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Neutrophil-Macrophage Imbalance Drives the Development of Renal Scarring during Experimental Pyelonephritis
Juan de Dios Ruiz-Rosado1, Frank Robledo-Avila1, Hanna Cortado2
1Center for Microbial Pathogenesis, Abigail Wexner Research Institute at Nationwide Children's Hospital, Columbus, Ohio.
Insights
Neutrophil-macrophage imbalance exacerbates kidney damage in acute pyelonephritis. Targeting macrophage responses may prevent renal scarring from urinary tract infections in children.
Area of Science:
- Nephrology
- Immunology
- Microbiology
Background:
- Acute pyelonephritis, a kidney infection ascending from the bladder, is a growing concern in children due to risks of renal scarring and irreversible kidney damage.
- The precise cellular mechanisms driving acute pyelonephritis-induced renal scarring are not yet fully understood.
Purpose of the Study:
- To investigate the roles of neutrophils and monocytes in resolving acute pyelonephritis and preventing kidney fibrosis.
- To elucidate the cellular mechanisms underlying renal scarring in a preclinical model of uropathogenic *Escherichia coli* infection.
Main Methods:
- Utilized a preclinical model of *E. coli*-induced acute pyelonephritis.
- Employed cell-specific monoclonal antibodies to deplete neutrophils and/or monocytes.
- Assessed bacterial spread and immune cell dynamics using biophotonic imaging and flow cytometry.
- Evaluated inflammation and renal scarring via quantitative RT-PCR and histopathology.
Main Results:
- Neutrophils were crucial for controlling bacterial spread, aligning with their known protective role in urinary tract infections (UTIs).
- Monocyte-derived macrophages initiated a potent but ultimately ineffective inflammatory response against the infection.
- Experimental neutropenia led to increased monocytes, heightened kidney inflammation, and exacerbated macrophage-driven responses, promoting renal scarring and impaired kidney function (elevated creatinine, BUN, potassium).
Conclusions:
- Neutrophil-macrophage imbalance heightens susceptibility to acute pyelonephritis and permanent renal damage.
- Dysregulated macrophage responses represent a potential therapeutic target for preventing renal scarring in acute pyelonephritis.
Background:
In children, the acute pyelonephritis that can result from urinary tract infections (UTIs), which commonly ascend from the bladder to the kidney, is a growing concern because it poses a risk of renal scarring and irreversible loss of kidney function. To date, the cellular mechanisms underlying acute pyelonephritis-driven renal scarring remain unknown.
Methods:
We used a preclinical model of uropathogenic Escherichia coli-induced acute pyelonephritis to determine the contribution of neutrophils and monocytes to resolution of the condition and the subsequent development of kidney fibrosis. We used cell-specific monoclonal antibodies to eliminate neutrophils, monocytes, or both. Bacterial ascent and the cell dynamics of phagocytic cells were assessed by biophotonic imaging and flow cytometry, respectively. We used quantitative RT-PCR and histopathologic analyses to evaluate inflammation and renal scarring.
Results:
We found that neutrophils are critical to control bacterial ascent, which is in line with previous studies suggesting a protective role for neutrophils during a UTI, whereas monocyte-derived macrophages orchestrate a strong, but ineffective, inflammatory response against uropathogenic, E. coli-induced, acute pyelonephritis. Experimental neutropenia during acute pyelonephritis resulted in a compensatory increase in the number of monocytes and heightened macrophage-dependent inflammation in the kidney. Exacerbated macrophage-mediated inflammatory responses promoted renal scarring and compromised renal function, as indicated by elevated serum creatinine, BUN, and potassium.
Conclusions:
These findings reveal a previously unappreciated outcome for neutrophil-macrophage imbalance in promoting host susceptibility to acute pyelonephritis and the development of permanent renal damage. This suggests targeting dysregulated macrophage responses might be a therapeutic tool to prevent renal scarring during acute pyelonephritis.
Related Concept Videos
Acute Pyelonephritis I: Introduction
Acute Pyelonephritis II: Diagnostic Studies and Management
Acute Kidney Injury II: Pathophysiology
Nephrotic Syndrome I : Introduction
Urinary Tract Infection II: Pathophysiology

