2019
DOI: 10.1016/j.sajb.2019.03.015
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Comparative evaluation of phenolic phytochemicals from perilla seeds of diverse species and screening for their tyrosinase inhibitory and antioxidant properties

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Cited by 19 publications
(15 citation statements)
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“…Perilla seed has been reported to contain five flavones, nine phenolic acids, and one tyrosol (Table 6). Among them, apigenin and luteolin in flavones and rosmarinic acid and rosmarinic acid‐3‐ O ‐glucoside in phenolic acids are the most abundant ones (Guan et al., 2014; Kim & Lee, 2019; Lee et al., 2013; Zhou et al., 2014). Besides, flavan‐3‐ols (catechin), flavones (apigenin‐7‐ O ‐glucoside), and phenolic acids (rosmarinic acid methyl ester and ferulic acid) were identified in perilla seed (Guan et al., 2014; Ha et al., 2012; Peng et al., 2005).…”
Section: Polyphenols and Other Bioactives In Specialty Seedsmentioning
confidence: 99%
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“…Perilla seed has been reported to contain five flavones, nine phenolic acids, and one tyrosol (Table 6). Among them, apigenin and luteolin in flavones and rosmarinic acid and rosmarinic acid‐3‐ O ‐glucoside in phenolic acids are the most abundant ones (Guan et al., 2014; Kim & Lee, 2019; Lee et al., 2013; Zhou et al., 2014). Besides, flavan‐3‐ols (catechin), flavones (apigenin‐7‐ O ‐glucoside), and phenolic acids (rosmarinic acid methyl ester and ferulic acid) were identified in perilla seed (Guan et al., 2014; Ha et al., 2012; Peng et al., 2005).…”
Section: Polyphenols and Other Bioactives In Specialty Seedsmentioning
confidence: 99%
“…Numerous factors, such as genotype (variety and/or cultivar), seasons, agricultural practices, and environment conditions, among others, have been shown to affect the nutritional and functional characteristics of specialty seeds. This in turn influences the biological activities, especially the antioxidant effect of selected specialty seeds (Irakli et al., 2019; Kim & Lee, 2019; Pellegrini et al., 2018a). Several studies have reported these factors to affect the compositions of chia, flaxseed, hemp, quinoa, perilla, and sesame seeds.…”
Section: Bioavailability Of Nutrients and Bioactives From Specialty Seedsmentioning
confidence: 99%
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“…Low IC50 values against both monophenolase and diphenolase activty of mushroom tyrosinase have been very recently reported for p-coumaric and caffeic acid [66], belonging to the cinammic acid family ( Figure 7). The IC50 values together with structural formulas for other phenolic compounds widely distributed in nature that have been the subject of studies that appeared in the last five years [53,62,63,[67][68][69][70][71][72][73][74][75][76][77][78][79][80][81][82] Low IC 50 values against both monophenolase and diphenolase activty of mushroom tyrosinase have been very recently reported for p-coumaric and caffeic acid [66], belonging to the cinammic acid family ( Figure 7). Moving to simple phenols, significant inhibition activity has been described for 4-hydroxybenzyl alcohol (IC50 = 6 μM) [61] and isoeugenol (IC50 = 33.3 μM) [62], which would appear more efficient than resorcinol [55] or rhododendrol [63] themselves.…”
Section: Natural Phenolic Inhibitors Of Mushroom Tyrosinasementioning
confidence: 99%
“…Low IC50 values against both monophenolase and diphenolase activty of mushroom tyrosinase have been very recently reported for p-coumaric and caffeic acid [66], belonging to the cinammic acid family (Figure 7). The IC50 values together with structural formulas for other phenolic compounds widely distributed in nature that have been the subject of studies that appeared in the last five years [53,62,63,[67][68][69][70][71][72][73][74][75][76][77][78][79][80][81][82] The IC 50 values together with structural formulas for other phenolic compounds widely distributed in nature that have been the subject of studies that appeared in the last five years [53,62,63,[67][68][69][70][71][72][73][74][75][76][77][78][79][80][81][82] are also reported in Figures 4-8.…”
Section: Natural Phenolic Inhibitors Of Mushroom Tyrosinasementioning
confidence: 99%