2.Studies on hydroxyapatite applicatied in coprecipitate of total salvianolic acids phospholipid complex.
Xiao-Yun CHEN ; Zhen-Hai ZHANG ; Dan LIU ; E SUN ; Xiao-Bin JIA
China Journal of Chinese Materia Medica 2014;39(6):992-996
The purpose of this research was to prepare total salvianolic acids-phytosome-HA coprecipitate to improve drug dissolution and its micromeritic properties. Firstly, the coprecipitate was prepared by solvent method and in vitro dissolution of tripterine was performed with the salvianolic acid B and danshensu as criteria. At the same time, the micromeritic properties was characterizated, the structure of samples was characterized by TEM, DSC, XRD and FTIR. Results showed that when the ratio of drug to HA was 1:2, it had a better dissolution, the accumulative drug-release percent in vitro at 60 min was over 90%. At the same time, it has good liquidity and low moisture absorption. Its micromeritic properties have improved. It is proved that the drug still existed amorphously by microstructure analysis. The preparation process is simple and feasible, it has practical value.
Alkenes
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chemistry
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Chemical Precipitation
;
Chemistry, Pharmaceutical
;
methods
;
Durapatite
;
chemistry
;
Phospholipids
;
chemistry
;
Polyphenols
;
chemistry
;
Time Factors
3.Migration of phenolic active ingredients in Danshen Dizhuye during ultrafiltration of hollow fiber membrane.
Ya-Ping CHEN ; Gui-You WANG ; Liang FENG ; Cheng-Liang QI ; Cong-Ping CHEN ; Bing YANG ; Xin-Hong SHI ; Xiao-Bin JIA
China Journal of Chinese Materia Medica 2020;45(3):548-554
Study the suitability of organic film for salvianolic acid in the ultrafiltration process of Danshen Dizhuye. UPLC was used to analyze the migration of nine phenolic active ingredients in Danshen Dizhuye during ultrafiltration of PES hollow fiber membrane and PS hollow fiber membrane. The structural composition of multi-components was analyzed by three different batches of Danshen Dizhuye before and after ultrafiltration of the two membranes. The results showed that 9 phenolic active ingredients in Danshen Dizhuye did not change significantly after ultrafiltration through PES membrane. However, after ultrafiltration through PS membrane, the content of sodium danshensu, protocatechualdehyde, caffeic acid, 3-hydroxy-4-methoxycinnamic acid and rosmarinic acid in Danshen Dizhuye did not change significantly, while salvianolic acid D, salvianolic acid B and lithospermic acid decreased by about 20%, and the content of salvianolic acid A decreased significantly. The final content in equilibrium was only about 20% of the original solution. Therefore, an in-depth study on the migration particularity of salvianolic acid A in ultrafiltration membrane was the focuse. The results showed that the loss of salvianolic acid A was caused by both membranes during ultrafiltration, and salvianolic acid A was lost more in PS membrane. When the membrane was washed and regenerated, it was found that salvianolic acid A was detected in the ethanol washing solution, but not in the washing liquid, indicating that the loss of salvianolic acid A during the ultrafiltration was mainly adsorptive action. The results suggested that the migration of phenolic active ingredients in Danshen Dizhuye during the membrane ultrafiltration process did not completely follow the molecular weight passing rule of the membrane pore size. At the same time, it may be affected by factors, such as the structure of the membrane material, and the interaction between the membrane structure and the structure of components, and exhibit different migration behaviors during the ultrafiltration of the membrane.
Alkenes/chemistry*
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Chromatography, High Pressure Liquid
;
Drugs, Chinese Herbal/chemistry*
;
Polyphenols/chemistry*
;
Salvia miltiorrhiza/chemistry*
;
Ultrafiltration
4.Study on preparation of salvianolic acid phospholipid compound.
