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R Sarges

Publications and source records attributed to R Sarges.

At least 19 recordsLinked to original sources

Glucose transport-enhancing and hypoglycemic activity of 2-methyl-2-phenoxy-3-phenylpropanoic acids.

A series of 2-phenoxy-3-phenylpropanoic acids has been prepared which contains many potent hypoglycemic agents as demonstrated by assessing glucose lowering in ob/ob mice. Some compounds (32, 33, 59) normalize plasma glucose in this diabetic model at doses of approximately 1 mg/kg. The mechanism of action of these drugs may involve enhanced glucose transport, especially in fat cells, but the compounds do not stimulate GLUT4 translocation and do not increase the levels of GLUT1 or GLUT4 in vivo. Thus, these compounds may enhance the intrinsic activity of the glucose transporter GLUT1 or GLUT4. Some compounds also modestly decrease hepatocyte gluconeogenesis in vitro, but this is not likely to be a major contributor to the hypoglycemic effect observed in vivo. Likewise, a modest decrease in food consumption observed with some of these compounds was shown by a pair-feeding experiment not to be the primary cause of the hypoglycemia observed.

Animals↗

Inhibition of bone resorption by H+/K(+)-ATPase inhibitors.

We have found that 3-(3-(ethoxycarbonyl)propionyl)-8-methoxy-4-((2- methylphenyl)amino)quinoline (1, CP-113,411), a reversible inhibitor of gastric H+/K(+)-ATPase (IC50 10-20 mM), is also a potent inhibitor of bone resorption by osteoclasts in a bone slice assay at concentrations as low as 10(-7) M, with an IC50 of 2 mM. By contrast, the structurally related H+/K(+)-ATPase inhibitor 2 (3-(ethoxycarbonyl)-8-methoxy-4-((2-methylphenyl)amino)quinoline) disclosed by Robins is slightly more potent as an inhibitor of the gastric enzyme (IC50 3-10 microM in our hands) but less efficacious than 1 as an inhibitor of osteoclasts in the bone slice assay at the lower concentrations (no effect at < or = 10(-6) M, IC50 4 mM). These findings suggest that osteoclasts contain an H+/K(+)-ATPase-like enzyme which differs from the gastric one.

Aminoquinolines↗

Behavioral effects of A1- and A2-selective adenosine agonists and antagonists: evidence for synergism and antagonism.

The locomotor effects in mice of selective A1 and A2 adenosine agonists, antagonists and combinations of agonists were investigated using a computerized activity monitor. The A2-selective agonist 2-[(2-aminoethylamino)carbonylethylphenylethylamino[-5'-N- ethylcarboxamidoadenosine (APEC), an amine derivative of 2-(carboxyethylphenylethylamino)adenosine-5'-carboxamide, was a more potent locomotor depressant than its amide conjugates. The rank order of potency after i.p. injection for adenosine agonists was 5'-N-ethylcarboxamidoadenosine (NECA) (ED50, 5.8 nmol/kg) greater than APEC (ED50, 25 nmol/kg) greater than N6-cyclohexyladenosine (CHA) (ED50, 270 nmol/kg). An A1-selective, centrally acting, adenosine antagonist, 8-cyclopentyltheophylline (10 mg/kg), completely reversed the locomotor depressant effects of CHA (A1-selective) and NECA (nonselective) at doses of agonists as high as twice the ED50, and shifted the dose-response curves to the right, suggesting a primary involvement of A1 receptors. 8-cyclopentyltheophylline did not affect the depressant effects of APEC at the ED50, consistent with the A2-selectivity of APEC. The locomotor effects of APEC and CHA were completely reversed by theophylline, but not by the peripherally active 8-p-sulfophenyltheophylline, indicating central action of the adenosine agonists. The depressant effects of APEC, but not of NECA or CHA, were reversed significantly by an A2-selective adenosine receptor antagonist, 4-amino-8-chloro-1-phenyl-[1,2,4]triazol[4,3-a]quinoxaline. Low or subthreshold doses of CHA potentiated the depressant effects of APEC. A subthreshold dose of CHA did not alter the depressant effect of NECA, whereas a subthreshold dose of APEC increased the depressant effects of low doses of NECA. Thus, it appears that A1- and A2-selective adenosine agonists have separate central depressant effects, which can be potentiative.(ABSTRACT TRUNCATED AT 250 WORDS)

Adenosine↗

Spiro hydantoin aldose reductase inhibitors derived from 8-aza-4-chromanones.

