Phytochemical Omics in Medicinal Plants
Medicinal plants are used to treat diseases and provide health benefits, and their applications are increasing around the world. A huge array of phytochemicals have been identified from medicinal plants, belonging to carotenoids, flavonoids, lignans, and phenolic acids, and so on, with a wide range...
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Format: | Electronic Book Chapter |
Language: | English |
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Basel, Switzerland
MDPI - Multidisciplinary Digital Publishing Institute
2021
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Online Access: | DOAB: download the publication DOAB: description of the publication |
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100 | 1 | |a Chen, Jen-Tsung |4 edt | |
700 | 1 | |a Chen, Jen-Tsung |4 oth | |
245 | 1 | 0 | |a Phytochemical Omics in Medicinal Plants |
260 | |a Basel, Switzerland |b MDPI - Multidisciplinary Digital Publishing Institute |c 2021 | ||
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520 | |a Medicinal plants are used to treat diseases and provide health benefits, and their applications are increasing around the world. A huge array of phytochemicals have been identified from medicinal plants, belonging to carotenoids, flavonoids, lignans, and phenolic acids, and so on, with a wide range of biological activities. In order to explore our knowledge of phytochemicals with the assistance of modern molecular tools and high-throughput technologies, this book collects recent innovative original research and review articles on subtopics of mechanistic insights into bioactivities, treatment of diseases, profiling, extraction and identification, and biotechnology. | ||
540 | |a Creative Commons |f https://creativecommons.org/licenses/by/4.0/ |2 cc |4 https://creativecommons.org/licenses/by/4.0/ | ||
546 | |a English | ||
650 | 7 | |a Medicine |2 bicssc | |
653 | |a network pharmacology | ||
653 | |a traditional herbal medicine | ||
653 | |a methodological trend | ||
653 | |a polysaccharide fraction | ||
653 | |a Trichoderma atroviride | ||
653 | |a Salvia miltiorrhiza | ||
653 | |a proteomics | ||
653 | |a tanshinones | ||
653 | |a Flos Chrysanthemi indici | ||
653 | |a essential oil | ||
653 | |a extraction method | ||
653 | |a chemical composition | ||
653 | |a biological activity | ||
653 | |a Garcinia linii | ||
653 | |a hypoglycemia | ||
653 | |a benzopyran | ||
653 | |a triterpene | ||
653 | |a bioflavonoid | ||
653 | |a phenolic | ||
653 | |a in silico | ||
653 | |a neurodegenerative diseases | ||
653 | |a naringenin | ||
653 | |a pharmacological targets | ||
653 | |a signaling pathways | ||
653 | |a molecular mechanisms | ||
653 | |a drug delivery systems | ||
653 | |a luteolin | ||
653 | |a hyphenated techniques | ||
653 | |a chromatography | ||
653 | |a colorectal cancer | ||
653 | |a diterpenes | ||
653 | |a inflammatory bowel diseases | ||
653 | |a Polyalthia longifolia | ||
653 | |a herbal medicine | ||
653 | |a DESs | ||
653 | |a preparative-scale purification | ||
653 | |a flavonoids | ||
653 | |a 20-hydroxyecdysone | ||
653 | |a Chenopodium quinoa | ||
653 | |a Zinc oxide nanoparticles | ||
653 | |a anticancer | ||
653 | |a antileishmanial | ||
653 | |a antimicrobial | ||
653 | |a biocompatibility | ||
653 | |a cancer | ||
653 | |a apoptosis | ||
653 | |a herbs | ||
653 | |a cell lines | ||
653 | |a in vivo | ||
653 | |a quercetin | ||
653 | |a polyphenols | ||
653 | |a Alzheimer's disease | ||
653 | |a mechanistic insights | ||
653 | |a clinical directions | ||
653 | |a isodon genus | ||
653 | |a ent-kaurane diterpenoids | ||
653 | |a natural compounds | ||
653 | |a pathways | ||
653 | |a medicinal plants | ||
653 | |a bioactive compounds | ||
653 | |a 4-hydroxynonenal | ||
653 | |a deleterious effects | ||
653 | |a Asiatic acid | ||
653 | |a nasopharyngeal cancer | ||
653 | |a cisplatin resistance | ||
653 | |a MAPK pathway | ||
653 | |a Anthocyanin | ||
653 | |a Solanum nigrum L. | ||
653 | |a flavonoid biosynthesis | ||
653 | |a AtPAP1 | ||
653 | |a licochalcone D | ||
653 | |a non-small cell lung cancer | ||
653 | |a reactive oxygen species | ||
653 | |a Acorus gramineusand | ||
653 | |a Euodia ruticarpa | ||
653 | |a pro-/anti-inflammatory cytokines | ||
653 | |a steam distillation essential oil | ||
653 | |a Th1/Th2 cytokines | ||
653 | |a lignans | ||
653 | |a Trachelospermum asiaticum | ||
653 | |a GNPS | ||
653 | |a targeted isolation | ||
653 | |a Rheum undulatum | ||
653 | |a Glycyrriza uralensis | ||
653 | |a hepatic encephalopathy | ||
653 | |a MMP-9 | ||
653 | |a neuroinflammation | ||
653 | |a luteolin-7-O-glucoside | ||
653 | |a oral cancer | ||
653 | |a migration | ||
653 | |a invasion | ||
653 | |a MMP-2 | ||
653 | |a Astragalus mongholicus | ||
653 | |a ultraviolet-B radiation | ||
653 | |a phenolics | ||
653 | |a untargeted gas chromatography-mass spectrometry | ||
653 | |a targeted liquid chromatography-mass spectrometry | ||
653 | |a Bacopa monnieri | ||
653 | |a cheminformatics | ||
653 | |a neurological diseases | ||
653 | |a spinocerebellar ataxia | ||
653 | |a system pharmacology | ||
653 | |a (-)-epigallocatechin-3-gallate (EGCG) | ||
653 | |a bone morphogenetic protein-2 (BMP-2) | ||
653 | |a catethin | ||
653 | |a fracture healing | ||
653 | |a local use | ||
653 | |a cardiovascular diseases | ||
653 | |a inflammation | ||
653 | |a lipid metabolism | ||
653 | |a non-coding RNA | ||
653 | |a oxidative stress | ||
653 | |a phenolic compounds | ||
653 | |a Peucedanum ostruthium | ||
653 | |a Apiaceae | ||
653 | |a ELINA | ||
653 | |a HetCA, STOCSY | ||
653 | |a coumarines | ||
653 | |a NF-ĸB | ||
653 | |a VCAM-1 | ||
653 | |a E-selectin | ||
653 | |a Withaferin A | ||
653 | |a matrix metalloproteinases | ||
653 | |a antioxidant signaling | ||
653 | |a Curcuma aromatica | ||
653 | |a sesquiterpene | ||
653 | |a anti-inflammatory | ||
653 | |a luciferase assay | ||
653 | |a cytotoxicity | ||
653 | |a n/a | ||
856 | 4 | 0 | |a www.oapen.org |u https://mdpi.com/books/pdfview/book/3747 |7 0 |z DOAB: download the publication |
856 | 4 | 0 | |a www.oapen.org |u https://directory.doabooks.org/handle/20.500.12854/76327 |7 0 |z DOAB: description of the publication |