1.Study on anti-angiogenesis effect of three curcumin pigments and expression of their relevant factors.
Yan-fen HUANG ; Xue-xin ZHU ; Zhi-shan DING ; Gui-yuan LV
China Journal of Chinese Materia Medica 2015;40(2):324-329
To study the in vitro anti-angiogenesis effect of three curcumin pigments (curcumin, demethoxycurcumin, bisdemethoxycurcumin). In the study, the inhibitory effect of the three curcumin pigments on proliferation of HUVEC cells induced by OX-LDL and the effect on migration of HUVEC cells were detected. The effect on neovascularization was observed by chorioallantoic membrane (CAM) test. The effect on cell adhesion factors ICAM-1 and VCAM-1 of HUVECs were tested by Real-time RT-PCR. It was found that the three curcumins could inhibit the proliferation of HUVEC cells induced by OX-LDL within the dosage range 4, 8, 16 mg x L(-1), with a dose-dependence. The proliferative effect of curcumins on HUVECs was greater than the other two derivatives (P < 0.01). All of the three curcumin pigments inhibited the migration of HUVEC cells and the angiogenesis of chick chorioallantoic membrane (CAM). The migration inhibition rate of curcumins at middle and high concentrations was greater than the other two (P < 0.01). All of the three curcumin could down-regulate the expression of VEGF and ICAM-1, and curcumins showed more obvious effect in down-regulating VEGF than demethoxycurcumin and bisdemethoxycurcumin(P < 0.01); Bisdemethoxycurcumin showed the most significant effect in down-regulating ICAM-1 (P < 0.01). All of the three showed no remarkable effect on expression of VCAM-1, and only bisdemethoxycurcumin showed the down-regulating effect (P < 0.05). According to the findings, all of the three curcumin pigments could resist angiogenesis by inhibiting proliferation and migration of endothelial cells and down-regulating the expression of VEGF and adhesion molecules ICAM-1.
Angiogenesis Inhibitors
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pharmacology
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Animals
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Cell Movement
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drug effects
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Cells, Cultured
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Chorioallantoic Membrane
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drug effects
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Curcumin
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analogs & derivatives
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pharmacology
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Humans
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Intercellular Adhesion Molecule-1
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genetics
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RNA, Messenger
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analysis
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Vascular Cell Adhesion Molecule-1
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genetics
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Vascular Endothelial Growth Factor A
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genetics
3.Effect of extracts from Dendrobii ifficinalis flos on hyperthyroidism Yin deficiency mice.
Shan-shan LEI ; Gui-yuan LV ; Ze-wu JIN ; Bo LI ; Zheng-biao YANG ; Su-hong CHEN
China Journal of Chinese Materia Medica 2015;40(9):1793-1797
Some unhealthy life habits, such as long-term smoking, heavy drinking, sexual overstrain and frequent stay-up could induce the Yin deficiency symptoms of zygomatic red and dysphoria. Stems of Dendrobii officinalis flos (DOF) showed the efficacy of nourishing Yin. In this study, the hyperthyroidism Yin deficiency model was set up to study the yin nourishing effect and action mechanism of DOF, in order to provide the pharmacological basis for developing DOF resources and decreasing resource wastes. ICR mice were divided into five groups: the normal control group, the model control group, the positive control group and DOF extract groups (6.4 g · kg(-1)). Except for the normal group, the other groups were administrated with thyroxine for 30 d to set up the hyperthyroidism yin deficiency model. At the same time, the other groups were administrated with the corresponding drugs for 30 d. After administration for 4 weeks, the signs (facial temperature, pain domain, heart rate and autonomic activity) in mice were measured, and the facial and ear micro-circulation blood flow were detected by laser Doppler technology. After the last administration, all mice were fasted for 12 hours, blood were collected from their orbits, and serum were separated to detect AST, ALT, TG and TP by the automatic biochemistry analyzer and test T3, T4 and TSH levels by ELISA. (1) Compared with the normal control group, the model control group showed significant increases in facial and ear micro-circulation blood flow, facial temperature and heart rate (P < 0.05, P < 0.01), serum AST, ALT (P < 0.01), T3 level (P < 0.05), TSH level (P < 0.05) and notable deceases in pain domain (P < 0.01), TG level (P < 0.01). (2) Compared with the model control group, extracts from DOF (6 g · kg(-1)) could notably reduce facial and ear micro-circulation blood flow, facial temperature and heart rate (P < 0.05, P < 0.01) and AST (P < 0.05) and enhance pain domain (P < 0.01) and TG (P < 0.01). Extracts from DOF (4 g · kg(-1)) could remarkably reduce AST and ALT levels (P < 0.01, 0.05). Extracts from DOF (6 g · kg(-1) 4 g · kg(-1)) could significantly reduce T3 and increase serum TSH level (P < 0.05). DOF could improve Yin deficiency symptoms of zygomatic red and dysphoria in mice as well as liver function injury caused by overactive thyroid axis. According to its action mechanism, DOF may show yin nourishing and hepatic protective effects by impacting thyroxin substance metabolism, improving micro-circulation and reducing heart rate.
