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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Binding of Fe(OH)3 to Lactobacillus delbrueckii ssp. bulgaricus and Lactobacillus acidophilus: apparent role of hydrogen peroxide and free radicals.
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Binding of Fe(OH)3 to Lactobacillus delbrueckii ssp. bulgaricus and Lactobacillus acidophilus: apparent role of hydrogen peroxide and free radicals.

机译:Fe(OH)3与德氏乳杆菌ssp的结合。保加利亚和嗜酸乳杆菌:过氧化氢和自由基的明显作用。

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摘要

L. delbrueckii subsp. bulgaricus and L. acidophilus were studied for their ability to bind Fe-(OH)3 as a function of time in the presence or absence of approximately 200μM H2O2 and in the presence or absence of glucose (2 mg/ml). There was a very rapid initial phase, followed by a second slow phase, and, when glucose was absent, a third rapid phase. Thermodynamic parameters were determined for the initial rapid binding phase using Scatchard plots. The binding process was entropy-driven against anenthalpy barrier, indicating that hydrophobic-type bonding was involved. Results were similar for both species of lactobacilli, and in the presence or absence of glucose and/or H2O2. In the later phases, binding of Fe(OH)3 was decreased if carried out without H2O2 in the medium. Free radicals, apparently produced from H2O2 and iron, were able to alter cell surfaces to allow for greater binding of Fe(OH)3. The ability of probiotics to bind Fe(OH)3 may serve to limit the availability of iron to pathogenicmicroorganisms.
机译:L.delbrueckii亚种在存在或不存在约200μMH2O2和存在或不存在葡萄糖(2 mg / ml)的情况下,研究了保加利亚和嗜酸乳杆菌结合Fe-(OH)3随时间变化的能力。有一个非常快速的初始阶段,然后是第二个缓慢阶段,而当葡萄糖不存在时,则是第三个快速阶段。使用Scatchard图确定初始快速结合阶段的热力学参数。结合过程是由熵驱动的对焓屏障的驱动,表明参与了疏水型结合。对于两种乳酸菌,以及是否存在葡萄糖和/或H2O2,结果都相似。在后面的阶段中,如果在介质中没有过氧化氢的情况下进行,Fe(OH)3的结合就会减少。显然由H2O2和铁产生的自由基能够改变细胞表面,从而使Fe(OH)3具有更大的结合力。益生菌结合Fe(OH)3的能力可能会限制铁对病原微生物的利用。

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