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预处理冰藏对罗非鱼全鱼废弃物胃蛋白酶水解产物抗氧化活性、功能特性及氨基酸组成的影响

Antioxidant, functional properties and amino acid composition of pepsin-derived protein hydrolysates from whole tilapia waste as influenced by pre-processing ice storage.

作者信息

Tejpal C S, Vijayagopal P, Elavarasan K, Linga Prabu D, Lekshmi R G K, Asha K K, Anandan R, Chatterjee N S, Mathew S

机构信息

Biochemistry and Nutrition Division, ICAR-Central Institute of Fisheries Technology, Willingdon Island, Matsyapuri Post, Cochin, 682 029 India.

Marine Biotechnology Division, ICAR-Central Marine Fisheries Research Institute, Post Box No. 1603, Ernakulam North P. O, Cochin, 682 018 India.

出版信息

J Food Sci Technol. 2017 Dec;54(13):4257-4267. doi: 10.1007/s13197-017-2897-9. Epub 2017 Oct 17.

Abstract

In recent years, hygienic handling of fishery waste is demanded owing to the fact that the fishery waste is an ideal raw material for the preparation of bioactive compounds. In the present study, the effect of pre-processing storage (at 4 ± 2 °C) of whole tilapia waste (WTW) on the properties of its protein hydrolysate derived using pepsin was evaluated. Fish protein hydrolysates (FPH) were prepared from 0, 24 and 48 h old ice stored WTW and designated as FPH-0, FPH-1, and FPH-2, respectively. Total amino acids, total essential amino acids and total hydrophobic amino acids of FPH samples increased with the storage period of raw material (WTW). Antioxidant activities such as DPPH (2, 2 diphynyl-1-picrylhydrazyl) free radical scavenging activity and ferric reducing power of FPH samples were dose dependent. FPH-0 had better antioxidant properties including linoleic acid peroxidation inhibition activity than FPH-1 and FPH-2. The DNA nicking assay revealed the protective effect of FPH preparations against Fenton's reaction mediated oxidative damage. FPH-2 had better emulsifying properties and foaming stability whereas the FPH-0 had relatively good foaming capacity. SDS-PAGE indicated the presence of peptides ranging from 116 to < 14.4 kDa in FPH-0 and less than 18 kDa in FPH-1 and FPH-2. The present study, clearly demonstrated that whole tilapia waste can effectively be converted to FPH and could be a potential ingredient in functional food and as a rich source of high-quality protein in animal feed formulations.

摘要

近年来,由于渔业废弃物是制备生物活性化合物的理想原料,因此对其进行卫生处理的需求日益增加。在本研究中,评估了罗非鱼全鱼废弃物(WTW)在4±2°C下预处理储存对用胃蛋白酶制备的其蛋白水解物性质的影响。鱼蛋白水解物(FPH)由储存0、24和48小时的冰鲜WTW制备,分别命名为FPH-0、FPH-1和FPH-2。FPH样品的总氨基酸、总必需氨基酸和总疏水氨基酸随着原料(WTW)储存时间的延长而增加。FPH样品的抗氧化活性,如DPPH(2,2-二苯基-1-苦基肼)自由基清除活性和铁还原能力呈剂量依赖性。FPH-0比FPH-1和FPH-2具有更好的抗氧化性能,包括对亚油酸过氧化的抑制活性。DNA切口试验揭示了FPH制剂对芬顿反应介导的氧化损伤的保护作用。FPH-2具有更好的乳化性能和泡沫稳定性,而FPH-0具有相对较好的发泡能力。SDS-PAGE表明FPH-0中存在分子量范围为116至<14.4 kDa的肽段,FPH-1和FPH-2中存在分子量小于18 kDa的肽段。本研究清楚地表明,罗非鱼全鱼废弃物可以有效地转化为FPH,并且可能成为功能性食品中的潜在成分以及动物饲料配方中优质蛋白质的丰富来源。

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