Linagliptin Suppresses Electrical and Structural Remodeling in the Isoproterenol Induced Myocardial Injury Model.


Journal

International heart journal
ISSN: 1349-3299
Titre abrégé: Int Heart J
Pays: Japan
ID NLM: 101244240

Informations de publication

Date de publication:
20 Mar 2019
Historique:
pubmed: 13 2 2019
medline: 29 3 2019
entrez: 13 2 2019
Statut: ppublish

Résumé

The effect of DPP-4 inhibitor on the electrical and structural remodeling in myocardial injury has not been evaluated. We hypothesized that linagliptin, DPP-4 inhibitor, suppresses myocardial remodeling in the isoproterenol (ISP)-induced myocardial injury model.Sprague-Dawley rats were assigned to 3 groups: 1) sham group, 2) ISP group (subcutaneous ISP injection of 70 mg/kg), and 3) ISP + linagliptin (ISP + Lin) (5 mg/kg/day, p.o.) group. Serum was sampled on day 1 (acute phase) and day 7 (sub-acute phase) to evaluate derivatives of reactive oxidative metabolites (d-ROMs). The electrophysiological study was performed in sub-acute phase for the evaluation of the ventricular effective refractory period (VERP) and monophasic action potential duration (MAPD). The VERP and MAPD were markedly prolonged in the ISP group in comparison with the sham (MAPD20: 14 ± 6 versus 11 ± 3 ms, MAPD90: 57 ± 8 versus 44 ± 7 ms, VERP: 74 ± 22 versus 38 ± 10 ms, P < 0.05). In contrast in the ISP + Lin group, such prolongations were suppressed, and the parameters were shorter than the ISP group (MAPD20: 9 ± 2 ms, MAPD90: 35 ± 6 ms, VERP: 52 ± 13 ms, P < 0.05). ISP treatment induced myocardial injury. The injured area was reduced in the ISP + Lin group in comparison with the ISP group (P < 0.05). Serum d-ROMs level in acute phase was higher in ISP group than the other 2 groups (sham: 214 ± 55 versus ISP: 404 ± 45 versus ISP + Lin: 337 ± 20 U.CARR, P < 0.05).Linagliptin suppressed structural and electrical changes, possibly through the antioxidative effect, in this myocardial injury model.

Identifiants

pubmed: 30745531
doi: 10.1536/ihj.18-226
doi:

Substances chimiques

Antioxidants 0
Cardiotonic Agents 0
Dipeptidyl-Peptidase IV Inhibitors 0
Linagliptin 3X29ZEJ4R2
DPP4 protein, rat EC 3.4.14.5
Dipeptidyl Peptidase 4 EC 3.4.14.5
Isoproterenol L628TT009W

Types de publication

Journal Article

Langues

eng

Sous-ensembles de citation

IM

Pagination

411-418

Auteurs

Naruya Ishizue (N)

Department of Cardiovascular Medicine, Kitasato University School of Medicine.

Shinichi Niwano (S)

Department of Cardiovascular Medicine, Kitasato University School of Medicine.

Hiroe Niwano (H)

Department of Cardiovascular Medicine, Kitasato University School of Medicine.

Jun Oikawa (J)

Department of Cardiovascular Medicine, Kitasato University School of Medicine.

Hironori Nakamura (H)

Department of Cardiovascular Medicine, Kitasato University School of Medicine.

Takehiro Hashikata (T)

Department of Cardiovascular Medicine, Kitasato University School of Medicine.

Tazuru Igarashi (T)

Department of Cardiovascular Medicine, Kitasato University School of Medicine.

Tamami Fujiishi (T)

Department of Cardiovascular Medicine, Kitasato University School of Medicine.

Tomoharu Yoshizawa (T)

Department of Cardiovascular Medicine, Kitasato University School of Medicine.

Jun Kishihara (J)

Department of Cardiovascular Medicine, Kitasato University School of Medicine.

Akira Satoh (A)

Department of Cardiovascular Medicine, Kitasato University School of Medicine.

Hidehira Fukaya (H)

Department of Cardiovascular Medicine, Kitasato University School of Medicine.

Junya Ako (J)

Department of Cardiovascular Medicine, Kitasato University School of Medicine.

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Classifications MeSH