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用于药妆应用的脂肪酶催化合成火龙果籽油酯:采用响应面法进行工艺优化

Lipase-catalyzed synthesis of red pitaya () seed oil esters for cosmeceutical applications: process optimization using response surface methodology.

作者信息

Abdullah Asiah, Abd Gani Siti Salwa, Yun Hin Taufiq Yap, Haiyee Zaibunnisa Abdul, Zaidan Uswatun Hasanah, Kassim Mohd Azlan, Effendi Halmi Mohd Izuan

机构信息

Department of Chemistry, Faculty of Science, Universiti Putra Malaysia 43400 UPM Serdang Selangor Malaysia

Faculty of Applied Sciences, Universiti Teknologi MARA 72500 Kuala Pilah Negeri Sembilan Malaysia.

出版信息

RSC Adv. 2019 Feb 14;9(10):5599-5609. doi: 10.1039/c8ra09418g. eCollection 2019 Feb 11.

Abstract

Esters were synthesized the alcoholysis of red pitaya seed oil with oleyl alcohol catalyzed by immobilized lipase, Lipozyme IM. The effects of synthesis parameters, including temperature, time, substrate molar ratio and enzyme loading, on the yield and productivity of esters were assessed using a central composite response surface design. The optimum yield and productivity were predicted to be about 80.00% and 0.58 mmol h, respectively, at a synthesis temperature of 50.5 °C, time of 4 h, substrate molar ratio of 3.4 : 1 and with 0.17 g of enzyme. Esters were synthesized under the optimum synthesis conditions; it was found that the average yield and productivity were 82.48 ± 4.57% and 0.62 ± 0.04 mmol h, respectively, revealing good correspondence with the predicted values. The main esters were oleyl linoleate, oleyl oleate, oleyl palmitate and oleyl stearate. The synthesized esters exhibited no irritancy effects and their physicochemical properties showed their suitability for use as cosmeceutical ingredients.

摘要

以固定化脂肪酶Lipozyme IM为催化剂,通过火龙果籽油与油醇的醇解反应合成了酯类。采用中心复合响应面设计评估了合成参数(包括温度、时间、底物摩尔比和酶负载量)对酯类产率和生产率的影响。预测在合成温度50.5℃、时间4小时、底物摩尔比3.4∶1和使用0.17克酶的条件下,最佳产率和生产率分别约为80.00%和0.58 mmol/h。在最佳合成条件下合成了酯类;结果发现平均产率和生产率分别为82.48±4.57%和0.62±0.04 mmol/h,与预测值吻合良好。主要的酯类为亚油酸油酯、油酸油酯、棕榈酸油酯和硬脂酸油酯。合成的酯类无刺激性,其物理化学性质表明它们适合用作药妆成分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c95/9060793/6f77d6cdbf80/c8ra09418g-s1.jpg

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