在盒子内优化大豆饭的酶性消化,用于小的生产
Xiao Zhang1, Qixuan He1, Junmei Li1
1College of Animal Science, Xinjiang Agricultural University, Urumqi 830052, China.
Foods (Basel, Switzerland)
|February 13, 2026
概括
优化大豆粉的酶解水解显著提高了小含量16倍. 这一过程提高了蛋白质结构,氨基酸产量和抗氧化活性,产生了有价值的生物活性.
科学领域:
- 食品科学 食品科学 食品科学
- 生物技术是生物技术.
- 生物化学 生物化学
背景情况:
- 豆是丰富的蛋白质来源,但需要加工才能得到最佳利用.
- 酶性水解提供了一种分解蛋白质成较小,生物活性的方法.
- 提高水解效率是释放大豆蛋白的功能潜力的关键.
研究的目的:
- 为了优化大豆粉的酶解水解条件.
- 为了提高小和功能产品的产量.
- 描述大豆粉在水解过程中的结构和功能变化.
主要方法:
- 为了优化,采用了单因素实验和响应表面方法 (Box-Behnken设计).
- 酶解水解参数包括酶度,反应时间,温度和水分含量系统地变化.
- 进行了结构分析 (SEM,FTIR) 和成分分析 (氨基酸,含量,抗氧化活性).
主要成果:
- 确定了最佳的水解条件:1.45%的酶,62小时,36.5°C,35%的水分.
- 在最佳条件下,小含量增加了16.33倍.
- 酶治疗破坏了大豆粉结构,增加了114.2%的自由氨基酸,并将DPPH激素清除活性从18.37%提高到57.99%.
结论:
- 优化的酶性水解显著提高了大豆粉的产量和功能性质.
- 该研究提供了一个强大的模型来预测水解效率,并最大限度地提高生物活性的生产.
- 这些发现支持从大豆粉中开发高价值蛋白质产品.
相关概念视频
Protein Digestion
111.3K
Protein digestion begins in the stomach, where the highly acidic environment can easily disrupt protein structure by exposing the peptide bonds of polypeptide chains. After polypeptide chains are broken into individual amino acids by a series of digestive enzymes, the amino acids are transported to the liver via the bloodstream to produce energy.
111.3K
Lipid Digestion
99.9K
Lipids are large molecules that are generally not water-soluble. Since most of the digestive enzymes in the human body are water-based, there are specific steps the body must take to break down lipids and make them available for use.
99.9K
Carbohydrate Digestion
122.8K
Carbohydrate digestion and metabolism break down simple and complex carbohydrates from food into saccharides (i.e., sugars) for the body to use as energy. Carbohydrate digestion starts in the mouth during mastication, or chewing. The masticated carbohydrates remain intact in the stomach. Digestion resumes in the duodenum of the small intestine, where pancreatic alpha-amylase and brush border enzymes of the microvilli convert complex carbohydrates to monosaccharides. Finally, the monosaccharides...
122.8K
Peptide Bonds
83.6K
A peptide bond covalently attaches amino acids through a dehydration reaction. One amino acid's carboxyl group and another amino acid's amino group combine, releasing a water molecule. The resulting bond is the peptide bond. The products that such linkages form are peptides. As more amino acids join this growing chain, the resulting chain is a polypeptide. Each polypeptide has a free amino group at one end. This end has the N-terminal, or the amino-terminal, and the other end has a free...
83.6K
What is Monogastric Digestion?
75.8K
The human body contains a monogastric digestive system. In a monogastric digestive system, the stomach only contains one chamber in which it digests food. Several other animal species also have monogastric digestive systems, including pigs, horses, dogs, and birds. This chapter, however, focuses on the human digestive system.
75.8K
Regulation of the Digestive System
3.4K
Digestive activity regulation hinges on three primary components. Activation is prompted by a multitude of mechanical and chemical indicators, primarily detected by receptors within the stomach and intestines' walls. These receptors predominantly respond to factors such as mechanical stretching of the organ walls, changes in pH and osmolarity, and the presence of digesting materials and their by-products.
The effectors in this regulation system are glands and smooth muscles. Activation of...
The effectors in this regulation system are glands and smooth muscles. Activation of...
3.4K


