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生物活性水解产物:最佳工艺和生物活性特性。

Bioactive Hydrolysates from : Optimal Process and Bioactive Properties.

机构信息

CBQF-Centro de Biotecnologia e Química Fina-Laboratório Associado, Escola Superior de Biotecnologia, Universidade Católica Portuguesa, Rua Diogo Botelho 1327, 4169-005 Porto, Portugal.

Allmicroalgae-Natural Products S.A., R&D Department, Rua 25 de Abril 19, 2445-287 Pataias, Portugal.

出版信息

Molecules. 2022 Apr 13;27(8):2505. doi: 10.3390/molecules27082505.

Abstract

Microalgae have been described as a source of bioactive compounds, such as peptides. Microalgae are easy to produce, making them a sustainable resource for extracting active ingredients for industrial applications. Several microalgae species have interesting protein content, such as with around 52.2% of protein, making it promising for peptide hydrolysate production. Therefore, this work focused on the production of water-soluble hydrolysates rich in proteins/peptides from the microalgae and studied bioactive properties. For that, a design of experiments (DOE) was performed to establish the optimal conditions to produce hydrolysates with higher levels of protein, as well as antioxidant and antihypertensive properties. Four experimental factors were considered (cellulase percentage, protease percentage, hydrolysis temperature, and hydrolysis duration) for three responses (protein content, antioxidant activity, and antihypertensive activity). The optimal conditions determined by the DOE allowed producing a scaled-up hydrolysate with 45% protein, with antioxidant activity, measured by oxygen radical absorbance capacity assay, of 1035 µmol TE/g protein, IC for angiotensin-converting enzyme inhibition activity of 286 µg protein/mL, and α-glucosidase inhibition of 31% (30 mg hydrolysate/mL). The obtained hydrolysates can be used as functional ingredients for food and nutraceuticals due to their antioxidant, antihypertensive, and antidiabetic potential. Moreover, the antioxidant potential of the extracts may be relevant for the cosmetic industry, especially in antiaging formulations.

摘要

微藻被描述为生物活性化合物的来源,如肽。微藻易于生产,使其成为提取工业应用活性成分的可持续资源。一些微藻物种具有有趣的蛋白质含量,例如 ,其蛋白质含量约为 52.2%,因此有望用于生产肽水解物。因此,这项工作专注于从微藻 中生产富含蛋白质/肽的水溶性水解物,并研究其生物活性特性。为此,进行了实验设计 (DOE) 以确定生产具有更高蛋白质水平、抗氧化和降压特性的水解物的最佳条件。考虑了四个实验因素(纤维素酶百分比、蛋白酶百分比、水解温度和水解时间),以三个响应(蛋白质含量、抗氧化活性和降压活性)为指标。通过 DOE 确定的最佳条件允许生产出一种规模放大的水解物,其蛋白质含量为 45%,具有抗氧化活性,通过氧自由基吸收能力测定法测定为 1035 µmol TE/g 蛋白质,血管紧张素转化酶抑制活性的 IC 为 286 µg 蛋白质/mL,α-葡萄糖苷酶抑制率为 31%(30 mg 水解物/mL)。由于其抗氧化、降压和抗糖尿病的潜力,所得水解物可用作食品和营养保健品的功能性成分。此外,提取物的抗氧化潜力可能与化妆品行业相关,特别是在抗衰老制剂中。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/539e/9026812/21246e1e7777/molecules-27-02505-g001.jpg

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