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研究生物膜:深入理解微生物行为和抗生素耐药性的先进方法。

Investigating Biofilms: Advanced Methods for Comprehending Microbial Behavior and Antibiotic Resistance.

机构信息

Department of Medical Laboratories, College of Applied Medical Sciences, Qassim University, 51452 Buraydah, Saudi Arabia.

出版信息

Front Biosci (Landmark Ed). 2024 Mar 29;29(4):133. doi: 10.31083/j.fbl2904133.

Abstract

Biofilms, which consist of microorganisms enclosed in an extracellular polymeric material (EPS), hold immense importance in the fields of environmental research, industry, and medicine. They play a significant role in ecosystem dynamics and stability, but they also pose issues such as biofouling, corrosion, and pollution. Biofilms in medical environments are linked to persistent infections and elevated healthcare expenses. The EPS matrix plays a crucial role in maintaining the structural integrity and antibiotic resistance of these structures. The research primarily investigates the role of the EPS matrix in facilitating horizontal gene transfer among biofilm communities, with a particular emphasis on EPS and its impact on this process. The process is recognized as a pivotal mechanism in the emergence of antibiotic resistance, underscoring the crucial function of EPS in the dynamics of biofilms. The analysis also highlights the significant financial constraints caused by biofilms in several industries. Biofilm-associated infections in the healthcare sector result in escalated treatment expenses and extended hospitalization periods. In an industrial context, biofilms have a role in increasing maintenance expenses and product contamination, emphasizing the need for efficient management solutions. This review presents the most recent progress in biofilm research, emphasizing the utilization of sophisticated imaging tools and molecular methodologies. In addition to conventional imaging techniques, the research explores the utilization of sophisticated molecular tools, such as DNA and RNA sequencing, in conjunction with proteomics. These approaches are essential for assessing the genetic and metabolic mechanisms that regulate biofilm development and antibiotic resistance. The review underscores the significance of employing an interdisciplinary methodology in the study of biofilms. By incorporating a range of approaches, such as sophisticated imaging and molecular analysis, a comprehensive understanding of biofilm dynamics may be achieved. This approach also opens up possibilities for developing novel solutions to address the negative impacts of biofilms on health, industry, and the environment.

摘要

生物膜由包裹在细胞外聚合物质 (EPS) 中的微生物组成,在环境研究、工业和医学领域具有重要意义。它们在生态系统动态和稳定性中发挥着重要作用,但也存在生物污垢、腐蚀和污染等问题。医学环境中的生物膜与持续性感染和医疗保健费用增加有关。EPS 基质在维持这些结构的结构完整性和抗生素耐药性方面发挥着关键作用。该研究主要研究 EPS 基质在促进生物膜群落之间水平基因转移中的作用,特别强调 EPS 及其对该过程的影响。该过程被认为是抗生素耐药性出现的关键机制,突显了 EPS 在生物膜动态中的关键作用。分析还强调了生物膜在多个行业中造成的重大财务限制。医疗保健领域的生物膜相关感染导致治疗费用增加和住院时间延长。在工业环境中,生物膜会增加维护费用和产品污染,强调需要有效的管理解决方案。本综述介绍了生物膜研究的最新进展,强调了利用复杂的成像工具和分子方法。除了传统的成像技术外,研究还探索了利用复杂的分子工具,如 DNA 和 RNA 测序,以及蛋白质组学。这些方法对于评估调节生物膜发育和抗生素耐药性的遗传和代谢机制至关重要。综述强调了在生物膜研究中采用跨学科方法的重要性。通过结合多种方法,如复杂的成像和分子分析,可以全面了解生物膜动态。这种方法还为开发解决生物膜对健康、工业和环境的负面影响的新解决方案开辟了可能性。

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