Universidade Católica Portuguesa, CBQF-Centro de Biotecnologia e Química Fina-Laboratório Associado, Escola Superior de Biotecnologia, Rua Diogo Botelho 1327, 4169-005 Porto, Portugal.
ETSA, Empresa Transformadora de Subprodutos, 2660-119 Loures, Portugal.
Molecules. 2023 Jan 24;28(3):1155. doi: 10.3390/molecules28031155.
Fish viscera are usually discarded as waste, causing environmental problems, or as low-value by-products. This study describes a self-sufficient and zero waste approach to obtain enzymes and protein hydrolysates from fish by-products. Firstly, recovery steps of viscera enzymatic extract were applied, and the resulting raw extract was stable at a pH range of 8-9 and at temperatures between 40 and 50 °C. The application of the extracted enzymes and alcalase on fish by-products hydrolysis was also determined. The selected conditions for the enzymatic hydrolysis were 10% (E/S) for 6 h using viscera enzymatic extract and 3% (E/S) for 2 h using alcalase. Fish protein hydrolysates (FPH) proved to have a notable antioxidant capacity with similar activity, 11 mg ascorbic acid/g dry extract (ABTS assay) and ~150 mg Trolox/g dry extract (ORAC assay). FPH were also able to inhibit the angiotensin-converting enzyme, however, alcalase hydrolysates revealed a higher antihypertensive potential, IC of 101 µg of protein/mL. In general, FPH obtained by both enzymes systems maintained these bioactivities after the passage throughout a simulated gastrointestinal tract. The hydrolysates also displayed important technological properties, namely oil absorption capacity (1 g oil/g sample) and emulsifying property (~40%). Therefore, it will be conceivable to use fish by-products based on a circular economy approach to generate added value compounds for animal and human nutrition.
鱼类内脏通常被当作废物丢弃,造成环境问题,或者作为低价值的副产品。本研究描述了一种自足且零浪费的方法,从鱼类副产物中获得酶和蛋白质水解产物。首先,应用内脏酶提取物的回收步骤,得到的原始提取物在 pH 值为 8-9 且温度在 40-50°C 之间的范围内稳定。还确定了提取的酶和碱性蛋白酶在鱼副产物水解中的应用。选择的酶解条件为:使用内脏酶提取物的 10%(E/S),6 h;使用碱性蛋白酶的 3%(E/S),2 h。鱼蛋白水解产物(FPH)表现出显著的抗氧化能力,其活性相似,约 11 mg 抗坏血酸/g 干提取物(ABTS 测定)和约 150 mg Trolox/g 干提取物(ORAC 测定)。FPH 还能够抑制血管紧张素转化酶,但碱性蛋白酶水解产物具有更高的降压潜力,IC 为 101 µg 蛋白/mL。一般来说,通过这两种酶系统获得的 FPH 在通过模拟胃肠道后仍保持这些生物活性。水解产物还具有重要的技术特性,即吸油性(约 1 g 油/g 样品)和乳化性(约 40%)。因此,可以设想基于循环经济方法利用鱼类副产物来生成动物和人类营养的附加值化合物。