1.Heterocyclic compounds and phenolic glycosides from flowers of Dendrobium officinale.
Chun-Jie OUYANG ; Fang-Xin JIA ; Jia-Jia HUANG ; Si-Si ZHANG ; Chun-Hua DING ; Ling-Juan ZHU ; Xue ZHANG
China Journal of Chinese Materia Medica 2023;48(15):4115-4123
Eight heterocyclic compounds and twelve phenolic glycosides were separated from the water extract of Dendrobium officinale flowers through chromatographic techniques, such as Diaion HP-20 macroporous adsorption resin column chromatography(CC), silica gel CC, ODS CC, Sephadex LH-20 CC, and preparative high performance liquid chromatography(PHPLC). According to the spectroscopic analyses(MS, ~1H-NMR, and ~(13)C-NMR) and optical rotation data, the compounds were identified as dendrofurfural A(1), 2'-deoxyadenosine(2), 4-[2-formyl-5-(hydroxymethyl)-1H-pyrrol-1-yl] butanoic acid(3), 4-[2-formyl-5-(methoxymethyl)-1H-pyrrol-1-yl] butanoic acid(4), 1-(2-hydroxyethyl)-5-(methoxymethyl)-1H-pyrrole-2-carbaldehyde(5), 5-(methoxymethyl)-1H-pyrrole-2-carbaldehyde(6), methyl 5-(hydroxymethyl)-furan-2-carboxylate(7),(S)-5-hydroxymethyl-5H-furan-2-one(8), 2-methoxyphenyl-1-O-β-D-glucopyranoside(9), arbutin(10), isotachioside(11), 2,6-dimethoxy-4-hydroxyphenol-1-O-β-D-glucopyranoside(12), orcinol glucoside(13), tachioside(14), gastrodin(15), 4-O-β-D-glucopyranosylvanillyl alcohol(16), 2,6-dimethoxy-4-hydroxymethylphenol-1-O-β-D-glucopyranoside(17), icariside D_2(18), 4-formylphenyl-β-D-glucopyranoside(19), and vanillin-4-O-β-D-glucopyranoside(20). Among them, compound 1 is a new furfural benzyl alcohol condensate, with the skeleton first found in Dendrobium. Compounds 2-9, 11, 13, and 19 are reported from Dendrobium for the first time, and compounds 14 and 18 are reported for the first time from D. officinale. Compounds 11 and 14 showed moderate DPPH radical scavenging capacity, and compounds 11-14 demonstrated potent ABTS radical scavenging capacity, possessing antioxidant activity.
Dendrobium
;
Butyric Acid
;
Glycosides/analysis*
;
Phenols/analysis*
;
Heterocyclic Compounds
;
Flowers/chemistry*
2.Variance analysis on polysaccharide,total flavonoids and total phenols of Lycium barbarum leaves from different production areas.
Sai LIU ; Meng-Ke YANG ; Ye-Lin LI ; Luo-Chen ZHU ; Hai-Li QIAO ; Kun GUO ; Rong XU ; Chang-Qing XU ; Jun CHEN
China Journal of Chinese Materia Medica 2019;44(9):1774-1780
To compare the polysaccharides( LBLP),total flavonoids( LBLTF) and total phenols( LBLTP) of Lycium barbarum leaves from 14 production areas from Ningxia,Qinghai and Gansu at different harvesting time. Our results showed that there were significant difference of LBLP,LBLTF and LBLTP among different production areas. The LBLP collected from Xiangride township production area,Dulan,Qinghai was as high as 15. 02%. The LBLTF collected from Dagele township production area,Geermu,Qinghai was as high as28. 63%. The LBLTP collected from Keluke township production area,Delingha,Qinghai was as high as 16. 7%. There were also significant difference of these 3 components between different harvest periods. The average LBLP in May( 10. 20%) was significantly higher than that in June( 8. 49%). However,the average LBLTF( 17. 71%) and LBLTP( 12. 77%) in June was significantly higher than that in May( 14. 15%,11. 19%). The LBLTF and LBLTP have a positive correlation with the altitude of production areas,but there was no significant association between LBLP and altitude. The LBLP,LBLTF and LBLTP in different production areas and harvesting time was significant difference,the results provide some references for furthermore development and utilization of L. barbarum leaves.