Xiao-Yun CHEN ; Zhen-Hai ZHANG ; Dan LIU ; Dan-Hong YU ; E SUN ; Xiao-Bin JIA
China Journal of Chinese Materia Medica 2014;39(2):216-221
To prepare salvianolic acid phospholipid compound. With the compound of salvianolic acids and soybean phospholipid as the index, mono-factor experiment and orthogonal design experiment were conducted to screen its technical parameters. According to the results, the optimal preparation conditions of salvianolic acid phospholipid compound were that THF were taken as the reaction solvent, the concentration time was 3 h, the reactant concentration was 5 g x L(-1), the mass ratio of salvianolic acids and phospholipid was 1: 1.5, and the reaction temperature was 40 degrees C. The oil/water partition coefficient of the prepared salvianolic acid phospholipid compound significant increased in water and buffers with different pH values. The results of phase analysis such as DSC, XRD and FTIR indicated that salvianolic acids existed in phospholipid in an amorphous state.
Alkenes
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chemistry
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metabolism
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Chemical Phenomena
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Chemistry, Pharmaceutical
;
methods
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Intestinal Absorption
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Phospholipids
;
chemistry
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Polyphenols
;
chemistry
;
metabolism
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Soybeans
;
chemistry
;
Temperature
5.Determination of plasma protein binding rate of isopropylidene-shikimic acid.
Hui KONG ; Hongxia XING ; Jin LIU ; Lei YAN ; Longfei LIN ; Jian NI
China Journal of Chinese Materia Medica 2012;37(2):255-257
OBJECTIVETo study the plasma protein binding rate of isopropylidene-shikimic acid.
METHODThe ultrafiltration was employed to determine the plasma protein binding rate of isopropylidene-shikimic acid. The plasma concentrations of isopropylidene-shikimic acid were measured by HPLC.
RESULTThe plasma protein binding rate of isopropylidene-shikimic acid with dog plasma at the concentration of 0.3, 0.15 g x L(-1) and 0.5 mg x L(-1) were (4.36 +/- 0.02)%, (4.12 +/- 0.19)% and (2.23 +/- 0.59)%, respectively. While the plasma protein binding rate of isopropylidene-shikimic acid with normal human plasma at the above concentrations were (11.23 +/- 0.01)%, (10.06 +/- 0.69)% and (9.72 +/- 0.59)%, respectively.
CONCLUSIONThe binding rate of isopropylidene-shikimic acid with plasma protein is low.
Alkenes ; chemistry ; Animals ; Blood Proteins ; metabolism ; Chromatography, High Pressure Liquid ; Dogs ; Humans ; Protein Binding ; Shikimic Acid ; chemistry ; metabolism ; Species Specificity
6.Chemical constituents of Taxus chinensis var. mairei cell cultures.
Xiang-yang BAI ; Jian-ming LÜ ; Yan-ying ZHOU ; Zi-rong ZHU ; Ren-wang JIANG ; Wei ZHANG
Acta Pharmaceutica Sinica 2015;50(1):70-74
The chemical constituents of Taxus chinensis var. mairei cell cultures were investigated by chromatographic methods, including silica gel column chromatography, Sephadex LH-20 and preparative HPLC. Thirteen compounds were isolated from the 80% ethanol extract of cultured cells and their structures were elucidated by spectral data and physicochemical properties, which were identified as 2α,4α,7β,9α,10β-pentaacetoxy-14β-hydroxytax-11-ene (1), 2α,4α,7β,9α,10β-pentaacetoxytax-11-ene (2), 1β-deoxybaccatin VI (3), 2α-acetoxytaxusin (4), taxuyunnanine C (5), yunnanxane (6), 2α,5α,10β-triacetoxy-14β-propionyloxy-4 (20), 11-taxadiene (7), 2α,5α,10β-triacetoxy-14β-isobutyryloxy-4 (20), 11-taxadiene (8), 2α,5α,10β-triacetoxy-14β-(2'-methyl)butyryloxy-4 (20), 11-taxadiene (9), 13-dehydroxylbaccatin III (10), 13-dehydroxy-10-deacetylbaccatin III (11), paclitaxel (12) and (13) β-sitosterol. Among them, compound 1 is a new compound, and compounds 2, 4, 10 and 11 are isolated from the cell culture of Taxus chinensis var. mairei for the first time.
Alkenes
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analysis
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Cell Culture Techniques
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Cells, Cultured
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Diterpenes
;
analysis
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Molecular Structure
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Paclitaxel
;
analysis
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Sitosterols
;
analysis
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Taxoids
;
analysis
;
Taxus
;
chemistry
7.Study on application of salvianolic acids reference extract in quality control of Salvia miltiorrhiza and salvianolic acids for injection.
