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Biomedical subjects

E Ferguson

Publications and source records attributed to E Ferguson.

At least 55 records · Page 3Linked to original sources

Phosphonates and phosphinates: novel leaving groups for benzisothiazolone inhibitors of human leukocyte elastase.

A novel class of alkyl and aryl phosphonate and phosphinate acid-based leaving groups has been developed for utilization in the synthesis of benzoisothiazolone (BIT) inhibitors of human leukocyte elastase (HLE). A number of BITs were synthesized with phosphonate and phosphinate acid-based leaving groups and were found to be potent inhibitors of HLE. Compound 3c with a diethyl phosphonate leaving group is the most potent inhibitor synthesized in this series with Ki* = 0.035 nM and ED50 = 2.0 mg/kg.

Humans↗

Acyl-coenzyme A:cholesterol-acyltransferase (ACAT) inhibitors modulate monocyte adhesion to aortic endothelial cells.

Increased monocyte adhesion to aortic endothelium is observed in the pathogenesis of atherosclerosis. The role of endothelial acyl-coenzyme A:cholesterol-acyltransferase (ACAT) in the regulation of monocyte adhesion is not known. To examine the potential role of this enzyme in monocyte adhesion, a specific ACAT inhibitor, CI-976, was utilized. Although the basal adhesion of U937 monocytic cells to porcine aortic endothelial cells was low, treatment of the endothelial cells with lipopolysaccharide (LPS) markedly increased monocyte adhesion. Monocyte adhesion to LPS-treated endothelial cells was markedly inhibited by CI-976 treatment of the endothelial cells. Similarly, another ACAT inhibitor, PD 132301-2, whose structure is distinct from CI-976, also decreased monocyte adhesion. CI-976 treatment of endothelial cells also decreased endothelial cell ACAT activity. Since leukotriene B4 (LTB4) is known to promote leukocyte-endothelial cell adhesion, endothelial cell production of this leukotriene was examined after incubation with CI-976. CI-976 treatment markedly decreased LTB4 synthesis. Exogenous LTB4 addition to CI-976 treated cells reversed the effects of this compound on monocyte adhesion. These data demonstrate that ACAT inhibitors decrease monocyte adhesion to endothelial cells. Similar mechanisms may contribute to antiatherosclerotic effects of ACAT inhibitors in vivo.

Anilides↗

Canine atopic disease: the prevalence of positive intradermal skin tests at two sites in the north and south of Great Britain.

Results of intradermal skin test responses to the same panel of 53 allergens were compared in 118 dogs with atopic disease presented at two geographical centres, Edinburgh (87 cases) and London (31 cases). The allergens most commonly positive at both centres were human dander and Dermatophagoides farinae, but positive tests to all of the allergens used occurred in at least one case. The mean number of allergens to which positive tests resulted in atopic dogs was 5.126 (Edinburgh) and 5.129 (London). The majority of animals were sensitive to allergens from more than one group. A significantly higher number of positive reactors to house dust allergen was observed at London than at Edinburgh (P < 0.05), while a significantly higher number of positive reactions to grass pollens was detected at Edinburgh than in London (P < 0.05). Sensitivity to Dermatophagoides pteronyssinus, in the absence of sensitivity to D. farinae, was uncommon and therefore both of these mite allergens should be incorporated in intradermal skin testing panels in Great Britain.

Animals↗

A measure of knowledge and confidence in relation to HIV and AIDS: reliability and validity.

Knowledge of HIV and AIDS is widely seen as an important determinant of anxiety about such infection in health care workers. However, existing measures of this knowledge suffer from a number of methodological problems and few demonstrate adequate reliability and validity. This paper documents the development of a new measure detailing its reliability and validity. Knowledge, and also confidence in knowledge, were assessed across seven domains of relevant information (e.g. epidemiology, personal risk, symptomatology) in one non-expert group (non-medical undergraduate psychologist) and in three groups with greater expertise (nursing students and third year and final year medical students). The measure was shown to be reliable and to discriminate between the four groups in a manner consistent with the level of education received by each group and in terms of both the scale scores for the seven domains and the individual items. In general, final year medical students were shown to be more knowledgeable, and more confident in their knowledge, than the other groups. The non-medical undergraduates showed the lowest level of knowledge. In general, the groups appeared under-confident in their knowledge about HIV/AIDS. This was interpreted in terms of members of these groups exhibiting caution and the perceived fluctuating nature of the HIV knowledge base. Implications for the training of health care workers in relation to HIV/AIDS are discussed.

Adult↗

Apolipoprotein B and E basic amino acid clusters influence low-density lipoprotein association with lipoprotein lipase anchored to the subendothelial matrix.

