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尽管在连续流动条件下接触异噻唑啉酮,混合物种生物膜仍充当浮游细胞工厂。

Mixed species biofilms act as planktonic cell factories despite isothiazolinone exposure under continuous-flow conditions.

机构信息

Department of Microbiology, Stellenbosch University, Stellenbosch, South Africa.

Department of Chemistry and Biology, Toronto Metropolitan University, Toronto, Ontario, Canada.

出版信息

Environ Microbiol Rep. 2024 Oct;16(5):e70010. doi: 10.1111/1758-2229.70010.

Abstract

The primary approach to managing biofouling in industrial water systems involves the large-scale use of biocides. It is well-established that biofilms are 'cell factories' that release planktonic cells even when challenged with antimicrobials. The effect of isothiazolinone on the metabolic activity and biomass of mixed Pseudomonas biofilms was monitored in real-time using the CEMS-BioSpec system. The exposure of biofilms to the minimum inhibitory concentration (1.25 mg L) of biocide did not impact planktonic cell production (log 7.5 CFU mL), while whole-biofilm metabolic activity and biomass accumulation increased. Only the maximum biocide concentration (80 mg L) resulted in a change in planktonic cell yields and temporal inhibition of biofilm activity and biomass, a factor that needs due consideration in view of dilution in industrial settings. Interfacing the real-time measurement of metabolic activity and biomass with dosing systems is especially relevant to optimizing the use of biocides in industrial water systems.

摘要

工业水系统中生物污垢的主要管理方法涉及大量使用杀生剂。生物膜是“细胞工厂”,这一点已得到充分证实,即使受到抗菌剂的挑战,它们也会释放浮游细胞。使用 CEMS-BioSpec 系统实时监测异噻唑啉酮对混合假单胞菌生物膜代谢活性和生物量的影响。生物膜暴露于最低抑菌浓度(1.25mg/L)的杀生剂不会影响浮游细胞的产生(对数 7.5CFU/mL),而整个生物膜的代谢活性和生物量积累增加。只有最高杀生剂浓度(80mg/L)才会导致浮游细胞产率发生变化,并暂时抑制生物膜的活性和生物量,鉴于在工业环境中的稀释,这是需要充分考虑的一个因素。将代谢活性和生物量的实时测量与投加系统相结合,对于优化工业水系统中杀生剂的使用特别重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76ea/11443163/fd44633d66fb/EMI4-16-e70010-g012.jpg

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