Grasso Federica, Martínez María Mercedes Alonso, Turrini Federica, Méndez Paz Diego, Vázquez Sobrado Rebeca, Orlandi Valentina, Jenssen Marte, Lian Kjersti, Rombi Junio, Tiso Micaela, Razzuoli Elisabetta, Costas Celina, Boggia Raffaella
Department of Pharmacy, University of Genova, Viale Cembrano 4, 16148 Genova, Italy.
ANFACO-CECOPESCA, Department of Circular Economy, Colexio Universitario, 36310 Vigo, Spain.
Antioxidants (Basel). 2024 Aug 19;13(8):1011. doi: 10.3390/antiox13081011.
The aim of this research is to propose simple and scalable processes to obtain bioactive peptides extensively hydrolyzed starting from a tuna mixed biomass. The upcycling of this powdered biomass is challenging since it comes from the unsorted industrial side streams of the tuna canning process (cooked residues from fillet trimming) after a patented mild dehydration useful for preventing its degradation until its exploitation. Two different protocols were proposed, with and without the inclusion of an exogenous enzyme (Enzymatic-Assisted Extraction, EAE), with no relevant differences in yields (24% vs. 22%) and a comparable amino acid composition. Nevertheless, the former protocol (with EAE) provided peptides with an average molecular weight of 1.3 kDa, and the second one (without EAE) provided peptides with an average molecular weight of 2.2 kDa. The two corresponding types of tuna protein hydrolysates (Enzymatic Hydrolysates (EH) and Non-Enzymatic Hydrolysates (NEH)) were characterized by proximate compositions, pH, color profile, amino acid analysis, FTIR spectra, and molecular weight distribution. In addition, several biological analyses were performed to assess their potential use as nutraceutical supplements: special attention has been paid to antioxidant activity using three different methods to quantify it. EH showed the most promising antioxidant activity which could be exploited also in other fields (e.g., biomaterials, cosmetics).
本研究的目的是提出简单且可扩展的工艺,以从金枪鱼混合生物质中获得广泛水解的生物活性肽。这种粉末状生物质的升级回收具有挑战性,因为它来自金枪鱼罐头加工的未分类工业侧流(鱼片修整后的熟残渣),此前经过一项专利的温和脱水处理,有助于防止其降解直至被利用。提出了两种不同的方案,一种包含外源酶(酶辅助提取,EAE),另一种不包含,产率无显著差异(24%对22%),氨基酸组成相当。然而,前一种方案(使用EAE)得到的肽平均分子量为1.3 kDa,后一种方案(不使用EAE)得到的肽平均分子量为2.2 kDa。两种相应类型的金枪鱼蛋白水解物(酶水解物(EH)和非酶水解物(NEH))通过近似组成、pH值、颜色特征、氨基酸分析、傅里叶变换红外光谱和分子量分布进行表征。此外,还进行了多项生物学分析,以评估它们作为营养补充剂的潜在用途:特别关注了使用三种不同方法对其抗氧化活性进行量化。EH显示出最有前景的抗氧化活性,这也可在其他领域(如生物材料、化妆品)加以利用。