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A Scriabine

Publications and source records attributed to A Scriabine.

At least 37 records · Page 2Linked to original sources

Sites of action of Ca2+ channel inhibitors.

Ca2+ channel inhibitors are viewed as a subgroup of Ca2+ antagonists. Most of the currently used Ca2+ channel inhibitors are thought to act by reducing Ca2+ entry into the cell through Ca2+ channels. There is substantial electrophysiological evidence that the major site of action of verapamil, nifedipine and diltiazem in cardiac cells is a sarcolemmal Ca2+ channel. Cytosolic sites of action may contribute to their effects but probably only at higher than therapeutic concentrations. The recent ligand binding studies also tend to support the view that the sarcolemma is the site of action of Ca2+ channel inhibitors in smooth muscle. High affinity binding sites for 1,4-dihydropyridines without any established function are found in fast skeletal muscle and some neuronal membranes. The binding of [3H]nitrendipine to membranes from cardiac, skeletal and smooth muscle, and from brain is saturable, reversible and of high affinity; it is sensitive to cations and other drugs that interact with Ca2+ channels. Inhibition of [3H]nitrendipine binding and blockade of K+ responses in guinea pig ileum by 1,4-dihydropyridines are well correlated, supporting the view that the observed binding is to Ca2+ channel. In contrast, blockade of Ca2+ channels in cardiac and skeletal muscle and in brain synaptosomes occurs only at higher concentrations than needed to saturate the high affinity binding sites. The therapeutic success of Ca2+ channel inhibitors in the treatment of angina pectoris, hypertension, peripheral vascular diseases, and many other disease entities is based on selective inhibition of Ca2+ entry into smooth muscle cells. The specificity of some of these drugs for Ca2+ channels in different cell types, organs, or vascular beds is probably determined by receptor modulation and the effect of reflex mechanisms, which in turn determine the indications for their therapeutic use.

Animals↗

Dopamine antagonist effect of verapamil on isolated perfused rabbit ear artery.

Rabbit ear arteries were isolated and perfused with Krebs-bicarbonate solution. Brief periods of supramaximal nerve stimulation caused reproducible constriction of the arteries, which was inhibited by dopamine at concentrations ranging from 3.3 X 10(-9) to 3.3 X 10(-7) M. The inhibitory effect of dopamine was antagonized by sulpiride and by verapamil. The dose-response curve to dopamine was shifted to the right by both sulpiride and verapamil, indicative of competitive inhibition. The dopamine antagonist activity of verapamil does not appear to be a consequence of its Ca++ channel inhibitory activity because other calcium antagonists (e.g., nitrendipine and diltiazem) had no similar action.

Adrenergic alpha-Antagonists↗

Approaches to vasodilating/beta-adrenergic blocking agents: examples of the dihydrolutidine type.

The aminohydroxypropoxy moiety has been incorporated into the dihydrolutidine class of vasodilators. In the spontaneously hypertensive rat, one of these, (S)-4-[2-methyl-4-[3-(tert-butylamino)-2-hydroxypropoxy]phenyl]-3,5-dicarboethoxy-1,4-dihydrolutidine (4c), exhibited antihypertensive activity on the order of the standard 4-[2-(trifluoromethyl)phenyl]-3,5-dicarboethoxy-1,4-dihydrolutidine (2a). This antihypertensive activity could not be explained in terms of a vasodilating effect, as determined in the dog. In this latter model, 2a decreased both mean arterial and hindlimb perfusion pressures.

Adrenergic beta-Antagonists↗

Heterocyclic analogues of the antihypertensive beta-adrenergic blocking agent (S)-2-[3-(ter-butylamino)-2-hydroxypropoxy]-3-cyanopyridine.