A series of spiro hydantoins derived from 8-azachromanones (2,3-dihydro-4H-pyrano[2,3-b]pyridin-4-ones) has been prepared and tested for aldose reductase inhibitory activity. The standard Bucherer-Bergs conditions had to be drastically modified to increase yields from less than 1% to an acceptable 50% range. One of the most potent compounds was cis-6'-chloro-2',3'-dihydro-2'-methylspiro[imidazolidine-4,4'-4'H- pyrano[2,3-b]pyridine]-2,5-dione; resolution of this compound showed that the 2'R,4'S enantiomer 16 was the most active spiro hydantoin in this series with an IC50 of 7.5 x 10(-9) against human placenta aldose reductase.

Aldehyde Reductase↗

4-Amino[1,2,4]triazolo[4,3-a]quinoxalines. A novel class of potent adenosine receptor antagonists and potential rapid-onset antidepressants.

A series of 4-amino[1,2,4]triazolo[4,3-a]quinoxalines has been prepared. Many compounds from this class reduce immobility in Porsolt's behavioral despair model in rats upon acute administration and may therefore have therapeutic potential as novel and rapid acting antidepressant agents. Optimal activity in this test is associated with hydrogen, CF3, or small alkyl groups in the 1-position, with NH2, NH-acetyl, or amines substituted with small alkyl groups in the 4-position, and with hydrogen or 8-halogen substituents in the aromatic ring. Furthermore, many of these 4-amino[1,2,4]triazolo[4,3-a]quinoxalines bind avidly, and in some cases very selectively, to adenosine A1 and A2 receptors. A1 affinity of these compounds was measured by their inhibition of tritiated CHA (N6-cyclohexyladenosine) binding in rat cerebral cortex membranes and A2 affinity by their inhibition of tritiated NECA (5'-(N-ethylcarbamoyl)adenosine) binding to rat striatal homogenate in the presence of cold N6-cyclopentyladenosine. Structure-activity relationship (SAR) studies show that best A1 affinity is associated with ethyl, CF3, or C2F5 in the 1-position, NH-iPr or NH-cycloalkyl in the 4-position, and with an 8-chloro substituent. Affinity at the A2 receptor is mostly dependent on the presence of an NH2 group in the 4-position and is enhanced by phenyl, CF3, or ethyl in the 1-position. The most selective A1 ligand by a factor of greater than 3000 is 121 (CP-68,247; 8-chloro-4-(cyclohexyl-amino)-1- (trifluoromethyl)[1,2,4]triazolo[4,3-a]quinoxaline) with an IC50 of 28 nM at the A1 receptor. The most potent A2 ligand is 128 (CP-66,713; 4-amino-8-chloro-1- phenyl[1,2,4]triazolo[4,3-a]quinoxaline) with an IC50 of 21 nM at the A2 receptor and a 13-fold selectivity for this receptor. Representatives from this series appear to act as antagonists at both A1 and A2 receptors since they antagonize the inhibiting action of CHA on norepinephrine-stimulated cAMP formation in fat cells and they decrease cAMP accumulation induced by adenosine in limbic forebrain slices. Thus certain members of this 4-amino[1,2,4]triazolo[4,3-a]quinoxaline series are among the most potent and A1 or A2 selective non-xanthine adenosine antagonists known.

Adenosine↗

[Intraoperative suppression of spasticity using intrathecal baclofen].

Even in patients with complete loss of sensation and paraplegia after cervical spinal trauma, abdominal operations usually require general or spinal anesthesia due to spasms and increased muscle tone. Both anesthetic types have serious drawbacks under these circumstances, e.g. hyperkalemia induced by relaxation or the impossibility of adequate monitoring of the level of spinal blockade. After an onset time of 1-2 h the intrathecal injection of approx. 100 micrograms baclofen, a spinally acting GABAB-agonist, led to complete and long-lasting suppression of surgically induced spasticity. This could be demonstrated by neurological examination (spasticity scores: Ashworth score, spasm score, clonus score) during 5 neurosurgical operations in 3 patients with paraplegia. Except for slight sedation, the patients had no discomfort during operation. Intrathecal baclofen was also effective against autonomic hyperreflexia, i.e. vegetative dysregulation such as bradycardia or hypertension, provoked by catheterization or bladder surgery.

