1.Simultaneous Determination of Seven Flavonoids in Aerial Parts of Artemisia frigida by HPLC
Qinghu WANG ; Wuliji AO ; Wenquan TAI
Chinese Herbal Medicines 2012;04(3):252-258
Objective To establish an HPLC method for the determination of seven flavonoids from the aerial part of Artemisia frigida.Methods Hypersil ODS-2 (300 mm× 4.6 mm,5 μm) column was used,with acetonitril-0.2% phosphoric acid (gradient elution) as a mobile phase,and the detection wavelength was at 283 nm with flow rate at 1mL/min.Results All calibration curves showed good linear regression (r > 0.9990) within the tested range.All average recovery was more than 98.00% and RSD was less than 3.0% (n =6).Conclusion The method is steady and with good repeatability,and could be used to determine the content of flavonoids in A.frigida from different areas.
2. Extraction and structure elucidation of three lignans from peeled dried roots and stems of Syringa pinnatifolia
Chinese Traditional and Herbal Drugs 2013;44(7):790-793
Objective: To study the chemical constituents from the peeled dried roots and stems of Syringa pinnatifolia. Methods: The chemical constituents from the peeled dried roots and stems of S. pinnatifolia were isolated and purified by silica gel and Sephadex LH-20 column chromatography, and preparative HPLC. The structures were identified by spectral methods. Results: Three compounds were obtained and identified as lignan, namely 3, 3', 4-trimethoxy-4', 8, 9, 9'-tetrahydroxy simple lignan (1), 3, 3', 4, 9-tetramethoxy-4', 8-dihydroxy-9'-ethoxy simple lignan (2), and 3, 3', 4, 9-tetramethoxy-4', 8, 9'-trihydroxy simple lignan (3). Conclusion: Compounds 1-3 are new, named syripinnalignan C, syripinnalignan D, and syripinnalignan E.
3. Mongolian medicine: History, development and existing problems
Songbo QU ; Almaz BORJIGIDAI ; Jinshan BAO ; Wuliji AO ; Laxinamujila BAI ; Almaz BORJIGIDAI
Chinese Herbal Medicines 2022;14(3):345-355
Mongolian medicine (MM) is an important part of Mongolian culture. Exploration of MM can play a crucial role in the prevention and treatment of various diseases and can help provide better health care globally. In this article, we gave a brief introduction to the origin and development of MM, the theoretical system of MM, the principles of Mongolian materia medica formula, the modern research on Mongolian materia medica and the quality control of Mongolian materia medica. The present situation and outlook of MM were also discussed.
4. Mongolian medicine in treating type 2 diabetes mellitus combined with nonalcoholic fatty liver disease via FXR/LXR-mediated P2X7R/NLRP3/NF-κB pathway activation
Shuyin BAO ; Qianqian MA ; Chengxi WEI ; Shuyin BAO ; Qianqian MA ; Chengxi WEI ; Xiuzhi WANG ; Shuyin BAO ; Jixing NAN ; Wuliji AO ; Wuliji AO
Chinese Herbal Medicines 2022;14(3):367-375
Type 2 diabetes mellitus (T2DM) and nonalcoholic fatty liver disease (NAFLD) are the most problematic metabolic diseases in the world. NAFLD encompasses a spectrum of severity, ranging from simple steatosis to non-alcoholic steatohepatitis (NASH) and fibrosis, increasing the risk of cirrhosis and hepatocellular carcinoma. Importantly, NAFLD is closely linked to obesity and tightly interrelated with insulin resistance and T2DM. T2DM and NAFLD (T2DM-NAFLD) are called as the Xike Rixijing Disease and Tonglaga Indigestion Disease respectively, in Mongolian medicine. Xike Rixijing Disease maybe develop into Tonglaga Indigestion Disease. Forturnately many Mongolian medicines show efficient treatment of T2DM-NAFLD, such as Agriophyllum squarrosum, Haliyasu (dried powder of camel placenta), Digeda-4 (herbs of Lomatogonium carinthiacum, rhizomata of Coptis chinensis, ripe fruits of Gardenia jasminoides, herbs of Dianthus superbus), Guangmingyan Siwei Decoction Powder (Halite, ripe fruits of Terminalia chebula, rhizomata of Zingiber officinale, fruit clusters of Piper longum), Tonglaga-5 (ripe fruits of Punica granatum, barks of Cinnamomum cassia, ripe fruits of Amomum kravanh, fruit clusters of Piper longum, flowers of Carthamus tinctorius), Tegexidegeqi (rhizomata of Inula helenium, ripe fruits of Gardenia jasminoides, rhizomata of Platycodon grandiflorum, rhizomata of Coptis chinensis, heartwood of Caesalpinia sappan), Ligan Shiliu Bawei San (ripe fruits of Punica granatum, barks of Cinnamomum cassia, ripe fruits of Amomum kravanh, fruit clusters of Piper longum, flowers of Carthamus tinctorius, ripe fruits of Amomum tsao-ko, rhizomata of Zingiber officinale), etc. Principles of Mongolian medicine in treating diseases: by balancing “three essences or roots” and “seven elements”, strengthening liver and kidney function, transporting nutrients to enhance physical strength and disease resistance, and combined with drugs for comprehensive conditioning treatment. However, their molecular mechanisms remain unclear. In this review, we prospect that Mongolian medicines might be a promising treatment for T2DM-NAFLD by activating P2X7R/NLRP3/NF-κB inflammatory pathway via lipid-sensitive nuclear receptors (i.e., FXR and LXR).