The synthesis of a series of isoelectronic analogues of (S)-2-[3-(tert-butylamino)-2-hydroxypropoxy]-3-cyanopyridine (1) are described; included in this group are examples of thiazole, isothiazole, thiadiazole, pyrazine, and the structurally related naphthyridines. All of the compounds are similar to 1 in that they contain a cyano group ortho to the aminohydroxypropoxy side chain and meta to the nitrogen heteroatom. In addition, several related examples, having additional nuclear substituents and/or groups other than CN in the position adjacent to the aminohydroxypropoxy group, were prepared, and beta-adrenoceptor antagonist activity and vasodilating potency were determined. Three compounds, thiazole 2 and isothiazoles 3 and 27, effectively lowered mean arterial pressure in the SH rat at 5 mg/kg. Compounds 2, 3, and 27 increased iliac blood flow and exhibited beta-adrenergic blocking properties in the dog.

Adrenergic beta-Antagonists↗

2-(Aminomethyl)phenols, a new class of saluretic agents. 1. Effects of nuclear substitution.

A series of 2-(aminomethyl)phenols was synthesized and tested in rats and dogs for saluretic and diuretic activity. A number of these compounds exhibit a high order of activity on iv or po administration. The most active compounds belong to a subseries of 4-alkyl-6-halo derivatives of which 2, 2-(aminomethyl)-4-(1,1-dimethylethyl)-6-iodophenol, is the most active. Compound 2 also possesses significant antihypertensive activity, an adjunctive pharmacological parameter which distinguishes 2 from the other compounds prepared in this series. In addition, 2 displays both topical saluretic and antiinflammatory activities.

Administration, Oral↗

Antihypertensive and cardiac effects of two novel beta-adrenoceptor blocking drugs.

Two new beta-adrenoceptor blocking drugs with acute antihypertensive and positive inotropic effects are described: Compound A (2-[4-(3-tert.butylamino-2-hydroxypropoxy)phenyl]-4-trifluoromethylimidazole) and MK-761 (2-(3-tert.butylamine-2-hydroxypropoxy)-3-cyanopyridine hydrochloride). In SH rats both compounds, given orally, lowered arterial pressure and were more potent than hydralazine. The antihypertensive effect of compound A but not of MK-761 was antagonized by timolol. Both compounds had positive inotropic activity on cat heart papillary muscles; these effects were antagonized by timolol. The pretreatment of animals with reserpine greatly reduced the positive inotropic effect of MK-761 but not of compound A. The acute antihypertensive and positive inotropic effects of compound A are like to be at least partially due to stimulation of beta-adrenoceptors, e.g. intrinsic sympathomimetic activity. The effects of MK-761 on the same parameters appear to be mediated by different mechanisms.

Adrenergic beta-Antagonists↗

Antihypertensive activity of some novel pyridinylidene arylurea derivatives in spontaneously hypertensive rats.

3 novel pyridinylidene arylurea derivatives were found to lower arterial pressure in spontaneously hypertensive rats. Their relative oral potency ranged from 6 to 32 times that of guanethidine. The onset of antihypertensive action following their oral administration was less than 1 h and the duration of action ranged from 8 to over 24 h. The antihypertensive activity of the pyridinylidene arylureas was found to be assoicated with depletion of tissue catecholamines. Compound C depleted cardiac norepinephrine with little or no effect on total brain norepinephrine levels. It is suggested that compound C may have useful antihypertensive properties without CNS depressant activity.

Animals↗

Antihypertensive and other cardiovascular effects of 2-(3-pyridyl)- and 2-(4-pyridyl)-4-trifluoromethylimidazoles.

2 new 4-trifluoromethylimidazole derivatives were found which lowered mean arterial pressure in renal and spontaneously hypertensive (SH) rats by the oral route. In SH rats, compounds A and B were 0.1 and 0.3 times, respectively, as potent as hydralazine. No tolerance development was observed in SH rats with either compound over a 1-week period. In anesthetized dogs, both compounds lowered arterial pressure and peripheral vascular resistance but increased cardiac output. By intraarterial administration, both compounds increased femoral arterial blood flow. These findings represent discovery of a new class of vasodilator durgs.

Animals↗

beta-Adrenergic blocking agents with acute antihypertensive activity.

