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Multiple drug resistance in Mycobacterium avium: is the wall architecture responsible for exclusion of antimicrobial agents?

机译:鸟分枝杆菌中的多重耐药性:壁结构是否负责排除抗菌剂?

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摘要

Whole cells of Mycobacterium avium, characterized by their negative response in the nine biochemical tests used for mycobacterial identification in our laboratory, turned positive for nitrate reductase, Tween-80 hydrolysis, beta-glucosidase, acid phosphatase, alkaline phosphatase, penicillinase, and trehalase after their wall portion was removed to yield spheroplasts. This suggested that the negative results in most of the biochemical procedures were caused by the exclusion mechanism at the wall level. Preliminary transmission and scanning electron microscopic studies showed differences at wall level between laboratory-maintained opaque, dome-shaped (SmD) and host-recycled smooth, transparent (SmT) colony type variants of M. avium and suggested the presence of an outer regularly structured layer in SmT variants. Comparative ultrastructural studies utilizing different polysaccharide coloration methods confirmed the presence of an outer polysaccharide layer in SmT variants which was probably related to their enhanced pathogenicity for experimental animals and drug resistance as compared to that of SmD variants. These findings are discussed with respect to multiple drug resistance, virulence, and gene expression of M. avium.
机译:禽分枝杆菌的全细胞在我们实验室中用于分枝杆菌鉴定的九项生化测试中表现为阴性,其硝酸盐还原酶,Tween-80水解,β-葡萄糖苷酶,酸性磷酸酶,碱性磷酸酶,青霉素酶和海藻糖酶呈阳性去除它们的壁部分以产生原生质球。这表明在大多数生化程序中的负面结果是由壁水平的排斥机制引起的。初步的透射和扫描电子显微镜研究表明,实验室维持的不透明,圆顶形(SmD)和宿主回收的鸟形支原体光滑,透明(SmT)菌落类型变体之间在壁水平上存在差异,并表明存在规则的外部结构SmT变体中的层。利用不同的多糖着色方法进行的超微结构比较研究证实,SmT变异体中存在多糖外层,这可能与SmD变异体对实验动物的致病性增强和耐药性有关。这些发现是关于鸟分枝杆菌的多重耐药性,毒力和基因表达进行讨论的。

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