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首页> 外文期刊>Applied biochemistry and biotechnology, Part A. enzyme engineering and biotechnology >Purification, Characterization, and Optimum Conditions of Fermencin SD11, a Bacteriocin Produced by Human Orally Lactobacillus fermentum SD11
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Purification, Characterization, and Optimum Conditions of Fermencin SD11, a Bacteriocin Produced by Human Orally Lactobacillus fermentum SD11

机译:人类口服发酵乳杆菌SD11产生的细菌素Fermencin SD11的纯化,表征和最佳条件

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Fermencin SD11, a bacteriocin produced by human orally Lactobacillus fermentum SD11, was purified, characterized, and optimized in conditions for bacterial growth and bacteriocin production. Fermencin SD11 was purified using three steps of ammonium sulfate precipitation, gel filtration chromatography, and reverse-phase high-performance liquid chromatography. The molecular weight was found to be 33,000 Da using SDS-PAGE and confirmed as 33,593.4 Da by liquid chromatography-mass spectrometry. Fermencin SD11 exhibited activity against a wide range of oral pathogens including cariogenic and periodontogenic pathogens and Candida. The active activity was stable between 60 - 80 A degrees C in a pH range of 3.0 to 7.0. It was sensitive to proteolytic enzymes (proteinase K and trypsin), but it was not affected by alpha-amylase, catalase, lysozyme, and saliva. The optimum conditions for growth and bacteriocin production of L. fermentum SD11 were cultured at acidic with pH of 5.0-6.0 at 37 or 40 A degrees C under aerobic or anaerobic conditions for 12 h. It is promising that L. fermentum SD11 and its bacteriocin may be an alternative approach for promoting oral health or prevention of oral diseases, e.g., dental caries and periodontitis, which would require further clinical trials.
机译:Fermencin SD11是一种由人口服发酵乳杆菌SD11产生的细菌素,在细菌生长和细菌素产生的条件下进行了纯化,表征和优化。用硫酸铵沉淀,凝胶过滤色谱和反相高效液相色谱三步纯化Fermencin SD11。使用SDS-PAGE发现分子量为33,000Da,并且通过液相色谱-质谱法确认为33,593.4Da。 Fermencin SD11对多种口腔病原体表现出活性,包括龋齿和牙周病原体以及念珠菌。活性在60至80 A的温度范围内,在3.0至7.0的pH范围内稳定。它对蛋白水解酶(蛋白酶K和胰蛋白酶)敏感,但不受α-淀粉酶,过氧化氢酶,溶菌酶和唾液的影响。在有氧或无氧条件下,在37或40 A的酸性,pH值为5.0-6.0的条件下,培养发酵乳杆菌SD11的最佳生长和细菌素生产条件12 h。发酵乳杆菌SD11及其细菌素有望成为促进口腔健康或预防口腔疾病(例如龋齿和牙周炎)的替代方法,这需要进一步的临床试验。

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