Lipoprotein accumulation in the subendothelial matrix is an important step in atherogenesis. We have previously shown that addition of lipoprotein lipase (LPL) markedly increased binding of apolipoprotein B (apoB)-containing lipoproteins to an endothelial cell-derived matrix, and this enhanced lipoprotein binding was inhibited by apoE. In the present studies we examined the role of various regions of apoB in the binding of LDL to LPL-containing endothelial cell matrix and the ability of various apoE domains to decrease lipoprotein retention. We studied three apoB epitope-specific monoclonal antibodies for their ability to block the binding of 125I-LDL to LPL-containing matrix. Of these, monoclonal antibody 4G3, which recognizes an arginine-containing epitope in apoB, was the most effective in reducing LDL binding. Chemical modification of LDL apoB lysines or arginines markedly reduced the ability of the lipoprotein to block the binding of 125I-LDL to LPL-containing matrix, suggesting that apoB positively charged amino acids are involved in the interaction. Furthermore, polyarginine or polylysine markedly decreased 125I-LDL binding to LPL-containing matrix, whereas polyleucine was ineffective. These data suggest that apoB positively charged regions are important in LDL binding. To explore the role of charge modifications on apoE by single arginine-cysteine interchanges, we examined the effects of the three major human apoE isoforms (apoE2, apoE3, and apoE4). ApoE3 was the most effective in decreasing 125I-LDL retention, followed by apoE4; apoE2 was the least effective. Similarly, apoE2-containing HDL was much less effective than apoE3-containing HDL in decreasing 125I-LDL retention.(ABSTRACT TRUNCATED AT 250 WORDS)

Acetylation↗

Susceptibility of human LDL to oxidative modification. Effects of variations in beta-carotene concentration and oxygen tension.

Epidemiological studies suggest that beta-carotene supplementation may decrease atherosclerotic events. Because beta-carotene is transported in low-density lipoprotein (LDL), one mechanism by which this protective effect may occur is through direct inhibition of LDL oxidation. Addition of beta-carotene to LDL in vitro inhibits the susceptibility of LDL to oxidation. In contrast, we have shown that feeding large doses of beta-carotene results in beta-carotene-enriched plasma LDL (16- to 35-fold), but such LDL does not show increased resistance to oxidation. Potential criticisms of our initial study relate to the unique antioxidant properties of beta-carotene. Beta-Carotene provides better quenching of some free radicals, such as singlet oxygen, than others. Additionally, since beta-carotene can easily autooxidize, forming metabolites that can also generate free radicals, it has been argued that at sufficient concentrations in vivo the antioxidant effect of beta-carotene may be diminished. It has thus been suggested that in our initial study we may have failed to properly assess the unique antioxidant effects of beta-carotene by our selection of oxidizing conditions and/or failed to achieve antioxidant activity because of excessive enrichment of LDL with beta-carotene. We now report the effects of feeding lower doses of beta-carotene on the susceptibility of LDL to oxidation and test whether any antioxidant activity of beta-carotene can be detected when different modes of initiating oxidation are used. Because the antioxidant activity of beta-carotene is reputedly most pronounced in low-oxygen environments, we also investigated its effect on LDL oxidation under conditions of reduced oxygen tension.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Lipoprotein lipase facilitates very low density lipoprotein binding to the subendothelial cell matrix.

The effect of bovine lipoprotein lipase (LPL) on very low density lipoprotein (VLDL) binding to subendothelial matrix was studied. Without LPL, VLDL bound poorly to the matrix. However, decreasing NaCl or elevating Ca++ concentration increased matrix VLDL binding. With LPL, VLDL binding was markedly increased. Since LPL is a normal constituent of the artery wall and is elevated in atherosclerotic lesions, we postulate two potential mechanisms for the involvement of VLDL and LPL in atherogenesis. First, VLDL acquisition is attenuated by the increased matrix LPL content in the developing atheroma. Secondly, elevated plasma levels of VLDL (and VLDL remnants) such as in Type II or III dyslipidemia could enhance such interactions. These events likely accelerate the rate of atherosclerosis lesion development.

Animals↗

Apolipoprotein E modulates low density lipoprotein retention by lipoprotein lipase anchored to the subendothelial matrix.

