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Biomedical subjects

D A Handley

Publications and source records attributed to D A Handley.

At least 55 records · Page 3Linked to original sources

Evaluation of the effect of a platelet activating factor antagonist on platelet activating factor and Ascaris antigen-induced airway responses in rhesus monkeys.

An acute airway response to aerosolized platelet activating factor (PAF) can be induced in certain rhesus monkeys. This PAF airway response is completely inhibited by the PAF antagonist, SRI 63-441, in normal monkeys. After the completion of these studies showing inhibition of the PAF airway response, we evaluated whether the PAF antagonist could inhibit three types of acute IgE-mediated airway responses to Ascaris suum (A) in rhesus monkeys. The A aerosol test protocols used the following: a single A aerosol challenge system; a threshold dose of A challenge system, which consists of increasing A aerosol exposure until an airway response occurs; and two sequential A challenges in which the response to the second A challenge always occurs if there is a response to the first A challenge. When SRI 63-441 was tested as a potential antagonist of the A airway response in any of these three systems, no inhibition was shown.

Aerosols↗

Inhibition of PAF-induced systemic responses in the rat, guinea pig, dog and primate by the receptor antagonist SRI 63-441.

Systemic administration of synthetic PAF produces a number of dose-dependent circulatory effects in a variety of species. We have evaluated a novel PAF antagonist, SRI 63-441, for its ability to inhibit PAF-induced effects in the rat, guinea pig, dog and primate. In the rat, a 100 ng kg-1 i.v. PAF challenge produced a (mean +/- 1 S.D.) 39 +/- 5% decrease in carotid blood pressure. Prior injection of SRI 63-441 inhibited this hypotensive response in a dose-dependent manner, with an ED50 of 0.15 mg kg-1 i.v. In the guinea pig, PAF at 100 ng kg-1 elicited a 50 +/- 8% increase in hematocrit and a 50 +/- 11% elevation in bronchial resistance. The ED50 values for inhibition by SRI 63-441 of these two physiological parameters were 0.012 mg kg-1 and 0.035 mg kg-1 i.a., respectively. Dogs challenged with 1.5 micrograms kg-1 PAF i.v. exhibited 28.7 +/- 6.5% increase in hematocrit 10 min after injection. The ED50 value for SRI 63-441 inhibition of hemoconcentration in the dog was 0.18 mg kg-1 i.v. In the primate model of PAF-induced hemoconcentration, controls responded to 3.5 micrograms kg-1 i.v. PAF with a 30 +/- 6% increase in hematocrit. Using the primates in a cross-over design, the ED50 of SRI 63-441 was 0.11 mg kg-1 i.v. At this ED50 value, the ratio of nmol kg-1 PAF used versus nmol kg-1 antagonist is approximately 1:25. The effectiveness of SRI 63-441 in these models suggest potential clinical applications in disease states involving hyperpermeability and pulmonary dysfunction.

Animals↗

Fibers, crystals, and other forms of HbS polymers in deoxygenated sickle erythrocytes.

We have examined by electron microscopy the formation of fibers and crystals from sickle hemoglobin within sickle erythrocytes following deoxygenation during capillary storage from 1 to 132 days. Intracellular fibers were found on the first day and throughout the period of study. The fibers exhibited a diameter (mean +/- SD) of 17.4 +/- 0.62 nm and were aligned in the cell with a fiber-to-fiber spacing of 18.6 nm (x-axis) by 22.7 nm (y-axis). Between 65 and 132 days, extracellular hemoglobin crystals developed, with a lattice periodicity of 9.63 +/- 0.6 nm. Fibers and crystals coexist as separate structures. These results suggest that crystal formation upon storage of packed deoxygenated sickle erythrocytes may proceed via a phase of fiber dissolution followed by hemoglobin reassembly into extracellular crystals, rather than by a progressive alignment and direct fusion of existing fibers.

