1.Pharmacokinetics of 7 characteristic components from active fraction of Alpiniae Officinarum Rhizoma in rats with Helicobacter pylori gastritis based on HPLC-MS/MS.
Hao-Ran MA ; Jian-Ting ZHAN ; Xin LUO ; Wu-Yin-Xiao ZHENG ; Xiao-Chuan YE ; Dan LIU
China Journal of Chinese Materia Medica 2025;50(7):1949-1958
A high performance liquid chromatography-tandem mass spectrometry(HPLC-MS/MS) method was established for simultaneous determination of seven characteristic components from the active fraction of Alpiniae Officinarum Rhizoma in rat plasma, including galangin, kaempferol, kaempferide, pinocembrin, 1,7-diphenyl-4-en-3-heptanone, 5-hydroxy-7-(4-hydroxy-3-methoxyphenyl)-1-phenyl-3-heptanone(DHPA), and 7-(4-hydroxy-3-methoxyphenyl)-1-phenyl-4-en-3-heptanone(DPHB). The new developed HPLC-MS/MS method was applied to study the pharmacokinetics of the 7 characteristic components in rats with Helicobacter pylori gastritis. A Waters Sunfire C_(18) column(2.1 mm×150 mm, 3.5 μm) was used. The acetonitrile-aqueous solution(containing 0.1% formic acid) was adopted as the mobile phase for gradient elution. Seven components and internal standard(chlorogenic acid) were separated within 12 min. Mass spectrometric detection was performed in multiple reaction monitoring(MRM) mode using electrospray ionization(ESI) source with fast switching between positive and negative ions. The method was verified by specificity, linearity, precision, accuracy, recovery, matrix effect, and stability and met the requirements of pharmacokinetic study on the 7 components in rat plasma. Pharmacokinetic results showed that the average peak time(T_(max)) of the 7 components was 0.31-2.19 h, their elimination half-life(t_(1/2)) was 5.26-16.65 h, and the average residence time(MRT) was 6.29-31.03 h after the oral administration of the active fraction of Alpiniae Officinarum Rhizoma to rats with H. pylori gastritis. The plasma exposure levels of galangin and DHPA were higher than those of the other components. The concentration-time curves of four detected flavonoids showed obvious double peaks. This study elucidated the pharmacokinetic characteristics of 7 characteristic components from the active fraction of Alpiniae Officinarum Rhizoma in rats with H. pylori gastritis, providing a scientific basis for the identification of the pharmacodynamic substances of Alpiniae Officinarum Rhizoma for treatment of H. pylori gastritis and the clinical application of Alpiniae Officinarum Rhizoma in the prevention and treatment of H. pylori gastritis.
Animals
;
Rats
;
Chromatography, High Pressure Liquid/methods*
;
Tandem Mass Spectrometry/methods*
;
Drugs, Chinese Herbal/administration & dosage*
;
Male
;
Helicobacter pylori/drug effects*
;
Alpinia/chemistry*
;
Rats, Sprague-Dawley
;
Gastritis/metabolism*
;
Helicobacter Infections/metabolism*
;
Flavonoids/blood*
;
Rhizome/chemistry*
;
Liquid Chromatography-Mass Spectrometry
2.β-sitosterol, an important component in the fruits of Alpinia oxyphylla Miq., prolongs lifespan of Caenorhabditis elegans by suppressing the ferroptosis pathway.
Junyi LI ; Siyuan CHEN ; Liyao XIE ; Jin WANG ; Ao CHENG ; Shaowei ZHANG ; Jiyu LIN ; Zhihan FANG ; Yirui PAN ; Chonghe CUI ; Gengxin CHEN ; Chao ZHANG ; Li LI
Journal of Southern Medical University 2025;45(8):1751-1757
OBJECTIVES:
To elucidate the anti-aging effect of β-sitosterol (BS), an important component in the fruits of Alpinia oxyphylla Miq., in C. elegans and its regulatory effect on ETS-5 gene to modulate ferroptosis.