5.Overview of metalomics research and its application prospect in mineral Chinese medicine research.
Yu-Lu MA ; Fang FANG ; Sheng-Jin LIU ; Zhi-Jie ZHANG ; Rui-Chao LIN ; AO WULIJI ; De-Kang WU ; Jin-Ao DUAN
China Journal of Chinese Materia Medica 2021;46(9):2142-2148
Metallomics is a frontier interdisciplinary subject at its vigorous development stage. Its goal is to systematically study the content, distribution, chemical species, structural characteristics and functions of metal elements in biological system. It is also a comprehensive discipline to study the existing state and function of free or complex metal elements in life. Metallomics is an ideal tool to study the biological behavior of inorganic elements, which can be used to solve many problems in the research of mineral Chinese medicine(MCM). It provides a strong theoretical basis and technical support for the research of MCM. Its theory and methods provide re-ference and enlightenment for the in-depth study of MCM, and also provide new ideas and open up new ways for the research of MCM. The application of metallomics theory and methods in the research of MCM is of great significance to reveal the material basis and mec-hanism of MCM, promote the process of basic research on MCM, fully exploit and utilize medicinal mineral resources and carry forward the traditional MCM treasure in China. In this paper, we introduced the concept, academic development, research content and research methods of metallomics, and discussed the application prospects of metallomics in the analysis of inorganic element composition characteristics and quality control, material basis and mechanism of MCM, so as to provide reference for further researches on MCM.
China
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Drugs, Chinese Herbal
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Medicine, Chinese Traditional
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Minerals
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Quality Control
6.Effects of mineral Chinese medicine Chloriti Lapis on contents of metal elements in plasma and lung tissue of acute exacerbation of chronic obstructive pulmonary disease(AECOPD) rats.
Sheng-Jin LIU ; Yu-Lu MA ; Fang FANG ; Rui WANG ; Chen-Xiao SHAN ; Yong BIAN ; Wen-Guo YANG ; Hui YAN ; Zhi-Jie ZHANG ; AO WULIJI ; Jin-Ao DUAN
China Journal of Chinese Materia Medica 2021;46(14):3694-3704
The effects of Chloriti Lapis on metal elements in plasma and lung tissue of acute exacerbation of chronic obstructive pulmonary disease( AECOPD) rats were studied. The rat AECOPD model with phlegm heat syndrome was established by smoking combined with Klebsiella pneumoniae infection. After the rats were treated by Chloriti Lapis,the contents of metal elements in plasma and lung tissue were determined by inductively coupled plasma-optical emission spectroscopy( ICP-OES) and inductively coupled plasma mass spectrometry( ICP-MS). The changes in the contents of metal elements were analyzed by SPSS 18. 0. Further,the correlations of differential metal elements( including Cu/Zn ratio) with differential metabolites in plasma,lung tissue and urine of AECOPD rats treated with Chloriti Lapis were analyzed. The results showed that Chloriti Lapis significantly up-regulated the contents of Fe,Al,Mn,Cu,Zn,Sn( P<0. 05),V,Co( P< 0. 01) and Cu/Zn ratio( P< 0. 05),and significantly down-regulated the contents of Ti( P< 0. 05)and Pb( P<0. 05) in the model rat plasma. It significantly increased the content of Be( P<0. 05) and decreased the contents of Mg,Ti and Al( P<0. 01) in model rat lung tissue. The element profiles of normal group,model group and Chloriti Lapis group can be well separated. Chloriti Lapis group and other groups were clustered into two categories. The taurine in plasma and phytosphingosine in lung tissue had the strongest correlations with differential metal elements. The Fe,Al,Mg,Be,Ti,V,Mn,Cu,Zn,Sn,and Co in Chloriti Lapis may directly or indirectly participate in the intervention of AECOPD rats. This group of metal elements may be the material basis of Chloriti Lapis acting on AECOPD rats,and reduce the Cu/Zn value in vivo. It was further confirmed that Chloriti Lapis could interfere with the metabolic pathways of taurine and hypotaurine in plasma and urine as well as the sphingolipid metabolism pathway in lung tissue of AECOPD rats. In addition,this study confirmed that long-term smoking can cause high-concentration Cd accumulation in the lung and damage the lung tissue.
