1.Research on extraction of Zizyphus jujuba planting area in Jia county of Shaanxi.
Wen-Jing HUANG ; Xing-Hang CAI ; Yan-Lei ZHANG ; Yan-Ni LIANG ; Nan WANG ; Bo LI ; Rong-Rong XU ; Xiao-Bo ZHANG ; Ting-Ting SHI ; Zhi-Shu TANG
China Journal of Chinese Materia Medica 2019;44(19):4116-4120
With digital satellite remote sensing image data of GF-1,in 2018 the object-oriented classification method was used to extract Zizyphus jujuba planting area in Jia county of Shaanxi province. The results showed that the remote sensing classification method based on rule set could extract and reckon Z. jujube planting area in the study area effectively. The planting area of Z. jujube in Jia county was about 5. 34×104 hm2 and the area of consistent accuracy was 97. 92%. The method used in this study could provide a technical reference for the area extraction of the same type of medicinal materials. And it is of great significance to provide decision support for the protection and utilization of Z. jujube resources.
Agriculture
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China
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Drugs, Chinese Herbal
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Medicine, Chinese Traditional
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Ziziphus
2.Studies on the Chemical Constituents from the Seeds of Zizyphus jujuba var. inermis.
Nam Kyung LEE ; Hyun Jung SHIN ; Wan Seok KIM ; Gyo IN ; Chang Kyun HAN
Natural Product Sciences 2017;23(4):258-264
This study analyzed the seeds of Zizyphus jujuba var. inermis commonly used as a remedy in traditional Chinese medicine, in order to determine its various biologically active compounds. Through process 3-pentadecylcatechol, ρ-menth-8-ene, and γ-bisabolene were isolated and identified for the first time which are urushiol, monoterpenoidal, and sesquiterpenoidal compounds, respectively. Also, found were another sesquiterpenoidal compounds, vomifoliol, and four steroidal compounds, β-sitosterol, stigmasterol, stigmasta-5,23-dien-3β-ol, and stigmast-4-en-3-one. In addition, fourteen triterpenoidal compounds were isolated and identified. These were lupeol, betulinic acid, betulinaldehyde, alphitolic acid, 3-O-cis-ρ-coumaroyl-alphitolic acid, 3-O-trans-ρ-coumaroylalphitolic acid, 2-O-cis-ρ-coumaroyl-alphitolic acid, 2-O-trans-ρ-coumaroyl-alphitolic acid, zizyberanalic acid, ceanothic acid, oleanolic acid, maslinic acid, 3-O-cis-ρ-coumaroyl-maslinic acid, and 3-O-trans-ρ-coumaroylmaslinic acid. The structures were identified by comparing of the spectroscopic experiments, NMR and MS, and then compared that reported data, respectively. Three extracts of water, methanol, and chloroform from the seeds showed a weak anti-proliferative effect, anti-microbial activity, and anti-oxidant effect, respectively.
Antioxidants
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Chloroform
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Medicine, Chinese Traditional
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Methanol
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Oleanolic Acid
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Stigmasterol
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Water
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Ziziphus*
3.Investigation of aflatoxins,mycobiota,and toxigenic fungi during post-harvest handling of Ziziphi Spinosae Semen.
Xi-Mei ZHANG ; Wei-Wei GAO ; Yan-Hong HAO ; Xiao-Lin JIAO ; Bao-Lin GUO ; Ya-Lin XUE ; Jian-Ting BAI ; Zhen-Hong LEI
China Journal of Chinese Materia Medica 2019;44(10):2009-2014
Ziziphi Spinosae Semen is one of the Chinese herbal medicine being susceptible to aflatoxins contamination. To investigate the sources of aflatoxins contamination and toxigenic fungi species on Ziziphi Spinosae Semen,32 samples were collected from multiple steps during the post-harvest processing in this study. Aflatoxins in these samples were determined by immunoaffinity column and HPLC coupled with post-column photochemical derivatization. The dilution-plate method was applied to the fungi isolation. The isolated fungi strains were identified by morphological characterization and molecular approaches. The results showed that aflatoxins were detected in 28 samples from every step during the processing of Ziziphi Spinosae Semen. Three samples were detected with aflatoxin B_1 and 2 samples with both aflatoxin B_1 and total aflatoxin exceeding the limit of Chinese Pharmacopoeia. Especially the samples from the washing step,with the highest detected amounts of AFB_1 and AFs were reached 94. 79,121. 43 μg·kg~(-1),respectively. All 32 samples were contaminated by fungi. The fungal counts on the newly harvested samples were 2. 20 × 10~2 CFU·g~(-1). Moreover,it increased as tphreocessing progresses,and achieved 1. 16×10~6 CFU·g~(-1) after washing. A total of 321 isolates were identified to 17 genera. Aspergillus flavus was the main source of aflatoxins during the processing and storage of Ziziphi Spinosae Semen. One isolate of A. flavus was confirmed producing AFB_1 and AFB_2. The fungal count was significantly increased by composting,and Aspergillus was the predominant genus after shell breaking. The contamination level of aflatoxins was increased by composting and washing.
