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姜黄素介导的光动力作用对草莓果实中分离的孢子的灭活作用。

The Inactivation by Curcumin-Mediated Photosensitization of Spores Isolated from Strawberry Fruits.

机构信息

Institute of Light Industry and Food Engineering, Guangxi University, Nanning 530004, China.

Queensland Department of Agriculture and Fisheries, 39 Kessels Rd, Coopers Plains, QLD 4108, Australia.

出版信息

Toxins (Basel). 2021 Mar 9;13(3):196. doi: 10.3390/toxins13030196.

Abstract

Photosensitization is a novel environmentally friendly technology with promising applications in the food industry to extend food shelf life. In this study, the natural food dye curcumin, when combined with visible light (430 nm), was shown to be an effective photosensitizer against the common phytopathogenic fungi (the cause of grey mould). Production of the associated phytotoxic metabolites botrydial and dihydrobotrydial was measured by our newly developed and validated HRAM UPLC-MS/MS method, and was also shown to be reduced by this treatment. With a light dose of 120 J/cm, the reduction in spore viability was directly proportional to curcumin concentrations, and the overall concentration of both botrydial and dihydrobotrydial also decreased with increasing curcumin concentration above 200 µM. With curcumin concentrations above 600 µM, the percentage reduction in fungal spores was close to 100%. When the dye concentration was increased to 800 µM, the spores were completely inactive and neither botrydial nor dihydrobotrydial could be detected. These results suggest that curcumin-mediated photosensitization is a potentially effective method to control spoilage, and also to reduce the formation of these phytotoxic botryane secondary metabolites.

摘要

光敏化作用是一种新颖的环保技术,有望在食品工业中应用,以延长食品的保质期。在这项研究中,天然食品染料姜黄素与可见光(430nm)结合,被证明是一种有效的光增敏剂,可对抗常见的植物病原菌(导致灰霉病的原因)。我们新开发和验证的 HRAM UPLC-MS/MS 方法测量了相关植物毒性代谢物 botrydial 和二氢 botrydial 的产量,并且还表明这种处理可以减少其产量。在光剂量为 120 J/cm 时,孢子活力的降低与姜黄素浓度直接成正比,并且随着姜黄素浓度超过 200µM,两种 botrydial 和二氢 botrydial 的总浓度也随之降低。当姜黄素浓度超过 600µM 时,真菌孢子的减少率接近 100%。当染料浓度增加到 800µM 时,孢子完全失去活性,并且无法检测到 botrydial 或二氢 botrydial。这些结果表明,姜黄素介导的光增敏作用是一种控制腐败和减少这些植物毒性 botryane 次生代谢物形成的有效方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/43c9/8002169/210c4e0b05c7/toxins-13-00196-g001.jpg

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