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IL-17 produced by neutrophils regulates IFN-γ–mediated neutrophil migration in mouse kidney ischemia-reperfusion injury
Li Li, … , Diane L. Rosin, Mark D. Okusa
Li Li, … , Diane L. Rosin, Mark D. Okusa
Published December 14, 2009
Citation Information: J Clin Invest. 2010;120(1):331-342. https://doi.org/10.1172/JCI38702.
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Research Article Nephrology

IL-17 produced by neutrophils regulates IFN-γ–mediated neutrophil migration in mouse kidney ischemia-reperfusion injury

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Abstract

The IL-23/IL-17 and IL-12/IFN-γ cytokine pathways have a role in chronic autoimmunity, which is considered mainly a dysfunction of adaptive immunity. The extent to which they contribute to innate immunity is, however, unknown. We used a mouse model of acute kidney ischemia-reperfusion injury (IRI) to test the hypothesis that early production of IL-23 and IL-12 following IRI activates downstream IL-17 and IFN-γ signaling pathways and promotes kidney inflammation. Deficiency in IL-23, IL-17A, or IL-17 receptor (IL-17R) and mAb neutralization of CXCR2, the p19 subunit of IL-23, or IL-17A attenuated neutrophil infiltration in acute kidney IRI in mice. We further demonstrate that IL-17A produced by GR-1+ neutrophils was critical for kidney IRI in mice. Activation of the IL-12/IFN-γ pathway and NKT cells by administering α-galactosylceramide–primed bone marrow–derived DCs increased IFN-γ production following moderate IRI in WT mice but did not exacerbate injury or enhance IFN-γ production in either Il17a–/– or Il17r–/– mice, which suggested that IL-17 signaling was proximal to IFN-γ signaling. This was confirmed by the finding that IFN-γ administration reversed the protection seen in Il17a–/– mice subjected to IRI, whereas IL-17A failed to reverse protection in Ifng–/– mice. These results demonstrate that the innate immune component of kidney IRI requires dual activation of the IL-12/IFN-γ and IL-23/IL-17 signaling pathways and that neutrophil production of IL-17A is upstream of IL-12/IFN-γ. These mechanisms might contribute to reperfusion injury in other organs.

Authors

Li Li, Liping Huang, Amy L. Vergis, Hong Ye, Amandeep Bajwa, Vivek Narayan, Robert M. Strieter, Diane L. Rosin, Mark D. Okusa

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Figure 2

Activation of the IL-23/IL-17A/IL-17R pathway following kidney IRI increases kidney expression of proinflammatory cytokines and chemokines that mediate neutrophil recruitment.

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Activation of the IL-23/IL-17A/IL-17R pathway following kidney IRI incre...
(A and B) Blocking CXCR2 attenuated kidney IRI inflammation. (A) Plasma creatinine levels in WT mice that received anti-CXCR2 goat serum or goat serum control 18 hours and 1 hour prior to sham or IRI. n = 4–6; **P < 0.01. (B) Kidney morphology evaluated by H&E staining. Arrowheads indicate tubular injury. Scale bar: 10 μm. (C and D) Kidney mRNA expression level (C) of IL-23/IL-17 downstream cytokines (Tfna and Il6) and neutrophil chemoattractant chemokines (Cxcl1 and Cxcl2) was measured by real-time PCR at different time points following kidney reperfusion (2, 4, 6, and 24 hours; n = 2–5. *P < 0.05; ***P < 0.001 compared with sham) and (D) in WT, p40–/–, p19–/–, Il17a–/–, and Il17r–/– mice after 6 hours of kidney reperfusion (n = 2–8; *P < 0.05 compared with KO mice). Values are mean ± SEM.

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