1.Inhibition of Escherichia coli nitroreductase by the constituents in Syzygium aromaticum.
Lu CHEN ; Xi CHEN ; Yue BAI ; Zi-Nan ZHAO ; Yun-Feng CAO ; Li-Kun LIU ; Tao JIANG ; Jie HOU
Chinese Journal of Natural Medicines (English Ed.) 2022;20(7):506-517
Gut bacterial nitroreductases play an important role in reduction of various nitroaromatic compounds to the corresponding N-nitroso compounds, hydroxylamines or aromatic amines, most of which are carcinogenic and mutagenic agents. Inhibition of gut nitroreductases has been recognized as an attractive approach for reducing mutagen metabolites in the colon, so as to prevent colon diseases. In this study, the inhibitory effects of 55 herbal medicines against Escherichia coli(E. coli) nitroreductase (EcNfsA) were examined. Compared with other herbal extracts, Syzygium aromaticum extract showed superior inhibitory potency toward EcNfsA mediated nitrofurazone reduction. Then, the inhibitory effects of 22 major constituents in Syzygium aromaticum against EcNfsA were evaluted. Compared with other tested natural compounds, ellagic acid, corilagin, betulinic acid, oleanic acid, ursolic acid, urolithin M5 and isorhamnetin were found with strong to moderate inhibitory effect against EcNfsA, with IC50 values ranging from 0.67 to 28.98 mol·L-1. Furthermore, the inhibition kinetic analysis and docking simulation demonstrated that ellagic acid and betulinic acid potently inhibited EcNfsA (Ki < 2 μmol·L -1) in a competitively inhibitory manner, which created strong interactions with the catalytic triad of EcNfsA. In summary, our findings provide new scientific basis for explaining the anti-mutagenic activity of Syzygium aromaticum, where some newly identified EcNfsA inhibitors can be used for developing novel agents to reduce the toxicity induced by bacterial nitroreductase.
Ellagic Acid/pharmacology*
;
Escherichia coli
;
Kinetics
;
Nitroreductases/pharmacology*
;
Plant Extracts/pharmacology*
;
Syzygium
2.Effective medicinal ingredients and screening of excellent germplasm in Rubus chingii.
Xin YAO ; Wei-Rong ZHU ; Hong-Liang HUANG ; Yan-Ru ZENG ; Wei-Wu YU
China Journal of Chinese Materia Medica 2021;46(3):575-581
In order to provide rationale for selection of good germplasm in Rubus chingii, main effective medicinal ingredients of green fruit such as gallic acid, ellagic acid, kaempferol-3-rutinoside, astragalin and tiliroside were measured using UPLC for the samples collected from Chun'an county of Zhejiang province, and such parameters as soluble solid contents of ripe fruit of some samples were also measured to study variation among individuals and correlation. It has been found that there were differences among individuals in the contents of gallic acid, ellagic acid, kaempferol-3-rutinoside, astragalin and tiliroside, which ranged from 0.010 2%-0.027 4%, 0.089 5%-0.291 1%, 0.010 5%-0.114 8%, 0.005 8%-0.041 2% and 0.010 9%-0.086 3%, respectively, with a CV of 18.60%, 27.02%, 44.23%, 44.17% and 47.29%, respectively. Gallic acid was positively correlated with ellagic acid, but negatively with kaempferol-3-rutinoside and astragalin significantly. Significantly positive correlation existed between kaempferol-3-rutinoside, astragalin and linden glycoside as well as between ellagic acid and fruit shape index of ripe fruit and between linden glycoside and the content of soluble solids. 51.35% of the individuals had a content of soluble solids more than 15%. Therefore, abundant variations have been found among individuals in effective medicinal ingredients in R. chingii, which shows great potential for selection, but only do 7.61% of the individuals meet the requirement of Chinese pharmacopoeia in terms of the contents of effective medicinal ingredients. Therefore, selection could be first performed in terms of fruit shape index of ripe red fruit, followed by the contents of ellagic acid and kaempferol-3-rutinoside measured. The individuals, in which the contents of effective medicinal ingredients don't meet the requirement of Chinese pharmacopoeia, could be considered for the selection in terms of edible fresh fruit.
