首页> 外文期刊>Journal of the Science of Food and Agriculture >Effect of electroporation on viability and bioconversion of isoflavones in mannitol-soymilk fermented by lactobacilli and bifidobacteria.
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Effect of electroporation on viability and bioconversion of isoflavones in mannitol-soymilk fermented by lactobacilli and bifidobacteria.

机译:电穿孔对乳酸菌和双歧杆菌发酵的甘露醇豆浆中异黄酮活力和生物转化的影响。

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BACKGROUND: The aim of this study was to evaluate the effect of electroporation (2.5-7.5 kV cm--1 for 3.0-4.0 ms) on the growth of lactobacilli and bifidobacteria, membrane properties and bioconversion of isoflavones in mannitol-soymilk. RESULTS: The viability of lactobacilli and bifidobacteria decreased immediately after electroporation. This was attributed to lipid peroxidation, which led to alterations in the membrane phospholipid bilayer, specifically at the polar head, interface and apolar tail regions. Such alterations also resulted in decreased membrane fluidity and increased membrane permeability upon electroporation (P < 0.05). However, the effect was reversible and treated cells showed better growth than the control upon fermentation for 24 h at 37 degrees C (P < 0.05). Additionally, electroporation increased the bioconversion of glucosides to bioactive aglycones in mannitol-soymilk, which was attributed to increased intracellular and extracellular beta-glucosidase activities of cells upon treatment (P < 0.05). CONCLUSION: Application of electroporation on lactobacilli and bifidobacteria could be beneficial for the development of fermented soymilk with enhanced bioactivity. Considering the enhanced bioactive aglycones, this soymilk could be useful for the prevention of hormone-dependent disorders
机译:背景:本研究旨在评估电穿孔(2.5-7.5 kV cm -1 持续3.0-4.0 ms)对乳酸菌和双歧杆菌生长,异黄酮的膜性质和生物转化的影响在甘露醇豆浆中。结果:电穿孔后,乳酸杆菌和双歧杆菌的生存力立即下降。这归因于脂质过氧化,其导致膜磷脂双层中的改变,特别是在极头,界面和非极尾区域。这种改变还导致膜流动性降低,电穿孔后膜通透性增加(P <0.05)。然而,该作用是可逆的,并且在37℃下发酵24小时后,处理的细胞显示出比对照更好的生长(P <0.05)。此外,电穿孔增加了甘露醇豆浆中糖苷向生物活性糖苷配体的生物转化,这归因于处理后细胞的细胞内和细胞外β-葡萄糖苷酶活性增加(P <0.05)。结论:电穿孔法在乳酸菌和双歧杆菌上的应用可能有利于提高生物活性的发酵豆浆的开发。考虑到增强的生物活性糖苷配基,这种豆浆可用于预防激素依赖性疾病

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