Triclosan Enhances the Clearing of Pathogenic Intracellular Salmonella or Candida albicans but Disturbs the Intestinal Microbiota through mTOR-Independent Autophagy

Triclosan (TCS) is a broad-spectrum antimicrobial agent, whose well-known antibacterial mechanism is inhibiting lipid synthesis. Autophagy, an innate immune response, is an intracellular process that delivers the cargo including pathogens to lysosomes for degradation. In this study, we first demonst...

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Veröffentlicht in:Frontiers in cellular and infection microbiology 2018-02, Vol.8, p.49-49
Hauptverfasser: Wang, Chao, Yu, Zhongyang, Shi, Xiaochen, Tang, Xudong, Wang, Yang, Wang, Xueyan, An, Yanan, Li, Shulin, Li, Yan, Wang, Xuefei, Luan, Wenjing, Chen, Zhaobin, Liu, Mingyuan, Yu, Lu
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Sprache:eng
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Zusammenfassung:Triclosan (TCS) is a broad-spectrum antimicrobial agent, whose well-known antibacterial mechanism is inhibiting lipid synthesis. Autophagy, an innate immune response, is an intracellular process that delivers the cargo including pathogens to lysosomes for degradation. In this study, we first demonstrated that TCS induced autophagy in a dose-dependent manner in non-phagocytic cells (HeLa) and in macrophages (Raw264.7) and . The western blot results also revealed that TCS induced autophagy via the AMPK/ULK1 and JNK/ERK/p38 pathways independent of mTOR. The immunofluorescence results indicated that TCS up-regulated the expression of the ubiquitin receptors NDP52 and p62 and strengthened the co-localization of these receptors with Typhimurium ( . typhimurium) or ( ) in infected MΦ cells. In addition, sub-lethal concentrations of TCS enhanced the clearing of the pathogens . typhimurium or in infected MΦ and in corresponding mouse infection models . Specifically, we found that a sub-inhibitory concentration of TCS induced autophagy, leading to an imbalance of the intestinal microflora in mice through the analysis of 16s rRNA Sequencing. Together, these results demonstrated that TCS induced autophagy, which enhanced the killing against pathogenic . typhimurium or within mammal cells but broke the balance of the intestinal microflora.
ISSN:2235-2988
2235-2988
DOI:10.3389/fcimb.2018.00049