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Basophils balance healing after myocardial infarction via IL-4/IL-13
Florian Sicklinger, Ingmar Sören Meyer, Xue Li, Daniel Radtke, Severin Dicks, Moritz P. Kornadt, Christina Mertens, Julia K. Meier, Kory J. Lavine, Yunhang Zhang, Tim Christian Kuhn, Tobias Terzer, Jyoti Patel, Melanie Boerries, Gabriele Schramm, Norbert Frey, Hugo A. Katus, David Voehringer, Florian Leuschner
Florian Sicklinger, Ingmar Sören Meyer, Xue Li, Daniel Radtke, Severin Dicks, Moritz P. Kornadt, Christina Mertens, Julia K. Meier, Kory J. Lavine, Yunhang Zhang, Tim Christian Kuhn, Tobias Terzer, Jyoti Patel, Melanie Boerries, Gabriele Schramm, Norbert Frey, Hugo A. Katus, David Voehringer, Florian Leuschner
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Research Article Cardiology

Basophils balance healing after myocardial infarction via IL-4/IL-13

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Abstract

The inflammatory response after myocardial infarction (MI) is a precisely regulated process that greatly affects subsequent remodeling. Here, we show that basophil granulocytes infiltrated infarcted murine hearts, with a peak occurring between days 3 and 7. Antibody-mediated and genetic depletion of basophils deteriorated cardiac function and resulted in enhanced scar thinning after MI. Mechanistically, we found that basophil depletion was associated with a shift from reparative Ly6Clo macrophages toward increased numbers of inflammatory Ly6Chi monocytes in the infarcted myocardium. Restoration of basophils in basophil-deficient mice by adoptive transfer reversed this proinflammatory phenotype. Cellular alterations in the absence of basophils were accompanied by lower cardiac levels of IL-4 and IL-13, two major cytokines secreted by basophils. Mice with basophil-specific IL-4/IL-13 deficiency exhibited a similarly altered myeloid response with an increased fraction of Ly6Chi monocytes and aggravated cardiac function after MI. In contrast, IL-4 induction in basophils via administration of the glycoprotein IPSE/α-1 led to improved post-MI healing. These results in mice were corroborated by the finding that initially low counts of blood basophils in patients with acute MI were associated with a worse cardiac outcome after 1 year, characterized by a larger scar size. In conclusion, we show that basophils promoted tissue repair after MI by increasing cardiac IL-4 and IL-13 levels.

Authors

Florian Sicklinger, Ingmar Sören Meyer, Xue Li, Daniel Radtke, Severin Dicks, Moritz P. Kornadt, Christina Mertens, Julia K. Meier, Kory J. Lavine, Yunhang Zhang, Tim Christian Kuhn, Tobias Terzer, Jyoti Patel, Melanie Boerries, Gabriele Schramm, Norbert Frey, Hugo A. Katus, David Voehringer, Florian Leuschner

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Figure 6

Basophil-specific IL-4/IL-13 depletion alters healing after MI.

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Basophil-specific IL-4/IL-13 depletion alters healing after MI.
(A and B...
(A and B) Percentage of cardiac Ly6Chi monocytes and Ly6Clo macrophages (among the percentage of total Lin–CD11b+ cells) 4 days after MI (n = 8–9). Data show the mean ± SD. P values were determined by 2-tailed Student’s t test. (C) Representative flow cytometric plots of cells from infarct tissue 4 days after MI in BasoWT and Baso4-13KO mice gated on monocytes/macrophages. (D and E) Echocardiographic evaluation of baseline EF and plasma cTnT levels 24 hours after LAD ligation in BasoWT and Baso4-13KO mice. (F) Representative echocardiographic images of mice from the indicated groups on day 1 and day 28 after MI. (G–I) Echocardiographic results for BasoWT and Baso4-13KO mice 4 weeks after MI (n = 6–8). Data show the mean ± SD. P values were determined by 2-tailed Student’s t test. (J) Quantification of LV scar thickness based on histological evaluation 4 weeks after MI (n = 6–8). Data show the mean ± SD. P value was determined by 2-tailed Student’s t test. (K) Representative images of histological sections stained with Masson’s trichrome 4 weeks after MI. Scale bars: 500 μm.

Copyright © 2026 American Society for Clinical Investigation
ISSN: 0021-9738 (print), 1558-8238 (online)

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