Biochemistry of Bacterial Biofilm: Insights into Antibiotic Resistance Mechanisms and Therapeutic Intervention.

IF 3.4 3区 生物学 Q1 BIOLOGY Life-Basel Pub Date : 2025-01-02 DOI:10.3390/life15010049
Kashish Azeem, Sadaf Fatima, Asghar Ali, Ayesha Ubaid, Fohad Mabood Husain, Mohammad Abid
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Abstract

Biofilms, composed of structured communities of bacteria embedded in a self-produced extracellular matrix, pose a significant challenge due to their heightened resistance to antibiotics and immune responses. This review highlights the mechanisms underpinning antibiotic resistance within bacterial biofilms, elucidating the adaptive strategies employed by microorganisms to withstand conventional antimicrobial agents. This encompasses the role of the extracellular matrix, altered gene expression, and the formation of persister cells, contributing to the recalcitrance of biofilms to eradication. A comprehensive understanding of these resistance mechanisms provides a for exploring innovative therapeutic interventions. This study explores promising avenues for future research, emphasizing the necessity of uncovering the specific genetic and phenotypic adaptations occurring within biofilms. The identification of vulnerabilities in biofilm architecture and the elucidation of key biofilm-specific targets emerge as crucial focal points for the development of targeted therapeutic strategies. In addressing the limitations of traditional antibiotics, this review discusses innovative therapeutic approaches. Nanomaterials with inherent antimicrobial properties, quorum-sensing inhibitors disrupting bacterial communication, and bacteriophages as biofilm-specific viral agents are highlighted as potential alternatives. The exploration of combination therapies, involving antimicrobial agents, biofilm-disrupting enzymes, and immunomodulators, is emphasized to enhance the efficacy of existing treatments and overcome biofilm resilience.

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细菌生物膜的生物化学:抗生素耐药机制和治疗干预的见解。
生物膜是由嵌入自我产生的细胞外基质中的细菌结构群落组成的,由于其对抗生素和免疫反应的高度抗性,构成了重大挑战。这篇综述强调了细菌生物膜内抗生素耐药的机制,阐明了微生物耐受常规抗菌药物的适应性策略。这包括细胞外基质的作用、基因表达的改变和持久性细胞的形成,这些因素导致生物膜难以根除。对这些耐药机制的全面了解为探索创新的治疗干预提供了基础。本研究为未来的研究探索了有希望的途径,强调了揭示生物膜内发生的特定遗传和表型适应的必要性。识别生物膜结构中的脆弱性和阐明关键的生物膜特异性靶点是开发靶向治疗策略的关键焦点。在解决传统抗生素的局限性,这篇综述讨论了创新的治疗方法。具有固有抗菌特性的纳米材料、破坏细菌通讯的群体感应抑制剂以及作为生物膜特异性病毒剂的噬菌体被强调为潜在的替代品。强调探索包括抗菌药物、生物膜破坏酶和免疫调节剂在内的联合治疗方法,以提高现有治疗方法的疗效并克服生物膜的弹性。
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来源期刊
Life-Basel
Life-Basel Biochemistry, Genetics and Molecular Biology-General Biochemistry,Genetics and Molecular Biology
CiteScore
4.30
自引率
6.20%
发文量
1798
审稿时长
11 weeks
期刊介绍: Life (ISSN 2075-1729) is an international, peer-reviewed open access journal of scientific studies related to fundamental themes in Life Sciences, especially those concerned with the origins of life and evolution of biosystems. Our aim is to encourage scientists to publish their experimental and theoretical results in as much detail as possible. There is no restriction on the length of the papers.
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