a Department of Pharmacy , University of Manchester , Oxford Road , Manchester , M13 9PL , UK.
Biofouling. 1996;10(4):331-46. doi: 10.1080/08927019609386290.
Microbial biofilms are notably recalcitrant towards treatment with antibiotics, biocides or disinfectants that would adequately control the same organisms growing in planktonic mode. Much of this resistance has been attributed to an organisation of the biofilm cells within exopolymer matrices. Whilst such exopolymers are unlikely to hinder the diffusion and access of antimicrobial agents to the underlying cells, they will chemically quench reactive biocides such as chlorine and peroxygens, and bind highly charged antibiotics, such as tobramycin and gentamycin, thereby providing some protection to the more deep lying cells. Extracellular enzymes, bound within the glycocalyx and able to degrade the treatment agents, will further reduce the access of susceptible compounds. Diffusion limitation however, is unlikely to be the sole moderator of the resistance properties of microbial biofilms. In addition, gradients of oxygen and nutrients established across the biofilm community will cause growth rates to be much reduced at points remoted from the accessible nutrient. Slow growth rates, and the associated induction of stringent responses further contribute towards this resistance. Finally, there have been recent demonstrations that attachment of microorganisms to surfaces promotes the expression of genes that are not normally expressed in planktonic culture. Whether or not the expression of such genes alters the phenotype in a manner which alters the response of the cells to antimicrobial agents remains to be demonstrated.
微生物生物膜对抗生素、杀菌剂或消毒剂的治疗具有明显的抗性,这些药物足以控制以浮游模式生长的相同生物。这种抗性很大程度上归因于生物膜细胞在胞外聚合物基质中的组织方式。虽然这些胞外聚合物不太可能阻碍抗菌剂向底层细胞的扩散和渗透,但它们会化学淬灭活性杀菌剂,如氯和过氧化物,并结合高电荷抗生素,如妥布霉素和庆大霉素,从而为更深层的细胞提供一些保护。结合在糖萼内并能够降解治疗剂的细胞外酶将进一步减少敏感化合物的渗透。然而,扩散限制不太可能是微生物生物膜抗性特性的唯一调节剂。此外,生物膜群落中建立的氧气和营养物质梯度将导致远离可利用营养物质的点的生长速度大大降低。生长速度缓慢,以及随之而来的严格反应的诱导,进一步导致了这种抗性。最后,最近有研究表明,微生物附着在表面上会促进通常在浮游培养中不表达的基因的表达。这些基因的表达是否以改变细胞对抗菌剂的反应的方式改变表型,还有待证明。