Animals
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Dendrobium
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chemistry
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Drugs, Chinese Herbal
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administration & dosage
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Female
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Flowers
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chemistry
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Humans
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Hyperthyroidism
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drug therapy
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metabolism
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Male
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Mice
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Mice, Inbred ICR
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Phytotherapy
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Thyroxine
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metabolism
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Yin Deficiency
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drug therapy
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metabolism
4.Effects of panaxadiol saponin on TLR2 and TLR9 mRNA expression in LPS induced shock rats
Zhi WANG ; Hong-Yan LI ; Wen-Wei LV ; Shan-Shan LIU ; Gui-Fang MU ; Yang LI ; Lian-Kun SUN
Chinese Journal of Pathophysiology 1986;0(01):-
AIM:To explore the molecular mechanism of panaxadiol saponin(PDS)by observing Toll like receptor(TLR)2 and TLR9 mRNA expression induced by lipopolysaccharide(LPS).METHODS:Rats were divided into LPS,LPS+PDSL,LPS+PDSM and control group,respectively.Nitric oxide synthase(NOS)activity,nitric oxide(NO)content,LPO content,SOD activity and TLR2 and TLR9 mRNA expression were assayed 4 h after intravenous injection of LPS.RESULTS:NOS activity,NO content,LPO content of LPS+PDSL group and LPS+PDSM group were significantly lower than those in LPS group.TLR2 mRNA expression in the liver tissue of LPS+PDSL group and LPS+PDSM group was decreased compared with LPS group.CONCLUSION:PDS has a protective effect on liver tissues by triggering the down-regulation of TLR2 expression,reducing NOS activity,and NO content.
5.Study function of endophytic fungus in parasitism process of mistletoe.
Zhi-Shan DING ; Fu-Sheng JIANG ; Bo JIN ; Li XU ; Ni-Pi CHEN ; Gui-Yuan LV
China Journal of Chinese Materia Medica 2008;33(11):1243-1246
OBJECTIVETo research the function of endophytes of mistletoe in parasitism process of mistletoe in Pterocarya stenoptera.
METHODEndophytes from eight different parts of the mistletoe were separated by explant culture, and further screened by different CMC plates culture and DNS method to get cellulase high productive strains. The distribution of the endophytic fungus parasitized in mistletoe were prepared and stained to demonstrate by histological section of the intumescentia part of the P. stenoptera.
RESULTThe histological section indicated that aboundent of hyphasma were distributed around the haustorium of the mistletoe. Eighty three strains of endophytic fungus were separated, 38 of them were able to degrade cellulose, 19 strains showed high cellulase activity and 10 of which were separated from the parasitic position.
CONCLUSIONEndophytic fungus of mistletoe can secrete cellulase and assist the haustorium of mistletoe to breakthrough the cell walls as well as intercellular space tissues of the P. stenoptera, thus, the endophytic fungus plays an important role in the parasitism process of mistletoe in P. stenoptera.
Cellulase ; metabolism ; Cellulose ; metabolism ; Fungi ; metabolism ; Juglandaceae ; Symbiosis ; Viscum ; cytology ; microbiology
6.Chinese experts′consensus on protocol of breakpoints setting of new antibacterial agents for clinical trial
Yun LI ; Bo ZHENG ; Yuan LV ; Min-Ji WEI ; Ai-Lian SHAN ; Zhao-Long CAO ; Ruo-Yu LI ; Qin-Ping LIAO ; Ming-Gui LIN ; Xiao-Ju LV ; Xiao-Jun MA ; Yun-Xing NI ; Ming-Qing TONG ; Rui WANG ; Ying-Chun XU ; Xue-Fu YOU ; Jing ZHANG ; Qiong ZHANG ; Sui-Yang ZHANG ; Ming ZHAO ; Qing-Shan ZHENG ; Chao ZHUO
The Chinese Journal of Clinical Pharmacology 2015;(11):1069-1076
Clinical breakpoints are used in phaseⅡorⅢclinical trials to categorize microorganisms if susceptibility to new tested antibacterial agents that means the patient infected by the pathogen will be enrolled the study or not.The role of this consensus is to define procedure and required data to setting breakpoints and how to revaluate it in clinical trials.
7.Determination of morroniside concentration in rat plasma by high performance liquid chromatography-tandem mass spectrometry.
Shan XIONG ; Jing-Lai LI ; Xiu-Qing ZHU ; Xiao-Ying WANG ; Gui-Yuan LV ; Zhen-Qing ZHANG
China Journal of Chinese Materia Medica 2013;38(19):3378-3381
Morroniside, an iridoid glycoside extracted from Cornus officinalis, has multiple pharmacological effects such as neuroprotection. This study took the lead in establishing a method for determining morroniside concentration in rat plasma by high performance liquid chromatography-tandem mass spectrometry. Plasma samples were processed with protein precipitation method, with hyperoside as the internal standard. An Inertsil C8-3 column (2. 1 mm x 50 mm, 5 microm) was adopted, with a mobile phase composed of water (containing 1 mmol L-1 Sodium formate)-acetonitrile (gradient elution) at a flow rate of 0.4 mL . min -1. Electrospray ionization (ESI) was adopted in the positive ion mode for multi-reaction monitoring (MRM). Morroniside showed a good linear relationship ranging between 2-5 000 microg L-1 (r = 0. 995 7), with the minimum limit of quantification of 2 microg L-1. Its precise, accuracy, recovery and matrix effect were all in line with the biological sample measurement requirements. Therefore, the method described above was proved to be suitable for the determination of morroniside concentration in rat plasma. To use the method in the pharmacokinetic study on morroniside in rats, oral administration dose shall be set at 20 mg . kg - to map the plasma concentration-time curve. Main pharmacokinetic parameters were calculated by DAS 2. 0. Specifically, AUC0-inifinity was (587.6 +/- 290. 7) microg min L-1, Cmax was (334.2+/-148.0) microg L-1, Tmax was (0.6 +/-0.3) h, t1/2 was (0.7+/-0.3) h.
Animals
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Chromatography, High Pressure Liquid
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methods
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Glycosides
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blood
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Male
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Rats
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Reproducibility of Results
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Spectrometry, Mass, Electrospray Ionization
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Tandem Mass Spectrometry
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methods