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Antibiofilm Effect of DNase against Single and Mixed Species Biofilm

机译:DNase对单一物种和混合物种生物膜的抗生物膜作用

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摘要

Biofilms are aggregates of microorganisms that coexist in socially coordinated micro-niche in a self-produced polymeric matrix on pre-conditioned surfaces. The biofilm matrix reduces the efficacy of antibiofilm strategies. DNase degrades the extracellular DNA (e-DNA) present in the matrix, rendering the matrix weak and susceptible to antimicrobials. In the current study, the effect of DNase I was evaluated during biofilm formation (pre-treatment), on preformed biofilms (post-treatment) and both (dual treatment). The DNase I pre-treatment was optimized for P. aeruginosa PAO1 (model biofilm organism) at 10 μg/mL and post-treatment at 10 μg/mL with 15 min of contact duration. Inclusion of Mg 2+ alongside DNase I post-treatment resulted in 90% reduction in biofilm within only 5 min of contact time (irrespective of age of biofilm). On extension of these findings, DNase I was found to be less effective against mixed species biofilm than individual biofilms. DNase I can be used as potent antibiofilm agent and with further optimization can be effectively used for biofilm prevention and reduction in situ.
机译:生物膜是微生物的聚集体,它们共同存在于经过预处理的表面上的自我产生的聚合物基质中的社会协调的微生态位中。生物膜基质降低了抗生物膜策略的功效。脱氧核糖核酸酶降解存在于基质中的细胞外DNA(e-DNA),使基质变弱并且容易受到抗菌剂的影响。在当前的研究中,评估了DNase I在生物膜形成过程中(预处理),预先形成的生物膜(后处理)和两者(双重处理)的影响。 DNase I预处理针对铜绿假单胞菌PAO1(模型生物膜生物)进行了优化,接触时间为15分钟,而后处理为10μg/ mL,用于铜绿假单胞菌PAO1。在DNase I后处理中加入Mg 2+可以在仅5分钟的接触时间内(不考虑生物膜的年龄)使生物膜减少90%。在扩展这些发现之后,发现DNase I对混合物种生物膜的作用不如单个生物膜。 DNase I可以用作有效的抗生物膜剂,进一步优化可以有效地用于生物膜的预防和原位还原。

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