Nickel J C, Grant S K, Lam K, Olson M E, Costerton J W
Department of Urology, Queen's University, Kingston, Ontario, Canada.
Urology. 1991 Sep;38(3):280-9. doi: 10.1016/s0090-4295(91)80363-c.
We have used a catheterized rabbit model to test a newly developed catheter drainage system that incorporates a microbicidal outlet tube. In these tests, this new system was compared with a currently marketed closed drainage system, with daily challenge at the outlet tube using an auxotrophically marked uropathogenic strain of Escherichia coli. In the control series (silicone catheter connected to a standard drainage bag via a tamper-evidence seal) the challenge organism developed upstream biofilm colonization of the luminal surfaces of the catheter and drainage system that was complete in 4.6 +/- 2.1 days in 11 animals, while in 1 animal a rapid overgrowth of the system with Streptococcus faecalis developed. The presence of organisms other than the marked E. coli strain on the luminal surfaces of these control catheters showed that down stream colonization was also operative. In the test catheter drainage series, the microbicidal outlet tube insert precluded upstream colonization by the challenge organism in 12 of 16 catheters and significantly delayed (7.2 +/- 1.0 days) this colonization in the remaining 4 animals. When upstream colonization by exogenous bacteria was precluded by this effective device, downstream colonization of the drainage system by mixed populations of bacteria that probably migrated into the bladder via the extraluminal urethral route developed in some animals (6 of 16).
我们使用了一种经导管插入的兔模型来测试一种新开发的带有杀菌出口管的导管引流系统。在这些测试中,将这种新系统与一种目前市场上销售的封闭式引流系统进行了比较,每天通过使用营养缺陷型标记的致病性大肠杆菌菌株对出口管进行挑战。在对照系列(硅胶导管通过防篡改密封连接到标准引流袋)中,挑战微生物在导管和引流系统管腔表面形成了上游生物膜定植,11只动物在4.6±2.1天内完成,而在1只动物中,系统被粪肠球菌迅速过度生长。这些对照导管管腔表面存在除标记的大肠杆菌菌株以外的微生物,表明下游定植也在起作用。在测试导管引流系列中,杀菌出口管插入物在16根导管中的12根中阻止了挑战微生物的上游定植,并在其余4只动物中显著延迟了(7.2±1.0天)这种定植。当这种有效装置阻止了外源细菌的上游定植时,一些动物(16只中的6只)出现了可能通过尿道外途径迁移到膀胱的混合细菌群体对引流系统的下游定植。