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Alleviation of Inflammatory Conditions Caused by Extremely Low-Frequency Electromagnetic Field Exposure by <i>Panax ginseng</i>. [PDF]
Choi JY +5 more
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Nutritional supplementation with <i>Panax ginseng</i> extract and bone health in osteoporotic animal models: a systematic review and meta-analysis. [PDF]
Tang R +8 more
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Steam processing of Panax notoginseng with single-marker quantification: a green industrial standardization strategy. [PDF]
Ning Y +5 more
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Glycoside Fragmentation in Matrix-Assisted Laser Desorption/Ionization Mass Spectrometry of Natural Products of Ginsenosides. [PDF]
Yamagaki T.
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Analysis methods of ginsenosides
Journal of Chromatography B: Analytical Technologies in the Biomedical and Life Sciences, 2004Ginsenosides are considered the main active principles of the famous Chinese traditional medicine "ginseng". For more than 30 years many researchers developed methods for the identification and quantification of ginsenosides in ginseng plant material, extracts and products.
exaly +5 more sources
Mitochondrial connection to ginsenosides
Archives of Pharmacal Research, 2020Mitochondria play an essential role in energy synthesis and supply, thereby maintaining cellular function, survival, and energy homeostasis via mitochondria-mediated pathways, including apoptosis and mitophagy. Ginsenosides are responsible for most immunological and pharmacological activities of ginseng, a highly beneficial herb with antioxidant, anti ...
Feng Wang, Yoon Seok Roh
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Conversion of Major Ginsenoside Rb1 to Ginsenoside F2 by Caulobacter leidyia
Biotechnology Letters, 2006Ginsenoside Rb1 is the most predominant ginsenoside in Panax species (ginseng) and the hydrolysis of this ginsenoside produces pharmaceutically active compounds. Caulobacter leidyia GP45, one of the isolates having strong beta-glucosidase-producing activity, converted ginsenoside Rb(1) to the active metabolites by 91%.
Le-Qin, Cheng +4 more
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Applied Microbiology and Biotechnology, 2010
Ginsenosides are the principal components responsible for the pharmaceutical activities of ginseng. The minor ginsenosides, which are also pharmaceutically active, can be produced via the hydrolysis of the sugar moieties in the major ginsenosides using acid hydrolytic, heating, microbial, and enzymatic transformation techniques.
Chang-Su Park +2 more
exaly +3 more sources
Ginsenosides are the principal components responsible for the pharmaceutical activities of ginseng. The minor ginsenosides, which are also pharmaceutically active, can be produced via the hydrolysis of the sugar moieties in the major ginsenosides using acid hydrolytic, heating, microbial, and enzymatic transformation techniques.
Chang-Su Park +2 more
exaly +3 more sources
Photochemistry and Photobiology, 2019
AbstractGinsenosides are compounds responsible for the primary pharmacological effects of American ginseng. Compound‐Y (C‐Y) is a minor ginsenoside and a metabolite of Panax ginseng. In this study, we investigated the protective effect of ginsenoside UVB‐irradiated NHDFs and its potential for use as an antihyperpigmentation agent through ginsenoside C ...
Xiao‐yi Liu +4 more
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AbstractGinsenosides are compounds responsible for the primary pharmacological effects of American ginseng. Compound‐Y (C‐Y) is a minor ginsenoside and a metabolite of Panax ginseng. In this study, we investigated the protective effect of ginsenoside UVB‐irradiated NHDFs and its potential for use as an antihyperpigmentation agent through ginsenoside C ...
Xiao‐yi Liu +4 more
openaire +2 more sources
Applied Microbiology and Biotechnology, 2012
This study focused on the cloning, expression, and characterization of ginsenoside-transforming recombinant β-glucosidase from Actinosynnema mirum KACC 20028(T) in order to biotransform ginsenosides efficiently. The gene, termed as bglAm, encoding a β-glucosidase (BglAm) belonging to the glycoside hydrolase family 3 was cloned. bglAm consisted of 1,830
Cui, CH Cui, Chang-Hao +2 more
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This study focused on the cloning, expression, and characterization of ginsenoside-transforming recombinant β-glucosidase from Actinosynnema mirum KACC 20028(T) in order to biotransform ginsenosides efficiently. The gene, termed as bglAm, encoding a β-glucosidase (BglAm) belonging to the glycoside hydrolase family 3 was cloned. bglAm consisted of 1,830
Cui, CH Cui, Chang-Hao +2 more
openaire +3 more sources

