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Isolation, Purification and Labeling of Mouse Bone Marrow Neutrophils for Functional Studies and Adoptive Transfer Experiments
Published on: July 10, 2013
Androgen exposure impairs neutrophil maturation and function within the infected kidney
Teri N Hreha1, Christina A Collins1, Elisabeth B Cole1
1Department of Pediatrics, Washington University School of Medicine, St. Louis, Missouri, USA.
Abstract:
Urinary tract infections (UTIs) in men are uncommon yet carry an increased risk for severe pyelonephritis and other complications. In models of Escherichia coli UTI, C3H/HeN mice develop high-titer pyelonephritis (most with renal abscesses) in a testosterone-dependent manner, but the mechanisms underlying this phenotype are unknown. Here, using female mouse models, we show that androgen exposure impairs neutrophil maturation in the upper and lower urinary tract, compounded by a reduction of neutrophil function within the infected kidney, enabling persistent high-titer infection and promoting abscess formation. Following intravesical inoculation with uropathogenic E. coli (UPEC), kidneys of androgen-exposed C3H mice showed delayed local pro-inflammatory cytokine responses while robustly recruiting neutrophils. These were enriched for an end-organ-specific population of aged but immature neutrophils (CD49d+, CD101-). Compared to their mature counterparts, these aged immature kidney neutrophils exhibited reduced function in vitro, including impaired degranulation and diminished phagocytic activity, while splenic, bone marrow, and bladder neutrophils did not display these alterations. Furthermore, aged immature neutrophils manifested little phagocytic activity within intratubular UPEC communities in vivo. Experiments with B6 conditional androgen receptor (AR)-deficient mice indicated rescue of the maturation defect when AR was deleted in myeloid cells. We conclude that the recognized enhancement of UTI severity by androgens is attributable, at least in part, to local impairment of neutrophil maturation in the urinary tract (largely via cell-intrinsic AR signaling) and a kidney-specific reduction in neutrophil antimicrobial capacity.IMPORTANCEAlthough urinary tract infections (UTIs) predominantly occur in women, male UTIs carry an increased risk of morbidity and mortality. Pyelonephritis in androgen-exposed mice features robust neutrophil recruitment and abscess formation, while bacterial load remains consistently high. Here, we demonstrate that during UTI, neutrophils infiltrating the urinary tract of androgen-exposed mice exhibit reduced maturation, and those that have infiltrated the kidney have reduced phagocytic and degranulation functions, limiting their ability to effectively control infection. This work helps to elucidate mechanisms by which androgens enhance UTI susceptibility and severity, illuminating why male patients may be predisposed to severe outcomes of pyelonephritis.
Insights
Androgen exposure impairs neutrophil maturation and function in the urinary tract, increasing susceptibility to severe urinary tract infections (UTIs) and kidney damage in mice. This explains why men may experience worse UTI outcomes.
Area of Science:
- Immunology
- Microbiology
- Urology
Background:
- Urinary tract infections (UTIs) are less common in men but lead to more severe outcomes like pyelonephritis.
- Androgens, like testosterone, are known to influence UTI severity, but the underlying mechanisms are unclear.
- Previous studies show testosterone-dependent pyelonephritis in C3H/HeN mice, with high bacterial titers and abscesses.
Purpose of the Study:
- To investigate how androgens affect neutrophil function and maturation during urinary tract infections (UTIs).
- To elucidate the mechanisms by which androgens increase susceptibility to severe pyelonephritis and kidney abscesses.
- To identify the role of androgen receptor signaling in myeloid cells during UTI pathogenesis.
Main Methods:
- Female C3H mice were exposed to androgens and infected with uropathogenic Escherichia coli (UPEC).
- Neutrophil maturation and function were assessed in the kidneys, spleen, bone marrow, and bladder using flow cytometry and in vitro assays.
- Conditional androgen receptor (AR)-deficient mice (B6 background) with myeloid cell-specific AR deletion were used to assess AR signaling.
- Pro-inflammatory cytokine responses and bacterial loads were measured in infected kidneys.
Main Results:
- Androgen exposure led to delayed local inflammatory responses and robust neutrophil recruitment in infected kidneys.
- Kidney neutrophils in androgen-exposed mice were aged, immature (CD49d+, CD101-), and exhibited reduced phagocytic and degranulation functions.
- Neutrophil dysfunction was specific to the kidney, with splenic, bone marrow, and bladder neutrophils unaffected.
- Deletion of the androgen receptor in myeloid cells rescued neutrophil maturation defects.
- Androgen-exposed mice showed persistent high-titer infections and increased abscess formation.
Conclusions:
- Androgens impair neutrophil maturation and function in the urinary tract, particularly in the kidney, during UPEC infection.
- This local impairment of neutrophil antimicrobial capacity, mediated by cell-intrinsic AR signaling, contributes to increased UTI severity and pyelonephritis in androgen-exposed individuals.
- The findings highlight a key mechanism explaining the higher risk of severe UTIs and complications in men.
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