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Updated: May 27, 2026

Renal Ischaemia Reperfusion Injury: A Mouse Model of Injury and Regeneration
Published on: June 7, 2014
Macrophages mediate lung inflammation in a mouse model of ischemic acute kidney injury
Christopher Altmann1, Ana Andres-Hernando, Rachel H McMahan
1Mail Stop C281, 12700 East 19th Ave., Aurora, CO 80045, USA.
Abstract:
Serum IL-6 is increased in acute kidney injury (AKI) and inhibition of IL-6 reduces AKI-mediated lung inflammation. We hypothesized that circulating monocytes produce IL-6 and that alveolar macrophages mediate lung inflammation after AKI via chemokine (CXCL1) production. To investigate systemic and alveolar macrophages in lung injury after AKI, sham operation or 22 min of renal pedicle clamping (AKI) was performed in three experimental settings: 1) systemic macrophage depletion via diphtheria toxin (DT) injection to CD11b-DTR transgenic mice, 2) DT injection to wild-type mice, and 3) alveolar macrophage depletion via intratracheal (IT) liposome-encapsulated clodronate (LEC) administration to wild-type mice. In mice with AKI and systemic macrophage depletion (CD11b-DTR transgenic administered DT) vs. vehicle-treated AKI, blood monocytes and lung interstitial macrophages were reduced, renal function was similar, serum IL-6 was increased, lung inflammation was improved, lung CXCL1 was reduced, and lung capillary leak was increased. In wild-type mice with AKI administered DT vs. vehicle, serum IL-6 was increased. In mice with AKI and alveolar macrophage depletion (IT-LEC) vs. AKI with normal alveolar macrophage content, blood monocytes and lung interstitial macrophages were similar, alveolar macrophages were reduced, renal function was similar, lung inflammation was improved, lung CXCL1 was reduced, and lung capillary leak was increased. In conclusion, administration of DT in AKI is proinflammatory, limiting the use of the DTR-transgenic model to study systemic effects of AKI. Mice with AKI and either systemic mononuclear phagocyte depletion or alveolar macrophage depletion had reduced lung inflammation and lung CXCL1, but increased lung capillary leak; thus, mononuclear phagocytes mediate lung inflammation, but they protect against lung capillary leak after ischemic AKI. Since macrophage activation and chemokine production are key events in the development of acute lung injury (ALI), these data provide further evidence that AKI may cause ALI.
Insights
Acute kidney injury (AKI) triggers lung inflammation mediated by macrophages. Depleting these cells reduced inflammation but increased lung capillary leak, suggesting a protective role in ischemic AKI.
Area of Science:
- Immunology
- Renal Medicine
- Pulmonology
Background:
- Acute kidney injury (AKI) is linked to increased serum IL-6 and subsequent lung inflammation.
- Monocytes and alveolar macrophages are implicated in AKI-induced lung injury.
- The precise roles of systemic and alveolar macrophages in AKI-mediated lung inflammation require clarification.
Purpose of the Study:
- To investigate the roles of systemic and alveolar macrophages in lung injury following AKI.
- To determine if circulating monocytes produce IL-6 and if alveolar macrophages mediate lung inflammation via CXCL1.
Main Methods:
- Experimental AKI induced by renal pedicle clamping in mice.
- Systemic macrophage depletion using diphtheria toxin (DT) in CD11b-DTR transgenic mice.
- Alveolar macrophage depletion using intratracheal liposome-encapsulated clodronate (LEC).
Main Results:
- Depletion of systemic or alveolar macrophages reduced lung inflammation and CXCL1 levels in AKI mice.
- Renal function remained similar across experimental groups.
- Both systemic and alveolar macrophage depletion led to increased lung capillary leak.
Conclusions:
- Mononuclear phagocytes, including macrophages, mediate lung inflammation following ischemic AKI.
- These cells also play a protective role against lung capillary leak in this context.
- AKI can contribute to acute lung injury (ALI) through macrophage activation and chemokine production.
Related Concept Videos
Acute Kidney Injury II: Pathophysiology
Chronic Inflammation: Introduction
Acute Inflammation I: Inflammatory Response

