T cells modulate neutrophil-dependent acute renal failure during endotoxemia: critical role for CD28

Kai Singbartl1, Susanne Grosse Bockhorn, Alexander Zarbock

  • 1Klinik und Poliklinik für Anästhesiologie und operative Intensivmedizin, Universitätsklinikum Münster, Albert Schweitzer Strasse 33, 48129 Münster, Germany. singbartl@uni-muenster.de

Insights

T cells, through the CD28 pathway, influence kidney function and neutrophil recruitment during sepsis-induced acute renal failure (ARF). This modulation impacts neutrophil-specific chemokine expression, affecting kidney injury.

Area of Science:

  • Immunology
  • Nephrology
  • Pathophysiology

Background:

  • Sepsis is a primary cause of acute renal failure (ARF).
  • Both lymphocytes and neutrophils (PMN) play critical roles in sepsis pathogenesis.
  • The interaction mechanisms between lymphocytes and neutrophils in sepsis-related ARF require further investigation.

Purpose of the Study:

  • To elucidate the interaction mechanisms between T cells and neutrophils in LPS-induced ARF.
  • To investigate the role of the CD28 co-stimulatory pathway in T cell-mediated kidney injury during sepsis.

Main Methods:

  • A murine model of LPS-induced ARF was utilized.
  • Gene-deficient mice (CD28(-/-)) and wild-type (WT) mice were compared.
  • Neutrophil depletion and adoptive transfer of T cells were performed.

Main Results:

  • CD28(-/-) mice showed significantly reduced renal dysfunction and PMN influx compared to WT mice.
  • T cell transfer into CD28(-/-) mice abolished protective effects, restoring renal dysfunction and PMN recruitment.
  • CD28 deficiency attenuated the upregulation of PMN-specific chemokines (KC and GRO-1) in response to LPS.

Conclusions:

  • T cells, via the CD28 pathway, modulate kidney function and neutrophil recruitment in a PMN-dependent model of endotoxemic ARF.
  • The CD28 pathway influences neutrophil recruitment indirectly, likely through altered expression of chemokines.
  • Targeting the CD28 pathway may offer therapeutic potential for sepsis-induced ARF.

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