[Antimicrobial effect of carbenicillin combined with prodigiosin and lysozyme in chronic purulent-inflammatory diseases complicated by Proteus infection].
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The role of urease in induction of pyelonephritis was studied by treatment of proteus-infected rats with acetohydroxamic acid, a potent inhibitor of urease. Infection was produced by introduction of Proteus mirabilis into the bladder along with a zinc disk. Controls were treated identically but received no acetohydroxamic acid. The number of bacteria per milliliter of urine was the same in both groups. The number of bacteria in the kidneys and the extent of renal damage was much greater in controls. Common enterobacteraceal antigen was not detected in the renal parenchyma of rats treated with acetohydroxamic acid. Treatment with acetohydroxamic acid thus prevented invasion of and damage to kidney tissue without reduction of urinary infection. Thus new evidence was found that the invasive properties of Proteus in the urinary tract are dependent on alkalinization of urine by urease and the resulting damage to the renal epithelium.
Proteus mirabilis is a causative agent of cystitis and pyelonephritis primarily in individuals with indwelling catheters or structural abnormalities of the urinary tract. The organism produces a variety of unique virulence factors that contribute to its pathogenicity and persistence in the human host.
Proteus mirabilis, a common cause of urinary tract infection (UTI), produces a number of different fimbriae including mannose-resistant Proteus-like fimbriae (MR/P). The precise role of different P. mirabilis fimbriae in ascending UTI has not yet been elucidated. In this study, a clinical isolate of P. mirabilis and an isogenic mutant unable to express MR/P were tested using different experimental approaches. They were tested for their ability to cause infection in an ascending co-infection model of UTI and in a haematogenous model in the mouse. In both models, the mutant was less able than the wild-type strain to colonise the lower and upper urinary tracts although infectivity was not abolished. In vitro adherence to uroepithelial cells was also assessed. Significant differences in adherence between both strains were observed at 1 h but not at 15 min post infection. We have also shown that a wild-type strain carries two copies of the mrpA gene. These data reinforce the importance of MR/P fimbriae in P. mirabilis UTI although other virulence factors may be necessary for efficient colonisation and development of infection.
Proteus mirabilis is a documented cause of urinary tract infection (UTI) in the complicated urinary tract. Urease-mediated urea hydrolysis is responsible for both virulence of the organism and the ability to cause urolithiasis. A urease-negative mutant of P. mirabilis is unable to initiate stone formation and colonizes the kidney at a significantly lower rate. The considerable pathology caused by P. mirabilis warrants the development of a vaccine. We have initiated the advancement of vaccine studies and have determined that the MR/P fimbria, a surface adhesin of P. mirabilis, is a promising vaccine candidate. Successful vaccination would be expected both to prevent colonization by P. mirabilis and urolithiasis.
Six-thousand-seven-hundred and forty-nine positive urine cultures from a large metropolitan Veterans Administration hospital were analyzed with respect to the organisms isolated and their antimicrobial sensitivities. A "predicted therapeutic efficacy index" was calculated for each antimicrobial agent tested. Gram-negative pathogens accounted for 84% of the infections. Proteus infections outnumbered those due to strains of Escherichia coli. Gentamycin was found to be the most effective antimicrobial agent.