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采用冷冻凝胶技术固定红平红球菌的溶胶-凝胶基生物过滤器的生物活性和机械稳定性。

Biological activity and mechanical stability of sol-gel-based biofilters using the freeze-gelation technique for immobilization of Rhodococcus ruber.

机构信息

Department of Functional Coatings, GMBU eV, Dresden, Germany.

出版信息

Appl Microbiol Biotechnol. 2012 Feb;93(4):1755-67. doi: 10.1007/s00253-011-3489-7. Epub 2011 Jul 29.

Abstract

Biofilters with long lifetime and high storage stability are very important for bioremediation processes to ensure the readiness at the occurrence of sudden contaminations. By using the freeze-gelation technique, living cells can be immobilized within a mechanically and chemically stable ceramic-like matrix. Due to a freeze-drying step, the embedded microorganisms are converted into a preserved form. In that way, they can be stored under dry conditions, which comply better with storage, transport, and handling requirements. Thus, in contrast to other immobilization techniques, there is no need for storage in liquid or under humid atmosphere. The biological activity, mechanical strength, and the structure of the biologically active ceramic-like composites (biocers) produced by freeze gelation have been investigated by using the phenol-degrading bacteria Rhodococcus ruber as model organism. Samples of freeze-gelation biocers have been investigated after defined storage periods, demonstrating nearly unchanged mechanical strength of the immobilization matrix as well as good storage stability of the activity of the immobilized cells over several months of storage at 4 °C. Repeated-batch tests demonstrated further that the freeze-gelation biocers can be repeatedly used over a period of more than 12 months without losing its bioactivity. Thus, these results show that freeze-gelation biocers have high potential of being scaled up from laboratory test systems to applications in real environment because of their long bioactivity as well as mechanical stability.

摘要

具有长寿命和高储存稳定性的生物过滤器对于生物修复过程非常重要,以确保在突然出现污染时能够随时投入使用。通过使用冷冻凝胶技术,可以将活细胞固定在机械和化学稳定的陶瓷状基质中。由于干燥过程,嵌入的微生物被转化为保存形式。这样,它们可以在干燥条件下储存,更符合储存、运输和处理的要求。因此,与其他固定化技术相比,无需在液体或潮湿环境中储存。使用苯酚降解菌 Rhodococcus ruber 作为模型生物,研究了冷冻凝胶生物陶瓷的生物活性、机械强度和生物活性陶瓷状复合材料(生物陶瓷)的结构。研究了经过规定储存期的冷冻凝胶生物陶瓷样品,结果表明,固定化基质的机械强度几乎没有变化,并且在 4°C 下储存数月后,固定化细胞的活性也具有良好的储存稳定性。重复批次测试进一步表明,冷冻凝胶生物陶瓷可以在 12 个月以上的时间内重复使用,而不会失去其生物活性。因此,这些结果表明,由于其长生物活性和机械稳定性,冷冻凝胶生物陶瓷具有从实验室测试系统扩展到实际环境应用的巨大潜力。

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