Innovative Engineering Research Center of Veterinary Pharmaceutics, Department of Pharmacy, College of Veterinary Medicine, Sichuan Agricultural University, Chengdu, 611130, Sichuan, China.
Appl Microbiol Biotechnol. 2024 Jun 19;108(1):386. doi: 10.1007/s00253-024-13120-7.
Bacterial biofilms commonly cause chronic and persistent infections in humans. Bacterial biofilms consist of an inner layer of bacteria and an autocrine extracellular polymeric substance (EPS). Biofilm dispersants (abbreviated as dispersants) have proven effective in removing the bacterial physical protection barrier EPS. Dispersants are generally weak or have no bactericidal effect. Bacteria dispersed from within biofilms (abbreviated as dispersed bacteria) may be more invasive, adhesive, and motile than planktonic bacteria, characteristics that increase the probability that dispersed bacteria will recolonize and cause reinfection. The dispersants should be combined with antimicrobials to avoid the risk of severe reinfection. Dispersant-based nanoparticles have the advantage of specific release and intense penetration, providing the prerequisite for further antibacterial agent efficacy and achieving the eradication of biofilms. Dispersant-based nanoparticles delivered antimicrobial agents for the treatment of diseases associated with bacterial biofilm infections are expected to be an effective measure to prevent reinfection caused by dispersed bacteria. KEY POINTS: • Dispersed bacteria harm and the dispersant's dispersion mechanisms are discussed. • The advantages of dispersant-based nanoparticles in bacteria biofilms are discussed. • Dispersant-based nanoparticles for cutting off reinfection in vivo are highlighted.
细菌生物膜通常会导致人类慢性和持续性感染。细菌生物膜由内层细菌和自分泌细胞外聚合物质 (EPS) 组成。生物膜分散剂(简称分散剂)已被证明可有效去除细菌的物理保护屏障 EPS。分散剂通常较弱或没有杀菌作用。从生物膜中分散出来的细菌(简称分散细菌)可能比浮游细菌更具侵袭性、黏附性和运动性,这些特性增加了分散细菌重新定植和再次感染的可能性。应将分散剂与抗菌剂结合使用,以避免严重再感染的风险。基于分散剂的纳米颗粒具有特定释放和强烈渗透的优势,为进一步提高抗菌剂疗效提供了前提,并实现了生物膜的根除。基于分散剂的纳米颗粒递送至用于治疗与细菌生物膜感染相关疾病的抗菌剂,有望成为防止由分散细菌引起的再感染的有效措施。要点:• 讨论了分散细菌的危害和分散剂的分散机制。• 讨论了基于分散剂的纳米颗粒在细菌生物膜中的优势。• 强调了基于分散剂的纳米颗粒在体内切断再感染的作用。