ChemotaxonomyFlavonoid variation in the leaves of Glycyrrhiza glabra☆
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Cited by (31)
Natural products for combating multidrug resistance in cancer
2024, Pharmacological ResearchSpecialized metabolite profiling of different Glycyrrhiza glabra organs by untargeted UHPLC-HRMS
2021, Industrial Crops and ProductsCitation Excerpt :Indeed, several flavonoids, showing antifungal and antimicrobial activities, have been reported as localized on leaf surface of Turkish G. glabra species, G. lepidota and Lupinus plants. Therefore, a protective function against fungi has been proposed for these molecules accumulated on the surface of leaves (Freund et al., 2018; Hayashi et al., 1996). Recently, Chang et al. (Chang et al., 2020) have suggested that in comparison to G. uralensis leaves, the morphologic characteristics of G. glabra ones, including hardness, thickness, and the presence of trichomes and wax on the surface, may be responsible of higher resistance to Altica deserticola, a licorice harmful pest.
Phytocomplexes from liquorice (Glycyrrhiza glabra L.) leaves - Chemical characterization and evaluation of their antioxidant, anti-genotoxic and anti-inflammatory activity
2011, FitoterapiaCitation Excerpt :On the contrary, the aerial parts of the plant are scarcely used and are considered an agrochemical waste. The few phytochemical investigations on the G. glabra leaves have nevertheless shown the presence of some phenolics which are either present in small traces or not at all in the roots [16,17]. In our previous works, the lipid extract of Sicilian G. glabra leaves was initially submitted to the assay for antioxidant capacity, showing an effectiveness comparable to that of BHT (2,6-di-tert-butyl-4-hydroxytoluene).
Synthesis of lupiwighteone via a para-Claisen-Cope rearrangement
2003, TetrahedronImmunoanalysis of isoflavonoids in Pisum sativum and Vigna radiata
1999, Plant Science
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Part 3 in the series ‘Field survey of licorice in Turkey’. For Part 2 see ref. [10].