Back to Search Start Over

Phenolic Compounds in Extracts of Hibiscus acetosella (Cranberry Hibiscus) and Their Antioxidant and Antibacterial Properties.

Authors :
Lyu, Jae Il
Ryu, Jaihyunk
Jin, Chang Hyun
Kim, Dong-Gun
Kim, Jung Min
Seo, Kyoung-Sun
Kim, Jin-Baek
Kim, Sang Hoon
Ahn, Joon-Woo
Kang, Si-Yong
Kwon, Soon-Jae
Pezzani, Raffaele
Source :
Molecules; Sep2020, Vol. 25 Issue 18, p4190, 1p
Publication Year :
2020

Abstract

Hibiscus species are rich in phenolic compounds and have been traditionally used for improving human health through their bioactive activities. The present study investigated the phenolic compounds of leaf extracts from 18 different H. acetosella accessions and evaluated their biofunctional properties, focusing on antioxidant and antibacterial activity. The most abundant phenolic compound in H. acetosella was caffeic acid, with levels ranging from 14.95 to 42.93 mg/100 g. The antioxidant activity measured by the ABTS assay allowed the accessions to be classified into two groups: a high activity group with red leaf varieties (74.71–84.02%) and a relatively low activity group with green leaf varieties (57.47–65.94%). The antioxidant activity was significantly correlated with TAC (0.933), Dp3-Sam (0.932), Dp3-Glu (0.924), and Cy3-Sam (0.913) contents (p < 0.001). The H. acetosella phenolic extracts exhibited antibacterial activity against two bacteria, with zones of inhibition between 12.00 and 13.67 mm (Staphylococcus aureus), and 10.67 and 13.33 mm (Pseudomonas aeruginosa). All accessions exhibited a basal antibacterial activity level (12 mm) against the Gram-positive S. aureus, with PI500758 and PI500764 exhibiting increased antibacterial activity (13.67 mm), but they exhibited a more dynamic antibacterial activity level against the Gram-negative P. aeruginosa. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
14203049
Volume :
25
Issue :
18
Database :
Complementary Index
Journal :
Molecules
Publication Type :
Academic Journal
Accession number :
146144272
Full Text :
https://doi.org/10.3390/molecules25184190