Anemia, Sickle Cell↗

Vascular responses of platelet-activating factor in the Cebus apella primate and inhibitory profiles of antagonists SRI 63-072 and SRI 63-119.

We have evaluated several effects of intravenous administration of synthetic platelet-activating factor (PAF) in the non-human primate Cebus apella. Parameters measured were hemoconcentration (monitored by changes in hematocrit), thrombocytopenia (platelet counts), leukopenia (loss of buffy coat), bronchoconstriction (increased airway resistance to fixed airway ventilation), thromboxane A2 production (radioimmunoassay to thromboxane B2) and in vitro aggregation responses of platelets in platelet-rich plasma. Cebus platelets were refractory to PAF-induced aggregation (up to 50 microM) and there was no evidence of thrombocytopenia, elevated thromboxane B2 levels, loss of buffy coat or bronchoconstriction following systemic PAF injection. Animals exhibited reproducible but varying sensitivities to PAF-induced hemoconcentration, where 3.5-30 micrograms/kg PAF (6.6-57 nmol/kg) was required to produce 28-32% increased hematocrit range for the colony. Hemoconcentration induced by PAF in baboons and rhesus occurred at similar doses, suggesting comparable sensitivity. Prior administration of PAF receptor antagonists SRI 63-072 or SRI 63-119 at 3 mg/kg inhibited cebus hemoconcentration responses to 3.5 micrograms/kg PAF by 96% and 100%, respectively. The ED50 values were 0.95 and 0.60 mg/kg, respectively. These results suggest that the cebus exhibits a reproducible hemoconcentration effect to PAF and that these vascular responses can be inhibited by a PAF receptor antagonist.

Animals↗

Inhibition and reversal of endotoxin-, aggregated IgG- and paf-induced hypotension in the rat by SRI 63-072, a paf receptor antagonist.

Platelet activating factor (paf) given intravenously produces systemic hypotension in the rat. Similar effects can be induced using endotoxin or heat-aggregated IgG challenges, which are thought to involve endogenous paf release. Extending this concept, we have examined the ability of the paf antagonist SRI 63-072 to inhibit or reverse systemic hypotension induced with paf, heat-aggregated IgG or endotoxin 0111-B4 in rats. At 100 ng kg-1 paf, there occurred a 38.6 +/- 5.1% decrease in carotid mean arterial pressure (MAP) followed by a 3.2 +/- 0.7 min recovery period (RP) to return to normal pressure values. The ED50 of SRI 63-072 was 0.16 mg kg-1 i.v. (MAP) and 0.25 mg kg-1 (RP) when given 1-5 min before the paf challenge. Endotoxin (15 mg kg-1 i.v.) produced a hypotensive response (54 +/- 8% decrease in MAP) and a corresponding 80% decrease in mesenteric artery blood flow. When given 2-8 min after endotoxin, 1.0 mg kg-1 i.v. SRI 63-072 totally restored blood pressure and artery blood flow. SRI 63-072 similarly reversed heat-aggregated IgG (10 mg kg-1) induced reduction of MAP, with an ED50 of 0.05 mg kg-1 i.v. The observations that SRI 63-072 can inhibit or reverse systemic vascular effects produced from paf and other provocators of endogenous paf release strongly implicates paf as a common final mediator of hypotension and shock. As SRI 63-072 is a competitive receptor antagonist, the hypotensive effects of these provocators appear to be mediated by vascular receptors for paf.

Animals↗

Evidence for distinct systemic extravasation effects of platelet activating factor, leukotrienes B4, C4, D4 and histamine in the guinea pig.