METHODS:
C. elegans treated with 10 µg/mL BS were monitored for survival time and changes in body length, motility, and reproductive function. The effect of ETS-5 gene knockdown on survival time of C. elegans was observed, and the changes in fat accumulation and lipid redox homeostasis in the transfected C. elegans were assessed using Oil Red O staining and by detecting MDA levels and the GSH/GSSG ratio. The mRNA expression levels of ferroptosis-related genes (FTN-1, GPX-1 and AAT-9) were detected using qPCR. The effects of BS treatment and ETS-5 knockdown on AAT-9 enzyme activity in C. elegans were examined. The effect of BS on nuclear localization of FEV (the human homolog of ETS-5) was validated in cultured human umbilical venous endothelial cells (HUVECs).
RESULTS:
Both BS treatment and ETS-5 knockdown significantly prolonged the lifespan, promoted lipid accumulation and reduced lipid peroxidation in C. elegans. ETS-5 knockdown resulted in upregulated expressions of the ferroptosis repressors GPX-1, AAT-9 and FTN-1 and increased the GSH/GSSG ratio in C. elegans.
CONCLUSIONS
BS inhibits ferroptosis in C. elegans by suppressing the expression of ETS-5 transcription factor and hence the activity of AAT-9 enzyme, a key gene for ferroptosis, which in turn prolongs the lifespan of C. elegans.
Animals
;
Caenorhabditis elegans/physiology*
;
Ferroptosis/drug effects*
;
Alpinia/chemistry*
;
Sitosterols/pharmacology*
;
Longevity/drug effects*
;
Fruit/chemistry*
;
Humans
3.Present situation and development strategy of Alpinia oxyphylla.
Xiao-Xia YAN ; Bao-Lan REN ; Mao-Yuan WANG ; Qing-Long WANG ; Qing YANG ; Huan TANG ; Zhu-Nian WANG
China Journal of Chinese Materia Medica 2019;44(9):1960-1964
Alpinia oxyphylla is mainly produced in Hainan,and also one of the four famous traditional Chinese medicines in South China with increasing importance in traditional Chinese medicine industry. Field surveys and literatures show that A. oxyphylla has widely used as a medicinal and edible plant,it is an important raw material for many Chinese patent medicines,health products and food,with a long history of artificial cultivation and application. The future development is prospected on health market. But A. oxyphylla industry has faced a lot of problems,including unreasonable planting layout,lack of good varieties,imperfect seed breeding system,low level of standardization,inconsistent quality of medicinal materials,low level of industry,and so on. The suggestions for sustainable development are listed below.First,it is essential to strengthen the research on the basis and application technology of A. oxyphylla,speed up the selection and breeding of improved varieties,and popularize standardized cultivation techniques. Secondly,it is important to strengthen the research on quality standards,improve the quality evaluation system of medicinal materials. Thirdly,it is necessary to take full advantage of the functional components to develop functional products with Hainan characteristics,find out the unique product characteristics of A. oxyphylla,build a famous brand and improve the product competitiveness in the market. It is also important to strengthen policy support and industrial supervision,promote the healthy and rapid development of A. oxyphylla industry.
Alpinia
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chemistry
;
China
;
Drugs, Chinese Herbal
;
pharmacology
;
Medicine, Chinese Traditional
;
trends
;
Plant Breeding
;
Plants, Medicinal
;
chemistry
;
Seeds
4.Evaluation of in vitro enzymatic and non-enzymatic antioxidant properites of leaf extract from Alpinia Purpurata (Vieill.) K. Schum.
Chinthamony Arul RAJ ; Paramasivam RAGAVENDRAN ; Dominic SOPHIA ; Thangarajan STARLIN ; Muthian Ahalliya RATHI ; Velliyur Kanniappan GOPALAKRISHNAN
Chinese journal of integrative medicine 2016;22(9):691-695
OBJECTIVETo evaluate the enzymatic and non-enzymatic antioxidants of leaf extract from Alpinia purpurata.
METHODSOne gram of fresh leaf of Alpinia purpurata was grinded in 2 mL of 50% ethanol and centrifuged at 10,000×g at 4°C for 10 min. The supernatant obtained was used within 4 h for various enzymatic antioxidants assays like superoxide dismutase (SOD), catalase (CAT), glutathione peroxidase (GPx), glutathione S-transferase (GST), ascorbate oxidase, peroxidase, polyphenol oxidase (PPO) and non-enzymatic antioxidants such as vitamin C, total reduced glutathione (TRG) and lipid peroxidation (LPO).