Aflatoxins
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analysis
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Aspergillus
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Chromatography, High Pressure Liquid
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Fungi
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isolation & purification
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Seeds
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chemistry
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microbiology
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Ziziphus
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chemistry
4.Determination of zizybeoside II of Ziziphus jujuba by HPLC.
Ji-Wei NIU ; Qi-Wei ZHANG ; Mu-Xin GONG ; Li-Hua YAN ; Jing-Jing ZHU ; Zhi-Min WANG ; Qin-Fan LI
China Journal of Chinese Materia Medica 2008;33(24):2935-2937
OBJECTIVETo develop a quantitative method for determination of zizybeoside II in Ziziphus jujuba.
METHODThe samples were separated at 30 degrees C on a Zorbax SB-C18 column eluted with methanol-water (20 : 80) as the mobile phase. Flow rate was set at 1.0 mL x min(-1) and the detection wavelength was set at 210 nm.
RESULTThe calibration curve was linear within the range from 0.046 to 0.582 microg (r = 0.999 9) and the average recovery was 97.2%. 12 batches of the crude drugs purchased from different areas were determined and the contents of zizybeoside II in Fructus Jujubae were fluctuated from 0.013% to 0.041%.
CONCLUSIONThe method is simple, repeatable and could be used for the quality control of Z. jujuba.
Chromatography, High Pressure Liquid ; methods ; Drugs, Chinese Herbal ; chemistry ; isolation & purification ; Saponins ; analysis ; Ziziphus ; chemistry
5.Study on mechanism of enhancing antioxidant activity in fermented Ziziphi Spinosae Semen with Poria cocos.
Ze LI ; Yu-Jun XIE ; Hui-Zhu DUAN ; Xiao-Fang CUI ; Xiang-Ping PEI ; Yan YAN ; Chen-Hui DU
China Journal of Chinese Materia Medica 2021;46(3):620-629
In this study, the antioxidant property changes in fermented Ziziphi Spinosae Semen(FZSS) with Poria cocos were analyzed by DPPH, ABTS and FRAP methods. Then the content determination of active ingredients and ~1H nuclear magnetic resonance(~1H-NMR) spectroscopy were also used to investigate the mechanism of FZSS with P. cocos in enhancing the antioxidant activity. The results showed that the content of active ingredients such as total phenols, total saponins and total polysaccharides were significantly increased during the fermentation time. The results of ~1H-NMR metabonomics showed that the contents of amino acids such as leucine, lysine, valine and alanine, nitrogen compounds such as creatine, creatinine, and betaine, and secondary metabolites, for instance, jujuboside A and spinosin were higher after fermentation, and above components showed positive correlation with antioxidant capacity in Pearson correlation analysis. Therefore, it was inferred that the enhancement of antioxidant activity of FZSS may be the result of the joint action of various chemical components. This study preliminarily clarified the mechanism of FZSS in enhancing the antioxidant activity, and provided new research ideas for the product development and utilization of FZSS.
Antioxidants
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Chromatography, High Pressure Liquid
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Drugs, Chinese Herbal
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Poria
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Semen
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Wolfiporia
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Ziziphus
6.Analysis and health risk assessment of aflatoxin B_1 residue in Ziziphi Spinosae Semen.
