评估菠萝皮废弃物固态发酵条件对黑曲霉释放生物活性化合物的影响

A. D. Casas-Rodríguez, J. Ascacio-Valdés, M. D. Dávila-Medina, M. A. Medina-Morales, L. Londoño-Hernández, L. Sepúlveda
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引用次数: 0

摘要

目前,农用工业废物可用于获取生物活性化合物。固态发酵是实现这些废物价值化的一种替代方法,能够释放出不同工业部门可能感兴趣的生物活性化合物。本研究的目的是采用 Plackett-Burman 探索性设计,评估以菠萝皮废弃物为基质、黑曲霉属进行固态发酵以释放生物活性化合物的条件。对发酵过程中的温度、湿度、接种物、NaNO3、MgSO4、KCl 和 KH2PO4 条件进行了评估。测定了发酵提取物的抗氧化能力,并确定了发酵提取物的主要化合物。结果显示,黑曲霉 HT3 菌株的可水解单宁释放量为 10.00 mg/g,而黑曲霉 Aa20 的缩合单宁释放量为 82.59 mg/g。KH2PO4 会影响黑曲霉 Aa20 的缩合单宁释放,而 MgSO4 会影响黑曲霉 HT3 的可水解单宁释放。此外,DPPH、ABTS 和 FRAP 技术也显示出了积极的抗氧化活性。发酵菠萝皮中的主要化合物有 3-阿魏酰奎宁酸、咖啡酸、落叶松脂醇和 3-羟基香叶醇 2′-O-木糖基-葡萄糖苷等。固态发酵工艺是释放生物活性化合物的一种生物技术选择。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of Solid-State Fermentation Conditions from Pineapple Peel Waste for Release of Bioactive Compounds by Aspergillus niger spp.
Currently, agroindustrial waste can be used to obtain bioactive compounds. The solid-state fermentation is an alternative for the valorization of these waste and to be able to release bioactive compounds that may be of interest to different industrial sectors. The aim of this study was to evaluate solid-state fermentation conditions using pineapple peel waste as the substrate with Aspergillus niger spp., to release bioactive compounds using a Plackett–Burman exploratory design. Temperature, humidity, inoculum, NaNO3, MgSO4, KCl, and KH2PO4 conditions in the fermentation process were evaluated. The antioxidant capacity was determined, and the main compounds of the fermentation extracts were identified. The results revealed that the Aspergillus niger HT3 strain reached a hydrolyzable tannin release of 10.00 mg/g, While Aspergillus niger Aa20 reached a condensed tannin release of 82.59 mg/g. The KH2PO4 affects the release of condensed tannins with A. niger Aa20, and MgSO4 affects the release of hydrolyzable tannins with A. niger HT3. In addition, a positive antioxidant activity was demonstrated for the DPPH, ABTS, and FRAP technique. The main compounds in the fermented pineapple peel were 3-feruloylquinic acid, caffeic acid, lariciresinol, and 3-hydroxyphloretin 2′-O-xylosyl-glucoside, among others. The solid-state fermentation process is a biotechnological alternative for the release of bioactive compounds.
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