Nutritional and phytochemical characterization of radish (Raphanus sativus): A systematic review

Питательная и фитохимическая характеристика редьки (Raphanus sativus): систематический обзор
Oscar H. Franco, Taulant Muka, Hua Kern, Eralda Asllanaj, Marija Glišić, Magda Gamba, Peter Francis Raguindin, Beatrice Minder, Weston Bussler, Brandon Metzger
2021-05-06

flavonoidsglucosinolatesnutrient profilingphytochemical compositionradish (Raphanus sativus)
Bioactive compounds in Raphanus sativus (radish) have been used to treat several diseases; therefore, radish has attracted increasing scientific attention due to its nutritional and phytochemical composition. The available evidence on the nutrient and bioactive composition of radish was systematically assessed. Four databases (PubMed, Embase, Web of Science, and Cochrane trials) were searched, up to September 26th, 2020, for key articles assessing the chemical composition of radish. Two independent reviewers carried out screening, selection of articles, and data extraction. Of 1214 references, 63 met our inclusion criteria. We found 609 chemical compounds within 23 categories. Red (30% of all studied varieties), white (13%), and black (6%) radish were the most studied varieties. Nutrients and phytochemicals were reported mainly in roots and leaves. The largest categories were flavonoids (38.8% of the reported data), non-flavonoid polyphenols (8.4%), terpenes and derivatives (8.2%), fat and fatty related compounds (6.4%), and glucosinolates and breakdown products (5.6%). Leaves have high concentrations of macronutrients, calcium, potassium, sodium, fiber, fatty acids, and non-flavonoid polyphenols while sprouts are a major source of flavonoids, specifically anthocyanins, β-carotene and vitamin C. Roots are rich in non-flavonoid polyphenols together with terpenes and derivatives, and glucosinolates, the latter also highly concentrated in seeds. Raphanus sativus is a rich source of nutrients and phytochemicals. Leaves and sprouts could be considered part of a healthy diet, and together with roots, they could be explored as raw material for the development of nutraceuticals.
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Conclusion: Raphanus sativus is a rich source of nutrients and phytochemicals, and leaves, sprouts, and roots are promising for healthy diets and nutraceutical development.
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Leaves are high in macronutrients, calcium, potassium, sodium, fiber, fatty acids, and non-flavonoid polyphenols; sprouts are major sources of flavonoids, anthocyanins, β-carotene and vitamin C.
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Major compound categories were flavonoids (38.8%), non-flavonoid polyphenols (8.4%), terpenes and derivatives (8.2%), fats and related compounds (6.4%), and glucosinolates and breakdown products (5.6%).
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Most-studied radish varieties were red (30%), white (13%), and black (6%).
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Roots are rich in non-flavonoid polyphenols, terpenes and derivatives, and glucosinolates, with seeds also highly concentrated in glucosinolates.
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Systematic review of 63 studies identified 609 chemical compounds in Raphanus sativus across 23 categories.

Radish (Raphanus sativus) plant and its edible parts (roots, leaves, sprouts, seeds)

Nutritional and phytochemical composition: identification, categorization and distribution of nutrients and bioactive compounds (flavonoids, non-flavonoid polyphenols, terpenes, fats, glucosinolates, etc.) across radish varieties and plant parts

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2021-05-06
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Oscar H. Franco
Taulant Muka
Hua Kern
Eralda Asllanaj
Marija Glišić
Magda Gamba
Peter Francis Raguindin
Beatrice Minder
Weston Bussler
Brandon Metzger
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