AMPK-driven Macrophage Responses Are Autophagy Dependent in Experimental Bronchopulmonary Dysplasia
Sourabh Soni1, Yujie Jiang1,2, Liang Zhang1,3
1Department of Pediatric Newborn Medicine, Brigham and Women's Hospital and Harvard Medical School, Boston, Massachusetts.
Abstract:
The pathogenesis of bronchopulmonary dysplasia (BPD) remains incompletely understood. Recent studies suggest insufficient AMP-activated protein kinase (AMPK) activation as a potential cause of impaired autophagy in rodent and nonhuman primate models of BPD. Impaired autophagy is associated with enhanced inflammatory signaling in alveolar macrophages (AMs) and increased severity of murine BPD induced by neonatal hyperoxia exposure. The goal of this study was to determine the role of autophagy and AMPK activation in macrophage responses in murine BPD. C57BL/6J mice were exposed to neonatal hyperoxia starting on postnatal day (P)1 and treated with the AMPK activator 5-aminoimidazole-4-carboxamide ribonucleotide (AICAR) between P3 and P6. Mice were euthanized on P7, and markers of AMPK activation and autophagy were assessed by immunoblotting. Alveolarization was assessed using radial alveolar counts, mean linear intercept measurements, and quantification of alveolar septal myofibroblasts. Relative mRNA expression of M1-like and M2-like genes was assessed in AMs isolated from BAL fluid from wild-type, LysMCre, and LysMCre mice after neonatal hyperoxia exposure. AICAR treatment resulted in AMPK activation and induction of autophagic activity in whole-lung and BAL cell lysates and attenuated hyperoxia-induced alveolar simplification in neonatal lungs. AICAR-treated control but not Beclin1-deficient AMs demonstrated significantly decreased expression of M1-like markers and significantly increased expression of M2-like markers. In conclusion, pharmacologic activation of AMPK by AICAR resulted in induction of autophagy and played a protective role, at least in part, through attenuation of proinflammatory signaling in AMs via autophagy-dependent mechanisms in a murine model of BPD.
Insights
AMPK activation via AICAR enhances autophagy and protects against bronchopulmonary dysplasia (BPD) by reducing lung inflammation in macrophages. This study highlights autophagy
Area of Science:
- Pulmonary Medicine
- Cellular Biology
- Neonatal Research
Background:
- Bronchopulmonary dysplasia (BPD) pathogenesis is not fully understood.
- Impaired autophagy and reduced AMP-activated protein kinase (AMPK) activation are implicated in BPD.
- Autophagy dysfunction in alveolar macrophages (AMs) exacerbates BPD severity.
Purpose of the Study:
- To investigate the roles of autophagy and AMPK activation in macrophage responses within a murine model of BPD.
- To determine if pharmacologic AMPK activation can mitigate hyperoxia-induced lung injury.
Main Methods:
- Neonatal C57BL/6J mice were exposed to hyperoxia and treated with AICAR, an AMPK activator.
- AMPK activation, autophagy markers, and alveolarization were assessed.
- Macrophage M1/M2 gene expression was analyzed in wild-type and Beclin1-deficient mice.
Main Results:
- AICAR treatment activated AMPK, induced autophagy, and attenuated hyperoxia-induced alveolar simplification.
- AICAR-treated AMs showed reduced M1-like and increased M2-like gene expression.
- Autophagy-dependent mechanisms were crucial for AICAR's protective effects.
Conclusions:
- Pharmacologic AMPK activation with AICAR induces autophagy and offers protection in a murine BPD model.
- AMPK activation attenuates lung inflammation in AMs through autophagy-dependent pathways.
- Targeting AMPK-autophagy pathways may represent a therapeutic strategy for BPD.
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