Adult↗

A novel class of "GABAergic" agents: 1-aryl-3-(aminoalkylidene)oxindoles.

Antagonism of mercaptopropionic acid (MPA) induced convulsions, reflecting a GABAergic mechanism, was observed in a series of 1-aryl-3-(aminoalkylidene)oxindoles. Optimal MPA antagonism was associated with 3-halo, 3-alkyl, and/or 4-alkoxy substituents in the pendant aryl ring and with (dimethylamino)methylene, 1-(dimethylamino)-ethylidene and N-methyl-2-pyrrolidinylidene side chains. The precise mechanism of action of these agents is unclear at this time; however, they are not GABA mimics and they do not affect GABA levels. Like other GABAergic agents, these compounds are potent enhancers of benzodiazepine binding and they antagonize cyclic GMP elevations induced by isoniazid. Compounds from this series may therefore have potential therapeutic utility as anticonvulsants or anxiolytics.

3-Mercaptopropionic Acid↗

Spiro hydantoin aldose reductase inhibitors.

Sorbitol formation from glucose, catalyzed by the enzyme aldose reductase, is believed to play a role in the development of certain chronic complications of diabetes mellitus. Spiro hydantoins derived from five- and six-membered ketones fused to an aromatic ring or ring system inhibit aldose reductase isolated from calf lens. In vivo these compounds are potent inhibitors of sorbitol formation in sciatic nerves of streptozotocinized rats. Optimum in vivo activity is reached in spiro hydantoins derived from 6-halogenated 2,3-dihydro-4H-1-benzopyran-4-ones (4-chromanones). In 2,4-dihydro-6-fluorospiro[4H-1-benzopyran-4,4'-imidazolidine]-2',5 '-dione, the activity resides exclusively in the 4S isomer, compound 115 (CP-45,634, USAN: sorbinil). This compound is currently being used to test, in humans, the value of aldose reductase inhibitors in the therapy of diabetic complications.

Aldehyde Reductase↗

Sorbinil: a member of the novel class of spirohydantoin aldose reductase inhibitors.

A decade ago, we discovered that spirohydantoins are a novel class of aldose reductase inhibitors characterized by very potent in vivo activity. This important discovery resulted from a systematic screening effort for in vitro activity against aldose reductase isolated from bovine lens and subsequent testing of active compounds for in vivo activity in a streptozotocin-diabetic rat model, measuring inhibition of sorbitol formation in sciatic nerve. In this in vivo model, spirohydantoins were clearly more potent than all known carboxylic acid-type aldose reductase inhibitors. Structure-activity studies in the spirohydantoin class demonstrated that potent in vitro and in vivo activity were obtained when the spiro junction was adjacent to an aromatic ring and when this junction was part of a 5- or 6-membered ring system fused to the aromatic ring. Excellent in vitro and in vivo activity was achieved in 6-halogenated chromane derivatives with the spirohydantoin group attached in the 4-position. In this series, biologic activity is highly stereospecific and associated with the S configuration. Sorbinil, the S isomer of the 6-fluoro derivative in this series, is one such example: it is 30 times more potent than its R isomer in vitro (IC50 0.15 v 4.4 mumol/L) and 100 times more potent in vivo (ED50 0.25 mg/kg po v 25 mg/kg po).

Aldehyde Reductase↗

Neuroleptic activity of chiral trans-hexahydro-gamma-carbolines.

A series of trans-8-fluoro-5-(4-fluorophenyl)-2,3,4,4a,5, 9b-hexahydro-1H-pyrido[4,3-b]indoles with various N-2 substituents has been prepared and tested for neuroleptic activity [( 3H]spiroperidol binding and amphetamine antagonism). Several members of this series showed exceptional in vivo potency, especially the hydantoin derivatives 27-30. Resolution into the enantiomers showed that neuroleptic activity is associated with the 4aS,9bS absolute configuration. These rigid neuroleptics have been correlated with other rigid neuroleptics [(+)-dexclamol, Ro 22-1319] and can serve to further define the topography of the dopamine receptor.

