首页> 外文期刊>International Journal of Food Sciences and Nutrition >Enhanced growth of lactobacilli and bioconversion of isoflavones in biotin-supplemented soymilk by electroporation.
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Enhanced growth of lactobacilli and bioconversion of isoflavones in biotin-supplemented soymilk by electroporation.

机译:通过电穿孔增强生物素补充豆浆中乳酸杆菌的生长和异黄酮的生物转化。

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摘要

This study aimed at utilizing electroporation to further enhance the growth of lactobacilli and their isoflavone bioconversion activities in biotin-supplemented soymilk. Strains of lactobacilli were treated with different pulsed electric field strength (2.5, 5.0 and 7.5 kV/cm) for 3, 3.5 and 4 ms prior to inoculation and fermentation in biotin-soymilk at 37 degrees C for 24 h. Electroporation triggered structural changes within the cellular membrane of lactobacilli that caused lipid peroxidation (p<0.05) and alteration of membrane fluidity (p<0.05). This was due to the application of electric potential difference across membrane that induced pores formation and subsequently increased membrane permeability. Reversible permeabilized cells resumed growth to >9 log CFU/ml after fermentation in biotin-soymilk (p<0.05). Lactobacilli cells treated at electric field strength of 7.5 kV/cm for 3.5 ms also showed enhanced beta -glucosidase activity (p<0.05) compared to lower doses and control, leading to increased bioconversion of isoflavones glucosides to aglycones in biotin-soymilk (p<0.05). Results from this study show that electroporation could be used to produce biotin-soymilk with increased bioactive aglycones.
机译:这项研究旨在利用电穿孔进一步增强补充生物素的豆浆中乳酸杆菌的生长及其异黄酮的生物转化活性。乳酸菌菌株在37摄氏度的生物素豆浆中接种和发酵之前,先用不同的脉冲电场强度(2.5、5.0和7.5 kV / cm)处理3、3.5和4 ms,然后再进行发酵。电穿孔触发了乳杆菌细胞膜内的结构变化,导致脂质过氧化(p <0.05)和膜流动性改变(p <0.05)。这是由于在膜上施加了电势差,从而引起了孔的形成并随后增加了膜的渗透性。在生物素豆浆中发酵后,可逆通透性细胞恢复生长至> 9 log CFU / ml(p <0.05)。与较低剂量和对照相比,在7.5 kV / cm电场强度下处理3.5 ms的乳杆菌细胞还显示出增强的β-葡萄糖苷酶活性(p <0.05),从而导致生物素豆浆中异黄酮糖苷向糖苷配基的生物转化增加(p < 0.05)。这项研究的结果表明,电穿孔可用于生产生物活性糖苷配体含量更高的生物素豆浆。

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