Analysis of Variance
;
China
;
Flavonoids
;
analysis
;
Geography
;
Lycium
;
chemistry
;
Phenols
;
analysis
;
Plant Leaves
;
chemistry
;
Polysaccharides
;
analysis
;
Seasons
3.Research progress on chemical constituents and their differences between sea buckthorn berries and leaves.
China Journal of Chinese Materia Medica 2019;44(9):1767-1773
Sea buckthorn berries and leaves are two medicinal parts derived from the same primitive plant,mostly used as ethnic medicine,which have a long history in Mongolian and Tibetan. This paper reviews the studies on the chemical composition and differences between sea buckthorn berries and leaves. They have the same or similar composition and content of flavonoids,triterpenes,steroids,organic acids and volatile oils,also have some differences. The main differences are as follows: the flavonoids content in the sea buckthorn leaves is greater than that of the sea buckthorn berries,but the species of flavonoids in the berries are higher than leaves. The species and content of steroids and organic acids in the berries are higher than that of the leaves. The berries contain abundant volatile oil,and the leaves contain many phenolic compounds. Finally,the main problems and the prospect of the next research are put forward.
Flavonoids
;
analysis
;
Fruit
;
chemistry
;
Hippophae
;
chemistry
;
Oils, Volatile
;
analysis
;
Phenols
;
analysis
;
Plant Leaves
;
chemistry
;
Plants, Medicinal
;
chemistry
4.Qualitative and quantitative analysis on non-triterpenoids in Ligustri Lucidi Fructus.
Xin JI ; Xiao-Qian LIU ; Su-Ping XIAO ; Li-Xin YANG ; Wei-Hong FENG ; Chun LI ; Zhi-Min WANG
China Journal of Chinese Materia Medica 2019;44(8):1615-1622
In order to improve the quality control level of Ligustri Lucidi Fructus(LLF) and to explore the changes of chemical components after processing,the HPLC method for fingerprint and simultaneous determination of the major polar components in LLF were established. The octadecylsilane bonded silica gel was used as the stationary phase,with acetonitrile as the mobile phase A and0. 2% formic acid as the mobile phase B in a gradient elution procedure at a flow rate of 1. 0 m L·min-1. The detection wavelength was set at 280 nm and the column temperature was 25 ℃. There were 22 common peaks,20 of which were selected from the fingerprint of LLF and its wine-steamed product,respectively,and 14 chromatographic peaks were identified with reference substances. With the same chromatographic conditions,seven components were quantitatively analyzed and the results of system adaptability and methodology investigation all met the requirements of content determination. Compared with the crude LLF,the content of 5-hydroxymethyl furfural and salidroside significantly increased in wine-steamed LLF,while the contents of iridoid glycosides generally decreased. The method provided a basis for quality control of LLF and its processed products as well as the related preparations.
Chromatography, High Pressure Liquid
;
Drugs, Chinese Herbal
;
chemistry
;
Fruit
;
chemistry
;
Furaldehyde
;
analogs & derivatives
;
Glucosides
;
Iridoid Glycosides
;
Ligustrum
;
chemistry
;
Phenols
;
Phytochemicals
;
analysis
5.Rapid identification of constituents of Urtica hyperborea using UPLC-ESI-Q-TOF-MS/MS method.
