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Antimicrobial potential for the combination of bovine lactoferrin or its hydrolysate with lactoferrin-resistant probiotics against foodborne pathogens

机译:牛乳铁蛋白或其水解产物与耐乳铁蛋白的益生菌结合使用对食源性病原体的抗菌潜力

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摘要

Previous reports have shown that several probiotic strains can resist the antibacterial activity of bovine lactoferrin (bLf), but the results are inconsistent. Moreover, a portion of orally administered apo-bLf is digested in vivo by pepsin to yield bLf hydrolysate, which produces stronger antibacterial activity than that observed with apo-bLf. However, whether bLf hydrolysate affects the growth of probiotic strains is unclear. Therefore, various probiotic strains in Taiwan were collected and evaluated for activity against apo-bLf and bLf hydrolysate in vitro. Thirteen probiotic strains were evaluated, and the growth of Lactobacillus acidophilus ATCC 4356, Lactobacillus salivarius ATCC 11741, Lactobacillus rhamnosus ATCC 53103, Bifido-bacterium longum ATCC 15707, and Bifidobacterium lactis BCRC 17394 were inhibited by both apo-bLf and bLf hydrolysate. The growth of 8 strains were not affected by apo-bLf and bLf hydrolysate, including L. rhamnosus ATCC 7469, Lactobacillus reuteri ATCC 23272, Lactobacillus fermentum ATCC 11739, Lactobacillus coryniformis ATCC 25602, L. acidophilus BCRC 14065, Bifidobacterium infantis ATCC 15697, Bifidobacterium bifidum ATCC 29521, and Pediococcus acidilactici ATCC 8081. However, apo-bLf and its hydrolysate inhibited the growth of foodborne pathogens, including Escherichia coli, Salmonella typhimurium, Staphylococcus aureus, and Enterococcus faecalis. Moreover, the supernatants produced by L. fermentum, B. lactis, and B. longum inhibited the growth of most pathogens. Importantly, a combination of apo-bLf or bLf hydrolysate with the supernatants of cultures of the organisms described above showed synergistic or partially synergistic effects against the growth of most of the selected pathogens. In conclusion, several probiotic strains are resistant to apo-bLf and bLf hydrolysate, warranting clinical studies to evaluate the antimicrobial potential for the combination of apo-bLf or its hydrolysate with specific probiotics.
机译:先前的报道表明,几种益生菌菌株可以抵抗牛乳铁蛋白(bLf)的抗菌活性,但结果不一致。而且,口服给予的apo-bLf的一部分在体内被胃蛋白酶消化以产生bLf水解产物,其产生的抗菌活性比用apo-bLf观察到的强。但是,尚不清楚bLf水解产物是否影响益生菌菌株的生长。因此,收集了台湾的各种益生菌菌株,并评估了其对apo-bLf和bLf水解产物的体外活性。评估了13种益生菌菌株,嗜酸乳杆菌ATCC 4356,唾液乳杆菌ATCC 11741,鼠李糖乳杆菌ATCC 53103,长双歧杆菌ATCC 15707和乳酸双歧杆菌BCRC 17394的生长均受apo-bLf和bLf水解物的抑制。 apo-bLf和bLf水解产物对8株菌株的生长没有影响,包括鼠李糖乳杆菌ATCC 7469,罗伊氏乳杆菌ATCC 23272,发酵乳杆菌ATCC 11739,coryniformis乳杆菌ATCC 25602,嗜酸乳杆菌BCRC 14065,婴儿双歧杆菌ATCC 15。 Bifidum ATCC 29521和乳酸双球菌ATCC8081。但是,载脂蛋白bLf及其水解产物抑制食源性病原体的生长,包括大肠杆菌,鼠伤寒沙门氏菌,金黄色葡萄球菌和粪肠球菌。此外,发酵乳杆菌,乳酸杆菌和长双歧杆菌产生的上清液抑制了大多数病原体的生长。重要的是,载脂蛋白-bLf或bLf水解产物与上述生物培养物上清液的组合显示出对大多数选定病原体生长的协同或部分协同作用。总之,几种益生菌菌株对apo-bLf和bLf水解产物具有抗性,值得进行临床研究以评估apo-bLf或其水解产物与特定益生菌结合的抗菌潜力。

著录项

  • 来源
    《Journal of dairy science》 |2013年第3期|1438-1446|共9页
  • 作者单位

    Department of Nursing, St. Mary's Medicine, Nursing and Management College, Taiwan 26644, Republic of China;

    Department of Veterinary Medicine, National Chung-Hsing University, Taiwan 40227, Republic of China;

    Department of Veterinary Medicine, National Chung-Hsing University, Taiwan 40227, Republic of China;

    Department of Veterinary Medicine, National Chung-Hsing University, Taiwan 40227, Republic of China;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    lactoferrin; probiotic; lactic acid bacteria; bifidobacteria;

    机译:乳铁蛋白益生菌乳酸菌双歧杆菌;

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