4.7 Review

Karanjin

期刊

PHYTOCHEMISTRY
卷 183, 期 -, 页码 -

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.phytochem.2020.112641

关键词

Pongamia pinnata; Leguminosae; Furanoflavonoid; Karanjin; Isolation; Biosynthesis; Pharmacological properties; Biopesticide; Mechanism

资金

  1. Ministry of Education (MoE)

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Karanjin, a bioactive furanoflavonoid isolated from Pongamia pinnata, exhibits various health benefits such as anti-diabetic, anti-cancer, and anti-inflammatory properties. Toxicological studies have confirmed that karanjin is non-toxic under physiological conditions. Its potential as a novel drug lead in medicinal and industrial applications is highlighted, suggesting the need for further investigations into its metabolic fate and cellular effects.
Karanjin [IUPAC: 3-methoxy-2-phenylfuro-(2,3-h-chrome-4-ol)], a bioactive furanoflavonoid and a potent biomolecule, was first isolated from Pongamia pinnata (L.). The crude extracts from root, leaf and seed having active constituent karanjin is highly valued in both traditional and modern knowledge systems. This review highlights, critically assesses, and presents the probable biosynthetic pathways of karanjin and its isolation methodologies with a view to actualizing its full potential. Karanjin exhibits multiple health benefits and applications, with evident anti-diabetic, anti-cancer, anti-inflammatory, anti-hyperglycemic, antioxidant, anticolitis, anti-ulcer, and anti-Alzheimer properties. Consequently, the physiochemical properties and biological effects of karanjin have been detailed and analyzed. The efficacy of karanjin has been attenuated by toxicological studies that have proven karanjin to be non-toxic at physiological conditions as substantiated by in vitro and in vivo studies. In addition, the multiple insect repellent/insecticidal properties of karanjin and its availability as an acaricide/bio-insecticide have been reviewed. This review article underscores and endorses the immense potential for novel drug leads in various medicinal and industrial applications, suggesting a deeper insight into its metabolic fate, bioavailability, and cellular effects that await further investigations.

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