The relative potencies of platelet-activating factor (PAF), leukotrienes B4 (LTB4), C4 (LTC4), D4 (LTD4) and histamine to induce hemoconcentration (HC) were evaluated in the guinea pig. The maximal hematocrit increase (MHI) from PAF, LTD4 and histamine occurred 5-7 min after i.v. injection, whereas the MHI of LTC4 occurred 13-15 min after injection. LTB4 (2.97-5.95 nmol kg-1) did not produce HC. The magnitude of PAF-induced MHI was 2-fold that of LTC4 or LTD4, regardless of the dose of leukotrienes used. The doses (nmol kg-1) needed to produce 30% HC were: 0.14-PAF, 0.71-LTD4 and 3.37-LTC4 and 2,400 histamine. The HC effects of LTD4 were markedly reduced by prior administration of FPL-55712. However, neither LTC4 or LTD4 HC effects were significantly reduced by prior i.v. injection of CV-3988 (3.4 mg kg-1), a competitive receptor antagonist to PAF which is 98% effective in abolishing HC response to 0.14 nmol kg-1 PAF. Diphenhydramine abolished histamine-induced hemoconcentration but was without effect on PAF or LTD4. These results suggest that the responses of PAF, leukotrienes and histamine differ in their potency and may involve separate vascular recognition sites related to acute increases in vascular permeability.

Animals↗

Interleukin 1 induces endothelial cell procoagulant while suppressing cell-surface anticoagulant activity.

Previous studies demonstrated that endothelial cells participate actively in both anticoagulant and procoagulant reactions. Although anticoagulant mechanisms predominate on the surface of quiescent endothelial cells, perturbed endothelial cells can promote coagulation through the coordinated induction of procoagulant activity and suppression of anticoagulant mechanisms. Purified recombinant interleukin 1 was infused intravenously into rabbits and coagulant properties of the native aortic endothelium were subsequently studied. Interleukin 1 infusion resulted in a time- and dose-dependent induction of the procoagulant cofactor tissue factor, while concomitantly blocking the protein C anticoagulant pathway. Tissue factor activity increased greater than 10-fold by 3-5 hr after the infusion, while endothelial cell-dependent thrombin-mediated protein C activation decreased by 72% and assembly of functional activated protein C-protein S complex on the vessel surface was decreased by greater than 90%. Scanning electron microscopy of major arteries demonstrated fibrin strands closely associated with the luminal endothelial cell surface with a predilection for bifurcations. Interleukin 1, a mediator of the inflammatory response, can shift the balance of procoagulant and anticoagulant reactions on the endothelium unidirectionally favoring clot formation. The surface of perturbed endothelium can thus provide a template, facilitating the development of a prethrombotic state, and provides a model for the early stages of thrombosis.

Animals↗

Stimulation of aortic smooth muscle cell mitogenesis by serotonin.

Bovine aortic smooth muscle cells in vitro responded to 1 nM to 10 microM serotonin with increased incorporation of [3H]thymidine into DNA. The mitogenic effect of serotonin was half-maximal at 80 nM and maximal above 1 microM. At a concentration of 1 microM, serotonin stimulated smooth muscle cell mitogenesis to the same extent as human platelet-derived growth factor (PDGF) at 12 ng/ml. Tryptamine was approximately 1/10th as potent as serotonin as a mitogen for smooth muscle cells. Other indoles that are structurally related to serotonin (D- and L-tryptophan, 5-hydroxy-L-tryptophan, N-acetyl-5-hydroxytryptamine, melatonin, 5-hydroxyindoleacetic acid, and 5-hydroxytryptophol) and quipazine were inactive. The stimulatory effect of serotonin on smooth muscle cell DNA synthesis required prolonged (20-24 hr) exposure to the agonist and was attenuated in the presence of serotonin D receptor antagonists. When smooth muscle cells were incubated with submaximal concentrations of serotonin and PDGF, synergistic rather than additive mitogenic responses were observed. These data indicate that serotonin has a significant mitogenic effect on smooth muscle cells in vitro, which appears to be mediated by specific plasma membrane receptors.

Animals↗

Suppression of rat carotid lesion development by the calcium channel blocker PN 200-110.

