2.Metabolites and metabolic pathways of mesaconitine in rat liver microsomal investigated by using UPLC-MS/MS method in vitro.
Yun-Feng BI ; Shu LIU ; Rui-Xing ZHANG ; Feng-Rui SONG ; Zhi-Qiang LIU
Acta Pharmaceutica Sinica 2013;48(12):1823-1828
Mesaconitine was incubated with rat liver microsomes in vitro. The metabolites of mesaconitine in rat liver microsomes were identified by ultra performance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS) method with high resolution power. A typical reaction mixture of 100 mol L-1 Tris-HCI buffer (pH 7.4) containing 0.5 gL-1 microsomal protein and 50 micro molL-1 mesaconitine was prepared. The above reaction mixture was divided into six groups, and the volume of each group was 200 micro L. The incubation mixture was pre-incubated at 37 degrees C for 2 min and the reactions were initiated by adding NADPH generating system. After 90 min incubation at 37 degrees C, 200 micro L of acetonitrile was added to each group to stop the reaction. The metabolites of mesaconitine were investigated by UPLC-MS/MS method. Mesaconitine and 6 metabolites M1-M6 were found in the incubation system. The structures were characterized according to the data from MS/MS spectra and literatures. The metabolic reactions of mesaconitine in rat liver microsomes included the demethylation, deacetylation, dehydrogenation and hydroxylation. The major metabolic pathways of mesaconitine in rat liver microsomes were determined by UPLC-MS/MS on multiple reaction monitoring (MRM) mode combined with specific inhibitors of cytochrome P450 (CYP) isoforms, including alpha-naphthoflavone (CYP1A2), quinine (CYP2D), diethyldithiocarbamate (CYP2E1), ketoconazole (CYP3A) and sulfaphenazole (CYP2C), separately. Mesaconitine was mainly metabolized by CYP3A. CYP2C and CYP2D were also more important CYP isoforms for the metabolism reactions of mesaconitine, but CYP1A2 and CYP2E1 haven't any contribution to MA metabolism in rat liver microsomes.
Aconitine
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analogs & derivatives
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metabolism
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Animals
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Chromatography, High Pressure Liquid
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Cytochrome P-450 CYP3A
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metabolism
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Cytochrome P-450 CYP3A Inhibitors
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Cytochrome P-450 Enzyme Inhibitors
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Cytochrome P-450 Enzyme System
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metabolism
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Enzyme Inhibitors
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pharmacology
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Ketoconazole
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pharmacology
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Male
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Metabolic Networks and Pathways
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Microsomes, Liver
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enzymology
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metabolism
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Quinine
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pharmacology
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Rats
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Rats, Sprague-Dawley
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Sulfaphenazole
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pharmacology
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Tandem Mass Spectrometry
3.Altered intracellular Ca~(2+) channel function of cultured asthmatic guinea pig airway smooth muscle cells
Rui FENG ; Zhi LI ; Zan TENG ; Yu CAO
Chinese Pharmacological Bulletin 1987;0(01):-
0.05). Conclusion Ryanodine receptor of asthmatic guinea-pig showed hypersensitivity. Under specified condition, the characteristics of ryanodine receptor still retains in subcultured ASMCs of asthmatic guinea-pig.
5.The metabolic fingerprint of the compatibility of Radix Aconite and Radix Paeoniae Alba and its effect on CYP450 enzymes.
Yun-Feng BI ; Zhong ZHENG ; Zi-Feng PI ; Zhi-Qiang LIU ; Feng-Rui SONG
Acta Pharmaceutica Sinica 2014;49(12):1705-1710
Using a UPLC-MS/MS (MRM) and cocktail probe substrates method, the metabolic fingerprint of the compatibility of Radix Aconite (RA) and Radix Paeoniae Alba (RPA) and its effect on CYP450 enzymes were investigated. These main CYP isoforms include CYP 1A2, CYP 2C, CYP 2E1, CYP 2D and CYP 3A. Compared with the inhibition effect of RA decoctions on CYP450 isoforms, their co-decoctions of RA and RPA with different proportions can decrease RA' inhibition on CYP3A, CYP2D, CYP2C and CYP1A2, but can not reduce RA' effect on CYP2E1. The metabolic fingerprints of RA decoction and co-decoctions with different proportions of RPA in CYP450 of rat liver were analyzed by UPLC-MS. Compared with the metabolic fingerprints of RA decoction, the intensity of diester-diterpenoid aconitum alkaloids decreased significantly, while the intensity of monoester-diterpenoid alkaloids significantly increased in the metabolic fingerprints of co-decoctions of RA and RPA. The results suggest that RA coadministration with RPA increased the degradation of toxic alkaloid and show the effect of toxicity reducing and efficacy enhancing.