Ellagic Acid
;
Fruit
;
Glycosides
;
Humans
;
Plant Extracts
;
Rubus
3.Neuroprotective effects of urolithin A on H₂O₂-induced oxidative stress-mediated apoptosis in SK-N-MC cells
Kkot Byeol KIM ; Seonah LEE ; Jung Hee KIM
Nutrition Research and Practice 2020;14(1):3-11
ellagic acid, has high bioavailability and various health benefits such as antioxidant and anti-inflammatory effects. However, it is unknown whether it has protective effects against oxidative stress-induced cell death. We investigated whether UA ameliorates H₂O₂-induced neuronal cell death.MATERIALS/METHODS: We induced oxidative damage with 300 µM H₂O₂ after UA pretreatment at concentrations of 1.25, 2.5, and 5 µM in SK-N-MC cells. Cytotoxicity and cell viability were determined using the CCK-8 assay. The formation of reactive oxygen species (ROS) was measured using a 2,7-dichlorofluorescein diacetate assay. Hoechst 33342 staining was used to characterize morphological changes in apoptotic cells. The expressions of apoptosis proteins were measured using Western blotting.RESULTS: UA significantly increased cell viability and decreased intracellular ROS production in a dose-dependent manner in SK-N-MC cells. It also decreased the Bax/Bcl-2 ratio and the expressions of cytochrome c, cleaved caspase-9, cleaved caspase-3, and cleaved PARP. In addition, it suppressed the phosphorylation of the p38 mitogen-activated protein kinase (MAPK) pathway.CONCLUSIONS: UA attenuates oxidative stress-induced apoptosis via inhibiting the mitochondrial-related apoptosis pathway and modulating the p38 MAPK pathway, suggesting that it may be an effective neuroprotective agent.]]>
Apoptosis
;
Biological Availability
;
Blotting, Western
;
Caspase 3
;
Caspase 9
;
Cell Death
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Cell Survival
;
Cytochromes c
;
Ellagic Acid
;
Hydrolyzable Tannins
;
Insurance Benefits
;
Neurodegenerative Diseases
;
Neurons
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Neuroprotective Agents
;
Oxidative Stress
;
p38 Mitogen-Activated Protein Kinases
;
Phosphorylation
;
Protein Kinases
;
Reactive Oxygen Species
;
Sincalide
4.Effects of ellagic acid on inflammation and oxidative stress induced by AKT gene transfection in mice with fatty liver disease.
Cong ZHANG ; Lei SHENG ; Tian YANG ; Zhen-Peng QIU ; Guo-Hua ZHENG ; Gui-Hong WANG
China Journal of Chinese Materia Medica 2019;44(9):1869-1875
To study the effects of ellagic acid(EA)on inflammation and oxidative stress in mice with fatty liver disease induced by AKT gene transfection,the 20 female FVB mice were randomly divided into normal control group,model group and ellagic acid administration group(150,300 mg·kg~(-1)·d~(-1))(n=5).EA experimental groups and model group were using a high pressure into the tail vein transfection plasmid AKT.The next day,EA was started to administered continuously for 5 weeks after the AKT gene transfection,while the model group and the normal control group were given the same amount of saline.After the administration,the liver tissue and serum of mice were taken.HE and oil red O staining were using to observe the histopathological changes in liver;liver function to detect the serum and liver tissue as well as MDA and SOD levels;real-time quantitative PCR(RT-qPCR)was used to measure the mR-NA expression of NF-κB and TNF-α;Western blot and immunohistochemistry were used to measure the expression of NF-κB,TNF-αand COX-2 in liver tissue.RESULTS:: show that after AKT gene transfection,the model group had significant increase in the serum levels of AST,ALT,elevated the levels of MDA and decreased the levels of SOD in serum and liver tissue,aggravated histopathology degeneration and Liver inflammation,and significantly higher expression of NF-κB,TNF-α,IL-6,COX-2 and other inflammatory-related factors in liver tissue.EA administration group significant reductions in the serum levels of AST,ALT,and improved in hepatocyte fatty degeneration and liver inflammation,lower the levels of MDA and increased the levels of SOD in serum and liver tissue,and significant reductions in the expression of NF-κB,TNF-α,IL-6 and COX-2 in liver tissue.These results suggest that EA has obvious anti-inflammatory effect and inhibits oxidative stress and EA has a significant therapeutic effecton AKT gene inducing fatty liver,and the mechanism possibly by inhibiting inflammatory factors of NF-κB,TNF-α,IL-6,COX-2 and anti-oxidative stress-related.