Ri-Na SU ; Wei-Zao LUO ; Rong-Rui WEI ; Wu-Li-Ji AO ; Guo-Yue ZHONG
China Journal of Chinese Materia Medica 2019;44(8):1607-1614
This paper deals with the application of ultra-performance liquid chromatography tandem quadrupole time of flight mass spectrometry(UPLC-ESI-Q-TOF-MS/MS) method to rapidly determine and analyze the chemical constituents of methanol extract of Urtica hyperborea. We employed UPLC YMC-Triart C18(2. 1 mm×100 mm,1. 9 μm) column to UPLC analysis with acetonitrile-water(containing 0. 4% formic acid) in gradient as mobile phase. The flow rate was 0. 3 m L·min-1 gradient elution and column temperature was 30℃; the injection volume was 4 μL. ESI ion source was used to ensure the data collected in anegative ion mode. The chemical components of U. hyperborea were identified through retention time,exact relative molecular mass,cleavage fragments of MS/MS and reported data.The results indicated that a total of 31 compounds were identified,including 8 flavonoids,14 phenolic compounds,8 phenylpropanoids(4 coumarins and 4 lignans),and 1 steroidal compound,13 of which were confirmed by comparison. The UPLC-ESI-Q-TOF-MS/MS method could rapid identify the chemical components of U. hyperborea. The above compounds were discovered in U. hyperborea for the first time,which could provide theoretical foundation for further research on the basis of the pharmacodynamics of U. hyperborea.
Chromatography, High Pressure Liquid
;
Drugs, Chinese Herbal
;
chemistry
;
Flavonoids
;
Lignans
;
Phenols
;
Phytochemicals
;
analysis
;
Plant Extracts
;
analysis
;
Tandem Mass Spectrometry
;
Urticaceae
;
chemistry
6.Phenolic constituents from Wikstroemia chamaedaphne.
Xue LIANG ; Ying-Ying JIAO ; Wen-Hao WANG ; Shi-Fei LI ; Li-Wei ZHANG
China Journal of Chinese Materia Medica 2019;44(5):962-967
The phenolic constituents of Wikstroemia chamaedaphne were investigated by various column chromatographic methods including silica gel,Sephadex LH-20,ODS and preparative HPLC,and their chemical structures were identified by physico-chemical properties and spectral analyses. Thirteen phenolic compounds were isolated and elucidated,including five flavonoids: luteolin 7-O-β-D-glucopyranoside(1),luteolin 4'-O-β-D-glucopyranoside(2),kaempferol 3-O-β-D-glucopyranoside(3),chrysoeriol 4'-O-β-D-glucopyranoside(4),chrysoeriol(5); and eight lignans:(-)-secoisolariciresinol(6),acanthosessilin A(7),(-)-nortrachelogenin(8),(+)-isolariciresinol(9),sesamin(10),syringaresinol(11),(+)-epipinoresinol(12),and [3,3',4,4'-tetrahydro-6,6'-dimethoxy-3,3'-bi-2 H-benzopyran]-4,4'-diol(13). Compounds 1, 3, 5-8, 10, 11 and 13 were obtained from the plants of W. chamaedaphne for the first time,and compounds 1,5,7,10 and 13 were obtained from the Wikstroemia genus for the first time.
Chromatography, High Pressure Liquid
;
Flavonoids
;
analysis
;
Molecular Structure
;
Phenols
;
analysis
;
Phytochemicals
;
analysis
;
Wikstroemia
;
chemistry
7.Evaluation of in vitro antioxidant, antiglycation and antimicrobial potential of indigenous Myanmar medicinal plants.
The Su MOE ; Htet Htet WIN ; Thin Thin HLAING ; War War LWIN ; Zaw Min HTET ; Khin Mar MYA
Journal of Integrative Medicine 2018;16(5):358-366
OBJECTIVEMyanmar has a long history of using medicinal plants for treatment of various diseases. To the best of our knowledge there are no previous reports on antiglycation activities of medicinal plants from Myanmar. Therefore, this study was aimed to evaluate the antioxidant, antiglycation and antimicrobial properties of 20 ethanolic extracts from 17 medicinal plants indigenous to Myanmar.
METHODSIn vitro scavenging assays of 2,2-diphenyl-1-picrylhydrazyl (DPPH), nitric oxide (NO), superoxide (SO) radicals were used to determine the antioxidant activities. Folin-Ciocalteu's method was performed to determine the total phenolic content. Antiglycation and antimicrobial activities were detected by bovine serum albumin-fluorescent assay and agar well diffusion method.