Animals
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Lung
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Medicine, Chinese Traditional
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Minerals
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Pulmonary Disease, Chronic Obstructive
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Rats
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Spectrum Analysis
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Trace Elements/analysis*
7.Metabonomics research on lung tissue of rats with acute exacerbation of chronic obstructive pulmonary disease treated with mineral Chinese medicine Chloriti Lapis.
Sheng-Jin LIU ; Yu-Lu MA ; Fang FANG ; Rui WANG ; Wen-Guo YANG ; Chen-Xiao SHAN ; Yong BIAN ; Hui YAN ; Zhi-Jie ZHANG ; AO WULIJI ; Jin-Ao DUAN
China Journal of Chinese Materia Medica 2021;46(12):3133-3143
To study the effect of mineral Chloriti Lapis on pulmonary metabolites and metabolic pathways in lung tissues of rats with acute exacerbation of chronic obstructive pulmonary disease(AECOPD). The AECOPD rat model of phlegm heat syndrome was replicated by the method of smoking combined with Klebsiella pneumoniae infection. Except for using UPLC-Q-TOF-MS analysis, SPSS 18.0, SIMCA 13.0 and other software were also used for statistical analysis. Through literature search and online database comparison, the differential metabolites were identified, and the possible metabolic pathways were analyzed. After 15 days of administration, PLS-DA analysis was carried out on lung tissue samples of rats in each group. The results showed that the metabolic profiles of lung tissues of rats in each group could be well separated, which indicated that Chloriti Lapis and aminophylline had significant intervention effect on the lung metabolic profile of rats with AECOPD. Moreover, the metabolic profile of Chloriti Lapis group was closer to that of control group, and the intervention effect was better than that of aminophylline group. As a result, 15 potential differential metabolites were identified: phytosphingosine, sphinganine, tetradecanoylcarnitine, L-palmitoylcarnitine, elaidic carnitine, lysoPC[18∶2(9Z,12Z)], lysoPC(16∶0), lysoPC[18∶1(9Z)], lysoPC(18∶0), stearic acid, lysoPC(15∶0), arachidonic acid, docosapentaenoic acid, linoleic acid and palmitic acid. Among them, Chloriti Lapis could significantly improve the levels of 10 differential metabolites of phytosphingosine, tetradecanoylcarnitine, L-palmitoylcarnitine, elaidic carnitine, lysoPC[18∶2(9Z,12Z)], lysoPC(16∶0), lysoPC[18∶1(9Z)], stearic acid, lysoPC(15∶0), and palmitic acid(P<0.05). The intervention effect of Chloriti Lapis group was better than that of aminophylline group. Analysis of metabolic pathways showed that there were 8 possible metabolic pathways that could be affected, and three of the most important metabolic pathways(pathway impact>0.1) were involved: linoleic acid metabolism, arachidonic acid metabolism, and sphingolipid metabolism. Chloriti Lapis had obvious intervention effects on lung tissue-related metabolites and metabolic pathways in rats with AECOPD, and the effect was better than that of aminophyllinne.
Animals
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Lung
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Medicine, Chinese Traditional
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Metabolomics
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Minerals
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Pulmonary Disease, Chronic Obstructive
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Rats