Muratov Erika, Keilholz Julian, Kovács Ákos T, Moeller Ralf
German Aerospace Center (DLR e.V.), Institute of Aerospace Medicine, Radiation Biology Department, Aerospace Microbiology Research Group, Linder Hoehe, Cologne (Köln), Germany.
University of Bonn, Institute for Microbiology and Biotechnology, Meckenheimer Allee 168, 53115, Bonn, Germany.
Biofilm. 2025 Mar 13;9:100274. doi: 10.1016/j.bioflm.2025.100274. eCollection 2025 Jun.
Biofilms formed by confer protection against environmental stressors through extracellular polysaccharides (EPS) and sporulation. This study investigates the roles of these biofilm components in resistance to hydrogen peroxide, a common reactive oxygen species source and disinfectant. Using wild-type and mutant strains deficient in EPS or sporulation, biofilm colonies were cultivated at various maturation stages and exposed to hydrogen peroxide. EPS-deficient biofilms exhibited reduced resilience, particularly in early stages, highlighting the structural and protective importance of the matrix. Mature biofilms demonstrated additional protective mechanisms, potentially involving TasA protein fibers and/or the biofilm surface layer (BslA). In contrast, sporulation showed limited contribution to hydrogen peroxide resistance, as survival was primarily matrix-dependent. These findings underscore the necessity of targeting EPS and other matrix components in anti-biofilm strategies, suggesting that hydrogen peroxide-based disinfection could be enhanced by combining it with complementary sporicidal treatments. This study advances our understanding of biofilm resilience, contributing to the development of more effective sterilization protocols.
由[具体细菌名称未给出]形成的生物膜通过胞外多糖(EPS)和孢子形成来抵御环境应激源。本研究调查了这些生物膜成分在抵抗过氧化氢(一种常见的活性氧来源和消毒剂)方面的作用。使用野生型和缺乏EPS或孢子形成的突变菌株,在不同成熟阶段培养生物膜菌落并使其暴露于过氧化氢。缺乏EPS的生物膜表现出恢复力降低,尤其是在早期阶段,突出了基质的结构和保护重要性。成熟生物膜展示了额外的保护机制,可能涉及TasA蛋白纤维和/或生物膜表面层(BslA)。相比之下,孢子形成对过氧化氢抗性的贡献有限,因为存活率主要依赖于基质。这些发现强调了在抗生物膜策略中针对EPS和其他基质成分的必要性,表明通过将基于过氧化氢的消毒与互补的杀孢子处理相结合,可以增强消毒效果。本研究增进了我们对生物膜恢复力的理解,有助于开发更有效的灭菌方案。