Balloon catheter damage of the rat carotid artery endothelium results in an extensive and reproducible neointimal lesion composed of smooth muscle cells and connective matrix. The authors have examined two calcium channel blockers, PN 200-110 and PY 108-068, for their ability to inhibit neointimal lesion development in the rat carotid model. When given subcutaneously (1.0 mg/kg day) both compounds produced rapidly acting and long-lasting hypotension, reducing blood pressure 25-29%. At this dose given daily, PN 200-110 reduced lesion cross-sectional area by 44%, compared with only 25% seen by PY 108-068, which suggests that the antiatherosclerotic effect may not be related to lowering of blood pressure. Furthermore, PN 200-110 did not reduce the extent of platelet deposition (compared with controls) occurring at the denuded vessel surface 1 hour or 24 hours after balloon catheterization, which indicates that the inhibition of lesion development may not reflect an antiplatelet mechanism. The observed inhibition by PN 200-110 may relate to mitogen responses of the smooth muscle cell in the vessel wall (migration and proliferation) involved in lesion progression after endothelial damage.

Angioplasty, Balloon↗

Ultrastructural studies of endothelial and platelet receptor binding of thrombin-colloidal gold probes.

Endothelial cells and platelets are reported to have receptors for alpha-thrombin. To visualize the binding of alpha-thrombin to these cells, we developed a method to label thrombin with colloidal gold. Formed by electrostatic adsorption of thrombin to the negatively charged gold, the resulting probe is stable for weeks and consists of approximately 30 thrombin molecules adsorbed to each 16.5 nm gold particle. The probe retained about 10% of the enzymatic activity (fibrinogen clotting) of the unlabeled native thrombin and 20% of the ability of the native thrombin to aggregate platelets in platelet-rich plasma (PRP). In PRP, approximately 90% of the observed probes were bound to fibrin strands, with the remaining probes (650 per cell) attached to activated platelets. In contrast, washed, paraformaldehyde-fixed human platelets exhibited a marked increase in probe density (4900 per cell). Time-dependent ultrastructural studies (2-240 min) of binding of the thrombin-gold probe to confluent cultures of porcine aortic endothelial cells revealed that the initial binding (7300 probes per cell) occurred randomly at the cell surface. A limited number (25%) of the probes clustered at coated-pit regions and were internalized (60-240 min). The probe induced a limited amount of cellular retraction similar to that achieved with unlabeled thrombin. These results suggest that the thrombin-gold probe is suitable for investigations of the localization of thrombin receptors on cell surfaces and the interaction of thrombin with these receptors during thrombotic events.

Animals↗

Evidence for a direct effect on vascular permeability of platelet-activating factor induced hemoconcentration in the guinea pig.

The ability of synthetic platelet-activating factor (PAF) given intravenously to produce loss (extravasation) of protein rich plasma (resulting in hemoconcentration) has been examined using guinea pigs. Hemoconcentration induced by PAF was not prevented by prior administration of inhibitors of thromboxane synthetase (7-(3-pyridyl)heptanoic acid, UK-37,248-01), PGI2, aspirin, indomethacin or antiserum induced thrombocytopenia. Calcium channel blockers (nifedipine, verapamil, diethylamino octyltrimethoxybenzoate, diltiazem), antihistamines (pyrilamine, cimetidine, diphenhydramine), or the elevator of cAMP IBMX were ineffective in blocking PAF-induced hemoconcentration. In contrast, CV-3988, reported to be a specific antagonist to PAF, was 98% inhibitory of PAF extravasation when given i.a. at 3.5 mg/kg. The ED50 was 0.14 mg/kg I.A. and 15 mg/kg p.o. against 75 ng/kg PAF. These data suggest that PAF-induced hemoconcentration involves receptor mediated alterations of vascular permeability that are inhibited by a specific PAF antagonist.

Animals↗

Gold labeling of thrombin and ultrastructural studies of thrombin-gold conjugate binding by fibrin.

