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首页> 外文期刊>PLoS Biology >Cecum Lymph Node Dendritic Cells Harbor Slow-Growing Bacteria Phenotypically Tolerant to Antibiotic Treatment
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Cecum Lymph Node Dendritic Cells Harbor Slow-Growing Bacteria Phenotypically Tolerant to Antibiotic Treatment

机译:盲肠淋巴结树突树突状细胞患慢生长的细菌表型耐抗生素治疗

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摘要

In vivo, antibiotics are often much less efficient than ex vivo and relapses can occur. The reasons for poor in vivo activity are still not completely understood. We have studied the fluoroquinolone antibiotic ciprofloxacin in an animal model for complicated Salmonellosis. High-dose ciprofloxacin treatment efficiently reduced pathogen loads in feces and most organs. However, the cecum draining lymph node (cLN), the gut tissue, and the spleen retained surviving bacteria. In cLN, approximately 10%–20% of the bacteria remained viable. These phenotypically tolerant bacteria lodged mostly within CD103+CX3CR1?CD11c+ dendritic cells, remained genetically susceptible to ciprofloxacin, were sufficient to reinitiate infection after the end of the therapy, and displayed an extremely slow growth rate, as shown by mathematical analysis of infections with mixed inocula and segregative plasmid experiments. The slow growth was sufficient to explain recalcitrance to antibiotics treatment. Therefore, slow-growing antibiotic-tolerant bacteria lodged within dendritic cells can explain poor in vivo antibiotic activity and relapse. Administration of LPS or CpG, known elicitors of innate immune defense, reduced the loads of tolerant bacteria. Thus, manipulating innate immunity may augment the in vivo activity of antibiotics.
机译:体内,抗生素通常比离体效率低得多,并且可以发生复发。体内活动较差的原因仍然没有完全理解。我们已经在动物模型中研究了氟代喹啉酮抗生素环丙氟氟苯甲酯,用于复杂的沙门氏菌。高剂量环丙沙星治疗有效地降低了粪便和大多数器官的病原体载荷。然而,盲肠淋巴结(Cln),肠道组织和脾脏保留存活细菌。在CLN中,大约10%-20%的细菌保持可行。这些表型耐受性细菌主要在CD103 + CX3CR1?CD11C +树突细胞内遗留遗传易受环丙沙星的遗传易感,足以在治疗结束后重新调节感染,并显示出极高的生长速率,如混合感染的数学分析所示接种物和分离质粒实验。缓慢的生长足以解释抗生素治疗。因此,在树突细胞内孵化的缓慢抗生素耐受性细胞可以解释体内抗生素活性和复发中的差。施用LPS或CPG,已知的先天免疫防御eLitorors,降低了耐受细菌的负荷。因此,操纵先天免疫可能增加抗生素的体内活性。

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