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Biomedical subjects

R J Laffan

Publications and source records attributed to R J Laffan.

9 recordsLinked to original sources

Effects of chronic treatment with captopril (SQ 14,225), an orally active inhibitor of angiotensin I-converting enzyme, in spontaneously hypertensive rats.

The effects of hydralazine (3 mg/kg) and the angiotensin I-converting enzyme (ACE) inhibitor captopril (SQ 14,225) (100 mg/kg) on mean arterial blood pressure, plasma renin activity, urinary volume and urinary Na+,K+, and aldosterone concentrations were examined in spontaneously hypertensive rats of the Okamoto and Aoki strain (SHR) after oral daily dosing for 2 weeks, 3 or 6 months. Captopril caused progressive cumulative reductions in blood pressure resulting in normalization of pressure after 6 months of dosing. Hydralazine also significantly reduced blood pressure but not to the level of normotensive rats of the Wistar-Kyoto strain (WKY). Reductions in heart size paralleled the changes in blood pressure, normalization of cardiac hypertrophy occurring after captopril but not hydralazine. Plasma renin activity increased approximately 2-3 fold after hydralazine and 15-fold after captopril. Neither hydralazine nor captopril had any consistent effects on 24-hr urine volume, urinary Na+,K+ or aldosterone excretion. These results indicate that chronic inhibition of ACE with captopril induces normalization of blood pressure in SHR, a normal-renin model of hypertension.

Aldosterone

Effects of SQ 14,225, an orally active inhibitor of angiotensin-converting enzyme on blood pressure, heart rate and plasma renin activity of conscious normotensive dogs.

Oral administration of SQ 14,225 (0.03--3 mg/kg) to conscious normotensive dogs caused inhibition of the pressor response to intravenously administered angiotensin I (AI), the duration of which was dose-dependent. All doses of 0.1 mg/kg or greater caused 85--95% inhibition 30 min after administration whereas 0.03 mg/kg produced only a 25% inhibition. Pressor responses to angiotensin II (AII) were not similarly inhibited. Blood pressure was moderately reduced in a dose-related manner and followed the same pattern as inhibition of the AI pressor responses. The maximum change occurred after 1.0 mg/kg with only a more rapid onset occurring after the 3.0 mg/kg dose. Heart rate was not appreciably changed. SQ 14,225 also increased plasma renin activity (PRA), the levels and duration of which were dose-related. These data indicate that SQ 14,225 is an orally effective, potent inhibitor of angiotensin I-converting enzyme (ACE) in dogs. It appears that in mongrel dogs, ACE inhibition results in a slight to moderate reduction in blood pressure and an increase in PRA.

Angiotensin I

Chronic antihypertensive effects of captopril (SQ 14,225), an orally active angiotensin I-converting enzyme inhibitor, in conscious 2-kidney renal hypertensive rats.

Indirect systolic blood pressure (SBP) was monitored in 9 groups of 15 male conscious 2-kidney renal hypertensive rats (RHR) for over 6 months. Daily oral dosing with captopril (SQ 14,225, D-3-mercapto-2-methylpropanoyl-L-proline, 30 mg/kg), an orally active angiotensin I-converting enzyme inhibitor, lowered SBP 30--50 MM Hg during this period. Withdrawal of captopril for 5 days at 1, 3 and 6 months resulted in gradual return of SBP to control levels without overshoot. Resumption of dosage with captopril again decreased SBP. Daily oral dosing with hydrochlorothiazide (HCTZ, 6 mg/kg/day) alone for 6 months had little or no effect on SBP, but increased the antihypertensive effect of captopril. Daily oral dosing with hydralazine (6 mg/kg) caused an initial marked antihypertensive effect greater than that of captopril but almost complete tolerance developed within 4 weeks of dosing. Highest survival rates occurred in RHR treated with captopril plus HCTZ. In four other similarly treated groups of RHR and normotensive rats (NR), least cardiac hypertrophy and highest plasma renin activity occurred in captopril-treated animals compared with vehicle-treated controls. Plasma renin activity was about 2 to 4 fold higher in the rats dosed with captopril compared with vehicle-treated rats. Heart weight/body weight ratios, initially higher in the two RHR groups compared to NR, decreased only in the captopril treated group to or near those of the NR groups. These results indicate that chronic treatment with captopril decreased SBP and cardiac weights of RHR, and that HCTZ, or possibly other diuretics, can augment the antihypertensive effect of captopril while having little or no effect by themselves.

