Endothelial regeneration: the role of smooth muscle cells, blood cells and histiocytes.
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Desethylamiodarone (DA) is a major metabolite of amiodarone (AM), a Class III antiarrhythmic drug. The plasma pharmacokinetics and tissue distribution of AM and DA (10 mg/kg i.v.) were compared in anesthetized dogs. Plasma, white blood cell (WBC), red blood cell (RBC), liver, and skeletal muscle samples were obtained at frequent intervals up to 6 h after a single i.v. bolus of the two drugs. Drug concentrations in these and other tissues, i.e., lung, kidney, heart (right and left atrium, right and left ventricle, Purkinje fibers, and AV node), and femoral nerve were measured by a highly sensitive and specific high-pressure liquid chromatographic technique developed in our laboratory. Four different patterns of AM and DA uptake and washout could be identified in these experiments. The first pattern is biexponential decline in plasma drug levels with a rapid distribution phase (t1/2 alpha = 5.1 +/- 2.1 min for AM and 5.5 +/- 1.2 min for DA, respectively) and a slower elimination phase (t1/2 beta = 3.7 +/- 1.3 h for AM and 4.96 +/- 0.8 h for DA, respectively). The volume of distribution of DA was significantly larger than that of AM. The second pattern is that both WBCs and RBCs showed an initial uptake within 5 min followed by a biexponential decrease in drug levels, with t1/2 alpha similar to that in plasma but t1/2 beta significantly longer than in plasma. In both these types of cells, the elimination half-life for DA was significantly longer than that of AM. The third pattern is that in the liver there was a rapid uptake of both drugs with peak concentrations at 15 min; the decline in hepatic levels of AM was biexponential, but that of DA appeared to be monoexponential. In addition, in dogs given AM alone, the metabolite (DA) was easily detected in the liver from the earliest time of measurement, suggesting that the parent drug is rapidly metabolized to DA. In the experiments where DA was injected, two new peaks were also identified in the liver suggesting that DA was metabolized further in the liver. The fourth pattern was in the skeletal muscle, where AM uptake was relatively slow, reaching peak concentrations between 1.5-2 h followed by a monoexponential decline; however, DA was rapidly taken up by skeletal muscle, but the rate of decline appeared to be slower as compared to that of AM.(ABSTRACT TRUNCATED AT 400 WORDS)
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Seasonal, and animal size and weight variations of the blood cells of the vanadium-containing ascidian. Ascidia ceratodes, were determined. The fluorescent properties of various cell types were ascertained, and discussed in terms of cell development, phylogenic position of the species, and chemicals in the cells.
The state of surface membrane of red blood cells and blood platelets, blood platelet adhesion to glass, red blood cell deformability, viscosity of the whole blood and plasma were studied in patients with coronary heart disease who had been subjected to blood gravitation surgery correction in the combined treatment. Normalization of all the parameters studied was recorded after inclusion of the methods of extracorporeal regulation of blood aggregation into the combined treatment. An attempt has been made to explain the mechanisms of gravitation surgery effect on the morphological and functional properties of blood cells and rheologic parameters.
The efficiency of washing liquid-stored red blood cells and red blood cells frozen with high or low glycerol concentrations was evaluated by measuring the recovery of red blood cells in vitro, supernatant hemoglobin, extracellular potassium and red blood cell potassium levels, supernatant osmolality, residual 125I albumin, glycerol, hypoxanthine, and di-2-ethylhexyl phthalate (DEHP) levels. Four commercial washing systems were studied, three which used sodium chloride solutions with serial or continuous-flow centrifugation and one which used sugar solutions and dilution/agglomeration. Washing was most efficient using sodium chloride solutions in the IBM Blood Processor, an automated serial centrifugation procedure and in the Fenwal Elutramatic, a continuous-flow centrifugation procedure. Less efficient washing was achieved in the Haemonetics Processor 15, a continuous-flow centrifugation procedure and the least efficient washing occurred using the original and modified dilution/agglomeration procedures. To achieve the most efficient washing, three principles must be utilized: concentration of the red blood cells to hematocrit values of 90 per cent, prior to washing or freezing. Liquid-stored red blood cells concentrated to hematocrit values of 90V per cent should be diluted with hypertonic sodium chloride solutions prior to recovery and washing. Red blood cells containing 20 per cent or 40 per cent W/V glycerol should be diluted with hypertonic sodium chloride solutions before recovery and washing. Finally, on-line dilution should be achieved in the washing systems that use continuous-flow centrifugation.
Autologous reinfusion of circulating haemopoietic progenitor and stem cells (blood stem cell transplantation) has emerged as an alternative to autologous bone marrow transplantation in a variety of malignant diseases. Major obstacles associated with harvest of blood stem cells by leukapheresis are: 1. relatively high costs, and 2. discomfort caused to the patient, as generally five to ten settings of leukapheresis are necessary to harvest a number of blood stem cells sufficient for haemopoietic restitution following myeloablative therapy. GM-CSF recently has been shown to effectively increase circulating haemopoietic cells, when given subsequent to even highly-toxic therapy. This report summarizes our data on mobilization of blood stem cells by GM-CSF cells in multiple myeloma patients.
