well understood.AIM To elucidate the anti-liver cancer effect of CB by inhibiting M2-TAM polarization via Wnt/β-catenin pathway modulation.METHODS This study identified the active components of CB using UPLC-Q-TOF-MS,evaluated its anti-neoplastic effects in a nude mouse model,and elucidated the underlying mechanisms via network pharmacology,transcriptomics,and molecular docking.In vitro assays were used to investigate the effects of CB-containing serum on HepG2 cells and M2-TAMs,and Wnt pathway modulation was validated by real-time reverse transcriptase-polymerase chain reaction and Western blot analysis.RESULTS This study identified 22 active components in CB,11 of which were detected in the bloodstream.Preclinical investigations have demonstrated the ability of CB to effectively inhibit liver tumor growth.An integrated approach employing network pharmacology,transcriptomics,and molecular docking implicated the Wnt signaling pathway as a target of the antineoplastic activity of CB by suppressing M2-TAM polarization.In vitro and in vivo experiments further confirmed that CB significantly hinders M2-TAM polarization and suppresses Wnt/β-catenin pathway activation.The inhibitory effect of CB on M2-TAMs was reversed when treated with the Wnt agonist SKL2001,confirming its pathway specificity.CONCLUSION This study demonstrated that CB mediates inhibition of M2-TAM polarization through the Wnt/β-catenin pathway,contributing to the suppression of liver cancer growth. 展开更多
关键词 calculus bovis M2 tumor-associated macrophage polarization Liver cancer Wnt/β-catenin pathway Tumor microenvironment
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Unveiling the anticancer effect of traditional Chinese herbal medicine
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作者 Naoki Asano 《World Journal of Gastroenterology》 SCIE CAS 2024年第30期3625-3627,共3页
In this issue of World Journal of Gastroenterology,Huang et al reported that Calculus bovis(CB),a traditional Chinese herbal medicine,impedes the growth of liver cancers in vivo.Through further in vitro studies,they s... In this issue of World Journal of Gastroenterology,Huang et al reported that Calculus bovis(CB),a traditional Chinese herbal medicine,impedes the growth of liver cancers in vivo.Through further in vitro studies,they showed that CB suppressed the M2 polarization of tumor-associated macrophages by suppressing the Wnt signaling pathway,which consequently inhibited the growth of liver cancer.Although the effects of traditional Chinese herbal medicine are often not scientifically proven,Huang et al successfully identified the molecular mechanism involved in the anticancer effect of CB,and it is anticipated that the molecular mechanisms involved in the effects of other traditional Chinese herbal medicines will be scientifically elucidated,as demonstrated in this article. 展开更多
关键词 calculus bovis Chinese herbal medicine Wnt Hepatocellular carcinoma Liver cancer Tumor-associated macrophages M2 polarization
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