RESULTSThe leaf extract of Alpinia purpurata possess antioxidants like vitamin C 472.92±6.80 μg/mg protein, GST 372.11±5.70 μmol of 1-chloro 2,4 dinitrobenzene (CDNB)-reduced glutathione (GSH) conjugate formed/min/mg protein, GPx 281.69±6.43 μg of glutathione oxidized/min/mg protein, peroxidases 173.12±9.40 μmol/g tissue, TRG 75.27±3.55 μg/mg protein, SOD 58.03±2.11 U/mg protein, CAT 46.70±2.35 μmol of H2O2 consumed/min/mg protein in high amount whereas ascorbate oxidase 17.41±2.46 U/g tissue, LPO 2.71±0.14 nmol/L of malondialdehyde formed/min/mg protein and PPO 1.14±0.11 μmol/g tissue in moderate amount.
CONCLUSIONAlpinia purpurata has the potential to scavenge the free radicals and protect against oxidative stress causing diseases. In future, Alpinia purpurata may serve as a good pharmacotherapeutic agent.
Alpinia ; chemistry ; Antioxidants ; analysis ; Catechol Oxidase ; metabolism ; Enzymes ; metabolism ; Lipid Peroxidation ; Plant Extracts ; chemistry ; Plant Leaves ; chemistry
5.Phytochemistry and pharmacology of ornamental gingers, Hedychium coronarium and Alpinia purpurata: a review.
Eric Wei Chiang CHAN ; Siu Kuin WONG
Journal of Integrative Medicine 2015;13(6):368-379
In this review, the phytochemistry and pharmacology of two ornamental gingers, Hedychium coronarium (butterfly ginger) and Alpinia purpurata (red ginger), are updated, and their botany and uses are described. Flowers of H. coronarium are large, showy, white, yellow or white with a yellow centre and highly fragrant. Inflorescences of A. purpurata are erect spikes with attractive red or pink bracts. Phytochemical investigations on the rhizomes of H. coronarium generated research interest globally. This resulted in the isolation of 53 labdane-type diterpenes, with little work done on the leaves and flowers. Pharmacological properties of H. coronarium included antioxidant, antibacterial, antifungal, cytotoxic, chemopreventive, anti-allergic, larvicidal, anthelminthic, analgesic, anti-inflammatory, anti-urolithiatic, anti-angiogenic, neuro-pharmacological, fibrinogenolytic, coagulant and hepatoprotective activities. On the contrary, little is known on the phytochemistry of A. purpurata with pharmacological properties of antioxidant, antibacterial, larvicidal, cytotoxic and vasodilator activities reported in the leaves and rhizomes. There is much disparity in terms of research effort within and between these two ornamental gingers.
Alpinia
;
chemistry
;
Ginger
;
chemistry
;
Oils, Volatile
;
analysis
;
pharmacology
;
Plant Extracts
;
pharmacology
;
Zingiberaceae
;
chemistry
6.The compounds from n-butanol fraction of Alpinia oxyphylla.
Bin-Bin XIE ; Lei HOU ; Bao-Lin GUO ; Wen-Hua HUANG ; Jing-Guang YU
Acta Pharmaceutica Sinica 2014;49(11):1569-1573
Nine compounds were isolated from the n-butanol fraction of 95% ethanol extract of the fruit of Alpinia oxyphylla Miq. with a combination of various chromatographic approaches, including MDS resin, silica gel, reverse phase C18 and preparative HPLC. On the basis of spectroscopic data analysis, they were elucidated as (1R, 4R, 10R)-1β, 4α-dihydroxy-11, 12, 13-trinor-5, 6-eudesmen-7-one (1), 1β, 4β-dihydroxy-11, 12, 13-trinor-8, 9-eudesmen-7-one (2), oxyphyllenone A (3), oxyphyllenone B (4), rhamnocitrin (5), staphylionoside D (6), benzyl-1-O-β-D-glucopyranoside (7), 2-O-β-D-glucopyranosyl-(1S)-phenylethylene glycol (8), and (S)-1-phenylethyl-β-D-glucopyranoside (9). Among them, compound 1 is a new sesquiterpene, named as oxyphyllenone C; compounds 8 and 9 are new natural products; compounds 2 and 6 were isolated from the genus Alpinia for the first time, and compound 7 was isolated from A. oxyphylla for the first time.