Yao-Lei LI ; Li-Na LIU ; Ying WANG ; Hong-Yu JIN ; Hong-Shui YUE ; Shuang-Cheng MA
China Journal of Chinese Materia Medica 2019;44(24):5446-5450
The purpose of this study was to investigate the feasibility of the salvianolic acids reference extract for quality control for Salvia miltiorrhiza and salvianolic acids for injection. An Agilent ZORBAX SB-C18( 4. 6 mm×250 mm,5 μm) column was used with mobile phase consisting of 0. 1% formic acid-water and 0. 1% formic acid-acetonitrile in gradient elution procedure. The column temperature was 30 ℃; the flow rate was 1 m L·min-1; and the detection wavelength was 288 nm. The content of rosmarinic acid,lithospermic acid and salvianolic acid B in S. miltiorrhiza was determined by using the salvianolic acids reference extract as control substance. The content of caffeic acid,salvianolic acid E,rosmarinic acid,lithospermic acid,salvianolic acid B,and salvianolic acid Y in the salvianolic acids for injection was also determined. The linear relationship between chemicals was good( r>0. 998 9),and the injection precision RSD was 0. 30%-0. 90%. The sexual RSD is between 1. 4% and 3. 0%,and the RSD of the reproducibility of the extract is between 2. 1% and 5. 2%. The recovery rate of the three components in S. miltiorrhiza was 96. 80%-99. 20%,and the recovery rate of the six components in salvianolic acids for injection was 88. 90%-107. 5%. The solution of S. miltiorrhiza and salvianolic acids for injection were stable within 48 h. A total of 8 batches of S. miltiorrhiza and injection were determined by the reference extract,and the difference was smaller than that measured by the monomer control. This study preliminarily verified that the salvianolic acids reference extract can be used as a substitute for the monomer control for the quality control of S. miltiorrhiza and salvianolic acids for injection.
Alkenes/analysis*
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Chromatography, High Pressure Liquid
;
Drugs, Chinese Herbal/standards*
;
Polyphenols/analysis*
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Quality Control
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Reproducibility of Results
;
Salvia miltiorrhiza/chemistry*
8.Studies on constituents of rootsanel leaves from Desmodium blandum and their cytotoxic activity against growth of several tumor cells.
Ning GAN ; Xin YANG ; Tian-Hua LI ; Ping HE
China Journal of Chinese Materia Medica 2008;33(18):2077-2080
OBJECTIVETo investigate the chemical constituents of Desmodium blandum and their cytotoxic activity against the growth of several tumor cells.
METHODVarious chromatographic techniques including silica gel, Sephadex LH-20 column chromatography were employed for the isolation and purification of the constituents. The structures of compounds were elucidated by spectral analyses (IR, UV, NMR, MS). Their cytotoxic activity was then studied.
RESULTEight compounds were isolated from the stems of D. blandum and identified as N, N-dimethyltryptamine (1), 5-methoxy-N, N-dimethyltryptamine (2), citrusinol (3), yukovanol (4), (Z)-1-(4-hydroxy-2, 3-dimethoxyphenyl)-3-(4-hydroxyphenyl) propene (5), (Z)-1-(3-hydroxy-2, 4-dimethoxy-phenyl)-3-(4-hydroxy-3-methoxy-phenyl) propene (6), methylprotocatechuate (7), katuranin (8).
CONCLUSIONAmong these compounds, compound 6 was isolated from D. blandum for the first time. In the MTT test, compounds 2 and 6 exhibit cytotoxic activities against the KB cell, and compounds 3 and 6 exhibit the same activities against the HepG2 cell.
Alkenes ; chemistry ; pharmacology ; Benzene Derivatives ; chemistry ; pharmacology ; Cell Line, Tumor ; Cell Proliferation ; drug effects ; Drugs, Chinese Herbal ; chemistry ; toxicity ; Fabaceae ; chemistry ; Humans ; Magnetic Resonance Spectroscopy ; Molecular Structure ; N,N-Dimethyltryptamine ; chemistry ; Plant Leaves ; chemistry ; Spectrometry, Mass, Electrospray Ionization ; Spectrophotometry, Infrared
9.Study on metabolites in vivo of Dangefentong Capsules based on UHPLC-Q/Orbitrap-MS/MS.