Angiotensin-Converting Enzyme Inhibitors

Antihypertensive activity in rats for SQ 14,225, an orally active inhibitor of angiotensin I-converting enzyme.

SQ 14,225 (D-3-mercapto-2-methylpropanoyl-L-proline) markedly lowered the blood pressure of the renin-dependent aortic-ligated and two-kidney Goldblatt hypertensive rat and failed to reduce blood pressure in the one-kidney Goldblatt hypertensive rat. In the two-kidney Goldblatt rat, SQ 14,225 (p.o.) was about 10 times as potent as teprotide, the nonapeptide SQ 20,881 (s.c.). Oral doses of SQ 14,225 moderately reduced the blood pressure of the Wistar-Kyoto spontaneously hypertensive rat but not that of the normotensive Wistar-Kyoto rat. Bilateral nephrectomy abolished the antihypertensive activity of SQ 14,225 in the spontaneously hypertensive rat. SQ 14,225 and SQ 20,881 elicited parallel dose-response curves in the two-kidney renal hypertensive rat. Post-treatment of spontaneously hypertensive rats with either agent failed to augment the antihypertensive effect produced by effective doses of the other agent. The results suggest that SQ 14,225 acts primarily by inhibiting the renin-angiotensin system to reduce elevated blood pressure, especially in presumably renin-dependent models of hypertension.

Administration, Oral

Anti-arrhythmic action of nadolol, a beta-adrenergic receptor blocking agent.

The anti-arrhythmic action of 2,3-cis-1,2,3,4-tetrahydro-5-[(2-hydroxy-3-tert-butylamino)propoxy]2,3-naphthalenediol (nadolol) was evaluated and compared with that of propranolol in several experimental models of cardiac arrhythmias. Both nadolol and propranolol antagonized isoproterenol-induced tachycardia and ouabain-induced arrhythmias in cats, antagonized coronary artery ligation-induced ventricular fibrillation and suppressed ventricular ectopic activity during vagal stimulation in dogs. In contrast to propranolol, nadolol was considerably weaker in suppressing existing digoxin-induced arrhythmias, lacked local anesthetic activity and did not depress the heart in dogs. Because of these findings, it is concluded that the anti-arrhythmic activity of nadolol is apparently related to blockade of beta-adrenergic receptors.

Adrenergic beta-Antagonists

Pharmacology of nadolol (SQ 11725), a beta-adrenergic antagonist lacking direct myocardial depression.

SQ 11725 was approximately 1/3 as potent as propranolol in blocking the stimulant effects of isoproterenol in vitro, but was 2-4 times more potent than propranolol in blocking the diastolic blood-pressure and heart-rate responses, respectively, to isoproterenol in vivo. SQ 11725 had no depressant effects on contractile force of isolated guinea pig atrial muscle at the largest bath concentration studied (1000 mug/ml), whereas propranolol caused significant depression at a concentration of 1-10 mug/ml. Propranolol was at least 20-30 times more depressant than SQ 11725 to canine myocardium in vivo. SQ 11725 was more effective then propranolol in inhibiting tachycardic responses to treadmill exercise in unanesthetized dogs. The duration of blockade of the heart-rate response to exercise or to isoproterenol administration in the unanesthetized dog was approximately 5 times greater with SQ 11725 than with propranolol.

Adrenergic beta-Antagonists

Stimulation of myocardial contractility by a new cyclic nucleotide analog, 8-(benzylthio)-N6-n-butyladenosine cyclic 3',5'-phosphate (SQ 80122).

The cyclic nucleotide analog, 8-(benzylthio)-N6-n-butyladenosine cyclic 3',5'-phosphate (SQ 80122) increases contractile force of excised cat right ventricular papillary muscle and stimulates myocardial contractility in the anesthetized dog. The inotropic action of this compound is independent of catecholamines and stimulation of beta-adrenergic receptors in the heart.

Animals