共查询到19条相似文献,搜索用时 690 毫秒
1.
高固形物浓度酶解反应具有终产物浓度高、废水少、冷却和浓缩能耗低、设备尺寸小等优点,是蛋白控制酶解的研究热点之一。本文系统研究了提高固形物浓度对风味蛋白酶酶法改性大豆分离蛋白分子量分布、溶解性、分散稳定性、持水力、乳化性、起泡性和泡沫稳定性的影响。研究结果表明:大豆分离蛋白经过风味蛋白酶控制酶解制备的m SPI,其产物溶解性、分散稳定性、起泡性均提高,持水力、乳化性、泡沫稳定性降低。在相同水解度下,随着固形物浓度的提高,m SPI的分散稳定性、持水力、乳化性均呈上升趋势。当水解度8%时,低浓度酶解产物起泡性高于高浓酶解产物,而水解度超过8%时,高浓酶解产物起泡性大体高于低浓酶解产物。风味蛋白酶制备的m SPI的溶解性与酶解固形物浓度无明显关系。 相似文献
2.
3.
4.
《食品工业科技》2015,(22)
使用碱性蛋白酶对大豆分离蛋白进行改性,以改善蛋白质的起泡性能。探讨酶水解过程中的酶解时间、酶解温度、底物浓度、加酶量、p H对蛋白起泡能力和泡沫稳定性的影响,在此基础上通过正交实验确定了碱性蛋白酶水解大豆分离蛋白提高起泡能力的最优水解条件:时间40 min、温度50℃、底物浓度8%、加酶量0.04%、p H8,提高泡沫稳定性最佳水解条件:时间30 min、温度40℃、底物浓度6%、加酶量0.04%、p H9。测定上述条件下大豆分离蛋白的起泡能力和泡沫稳定性分别为217.50%和93.10%。改性前后蛋白质起泡能力和泡沫稳定性均有所改善,与未改性蛋白相比起泡能力和泡沫稳定性分别提高了61.11%和20.38%。 相似文献
5.
核桃中富含脂肪、蛋白质和健康的纤维,其应用研究已引起广泛关注。该文以核桃饼粕为原料,通过酸沉碱提法分离出蛋白,以碱性蛋白酶制备不同酶解程度的核桃蛋白。对其持水性、乳化性和乳化稳定性、起泡性和泡沫稳定性进行测定。结果表明,随着酶解时间的增长,水解度在120 min达到最大为19.4%;持水性和乳化性随酶解程度的增大呈现先上升后下降的趋势,起泡性和乳化稳定性随酶解程度的增大而增大,泡沫稳定性随酶解程度增大而减小。这说明水解度可以提高也可削弱核桃分离蛋白酶解物的某些功能特性。该研究结果为深入利用核桃饼粕奠定了一定的理论基础,具有良好的应用前景。 相似文献
6.
为研究豌豆蛋白质酶解前后功能特性变化,利用Alcasase2.4L碱性蛋白酶对其限制性酶解,对酶解水解度动态变化、蛋白质回收率及酶解产物功能特性等方面进行研究。试验结果表明,Alcasase2.4L碱性蛋白酶能够有效酶解豌豆蛋白,蛋白质回收率可达84%,与豌豆原蛋白相比,在pH 2~12范围内,不同水解度的酶解产物溶解性均有明显改善,最高可达95%左右。5%水解度的酶解产物乳化性、乳化稳定性、起泡性和泡沫稳定性相比豌豆蛋白均较好,但随着酶解的进一步进行,其乳化和起泡特性均呈下降趋势。 相似文献
7.
为考察糖基化接枝及酶法相结合的复合改性对于大豆分离蛋白功能性质的影响,以提高接枝度及产物乳化能力等功能性质为主要指标,制备大豆分离蛋白与麦芽糊精糖基化产物,随后采用中性蛋白酶对该产物适度酶解,得到不同水解程度的糖基化产物水解物,研究产物的乳化能力、起泡性能及抗氧化能力的变化。实验结果表明:经过接枝及适度酶解复合改性后,大豆分离蛋白的乳化能力、起泡性能及DPPH自由基清除能力均有了较大的提高,但深度的酶解有可能破坏蛋白的空间结构,降低粘度从而影响功能性质的发挥。 相似文献
8.
鲢鱼蛋白酶法水解产物的功能性质 总被引:3,自引:0,他引:3
采用复合蛋白酶对酸法提取的鲢鱼蛋白进行水解改性。以水解鲢鱼蛋白为原料,与未酶解的鲢鱼蛋白作对照,考察其溶解性、起泡性、乳化性、持水性油性及流变学特性。结果表明:经酶解后的鲢鱼蛋白在pH2~10的范围内溶解度均在90%以上,较未酶解蛋白有明显的改善;起泡性增加不明显,仅为1.85%,泡沫稳定性延长了60min;乳化性是未酶解蛋白的8倍,乳化稳定性增加;持水、持油性降低,黏度减小。该酶法水解对鲢鱼蛋白质的部分功能性质有一定的改善效果。 相似文献
9.
10.
