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Role of Type 1 Fimbria- and P Fimbria-Specific Adherence in Colonization of the Neurogenic Human Bladder by Escherichia coli

机译:1型菌毛和P菌毛特异性黏附在大肠杆菌对神经源性人膀胱定植中的作用

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摘要

Recent clinical studies suggest that the deliberate colonization of the human bladder with a prototypic asymptomatic bacteriuria-associated bacterium, Escherichia coli 83972, may reduce the frequency of urinary tract infection in individuals with spinal cord injuries. However, the mechanism by which E. coli 83972 colonizes the bladder is unknown. We examined the role in bladder colonization of the E. coli 83972 genes papG and fimH, which respectively encode P and type 1 receptor-specific fimbrial adhesins. E. coli 83972 and isogenic papGΔ and papGΔ fimHΔ mutants of E. coli 83972 were compared for their capacities to colonize the neurogenic human bladder. Both strains were capable of stable colonization of the bladder. The results indicated that type 1 class-specific adherence and P class-specific adherence, while implicated as significant colonization factors in experiments that employed various animal model systems, were not required for colonization of the neurogenic bladder in human beings. The implications of these results with regard to the selection of potential vaccine antigens for the prevention of urinary tract infection are discussed.
机译:最近的临床研究表明,原型无症状菌尿相关细菌大肠杆菌(Escherichia coli 83972)在人膀胱的故意定居可能会减少脊髓损伤患者的尿路感染频率。然而,大肠杆菌83972定居膀胱的机制尚不清楚。我们检查了大肠杆菌83972基因papG和fimH在膀胱定殖中的作用,它们分别编码P和1型受体特异性纤维粘附素。比较了大肠杆菌83972和大肠杆菌83972的同基因papGΔ和papGΔfimHΔ突变体在神经源性人膀胱中的定殖能力。两种菌株都能稳定地定植在膀胱上。结果表明,在使用各种动物模型系统的实验中,类型1类特定的依从性和P类特定的依从性是重要的定居因子,但对于人类的神经源性膀胱定居并不需要。讨论了这些结果对于预防尿路感染的潜在疫苗抗原的选择的意义。

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