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萎缩芽孢杆菌接种培养基的筛选与优化及其对孢子产量和耐热性的影响

Selection and optimization of Bacillus atrophaeus inoculum medium and its effect on spore yield and thermal resistance.

作者信息

Sella Sandra Regina B R, Dlugokenski Regina Elizabete F, Guizelini Belquis P, Vandenberghe Luciana P S, Medeiros Adriane B P, Pandey Ashok, Soccol Carlos Ricardo

机构信息

Secretaria de Estado da Saúde do Paraná, Centro de Produção e Pesquisa de Imunobiológicos, Piraquara, PR, Brazil.

出版信息

Appl Biochem Biotechnol. 2008 Dec;151(2-3):380-92. doi: 10.1007/s12010-008-8206-3. Epub 2008 Apr 22.

Abstract

Bacillus atrophaeus's spores are used as biological indicators to monitor sterilization processes and as a Bacillus anthracis surrogate in the development and validation of biosafety methods. The regular use of biological indicators to evaluate the efficiency of sterilization processes is a legal requirement for health services. However, its high cost hinders its widespread use. Aiming at developing a cost-effective inoculum medium, soybean molasses and nutrient-supplemented vinasse were evaluated for their effectiveness in solid-state fermentation (SSF). In biomass production, the results demonstrated that all tested compositions favor growth by providing the nutritional demands of the microorganism. Optimum casein peptone and soybean molasses concentration (1.0%, 2.5%, or 4.0%) was determined by a 2((2-0)) factorial experimental design. The results have showed a positive influence of peptone on biomass production. In order to define peptone final concentration (4.0% or 6.0%), a 2(2) factorial experimental design was used. An optimized medium containing 4.0% soybean molasses and 4.0% casein peptone was similar in performance to a synthetic control medium (tryptone soy broth) in dry-heat thermal-resistant spore production by SSF. An experiment performed under optimum SSF conditions resulted in 1.9 x 10(10) CFU g(-1) dry matter with D (160 degrees C) = 5.2 +/- 0.2 min.

摘要

萎缩芽孢杆菌的孢子被用作生物指示剂来监测灭菌过程,并在生物安全方法的开发和验证中作为炭疽芽孢杆菌的替代物。定期使用生物指示剂来评估灭菌过程的效率是卫生服务的一项法律要求。然而,其高昂的成本阻碍了其广泛应用。为了开发一种具有成本效益的接种培养基,对大豆糖蜜和添加营养的酒糟在固态发酵(SSF)中的有效性进行了评估。在生物量生产方面,结果表明,所有测试的成分通过提供微生物的营养需求来促进生长。通过2((2 - 0))析因实验设计确定了酪蛋白胨和大豆糖蜜的最佳浓度(1.0%、2.5%或4.0%)。结果表明胨对生物量生产有积极影响。为了确定胨的最终浓度(4.0%或6.0%),使用了2(2)析因实验设计。在固态发酵中,一种含有4.0%大豆糖蜜和4.0%酪蛋白胨的优化培养基在干热耐热孢子生产方面的性能与合成对照培养基(胰蛋白胨大豆肉汤)相似。在最佳固态发酵条件下进行的一项实验产生了1.9×10(10) CFU g(-1)干物质,D(160℃) = 5.2±0.2分钟。

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