miR-21 promotes fibrosis in an acute cardiac allograft transplantation model
Cardiovascular Research

Abstract
Cardiac transplantation is the only curative therapy for end-stage heart failure. Fibrosis is one of the major causes for impaired function of cardiac allografts. MicroRNAs, a class of small non-coding RNAs, play a critical role in the development of cardiovascular disease, but the role of microRNAs in cardiac allograft failure is not well understood.
To uncover a role of microRNAs during cardiac graft fibrosis, we generated global microRNA profiles in allogeneic (BALB/c in C57BL/6N) and isogeneic (C57BL/6N in C57BL/6N) murine hearts after transplantation. miR-21 together with cardiac fibrosis was increased in cardiac allografts compared with isografts. Likewise, patients with cardiac rejection after heart transplantation showed increased cardiac miR-21 levels. miR-21 was induced upon treatment with IL-6 in a monocyte cell line. Overexpression of miR-21 in this monocyte cell line activated a fibrotic gene programme and promoted monocyte-to-fibrocyte transition together with activation of chemokine (C-C) motif ligand 2 (monocyte chemoattractant protein 1) via the phosphatase and tensin homologue/activator protein 1 regulatory axis.
Thus, inhibition of miR-21 is a novel strategy to target fibrosis development in cardiac allografts.
Contributors

Shashi Kumar Gupta
Author

Ryo Itagaki
Author

Xiang Zheng
Author

Sandor Batkai
Author

Sabrina Thum
Author

Fareed Ahmad
Author

Lucas N. Van Aelst
Author

Amit Sharma
Author

Maria-Teresa Piccoli
Author

Florian Weinberger
Author

Jan Fiedler
Author

Michael Heuser
Author

Stephane Heymans
Author

Christine S. Falk
Author

Reinhold Förster
Author

Sonja Schrepfer
Author

Thomas Thum
Author
Institute for Molecular and Translational Therapeutic Strategies (IMTTS) Hannover , Germany
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