Nonpreferential but Detrimental Accumulation of Macrophages With Clonal Hematopoiesis-Driver Mutations in Cardiovascular Tissues—Brief Report

Author:

Dederichs Tsai-Sang1ORCID,Yerdenova Assel1,Horstmann Hauke1ORCID,Vico Tamara Antonela1ORCID,Nübling Simone2,Peyronnet Rémi2,Pfeifer Dietmar3ORCID,von zur Muehlen Constantin1,Heidt Timo1,Wolf Dennis1ORCID,Czerny Martin4,Westermann Dirk1ORCID,Hilgendorf Ingo12ORCID

Affiliation:

1. Department of Cardiology and Angiology, University Heart Center Freiburg-Bad Krozingen and Faculty of Medicine, University of Freiburg, Germany (T.-S.D., A.Y., H.H., T.A.V., C.v.z.M., T.H., D. Wolf, D. Westermann, I.H.).

2. Institute for Experimental Cardiovascular Medicine, Cardio-Vascular Biobank, University Heart Center Freiburg-Bad Krozingen and Faculty of Medicine, University of Freiburg, Germany (S.N., R.P., I.H.).

3. Department of Internal Medicine I, Medical Center and Faculty of Medicine, University of Freiburg, Germany (D.P.).

4. Department of Cardiovascular Surgery, University Heart Center Freiburg-Bad Krozingen and Faculty of Medicine University of Freiburg, Germany (M.C.).

Abstract

BACKGROUND: Clonal hematopoiesis of indeterminate potential (CHIP) is an acquired genetic risk factor for both leukemia and cardiovascular disease. It results in proinflammatory myeloid cells in the bone marrow and blood; however, how these cells behave in the cardiovascular tissue remains unclear. Our study aimed at investigating whether CHIP-mutated macrophages accumulate preferentially in cardiovascular tissues and examining the transcriptome of tissue macrophages from DNMT3A (DNA methyltransferase 3 alpha) or TET2 (Tet methylcytosine dioxygenase 2) mutation carriers. METHODS: We recruited patients undergoing carotid endarterectomy or heart surgeries to screen for CHIP mutation carriers using targeted genomic sequencing. Myeloid and lymphoid cells were isolated from blood and cardiovascular tissue collected during surgeries using flow cytometry. DNA and RNA extracted from these sorted cells were subjected to variant allele frequency measurement using droplet digital polymerase chain reaction and transcriptomic profiling using bulk RNA sequencing, respectively. RESULTS: Using droplet digital polymerase chain reaction, we detected similar variant allele frequency of CHIP in monocytes from blood and macrophages from atheromas and heart tissues, even among heart macrophages with and without CCR2 (C-C motif chemokine receptor 2) expression. Bulk RNA sequencing revealed a proinflammatory gene profile of myeloid cells from DNMT3A or TET2 mutation carriers compared with those from noncarriers. CONCLUSIONS: Quantitatively, CHIP-mutated myeloid cells did not preferentially accumulate in cardiovascular tissues, but qualitatively, they expressed a more disease-prone phenotype.

Publisher

Ovid Technologies (Wolters Kluwer Health)

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