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Advances in combined enzymatic extraction of ferulic acid from wheat bran

机译:小麦麸皮酶组合酶促提取的研究进展

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Wheat bran could be utilised as feedstock for innovative and sustainable biorefinery processes. Here, an enzymatic hydrolysis process for ferulic acid (FA) extraction was optimised step by step for total wheat bran (Tritello) and then also applied to the outer bran layer (Bran 1). Proteins, reducing sugars, total phenols and FA were quantified. The highest FA yields (0.82-1.05 g/kg bran) were obtained either by rehydrating the bran by autoclaving (Tritello) or by steam explosion (Bran 1) using a bran/water ratio of 1:20, followed by enzymatic pretreatment with Alcalase and Termamyl, to remove protein and sugars, and a final enzymatic hydrolysis with Pentopan and feruloyl esterase to solubilise phenol. FA was recovered from the final digestate via solid phase extraction. A 40-fold scale-up was also performed and the release of compounds along all the process steps and at increasing incubation times was monitored. Results showed that FA was initially present at a minimum level while it was specifically released during the enzymatic treatment. In the final optimized process, the FA extraction yield was higher than that obtained with NaOH control hydrolysis while, in comparison with other FA enzymatic extraction methods, fewer process steps were required and no buffers, strong acid/alkali nor toxic compounds were used. Furthermore, the proposed process may be easily scaled-up, confirming the feasibility of wheat bran valorisation by biorefinery processes to obtain valuable compounds having several areas of potential industrial exploitation.
机译:小麦麸皮可用于创新和可持续的生物遗产过程的原料。此处,对于总小麦麸(Tritello)的步骤,并将其还施加到外糠层(Bran 1)上的酶水解方法进行了优化的酶水解方法。量化蛋白质,还原糖,总酚和Fa。通过使用1:20的麸皮/水比通过高压灭菌(Tritello)或通过蒸汽爆炸(Bran 1)通过蒸汽爆炸(麸皮1)来获得最高的FA产量(0.82-1.05g / kg麸皮),然后用酶预处理酶预处理ancalase和末端,除去蛋白质和糖,以及用戊二烷和二硫代磺酰酯酶的最终酶促水解至溶苯酚。通过固相提取从最终消化中回收Fa。还进行了40倍的鳞片,并沿所有工艺步骤释放化合物并在增加孵育时间。结果表明,在酶处理期间,FA最初存在于最低水平的情况下。在最终优化的方法中,FA萃取产率高于NaOH对照水解获得的产量,同时,与其他FA酶促提取方法相比,需要更少的工艺步骤,并且不使用缓冲液,强酸/碱或毒性化合物。此外,所提出的方法可以很容易地缩放,确认了生物填充方法的小麦麸的可行性,以获得具有若干潜在工业剥削领域的有价值的化合物。

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