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从人源唾液乳杆菌中估算碳源和氮源对其生长和细菌素产生的综合影响。

Estimation of combined effects of carbon and nitrogen sources on the growth and bacteriocin production of Lactobacillus salivarius from human source.

机构信息

Centro de Referencia para Lactobacilos (CERELA)-CONICET, Chacabuco, Tucumán, Argentina.

出版信息

J Basic Microbiol. 2010 Apr;50(2):190-9. doi: 10.1002/jobm.200900122.

Abstract

Vaginal Lactobacillus salivarius CRL 1328 (Centro de Referencia para Lactobacilos Culture Collection) or the bacteriocin that produces could be included in a urogenital probiotic formula to prevent urogenital infections in women. The objective of this work was to determine the effects of different carbon and nitrogen sources on the growth and bacteriocin production of this microorganism. A fractional factorial design 3(5-1) was applied to evaluate the effects of five nutrients (glucose, lactose, yeast extract, tryptone and meat peptone), at three different concentrations (0, 1 and 2%). Results were statistically analyzed for linear and quadratic effects of nutrients, along with their interactions. All the nutrients tested stimulated the cell growth and bacteriocin production, but lactose had not a significant influence on the last response. The linear effects of higher magnitude on biomass and bacteriocin production were those of yeast extract and tryptone. The results demonstrated that there were significant interactions between the different nutrients, depending on the response evaluated. Maximum bacteriocin production was reached in different growth media with a lower cost than conventional culture media used in the laboratory. These findings will contribute to the design of a pharmaceutical product for the restoration of ecological balance of urogenital tract.

摘要

阴道唾液乳杆菌 CRL 1328(乳酸菌参考中心培养物收藏)或其产生的细菌素可包含在泌尿生殖益生菌配方中,以预防女性泌尿生殖系统感染。本工作的目的是确定不同碳源和氮源对该微生物生长和细菌素产生的影响。应用 3(5-1)部分析因设计评估五种营养素(葡萄糖、乳糖、酵母提取物、胰蛋白胨和肉胃蛋白酶)在三个不同浓度(0、1 和 2%)下的影响。对营养素的线性和二次效应及其相互作用进行了统计学分析。所有测试的营养素均刺激细胞生长和细菌素产生,但乳糖对最后一次反应没有显著影响。酵母提取物和胰蛋白胨对生物量和细菌素产生的线性影响较大。结果表明,根据评估的反应,不同营养素之间存在显著的相互作用。在具有更低成本的不同生长培养基中达到了最大细菌素产量,优于实验室中使用的常规培养基。这些发现将有助于设计用于恢复泌尿生殖道生态平衡的药物产品。

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