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首页> 外文期刊>Journal of Clinical Microbiology >Enzymatically active Peptostreptococcus magnus: association with site of infection.
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Enzymatically active Peptostreptococcus magnus: association with site of infection.

机译:具有酶活性的Peptostreptococcus magnus:与感染部位有关。

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Fifty-four strains of Peptostreptococcus magnus (11 were recovered from abdominal infections, 18 were from nonpuerperal breast abscesses, and 21 were from diabetic foot infections; the type strain and three other strains were from the American Type Culture Collection, Rockville, Md.) and the type strain of Peptostreptococcus micros were tested for their ability to produce various enzymes, including catalase, hippurate hydrolase, serine dehydratase, threonine dehydratase, collagenase, gelatinase, alkaline phosphatase, and esterase C4. The data were analyzed by cluster analysis. The results showed that all but one strain could be assigned to either of two distinct, valid clusters. The first cluster of 11 strains was composed of strains that were relatively inactive, having produced one or two of the eight strain-dependent enzymes. The second was a large cluster of strains (n = 43) that were considerably more active, all having produced at least three enzymes; the vast majority of strains (89%) produced four or more enzymes. The unclustered strain produced one enzyme that was different from that produced by the strains in the first cluster. The chi 2 test of homogeneity applied to the clustering solution indicated that greater enzyme activity was significantly associated with the site of infection (P less than 0.001). The more enzymatically active P. magnus strains were recovered significantly more often from nonpuerperal breast abscesses and diabetic foot infections than they were from abdominal infections. These results may provide insight into the nature of certain polymicrobial soft tissue infections and suggest that (i) P. magnus may participate more in nonpuerperal breast and diabetic foot infections than in abdominal infections and that (ii) peptostreptococcal production of proteolytic enzymes may have an important adjunctive effect on the pathogenesis of certain soft tissue infections.
机译:五十四种Peptostreptococcus magnus菌株(从腹部感染中检出11株,从非产褥期乳房脓肿中检出18株,从糖尿病足感染中检出21株;该类型株和其他三株来自美国典型培养物保藏中心,马里兰州罗克维尔)。测试了肽链球菌微球菌的类型菌株产生多种酶的能力,包括过氧化氢酶,马尿酸盐水解酶,丝氨酸脱水酶,苏氨酸脱水酶,胶原酶,明胶酶,碱性磷酸酶和酯酶C4。通过聚类分析对数据进行分析。结果表明,除了一个菌株外,所有菌株都可以分配给两个不同的有效簇中的一个。由11个菌株组成的第一簇由相对失活的菌株组成,这些菌株产生了8种依赖菌株的酶中的一种或两种。第二个是一大群菌株(n = 43),它们的活性更高,都产生了至少三种酶。绝大多数菌株(89%)产生四种或更多的酶。未聚簇的菌株产生的酶与第一个簇中的菌株产生的酶不同。对聚类溶液进行的chi 2均质性测试表明,较高的酶活性与感染部位显着相关(P小于0.001)。从非产褥期乳房脓肿和糖尿病足感染中,比从腹部感染中回收更多具有酶促活性的大孢假单胞菌菌株的频率更高。这些结果可提供对某些微生物软组织感染性质的洞察力,并表明(i)巨大食单胞菌比非腹部感染更可能参与非产褥期乳房和糖尿病足感染,并且(ii)肽链球菌产生的蛋白水解酶可能具有对某些软组织感染的发病机理具有重要的辅助作用。

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