Department of Agricultural and Food Engineering, Indian Institute of Technology-Kharagpur, Kharagpur, India.
J Sci Food Agric. 2024 Feb;104(3):1282-1297. doi: 10.1002/jsfa.13010. Epub 2023 Oct 11.
Betel leaf is an essential oil (EO)-rich plant from the Piperaceace family used as traditional herbal medicine. The minimum EO yield by the conventional extraction method was increased by adopting cold plasma (CP) as pretreatment. Thus, the present study involved optimizing the CP conditions and analyzing the EO's qualities.
Optimization of the CP parameters like electric voltage (A = 25-35 kV), treatment duration (B = 4-12 min) and extraction time (C = 60-180 min) was done for maximum EO yield (R1) and total phenolic content (TPC; R2) using response surface methodology with Box-Behnken design. Maximum EO yield (20.76 ± 1.15 g kg ) and TPC (29.43 ± 1.7 mg GAE mL ) were derived under optimal conditions: A = 34 kV, B = 10 min and C = 110 min. A quadratic polynomial model developed by multiple regression analysis revealed that the three independent variables significantly influenced the oil yield and TPC with R values of 0.9909 and 0.9962, respectively. The CP treatment significantly altered the betel leaf powder morphology and increased the EO's radical scavenging capacity and bioactive compounds like chavibetol, chavibetol acetate, hydroxychavicol and γ-muurolene. Conversely, the functional groups, refractive index and specific gravity were unaffected by CP treatment.
The EO yield and its qualities were improved by applying CP under optimal conditions which can be helpful for scaled-up industrial processes with further studies. The identified bioactive compounds are valuable in the food and pharmaceutical industries. © 2023 Society of Chemical Industry.
胡椒科的槟榔叶是一种富含精油(EO)的植物,用作传统草药。通过采用冷等离子体(CP)作为预处理,提高了常规提取方法的最小精油产量。因此,本研究涉及优化 CP 条件和分析 EO 的质量。
使用响应面法和 Box-Behnken 设计对 CP 参数(A=25-35 kV、B=4-12 min 和 C=60-180 min)进行优化,以获得最大精油产量(R1)和总酚含量(R2)。在最佳条件下(A=34 kV、B=10 min 和 C=110 min),获得了最大的精油产量(20.76±1.15 g kg)和总酚含量(29.43±1.7 mg GAE mL)。多元回归分析得到的二次多项式模型表明,三个独立变量对油产量和 TPC 有显著影响,R 值分别为 0.9909 和 0.9962。CP 处理显著改变了槟榔叶粉的形态,提高了 EO 的自由基清除能力和生物活性化合物,如 chavibetol、chavibetol acetate、羟基 chavicol 和γ- muurolene。相反,CP 处理对官能团、折射率和比重没有影响。
在最佳条件下应用 CP 可以提高精油产量和质量,这对进一步研究可用于规模化工业过程的方法很有帮助。鉴定出的生物活性化合物在食品和制药工业中具有很高的价值。© 2023 化学工业协会。