Levenson S M, Gruber D K, Gruber C, Watford A, Seifter E
J Trauma. 1981 May;21(5):364-71. doi: 10.1097/00005373-198105000-00005.
The pathogenicity of several strains of Pseudomonas aeruginosa for burned rats (3 degrees scald burns, 20% body surface) following topical application of the bacteria to the burn within 1 hour after burning was established. Following this, it was demonstrated that purposeful infection of such 3 degrees scald burns of rats by a strain of Ps. aeruginosa of low virulence (JB-77) protects the rats from the lethal effect of subsequent (48-hour) topical contamination of the burn by a highly virulent strain of Ps. aeruginosa (VA-134) (p less than 0.001). This finding was confirmed in a similar experiment beginning with germfree rats. When the challenge with the highly virulent Ps. aeruginosa strain was 24 hours (rather than 48 hours) after the burning and topical contamination of the burn with the low virulence strain of Ps. aeruginosa, there was little protection (p N.S.). When burned rats were given the low virulence strain of Ps. aeruginosa by gavage right after burning, there was not protection to subsequent (48 hours) challenge by topical application of the highly virulent strain of Ps. aeruginosa to the burn (11/12 vs 12/12 dying). Our finding that purposeful infection of a 3 degrees burn of rats (conventional and also germfree) by a strain of Ps. aeruginosa of low virulence protects from the lethal effect of subsequent (48-hour) topical contamination of the burn by a highly virulent strain of Ps. aeruginosa is due, we believe, to direct bacterial interference between the two strains of pseudomonas.
确定了几株铜绿假单胞菌在烧伤大鼠(3度烫伤,体表面积20%)烧伤后1小时内局部应用于烧伤部位时的致病性。在此之后,证明用低毒力的铜绿假单胞菌菌株(JB - 77)对大鼠的此类3度烫伤进行有目的的感染,可保护大鼠免受随后(48小时)高毒力铜绿假单胞菌菌株(VA - 134)局部污染烧伤的致死作用(p<0.001)。这一发现在用无菌大鼠开始的类似实验中得到了证实。当用高毒力铜绿假单胞菌菌株进行攻击是在烧伤以及用低毒力铜绿假单胞菌菌株局部污染烧伤后24小时(而非48小时)时,几乎没有保护作用(p无统计学意义)。当烧伤大鼠在烧伤后立即经口给予低毒力铜绿假单胞菌菌株时,对随后(48小时)通过将高毒力铜绿假单胞菌菌株局部应用于烧伤部位进行的攻击没有保护作用(死亡数为11/12 vs 12/12)。我们的发现,即用低毒力的铜绿假单胞菌菌株对大鼠(常规大鼠和无菌大鼠)的3度烧伤进行有目的的感染可保护其免受随后(48小时)高毒力铜绿假单胞菌菌株局部污染烧伤的致死作用,我们认为这是由于两种假单胞菌菌株之间的直接细菌干扰。