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酰化油菜籽(甘蓝型油菜)肽的乳化特性

Emulsifying properties of acylated rapeseed (Brassica napus L.) peptides.

作者信息

Sánchez-Vioque Raúl, Bagger Christian L, Larré Colette, Guéguen Jacques

机构信息

Unité de Recherche sur les Protéines Végétales et leurs Interactions, Institut National de la Recherche Agronomique (I.N.R.A.), Rue de la Géraudière, B.P. 71627, 44316 Nantes Cedex 03, France.

出版信息

J Colloid Interface Sci. 2004 Mar 1;271(1):220-6. doi: 10.1016/j.jcis.2003.10.028.

Abstract

A peptide fraction having an average size of 5.6 amino acids has been purified from a rapeseed hydrolyzate, acylated using C(10)-C(14) acyl chlorides, and the surface tension values at the air-water interface and emulsifying properties studied. As compared with standard surface-active proteins, such as bovine serum albumin (BSA), and with detergents such as sodium dodecyl sulfate (SDS), acylated peptides exhibited particular surface characteristics. The surface tension at air-water interface of acylated peptides ranged from 29.1 to 37.8 mN/m at equilibrium; these values were considerably lower than those for BSA and closer those for SDS, suggesting that acylated peptides pack at the air-water interface more like detergents than like proteins. The adsorption of acylated peptides to the oil-water interface was slower than for SDS or BSA, as deduced from the rather large size of oil droplets in emulsions (31-17 microm). Consequently, these emulsions creamed extensively during aging. Nevertheless, emulsions generated from acylated peptides were in general more stable to phase separation than those prepared from SDS. The C(14) acylated peptides were more effective for generating emulsions than the C(10) and C(12) derivatives, especially concerning the stability of emulsions against coalescence and phase separation, which was better than SDS and close to BSA.

摘要

从菜籽水解物中纯化出了平均大小为5.6个氨基酸的肽段,用C(10)-C(14)酰氯进行酰化,并研究了其在气-水界面的表面张力值和乳化性能。与标准表面活性蛋白如牛血清白蛋白(BSA)以及洗涤剂如十二烷基硫酸钠(SDS)相比,酰化肽表现出特殊的表面特性。酰化肽在气-水界面的平衡表面张力范围为29.1至37.8 mN/m;这些值明显低于BSA的值,更接近SDS的值,表明酰化肽在气-水界面的堆积方式更像洗涤剂而非蛋白质。从乳液中油滴的相当大尺寸(31 - 17微米)推断,酰化肽在油水界面的吸附比SDS或BSA慢。因此,这些乳液在老化过程中大量分层。然而,由酰化肽产生的乳液总体上比由SDS制备的乳液对相分离更稳定。C(14)酰化肽在产生乳液方面比C(10)和C(12)衍生物更有效,特别是在乳液抗聚结和相分离的稳定性方面,优于SDS且接近BSA。

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