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Biomedical subjects

V G DeVries

Publications and source records attributed to V G DeVries.

8 recordsLinked to original sources

Safety profile of piperacillin/tazobactam in phase I and III clinical studies.

The safety of piperacillin/tazobactam was investigated in Phase I and Phase III clinical studies. In 22 Phase I pharmacokinetic studies, 242 healthy subjects and 232 patients were given single and multiple doses of piperacillin/tazobactam, piperacillin alone, tazobactam alone, and/or placebo. Interaction with tobramycin and vancomycin was also studied. Of 1201 patients enrolled in Phase III trials, 944 received piperacillin 4 g plus tazobactam 500 mg every 8 h for lower respiratory tract infections, complicated urinary tract infections, skin and soft tissue infections, and intra-abdominal infections, or piperacillin 2 g plus tazobactam 500 mg 8 hourly for less severe infections; 90 patients received imipenem/cilastatin as a comparative regimen. Piperacillin 4 g and tazobactam 500 mg were also administered every 6 h with an aminoglycoside to 167 patients with pulmonary infection or neutropenia and bacterial infection. In all trials, piperacillin/tazobactam was found to be safe and well tolerated. One death was deemed possibly drug-related. Thirty-eight patients were withdrawn from the trials because of adverse experiences, most often diarrhoea and allergic skin reactions. The commonest laboratory abnormalities related to liver function. The safety of piperacillin/tazobactam appears similar to that of other beta-lactam/beta-lactamase inhibitor combinations.

Bacterial Infections↗

Potential antiatherosclerotic agents. 6. Hypocholesterolemic trisubstituted urea analogues.

The discovery that a series of N,N-dialkyl-N'-arylureas were inhibitors of the ACAT enzyme has led to a structure-activity study involving the systematic modification of three sites of the urea backbone. This study culminated in the selection of N'-(2,4-dimethylphenyl)-N-benzyl-N-n-butylurea (115) for more extensive biological evaluation. ACAT inhibitors are seen as potentially beneficial agents against hypercholesterolemia and atherosclerosis.

Adrenal Glands↗

CL 277,082: a novel inhibitor of ACAT-catalyzed cholesterol esterification and cholesterol absorption.

CL 277,082 (I) was found to be a potent inhibitor of acyl CoA:cholesterol acyltransferase (ACAT, EC 2.3.1.26) in microsomes from a variety of tissues with IC50 values of 0.14 microM for intestinal mucosal microsomes, 0.74 microM for liver, and 1.18 microM for rat adrenal. I was also shown to inhibit ACAT in cultured smooth muscle cells (IC50 = 0.8 microM) and was found to be specific in inhibiting cholesterol esterification since it did not inhibit fatty acid incorporation into triglycerides or phospholipids. Also, other cholesterol esterifying enzymes such as lecithin:cholesterol acyltransferase (LCAT) and pancreatic cholesterol esterase were not inhibited by I, nor was esterification of retinol by acyl CoA:retinol acyltransferase (ARAT) from intestinal mucosal microsomes inhibited. I was a potent inhibitor of cholesterol absorption in cholesterol-fed rats by markedly inhibiting increases in liver and serum cholesterol concentration (ED50 = 5.2 mg/kg per day) while increasing the excretion of neutral 14C-labeled sterol in the feces.

Animals↗

Potential antiatherosclerotic agents. 2. (Aralkylamino)- and (alkylamino) benzoic acid analogues of cetaben.

The syntheses of a series of (aralkylamino)- and (alkylamino)benzoic acids, as well as the corresponding esters and sodium salts, are described. The compounds were evaluated in vivo in rats for serum sterol and triglyceride lowering activity and in vitro for activity in inhibiting the principle cholesterol-esterifying enzyme of the arterial wall, fatty acyl-CoA:cholesterol acyltransferase (ACAT). Based on a combination of these two activities, cataben sodium (150) was selected for development as a hypolipidemic and potential antiatherosclerotic agent.

4-Aminobenzoic Acid↗

Potential antiatherosclerotic agents. 3. Substituted benzoic and non benzoic acid analogues of cetaben.

The synthesis of a series of analogues in which the carboxylic acid group of cetaben is replaced by carboxylate ester, carboxamide, or a variety of other substituent groups is described. Also reported are the syntheses of analogues in which the phenyl ring of cetaben is either modified by the presence of additional substituents or replaced entirely by another moiety. Structure-activity relationships of these compounds both as hypolipidemic agents and as inhibitors of the enzyme fatty acyl-CoA:cholesterol acyltransferase (ACAT) are discussed. Analogue syntheses designed to produce compounds that would be better absorbed orally than cetaben failed to yield any congeners of enhanced biological activity. In contrast, analogue syntheses directed toward non carboxylic acids of similar acidity to cetaben produced a very active class of sulfonamides.

4-Aminobenzoic Acid↗

Potential antiatherosclerotic agents. 4. [(Functionalized-alkyl)amino]benzoic acid analogues of cetaben.

The synthesis of a series of analogues in which the alkyl group of cetaben is substituted with various functional groups or replaced entirely by a functionalized alkanoyl moiety is described. Also reported are the syntheses of branched-chain (alkylamino)benzoic acids in which branching is specifically localized at the terminus of the alkyl chain. Structure-activity relationships of these compounds, both as hypolipidemic agents and as inhibitors of the enzyme fatty acyl-CoA:cholesterol acyltransferase (ACAT), are discussed. Certain compounds were specifically synthesized to test the hypothesis that groups located near the terminus of the alkyl chain of cetaben might retard metabolic degradation of the molecule and, thus, enhance biological activity. Some of these (48-50) were found to be the most active analogues synthesized.

4-Aminobenzoic Acid↗