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阿拉伯胶对姜黄素抗灰葡萄孢菌孢子的光动力抗真菌活性的影响。

Effect of gum Arabic on antifungal photodynamic activity of curcumin against Botrytis cinerea spores.

作者信息

Seididamyeh Maral, Netzel Michael E, Mereddy Ram, Harmer Jeffrey R, Sultanbawa Yasmina

机构信息

Centre for Nutrition and Food Sciences, Queensland Alliance for Agriculture and Food Innovation, The University of Queensland, Indooroopilly, QLD, 4068, Australia.

Department of Agriculture and Fisheries, Queensland Government, Coopers Plains, QLD 4108, Australia.

出版信息

Int J Biol Macromol. 2024 Dec;283(Pt 1):137019. doi: 10.1016/j.ijbiomac.2024.137019. Epub 2024 Oct 29.

Abstract

This study investigated the effect of gum Arabic on curcumin's phototoxicity against Botrytis cinerea, a significant cause of postharvest losses in horticultural produce. Curcumin-loaded nanoparticle suspensions and emulsions stabilized with gum Arabic were prepared and their absorbance, fluorescence emission, physicochemical properties, antimicrobial photodynamic activity (using response surface methodology (RSM)), and reactive oxygen species (ROS) generation (via electron paramagnetic resonance (EPR) spectroscopy) were evaluated. Fluorescence emission exhibited a blue shift (510-550 nm) in both formulations, with emulsions showing higher intensities due to a more hydrophobic environment. Gum Arabic concentration significantly influenced the physicochemical properties of both suspensions, with nanoparticle size decreasing from 572.80 nm to 202.80 nm as gum Arabic concentration increased from 0.5 % to 2.5 % (at 65 μM curcumin). Nanoparticle suspensions demonstrated higher antimicrobial efficacy, reducing B. cinerea spores by 0.39-3.40 log(CFU.ml), compared to 0.00-0.46 log(CFU.ml) in emulsions. The phototoxic effect was dependent on curcumin concentration and light irradiance, as demonstrated by RSM. EPR confirmed the generation of superoxide anion and hydroxyl radicals in both formulations, which indicated a Type I photodynamic mechanism, with nanoparticle suspensions having a sustained ROS generation. Overall, gum Arabic did not impair curcumin's antifungal photodynamic activity, making it as a promising stabiliser for curcumin-based treatments.

摘要

本研究调查了阿拉伯胶对姜黄素针对灰葡萄孢菌的光毒性的影响,灰葡萄孢菌是园艺产品采后损失的一个重要原因。制备了用阿拉伯胶稳定的载姜黄素纳米颗粒悬浮液和乳液,并评估了它们的吸光度、荧光发射、物理化学性质、抗菌光动力活性(使用响应面法(RSM))以及活性氧(ROS)生成(通过电子顺磁共振(EPR)光谱)。两种制剂的荧光发射均表现出蓝移(510 - 550 nm),由于环境更疏水,乳液的强度更高。阿拉伯胶浓度显著影响两种悬浮液的物理化学性质,当阿拉伯胶浓度从0.5%增加到2.5%(在姜黄素浓度为65μM时),纳米颗粒尺寸从572.80 nm减小到202.80 nm。纳米颗粒悬浮液表现出更高的抗菌效果,与乳液中0.00 - 0.46 log(CFU.ml)相比,可将灰葡萄孢菌孢子减少0.39 - 3.40 log(CFU.ml)。如响应面法所示,光毒性作用取决于姜黄素浓度和光照强度。EPR证实两种制剂中均产生了超氧阴离子和羟基自由基,这表明是I型光动力机制,纳米颗粒悬浮液具有持续的ROS生成。总体而言,阿拉伯胶不会损害姜黄素的抗真菌光动力活性,使其成为基于姜黄素治疗的一种有前景的稳定剂。

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