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K Doyle

Publications and source records attributed to K Doyle.

33 records · Page 2Linked to original sources

Interactions of HTF4 with E-box motifs in the long terminal repeat of human immunodeficiency virus type 1.

We have identified three consensus E-box motifs in the long terminal repeat of human immunodeficiency virus type 1. One of these E boxes interacts selectively with representative members of the class A group of basic helix-loop-helix proteins, including HTF4, E47, and their heterodimers. Our analyses implicate the helix-loop-helix proteins in regulation of human immunodeficiency virus type 1 gene expression.

Basic Helix-Loop-Helix Proteins↗

Cardiac-derived neutrophil chemotactic factors: detection in coronary sinus effluents of patients undergoing myocardial revascularization.

Recent studies from our laboratory have demonstrated the release of neutrophil chemotactic factors from isolated rabbit hearts perfused with cardioplegic solutions and from ischemic dog hearts after coronary artery occlusion for 1 hour. On the basis of these animal studies, a test is now made of the hypothesis that neutrophil chemotactic factors are released by myocardial tissues of patients who undergo surgical myocardial revascularization. By means of modified Boyden chambers, the levels of neutrophil chemotactic factors were measured in effluent collected from the coronary sinuses of six patients undergoing cardiopulmonary bypass during periods of cold cardioplegia. Plain cardioplegic solutions were also analyzed. The standard formyl-methionyl-leucyl-phenylalanine, a stimulant of neutrophil recruitment, was used as a positive control solution. Results indicated the recovery of significantly high levels of neutrophil chemotactic factors in patient samples (i.e., 128% +/- 19% of formyl-methionyl-leucyl-phenylalanine) compared with control plain cardioplegic solution (less than 5% of formyl-methionyl-leucyl-phenylalanine) (p less than 0.0001). A standard checkerboard analysis indicated that the observed activity is chemotactic (i.e., directed migration) and not chemokinetic (i.e., random migration). This study also showed that these factors are proteins of a molecular weight in excess of 300 kd and exhibit in vivo activity by recruiting neutrophils into rabbit skin. The absence of immune cell-derived chemoattractants such as interleukin-1 and leukotriene B4 in these coronary sinus effluents suggests that the observed chemotactic activity is cardiac derived. Results of this investigation therefore demonstrate the release of neutrophil chemotactic factors by ischemic human hearts during cardiopulmonary bypass.

Cardioplegic Solutions↗

Pharmacologic antagonism of thromboxane A2 receptors by trimetoquinol analogs in vitro and in vivo.

Although (-)-(S)-trimetoquinol [1-(3,4,5-trimethoxy-benzyl)- 6,7-dihydroxy-1,2,3,4-tetrahydroisoquinoline; TMQ] is recognized as a potent bronchodilator, (+)-(R)-TMQ is a selective antagonist of human platelet aggregation and serotonin secretion induced by thromboxane A2 (TXA2) agonists. To confirm the pharmacological actions of TMQ analogs, the interaction of the drugs with TXA2 receptors was examined in human platelets and in a mouse sudden death model. The inhibitory potencies of TMQ analogs (pIC50 values) for displacement of [3H]SQ 29,548 binding to platelets showed excellent correlation with the respective pIC50 (-log IC50) values for U46619-induced aggregation (r = 0.99, P less than 0.01) and serotonin secretion (r = 0.99, P less than 0.01) in human platelet-rich plasma and for whole blood aggregation (r = 0.99, P less than 0.01). In each system, the rank order of inhibitory potencies was rac-iodoTMQ greater than or equal to (+)-(R)-TMQ greater than rac-TMQ much greater than (-)-(S)-TMQ. Antithrombotic effects of TMQ analogs were evaluated in a mouse sudden death model. In vivo antithrombotic potencies of these compounds were consistent with the in vitro potencies as TXA2 receptor antagonists in platelet systems. Administration of rac-iodoTMQ, (+)-(R)-TMQ and rac-TMQ 15 min before the injection of U46619 (800 micrograms/kg, iv) protected mice against U46619-induced sudden death. On the other hand, (-)-(S)-TMQ did not protect animals against death. Protection of U46619-induced cardiopulmonary thrombosis by TMQ analogs was seen at doses of 3-100 mg/kg.(ABSTRACT TRUNCATED AT 250 WORDS)

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5↗

Ethanol-induced alterations in erythrocyte membrane phospholipid composition.

