Departamento de Biotecnología y Bioquímica, Centro de Investigación y de Estudios Avanzados del IPN, Unidad Irapuato, Apartado Postal 629, Irapuato, 36821, Guanajuato, Mexico.
Appl Biochem Biotechnol. 2018 Jan;184(1):25-34. doi: 10.1007/s12010-017-2526-0. Epub 2017 Jun 6.
Recently, agavins (branched neo-fructans) of short degree of polymerization have shown beneficial effects on the health of both healthy and overweight individuals. Therefore, the aim of the present work was to investigate the potential use of Agave angustifolia agavins on the generation of branched fructooligosacharides (a-FOS). A. angustifolia agavins were hydrolyzed using exo-, endo-inulinase, and a mixture of both (25 and 75%, respectively). Exo- and the inulinase mixture degraded quickly the agavins in relation to endo-inulinase treatment. Only endo-inulinase and the inulinase mixture generated a-FOS formation. Endo-inulinase degraded 31% of agavins, yielding approximately 20% of a-FOS after 48 h, whereas the inulinase mixture hydrolyzed 33% of agavins in just 90 min, but only yielded 10% of a-FOS. These results suggest that agave plants could be an abundant raw material for a-FOS production, which might have a huge prebiotic potential as new branched fructooligosaccharides with many applications in the alimentary and pharmaceutical industry.
最近,聚合度较短的蔗果三糖(支链新果聚糖)对健康和超重人群的健康都有有益影响。因此,本研究旨在探讨利用 Agave angustifolia 蔗果三糖生成支链果寡糖(a-FOS)的潜力。使用外切-内切菊粉酶和两者的混合物(分别为 25%和 75%)对 Agave angustifolia 蔗果三糖进行水解。与内切菊粉酶处理相比,外切菊粉酶和菊粉酶混合物能快速降解蔗果三糖。只有内切菊粉酶和菊粉酶混合物能生成 a-FOS。内切菊粉酶降解 31%的蔗果三糖,48 小时后生成约 20%的 a-FOS,而菊粉酶混合物仅在 90 分钟内水解 33%的蔗果三糖,但仅生成 10%的 a-FOS。这些结果表明,龙舌兰植物可能是 a-FOS 生产的丰富原料,作为具有许多食品和制药工业应用的新型支链果寡糖,具有巨大的益生元潜力。