Effect of Biomass Drying Protocols on Bioactive Compounds and Antioxidant and Enzymatic Activities of Red Macroalga Kappaphycus alvarezii.

IF 2.3 Q3 BIOCHEMICAL RESEARCH METHODS Methods and Protocols Pub Date : 2024-11-01 DOI:10.3390/mps7060088
Aline Nunes, Felipe de Souza Dutra, Sinara de Nazaré Santana Brito, Milene Stefani Pereira-Vasques, Gadiel Zilto Azevedo, Alex Ricardo Schneider, Eva Regina Oliveira, Alex Alves Dos Santos, Marcelo Maraschin, Fábio Vianello, Giuseppina Pace Pereira Lima
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Abstract

Kappaphycus alvarezii is a red seaweed used globally in various biotechnological processes. To ensure the content and stability of its bioactive compounds postharvest, suitable drying protocols must be adopted to provide high-quality raw materials for industrial use. This study aimed to analyze the influence of freeze-drying and oven-drying on the total phenolic content (TPC), total flavonoid content (TFC), antioxidant activity (FRAP and DPPH assays), total carotenoid content (TC), and lipase (LA) and protease activity (PA) of K. alvarezii samples collected over the seasons in sea farms in southern Brazil. The freeze-drying technique was found to be more effective regarding superior contents of TPC (39.23 to 127.74 mg GAE/100 g) and TC (10.27 to 75.33 μg/g), as well as DPPH (6.12 to 8.91 mg/100 g). In turn, oven-drying proved to be the best method regarding the TFC (4.99 to 12.29 mg QE/100 g) and PA (119.50 to 1485.09 U/g), with better performance in the FRAP (0.28 to 0.70 mmol/100 g). In this way, it appears that the drying process of the algal biomass can be selected depending on the required traits of the biomass for the intended industrial application. In terms of cost-effectiveness, drying the biomass using oven-drying can be considered appropriate.

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生物质干燥方案对红色巨藻 Kappaphycus alvarezii 的生物活性化合物、抗氧化剂和酶活性的影响
阿尔瓦雷斯海藻(Kappaphycus alvarezii)是一种红藻,在全球范围内被用于各种生物技术工艺。为确保其收获后生物活性化合物的含量和稳定性,必须采用合适的干燥方案,以便为工业用途提供高质量的原材料。本研究旨在分析冷冻干燥和烘箱干燥对在巴西南部海洋养殖场不同季节采集的 K. alvarezii 样品的总酚含量(TPC)、总黄酮含量(TFC)、抗氧化活性(FRAP 和 DPPH 检测)、总类胡萝卜素含量(TC)以及脂肪酶(LA)和蛋白酶活性(PA)的影响。研究发现,冷冻干燥技术对提高 TPC(39.23-127.74 毫克 GAE/100 克)和 TC(10.27-75.33 微克/克)以及 DPPH(6.12-8.91 毫克/100 克)的含量更为有效。反过来,烘箱干燥被证明是 TFC(4.99 至 12.29 毫克 QE/100 克)和 PA(119.50 至 1485.09 U/g )的最佳方法,在 FRAP(0.28 至 0.70 毫摩尔/100 克)方面表现更好。由此看来,藻类生物质的干燥工艺可根据预期工业应用对生物质性状的要求来选择。就成本效益而言,使用烘箱干燥生物质是合适的。
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来源期刊
Methods and Protocols
Methods and Protocols Biochemistry, Genetics and Molecular Biology-Biochemistry, Genetics and Molecular Biology (miscellaneous)
CiteScore
3.60
自引率
0.00%
发文量
85
审稿时长
8 weeks
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