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Biomedical subjects

H Ferres

Publications and source records attributed to H Ferres.

23 records · Page 2Linked to original sources

The effect of compactin, a potent inhibitor of 3-hydroxy-3-methylglutaryl coenzyme-A reductase activity, on cholesterogenesis and serum cholesterol levels in rats and chicks.

Compactin, [7-(1,2,6,7,8,8a-hexahydro-2-methyl-8-(2-methylbutyrylox)naphthyl)-3-hydroxyheptan-5-olide], a potent competitive inhibitor of the rate-determining step in cholesterol biosynthesis, was used to study the influence of changes in cholesterogenesis on serum cholesterol levels. Up to 3 h after a single oral dose (20 or 50 mg/kg) or after the last of a series of daily oral doses (50 mg/kg for 7 or 28 days) to young, male normolipidaemic rats, compactin consistently inhibited cholesterogenesis measured using 3H20 in liver, ileum and other extrahepatic tissues without affecting fatty acid synthesis. Compactin did not reduce serum or tissue cholesterol nor affect the serum concentration of other lipids nor the ratio between lipoprotein classes. A diurnal variation in the effect of compactin on cholesterogenesis was observed. For example, by 12--20 h after dosing, cholesterogenesis at all sites was increased above the comparable control value, indicating the induction of enzyme synthesis and overall there was little effect on the mass of cholesterol synthesized per day. Similar results were obtained using male chicks. Inhibition of cholesterogenesis by compactin was also observed in cholestyramine-treated rats, in which cholesterol turnover was markedly increased, and even in cholesterol-fed rats, in which cholesterogenesis already was repressed. In neither case, however, was inhibition of cholesterogenesis accompanied by a hypocholesterolaemic effect. It is concluded that a more persistent suppression of cholesterogenesis, than that observed with compactin in the rat, may be required in order to affect serum cholesterol concentrations.

Animals↗

beta-lactam antibiotics. II. Structure-activity relationships of 6-[alpha-(alpha'-ureido-acylamino) acylamino] penicillanic acids.

The influence on the structure-activity relationships (S.A.R.) of the stereochemistry and various alkyl, aryl, aralkyl and heterocyclic substituents at the two chiral centres in the dipeptide side-chain of a new series of penicillins was examined. In many cases the effects of these changes had a pronounced influence on the degree of activity against Gram-positive and especially Gram-negative bacteria. Several compounds indicated that the size, shape and spatial disposition of a substituent were the parameters of importance in influencing activity, rather than it lipophilic or electronic character. The most active homologues in the series provided broad-spectrum penicillins which in terms of their in vitro antibacterial properties showed improvements over certain of the marketed penicillins. Thus 6-[D-alpha(alpha'-ureidoacyl-amino)acylamino]penicillanic acids were found which had a carbenicillin-like profile, with improvements against Pseudomonas aeruginosa, Klebsiella aerogenes, sensitive and beta-lactamase-producing Gram-positive cocci.

Bacteria↗

Preparation, hydrolysis, and oral absorption of lactonyl esters of penicillins.

Lactonyl esters of ampicillin and other penicillins have been synthesized as prodrugs designed to improve the oral absorption of the parent penicillins. In general, the esters hydrolyzed rapidly in the presence of tissues including blood and certain of the esters were better absorbed than the parent penicillin. The phthalidyl ester of ampicillin [talampicillin (British Pharmacopoeia approved name), BRL 8988] was selected for extended studies. The compound was found to be well absorbed in various animal species and gave ampicillin serum concentrations in fasting human volunteers 2.5-3 times those obtained for ampicillin itself.

Administration, Oral↗