Lipoprotein lipase (lipase), a key enzyme in lipoprotein triglyceride metabolism, has been shown to markedly increase low density lipoprotein (LDL) retention by subendothelial matrix. In the present study we assessed the role that lipoprotein and matrix components play in retention of LDL by lipase anchored to the subendothelial matrix. Lipase addition to subendothelial matrix increased LDL retention by 66-fold. Scatchard analysis of LDL binding to lipase-containing matrix yielded an association constant of 12 nM. Exogenous addition of the matrix components, heparan sulfate and dermatan sulfate (i.e. chondroitin sulfate B), reduced LDL retention by greater than 90%. These glycosaminoglycans (GAGs) also reduced lipolytic activity associated with the matrix, suggesting that lipase was released from its binding sites on the matrix. In contrast, other matrix components (collagen, fibronectin, vitronectin, and chondroitin sulfate A) neither affected LDL release nor matrix lipolytic activity. Thus, heparan sulfate and dermatan sulfate function to anchor lipase to the subendothelial cell matrix. The effects of apolipoprotein E (apoE) and apoA-I were also examined. Preincubation of the subendothelial matrix with apoE, followed by washing, did not affect subsequent lipase binding to the matrix nor its ability to retain LDL. However, the direct addition of apoE alone or in combination with phospholipid liposomes decreased lipase-mediated LDL retention in a concentration-dependent fashion. Addition of apoA-I had no effect. Thus, in these studies apoE functions to displace LDL bound to lipase, but not lipase anchored to the matrix. To further examine the physiologic implications of this process, we assessed the ability of human apoE-rich and apoE-poor high density lipoproteins (HDL) to displace LDL from matrix-anchored lipase. ApoE-rich HDL reduced LDL retention dramatically (86% at 2.5 micrograms/ml). In contrast, apoE-poor HDL, at the highest concentration evaluated (400 micrograms/ml), decreased LDL retention by only 32%. Overall, these data suggest apoE and specifically apoE-containing HDL reduce the lipase-mediated retention of LDL by subendothelial matrix. This observation, in part could explain the protective effects of apoE and apoE-containing HDL against atherosclerosis.

Animals↗

Determinants of peak flow rate among Hutterite farmers.

Observations from respiratory studies of over 1000 Hutterites and 200 control subjects indicated that the percent predicted peak flow rate values were 20% lower among Hutterites than control subjects. The purpose of this study was to determine if the decreased peak flow rate values among male Hutterites were a function of decreased airway patency or decreased respiratory muscle strength. Peak flow rate, muscle and lung function and the prevalence of respiratory symptomatology and disease were evaluated in 27 males from two Hutterite colonies. In one group almost all members consistently used masks while performing farming tasks, while 41% of members from the other colony used masks intermittently. Results suggest that peak flow rate values are decreased predominantly due to decreased airway patency associated with a higher prevalence of respiratory symptoms and disease and are not limited by respiratory muscle strength.

Adult↗

Lipoprotein lipase-mediated lipolysis of very low density lipoproteins increases monocyte adhesion to aortic endothelial cells.

Lipoprotein lipase (LPL) bound to vascular endothelial cells hydrolyses triglycerides in plasma lipoproteins. To explore the role of LPL in atherogenesis, the effect of LPL-mediated lipolysis of very low density lipoproteins (VLDL) on monocyte adhesion to endothelial cells was examined. Adhesion of U937 monocytes to porcine aortic endothelial cells that were incubated with VLDL and purified bovine milk LPL was markedly higher than endothelial cells that were incubated with VLDL alone. The increase in monocyte adhesion obtained with VLDL was dependent on the concentration of the lipoprotein, monocyte dose and time of incubation. The increase in adhesion correlated with generation of free fatty acids from the hydrolysis of triglycerides in VLDL by LPL. Furthermore, direct addition of oleic acid to endothelial cells also increased adhesion of monocytes. We postulate that LPL-derived lipolytic products increase monocyte adhesion to vascular endothelium and thereby promote atherogenesis.

Animals↗

Hepatic and nonhepatic sterol synthesis and tissue distribution following administration of a liver selective HMG-CoA reductase inhibitor, CI-981: comparison with selected HMG-CoA reductase inhibitors.

Since cholesterol biosynthesis is an integral part of cellular metabolism, several HMG-CoA reductase inhibitors were systematically analyzed in in vitro, ex vivo and in vivo sterol synthesis assays using [14C]acetate incorporation into digitonin precipitable sterols as a marker of cholesterol synthesis. Tissue distribution of radiolabeled CI-981 and lovastatin was also performed. In vitro, CI-981 and PD134967-15 were equipotent in liver, spleen, testis and adrenal, lovastatin was more potent in extrahepatic tissues than liver and BMY21950, pravastatin and PD135023-15 were more potent in liver than peripheral tissues. In ex vivo assays, all inhibitors except lovastatin preferentially inhibited liver sterol synthesis; however, pravastatin and BMY22089 were strikingly less potent in the liver. CI-981 inhibited sterol synthesis in vivo in the liver, spleen and adrenal while not affecting the testis, kidney, muscle and brain. Lovastatin inhibited sterol synthesis to a greater extent than CI-981 in the spleen, adrenal and kidney while pravastatin and BMY22089 primarily affected liver and kidney. The tissue distribution of radiolabeled CI-981 and lovastatin support the changes observed in tissue sterol synthesis. Thus, we conclude that a spectrum of liver selective HMG-CoA reductase inhibitors exist and that categorizing agents as liver selective is highly dependent upon method of analysis.