Mei-Feng SUN ; Xiao-Wen DOU ; Lei ZHANG ; Jian-Hua WANG ; Ming ZHAO ; Zhen OUYANG ; Mei-Hua YANG
China Journal of Chinese Materia Medica 2019;44(23):5078-5082
This study aimed to analyze the residues of aflatoxin B_1( AFB_1) in Ziziphi Spinosae Semen from different producing areas and to assess the health risk of aflatoxin B_1 residue based on the obtained data. A total of 72 samples of Ziziphi Spinosae Semen from different areas were detected by IAC-HPLC-FLD. Based on the data of AFB_1 pollution,a probabilistic assessment model with Monte Carlo simulation was developed. Then,the risk assessment of AFB_1 exposure by Ziziphi Spinosae Semen intake was carried out by MOE( margin of exposure). The results showed that 32 out of 72 of samples( 44. 4%) were found to be contaminated with AFB_1,and the average and maximum concentration of AFB_1 in samples was 5. 42 μg·kg~(-1) and 55. 09 μg·kg~(-1),respectively. After health risk assessment,the average and 97. 5%( 90% confidence interval) exposure level of daily exposure of AFB_1 by Ziziphi Spinosae Semen intake were 0. 008 6( 0. 008 1-0. 009 2) and 0. 057 3( 0. 053 2-0. 061 4) μg·kg~(-1)·d~(-1),respectively. The results showed common use of Ziziphi Spinosae Semen had low level of risk associated with AFB_1. However,the high consumption of Ziziphi Spinosae Semen showed a higher risk than common intake,requiring attention. This study laid a foundation for clinical safe prescription of Ziziphi Spinosae Semen.
Aflatoxin B1/analysis*
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Chromatography, High Pressure Liquid
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Drug Contamination
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Plant Preparations/analysis*
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Risk Assessment
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Ziziphus/chemistry*
7.Advances in pharmacological effects of jujuboside B.
Xiao-Na DONG ; Meng-Ting LI ; Hui-Yang GU ; Ye ZHU ; Xiang GU
China Journal of Chinese Materia Medica 2023;48(16):4295-4301
Ziziphi Spinosae Semen(ZSS) is an edible TCM derived from the dried ripe seeds of Ziziphus jujube Mill. var. spinosa(Bunge)Hu ex H. F. Chou(Rhamnaceae), which has the effects of nourishing the heart, tonifying the liver, calming the heart, tranquilizing the mind, arresting sweating, and promoting fluid production, and is widely used in the treatment and health care of diseases related to cardiovascular, nervous, and immune systems. Jujuboside B(JuB), one of the main active ingredients of ZSS, possesses various pharmacological effects with application values. This paper reviewed the chemical structure and pharmacological effects of JuB. JuB has sedative, hypnotic, antitumor, anti-platelet, anti-inflammatory, and other biological activities, which shows the potential thera-peutic effects on insomnia, tumors, coronary artery disease, airway inflammation, and liver injury. However, there are some limitations to the results of current studies. More comprehensive studies, including basic research and clinical trials, need to be carried out to provide more reliable evidence.
Humans
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Drugs, Chinese Herbal/pharmacology*
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Saponins/pharmacology*
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Hypnotics and Sedatives
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Sleep Initiation and Maintenance Disorders
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Ziziphus/chemistry*
8.Anti-Influenza Activity of Betulinic Acid from Zizyphus jujuba on Influenza A/PR/8 Virus.
Eun Hye HONG ; Jae Hyoung SONG ; Kyo Bin KANG ; Sang Hyun SUNG ; Hyun Jeong KO ; Heejung YANG
Biomolecules & Therapeutics 2015;23(4):345-349
Betulinic acid, a pentacyclic triterpene isolated from Jujube tree (Zizyphus jujuba Mill), has been known for a wide range of biological and medicinal properties such as antibacterial, antimalarial, anti-inflammatory, antihelmintic, antinociceptive, and anticancer activities. In the study, we investigated the antiviral activity on influenza A/PR/8 virus infected A549 human lung adenocarcinoma epithelial cell line and C57BL/6 mice. Betulinic acid showed the anti-influenza viral activity at a concentration of 50 muM without a significant cytotoxicity in influenza A/PR/8 virus infected A549 cells. Also, betulinic acid significantly attenuated pulmonary pathology including increased necrosis, numbers of inflammatory cells and pulmonary edema induced by influenza A/PR/8 virus infection compared with vehicle- or oseltamivir-treated mice in vivo model. The down-regulation of IFN-gamma level, which is critical for innate and adaptive immunity in viral infection, after treating of betulinic acid in mouse lung. Based on the obtained results, it is suggested that betulinic acid can be the potential therapeutic agent for virus infection via anti-inflammatory activity.
