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Potential applications of nonthermal plasmas against biofilm-associated micro-organisms invitro

机译:非热等离子体在体外对抗生物膜相关微生物的潜在应用

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摘要

Biofilms as complex microbial communities attached to surfaces pose several challenges in different sectors, ranging from food and healthcare to desalination and power generation. The biofilm mode of growth allows microorganisms to survive in hostile environments and biofilm cells exhibit distinct physiology and behaviour in comparison with their planktonic counterparts. They are ubiquitous, resilient and difficult to eradicate due to their resistant phenotype. Several chemical-based cleaning and disinfection regimens are conventionally used against biofilm-dwelling micro-organisms invitro. Although such approaches are generally considered to be effective, they may contribute to the dissemination of antimicrobial resistance and environmental pollution. Consequently, advanced green technologies for biofilm control are constantly emerging. Disinfection using nonthermal plasmas (NTPs) is one of the novel strategies having a great potential for control of biofilms of a broad spectrum of micro-organisms. This review discusses several aspects related to the inactivation of biofilm-associated bacteria and fungi by different types of NTPs under invitro conditions. A brief introduction summarizes prevailing methods in biofilm inactivation, followed by introduction to gas discharge plasmas, active plasma species and their inactivating mechanism. Subsequently, significance and aspects of NTP inactivation of biofilm-associated bacteria, especially those of medical importance, including opportunistic pathogens, oral pathogenic bacteria, foodborne pathogens and implant bacteria, are discussed. The remainder of the review discusses majorly about the synergistic effect of NTPs and their activity against biofilm-associated fungi, especially Candida species.
机译:生物膜作为附着在表面的复杂微生物群落,在食品和医疗保健、海水淡化和发电等不同领域带来了一些挑战。生物膜的生长模式使微生物能够在恶劣的环境中生存,与浮游生物相比,生物膜细胞表现出不同的生理和行为。由于它们的抗性表型,它们无处不在,有弹性且难以根除。几种基于化学的清洁和消毒方案通常用于体外对抗生物膜驻留的微生物。虽然这些方法通常被认为是有效的,但它们可能有助于传播抗微生物药物耐药性和环境污染。因此,用于生物膜控制的先进绿色技术不断涌现。使用非热等离子体 (NTP) 进行消毒是控制广谱微生物生物膜具有巨大潜力的新策略之一。本文讨论了不同类型NTPs在体外条件下使生物膜相关细菌和真菌失活的几个方面。简要介绍了生物膜失活的主流方法,然后介绍了气体放电等离子体、活性等离子体种类及其灭活机制。随后,讨论了生物膜相关细菌,特别是那些具有医学重要性的细菌,包括机会性病原体、口腔致病菌、食源性病原体和植入细菌的NTP灭活的意义和方面。本综述的其余部分主要讨论了NTPs的协同作用及其对生物膜相关真菌(尤其是念珠菌属)的活性。

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