Animals↗

Noninvasive in vivo percutaneous absorption measurements using X-ray fluorescence.

X-ray fluorescence (XRF) has been used to determine in vivo the percutaneous absorption of 5-iodouracil (5IU) in dimethyl sulfoxide (DMSO) on female Sprague-Dawley rats. An average absorption rate constant of 122 +/- 34 micrograms/cm2-hr was obtained from the XRF measurements on four rats. A comparative study was performed with radiolabeled (125I) 5IU in which the absorption rate constant was determined to be 126 +/- 20 micrograms/cm2-hr. The XRF system described provides a simple, noninvasive means of measuring the percutaneous absorption rate of select compounds by the surface disappearance method.

Animals↗

The role of a saliva control clinic in the management of drooling.

This paper describes a saliva control clinic which has been established at the Royal Children's Hospital, Melbourne. A team involving two speech pathologists, a paediatrician, a plastic surgeon and a dentist has assessed and managed 68 young people over a period of 2 years. Treatment options have included behavioural programmes, trial of oral appliances, medication and surgery. This multidisciplinary approach has been useful in developing assessment techniques and formulating recommendations.

Adolescent↗

Vitreous replacement by gas as a therapeutic modality in bacterial endophthalmitis.

We investigated vitreous replacement by long-lasting gas in the management of severe Staphylococcus aureus endophthalmitis in 19 rabbits randomized for vitrectomy (9 animals) and for vitrectomy followed by replacement of the vitreous by a 20% perfluoropropane-80% air mixture (10 animals). Both groups received systemic antibiotics and achieved comparable intraocular antibiotic levels. Clinically and histopathologically, gas-filled eyes demonstrated less inflammation than did eyes without gas (P less than 0.01). Replacement of vitreous by gas offers an effective adjunct to vitrectomy by eliminating a culture medium, preventing vitreous abscess formation, enabling fundus visualization, and delaying the onset of retinal detachment.

Air↗

Dietary and mechanically induced rabbit iliac-femoral atherosclerotic lesions: a chemical and morphologic evaluation.

The effect of combining chronic endothelial injury and intermittent meal feeding of a high and low cholesterol, coconut oil, peanut oil diet on plama lipid and lipoprotein content and on the formation of atherosclerotic lesions within the iliac-femoral artery of rabbits was studied. Alternate feeding of a 1 or 0.1% cholesterol, 3% coconut oil, 3% peanut oil diet for 3 to 14 weeks resulted in a 4- to 11-fold increase in plasma cholesterol with 59 to 79% of the plasma cholesterol eluting in a molecular weight fraction comparable to human low density lipoproteins (LDL). In the iliac-femoral artery, an atherosclerotic intimal lesion with an average cross-sectional area of 0.452 mm2 was present in 98% of the animals. The lesion was typically eccentric in location and contained both superficial- and deep-intimal lipid-filled monocyte-macrophages, extracellular lipid, smooth muscle cells, and extracellular connective tissue matrix. The relative percent lipid composition of the iliac-femoral lesion was 62% cholesteryl ester, 21% free cholesterol, and 17% phospholipid. Thus, we conclude that the combination of meal feeding a cholesterol/fat diet, dietary regimen and chronic mild endothelial injury in the rabbit results in (1) a diet-induced hypercholesterolemia in which LDL appear to be the predominant lipoprotein; and (2) a lesion within the iliac-femoral artery comparable in histologic and chemical composition to a human fatty streak.

Animals↗

Inhibitors of cholesterol biosynthesis. 3. Tetrahydro-4-hydroxy-6-[2-(1H-pyrrol-1-yl)ethyl]-2H-pyran-2-one inhibitors of HMG-CoA reductase. 2. Effects of introducing substituents at positions three and four of the pyrrole nucleus.

A series of trans-tetrahydro-4-hydroxy-6-[2-(2,3,4,5-substituted-1H-pyrrol-1-yl) ethyl]-2H-pyran-2-ones and their dihydroxy acids were prepared and tested for their ability to inhibit the enzyme HMG-CoA reductase in vitro. Inhibitory potency was found to increase substantially when substituents were introduced into positions three and four of the pyrrole ring. A systematic exploration of structure-activity relationships at these two positions led to the identification of a compound ((+)-33,(+)-(4R)-trans-2-(4-fluororphenyl)-5-(1-methylethyl)-N,3- diphenyl-1- [(tetrahydro-4-hydroxy-6-oxo-2H-pyran-2-yl)ethyl]-1H-pyrrole-4- carboxamide) with five times the inhibitory potency of the fungal metabolite compactin.

Animals↗