1-Butanol
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Alpinia
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chemistry
;
Chromatography, High Pressure Liquid
;
Fruit
;
chemistry
;
Phytochemicals
;
chemistry
;
isolation & purification
;
Sesquiterpenes
;
chemistry
;
isolation & purification
7.A new flavonone from seeds of Alpinia katsumadai and its neuroprotective effect on PC12 cells.
Ben-Ru XIN ; Shou-Juan REN ; Jie LI
China Journal of Chinese Materia Medica 2014;39(14):2674-2678
A new flavonone, named as (2R, 3S)-pinobanksin-3-cinnamate(1), together with six known compounds, pinocem-brin (2), pinobanksin (3), 3-O-acetylpinobanksin (4), galangin (5), kumatakenin(6), and 3-methylkaempferol (7), were isolated from a 95% ethanol extract of seeds of Alpinia katsumadai through a combination of various chromatographic techniques, including silica gel and Sephadex LH-20. The structure of compound 1 was elucidated by spectroscopic data analysis. Compound 1 exhibits a potent neuroprotective effect against the corticosterone-damaged PC12 cells, which may be underlying the effect by scavenging intracellular ROS.
Alpinia
;
chemistry
;
Animals
;
Cell Death
;
drug effects
;
Cholestenones
;
chemistry
;
isolation & purification
;
pharmacology
;
Cinnamates
;
chemistry
;
isolation & purification
;
pharmacology
;
DNA Fragmentation
;
drug effects
;
Neuroprotective Agents
;
chemistry
;
isolation & purification
;
pharmacology
;
Oxidative Stress
;
drug effects
;
PC12 Cells
;
Rats
;
Reactive Oxygen Species
;
metabolism
;
Seeds
;
chemistry
8.Diversity and tissue distribution of fungal endophytes in Alpinia officinarum: an important south-China medicinal plant.
Ren-Chao ZHOU ; Juan HUANG ; Ze-En LI ; Shu-Bin LI
China Journal of Chinese Materia Medica 2014;39(16):3023-3029
In the present study, terminal-restriction fragment length polymorphism (T-RFLP) technique was applied to assess the diversity and tissue distribution of the fungal endophyte communities of Alpinia officinarum collected from Longtang town in Xuwen county, Guangdong province, China, at which the pharmacological effect of the medicine plant is traditional considered to be the significantly higher than that in any other growth areas in China. A total of 28 distinct Terminal-Restriction Fragment (T-RFs) were detected with HhaI Mono-digestion targeted amplified fungal nuclear ribosomal internal transcribed spacer region sequences (rDNA ITS) from the root, rhizome, stem, and leaf internal tissues of A. officinarum plant, indicating that at least 28 distinct fungal species were able to colonize the internal tissue of the host plant. The rDNA ITS-T-RFLP profiles obtained from different tissues of the host plant were obvious distinct. And the numbers of total T-RFs, and the dominant T-RFs detected from various tissues were significantly different. Based on the obtained T-RFLP profiles, Shannon's diversity index and the Shannon's evenness index were calculated, which were significantly different among tissues (P < 0.05). Furthermore, two types of active chemicals, total volatile oils by water vapor distillation method and galangin by methanol extraction-HPLC method, were examined in the each tissue of the tested plant. Both of tested components were detected in all of the four tissues of the medicine plant with varying contents. And the highest was in rhizome tissue. Correlation analysis revealed there were significant negative correlations between both of the tested active components contents and calculated Shannon's diversity index, as well as the Shannon's evenness index of the fungal endophyte communities of the host plant (P = 0, Pearson correlation coefficient ≤ -0.962), and significant positive correlations between both of the tested active components contents and 325 bp dominant T-RF linkage to Pestalotiopsis (P = 0, Pearson correlation coefficient ≥ 0.975). In conclusion, A. officinarum is colonized by diverse fungal endophytes communities. The diversity of the fungal endophytes was found in the A. officinarum varied with differences of the tissue types of the host plants and was closely correlated with the accumulation of main active components, total volatile oils and galangin contents in the host plant tissue.
