Hyun Woo Kim , Dae Hyun Kim , Byeol Ryu , You Jin Chung , Kyungha Lee , Young Chang Kim , Jung Woo Lee , Dong Hwi Kim , Woojong Jang , Woohyeon Cho , Hyeonah Shim , Sang Hyun Sung , Tae-Jin Yang , Kyo Bin Kang
{"title":"基于质谱的人参皂苷分析:最新应用、局限性和展望","authors":"Hyun Woo Kim , Dae Hyun Kim , Byeol Ryu , You Jin Chung , Kyungha Lee , Young Chang Kim , Jung Woo Lee , Dong Hwi Kim , Woojong Jang , Woohyeon Cho , Hyeonah Shim , Sang Hyun Sung , Tae-Jin Yang , Kyo Bin Kang","doi":"10.1016/j.jgr.2024.01.004","DOIUrl":null,"url":null,"abstract":"<div><p>Ginseng, the roots of <em>Panax</em> species, is an important medicinal herb used as a tonic. As ginsenosides are key bioactive components of ginseng, holistic chemical profiling of them has provided many insights into understanding ginseng. Mass spectrometry has been a major methodology for profiling, which has been applied to realize numerous goals in ginseng research, such as the discrimination of different species, geographical origins, and ages, and the monitoring of processing and biotransformation. This review summarizes the various applications of ginsenoside profiling in ginseng research over the last three decades that have contributed to expanding our understanding of ginseng. However, we also note that most of the studies overlooked a crucial factor that influences the levels of ginsenosides: genetic variation. To highlight the effects of genetic variation on the chemical contents, we present our results of untargeted and targeted ginsenoside profiling of different genotypes cultivated under identical conditions, in addition to data regarding genome-level genetic diversity. Additionally, we analyze the other limitations of previous studies, such as imperfect variable control, deficient metadata, and lack of additional effort to validate causation. We conclude that the values of ginsenoside profiling studies can be enhanced by overcoming such limitations, as well as by integrating with other -omics techniques.</p></div>","PeriodicalId":16035,"journal":{"name":"Journal of Ginseng Research","volume":"48 2","pages":"Pages 149-162"},"PeriodicalIF":6.8000,"publicationDate":"2024-01-19","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"https://www.sciencedirect.com/science/article/pii/S1226845324000058/pdfft?md5=af74f2592f01af337709532164afec95&pid=1-s2.0-S1226845324000058-main.pdf","citationCount":"0","resultStr":"{\"title\":\"Mass spectrometry-based ginsenoside profiling: Recent applications, limitations, and perspectives\",\"authors\":\"Hyun Woo Kim , Dae Hyun Kim , Byeol Ryu , You Jin Chung , Kyungha Lee , Young Chang Kim , Jung Woo Lee , Dong Hwi Kim , Woojong Jang , Woohyeon Cho , Hyeonah Shim , Sang Hyun Sung , Tae-Jin Yang , Kyo Bin Kang\",\"doi\":\"10.1016/j.jgr.2024.01.004\",\"DOIUrl\":null,\"url\":null,\"abstract\":\"<div><p>Ginseng, the roots of <em>Panax</em> species, is an important medicinal herb used as a tonic. As ginsenosides are key bioactive components of ginseng, holistic chemical profiling of them has provided many insights into understanding ginseng. Mass spectrometry has been a major methodology for profiling, which has been applied to realize numerous goals in ginseng research, such as the discrimination of different species, geographical origins, and ages, and the monitoring of processing and biotransformation. This review summarizes the various applications of ginsenoside profiling in ginseng research over the last three decades that have contributed to expanding our understanding of ginseng. However, we also note that most of the studies overlooked a crucial factor that influences the levels of ginsenosides: genetic variation. To highlight the effects of genetic variation on the chemical contents, we present our results of untargeted and targeted ginsenoside profiling of different genotypes cultivated under identical conditions, in addition to data regarding genome-level genetic diversity. Additionally, we analyze the other limitations of previous studies, such as imperfect variable control, deficient metadata, and lack of additional effort to validate causation. 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Mass spectrometry-based ginsenoside profiling: Recent applications, limitations, and perspectives
Ginseng, the roots of Panax species, is an important medicinal herb used as a tonic. As ginsenosides are key bioactive components of ginseng, holistic chemical profiling of them has provided many insights into understanding ginseng. Mass spectrometry has been a major methodology for profiling, which has been applied to realize numerous goals in ginseng research, such as the discrimination of different species, geographical origins, and ages, and the monitoring of processing and biotransformation. This review summarizes the various applications of ginsenoside profiling in ginseng research over the last three decades that have contributed to expanding our understanding of ginseng. However, we also note that most of the studies overlooked a crucial factor that influences the levels of ginsenosides: genetic variation. To highlight the effects of genetic variation on the chemical contents, we present our results of untargeted and targeted ginsenoside profiling of different genotypes cultivated under identical conditions, in addition to data regarding genome-level genetic diversity. Additionally, we analyze the other limitations of previous studies, such as imperfect variable control, deficient metadata, and lack of additional effort to validate causation. We conclude that the values of ginsenoside profiling studies can be enhanced by overcoming such limitations, as well as by integrating with other -omics techniques.
期刊介绍:
Journal of Ginseng Research (JGR) is an official, open access journal of the Korean Society of Ginseng and is the only international journal publishing scholarly reports on ginseng research in the world. The journal is a bimonthly peer-reviewed publication featuring high-quality studies related to basic, pre-clinical, and clinical researches on ginseng to reflect recent progresses in ginseng research.
JGR publishes papers, either experimental or theoretical, that advance our understanding of ginseng science, including plant sciences, biology, chemistry, pharmacology, toxicology, pharmacokinetics, veterinary medicine, biochemistry, manufacture, and clinical study of ginseng since 1976. It also includes the new paradigm of integrative research, covering alternative medicinal approaches. Article types considered for publication include review articles, original research articles, and brief reports.
JGR helps researchers to understand mechanisms for traditional efficacy of ginseng and to put their clinical evidence together. It provides balanced information on basic science and clinical applications to researchers, manufacturers, practitioners, teachers, scholars, and medical doctors.