[Enzymatic synthesis of homogenous triacylglycerol in media without solvent].

A Sayari, Y Gargouri
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Abstract

The study of triacylglycerols synthesis using 1,3-regiospecific immobilized Rhizomucor miehei lipase (lipozyme) or non-regiospecific immobilized Candida antarctica lipase (novozyme) as biocatalyst was carried out in pure substrates conditions. Our results show that long-chain triacylglycerols were synthesized from glycerol and free fatty acids at a higher rate than medium-chain triacylglycerols which were themselves synthesized at a higher rate than short-chain ones. Furthermore, it is clearly shown that linoleic acid is more slowly esterifled than oleic acid which is itself more slowly esterified than octadecanoic acid. The higher the number of unsaturation, the lower the rate of synthesis and the final yield. On the other hand, the final yield of synthesis is comparable when using specific or non-specific lipase, as biocatalyst.

[无溶剂介质中均质三酰甘油的酶法合成]。
以1,3区域特异性固定化根霉米黑脂酶(lipozyme)和非区域特异性固定化南极念珠菌脂酶(novozyme)为生物催化剂,在纯底物条件下进行了合成三酰甘油的研究。结果表明,由甘油和游离脂肪酸合成长链甘油三酯的速率高于中链甘油三酯,而中链甘油三酯本身的合成速率高于短链甘油三酯。此外,还清楚地表明,亚油酸的酯化速度比油酸慢,而油酸的酯化速度比十八烷酸慢。不饱和数越多,合成速率越低,最终收率越低。另一方面,当使用特异性或非特异性脂肪酶作为生物催化剂时,合成的最终产率是相当的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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