Animals
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Ellagic Acid
;
pharmacology
;
Fatty Liver
;
drug therapy
;
genetics
;
Female
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Inflammation
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drug therapy
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Mice
;
Oxidative Stress
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Proto-Oncogene Proteins c-akt
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genetics
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Random Allocation
;
Transfection
5.Beta-carotene prevents the spermatogenic disorders induced by exogenous scrotal hyperthermia through modulations of oxidative stress, apoptosis, and androgen biosynthesis in mice
Jung Min YON ; Jae Seung KIM ; Chunmei LIN ; Seul Gi PARK ; Lee Wha GWON ; Jong Geol LEE ; In Jeoung BAEK ; Sang Seop NAHM ; Sang Yoon NAM
Korean Journal of Veterinary Research 2019;59(2):59-67
We investigated whether β-carotene (β-CA) or ellagic acid (EA), originating from various fruits and vegetables, has a preventive effect against male infertility induced by exogenous scrotal hyperthermia. ICR adult mice were intraperitoneally treated with 10 mg/kg of β-CA or EA daily for 13 days consecutively. During this time, mice were subjected to transient scrotal heat stress in a water bath at 43℃ for 20 min on day 7, and their testes and blood were obtained on day 14 for histopathologic and biochemical analyses. Heat stress induced significant testicular weight reduction, germ cell loss and degeneration, as well as abnormal localization of phospholipid hydroperoxide glutathione peroxidase (PHGPx) and manganese superoxide dismutase (MnSOD) in spermatogenic and Leydig cells. Heat stress also altered the levels of oxidative stress (lipid peroxidation, SOD activity, and PHGPx, MnSOD, and HIF-1α mRNAs), apoptosis (Bax, Bcl-xL, caspase 3, NF-κB, and TGF-β1 mRNAs), and androgen biosynthesis (serological testosterone concentration and 3β-hydroxysteroid dehydrogenase mRNA) in testes. These changes were all improved significantly by β-CA treatment, but only slightly improved by EA treatment. These findings indicate that β-CA, through modulations of oxidative stress, apoptosis, and androgen biosynthesis, is a potent preventive agent against testicular injuries induced by scrotal hyperthermia.
Adult
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Animals
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Apoptosis
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Baths
;
beta Carotene
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Caspase 3
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Ellagic Acid
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Fever
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Fruit
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Germ Cells
;
Glutathione Peroxidase
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Hot Temperature
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Humans
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Hydrogen Peroxide
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Infertility, Male
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Leydig Cells
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Male
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Mice
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Oxidative Stress
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Oxidoreductases
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Superoxide Dismutase
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Testis
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Testosterone
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Vegetables
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Water
;
Weight Loss
6.Ellagic acid plays a protective role against UV-B-induced oxidative stress by up-regulating antioxidant components in human dermal fibroblasts.