RESULTSTerminalia chebula Retz. (Fruit), containing the highest total phenolic content, showed high antioxidant activities with inhibition of 77.98% ± 0.92%, 88.95% ± 2.42%, 88.56% ± 1.87% and 70.74%± 2.57% for DPPH, NO, SO assays and antiglycation activity respectively. It also showed the antimicrobial activities against Staphylococcus aureus, Bacillus cereus, Escherichia coli, Pseudomonas aeruginosa and Candida albicans with inhibition zone of 19, 18, 17, 25 and 15 mm, respectively. Garcinia mangostana Linn. showed the strongest activities for SO and antiglycation assays with inhibition of 93.68% ± 2.63% and 82.37% ± 1.78%. Bark of Melia sp. was the best NO radical scavenger with inhibition rate of 89.39%± 0.60%.
CONCLUSIONThe results suggest that these plants are potential sources of antioxidants with free radical-scavenging and antiglycation activities and could be useful for decreasing the oxidative stress and glycation end-product formation in glycation-related diseases.
Anti-Bacterial Agents ; analysis ; pharmacology ; Anti-Infective Agents ; analysis ; pharmacology ; Antioxidants ; analysis ; pharmacology ; Bacteria ; drug effects ; growth & development ; Biphenyl Compounds ; metabolism ; Candida albicans ; drug effects ; growth & development ; Fruit ; Garcinia ; chemistry ; Glycation End Products, Advanced ; metabolism ; Humans ; Magnoliopsida ; chemistry ; Medicine, Traditional ; Melia ; chemistry ; Myanmar ; Nitric Oxide ; metabolism ; Oxidative Stress ; drug effects ; Phenols ; analysis ; pharmacology ; Phytotherapy ; Picrates ; metabolism ; Plant Bark ; Plant Extracts ; chemistry ; pharmacology ; Plants, Medicinal ; Superoxides ; Terminalia ; chemistry
8.Constituents isolated from n-butanol extract of leaves of Moringa oleifera.
Feng-Hua LI ; Hong-Qing WANG ; Xian-Ming SU ; Chang-Kang LI ; Bao-Ming LI ; Ruo-Yun CHEN ; Jie KANG
China Journal of Chinese Materia Medica 2018;43(1):114-118
Seventeen compounds were isolated from n-butanol extract of the leaves of Moringa oleifera, using column chromatography over macroporous resin HP-20,Sephadex LH-20, and ODS. Their structures were identified as two carboline,tangutorid E(1) and tangutorid F(2); three phenolic glycosides,niazirin(3),benzaldehyde 4-O-α-L-rhamnopyranoside(4) and 4-O-β-D-glucopyranosidebenzoic acid(5); four chlorogenic acid and derivatives,4-caffeoylquinic acid(6),methyl 4-caffeoylquinate(7),caffeoylquinic acid(8) and methyl caffeoylquinate(9); two nucleosids,uridine(10) and adenosine(11); one flavone,quercetin 3-O-β-D-glucopyranoside(12); five other types of compounds,phthalimidineacetic acid(13),3-pyridinecarboxamide(14),3,4-dihydroxy-benzoic acid(15),5-hydroxymethyl-2-furancarboxylic acid(16) and 5-hydroxymethyl-2-furaldehyde(17) by the spectral data of ¹H, ¹³C-NMR and MS. Among them,compounds 1-2,7,9-10,16 and 17 were isolated from M. oleifera for the first time.
1-Butanol
;
Glycosides
;
analysis
;
Moringa oleifera
;
chemistry
;
Phenols
;
analysis
;
Phytochemicals
;
analysis
;
Plant Extracts
;
chemistry
;
Plant Leaves
;
chemistry
9.Prenatal exposure to bisphenol A and phthalates and behavioral problems in children at preschool age: the Hokkaido Study on Environment and Children's Health.
Machiko MINATOYA ; Sachiko ITOH ; Keiko YAMAZAKI ; Atsuko ARAKI ; Chihiro MIYASHITA ; Naomi TAMURA ; Jun YAMAMOTO ; Yu ONODA ; Kazuki OGASAWARA ; Toru MATSUMURA ; Reiko KISHI
Environmental Health and Preventive Medicine 2018;23(1):43-43
BACKGROUND:
Studies reported adverse behavioral development including internalizing and externalizing problems in association with prenatal exposure to bisphenol A (BPA) and phthalates; however, findings were not sufficient due to using different assessment tools and child ages among studies. This study aimed to examine associations between maternal serum levels of BPA and phthalate metabolites and behavioral problems at preschool age.