研究了中性蛋白酶(AS.1398)、碱性蛋白酶(2709)和双酶协同作用水解大豆分离蛋白的酶解液水解度与乳化和起泡功能特性的关系.研究发现:酶解液起泡性随水解度的增加呈上升趋势,而在不同酶解液样品中,起泡性以中性蛋白酶(单酶)酶解液最好.当水解度为20%时起泡性达到了(360±2.46)%.乳化性随着水解度增加而逐渐下降,其中以双酶复合酶解液最差(水解度为25%时乳化性最差,为17.60±0.80 mL/g). 相似文献
11.
12.
Effect of Partial Proteolysis and Succinylation on Functionality of Corn Germ Protein Isolate 总被引:2,自引:0,他引:2
Corn germ protein isolate (CGPI) was partially hydrolyzed with trypsin and pepsin and succinylated at three levels. Various functional and electrophoretic properties of the native and modified protein were determined. Water absorption and foaming properties of CGPI were Improved by partial hydrolysis with trypsin; emulsifying capacity and nitrogen solubility were reduced; oil absorption was increased only slightly. CGPI pepsin hydrolyzate has decreased oil absorption, nitrogen solubility and emulsifying capacity but improved foaming properties; water absorption was unchanged. Treatment of CGPI with succinic anhydride improved water and oil absorption, nitrogen solubility and foaming capacity but decreased emulsifying capacity; foam stability was unchanged. Succinylation retarded electropohoretic mobility while hydrolysis altered band intensities. 相似文献
13.
14.
紫苏分离蛋白功能性研究 总被引:3,自引:0,他引:3
为了开发紫苏蛋白在食品工业中的应用,以大豆分离蛋白为对照,研究紫苏分离蛋白的功能特性。结果表明:紫苏分离蛋白的溶解性与大豆分离蛋白的溶解性随pH值变化的趋势基本一致,但在等电点时紫苏分离蛋白的溶解性高于大豆分离蛋白。在pH7.0时,紫苏分离蛋白的持水性、起泡性及泡沫稳定性、乳化性和凝胶性均不及大豆分离蛋白。但紫苏分离蛋白的吸油性仅稍小于大豆分离蛋白,此外,在紫苏分离蛋白的蛋白质质量浓度为3g/100mL以后,其乳化稳定性与大豆分离蛋白的乳化稳定性基本相当。紫苏分离蛋白在食品加工中作为一种蛋白质强化剂具有一定潜力。 相似文献
15.
16.
Effects of limited enzymatic hydrolysis induced by trypsin on the physicochemical and functional properties of hemp (Cannabis sativa L.) protein isolate (HPI) were investigated. The enzymatic hydrolysis was confirmed by sodium dodecyl-sulfate polyacrylamide gel electrophoresis (SDS-PAGE) and size exclusion chromatography (SEC). SEC and differential scanning calorimetry (DSC) analyses confirmed the presence of aggregates in the corresponding hydrolysates (with the degree of hydrolysis of 2.3–6.7%). Functional properties, including protein solubility (PS), thermal properties, emulsifying and foaming properties, and water holding and fat adsorption capacities (WHC and FAC) were evaluated. The PS was remarkably improved by the limited enzymatic hydrolysis at all tested pH values. However, the enzymatic hydrolysis led to the marked decreases in emulsifying activity index, foaming capacity and foam stability, WHC and FAC. These decreases were to a great extent related to the presence of aggregates in the hydrolysates. 相似文献
17.
为了了解高压均质技术对大豆分离蛋白(SPI)功能性质的影响,采用不同的均质压力、均质次数和料液比对大豆分离蛋白溶液进行了高压均质处理,并分析处理前后SPI功能性质的变化.结果表明:高压均质可在一定程度上提高SPI的溶解性、乳化活性及其稳定性和起泡性及泡沫稳定性.均质压力在0~70 MPa的范围内升高时,SPI的溶解性、乳化稳定性、起泡性和泡沫稳定性得到了相应的改善,而乳化活性在压力为40 MPa时达到最高;均质次数由1次向3次增加时,SPI的乳化稳定性、起泡性及泡沫稳定性得到了提高,而溶解性和乳化活性则降低;均质物料料液比在1∶16~1∶8 (g∶mL)的范围内逐步增大时,SPI的各项功能性质均有不同程度的提高,并在料液比为1∶8时达到了最高值. 相似文献
18.
19.
Functional Properties of Hydrolysates from Proteolysis of Heat-denatured Whey Protein Isolate 总被引:2,自引:0,他引:2
Heat-denatured whey protein isolate was hydrolyzed with trypsin, α-chymotrypsin, Alcalase or Neutrase to 2.8, 4.3, 6.0 or 8.0% degree of hydrolysis. Hydrolysates were fractionated by ultrafiltration and freeze-dried. Protein content of retentates showed little variation but permeates differed with enzyme. Surface hydrophobicity increased with hydrolysis but was not linear except for α-chymotrypsin. Ultrafiltration increased solubility and the permeates and retentates had better solubility than hydrolysates. Retentates had higher emulsifying activity index than hydrolysates while permeates did not form stable emulsions. Permeates formed stable foams but hydrolysates and retentates showed poor foaming characteristics. Specificity of the enzyme, and degree of hydrolysis influenced the functional properties of the peptides. Fractions generated by trypsin, at all levels of hydrolysis generally had higher solubility, emulsifying properties and foaming properties. Permeates from Alcalase hydrolysis had the best foam capacity but low foam stability. 相似文献