Beomyeol BAEK ; Su Hee LEE ; Kyunghoon KIM ; Hye Won LIM ; Chang Jin LIM
The Korean Journal of Physiology and Pharmacology 2016;20(3):269-277
Ellagic acid (EA), an antioxidant polyphenolic constituent of plant origin, has been reported to possess diverse pharmacological properties, including anti-inflammatory, anti-tumor and immunomodulatory activities. This work aimed to clarify the skin anti-photoaging properties of EA in human dermal fibroblasts. The skin anti-photoaging activity was evaluated by analyzing the reactive oxygen species (ROS), matrix metalloproteinase-2 (MMP-2), total glutathione (GSH) and superoxide dismutase (SOD) activity levels as well as cell viability in dermal fibroblasts under UV-B irradiation. When fibroblasts were exposed to EA prior to UV-B irradiation, EA suppressed UV-B-induced ROS and proMMP-2 elevation. However, EA restored total GSH and SOD activity levels diminished in fibroblasts under UV-B irradiation. EA had an up-regulating activity on the UV-B-reduced Nrf2 levels in fibroblasts. EA, at the concentrations used, was unable to interfere with cell viabilities in both non-irradiated and irradiated fibroblasts. In human dermal fibroblasts, EA plays a defensive role against UV-B-induced oxidative stress possibly through an Nrf2-dependent pathway, indicating that this compound has potential skin antiphotoaging properties.
Cell Survival
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Ellagic Acid*
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Fibroblasts*
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Glutathione
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Humans*
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Matrix Metalloproteinase 2
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Oxidative Stress*
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Plants
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Reactive Oxygen Species
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Skin
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Superoxide Dismutase
7.Variation of the Contents of Triterpenoids and Tannins Depending on Growth and Infection in the Leaves of Rubus crataegifolius and Rubus parvifolius.
Min Young KIM ; Tae Jin RHIM ; Sang Cheol LIM ; Hee Juhn PARK
Natural Product Sciences 2015;21(1):14-19
Several 19alpha-hydroxyursane-type triterpenoids and hydrolysable tannins have beneficial effects on human health. Rubus crataegifolius (Rosaceae) has the cleft simple leaf whereas R. parvifolius has pinnate compound leaves. This research was aimed to find the variation in the contents of the triterpenoids and tannins between the infected versus uninfected leaves of R. coreanus and R. parvifolius and between young versus mature leaves. Triterpenoids and tannins were quantitatively analyzed by HPLC. Six triterpenoids including tormentic acid, euscaphic acid, 23-hydroxytormentic acid, coreanoside F1, kaji-ichigoside F1 and niga-ichigoside F1 were used for standard compounds. Gallotannins and ellagitannins were quantitatively evaluated using the indicatives of methyl gallate and ellagic acid. The infected leaves of R. crataegifolius contained higher levels of triterpenoids and tannin than the uninfected leaves; however, lower quantity of total tannin was observed in the mature leaves than in the young leaves. Although the pinnate compound leaves of R. parvifolius exhibited similar tendency of those compositional variation with R. crataegifolius each other, its contents of triterpenoids do not considerably vary. Variation of the contents of triterpenoids and tannins were particularly distinct in R. crataegifolius by growth and infection.
Chromatography, High Pressure Liquid
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Ellagic Acid
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Humans
;
Hydrolyzable Tannins
;
Rosaceae
;
Tannins*
8.Study on content variation of gallic acid and ellagic acid in course of processing of charred Granati Pericarpium.
Qian ZHOU ; Yan-peng DAI ; Li-li SUN
China Journal of Chinese Materia Medica 2014;39(22):4349-4351
The method for determining the content of gallic acid and ellagic acid in Granati Pericarpium was established by HPLC. Using the method, the content of raw and charred Granati Pericarpium was determined. By comparison, it was found that the content of gallic acid and ellagic acid increased first and then reduced during processing. When processed on an appropriate degree, the content reached the maximum. The result indicated that gallic acid and ellagic acid can be used as indicators to control the processing degree of charred Granati Pericarpium.
