Fish digestive lipase quantification methods used in aquaculture studies

Héctor Nolasco-Soria
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Abstract

The proportion of fats or oils in natural or artificial feed is generally 6%–30%, since this is essential to cover fish’s energetic and structural requirements. Therefore, studies of the ontogeny or response of lipase activity to food treatments are widespread. A systematic review of articles published over 5 years (2016–2020) on lipase activity in fish in aquaculture was carried out; however, this was taken only as a representative example. Any 5-year period between 201-2022 would have shown similar results in terms of the actual lipase method used. As a result of this review, it was found that the methods used by the authors are very varied and have significant differences in terms of the type of substrate, substrate concentration, bile salt type and concentration, pH, temperature, incubation time, measurement of hydrolysis products, and definition of lipase units. The above does not mean that comparison of these studies is of no value, but that it is significantly limited. The most used methods (with p-nitrophenyl derivates, β-naphthyl derivates, and emulsified natural oils as substrate) can be reviewed to determine the most appropriate standard curves or the corresponding molar extinction coefficient for defining the lipase units. Standardizing current lipase analytical procedures should improve the reliability of comparative studies of aquaculture fish species.
鱼类消化脂肪酶定量方法在水产养殖研究中的应用
天然或人工饲料中脂肪或油的比例通常为6%-30%,因为这对满足鱼类的能量和结构需求至关重要。因此,对脂肪酶活性对食品处理的个体发生或反应的研究是广泛的。对5年来(2016-2020年)发表的有关水产养殖中鱼类脂肪酶活性的文章进行了系统综述;然而,这只是一个代表性的例子。根据实际使用的脂肪酶方法,在201-2022年之间的任何5年期间都会显示出类似的结果。通过回顾发现,作者使用的方法多种多样,在底物类型、底物浓度、胆盐类型和浓度、pH、温度、孵育时间、水解产物的测量和脂肪酶单位的定义方面存在显著差异。以上并不意味着这些研究的比较没有价值,而是有明显的局限性。可以回顾最常用的方法(以对硝基苯衍生物,β-萘基衍生物和乳化天然油为底物),以确定最合适的标准曲线或相应的摩尔消光系数来定义脂肪酶单位。规范目前的脂肪酶分析方法将提高水产养殖鱼类比较研究的可靠性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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