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R H Burns

Publications and source records attributed to R H Burns.

8 recordsLinked to original sources

Selectivity of converting-enzyme inhibitors for angiotensin I versus bradykinin hydrolysis reactions.

Selectivity of captopril, enalapril (MK-421), enalaprilat (MK-422), ketoace, and SA-300 for inhibiting kininase II when angiotensin (ANG) I versus bradykinin (BK) is the substrate has been studied in vitro. Potency for inhibiting purified rabbit lung ANG I-converting enzyme (ACE) using a tripeptide substrate with an ANG I-like (hippurylhistidylleucine, HHL) or a BK-like (hippurylphenylalanylarginine, HPA) cleavable dipeptide was determined. Inhibition of ANG I-induced and potentiation of BK-induced contractions of isolated guinea pig ileum strips was measured. For the enzyme assay, the inhibitor concentration which reduced the rate of HHL and HPA hydrolysis 50% (IC50) from the control value was estimated. All tested compounds more potently inhibited hydrolysis of the ANG I-related tripeptide by the purified enzyme. Ketoace, with a selectivity ratio (HPA IC50:HHL IC50) of 23, was the most substrate-dependent inhibitor. For the isolated ileum assay, the inhibitor concentration which augmented the contractile response to BK by 50% (AC50) or inhibited the contractile response to ANG I by 50% (IC50) was calculated. Only enalaprilat retained a selectivity ratio (BK AC50:ANG I IC50) in the guinea pig ileum system greater than one. Ketoace, with a ratio of 0.038, was the least ANG I-selective by this criterion. In vivo selectivity data on captopril seem more in accord with the ileum, rather than the enzyme, results. It was concluded that converting enzyme inhibitors differ in their relative selectivity for inhibiting kininase II reactions using different substrates.

Angiotensin I↗

5-phenyl-2-furamidines: a new chemical class of potential antidepressants.

A series of 5-phenyl-2-furamidines has been synthesized and evaluated for antidepressant activities. Substitution in the phenyl ring with a nitro (4) or an amino (12) group in the ortho-position resulted in an increase in antidepressant activity. Both 4 and 12 antagonized tetrabenazine-induced ptosis in rodents and inhibited norepinephrine (noradrenaline) uptake into crude synaptosomes of whole mouse brain at doses or concentrations comparable to those of the tricyclic antidepressants. However, these compounds did not possess the anticholinergic and antihistaminic activities common to tricyclic antidepressants. In addition, they lacked monoamine oxidase inhibitory activity. The 5-phenyl-2-furamidines represent a new chemical class of antidepressants and may be useful for depressive patients who cannot tolerate the compromising side effects of the tricyclic antidepressants and monoamine oxidase inhibitors.

Acetylcholine↗

Pharmacology of 1-(3,4-dichlorobenzyl)-3,4,5,6-tetrahydro-2(1H)-pyrimidone, a novel antidepressant compound with antianxiety activity.

1-(3,4-dichlorobenzyl)-3,4,5,6-tetrahydro-2(1H)-pyrimidone (I) was evaluated in selected pharmacological tests, and its activity was compared to that of some clinically useful psychotropic drugs. Based on the results, it is evident that I has a unique profile of antidepressant and antianxiety activities that are evident in the same dose range. The mechanism of its antidepressant activity is proposed to be similar to the tricyclic antidepressants, that is, inhibition of norepinephrine uptake. Neither I nor the tricyclic antidepressants possess monoamine oxidase-inhibiting activity. However, unlike the tricyclic antidepressants, I is devoid of any significant anticholinergic activity and presumably is free of anticholinergic side effects.

Animals↗