Modification of the pharmacological profile of the vasodilating/beta-adrenergic blocking agent 2-[4-[3-(tert-butylamino)-2-hydroxypropoxy]phenyl]-4-(trifluoromethyl)imidazole (1) has been investigated. Introduction of selected substitutents onto the imidazole ring, in place of the trifluoromethyl group, has yielded highly cardioselective beta-adrenergic blocking agents such as 7, 17, and 18. The placement of alkyl or chloro groups onto the aryl ring of 1, as illustrated by 33, has produced a class of compounds characterized as antihypertensive beta-adrenergic blocking agents. In these examples, the acute antihypertensive activity does not appear to be due to either vasodilating or beta 2-agonist properties.

Adrenergic beta-Antagonists↗

Beta adrenoceptor blocking properties of MK-761.

MK-761 is a new class of compound which has beta adrenoceptor antagonist and vasodilating properties in a single molecule. The compound has in vitro beta adrenoceptor blocking activity in the isolated cat heart papillary muscle and isolated rat atria. Unlike propranolol, it did not depress contactile force. Intrinsic sympathomimetic activity was not observed in vitro, (isolated cat papillary muscle, isolated atria) but the compound has some intrinsic sympathomimetric activity because it slightly increased heart rate in reserpinized rats. MK-761 was found to be approximately as potent as timolol and pindolol in blocking cardiac and vascular beta adrenergic receptors in anesthetized dogs. The drug was not, however, cardioselective. Oral beta adrenoceptor blocking activity was observed in rats at doses similar to those which decreased blood pressure.

Adrenergic beta-Agonists↗

Diuretic and antihypertensive effects of 2-aminoethyl-4-(1,1-dimethylethyl)-6-iodophenol hydrochloride (MK-447).

2-Aminomethyl-4-(1,1-dimethylethyl)-6-iodophenol hydrochloride or MK-447, is a chemically novel diuretic agent which produced diuretic and saluretic effects in rats, dogs and chimpanzees. At doses ranging from 0.1 to 10 mg/kg p.o. (0.32-32 mumol/kg) MK-447 was more effective then furosemide at the same or higher doses in increasing the excretion of Na+, K+ and Cl- in rats and dogs. At single oral doses, MK-447 had antihypertensive activity in spontaneously hypertensive rats and renal hypertensive dogs. Other diuretics are known to lower arterial pressure in these models only by repeated administration. The antihypertensive and diuretic effects of MK-447 in spontaneously hypertensive rats were reduced by indomethacin.

Animals↗

Synthesis and antihypertensive activity of some ester progenitors of methyldopa.

A variety of esters of methyldopa was synthesized with the objective of obtaining derivatives that would be more efficiently absorbed from the gastrointestinal tract than the free amino acid and would undergo conversion to methyldopa readily in the blood or target tissues. Two of the esters, alpha-pivaloyloxyethyl (4u) and alpha-succinimidoethyl (4w), were found to be more potent antihypertensive agents than methyldopa in animal models and were selected for further study in man. The amino esters were prepared by three different methods, including direct esterification of methyldopa without the use of N- or O-protecting groups.

Animals↗

Some cardiovascular effects of ST-91 and clonidine.

St-91, 2(2,6-diethylphenylamino)-2-imidazoline, is a clonidine derivative which does not penetrate the blood-brain barrier. In spontaneously hypertensive (SH) rats is acutely increased arterial pressure and reduced heart rate while at 8 to 12 h after oral administration, it slightly lowered arterial pressure. In contrast, clonidine had acute antihypertensive activity at all doses used. By intracerebroventricular administration to SH rats, both drugs (St-91 and clonidine) reduced arterial pressure and heart rate; in this respect, clonidine was more potent then St-91. Cardiac acceleration induced by low frequency electrical stimulation of right cardiac sympathetic nerves in anesthetized and vagotomized dogs was reduced by St-91 at the same doses by clonidine. Phenoxybenzamine, phentolamine and desipramine antagonized the inhibitory effects of St-91 on electrically induced cardiac acceleration. It was concluded that St-91, like clonidine, stimulates inhibitory alpha-adrenergic receptors at the sympathetic nerve endings but, unlike clonidine, is substantially devoid of acute antihypertensive activity. This suggests that stimulation of peripheral presynaptic inhibitory alpha-adrenergic receptors is not likely to represent the sole mechanism of antihypertensive action of clonidine.

Administration, Oral↗