Early Treatment of Coxsackievirus B3-Infected Animals With Soluble Coxsackievirus-Adenovirus Receptor Inhibits Development of Chronic Coxsackievirus B3 Cardiomyopathy.


Journal

Circulation. Heart failure
ISSN: 1941-3297
Titre abrégé: Circ Heart Fail
Pays: United States
ID NLM: 101479941

Informations de publication

Date de publication:
11 2019
Historique:
entrez: 14 11 2019
pubmed: 14 11 2019
medline: 17 6 2020
Statut: ppublish

Résumé

Coxsackie-B-viruses (CVB) are frequent causes of acute myocarditis and dilated cardiomyopathy, but an effective antiviral therapy is still not available. Previously, we and others have demonstrated that treatment with an engineered sCAR-Fc (soluble coxsackievirus-adenovirus receptor fused to the carboxyl-terminus of human IgG) efficiently neutralizes CVB3 and inhibits the development of cardiac dysfunction in mice with acute CVB3-induced myocarditis. In this study, we analyzed the potential of sCAR-Fc for treatment of chronic CVB3-induced myocarditis in an outbred NMRI mouse model. NMRI mice were infected with the CVB3 strain 31-1-93 and treated with a sCAR-Fc expressing adeno-associated virus 9 vector 1, 3, and 7 days after CVB3 infection. Chronic myocarditis was analyzed on day 28 after infection. Initial investigations showed that NMRI mice develop pronounced chronic myocarditis between day 18 and day 28 after infection with the CVB3 strain 31-1-93. Chronic cardiac infection was characterized by inflammation and fibrosis as well as persistence of viral genomes in the heart tissue and by cardiac dysfunction. Treatment of NMRI mice resulted in a distinct reduction of cardiac inflammation and fibrosis and almost complete elimination of virus RNA from the heart by day 28 after infection. Moreover, hemodynamic measurement revealed improved cardiac contractility and diastolic relaxation in treated mice compared with mice treated with a control vector (mean±SD; maximal pressure, 81.9±9.2 versus 69.4±8.6 mm Hg, Early therapeutic employment of sCAR-Fc, initiated at the beginning of the primary viremia, inhibits the development of chronic CVB3-induced myocarditis and improves the cardiac function to a level equivalent to that of uninfected animals.

Sections du résumé

BACKGROUND
Coxsackie-B-viruses (CVB) are frequent causes of acute myocarditis and dilated cardiomyopathy, but an effective antiviral therapy is still not available. Previously, we and others have demonstrated that treatment with an engineered sCAR-Fc (soluble coxsackievirus-adenovirus receptor fused to the carboxyl-terminus of human IgG) efficiently neutralizes CVB3 and inhibits the development of cardiac dysfunction in mice with acute CVB3-induced myocarditis. In this study, we analyzed the potential of sCAR-Fc for treatment of chronic CVB3-induced myocarditis in an outbred NMRI mouse model.
METHODS
NMRI mice were infected with the CVB3 strain 31-1-93 and treated with a sCAR-Fc expressing adeno-associated virus 9 vector 1, 3, and 7 days after CVB3 infection. Chronic myocarditis was analyzed on day 28 after infection.
RESULTS
Initial investigations showed that NMRI mice develop pronounced chronic myocarditis between day 18 and day 28 after infection with the CVB3 strain 31-1-93. Chronic cardiac infection was characterized by inflammation and fibrosis as well as persistence of viral genomes in the heart tissue and by cardiac dysfunction. Treatment of NMRI mice resulted in a distinct reduction of cardiac inflammation and fibrosis and almost complete elimination of virus RNA from the heart by day 28 after infection. Moreover, hemodynamic measurement revealed improved cardiac contractility and diastolic relaxation in treated mice compared with mice treated with a control vector (mean±SD; maximal pressure, 81.9±9.2 versus 69.4±8.6 mm Hg,
CONCLUSIONS
Early therapeutic employment of sCAR-Fc, initiated at the beginning of the primary viremia, inhibits the development of chronic CVB3-induced myocarditis and improves the cardiac function to a level equivalent to that of uninfected animals.

Identifiants

pubmed: 31718319
doi: 10.1161/CIRCHEARTFAILURE.119.005250
doi:

Substances chimiques

Antiviral Agents 0
Immunoconjugates 0
Immunoglobulin G 0
Receptors, Virus 0
Recombinant Fusion Proteins 0
adenovirus receptor 0

Types de publication

Journal Article Research Support, Non-U.S. Gov't

Langues

eng

Sous-ensembles de citation

IM

Pagination

e005250

Auteurs

Sandra Pinkert (S)

Charité - Universitätsmedizin Berlin, Corporate Member of Freie Universität Berlin, Humboldt-Universität zu Berlin, and Berlin Institute of Health (BIH), Institute of Biochemistry, Germany (S.P., A.B.).
Department of Applied Biochemistry, Institute of Biotechnology, Technische Universität Berlin, Germany (S.P., B.D., M.P., J.K., H.F.).

Babette Dieringer (B)

Department of Applied Biochemistry, Institute of Biotechnology, Technische Universität Berlin, Germany (S.P., B.D., M.P., J.K., H.F.).

Robert Klopfleisch (R)

Institute of Veterinary Pathology, Freie Universität Berlin, Germany (R.K.).

Konstantinos Savvatis (K)

Inherited Cardiovascular Diseases Unit, Barts Heart Centre, Barts Health NHS Trust, London, United Kingdom (K.S.).
William Harvey Research Institute, Barts and the London School of Medicine and Dentistry, Queen Mary University of London (K.S.).

Sophie Van Linthout (S)

Berlin-Brandenburg Center for Regenerative Therapies, Campus Virchow Klinikum, Germany (S.V.L., C.T.).

Markian Pryshliak (M)

Department of Applied Biochemistry, Institute of Biotechnology, Technische Universität Berlin, Germany (S.P., B.D., M.P., J.K., H.F.).

Carsten Tschöpe (C)

Berlin-Brandenburg Center for Regenerative Therapies, Campus Virchow Klinikum, Germany (S.V.L., C.T.).

Karin Klingel (K)

Cardiopathology, Institute for Pathology and Neuropathology, University Hospital Tuebingen, Germany (K.K.).

Jens Kurreck (J)

Department of Applied Biochemistry, Institute of Biotechnology, Technische Universität Berlin, Germany (S.P., B.D., M.P., J.K., H.F.).

Antje Beling (A)

DZHK (German Centre for Cardiovascular Research), Partner Site Berlin, Germany (A.B.).

Henry Fechner (H)

Department of Applied Biochemistry, Institute of Biotechnology, Technische Universität Berlin, Germany (S.P., B.D., M.P., J.K., H.F.).

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Classifications MeSH