Aconitum
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chemistry
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Alkaloids
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chemistry
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Animals
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Chromatography, High Pressure Liquid
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Cytochrome P-450 Enzyme Inhibitors
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chemistry
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Drugs, Chinese Herbal
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chemistry
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Liver
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drug effects
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enzymology
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Metabolome
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Paeonia
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chemistry
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Rats
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Tandem Mass Spectrometry
6.High performance preparation and structural confirmation of lignans from Schisandrae chinensis fructus by using HSCCC combined with ESI-MSn method.
Xiao-Li YU ; Zi-feng PI ; Xiu-Li HU ; Feng-Rui SONG ; Zhi-Qiang LIU
Acta Pharmaceutica Sinica 2014;49(1):78-82
High-speed counter-current chromatography (HSCCC) was used to high performance separate and prepare lignans from Schisandrae chinensis fructus. The solvent system is composed of n-hexane-ethyl acetate-methanol-water (9 : 1 : 5 : 5) and n-hexane-ethyl acetate-methanol-water (9 : 1 : 9 : 5), speed is at 900 r.min-1, and flow rate is at 2.0 mL.min-1. Five fractions from Schisandrae chinensis fructus extract were separated and prepared with one HSCCC process. They were identified as schisandrin, gomisin J, schisandrol B, schisantherin A and deoxyschizandrin by electrospray ionization-multiple tandem mass spectrometry (ESI-MSn), respectively. Their contents were obtained in 98.74%, 94.32%, 99.53%, 94.23% and 98.68% by ultra high performance liquid chromatography (UPLC), separately. The rapid and simple method can be applied for the preparation of lignans from Schisandrae chinensis fructus.
Countercurrent Distribution
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Cyclooctanes
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chemistry
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isolation & purification
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Dioxoles
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chemistry
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isolation & purification
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Drugs, Chinese Herbal
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chemistry
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isolation & purification
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Fruit
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chemistry
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Lignans
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chemistry
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isolation & purification
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Molecular Structure
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Plants, Medicinal
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chemistry
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Polycyclic Compounds
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chemistry
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isolation & purification
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Schisandra
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chemistry
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Spectrometry, Mass, Electrospray Ionization
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Tandem Mass Spectrometry
7.Adeno-associated vector mediated intracellular biological activity of human Kallistatin.
Xun-Wei DUAN ; Si-Yi CHEN ; Feng WANG ; Zhi-Yun CHENG ; Ming-Qing TANG ; Rui-An XU
Acta Pharmaceutica Sinica 2014;49(7):993-999
Human tissue kallikrein-binding protein (Kallistatin, KAL), a secretory protein that participates in the regulation of multiple signaling pathways by binding to the extracellular receptor, however, at present has not been reported about the intracellular activity, and whether it has the similar biological activity with extracellular activity. Here we constructed no signal peptide KAL (NSK) into the adeno-associated virus vector to explore the intracellular activity of KAL. Both the endothelial cell and lung cancer cells could express KAL, but not secreted after rAAV2-NSK transfection. The proliferation and migration of human umbilical vein endothelial cells (HUVECs) were inhibited, but the apoptosis rate was not affected. The proliferation rates, mobility and tubule formation of all the three tested lung cancer cells, such as NCI-H446, NCI-H460 and A549, were inhibited to different extents. This cellular study not only confirmed the intracellular activity, but also suggested it may serve as a kind of "balance factor" in multi-targeted controlling, which may provide a new train of thoughts to explain the regulatory contradiction in PI3K-Akt signaling pathways by KAL.
