Heme oxygenase byproducts variably influences myocardial and autonomic dysfunctions induced by the cyclosporine/diclofenac regimen in female rats

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Elsevier Masson SAS

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We recently reported that exposure to cyclosporine (CSA) plus diclofenac causes hypertension and impairs left ventricular (LV) and cardiac autonomic functions in female rats. Here, we tested the hypothesis that these effects could be mitigated by facilitated heme oxygenase (HO) signaling. Experiments were performed in female rats to assess the effects of 10-day treatment with CSA (25 mg/kg/day)/diclofenac (1 mg/kg/day) regimen on cardiovascular functions in absence and presence of maneuvers that upregulate HO or its enzymatic products. The CSA/diclofenac-induced hypertension and impairment in cardiac sympathovagal balance (i.e. reduced low-frequency/high-frequency spectral ratio) were blunted upon concurrent treatment with hemin (HO-1 inducer), tricarbonyldichlororuthenium (II) dimer (CORM-2, carbon monoxide-releasing molecule), or bilirubin. While none of the latter treatments affected the CSA/diclofenac-evoked decrease in isovolumic relaxation constant (Tau, a measure of diastolic function), the increased LV contractility (dP/dtmax) and attenuated reflex bradycardia in CSA/diclofenac-treated rats was abolished by bilirubin only. Paradoxically, the CSA/diclofenac-evoked attenuation in reflex tachycardia was improved in presence of hemin or CORM-2, but not bilirubin. The favorable hemin effects were abrogated after inhibition of HO (ZnPP) or nitric oxide synthase (NOS, L-NAME). These finding highlights NOS-dependent modulatory roles for HO and its enzymatic products in improving the worsened cardiovascular profile in CSA/diclofenac-treated female rats. © 2018 Elsevier Masson SAS

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Bilirubin, Blood pressure, Cyclosporine, Diclofenac, Heart rate variability, Heme oxygenase, Animals, Autonomic nervous system, Baroreflex, Carbon monoxide, Female, Heart rate, Heart ventricles, Heme oxygenase (decyclizing), Hemodynamics, Myocardium, Rats, wistar, Hemin, N(g) nitroarginine methyl ester, Nitric oxide synthase, Animal experiment, Animal model, Animal tissue, Article, Autonomic dysfunction, Bradycardia, Cardiovascular function, Clinical assessment, Controlled study, Heart disease, Heart left ventricle contractility, Heart left ventricle dp-dt, Heart muscle relaxation, Heart papillary muscle, Histopathology, Hypertension, Nonhuman, Priority journal, Rat, Tachycardia, Upregulation, Animal, Cardiac muscle, Drug effect, Enzymology, Heart ventricle, Metabolism, Pathology, Pathophysiology, Pressoreceptor reflex, Wistar rat

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