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Development of an in vitro model to assess protein bioavailability in diets for common octopus (Octopus vulgaris)

机译:建立体外模型以评估普通章鱼(普通章鱼)日粮中蛋白质的生物利用度

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An in vitro model designed to assess protein bioavailability in diets for growing Octopus was developed. The model required a previous assessment of some functional features of protein digestion in this species like the main producing organs, optimum pH for activity and total production per g tissue. The main producing organs identified were the salivary glands and the hepatopancreas (HP), being optimum pH for protease activity quite different in both organs (mostly alkaline in the posterior salivary glands and acid in the HP). In spite of the high-specific protease activity measured in the salivary glands, a major role of the HP in protein hydrolysis is suggested due to the much bigger size of this viscera. All this information was used as a basis to develop an in vitro two-step hydrolysis process, which simulated protein hydrolysis performed by these two organs using the Octopus enzymes. The assay was used to evaluate differences in amino acid bioavailability from several protein sources (casein, gelatin, fish meal, squid meal and krill meal) that could be used as feed ingredients for this species. As significant differences were detected both in total amount and in rate of release of the amino acids from such proteins, the model is proposed as a complementary tool in the selection and nutritional evaluation of protein ingredients to be used in diets for Octopus.
机译:开发了一种体外模型,旨在评估日粮生长中日粮中蛋白质的生物利用度。该模型需要事先评估该物种中蛋白质消化的一些功能特征,例如主要生产器官,活性的最佳pH和每克组织的总产量。鉴定出的主要生产器官是唾液腺和肝胰脏(HP),这两种器官的蛋白酶活性最佳pH值完全不同(唾液后腺呈碱性,HP呈酸性)。尽管在唾液腺中检测到高特异性蛋白酶活性,但由于该内脏器的尺寸大得多,因此暗示了HP在蛋白质水解中的主要作用。所有这些信息均被用作开发体外两步水解过程的基础,该过程采用章鱼酶模拟了这两个器官进行的蛋白质水解。该测定法用于评估几种蛋白质来源(酪蛋白,明胶,鱼粉,鱿鱼粉和磷虾粉)的氨基酸生物利用度差异,这些蛋白质可用作该物种的饲料原料。由于从此类蛋白质中氨基酸的总量和释放速率均检测到显着差异,因此该模型被建议作为章鱼日粮中蛋白质成分的选择和营养评估的补充工具。

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