METHODS:
The Strengths and Difficulties Questionnaire (SDQ) was used to assess behavioral problems at 5 years of age. BPA and phthalate metabolite levels in the first trimester maternal serum was determined by LC-MS/MS for 458 children. Variables used for adjustment were parental ages, maternal cotinine levels, family income during pregnancy, child sex, birth order, and age at SDQ completed.
RESULTS:
The median concentrations of BPA, MnBP, MiBP, MEHP, and MECPP, primary and secondary metabolites of phthalates, were 0.062, 26.0, 7.0, 1.40, and 0.20 ng/ml, respectively. MECPP level was associated with increase conduct problem risk (OR = 2.78, 95% CI 1.36-5.68) overall and the association remained after child sex stratification, and odds ratios were increased with wider confidence interval (OR = 2.85, 95% CI 1.07-7.57 for boys, OR = 4.04, 95% CI 1.31-12.5 for girls, respectively). BPA, ∑DBP (MnBP + MiBP), and ∑DEHP (MEHP+MECPP) levels were not associated with any of the child behavioral problems.
CONCLUSIONS
Our analyses found no significant association between BPA or summation of phthalate metabolite levels and any of the behavioral problems at 5 years of age but suggested possible association between MECPP levels and increased risk of conduct problems.
Adult
;
Age Factors
;
Benzhydryl Compounds
;
blood
;
Child, Preschool
;
Environmental Exposure
;
analysis
;
Female
;
Humans
;
Male
;
Phenols
;
blood
;
Phthalic Acids
;
blood
;
Pregnancy
;
Prenatal Exposure Delayed Effects
;
epidemiology
;
Problem Behavior
;
Smoking
;
epidemiology
;
Socioeconomic Factors
10.Analysis on multiple pharmaceutical ingredients and antioxidant capacities of Prunellae Spica based on multivariate statistical analysis.
Bo-Hou XIA ; Su-Hui XIONG ; Jie TANG ; Zhi-Min ZHANG ; Ya-Mei LI ; Li-Mei LIN
China Journal of Chinese Materia Medica 2018;43(23):4645-4651
Prunellae Spica is a perennial edible and medicinal plant, rich in antioxidant substances. Total flavonoids (TFC), Phenolics (TPC), triterpenoids (TSC), polysaccharides (PC) and their antioxidant capacities (by the FRAP, DPPH and ABTS⁺ methods) of ethyl acetate fraction, n-butanol fraction and other fractions of aqueous extract from Prunellae Spica were investigated in this study. Then the multivariate statistical method was adopted to analyze the relationship between the multiple pharmaceutical ingredients and antioxidant capacities of Prunellae Spica. The results showed that ethyl acetate fraction had relatively high concentration of TFC (0.61±0.10) g·g⁻¹DW, TPC (0.52±0.09) g·g⁻¹DW, and TSC (0.21±0.03) g·g⁻¹DW, with high scavenging capacity of DPPH (3.1±0.38) mmol·L⁻¹·g⁻¹DW and FRAP (2.56±0.35) mmol·L⁻¹·g⁻¹DW. Hierarchical clustering analysis (HCA) and principal component analysis (PCA) results indicated the information from chemical compositions and antioxidant capacity can represent the "differences" of different fractions. Canonical correlation analysis (CCorA) revealed a high positive correlation between the amounts of multiple chemical compositions and the antioxidant capacities (r=0.970 0), and the first canonical variate had been reached. Moreover, ABTS⁺ method showed a low response to the compositions of different fractions, so this method may not be suitable for evaluation of Prunellae Spica antioxidant capacities, while DPPH evaluation method was more suitable for TSC and TPC. The results of this study have important reference significance for the evaluation method on antioxidant activity of Prunellae Spica in the field of food or medicine as well as for the development of related extracts.
Antioxidants
;
analysis
;
Flavonoids
;
Phenols
;
Plant Extracts

Result Analysis
Print
Save
E-mail