1.Chemical constituents from Chenopodium ambrosioides.
Kun SONG ; Hong-Qing WANG ; Chao LIU ; Jie KANG ; Bao-Ming LI ; Ruo-Yun CHEN
China Journal of Chinese Materia Medica 2014;39(2):254-257
Twelve compounds were isolated from the herb of Chenopodium ambrosioides, and their structures were identified by spectroscopic methods as kaempferol-7-O-alpha-L-rhamnopyranoside (1), kaempferol-3,7-di-O-alpha-L-rhamnopyranoside (2), patuletin (3), quercetin-7-O-alpha-L-rhamnopyranoside (4), grasshopper ketone (5), 4-hydroxy-4-methyl-2-cyclohexen-1-one (6), syringaresinol (7), benzyl beta-D-glucopyranoside (8), dendranthemoside B (9), N-trans-feruloyl tyramine (10), N-trans-feruloyl 4'-O-methyldopamine (11), and 4-hydroxy-N-[2-(4-hydroxyphenyl) ethyl] benzamide (12). Among them,compounds 3, 6-8,10, and 12 were isolated from the genus Chenopodium for the first time, and compounds 2-12 were isolated from this plant for the first time.
Chenopodium ambrosioides
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chemistry
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Drugs, Chinese Herbal
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chemistry
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isolation & purification
2.In vitro bactericidal activity of Jinghua Weikang Capsule and its individual herb Chenopodium ambrosioides L. against antibiotic-resistant Helicobacter pylori.
Wei LIU ; Yu LIU ; Xue-Zhi ZHANG ; Ning LI ; Hong CHENG
Chinese journal of integrative medicine 2013;19(1):54-57
OBJECTIVETo investigate the bactericidal effects of Jinghua Weikang Capsule and its major component Chenopodium ambrosioides L. on antibiotic-resistant Helicobacter pylori.
METHODSFour clinical antibiotic-resistant H. pylori strains were isolated and incubated in liquid medium containing Jinghua Weikang Capsule or Chenopodium ambrosioides L. By means of time-kill curve method, the average colony counts and bactericidal rate were calculated at time points of 0, 4, 8 and 24 h after the incubation and the time-kill curves were charted.
RESULTSBoth Jinghua Weikang Capsule and Chenopodium ambrosioides L. at a concentration of 0.64 g/L showed obvious bactericidal effect against antibiotic-resistant H. pylori after 4 h of incubation.
CONCLUSIONJinghua Weikang Capsule and Chenopodium ambrosioides L. are considered to be active against antibiotic-resistant H. pylori in vitro.
Anti-Bacterial Agents ; pharmacology ; Chenopodium ambrosioides ; Drug Resistance, Microbial ; Drugs, Chinese Herbal ; pharmacology ; Helicobacter Infections ; drug therapy ; physiopathology ; Helicobacter pylori ; drug effects ; isolation & purification ; Humans ; In Vitro Techniques ; Microbial Sensitivity Tests ; Plant Preparations ; pharmacology ; Sensitivity and Specificity
3.Biological Control of Some Serious Weeds in Dakahlia District. II. Mycoherbicial Production and Physiological Host Responses.
Mycobiology 2002;30(2):96-101
Four pathogenic fungal isolates belonging to different genera including Alternaria, Fusarium and Curvularia were isolated from selected diseased weeds growing in the fields in Dakahalia district. The inoculum of these pathogenic fungi specific to weeds were cultured, standardized and formulated as alginate pellets containing mycelium plus culture filtrate. These mycoherbicides were evaluated for disease severity (DS). Maximum DS was obtained with the alginate pellets of mycelium filtrate Fusarium solani. Physiological changes of the treated weed were determined 5 and 10 days after treatments. As compared to the healthy weeds, all mycoherbicide formulations significantly decreased the amount of photosynthetic pigments and subsequently soluble and insoluble sugars in the infected weeds. The mycoherbicide formulation of F. solani had the greatest effect on lowering to the abovementioned amount in the leaves of Chenopodium murale. Generally, treatment of weed leaves with the specific mycoherbicide led to a highly significant increase in total phenol content when compared to the healthy control weed. C. murale infected with the mycoherbicide formulation of F. solani had higher levels of phenolic compounds than those other treated weeds particularly after 10 days of inoculation.
