Quorum Quenching and Microbial Control through Phenolic Extract of Eugenia Uniflora Fruits

紫红色杆菌 化学 食品科学 抗菌剂 牙髓(牙) 抗氧化剂 群体感应 酚类 作文(语言) 生物化学 有机化学 毒力 语言学 基因 医学 哲学 病理
作者
Adeline Conceição Rodrigues,Flávia Guimarães ZOLA,Brígida D' Ávila Oliveira,Nayara Thais Barbosa SACRAMENTO,Elis Regina da Silva,Michele Corrêa Bertoldi,Jason G. Taylor,Uelinton Manoel Pinto
出处
期刊:Journal of Food Science [Wiley]
卷期号:81 (10): M2538-M2544 被引量:22
标识
DOI:10.1111/1750-3841.13431
摘要

Abstract We describe the characterization of the centesimal composition, mineral and phenolic content of Eugenia uniflora fruit and the determination of the antioxidant, antimicrobial and quorum quenching activities of the pulp phenolic extract. Centesimal composition was determined according to standard methods; trace elements were measured by total reflection X‐ray fluorescence spectroscopy. The phenolic compounds were extracted by solid‐phase chromatography and quantified by spectrophotometry. Antioxidant activity was determined by using 3 different methods. Antimicrobial activity was evaluated against a panel of foodborne microorganisms and antiquorum sensing activity in Chromobacterium violaceum was performed by measuring inhibition of quorum sensing dependent violacein production. The centesimal composition (per 100 g of pulp) was as follows: protein 3.68 ± 0.21 g, lipids 0.02 ± 0.03 g, carbohydrates 10.31 g and fiber 2.06 g. Trace elements (mg/g of pulp) were determined as: K 0.90, Ca 3.36, Fe 0.60, Zn 0.17, Cl 0.56, Cr 0.06, Ni 0.04, and Cu 0.07. The pulp is a source of phenolic compounds and presents antioxidant activity similar to other berries. The fruit phenolic extract inhibited all tested bacteria. We also found that the fruit phenolic extract at low subinhibitory concentrations inhibited up to 96% of violacein production in C. violaceum , likely due to the fruit's phenolic content. This study shows the contribution of E. uniflora phenolic compounds to the antioxidant, antimicrobial and the newly discovered quorum quenching activity, all of which could be used by the food and pharmaceutical industries to develop new functional products.
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