Monodispersed thrombin-gold (T-Au) conjugates were prepared by the absorption of a monolayer (3.8 nm thick) of human alpha-thrombin around individual monodispersed colloidal gold particles (16.5 +/- 1.8 nm). Like free molecular thrombin, T-Au conjugates can cause platelet aggregation, plasma clotting, and the release of fibrinopeptides A and B from fibrinogen. At the same thrombin concentration, T-Au conjugates have only one-tenth the fibrinogen-clotting activity of free thrombin and one-third the amidolytic activity of free thrombin. Hirudin can completely inhibit the fibrinogen-clotting activity of both T-Au conjugates and free thrombin, but can inhibit only half of the amidolytic activity of the conjugates. Diisopropyl fluorophosphonate can completely inhibit the fibrinogen-clotting activity and the amidolytic activity of both T-Au conjugates and free thrombin. T-Au conjugates were further characterized by studying the mechanism of their binding to fibrin and the location of the binding site on fibrin. The results of electron microscopic studies showed that T-Au conjugates, but not albumin-Au conjugates, are bound by fibrin. Increasing T-Au conjugate concentrations are associated with an increase in the number of T-Au conjugates binding to fibrin. At 0.1 microM thrombin, 73% of the T-Au conjugates are bound to branch points of the fibrin network with 27% of the T-Au conjugates present in the fibrin strands. At higher thrombin concentration (e.g., 0.5 microM) the percentage of T-Au conjugates bound to locations other than branch points increases to 62%.(ABSTRACT TRUNCATED AT 250 WORDS)

Binding Sites↗

Evaluation of dose and route effects of platelet activating factor-induced extravasation in the guinea pig.

Platelet-activating factor (PAF) is a naturally occurring lipid that is reported to induce vessel hyperpermeability leading to loss of protein-rich plasma (extravasation). We have quantitated the systemic extravasation effects of synthetic PAF in the guinea pig by monitoring increases in hematocrit. When given intravenously (10-170 ng/kg), PAF produced dose-dependent increases in hematocrit, with maximal hemoconcentration developing in 5-7 min. In leukopenic animals the expected hematocrit increase was reduced by 57%. PAF given intra-arterially produced the dose-dependent changes in hematocrit similar to the intravenous effects of PAF. However, PAF given intraperitoneally (10-2500 micrograms/kg) was 800-1100-fold less effective than the other routes and hemoconcentration continued for 30-45 min until a maximal hematocrit was observed. These results show that PAF may markedly influence extravasation of plasma in a dose and route-dependent manner.

Animals↗

Effect of platelet activating factor on endothelial permeability to plasma macromolecules.

We have examined the effect of intrajugular administration of platelet activating factor (PAF-C16) on vascular permeability in the guinea pig. To examine the loss of selective endothelial permeability, the extravasative effect of PAF was assessed by monitoring hemoconcentration and the plasma loss of 125I-albumin (6.7 nm), 125I-low density lipoproteins (22.0 nm) or 125I-very low density lipoproteins (62.1 nm). Extravasation was dose-dependent and began 1 min after PAF administration, continuing for 5-7 min. During extravasation, there was no evidence for selective plasma retention of any of the labeled plasma tracers, as measured by plasma radioactivity. These results suggest that PAF-induced extravasation is dose-dependent, with increases in vascular permeability sufficient to permit similar plasma efflux rates of albumin, low density lipoproteins and very low density lipoproteins.

Animals↗

Effects of arterial pressure on endothelial transport of macromolecules.

The effects of variations in transmural pressure over a range of 0 to 200 mmHg on transendothelial transport of macromolecules were studied in the canine common carotid artery. The uptake of 125I-albumin per unit artery weight increased with rising pressure. There was no significant difference in albumin permeability per unit luminal surface area between 0 and 100 mmHg, but permeability nearly doubled when pressure was raised to 200 mmHg. The contribution of an increased rate of transendothelial vesicle diffusion, as evaluated from the experimental determination of the ratio of attached-to-free vesicles and theoretical modeling, was found to be negligible. The reduction in transendothelial vesicle diffusion distance due to pressure-induced thinning of the peripheral zone contributes to a 25% increase in permeability. With the use of colloidal Ag and Au of various sizes, vesicle loading of particles with diameters greater than or equal to 15 nm was found to be severely restricted at transmural pressure less than or equal to 100 mmHg, but it was significantly enhanced at 200 mmHg, when particles as large as 25 nm became detectable in endothelial vesicles and subendothelial space. This hypertension-induced increase in macromolecular transport across the endothelium may cause an overloading of the arterial wall with low-density lipoproteins and play a significant role in atherogenesis.

