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油茶基中长中短链结构脂的研究进展:组成-结构关系。

Insight into the medium-long-medium structured lipids made from Camellia oil: Composition-structure relationship.

机构信息

School of Chemistry and Chemical Engineering, South China University of Technology, Guangzhou, China.

Hunan Singular Biological Technology Co., Ltd., Changsha, China.

出版信息

J Food Sci. 2023 Aug;88(8):3384-3397. doi: 10.1111/1750-3841.16677. Epub 2023 Jun 22.

Abstract

Medium-long-medium (MLM) structured lipid (SL) as a new SL is a potential functional ingredient in food and nutraceutical products, but its composition-structure-physicochemical properties relationship has not been revealed in food industry. MLM type of medium-long chain triacylglycerol (MLCT) was synthesized from Camellia oil by combi-lipase; its physicochemical properties and composition-structure relationship were investigated in this research. The higher MLCT (67.24% ± 0.09) and MLM (52.71% ± 0.53) productivities were achieved after parameter optimization. The physicochemical characterization of SLs exhibited mild thermal property, intermediate Fourier transform infrared spectroscopy absorption intensity, and better crystal morphology. Joint characterizations identified that MLM and long-medium-long type SL were rich in 1,3-dioctanoyl-2-linoleoyl glyceride (CaLCa), 1,3-dioctanoyl-2-oleoyl glyceride (CaOCa), 1,3-dilinoleoyl-2-octanoyl glyceride (LCaL), and 1,3-dilinoleoyl-2-decanoyl glyceride (LCL) components, respectively. This is ascribed to the higher proportion of caprylic and linoleic acid in 1,3-specific enzyme. The 3D structural analysis further demonstrated that the CaLCa, CaOCa, LCaL, and LCL molecules had lower steric energy to form symmetrical structure at 1,3-position. This research provides a practical method to produce MLM-type SL from edible oils and fats in food industry.

摘要

中长中(MLM)结构脂质(SL)作为一种新型 SL,是食品和营养保健品中具有潜力的功能性成分,但在食品工业中,其组成-结构-物理化学性质关系尚未被揭示。通过组合脂肪酶,从茶籽油合成了 MLM 型中长链三酰基甘油(MLCT),研究了其物理化学性质和组成-结构关系。经过参数优化,获得了更高的 MLCT(67.24%±0.09)和 MLM(52.71%±0.53)产率。SL 的物理化学特性表现出温和的热性质、中等的傅里叶变换红外光谱吸收强度和更好的晶体形态。联合特征分析表明,MLM 和长-中-长型 SL 富含 1,3-二辛酰基-2-亚油酰基甘油(CaLCa)、1,3-二辛酰基-2-油酰基甘油(CaOCa)、1,3-二亚油酰基-2-辛酰基甘油(LCaL)和 1,3-二亚油酰基-2-癸酰基甘油(LCL)成分,这归因于 1,3-特异性酶中辛酸和亚油酸的比例较高。3D 结构分析进一步表明,CaLCa、CaOCa、LCaL 和 LCL 分子在 1,3-位具有较低的立体能,有利于形成对称结构。本研究为食品工业中从食用油脂生产 MLM 型 SL 提供了一种实用方法。

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