Coating polypropylene surfaces with protease weakens the adhesion and increases the dispersion of Candida albicans cells

Author:

Andreani Eugenio Spadoni,Villa Federica,Cappitelli Francesca,Krasowska Anna,Biniarz Piotr,Łukaszewicz Marcin,Secundo Francesco

Funder

Fondazione Cariplo

Italian Ministry of Foreign Affairs, General Directorate for Cultural Promotion and Collaboration

Publisher

Springer Science and Business Media LLC

Subject

General Medicine,Biotechnology,Bioengineering,Applied Microbiology and Biotechnology

Reference17 articles.

1. Biniarz P, Spadoni Andreani E, Krasowska A, Secundo F (2015) Effect of immobilized proteases on bacterial growth and cell adhesion on polypropylene surfaces. J Clin Microbiol Biochem Technol 2:7–9

2. Connolly LA, Riccombeni A, Grózer Z, Holland LM, Lynch DB, Andes DR, Gácser A, Butler G (2013) The apses transcription factor efg1 is a global regulator that controls morphogenesis and biofilm formation in Candida parapsilosis. Mol Microbiol 90:36–53

3. Cordeiro AL, Hippius C, Werner C (2011) Immobilized enzymes affect biofilm formation. Biotechnol Lett 33:1897–1904

4. Heras B, Totsika M, Peters KM, Paxman JJ, Gee CL, Jarrott RJ, Perugini MA, Whitten AE, Schembri MA (2014) The antigen 43 structure reveals a molecular velcro-like mechanism of autotransporter-mediated bacterial clumping. Proc Natl Acad Sci USA 111:457–462

5. Monniot C, Boisramé A, Da Costa G, Chauvel M, Sautour M, Bougnoux ME, Bellon-Fontaine MN, Dalle F, d’Enfert C, Richard ML (2013) Rbt1 protein domains analysis in Candida albicans brings insights into hyphal surface modifications and rbt1 potential role during adhesion and biofilm formation. PLoS ONE 8:e82395

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