Department of Bio Engineering, National Institute of Technology, Agartala 799046, India.
Department of Bio Engineering, National Institute of Technology, Agartala 799046, India.
Ultrason Sonochem. 2020 Jan;60:104762. doi: 10.1016/j.ultsonch.2019.104762. Epub 2019 Aug 29.
The present study is mainly concerned for the development of an optimal ultrasound-assisted extraction (UAE) condition for phycobiliproteins (PBPs) from Oscillatoria sp. (BTA 170) using Taguchi methodology. Four process parameters viz. solid to liquid ratio, duty cycle, electrical acoustic intensity, and pH, for UAE were optimized using Taguchi methodology for enhanced PBPs extraction. The ratio of signal to noise (S/N) was used to compute the optimized condition required to attain a higher yield of PBPs, the average performance of individual parameter and corresponding interactive effects. The statistically significant parameters with their contribution were assessed using Analysis of variance (ANOVA). Results showed that duty cycle contributed the maximum influence (30.81%) on phycocyanin (PC) extraction followed by a solid liquid ratio (28.62%), pH (22.46%) and electrical acoustic intensity (18.10%). The highest contribution on the extraction of phycoerythrin (PE) was found from pH (33.16%), followed by duty cycle (31.57%), solid to liquid ratio (22.83%) and electrical acoustic intensity (12.45%). For extraction of allophycocyanin (APC), the duty cycle, solid to liquid ratio, pH and electrical acoustic intensity contributed 29.47, 29.07, 29.03, and 12.43% respectively. Results obtained from Taguchi methodology indicated that enhanced PC (94.10%), PE (95.20%) and APC (90.54%) can be achieved with solid-liquid ratio (0.2 g/ml), electrical acoustic intensity (16.99 w/cm), duty cycle (75%), and pH 7 than the yield of PBPs obtained under unoptimized condition. In the present study, higher yield of PC (38.99%), PE (20.84%), and APC (11.93%) were attained with UAE compared to yield obtained from homogenized Oscillatoria sp. BTA 170 using 0.05 M phosphate buffer. Batch extraction data of PBPs under UAE was fitted well with the second order model. The values of second-order rate constant (k) were computed as 6.66 × 10, 64.09 × 10 and 1.49 × 10 L/mg/min for extraction of PC, PE and APC respectively. The PBPs exhibited significant antioxidant property and hydrogen peroxide scavenging activity, which were increased with the enhancement of PBPs concentration.
本研究主要关注使用 Taguchi 方法从 Oscillatoria sp. (BTA 170) 中开发出一种最佳的超声辅助提取 (UAE) 条件来提取藻蓝蛋白 (PBPs)。使用 Taguchi 方法优化了四个过程参数,即固液比、占空比、电声强度和 pH 值,以提高 PBPs 的提取效率。使用信噪比 (S/N) 来计算达到更高 PBPs 产率所需的优化条件,以及单个参数的平均性能和相应的交互作用。使用方差分析 (ANOVA) 评估具有统计学意义的参数及其贡献。结果表明,占空比对藻蓝蛋白 (PC) 的提取影响最大 (30.81%),其次是固液比 (28.62%)、pH 值 (22.46%) 和电声强度 (18.10%)。对于藻红蛋白 (PE) 的提取,pH 值的贡献最大 (33.16%),其次是占空比 (31.57%)、固液比 (22.83%) 和电声强度 (12.45%)。对于别藻蓝蛋白 (APC) 的提取,占空比、固液比、pH 值和电声强度分别贡献了 29.47%、29.07%、29.03%和 12.43%。Taguchi 方法的结果表明,与未优化条件下获得的 PBPs 产量相比,在优化条件下,PC(94.10%)、PE(95.20%)和 APC(90.54%)的产量可分别提高至固液比 (0.2 g/ml)、电声强度 (16.99 w/cm)、占空比 (75%)和 pH 值 7。与使用 0.05 M 磷酸盐缓冲液从均质化的 Oscillatoria sp. BTA 170 中获得的产量相比,UAE 下 PBPs 的产量更高。在 UAE 下进行的 PBPs 批处理提取数据与二阶模型拟合良好。提取 PC、PE 和 APC 的二阶速率常数 (k) 值分别计算为 6.66×10、64.09×10 和 1.49×10 L/mg/min。PBPs 表现出显著的抗氧化性能和过氧化氢清除活性,并且随着 PBPs 浓度的增加而增强。