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首页> 外文期刊>Scientific reports. >Augmented antibiotic resistance associated with cadmium induced alterations in Salmonella enterica serovar Typhi
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Augmented antibiotic resistance associated with cadmium induced alterations in Salmonella enterica serovar Typhi

机译:与镉诱导的沙门氏菌肠道塞洛维拉氏茎相关的增强抗生素抗性

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摘要

In view of the reports on co-selection of metal and antibiotic resistance, recently we have reported that increased cadmium accumulation in Salmonella Typhi Ty2 leads to increased antibiotic resistance. In continuation, the present study was carried to substantiate this association in clinical isolates. Interestingly, the levels of cadmium were found to be more in the clinical isolates which co-related with their antibiotic sensitivity/resistance pattern. On cadmium accumulation, antibiotic(s) sensitive isolates were rendered resistant and the resistant isolates were rendered more resistant as per their minimum inhibitory concentration(s). Further, after subjecting the pathogen to cadmium accumulation, alterations occurring in the cells were assessed. Transgenerational cadmium exposure led to changes in growth response, morphology, proteome, elevated antioxidants other than SOD, increased biofilm formation, decreased intracellular macrophage killing coupled with upregulation of genes encoding metallothionein and metal transporters. Thus, these results indicate that cadmium, if acquired from the environment, being non-degradable can exert a long-lasting selective pressure on Salmonella in the host which may display antibiotic resistance later on, as a result of co-selection. Therefore, appropriate strategies need to be developed to inhibit such an enduring pressure of heavy metals, as these represent one of the factors for the emerging antibiotic resistance in pathogens.
机译:鉴于有关金属和抗生素抗性的共同选择的报告,最近我们报道称Salmonella Typhi Ty2中的镉积累导致增加抗生素抗性。在延续中,进行本研究以证实在临床分离物中的这种关联。有趣的是,发现镉的水平在与其抗生素敏感性/抗性模式共同相关的临床分离物中更多。在镉积累中,抗生素(S)敏感分离株耐抗性,并且由于其最小抑制浓度而导致抗性分离物更具抗性。此外,在使病原体对镉积累进行后,评估细胞中发生的改变。转基因的镉暴露导致生长反应的变化,SOD以外的抗氧化剂的变化,增加生物膜形成,降低细胞内巨噬细胞杀死,与编码金属硫蛋白和金属转运蛋白的基因的上调相结合。因此,这些结果表明,如果从环境中获取的镉,不可降解可以对宿主中的沙门氏菌产生长持久的选择性压力,这可能在同次选择后显示抗生素阻力。因此,需要开发适当的策略以抑制重金属的这种持久压力,因为这些是在病原体中出现抗生素抗性的一个因素。

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