Bhat Shriya P, Roach David J
Department of Molecular and Cellular Biology, Harvard University, Cambridge, MA, United States.
Broad Institute, Cambridge, MA, United States.
Front Microbiol. 2025 Sep 5;16:1602583. doi: 10.3389/fmicb.2025.1602583. eCollection 2025.
Biofilms, which are highly structured microbial communities encased in a self-produced matrix, are frequently employed by many bacteria and archaea with significant implications for their survival in extreme environments. These environments, characterized by extreme temperatures, pH, salinity, and variable nutrient availability, can pose challenges that biofilms help organisms overcome through unique adaptations. This review explores the bioactivity of biofilms in extreme environments, highlighting biofilms' ability to produce novel biomolecules and other biofunctions with potential applications in medicine and biotechnology. Key adaptations such as extracellular polymeric substances, cooperative and competitive interactions, and specialized nutrient acquisition strategies are examined for their roles in biofilm resilience and bioactivity. The potential of these biofilms to contribute to the development of novel therapeutics, antimicrobial agents, antioxidants, and anticancer compounds is discussed, underscoring their significance in advancing medical and biotechnological applications. Through an in-depth analysis of current knowledge, this review highlights the bioactive capacities of extremophilic biofilms and their promising applications for human benefit.
生物膜是包裹在自身产生的基质中的高度结构化微生物群落,许多细菌和古菌经常形成生物膜,这对它们在极端环境中的生存具有重要意义。这些环境的特点是温度、pH值、盐度极端,营养物质可用性多变,会带来挑战,而生物膜通过独特的适应方式帮助生物体克服这些挑战。本综述探讨了生物膜在极端环境中的生物活性,强调了生物膜产生新型生物分子和其他生物功能的能力及其在医学和生物技术中的潜在应用。研究了诸如胞外聚合物、合作与竞争相互作用以及特殊营养获取策略等关键适应性因素在生物膜恢复力和生物活性中的作用。讨论了这些生物膜在开发新型治疗药物、抗菌剂、抗氧化剂和抗癌化合物方面的潜力,强调了它们在推进医学和生物技术应用中的重要性。通过对现有知识的深入分析,本综述突出了嗜极生物膜的生物活性能力及其对人类有益的应用前景。