The Challenging World of Biofilm Physiology

Adv Microb Physiol. 2015:67:235-92. doi: 10.1016/bs.ampbs.2015.09.003. Epub 2015 Oct 27.

Abstract

Worldwide, infectious diseases are one of the leading causes of death among children. At least 65% of all infections are caused by the biofilm mode of bacterial growth. Bacteria colonise surfaces and grow as multicellular biofilm communities surrounded by a polymeric matrix as a common survival strategy. These sessile communities endow bacteria with high tolerance to antimicrobial agents and hence cause persistent and chronic bacterial infections, such as dental caries, periodontitis, otitis media, cystic fibrosis and pneumonia. The highly complex nature and the rapid adaptability of the biofilm population impede our understanding of the process of biofilm formation, but an important role for oxygen-binding proteins herein is clear. Much research on this bacterial lifestyle is already performed, from genome/proteome analysis to in vivo antibiotic susceptibility testing, but without significant progress in biofilm treatment or eradication. This review will present the multiple challenges of biofilm research and discuss possibilities to cross these barriers in future experimental studies.

Keywords: Biofilm models; Biofilms; Microbial communities; Omics studies; Persistence; Stress response.

MeSH terms

  • Bacteria / growth & development*
  • Bacteria / pathogenicity
  • Bacterial Infections / microbiology
  • Bacterial Physiological Phenomena*
  • Biofilms / growth & development*
  • Humans