Department of Biotechnology, Inland Norway University of Applied Sciences, N-2317 Hamar, Norway.
Department of Chemistry, Umeå University, SE-901 87 Umeå, Sweden.
Molecules. 2023 Jun 30;28(13):5140. doi: 10.3390/molecules28135140.
The extraction of bioactive compounds and cellulose saccharification are potential directions for the valorization of spent mushroom substrate (SMS). Therefore, investigating the suitability of different extraction methods for recovering bioactive compounds from SMS and how the extraction affects the enzymatic saccharification is of uppermost relevance. In this work, bioactive compounds were extracted from spp. SMS using four extraction methods. For Soxhlet extraction (SoE), a 40:60 ethanol/water mixture gave the highest extraction efficiency (EE) (69.9-71.1%) among the seven solvent systems assayed. Reflux extraction with 40:60 ethanol/water increased the extraction yield and EE compared to SoE. A shorter reflux time yielded a higher extraction of carbohydrates than SoE, while a longer time was more effective for extracting phenolics. The extracts from 240 min of reflux had comparable antioxidant activity (0.3-0.5 mM GAE) with that achieved for SoE. Ultrasound-assisted extraction (UAE) at 65 °C for 60 min allowed an EE (~82%) higher than that achieved by either reflux for up to 150 min or SoE. Subcritical water extraction (SWE) at 150 °C resulted in the best extraction parameters among all the tested methods. Vanillic acid and chlorogenic acid were the primary phenolic acids identified in the extracts. A good correlation between the concentration of caffeic acid and the antioxidant activity of the extracts was found. Saccharification tests revealed an enhancement of the enzymatic digestibility of SMS cellulose after the extraction of bioactive compounds. The findings of this initial study provide indications on new research directions for maximizing the recovery of bioactive compounds and fermentable sugars from SMS.
从废弃蘑菇基质(SMS)中提取生物活性化合物和纤维素糖化是其增值的潜在方向。因此,研究不同提取方法从 SMS 中回收生物活性化合物的适用性以及提取对酶糖化的影响至关重要。在这项工作中,使用四种提取方法从 spp. SMS 中提取生物活性化合物。对于索氏提取(SoE),在所测试的七种溶剂系统中,40:60 乙醇/水混合物的提取效率(EE)最高(69.9-71.1%)。与 SoE 相比,回流提取 40:60 乙醇/水可提高提取产率和 EE。较短的回流时间比 SoE 更有利于提取碳水化合物,而较长的时间则更有利于提取酚类物质。回流 240 分钟的提取物具有与 SoE 相当的抗氧化活性(0.3-0.5 mM GAE)。在 65°C 下超声辅助提取(UAE)60 分钟,可实现比回流提取 150 分钟或 SoE 更高的 EE(~82%)。在所有测试方法中,亚临界水提取(SWE)在 150°C 时得到了最佳的提取参数。香草酸和绿原酸是提取物中主要的酚酸。发现提取物中咖啡酸的浓度与抗氧化活性之间存在很好的相关性。糖化试验表明,在提取生物活性化合物后,SMS 纤维素的酶可消化性得到增强。这项初步研究的结果为从 SMS 中最大限度地回收生物活性化合物和可发酵糖提供了新的研究方向。