Alternaria
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Carbohydrates
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Chenopodium
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Fungi
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Fusarium
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Mycelium
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Phenol
4.Comparison of Biological Activities of Korean Halophytes
Jeong Min LEE ; Mi Jin YIM ; Dae Sung LEE ; Myeong Seok LEE ; Yun Gyeong PARK ; Jae Hyuk JEON ; Grace CHOI
Natural Product Sciences 2018;24(4):247-252
Halophytes are expected to possess abundant secondary metabolites and various biological activities because of habitat in extreme environments. In this study, we collected 14 halophytes (Asparagus oligoclonos, Calystegia soldanella, Carex pumila, Chenopodium glaucum, Elymus mollis, Glehnia littoralis, Limonium tetragonum, Messerschmidia sibirica, Rosa rugosa, Salsola komarovii, Spergularia marina, Suaeda glauca, Suaeda maritima, and Vitex rotundifolia) native to Korea and compared their total polyphenol contents, antioxidant and anti-inflammatory activities. The total polyphenol contents of R. rugosa (27.28%) and L. tetragonum (13.17%) were significantly higher than those of the other 12 halophytes and L. tetragonum, R. rugosa, and M. sibirica showed significantly greater antioxidant activities than the other 11 halophytes, as determined by DPPH (2,2-diphenyl-1-picrylhydrazyl). A. oligoclonos, E. mollis, and C. pumila showed significantly greater anti-inflammatory activities than the other 11, as determined by NO (Nitric oxide) and PGE₂ (Prostaglandin E₂) levels. In contrast, these three extracts had normal and low total polyphenol contents among the 14 halophytes. Consequently, the total polyphenol content in the 14 studied halophytes appeared to be related to antioxidant, but not anti-inflammatory activity levels.
Apiaceae
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Calystegia
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Caryophyllaceae
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Chenopodiaceae
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Chenopodium
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Ecosystem
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Elymus
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Korea
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Plumbaginaceae
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Rosa
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Salsola
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Salt-Tolerant Plants
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Vitex
5.Cross-allergenicity between dandelion and major weed pollens.
Ji Hye KIM ; Moon Kyung YOON ; Mi Ae KIM ; Yoo Seob SHIN ; Young Min YE ; Hae Sim PARK
Allergy, Asthma & Respiratory Disease 2015;3(5):358-364
PURPOSE: The prevalence of pollinosis is increasing, and it is expected to increase further with climate change. Mugwort and ragweed pollens are well known as prevalent allergenic weed pollens in Korea. However, the clinical significance of dandelion pollen as an inhalant allergen has not yet been studied. The purpose of this study was to evaluate the clinical significance and cross-allergenicity between dandelion and major weed pollens. METHODS: Ninety-seven patients with allergic rhinitis and asthma or with allergic rhinitis alone who were sensitized to dandelion pollens on skin prick tests (allergen/histamine ratio>3) were enrolled between December, 2012 and November, 2013. Serum specific IgE levels to dandelion pollen extracts were measured by using enzyme-linked immunosorbent assay (ELISA). ELISA inhibition tests were performed to evaluate cross allergenecity with other weed pollens. RESULTS: When the positive cutoff value for serum specific IgE was set at the mean+/-3 standard deviation of absorbance values, 52 patients (53.6%) had a high serum specific IgE antibody level. ELISA inhibition tests showed significant inhibitions with serial addition of dandelion pollen extracts, and 5 different inhibition patterns were noted with addition of 4 weed pollen extracts: significant inhibitions with pollens of mugwort, ragweed, chenopodium and Hop J (25%, 13 of 52), inhibitions with pollens of mugwort, ragweed and chenopodium (17.3%, 9 of 52), inhibitions with 2 pollens of mugwort and ragweed (32.6%, 17 of 52), inhibitions with mugwort pollen (21.1%, 11 of 52), and inhibitions with dandelion pollen alone (4%, 2 of 52). CONCLUSION: These findings suggest that dandelion pollen may be a causative inhalant allergen to induce pollinosis in the autumn season. Cross-allergenicity with other weed pollens showed individual differences; most patients had cross-reactivity with mugwort, ragweed, and chenopodium pollens, while some with Hop J pollen. Few patients were sensitized to dandelion pollen alone.
Ambrosia
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Artemisia
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Asthma
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Chenopodium
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Climate Change
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Enzyme-Linked Immunosorbent Assay
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Humans
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Humulus
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Immunoglobulin E
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Individuality
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Korea
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Pollen*
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Prevalence
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Rhinitis
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Rhinitis, Allergic, Seasonal
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Seasons
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Skin
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Taraxacum*