Title of article :
Effects of Chronicβ-Adrenergic Receptor Stimulation in Mice
Author/Authors :
Raymond K. Kudej، نويسنده , , Mitsunori Iwase، نويسنده , , Masami Uechi، نويسنده , , Dorothy E. Vatner، نويسنده , , Naoki Oka، نويسنده , , Yoshihiro Ishikawa، نويسنده , , Richard P. Shannon، نويسنده , , Sanford P. Bishop، نويسنده , , Stephen F. Vatner، نويسنده ,
Issue Information :
روزنامه با شماره پیاپی سال 1997
Abstract :
The goal of the present study was to determine the effects of chronicβ-adrenergic receptor stimulation with isoproterenol (ISO) on cardiac tissue, systemic trophic changes and onβ-adrenergic receptor desensitization in mice. Mice (n=36) received continuous ISO (30μg/g/day) via osmotic minipump for 13 days. Left ventricle (LV)/body weight (BW) ratio was increased by 27% in ISOvcontrol (CON) mice. The extent of cardiac hypertrophy induced by chronic ISO was offset in part by concomitant increases in body weight, which were greater in ISO than CON mice (22v8%), and occurred with increases in both muscle mass and brown fat to BW ratios. Histological analysis of mice revealed a three-fold increase in subendocardial interstitial connective tissue with no evidence of acute cellular necrosis or chronic inflammation. Acute i.v. ISO challenges induced dose-dependent increases in LV fractional shortening (FS) and ejection fraction (EF) using echocardiography (9 MHz), which were attenuated after chronic ISO, i.e. physiological desensitization was observed. Cellular mechanisms ofβ-adrenergic receptor desensitization included decreases inβ-adrenergic receptor density (−49%) and decreased basal (−45%) and ISO-stimulated (−61%) adenylyl cyclase activities. Lesser decreases in forskolin-stimulated adenylyl cyclase activity (−16%) and adenylyl cyclase mRNA levels for both type V (−17%) and type VI (−23%) isoforms were observed following chronic ISO. Thus, chronic ISO (30μg/g/day) induced cardiac hypertrophy without cellular necrosis, increased weight gain and clear physiological desensitization in mice, with more extensive biochemical mechanisms than expected from simple catecholamine-specific (homologous) desensitization.
Keywords :
isoproterenol , desensitization , b-Adrenergic receptor , mRNA , adenylyl cyclase , Mouse.
Journal title :
Journal of Molecular and Cellular Cardiology
Journal title :
Journal of Molecular and Cellular Cardiology