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D Severino

Publications and source records attributed to D Severino.

10 recordsLinked to original sources

FCE 27677: a novel inhibitor of acyl-CoA: cholesterol acyltransferase with potent oral hypolipidemic activity.

FCE 27677 ([(-)N-[2,6-bis(1-methylethyl)phenyl]-N'-[(4R,5R)-2- (4-dimethylaminophenyl)-4,5 dimethyl-dioxolan-2-yl]methylurea) is a new systemically available ACAT inhibitor belonging to the class of ketalic disubstituted ureas. When tested in microsomes from rabbit intestine, aorta and liver, it inhibited the enzyme with IC50 of 9.31, 6.99 and 92.2 nM, respectively. It had no effect on plasma LCAT and intestinal cytosolic cholesterol esterases and, when tested in a tissue culture system, it did not interfere with the synthesis of cholesterol, triglycerides, and phospholipids. Enzyme inhibition kinetics indicated that FCE 27677 is a non-competitive inhibitor of the enzyme with respect to acylCoA and to cholesterol. When administered mixed to a 1.5% cholesterol and 0.5% sodium cholate-enriched diet to rats, it prevented the development of hypercholesterolemia with ED50 of 0.35 mg kg-1 day-1. Given in a single oral dose to hypercholesterolemic rats it significantly reduced both the plasma lipid levels and the hepatic cholesteryl ester content within 6 h from gavage. VLDL and LDL levels and composition were also significantly affected. Similar effects were observed when the drug was given mixed to a regular chow diet for 4 weeks to hypercholesterolemic rabbits. These results are consistent with the idea that systemically available ACAT inhibitors can affect the composition and the metabolism of the atherogenic cholesteryl ester-rich VLDL and LDL. ACAT inhibitors appear promising for the correction of dyslipoproteinemias secondary to lipoprotein overproduction, and in reducing the atherogenic index of apoB-100 containing lipoproteins.

Aniline Compounds↗

Imidazolylbenzopyrane derivatives: a new class of acyl-CoA: cholesterol acyltransferase (ACAT) inhibitors.

Inhibitors of the enzyme Acyl-CoA: Cholesterol Acyltransferase are regarded as potentially useful agents in the treatment of hypercholesterolemia and atherosclerosis. We report here a novel series of 2, 6-disubstituted-3-imidazolylbenzopyrane derivatives with significant in vitro ACAT inhibitory activity (IC50 range 0.05-0.5 microM). Compounds of this series such as 26 are examples of a new, structurally distinct class of potent ACAT inhibitors with high specificity for the aortic subtype of the enzyme. The structure-activity relationships of the 3-imidazolylbenzopyrane ACAT inhibitors were investigated by systematic manipulation of two regions of the parent compound 1 and the inhibitory activity resulted linked to the substituent in position 6 of the benzopyrane ring and modulated by the size of lipophilic substituents in position 2. Investigation of the mechanism of the inhibitory effect leads to the conclusion that these compounds act in a non-competitive fashion.

Animals↗

Ethyl 2-([5,6-dihydro-7-(1H-imidazol-1-yl)-2-naphthalenyl]oxy)- 2-methylpropanoate as a new potent oxyisobutyrate hypolipidaemic with unusual features.

Some compounds containing the N-imidazolyl and the ethyl oxy-isobutyrate groups linked to a naphthalene ring structure and some related analogues were synthesized and tested for hypolipidaemic activity. Ethyl 2-([5,6- dihydro-7-(1H-imidazol-1-yl)-2-naphthalenyl]oxy)- 2-methylpropanoate (V) proved to be a strong hypolipidaemic agent, several times more potent than clofibrate. Structural requirements for activity and differences from clofibrate analogues are discussed.

Animals↗

Cephalosporins IV. Synthesis and structure-activity relationships of new 7 alpha-methoxy-7 beta-vinylenethioacetamido cephalosporins.

The synthesis and in vitro activity of 7 alpha-methoxy-7 beta-vinylenethioacetamido cephalosporins with various substituents at the 3-position are described. These cephalosporins showed good activity against beta-lactamase producing Gram-negative bacteria. 7 alpha-Methoxy-7-[(Z)-beta-cyano-vinylenethioacetamido]-3-[(1-methyl-1H-tetrazol -5-yl)thiomethyl]-3-cephem-4-carboxylic acid (3) was several times more active in vitro than cefoxitin and comparable to cefmetazole.

Bacteria↗

Cephalosporins. III. Synthesis and structure-activity relationships of 7-vinylenethioacetamid:o cephalosporins with a tetrazolo-pyridazine at the 3-position.

The synthesis and in vitro activity of 7-vinylenethioacetamido cephalosporins with a tetrazolo-pyridazine at the 3-position are described. These cephalosporins showed good activity against Gram-positive and Gram-negative bacteria. 7-[(Z)-beta-carboxyvinylenethio-acetamido]-3-[(tetrazolo[1,5-b]pyridazin-8- amino-6-yl)-thiomethyl]-3-cephem-4-carboxylic acid (K 13176, 21) was significantly more active in vitro and in vivo than cefazolin against Gram-negative bacteria.

Cephalosporins↗

Cephalosporins. II. Synthesis and structure-activity relationships of new 7-vinylenethioacetamido and thioacrylamido cephalosporins.

The synthesis and in vitro structure-activity relationships of 7-vinylenethioacetamido and thioacrylamido cephalosporins with various substituents at the 3-position are described. 7(Z)-beta-Vinylenethioacetamido cephalosporins proved the most active against Gram-positive and Gram-negative bacteria. 7-[(Z)-beta-Cyanovinylenethioacetamido]-3-[(1-methyl-1H-tetrazol-5-yl)-thiomethyl]-3-cephem-4-carboxylic acid (K 13101, 40) was several times more active in vitro than cefazolin.

Acrylates↗

New broad-spectrum alkylthio cephalosporins.

A series of 7-substituted alkyl-thio-acylaminocephalosporins with the following general formula were prepared and tested for in vitro antibacterial activity: (formula: see text). We tried in our research to find any relationship between antibacterial activity and pharmacokinetic properties on the one hand, and chemical structure on the other. The most interesting products were also studied for their in vivo antibacterial activity in experimental acute systemic infections in the mouse.

Animals↗