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具有降血糖潜力的越桔渣和葡萄渣中生物活性化合物的增值利用。

Valorization of Bioactive Compounds from Lingonberry Pomace and Grape Pomace with Antidiabetic Potential.

机构信息

Centre of Bioanalysis, National Institute of Research and Development for Biological Sciences, 296 Splaiul Independentei, 060031 Bucharest, Romania.

出版信息

Molecules. 2024 Nov 18;29(22):5443. doi: 10.3390/molecules29225443.

Abstract

In recent years, increased attention has been paid to the recovery of bioactive compounds from waste and by-products resulting from the agro-industrial sector and their valorization into new products, which can be used in the health, food, or agricultural industry, as innovative and sustainable approaches to waste management. In this work, two of these by-products resulting from the fruit-processing industry were used for the recovery of bioactive compounds (polyphenols), namely lingonberry pomace () and grape pomace (). Two green extraction techniques were employed to obtain hydroalcoholic extracts (solvent: 50% EtOH, 10% mass): ultrasound-assisted extraction (UAE) and accelerated solvent extraction (ASE). The extracts were subjected to micro- and ultrafiltration processes, and further analyzed to determine the bioactive compound content through spectrophotometric (UV-Vis) and chromatographic (HPLC-PDA) methods. Additionally, the extracts exhibited significant enzyme inhibition, particularly against α-amylase and β-glucosidase, suggesting potential anti-diabetic properties. The extracts characteristics, polyphenolic content, antioxidant capacity and enzyme inhibitory ability, were statistically compared, and significant differences were found between the two extraction methods. The grape pomace concentrated extracts showed a pronounced inhibitory activity on both analyzed enzymes compared to the lingonberry pomace concentrated extracts, closer to the standard used; e.g., IC α-amylase = 0.30 ± 0.01 µg/mL (IC acarbose = 0.3 ± 0.01 µg/mL), IC α-glucosidase = 0.60 ± 0.01 µg/mL (IC acarbose = 0.57 ± 0.02 µg/mL). These findings highlight the potential of agro-industrial residues as bioactive compound resources, with their valorization through application in food, nutraceutical, or pharmaceutical industries therefore contributing to the sustainable development and promotion of circular economy principles with the recovery of valuable inputs from plant by-products.

摘要

近年来,人们越来越关注从农业产业的废物和副产品中回收生物活性化合物,并将其转化为新产品,这些新产品可以在健康、食品或农业领域中使用,作为废物管理的创新和可持续方法。在这项工作中,使用了两种来自水果加工行业的副产品来回收生物活性化合物(多酚),即越橘渣()和葡萄渣()。采用了两种绿色提取技术来获得水醇提取物(溶剂:50%乙醇,质量的 10%):超声辅助提取(UAE)和加速溶剂提取(ASE)。将提取物进行微滤和超滤处理,并进一步通过分光光度(UV-Vis)和色谱(HPLC-PDA)方法分析以确定生物活性化合物的含量。此外,提取物表现出显著的酶抑制作用,特别是对α-淀粉酶和β-葡萄糖苷酶,表明具有潜在的抗糖尿病特性。通过统计比较提取物的特性、多酚含量、抗氧化能力和酶抑制能力,发现两种提取方法之间存在显著差异。与越橘渣浓缩提取物相比,葡萄渣浓缩提取物对两种分析酶均表现出明显的抑制活性,更接近所用标准;例如,ICα-淀粉酶=0.30±0.01μg/mL(IC阿卡波糖=0.3±0.01μg/mL),ICα-葡萄糖苷酶=0.60±0.01μg/mL(IC阿卡波糖=0.57±0.02μg/mL)。这些发现强调了农业产业残渣作为生物活性化合物资源的潜力,通过在食品、营养保健品或制药行业中的应用来实现其价值,从而有助于可持续发展和推广循环经济原则,从植物副产品中回收有价值的投入。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1277/11597371/87bf7bec4655/molecules-29-05443-g001.jpg

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