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从脱毒麻疯树籽饼中分离出的蛋白质的毒性化合物、抗营养因子及功能特性

Toxic compound, anti-nutritional factors and functional properties of protein isolated from detoxified Jatropha curcas seed cake.

作者信息

Saetae Donlaporn, Suntornsuk Worapot

机构信息

Department of Microbiology, Faculty of Science, King Mongkut's University of Technology Thonburi, Bangkok 10140, Thailand; E-Mail:

出版信息

Int J Mol Sci. 2010 Dec 28;12(1):66-77. doi: 10.3390/ijms12010066.

Abstract

Jatropha curcas is a multipurpose tree, which has potential as an alternative source for biodiesel. All of its parts can also be used for human food, animal feed, fertilizer, fuel and traditional medicine. J. curcas seed cake is a low-value by-product obtained from biodiesel production. The seed cake, however, has a high amount of protein, with the presence of a main toxic compound: phorbol esters as well as anti-nutritional factors: trypsin inhibitors, phytic acid, lectin and saponin. The objective of this work was to detoxify J. curcas seed cake and study the toxin, anti-nutritional factors and also functional properties of the protein isolated from the detoxified seed cake. The yield of protein isolate was approximately 70.9%. The protein isolate was obtained without a detectable level of phorbol esters. The solubility of the protein isolate was maximal at pH 12.0 and minimal at pH 4.0. The water and oil binding capacities of the protein isolate were 1.76 g water/g protein and 1.07 mL oil/g protein, respectively. The foam capacity and stability, including emulsion activity and stability of protein isolate, had higher values in a range of basic pHs, while foam and emulsion stabilities decreased with increasing time. The results suggest that the detoxified J. curcas seed cake has potential to be exploited as a novel source of functional protein for food applications.

摘要

麻疯树是一种多用途树木,具有作为生物柴油替代来源的潜力。它的所有部分还可用于人类食品、动物饲料、肥料、燃料和传统药物。麻疯树籽饼是生物柴油生产过程中产生的低价值副产品。然而,籽饼含有大量蛋白质,同时存在一种主要有毒化合物:佛波酯以及抗营养因子:胰蛋白酶抑制剂、植酸、凝集素和皂苷。这项工作的目的是对麻疯树籽饼进行解毒,并研究毒素、抗营养因子以及从解毒后的籽饼中分离出的蛋白质的功能特性。蛋白质分离物的产率约为70.9%。获得的蛋白质分离物中未检测到佛波酯。蛋白质分离物的溶解度在pH 12.0时最大,在pH 4.0时最小。蛋白质分离物的水结合能力和油结合能力分别为1.76 g水/g蛋白质和1.07 mL油/g蛋白质。蛋白质分离物的泡沫能力和稳定性,包括乳化活性和稳定性,在碱性pH范围内具有较高的值,而泡沫和乳化稳定性随时间增加而降低。结果表明,解毒后的麻疯树籽饼有潜力作为一种新型功能性蛋白质来源用于食品应用。

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