Alpinia
;
chemistry
;
microbiology
;
Biodiversity
;
China
;
DNA, Fungal
;
genetics
;
DNA, Ribosomal
;
genetics
;
Drugs, Chinese Herbal
;
analysis
;
Endophytes
;
classification
;
genetics
;
growth & development
;
isolation & purification
;
Fungi
;
classification
;
genetics
;
growth & development
;
isolation & purification
;
Phylogeny
;
Plants, Medicinal
;
chemistry
;
microbiology
;
Polymorphism, Restriction Fragment Length
9.Flavonoids from the seeds of Alpinia galanga Willd.
Meng-Qin BIAN ; Hong-Qing WANG ; Jie KANG ; Ruo-Yun CHEN ; Yan-Fang YANG ; He-Zhen WU
Acta Pharmaceutica Sinica 2014;49(3):359-362
Ten flavonoids were isolated from the 95% ethanol extract of the seeds of Alpinia galanga Willd. with a combination of various chromatographic techniques, including silica gel, Sephadex LH-20 and preparative HPLC. On the basis of spectroscopic data analysis, they were elucidated as (2R, 3S)-pinobaksin-3-cinnamate (1), (2R, 3R)-pinobaksin-3-cinnamate (2), pinocembrin (3), pinobaksin (4), 3-O-acetylpinobaksin (5), galangin (6), galangin-3-methylether (7), kumatakenin (8), 3-methylkaempferol (9) and (2R, 3R)-3, 5-dihydroxy-7-methoxyflavanone (10). Among them, compound 1 is a new compound, compounds 2, 5 and 10 were isolated from the genus Alpinia for the first time, and others were isolated from this plant for the first time.
Alpinia
;
chemistry
;
Benzopyrans
;
chemistry
;
isolation & purification
;
Cinnamates
;
chemistry
;
isolation & purification
;
Flavanones
;
chemistry
;
isolation & purification
;
Flavonoids
;
chemistry
;
isolation & purification
;
Kaempferols
;
chemistry
;
isolation & purification
;
Molecular Structure
;
Plants, Medicinal
;
chemistry
;
Seeds
;
chemistry
10.A new dimeric diarylheptanoid from the rhizomes of Alpinia officinarum.
Dan LIU ; Wei QU ; Ling ZHAO ; Fu-Qin GUAN ; Jing-Yu LIANG
Chinese Journal of Natural Medicines (English Ed.) 2014;12(2):139-141
AIM:
To study the chemical constituents of the rhizomes of Alpinia officinarum Hance.
METHOD:
Compounds were isolated by repeated column chromatography, and their structures were elucidated on the basis of spectral analysis. The cytotoxic activities of these compounds were evaluated with the T98G and B16F10 cell lines by the MTT assay.
RESULTS:
A dimeric diarylheptanoid, named alpinin B (1), along with three known diarylheptanoids were obtained, and their structures were identified as alpinin B (1), 1, 7-diphenyl-3,5-heptanedione (2), (4E)-1, 7-diphenylhept-4-en-3-one (3) and (4E)-7- (4-hydroxyphenyl)-1-phenylhept-4-en-3-one (4).
CONCLUSION
Compound 1 is a new dimeric diarylheptanoid. The biosynthetic pathway of 1 was speculated to originate from a Michael reaction between compounds 2 and 3. Compound 3 showed cytotoxicity against the human glioblastoma T98G cell line with IC50 of 27 μmol·L(-1).
Alpinia
;
chemistry
;
Antineoplastic Agents, Phytogenic
;
isolation & purification
;
pharmacology
;
therapeutic use
;
Cell Line, Tumor
;
Diarylheptanoids
;
chemistry
;
isolation & purification
;
pharmacology
;
therapeutic use
;
Glioblastoma
;
drug therapy
;
Humans
;
Molecular Structure
;
Phytotherapy
;
Plant Extracts
;
chemistry
;
pharmacology
;
therapeutic use
;
Rhizome
;
chemistry

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