Xu CHEN ; Zhi-Fang HUANG ; Yun-Hua LIU ; Yu-Hong LIU ; Yan CHEN ; Deng-Yun QIN ; Jin-Hai YI
China Journal of Chinese Materia Medica 2022;47(18):5052-5063
Dangefentong Capsules is a new traditional Chinese medicine preparation for the treatment of diabetic peripheral neuropathy. It is based on the Salviae Miltiorrhizae Radix et Rhizoma-Puerariae Lobatae Radix herb pair with salvianolic acids, tanshinones and pueraria flavonoids as main components. Studying the chemical composition in vivo of Dangefentong Capsules and its metabolites is of great significance for making clear its pharmacodynamic material basis and the action mechanism. The UHPLC-Q/Orbitrap-MS/MS was applied to rapidly analyze the metabolites and metabolic pathways of Dangefentong Capsules in Beagle dogs after gavage. Eclipse plus C_(18) column(2.1 mm×50 mm, 1.8 μm) was used, and gradient elution was performed with 0.1% formic acid aqueous solution(A)-formic acid acetonitrile solution(B). A heated electrospray ion source(HESI) was employed. The scanning mode was set as the positive and negative ion mode, and the mass scanning range was m/z 100-1 000. The plasma, urine and feces samples were collected after male Beagle dogs were administered with Dangefentong Capsules. The prototype components and metabolites were identified by UHPLC-Q/Orbitrap-MS/MS analysis combined with reference substances and references. The results showed that 107 chemical components were identified, including 58 prototype components and 49 metabolites. The identified prototype components included 42 components from Salviae Miltiorrhizae Radix et Rhizoma and 16 components from Puerariae Lobatae Radix. The metabolites consist of 21 and 28 metabolites of Salviae Miltiorrhizae Radix et Rhizoma and Puerariae Lobatae Radix, respectively. They are mainly derived from the methylation, hydroxylation, sulfation and glucuronidation of salvianolic acids, tanshinones and pueraria flavonoids. This research rapi-dly analyzes the chemical components in vivo of Beagle dogs administered with Dangefentong Capsules, laying a basis for illustrating the pharmacodynamic material basis and mechanism of Dangefentong Capsules.
Abietanes
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Acetonitriles
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Alkenes
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Animals
;
Capsules
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Chromatography, High Pressure Liquid/methods*
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Dogs
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Drugs, Chinese Herbal/chemistry*
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Flavonoids
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Formates
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Male
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Polyphenols
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Pueraria
;
Tandem Mass Spectrometry
10.The advance in synthetic biology: towards a microbe-derived paclitaxel intermediates.
Wei WANG ; Yan YANG ; Xiao-Dong ZHENG ; Shu-Qiong HUANG ; Lei GUO ; Jian-Qiang KONG ; Ke-Di CHENG
Acta Pharmaceutica Sinica 2013;48(2):187-192
The synthetic biology matures to promote the heterologous biosynthesis of the well-known drug paclitaxel that is one of the most important and active chemotherapeutic agents for the first-line clinical treatment of cancer. This review focuses on the construction and regulation of the biosynthetic pathway of paclitaxel intermediates in both Escherichia coli and Saccharomyces cerevisiae. In particular, the review also features the early efforts to design and overproduce taxadiene and the bottleneck of scale fermentation for producing the intermediates.
Alkenes
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chemistry
;
metabolism
;
Antineoplastic Agents, Phytogenic
;
biosynthesis
;
chemistry
;
metabolism
;
Biosynthetic Pathways
;
Diterpenes
;
chemistry
;
metabolism
;
Escherichia coli
;
metabolism
;
Fermentation
;
Metabolic Engineering
;
Paclitaxel
;
biosynthesis
;
chemistry
;
metabolism
;
Prodrugs
;
Saccharomyces cerevisiae
;
metabolism
;
Synthetic Biology