Ethanol's effects on erythrocyte membrane lipid composition were examined in male squirrel monkeys divided into three groups receiving three different regimens: Controls were fed a chemically defined liquid diet, and low and high ethanol primates were given diets with vodka substituted isocalorically for 12% and 24% of calories, respectively. After membrane lipid extraction, phospholipid mass, class composition, and fatty acid profiles were measured in each group. Although there were no differences in the total phospholipid mass, the low ethanol primates had significantly elevated phosphatidylethanolamine in their membranes as compared with the other monkeys. Membrane phospholipid fatty acid profiles showed no differences among the three groups. There were also no differences in the animals' plasma liver enzymes. Results of this investigation suggest that, despite the absence of nutritional deficiencies and liver malfunction, low amounts (12%) of dietary ethanol cause elevations in phosphatidylethanolamine that may represent a specific change in the membrane's inner leaflet where this phospholipid is located. These results may have clinical significance because ethanol-induced modifications in membrane lipids may contribute to alterations in fluidity and lead to pathologic changes in function.

Animals↗

Alterations in complete blood counts due to low to moderately high levels of dietary ethanol.

The effects of low to moderately high levels of dietary ethanol on complete blood counts over a 40-month period were examined in 15 primates divided into 3 treatment groups: Controls fed an isocaloric chemically defined liquid diet, and Low and High animals given diet with vodka substituted isocalorically for carbohydrate at 12 and 24% of total calories. Significant decreases (P less than 0.05) were noted in the High Ethanol group's while blood cell and red blood cell counts, as well as significant increases in their mean corpuscular volume and mean corpuscular hemoglobin. By contrast, a significant increase was seen in the white blood cell counts of animals receiving the 12% (Low) level of dietary ethanol. Analysis of plasma enzymes revealed no differences between the 3 groups in liver function. Results of this study suggest that moderately high levels (24%) of dietary ethanol in the absence of liver malfunction and nutritional deficiencies cause significant alterations in complete blood counts, while low levels (12%) of dietary ethanol cause increases in circulating white blood cell levels. Additional research is needed to determine why different doses of dietary ethanol have opposite effects on the white blood cell population.

Animals↗

Histamine type I (H1) receptor radioligand binding studies on normal T cell subsets, B cells, and monocytes.

We have documented a single, specific binding site for [3H]pyrilamine on normal human T helper, T suppressor, B cells, and monocytes. The binding of the radioligand to its receptor is reversible with cold H1 antagonist, saturates at 40 to 60 nM, and binding equilibrium is achieved in 2 to 4 min. Using a computer program (Ligand), we calculated the dissociation constants, binding capacities, and numbers of receptors per cell for each of the different cell types. Monocytes were found to have the highest affinity (mean KD +/- SD; 3.8 +/- 4.8 nM) for [3H]pyrilamine, followed by T helper cells (KD = 5.0 +/- 6.6 nM), B cells (KD = 14.2 +/- 2.0 nM), and T suppressor cells (KD = 44.6 +/- 49.4 nM). T suppressor cells were found to express the higher number of H1 receptors per cell (35,697 +/- 15,468), followed by B cells (10,732 +/- 9060), T helper cells (6838 +/- 8167), and monocytes (5589 +/- 2266). The kinetics of binding for this radioligand was carried out in resting and mitogen-stimulated T cells over a 48-hr period. We found that the binding affinity for [3H]pyrilamine increased over the 48-hr period, whereas the number of receptors per T cell was essentially unchanged. In contrast, T cells stimulated with Con A or PHA were shown to have a greater than fourfold increase in the number of receptors per cell, whereas the binding affinity for [3H]pyrilamine decreased over the 48-hr period. Preincubation of T cells with unlabeled histamine before carrying out the radioligand binding assay resulted in a decrease in the binding affinity of the receptors to [3H]pyrilamine, but the number of receptors per cell did not change significantly. Although the function of H1 receptors on T cells, B cells, and monocytes has not been completely defined, this receptor has the potential of playing an important role in modulating the immune response.

B-Lymphocytes↗

Oral nicotine induces an atherogenic lipoprotein profile.

