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    Analysis of the 6-gingerol Content in Zingiber spp. and their Commercial Foods using HPLC

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    https://www.riss.kr/link?id=A104234961

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    The content analysis of 6-gingerol, which is an active compound, in Zingiber spp. (Z. officinale and Z. mioga) and their commercial foods (ginger teas and powders) was conducted using high-performance liquid chromatography. A reverse phase system was used, with a gradient solvent system of water and acetonitrile.
    The 6-gingerol content was highest in the methanol extract of Z.
    officinale root (17.09 mg/g extract) and ginger powder B (15.92 mg/g extract). The results demonstrated that this method was simple and reliable for the quality control of Zingiber commercial foods.
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    The content analysis of 6-gingerol, which is an active compound, in Zingiber spp. (Z. officinale and Z. mioga) and their commercial foods (ginger teas and powders) was conducted using high-performance liquid chromatography. A reverse phase system was ...

    The content analysis of 6-gingerol, which is an active compound, in Zingiber spp. (Z. officinale and Z. mioga) and their commercial foods (ginger teas and powders) was conducted using high-performance liquid chromatography. A reverse phase system was used, with a gradient solvent system of water and acetonitrile.
    The 6-gingerol content was highest in the methanol extract of Z.
    officinale root (17.09 mg/g extract) and ginger powder B (15.92 mg/g extract). The results demonstrated that this method was simple and reliable for the quality control of Zingiber commercial foods.

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    참고문헌 (Reference)

    1 Chrubasik S, "Zingiberis rhizoma: A comprehensive review on the ginger effect and efficacy profiles" 12 (12): 684-701, 2005

    2 Kim HW, "Suppressive effects of mioga ginger and ginger constituents on reactive oxygen and nitrogen species generation, and the expression of inducible pro-inflammatory genes in macrophages" 7 (7): 1621-1629, 2005

    3 Pawar N, "RP-HPLC analysis of phenolic antioxidant compound 6-gingerol from different ginger cultivars" 126 (126): 1330-1336, 2011

    4 Shao X, "Quantitative analysis of ginger components in commercial products using liquid chromatography with electrochemical array detection" 58 (58): 12608-12614, 2010

    5 Zick SM, "Quantitation of 6-, 8- and 10-gingerols and 6-shogaol in human plasma by high-performance liquid chromatography with electrochemical detection" 6 (6): 233-240, 2010

    6 Suekawa M, "Pharmacological studies on ginger. I. Pharmacological action of pungent constituents, (6)-gingerol and(6)-shogaol" 7 (7): 836-848, 1984

    7 Connell DW, "Natural pungent compounds: IV. Examination of the gingerols, shogaols, paradols and related compounds by thin-layer and gas chromatography" 67 (67): 29-35, 1972

    8 Mowrey DB, "Motion sickness, ginger, and psychophysics" 319 (319): 655-657, 1982

    9 Sekiwa Y, "Isolation of novel glucosides related to gingerdiol from ginger and their antioxidative activities" 48 (48): 373-377, 2000

    10 Chang WS, "Inhibitory effects of phenolics on xanthine oxidase" 14 (14): 501-506, 1994

    1 Chrubasik S, "Zingiberis rhizoma: A comprehensive review on the ginger effect and efficacy profiles" 12 (12): 684-701, 2005

    2 Kim HW, "Suppressive effects of mioga ginger and ginger constituents on reactive oxygen and nitrogen species generation, and the expression of inducible pro-inflammatory genes in macrophages" 7 (7): 1621-1629, 2005

    3 Pawar N, "RP-HPLC analysis of phenolic antioxidant compound 6-gingerol from different ginger cultivars" 126 (126): 1330-1336, 2011

    4 Shao X, "Quantitative analysis of ginger components in commercial products using liquid chromatography with electrochemical array detection" 58 (58): 12608-12614, 2010

    5 Zick SM, "Quantitation of 6-, 8- and 10-gingerols and 6-shogaol in human plasma by high-performance liquid chromatography with electrochemical detection" 6 (6): 233-240, 2010

    6 Suekawa M, "Pharmacological studies on ginger. I. Pharmacological action of pungent constituents, (6)-gingerol and(6)-shogaol" 7 (7): 836-848, 1984

