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从番茄中提取番茄红素的新型改良超声提取技术。

Novel modified ultrasonication technique for the extraction of lycopene from tomatoes.

机构信息

School of Chemical Sciences, Universiti Sains Malaysia, 11800 Penang, Malaysia.

出版信息

Ultrason Sonochem. 2012 Jan;19(1):151-9. doi: 10.1016/j.ultsonch.2011.05.019. Epub 2011 Jun 12.

Abstract

Lycopene extraction was carried out via the ultrasonic assisted extraction (UAE) with response surface methodology (RSM). Sonication enhanced the efficiency of relative lycopene yield (enhancement of 26% extraction yield of lycopene in 6 replications at 40.0 min, 40.0 °C and 70.0% v/w in the presence of ultrasound), lowered the extraction temperature and shortened the total extraction time. The extraction was applied with the addition of oxygen-free nitrogen flow and change of water route during water bath sonication. The highest relative yield of lycopene obtained was 100% at 45.0 °C with total extraction time of 50.0 min (30:10:10) and ratio of solvent to freeze-dried tomato sample (v/w) of 80.0:1. Optimisation of the lycopene extraction had been performed, giving the average relative lycopene yield of 99% at 45.6 min, 47.6 °C and ratio of solvent to freeze-dried tomato sample (v/w) of 74.4:1. From the optimised model, the average yield of all-trans lycopene obtained was 5.11±0.27 mg/g dry weight. The all-trans lycopene obtained from the high-performance liquid chromatography (HPLC) chromatograms was 96.81±0.81% with 3.19±0.81% of cis-lycopenes. The purity of total-lycopene obtained was 98.27±0.52% with β-carotene constituted 1.73±0.52% of the extract. The current improved, UAE of lycopene from tomatoes with the aid of RSM also enhanced the extraction yield of trans-lycopene by 75.93% compared to optimised conventional method of extraction. Hence, the current, improved UAE of lycopene promotes the extraction yield of lycopene and at the same time, minimises the degradation and isomerisation of lycopene.

摘要

采用超声辅助提取(UAE)和响应面法(RSM)进行番茄红素提取。超声处理提高了相对番茄红素收率(在 40.0 分钟、40.0°C 和 70.0%v/w 下,6 次重复超声增强番茄红素提取收率 26%),降低了提取温度,缩短了总提取时间。提取过程中添加无氧氮气流,并在水浴超声过程中改变水的流向。在 45.0°C 下,总提取时间为 50.0 分钟(30:10:10),溶剂与冻干番茄样品的体积比(v/w)为 80.0:1 时,获得的相对番茄红素收率最高为 100%。对番茄红素提取进行了优化,在 45.6 分钟、47.6°C 和溶剂与冻干番茄样品的体积比(v/w)为 74.4:1 时,平均相对番茄红素收率为 99%。从优化模型中,获得的全反式番茄红素平均收率为 5.11±0.27mg/g 干重。高效液相色谱(HPLC)图谱中获得的全反式番茄红素含量为 96.81±0.81%,顺式番茄红素含量为 3.19±0.81%。获得的总番茄红素纯度为 98.27±0.52%,提取物中β-胡萝卜素含量为 1.73±0.52%。与优化的常规提取方法相比,本研究中采用响应面法优化的超声辅助提取番茄红素,提高了反式番茄红素的提取收率,提高了 75.93%。因此,本研究中改进的超声辅助提取番茄红素促进了番茄红素的提取收率,同时最大限度地减少了番茄红素的降解和异构化。

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