Male squirrel monkeys were used to evaluate the effect of chronic oral nicotine intake on lipoprotein composition and metabolism. Eighteen yearling monkeys were divided into two groups: 1) Controls fed isocaloric liquid diet; and 2) Nicotine primates given liquid diet supplemented with nicotine at 6 mg/kg body wt/day. Animals were weighed biweekly, plasma lipid, glucose, and lipoprotein parameters were measured monthly, and detailed lipoprotein composition, along with postheparin plasma lipoprotein lipase (LPL) and hepatic triglyceride lipase (HTGL) activity, was assessed after 24 months of treatment. Although nicotine had no effect on plasma triglyceride or high density lipoproteins (HDL), the alkaloid caused a significant increase in plasma glucose, cholesterol, and low density lipoprotein (LDL) cholesterol plus protein while simultaneously reducing the HDL cholesterol/plasma cholesterol ratio and animal body weight. Levels of LDL precursors, very low density (VLDL) and intermediate density (IDL) lipoproteins, were also lower in nicotine-treated primates while total postheparin lipase (LPL + HTGL) activity was significantly elevated. Our data indicate that long-term consumption of oral nicotine induces an atherogenic lipoprotein profile (increases LDL, decreases HDL/total cholesterol ratio) by enhancing lipolytic conversion of VLDL to LDL. These results have important health implications for humans who use smokeless tobacco products or chew nicotine gum for prolonged periods.

Administration, Oral↗

Ethanol induced alterations in low and high density lipoproteins.

Male squirrel monkeys fed ethanol (ETOH) at variable doses were used to determine whether alcohol modifies levels of plasma low density lipoproteins (LDL) in addition to increasing high density lipoproteins (HDL). Because we earlier showed that high alcohol consumption enhances lipoprotein cholesterol synthesis, experiments were also performed to further assess whether ETOH alters lipoprotein clearance and plasma transfer processes in vivo. Monkeys were divided into three groups: Controls fed isocaloric liquid diet; and Low and High ETOH animals fed liquid diet with vodka substituted isocalorically for carbohydrate at 12 and 24 of the calories, respectively. High ETOH primates had significantly more LDL lipid and protein while serum glutamate oxaloacetate transaminase was similar for the three groups. Although removal of 3H LDL cholesteryl ester (CE) from the plasma compartment was not affected by dietary ETOH, transfer of LDL CE to HDL was impaired in the High ETOH group suggesting a mechanism for the enlarged circulating pool of LDL. Transfer of 14C HDL CE to lower density lipoproteins was similar for the three groups. However, ETOH at both doses delayed clearance of radiolabeled HDL CE from circulation. Thus besides enhancing synthesis of lipoproteins, ETOH at a moderately high dose (24% of calories) influences lipoprotein levels in primates by modifying lipid transfer processes (LDL) as well as by altering clearance (HDL) without adversely affecting liver function.

Animals↗

Ethanol enhances de novo synthesis of high density lipoprotein cholesterol.

Male squirrel monkeys fed ethanol at variable doses were used to assess whether alcohol enhances de novo synthesis of high density lipoprotein (HDL) cholesterol in vivo. Monkeys were divided into three groups: 1) Controls fed isocaloric liquid diet; 2) Low Ethanol monkeys fed liquid diet with vodka substituted isocalorically for carbohydrate at 12% of calories; and 3) High Ethanol animals fed diet plus vodka at 24% of calories. High Ethanol primates had significantly higher levels of HDL nonesterified cholesterol than Control and Low Ethanol animals while serum glutamate oxaloacetate transaminase was similar for the three treatments. There were no significant differences between the groups in HDL cholesteryl ester mass or specific activity following intravenous injection of labeled mevalonolactone. By contrast, High Ethanol monkeys had significantly greater HDL nonesterified cholesterol specific activity with approximately 60% of the radioactivity distributed in the HDL3 subfraction. This report provides the first experimental evidence that ethanol at 24% of calories induces elevations in HDL cholesterol in primates through enhanced de novo synthesis without adverse effects on liver function.

Animals↗

An evaluation of detoxification as an initial step in the treatment of heroin addiction.

Of 802 voluntary patients admitted to the detoxification unit of a comprehensive treatment system, 69% completed detoxification but only 9.6% of thest patients sought long-term treatment. The demographic profile of detoxification patients differed somewhat from that of patients in long-term treatment. The authors suggest that new approaches, including legal pressure, are needed to induce detoxification patients to accept prolonged therapy.

Heroin Dependence↗