Animals↗

Platelet-derived growth factor labeled to colloidal gold for use as a mitogenic receptor probe.

Studies by others utilizing 125I-PDGF have indicated that target cells express a high affinity surface receptor for PDGF. We have bound purified platelet-derived growth factor (PDGF) to gold colloid particles to explore the interaction of PDGF with mouse 3T3 cells. The gold-PDGF complex consists of approximately 26 PDGF molecules electrostatically absorbed to gold colloid (approximately 14.1 nm). The gold-PDGF complex induced mitogenic stimulation similar to unbound PDGF, although a 5 to 6 fold greater amount of complexed PDGF was required for the same effect. Incubation of the gold-PDGF complex with 3T3 cells for 4 h at 4 degrees C revealed that 98% of the membrane binding was randomly distributed on the cell surface with respect to coated pits, with each cell binding 7000 to 11000 complexes. Addition of a 20-fold excess of unlabeled PDGF reduced surface binding of the gold-PDGF complex by 87% (1230 probes/cell). Warming to 37 degrees C followed by time-interval fixation permitted visualization of endocytosis of the complexes in coated vesicles (1-3 min), internalization (3-15 min) and lysosomal accumulation (15-60 min). Pretreatment of cultures with monensin (2 h, 10 microM) abolished receptor binding, internalization and subsequent mitogenesis of the gold-PDGF complex. These studies support the suggestion that PDGF requires a surface receptor to elicit mitogenesis.

Animals↗

Ultrastructural visualization of low-density lipoproteins during receptor binding and cellular endocytosis.

Human fibroblasts possess surface receptors which have a high affinity for low-density lipoproteins (LDL). However, previous studies have not provided direct ultrastructural visualization of LDL bound to the receptor. To permit direct observation of unlabeled LDL during receptor binding and cellular endocytosis, we examined several fixative regimens which employ lipophilic stains. Staining with tannic acid, an oxidized form of ruthenium red, or potassium ferrocyanide imparted sufficient contrast to individual molecules of LDL to permit high-resolution electron microscopy of receptor binding and endocytosis. The LDL molecule was observed in immediate contact with the receptor and the coated vesicle, indicating that receptor-ligand binding occurs by short-range interactions.

Cell Membrane↗

Ultrastructure of hepatic cholesterol crystals in the hypercholesterolemic - diabetic rat.

The cellular morphology of lipid accumulation in the liver was examined in normal rats fed a diet containing cholesterol and cholic acid, and streptozotocin-diabetic rats fed the same diet. The cholesterol-fed non diabetic rats displayed moderate hypercholesterolemia (average cholesterol 317 mg/dl) whereas the cholesterol-fed diabetic rats exhibited severe hypercholesterolemia (cholesterol greater than 1300 mg/dl). Ultrastructural studies were performed on hepatic tissues following in situ fixation and water soluble embedment, which were used to reduce lipid extraction and minimize structural distortions. Although both groups exhibited hepatocyte lipid droplets, the accumulation was markedly accentuated in the diabetic animals. The Kupffer cells of the diabetic animals contained cytosolic lipid crystals that were membrane delimited and showed lattice ordering 3.9 +/- 2.2 nm periodicity. These findings suggest that cholesteryl ester crystals of the cholesteric phase, similar to those found in atherosclerotic lesions, may form in other cellular foci exposed to abnormally high plasma lipid levels.

Animals↗