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Characterization and in Vitro Bioactivity of Green Extract from Fermented Soybean Waste

机译:发酵大豆废料的绿色提取物的特征及体外生物活性

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Extracts were extricated from raw okara and okara fermented with Rhizopus oligosporus using a clean, green protocol; water was used as the extraction solvent and coupled with ultrasound assistance for enhanced extraction. In vitro anti-oxidant analyses for antioxidant potential and capacity, superoxide scavenging activity, and nitric oxide scavenging activity validated that fermented okara yielded superior bioactive performance compared to raw okara. Fermented okara extracts showed no toxicity to erythrocytes and successfully prevented induced haemolysis. After 48 h incubation at the highest tested concentration (100 mg/mL), fermented okara extracts could inhibit HepG2 cells by 48.47 ± 5.28%, which was significantly different from their effects on NIH 3T3 cells. Gas chromatography–mass spectrometry characterization of extracts validated amino acids to be the chief fraction responsible for the detected bioactivity of the fermented okara extract. The results derived in this study open up the possibility that biofermented okara extract may be a potential novel sustainable nutraceutical.
机译:使用清洁的绿色方案,用Rhizopus Oligosporus发酵的原料幼儿园和Okara提取物;用作萃取溶剂,并与超声辅助加上增强的提取。在抗氧化潜力和能力,超氧化物清除活性和一氧化氮清除活性的体外抗氧化剂分析验证的发酵幼鼠的抗氧化清除活性产生优异的生物活性性能,而原料幼儿园则得到了优异的生物活性性能。发酵的幼渣提取物对红细胞和成功预防诱导的溶血性没有毒性。在最高测试浓度(100mg / ml)的48小时后,发酵的幼儿萃取液可以抑制HepG2细胞48.47±5.28%,从它们对NIH 3T3细胞的影响显着不同。提取物的气相色谱 - 质谱表征验证的氨基酸是负责检测到的发酵的幼渣提取物的生物活性的主要部分。在本研究中衍生的结果开辟了生物切割的奥卡拉提取物可能是潜在的新型可持续营养保健品。

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