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Transplantation of Neonatal Mouse Cardiac Macrophages into Adult Mice
Published on: March 20, 2021
Microparticles from apoptotic RAW 264.7 macrophage cells carry tumour necrosis factor-α functionally active on
Edward Milbank1, Raffaella Soleti1, Emilie Martinez1
1Inserm UMR 1063, Stress Oxydant et Pathologies Métaboliques, Institut de Biologie en Santé, Université d'Angers, Angers, France.
Abstract:
After ischaemic injury and in patients with atherosclerosis, the pool of inflammatory macrophages is enlarged in the heart and in atherosclerotic plaques. Monocyte/macrophage-derived microparticles (MPs) are part of the pathological process of unstable atherosclerotic plaques. The present study focused on effects of MPs, produced by apoptotic murine RAW 264.7 macrophage cell line, in adult murine cardiomyocytes. Flow cytometry and western blot analysis showed that these MPs contained the soluble form of tumour necrosis factor alpha (TNF-α). Cardiomyocyte sarcomere shortening amplitudes and kinetics were reduced within 5 min of exposure to these MPs. Conversely, Ca(2+) transient amplitude and kinetics were not modified. The contractile effects of MPs were completely prevented after pretreatment with nitric oxide synthase, guanylate cyclase or TNF-α inhibitors as well as blocking TNF-α receptor 1 with neutralizing antibody. Microscopy showed that, after 1 h, MPs were clearly surrounding rod-shaped cardiomyocytes, and after 2 h they were internalized into cardiomyocytes undergoing apoptosis. After 4 h of treatment with MPs, cardiomyocytes expressed increased caspase-3, caspase-8, Bax and cytochrome C. Thus, MPs from apoptotic macrophages induced a negative inotropic effect and slowing of both contraction and relaxation, similar to that observed in the presence of TNF-α. The use of specific inhibitors strongly suggests that TNF-α receptors and the guanylate cyclase/cGMP/PKG pathway were involved in the functional responses to these MPs and that the mitochondrial intrinsic pathway was implicated in their proapoptotic effects. These data suggest that MPs issued from activated macrophages carrying TNF-α could contribute to propagation of inflammatory signals leading to myocardial infarction.
Insights
Microparticles from apoptotic macrophages, carrying tumor necrosis factor-alpha (TNF-α), impair heart cell contraction and promote apoptosis. These findings suggest a role for macrophage-derived microparticles in myocardial infarction progression.
Area of Science:
- Cardiovascular Biology
- Immunology
- Cellular Pathology
Background:
- Inflammatory macrophages and their microparticles (MPs) are implicated in atherosclerosis and ischemic injury.
- Macrophage-derived MPs contribute to the pathology of unstable atherosclerotic plaques.
Purpose of the Study:
- To investigate the effects of MPs from apoptotic macrophages on adult murine cardiomyocytes.
- To elucidate the mechanisms underlying MP-induced cardiomyocyte dysfunction and apoptosis.
Main Methods:
- Flow cytometry and Western blot to analyze MP contents (TNF-α).
- Assessment of cardiomyocyte contractility and Ca(2+) transients upon MP exposure.
- Inhibition studies using specific enzyme and receptor blockers.
- Microscopy to track MP internalization.
- Analysis of apoptotic markers (caspase-3, caspase-8, Bax, cytochrome C).
Main Results:
- MPs contained soluble tumor necrosis factor-alpha (TNF-α).
- MP exposure reduced cardiomyocyte sarcomere shortening but did not alter Ca(2+) transients.
- MP effects were blocked by TNF-α inhibitors, guanylate cyclase inhibitors, and TNF-α receptor 1 blockade.
- MPs were internalized by cardiomyocytes, leading to increased apoptosis markers.
- MP-induced effects mimicked those of TNF-α.
Conclusions:
- MPs from apoptotic macrophages induce negative inotropy and apoptosis in cardiomyocytes via TNF-α and the guanylate cyclase/cGMP/PKG pathway.
- The mitochondrial intrinsic pathway is involved in MP-induced apoptosis.
- Macrophage-derived MPs carrying TNF-α may propagate inflammatory signals contributing to myocardial infarction.
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