Adaptive Immunity
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Adenocarcinoma
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Animals
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Down-Regulation
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Epithelial Cells
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Humans
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Inflammation
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Influenza, Human*
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Lung
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Mice
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Necrosis
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Pathology
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Pulmonary Edema
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Trees
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Ziziphus*
9.Effect of Ginseng Extracts on Production of Vacuolating Toxin by Helicobacter pylori.
Myung Woong CHANG ; Gap Young SONG ; Hyeong Soo CHA
Journal of the Korean Society for Microbiology 1997;32(5):539-552
This study was carried out to survey the prevalence of Helicobacter pylori infection and the incidence of vacuolating toxin producing H. pylori from the gastric biopsy specimens of patients with 178 gastritis, 57 gastric ulcer, 455 gastric cancer and 44 healthy person in Pusan, Korea. Further aim of this study was to evaluate the effect of ginseng extract, sofalcone, ginsenosides (F1, Rb3, Re, Rgl), sangwha, green, arrowroot, ginger, and jujube tea on the activity and production of vacuolating toxin by H. pylori in vitro. The isolation rates of H. pylori by culture method from gastric biopsy specimens were 34.1% in healthy person, 42.1% in gastritis, 36.8% in gastric ulcer, and 39.3% in gastric cancer. The isolation rates of vacuolating toxin producing H. pylori from gastric biopsy specimens were 80% in healthy person, 82.7% in gastritis, 81% in gastric ulcer, and 83.8% in gastric cancer. The growth of H. pylori was not influenced by the addition of 10 ug/ml or 100 ug/ml of Ginseng extract and 10 ug/ml of sofalcone in the medium, but the production of vaculating toxin of H. pylori was significantly inhibited by the addition of 100 ug/ml of Ginseng extract and sofalcone. The activity of vacuolating toxin in the culture supernatant of H. pylori was significantly diminished (1/2-1/16 compared to control) by the addition of 10 mg/ml of sangwha, green, arrowroot, and ginger tea, and 1 ug/ml of ginsenosides F1, Rb3, Re, and Rgl. These results suggest that the isolation rates of vacuolating toxin producing H. pylori were significantly higher than that of the foreign reports. Ginseng extract and sofalcone have direct inhibitory effect on the activity of vacuolating toxin production by H. pylori without considerable growth inhibition and sangwha, green, arrowroot, and ginger tea have direct inhibitory effect on the activity of vacuolating toxin of H. pylori.
Biopsy
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Busan
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Gastritis
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Ginger
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Ginsenosides
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Helicobacter pylori*
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Helicobacter*
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Humans
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Incidence
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Korea
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Marantaceae
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Panax*
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Prevalence
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Stomach Neoplasms
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Stomach Ulcer
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Tea
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Ziziphus
10.Structure identification of jujuboside D.
Qin-xiang LIU ; Bin WANG ; Hong LIANG ; Yu-ying ZHAO ; Meng-jun LIU
Acta Pharmaceutica Sinica 2004;39(8):601-604
AIMTo study the chemical constituents of Ziziphus jujuba Mill var. Spinosa (Bunge) Hu ex. H. F. Chou.
METHODSTo separate the constituents by using various kinds of chromatography and identify their structures on the basis of spectral analysis.
RESULTSFive compounds were isolated and their structures were established as jujuboside D (1), jujuboside A (2), 5,7,4'-trihydroxyflavonol-3-O-beta-D-rhamnopyranosyl-(1-->6)-beta-D-glucopyranoside (3), 6'''-coumaroylspinosin (4) and phenylalanine (5).
CONCLUSIONCompound 1 is a new compound named jujuboside D, 4 is reported as rotamer for the first time, 3 and 5 isolated from this plant for the first time.
Molecular Conformation ; Molecular Structure ; Phenylalanine ; chemistry ; isolation & purification ; Plants, Medicinal ; chemistry ; Saponins ; chemistry ; isolation & purification ; Seeds ; chemistry ; Ziziphus ; chemistry