4.5 Article

Human Pleural Fluid and Human Serum Albumin Modulate the Behavior of a Hypervirulent and Multidrug-Resistant (MDR) Acinetobacter baumannii Representative Strain

期刊

PATHOGENS
卷 10, 期 4, 页码 -

出版社

MDPI
DOI: 10.3390/pathogens10040471

关键词

huma serum albumin; Acinetobacter baumannii; quorum sensing; iron; human fluids

资金

  1. NIH [SC3GM125556, R01AI100560, R01AI063517, R01AI072219, 2R15 AI047115, SC3GM132036, R15GM11747801]
  2. Cleveland Department of Veterans Affairs from the Biomedical Laboratory Research & Development Service of the VA Office of Research and Development [1I01BX001974, 1I01 BX002872]
  3. Geriatric Research Education and Clinical Center VISN 10
  4. CONICET

向作者/读者索取更多资源

Acinetobacter baumannii, a nosocomial pathogen with high antibiotic resistance, has been shown to adapt to different host environments, providing insights into potential novel antimicrobial strategies. Research on the gene expression profile of A. baumannii when exposed to human fluids revealed key pathways involved in the pathogen's response.
Acinetobacter baumannii is a nosocomial pathogen capable of causing serious infections associated with high rates of morbidity and mortality. Due to its antimicrobial drug resistance profile, A. baumannii is categorized as an urgent priority pathogen by the Centers for Disease Control and Prevention in the United States and a priority group 1 critical microorganism by the World Health Organization. Understanding how A. baumannii adapts to different host environments may provide critical insights into strategically targeting this pathogen with novel antimicrobial and biological therapeutics. Exposure to human fluids was previously shown to alter the gene expression profile of a highly drug-susceptible A. baumannii strain A118 leading to persistence and survival of this pathogen. Herein, we explore the impact of human pleural fluid (HPF) and human serum albumin (HSA) on the gene expression profile of a highly multi-drug-resistant strain of A. baumannii AB5075. Differential expression was observed for similar to 30 genes, whose products are involved in quorum sensing, quorum quenching, iron acquisition, fatty acid metabolism, biofilm formation, secretion systems, and type IV pilus formation. Phenotypic and further transcriptomic analysis using quantitative RT-PCR confirmed RNA-seq data and demonstrated a distinctive role of HSA as the molecule involved in A. baumannii's response.

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