    7 Connell DW, "Natural pungent compounds: IV. Examination of the gingerols, shogaols, paradols and related compounds by thin-layer and gas chromatography" 67 (67): 29-35, 1972

    8 Mowrey DB, "Motion sickness, ginger, and psychophysics" 319 (319): 655-657, 1982

    9 Sekiwa Y, "Isolation of novel glucosides related to gingerdiol from ginger and their antioxidative activities" 48 (48): 373-377, 2000

    10 Chang WS, "Inhibitory effects of phenolics on xanthine oxidase" 14 (14): 501-506, 1994

    11 Park KK, "Inhibitory effects of 6-gingerol, a major pungent principle of ginger, on phorbol ester-induced inflammation, epidermal ornithine decarboxylase activity and skin tumor promotion in ICR mice" 129 (129): 139-144, 1998

    12 He X, "High-performance liquid chromatography-electrospray mass spectrometric analysis of pungent constituents of ginger" 796 (796): 327-334, 1998

    13 Jolad SD, "Fresh organically grown ginger (Zingiber officinale): Composition and effects on LPS-induced PGE2 production" 65 (65): 1937-1954, 2004

    14 Catchpole OJ, "Extraction of chili, black pepper, and ginger with near-critical CO2, propane, and dimethyl ether: Analysis of the extracts by quantitative nuclear magnetic resonance" 51 (51): 4853-4860, 2003

    15 Devi NB, "Ethnomedicinal utilization of Zingiberaceae in the Valley Districts of Manipur" 8 (8): 21-23, 2014

    16 Tushar, "Ethnomedicinal uses of Zingiberaceous plants of Northeast India" 132 (132): 286-296, 2010

    17 Bartley JP, "Effects of drying on flavour compounds in Australian grown ginger(Zingiber officinale)" 80 (80): 209-215, 2000

    18 Kumar KS, "Development and validation of hptlc method for estimation of 6-gingerol in herbal formulations and extracts" 3 (3): 3762-3765, 2012

    19 Huang HY, "Determination of cinnamaldehyde, cinnamic acid, paeoniflorin, glycyrrhizin and-gingerol in the traditional Chinese medicinal preparation Kuei-chih-tang by cyclodextrin-modified micellar electrokinetic chromatography" 771 (771): 267-274, 1997

    20 Wei QY, "Cytotoxic and apoptotic activities of diarylheptanoids and gingerol-related compounds from the rhizome of Chinese ginger" 102 (102): 177-184, 2005

    21 Ghayur MN, "Cardiovascular effects of ginger aqueous extract and its phenolic constituents are mediated through multiple pathways" 43 (43): 234-241, 2005

    22 Shoji N, "Cardiotonic principle of ginger (Zingiber officinale Roscoe)" 71 (71): 1174-1175, 1982

    23 Shukla Y, "Cancer preventive properties of ginger: A brief review" 45 (45): 683-690, 2007

    24 Aeschbach R, "Antioxidant actions of thymol, carvacrol, 6-gingerol, zingerone and hydroxytyrosol" 32 (32): 31-36, 1994

    25 Hiking H, "Antihepatotoxic action of gingerols and diarylheptanoids" 14 (14): 31-39, 1985

    26 Bhunia D, "Antibacterial activity of Alpinia L. (Zingiberaceae)from Santal and Lodha Tribal areas of Paschim Medinipur Districts in Eastern India" 3 (3): 54-63, 2012

    27 Al-Amin ZM, "Anti-diabetic and hypolipidaemic properties of ginger(Zingiber officinale)in streptozotocin-induced diabetic rats" 96 (96): 660-666, 2006

    28 Young HY, "Analgesic and anti-inflammatory activities of [6]-gingerol" 96 (96): 207-210, 2005

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    2023 평가 해외DB학술지평가 신청대상 (해외등재 학술지 평가)
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    2007-05-09 학술지명변경 한글명 : Agricultrual Chemistry and Biotechnology -> Journal of Applied Biological Chemistry
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    기준연도 WOS-KCI 통합IF(2년) KCIF(2년) KCIF(3년)
    2016 0.41 0.41 0.39
    KCIF(4년) KCIF(5년) 중심성지수(3년) 즉시성지수
    0.4 0.44 0.741 0.16
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