Role of shear stress on biofilm formation of Candida krusei in a rotating disk system

被引:18
作者
Ines Brugnoni, Lorena [1 ,2 ]
Amelia Cubitto, Maria [1 ]
Enrique Lozano, Jorge [2 ]
机构
[1] Univ Nacl Sur, Dept Biol Bloquim & Farm, RA-8000 Bahia Blanca, Buenos Aires, Argentina
[2] Univ Nacl Sur, Consejo Nacl Invest Cient & Tecn Argentina, RA-8000 Bahia Blanca, Buenos Aires, Argentina
关键词
Biofilms; Yeasts; Rotating disk system; Shear stress; Transitional flow; Laminar flow; Drag force; CLEANING IN-PLACE; MICROBIAL ADHESION; HYDRODYNAMIC SHEAR; DETACHMENT; GROWTH; YEAST; SURFACES; REMOVAL; FORCE; MODEL;
D O I
10.1016/j.jfoodeng.2010.08.029
中图分类号
TQ [化学工业];
学科分类号
0817 ;
摘要
In industrial conditions biofilms formed on pipes Joints and heat exchangers are exposed to varying shear stress conditions caused by fluid flow In this study we examined the effect of shear created by the tangential liquid flow in a rotating disk system (RDS) on adhesion and biofilm formation of Candida krusei C krusei biofilms were formed on stainless steel (AISI 304 2B food grade) while being exposed to different shear stresses (from 0 to 91 N m(-2)) generated by two rotational speeds (350 and 800 rpm) The coupons were examined by fluorescein diacetate (FDA) at 24-h interval for 4 days The morphology of the biofilms and the disposition of C krusei cells in laminar and transitional flow were markedly different The morphology of biofilm features in the transitional flow revealed the influence of hydrodynamic drag The early stage of biofilm development resulted practically unaffected by shear stress However in a mature biofilm shear stress determined the disposition of biofilm cells onto the surface Microcolonies began to appear approximately at 48 h at all tested shear stresses and biofilm formation continued throughout the entire experimental period Moreover shape of biofilms was probably governed by the continuous applied shear stress Finally biofilms formed under higher shear stress differs significantly in their arrangement as compared with those formed under lower shear conditions (C) 2010 Elsevier Ltd All rights reserved
引用
收藏
页码:266 / 271
页数:6
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