School of Food and Biological Engineering, Jiangsu University, Zhenjiang 212013, PR China.
School of Food and Biological Engineering, Jiangsu University, Zhenjiang 212013, PR China; School of Biological and Food Engineering, Chuzhou University, Chuzhou 239000, PR China.
Food Chem. 2021 Nov 1;361:130108. doi: 10.1016/j.foodchem.2021.130108. Epub 2021 May 15.
This is the first time to investigate the synergistic inactivation effect and mechanism of multifrequency ultrasound (MTUS) on A. acidoterrestris (AAT) vegetative cells and spores, nutrients and enzymes of orange juice. The optimized results of MTUS (using Box Behnken design- surface responsemethodology) and further comparison with different mode of ultrasound (mono-and multi-frequency) revealed that 20/40 kHz, 24 min and 64 °C were the best optimum results. The AAT spores and vegetative cells were inactivated by 2 and 4 logs, respectively, without deteriorating orange juice contents. In addition, AAT inactivation indicated an inversely proportional relationship with ROS production. FT-IR and UV-Vis spectroscopy characterization confirmed the existence of ROS in treated orange juice and LF-NMR analysis confirmed the inactivation of AAT spores. The findings illustrated the successfully used dual-frequency ultrasound technology for fruit beverages, promoting beneficial changes in physical properties without any significant effects on the quality of ascorbic acid.
这是首次研究多频超声(MTUS)对 A. acidoterrestris(AAT)营养细胞和孢子、橙汁中营养物质和酶的协同灭活效果和机制。MTUS 的优化结果(使用 Box Behnken 设计-表面响应方法)并与不同模式的超声(单频和多频)进一步比较表明,20/40 kHz、24 分钟和 64°C 是最佳优化结果。AAT 孢子和营养细胞的失活分别达到 2 和 4 个对数,而橙汁的含量没有恶化。此外,AAT 的失活与 ROS 的产生呈反比关系。FT-IR 和 UV-Vis 光谱特性证实了处理橙汁中 ROS 的存在,LF-NMR 分析证实了 AAT 孢子的失活。研究结果说明了双频超声技术在果汁饮料中的成功应用,在不显著影响抗坏血酸质量的情况下促进了物理性质的有益变化。