Apoptosis
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Cell Proliferation
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Dependovirus
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Genetic Vectors
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Human Umbilical Vein Endothelial Cells
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metabolism
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Humans
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Lung Neoplasms
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metabolism
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Serpins
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metabolism
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Signal Transduction
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Transfection
8.Application of dynamic pupillometer in the evaluation of pupillary light reflex in C57BL/6 mouse
Rui, LIU ; Lei, ZHANG ; Hao, ZHANG ; Wen-zhi, HU ; Feng, XIA ; Jia, GENG ; Zuo-ming, ZHANG
Chinese Journal of Experimental Ophthalmology 2013;(1):75-80
Background Pupillary light reflex has been widely used in the diagnosis and evaluation of visual system and nervous system diseases.However,in animal experiments,functional evaluation of the visual system and nervous system needs more advanced technology and are affected by many factors.Objective This study was to explore the use of the dynamic pupillometer in evaluating pupillary light reflex and to discuss the influence of brightness of stimulate on relevant curve parameters in C57BL/6 mouse.Methods Ten healthy SPF male C57BL/6 mice were collected in this experiment.White light of five luminance levels (2,8,32,128,256 cd/m2) was used to stimulate the mice following a 2-hour dark adaptation.The stimulation was given at the 60-second intervals,for a duration of 100 ms at every stimulation.An infrared camera and video capture card were used to capture digital images during the measuring process in a scotopic environment,at a speed of 60 frames per second.Measuring outcome was saved in the*.AVI format.A software that was developed by our group was used to determine pupil diameter and output pupillary light reflex curve offline.Pupil initial diameter (R1),constriction amplitude (CA),constriction velocity (CV),latency (T1),time for maximum velocity (T2),time for maximum constriction (T3),time for maximun con-striction to 10.1% R1 re-dilation (RT)and re-dilation velocity (RV)were assessed,and the correlations between luminosity and measuring parameters were analyzed using the Spearman rank correlation.The use of animals followed the Regulations for thd Administration of Affairs Concerning Experimental Animals by State Science and Technology Commission.Results R1 values showed no statistically significant difference among the 5 different luminosity groups(F=1.117,P=0.361).A positive linear correlation was found between stimulating luminosity and CA(r=0.508,P< 0.01),but negative correlations were seen between stimulating luminosity and CV or RV (r=-0.625,-0.609,P<0.01).T1 and T2 values in the 5 different luminosity groups were not statistically significant (F =0.202,P =0.936 ; F =1.584,P =0.195).The different levels of stimulating luminosity showed positive linear correlations with T3 and RT values (r =0.791,0.609,P< 0.01).Conclusions The dynamic pupillometer can quantitatively measure the pupillary light reflex of C57BL/6 mice.The pupillary light reflex dynamic curve parameters of mouse were affected by stimulus luminosity levels.These outcomes offer a basis for the application of the dynamic pupillometer system for measuring pupillary light reflex in animal models.
10.Pharmacokinetic study on peoniflorin, astilbin, rosmarinic acid, isofraxidin and liquiritin in rat blood after oral administration of shaolin xiaoyin tablets.
Rui-Zhi ZHAO ; Yin-Jie WANG ; Li-Min FENG ; Chuan-Jian LU
China Journal of Chinese Materia Medica 2014;39(13):2559-2563
To establish a method for the determination of astilbin, peoniflorin, rasmarinci acid, isofraxidin and liquiritin contained in Shaolin Xiaoyin tablets, in order to lay a foundation for designing late-stage dosage forms and clinical medication schemes. In this paper, efforts were made to establish a method for the determination of the blood concentration of the five components and study the in vivo pharmacokinetics in rats. The blood concentration was determined by HPLC. Phenomenex C18 column (4.6 mm x 250 mm, 5 microm) was adopted and eluted with methanol-acetonitrile-0.05% formic acid, the flow rate was 0.8 mL x min(-1), and the wavelength was 275 nm. The samples were processed by the solid phase extraction method. After oral administration of Shaoling Xiaoyin tablets, the rat bloods were collected at different time points to determine the blood concentrations. The experimental results showed that the baseline separation could be adopted for the five components, and astilbin, peoniflorin, rasmarinci acid, isofraxidin and liquiritin showed good linear relations within ranges of 2.48-248, 0.213 6-21.36, 0.531-53.1, 0.704-70.4, 0.253-25.3 mg x L(-1). All the five components could be absorbed in blood and excreted quickly. The method established in this paper is rapid and accurate, and could be used for in vivo analysis on preparations containing similar components. The main components in Shaoling Xiaoyin tablets could be absorbed and excreted quickly, and thus suitable to be made into sustained release tablets. Common preparations are required to be taken for 4-6 times a day.
Administration, Oral
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Animals
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Chromatography, High Pressure Liquid
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Cinnamates
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blood
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pharmacokinetics
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Coumarins
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administration & dosage
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blood
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pharmacokinetics
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Depsides
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blood
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pharmacokinetics
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Drugs, Chinese Herbal
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analysis
;
pharmacokinetics
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Flavanones
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administration & dosage
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blood
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pharmacokinetics
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Flavonols
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administration & dosage
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blood
;
pharmacokinetics
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Glucosides
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administration & dosage
;
blood
;
pharmacokinetics
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Male
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Monoterpenes
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administration & dosage
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blood
;
pharmacokinetics
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Rats
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Rats, Sprague-Dawley