Animals↗

Neuroleptics from the 4a,9b-trans-2,3,4,4a,5,9b-hexahydro-1H-pyrido[4,3-b]indole series. 3. Carboxamidoalkyl derivatives.

Substitution of position 2 of the 4a,9b-trans-2,3,4,4a,5,9b-hexahydro-1H-pyrido[4,3-b]indole nucleus with omega-carboxamidoalkyl substituents leads to compounds with exceedingly potent neuroleptic activity in in vitro and in vivo models. Although duration of activity is not as long as that of the analogous 4-hydroxy-4-(4-fluorophenyl)butyl derivatives reported previously, the absolute potency in vivo is greater. The ability of these compounds to bind with great affinity to dopamine (DA) receptors further defines the nature of the DA receptor auxiliary binding site as a hydrogen-bond donating site in addition to or instead of a lipophilic site as has been previously proposed.

Animals↗

Synthesis and dopamine autoreceptor activity of a 5-(methylmercapto)methyl-substituted derivative of (+/-)-3-PPP (3-(3-hydroxyphenyl)-1-n-propylpiperidine).

In an attempt to enhance the potency of the dopamine autoreceptor agonist 3-PPP, racemic cis-3-(3-hydroxyphenyl)-5-[(methylmercapto)methyl]-N-n-propylpiperidine has been prepared in a stereoselective synthesis. NMR studies of 3 show a diequatorial conformation for the 3- and 5-substituents, which gives compound 3 an intriguing overlap with the ergoline derivative pergolide. Pharmacological testing revealed that 3, which is a 5-(methylmercapto)methyl derivative of racemic 3-PPP does not show the anticipated potency increase as a dopamine autoreceptor agonist. In vitro (inhibition of tyrosine hydroxylation) 3 and 1 have similar potency, and the in vivo potency (inhibition of GBL accelerated dopamine synthesis) of 3 is inferior to that of 1.

4-Butyrolactone↗

Synthesis, absolute configuration, and conformation of the aldose reductase inhibitor sorbinil.

The aldose reductase inhibitor 2,3-dihydro-6-fluorospiro[4H-1-benzopyran-4,4'-imidazolidine]-2',5 '-dione was resolved into its enantiomers. Sorbinil, the S isomer, was found to be a better inhibitor of the enzyme in vitro and in vivo than the corresponding R isomer. X-ray data on sorbinil, which were used to determine its absolute configuration, are presented. NMR studies of sorbinil in solution indicate the existence of two conformers with a low energy barrier for interconversion.

Aldehyde Reductase↗

Nontricyclic antidepressant agents derived from cis- and trans-1-amino-4-aryltetralins.

The need for drugs that lack the obtrusive and limiting side effects of the tricyclic antidepressants has prompted the search for agents with greatly enhanced selectivity for specific mechanisms believed to be essential for antidepressant efficacy. The potential role of derangements of 5-HT pathways in the etiology of depression has long been suspected and has given impetus to the development of newer compounds that accentuate inhibition of serotonin reuptake. This paper presents structure-activity relationships for a series of cis-1-amino-4-(substituted-aryl)tetralins, which are surprisingly potent and selective inhibitors of serotonin uptake in in vitro models. These compounds are pharmacologically distinct from corresponding members of the trans series, which also potently block uptake of dopamine and norepinephrine. The activity in both cis and trans series is stereospecific, being restricted to the cis-(1S,4S) and the trans-(1R,4S) enantiomers.

Animals↗

Spiro oxazolidinedione aldose reductase inhibitors.

Spiro oxazolidinediones (2) derived from five- and six-membered ring aralkyl ketones are potent aldose reductase inhibitors in vitro and in vivo. Their novel and general synthesis has been devised with alpha-hydroxyimidates (5) and 4-alkoxy-2-oxo-3-oxazolines (6) as key intermediates, since traditional synthetic routes through alpha-hydroxy amides (8) usually led to alpha, beta-unsaturated amides (9). Resolution with cinchonidine afforded optically active spiro oxazolidinediones. Optimum biological activity resided in (4S)-6-chlorospiro [4H-2,3-dihydrobenzopyran-4,5'-oxazolidine]-2',4'-dione (21) and its 6,8-dichloro congener (23).

Aldehyde Reductase↗