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利用微波冷等离子体处理对马铃薯多酚氧化酶进行失活。

Inactivation of Potato Polyphenol Oxidase Using Microwave Cold Plasma Treatment.

机构信息

Dept. of Food Science and Technology, Seoul Women's Univ., Seoul, 01797, Republic of Korea.

出版信息

J Food Sci. 2019 May;84(5):1122-1128. doi: 10.1111/1750-3841.14601. Epub 2019 Apr 18.

Abstract

This study was conducted to examine the effects of microwave cold plasma (CP) treatment on inactivation of polyphenol oxidase (PPO) of potato. The PPO activity and treatment variables were fit to first-order kinetics, the Weibull model, and the second-order model. The optimum CP-generation power and treatment time for inactivating PPO in the PPO extract were found to be 900 W and 40 min, respectively, which resulted in the highest inactivation of PPO (49.5%). PPO activity after CP treatment of potato slices decreased from 72.4% to 59.0% as the sample surface-to-volume ratio increased from 7.1 to 9.0. CP treatment delayed the browning of potato slices. Microwave CP treatment effectively inactivated PPO in potatoes, demonstrating the potential of CP treatment for controlling PPO activity in foods. PRACTICAL APPLICATION: This study demonstrated that microwave CP treatment, a nonthermal food processing technology, inactivates PPO activity in potatoes. The results showed that the inactivation effect of CP treatment on PPO corresponded to the surface-to-volume ratio of potato slices. Furthermore, this study proposed an enzyme inactivation model that is suitable for predicting the inactivation of PPO activity and confirmed that CP treatment delayed browning in potatoes.

摘要

本研究旨在考察微波冷等离子体(CP)处理对马铃薯多酚氧化酶(PPO)失活的影响。将 PPO 活性和处理变量拟合为一级动力学、Weibull 模型和二级模型。结果表明,在 PPO 提取物中,最佳 CP 发生功率和处理时间分别为 900 W 和 40 min,可使 PPO 的失活率达到最高(49.5%)。随着样品表面积与体积比从 7.1 增加到 9.0,CP 处理后土豆片的 PPO 活性从 72.4%下降到 59.0%。CP 处理延迟了土豆片的褐变。微波 CP 处理有效地使马铃薯中的 PPO 失活,表明 CP 处理在控制食品中 PPO 活性方面具有潜力。实际应用:本研究表明,微波 CP 处理作为一种非热食品加工技术,可以使马铃薯中的 PPO 失活。结果表明,CP 处理对 PPO 的失活效果与土豆片的表面积与体积比有关。此外,本研究提出了一种适合预测 PPO 活性失活的酶失活模型,并证实 CP 处理可以延缓马铃薯的褐变。

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