NMR water-proton spin-lattice relaxation times were studied as probes of water structure in human red blood cells and red blood cell suspensions. Normal saline had a relaxation time of about 3000 ms while packed red blood cells had a relaxation time of about 500 ms. The relaxation time of a red cell suspension at 50% hematocrit was about 750 ms showing that surface charges and polar groups of the red cell membrane effectively structure extracellular water. Incubation of red cells in hypotonic saline increases relaxation time whereas hypertonic saline decreases relaxation time. Relaxation times varied independently of mean corpuscular volume and mean corpuscular hemoglobin concentration in a sample population. Studies with lysates and resealed membrane ghosts show that hemoglobin is very effective in lowering water-proton relaxation time whereas resealed membrane ghosts in the absence of hemoglobin are less effective than intact red cells.
Blood volume determinations were performed in 5 anesthetized gopher snakes (Pituophis melanoleucus catenifer) by means of a 51Cr-labeled red blood cell (RBC) method. The mean blood volume was 52.8 ml/kg of body weight (+/- 6.21 SE). Previous blood volume measurements have not been reported for this species. The RBC survival rate was estimated to be greater than 660 days. The RBC survival rate is long, but it cannot be determined accurately by this method.
Blood drawn into CPD solution from 33 normal donors was divided into four groups: (I) centrifuged (at 5,000 g for 7 min) after 7 days of storage, (II) centrifuged after 14 days storage, (III) centrifuged after 21 days storage and (IV) uncentrifuged. After 21 days of storage, aliquots of all units were labeled with chromium-51, reinjected into the donor from which they were drawn and erythrocyte survival was measured. Red blood cell recovery and survival for all four groups was essentially the same; 24-hour recovery was 85%; T 1/2 was 28.2--31.6 days. Our results suggest that blood can be centrifuged and stored at any time during its 21-day shelf life without detrimental effect on erythrocyte survival.
Forty-seven allophenic mice of three different types (C57BL/6 in equilibrium (A X SJL), C57BL/6 in equilibrium (CBA X CBA/H-T6), and C57BL/6 in equilibrium DBA/1) were analyzed for changes in their peripheral white blood cell composition and hemoglobin composition with age. It was found that 10 of the 47 mice showed significant changes termed "chimeric drift" in one or the other or both of these parameters. These 10 mice were classified as unstable chimeras, as opposed to the 37 stable chimeras, which showed no apparent chimeric drift. There was an excellent correlation of peripheral white blood cell and hemoglobin compositions of the stable chimeras. However, the unstable chimeras showed little or no correlation of these two markers. Possible mechanisms of chimeric drift are discussed.
A column liquid chromatographic method for the simultaneous determination of chloroquine, amodiaquine and their monodesethyl metabolite in human plasma, red blood cells, whole blood and urine is described. The drugs and internal standard were extracted as bases with methylene dichloride and then re-extracted into an acid aqueous phase. Separation was obtained using a reversed-phase column and a mobile phase of phosphate buffer (pH 3.0)-acetonitrile (88:12). The absorbance of the drugs was monitored at 340 nm with a sensitivity limit of 10 pmol/ml. No endogenous compound interfered at this wavelength. The mean overall recovery from each biological fluid was greater than 75%. This method can be applied to therapeutic, pharmacokinetic and epidemiological studies. The metabolism of these two amino-4-quinolines in humans is compared.
Sodium selenite (Na2SeO3) sister-chromatid exchange (SCE) induction was studied in both short-term and long-term cell cultures. The ability of Na2SeO3 to induce SCEs was found to depend on the culture conditions employed. Concentrations of Na2SeO3 (7.90 X 10(-6) M and greater) that produced elevated SCE frequencies in whole blood cultures resulted in control level SCE frequencies (6-8 SCEs/cell) in Ficoll-Hypaque--purified lymphocyte cultures. However, whole blood and purified lymphocyte cultures were equally sensitive to SCE induction by methyl methanesulfonate (MMS), ethyl methanesulfonate (EMS), and N-hydroxy-2-acetylaminofluorene (N-OH-AAF). Analysis of different whole blood components showed that the presence of red blood cells (RBCs), and specifically RBC lysate, was a prerequisite for Na2SeO3 SCE induction in purified lymphocyte cultures. The SCE frequencies of xeroderma pigmentosum (XP12RO) and normal human lymphoblastoid cell lines were also found to be unaffected by Na2SeO3 concentrations that produced elevated SCE frequencies in whole blood cultures. Incubation of these latter two cell types with Na2SeO3 and RBC lysate resulted in SCE frequencies comparable to those in Na2SeO3-exposed whole blood cultures.
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The effects on blood glucose concentrations of packed red blood cells (AS-1) (group I) versus washed red blood cells (group II) for cardiopulmonary bypass prime were compared in 20 infants weighing less than 10 kg undergoing cardiac surgical procedures. All patients were anesthetized with N2O/O2/isoflurane/fentanyl and received lactated Ringer's solution prior to bypass. Blood glucose concentrations prior to bypass were 85 +/- 15 mg/dl (mean +/- SD) in group I and 81 +/- 14 mg/dl in group II. Blood glucose concentrations were 210 +/- 21 mg/dl versus 78 +/- 14 mg/dl (P less than 0.001) 10 min after initiation of bypass, 241 +/- 48 mg/dl versus 107 +/- 28 mg/dl (P less than 0.001) prior to separation from bypass, and 214 +/- 52 mg/dl versus 97 +/- 19 mg/dl (P less than 0.001) after protamine administration in group I and group II, respectively. The use of washed red blood cells for cardiopulmonary bypass priming solution in infants significantly attenuates the increase in blood glucose concentration otherwise observed during cardiopulmonary bypass.
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