Chromatography, High Pressure Liquid
;
methods
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Ellagic Acid
;
chemistry
;
Fruit
;
anatomy & histology
;
chemistry
;
Gallic Acid
;
chemistry
9.Determination of ellagic acid, flavonoids and goshonoside-F5 in Rubi Fructus by HPLC.
Jian-Ming HE ; Nan SUN ; Wen-Dan WU ; Li-Jiao FAN ; Mei-Li GUO
China Journal of Chinese Materia Medica 2013;38(24):4351-4356
High-performance liquid chromatographic coupled with variable wavelength detection (HPLC-VWD) has been developed for simultaneous determination of 5 analytes including ellagic acid, quercetin, kaempferol-3-O-beta-D-rutinoside, tiliroside and kaempferol, and high-performance liquid chromatographic with an evaporative light scattering detector (HPLC-ELSD) has been established to determine goshonoside-F5 in extract of Rubi Fructus. Chromatographic separations were carried out on an Agilent ZORBAX SB-C18 column (4.6 mm x 250 mm, 5.0 microm). All calibration curves of reference standards revealed good linearity (R2 > 0.999 5) within the concentration ranges tested. The method limits of detection ranged 0.297-90.144 ng and the method limits ofquantitation ranged 0.990-300.480 ng, respectively. Recoveries of 6 analytes were from 97.11% to 101.7%, with RSD less than 2.1%. The result shows that amounts of the 6 analytes in the samples from 16 localities were found to be different. The higher latitude of growing environment, the more ellagic acid in herb. The content of total flavonoids in sample from east localities were higher than that in middle and west localities, and the content of goshonoside-F5 in Bozhou, Anhui province was higher than others. This method was found to be simple, accurate, sensitive with good repeatability. Those results might serve as a sound foundation for further study, quality control and application of Rubi Fructus.
Chromatography, High Pressure Liquid
;
Ellagic Acid
;
analysis
;
Flavonoids
;
analysis
;
Geography
;
Rosaceae
;
chemistry
10.Oxidation of fatty acid may be enhanced by a combination of pomegranate fruit phytochemicals and acetic acid in HepG2 cells.
Ji Yeon KIM ; Elly OK ; You Jin KIM ; Kyoung Sook CHOI ; Oran KWON
Nutrition Research and Practice 2013;7(3):153-159
We investigated whether the combination of phytochemicals and acetic acid in the form of fruit vinegar provides an additive effect on changes of mRNA levels related to fatty acid oxidation in human hepatocyte (HepG2). Among the seven fruit vinegars (Rubuscoreanus, Opuntia, blueberry, cherry, red ginseng, mulberry, and pomegranate) studied, treatment of HepG2 with pomegranate vinegar (PV) at concentrations containing 1 mM acetic acid showed the highest in vitro potentiating effect on the mRNA expression levels of peroxisome proliferator-activated receptor alpha, carnitinepalmitoyl transferase-1, and acyl-CoA oxidase compared to the control group (P < 0.05). Reversed-phase liquid chromatography in combination with quadrupole time-of-flight mass spectrometry analysis revealed four potential compounds (punicalagin B, ellagic acid, and two unidentified compounds) responsible for altered gene expression in HepG2 cells treated with PV as compared with the others. Further investigations are warranted to determine if drinking PV beverages may help to maintain a healthy body weight in overweight subjects.
Acetic Acid
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Acyl-CoA Oxidase
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Beverages
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Blueberry Plant
;
Body Weight
;
Chromatography, Reverse-Phase
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Drinking
;
Ellagic Acid
;
Fruit
;
Gene Expression
;
Hep G2 Cells
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Hepatocytes
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Humans
;
Mass Spectrometry
;
Morus
;
Opuntia
;
Overweight
;
Panax
;
PPAR alpha
;
Prunus
;
Punicaceae
;
RNA, Messenger

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