Sayari Nadhem, Sila Assaâd, Haddar Anissa, Balti Rafik, Ellouz-Chaabouni Semia, Bougatef Ali
Unité Enzymes et Bioconversion, Ecole Nationale d'Ingénieurs, PB 1173, Sfax, 3038, Tunisia.
Institut Supérieur de Biotechnologie de Sfax, BP 1175, Sfax, 3038, Tunisia.
Environ Sci Pollut Res Int. 2016 Jan;23(1):366-76. doi: 10.1007/s11356-015-5244-6. Epub 2015 Aug 26.
Concerns over the environmental and waste disposal problems created by the large amounts of by-products generated from fish processing industries are increasing worldwide. The bioconversion of those marine waste by-products through the enzymatic hydrolysis of their protein content offers the possibility for the development of bioactive peptides for use in various biotechnological applications. The present study aimed to investigate and evaluate the biological and functional properties of smooth hound (Mustelus mustelus) protein hydrolysates (SHPHs) obtained by treatment with intestinal and gastric enzyme preparations from M. mustelus viscera and porcine pancreatin. The results revealed that the SHPHs exhibited different degrees of hydrolysis and antioxidant activity. The hydrolysate produced by the intestinal crude extract presented the highest rate of antioxidative activity, showing an IC50 value of 1.47 ± 0.07 mg/mL in 1,1-diphenyl-2-picrylhydrazyl (DPPH) scavenging assays. The alkaline protease extract from the intestine of M. mustelus produced hydrolysate with the highest angiotensin I-converting enzyme (ACE) inhibitory activity (82 ± 1.52% at 2 mg/mL). All the protein hydrolysates showed excellent solubility and interfacial properties that were governed by pH. The major amino acids detected in SHPHs were glutamic acid/glutamine, aspartic acid/asparagine, histidine and arginine, followed by methionine, phenylalanine, serine, valine and leucine. Overall, the results indicated that smooth hound by-products can be used to generate high value-added products, thus offering a valuable source of bioactive peptides for application in wide range of biotechnological and functional food applications.
全球范围内,人们对鱼类加工行业产生的大量副产品所造成的环境和废物处理问题的担忧日益增加。通过对这些海洋废弃物副产品的蛋白质进行酶水解实现生物转化,为开发用于各种生物技术应用的生物活性肽提供了可能性。本研究旨在调查和评估用来自鼬鲨内脏的肠和胃酶制剂以及猪胰酶处理获得的鼬鲨(Mustelus mustelus)蛋白水解物(SHPHs)的生物学和功能特性。结果显示,SHPHs表现出不同程度的水解和抗氧化活性。由肠道粗提物产生的水解物呈现出最高的抗氧化活性,在1,1 - 二苯基 - 2 - 苦基肼(DPPH)清除试验中显示IC50值为1.47±0.07 mg/mL。来自鼬鲨肠道的碱性蛋白酶提取物产生的水解物具有最高的血管紧张素I转换酶(ACE)抑制活性(2 mg/mL时为82±1.52%)。所有蛋白质水解物均表现出优异的溶解性和受pH值影响的界面性质。在SHPHs中检测到的主要氨基酸为谷氨酸/谷氨酰胺、天冬氨酸/天冬酰胺、组氨酸和精氨酸,其次是蛋氨酸、苯丙氨酸、丝氨酸、缬氨酸和亮氨酸。总体而言,结果表明鼬鲨副产品可用于生产高附加值产品,从而为广泛的生物技术和功能性食品应用提供有价值的生物活性肽来源。