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J Stuart

Publications and source records attributed to J Stuart.

At least 37 records · Page 2Linked to original sources

Technological advances in blood rheology.

The science of blood rheology (study of the flow and deformability of blood) is of increasing practical importance to the investigation of blood disorders. In diagnostic laboratories, rheological tests such as the erythrocyte sedimentation rate, zeta sedimentation ratio, and plasma viscosity are used to monitor patients with an acute-phase response of greater than 24 h duration. In sickle-cell anemia, new methods for measuring erythrocyte deformability can be used to investigate the pathogenesis of vaso-occlusion, to test potential anti-sickling drugs, and to monitor drug efficacy in clinical trials. Genetic defects in the structure of the red cell membrane can have rheological consequences, monitoring of which may be useful for diagnosis. Rheological analysis of red cells infected by Plasmodium falciparum has indicated that their abnormal flow behavior may be an important pathological factor in malaria. Finally, the flow behavior of white blood cells, particularly neutrophils, is also important, as these cells, once activated, have the potential to occlude microvessels. The authors have reviewed the laboratory methodology and clinical applications that have led to recent advances in these aspects of blood rheology.

Acute-Phase Reaction

Efficacy of tests used to monitor rheumatoid arthritis.

The relative efficacy of clinical and laboratory tests used to monitor disease activity in rheumatoid arthritis was determined by consensus analysis in a study of 21 patients treated for 6 months. Erythrocyte sedimentation rate (ESR), which is influenced by the anaemia of chronic disease and by variation in the blood concentration of acute-phase proteins, was the most effective single test. ESR was a better guide to disease severity than measurement of plasma viscosity, serum C-reactive protein, and serum orosomucoid--tests that reflect the blood concentration of acute-phase proteins only. Clinical tests performed poorly unless combined with laboratory data in a numerical index. Consensus analysis can be used to assess the efficacy of clinical and laboratory tests and to identify redundant tests.

Adult

Pharmacological modification of oxygen affinity improves deformability of deoxygenated sickle erythrocytes: a possible therapeutic approach to sickle cell disease.

1. The formation of polymerized haemoglobin S in sickle cells is critically dependent on the concentration of deoxygenated haemoglobin so that compounds which increase the oxygen affinity of haemoglobin S are potential anti-sickling agents. 2. BW12C [5-(2-formyl-3-hydroxyphenoxy)pentanoic acid] and BWA589C [4-(2-formyl-3-hydroxyphenoxymethyl)benzoic acid] are aromatic benzaldehydes that cause a dose-dependent left-shift of the oxygen saturation curve of haemoglobin S by stabilization of its oxy-(R)-conformation. 3. A 5 micron pore filtration method, which is highly sensitive to polymerization of haemoglobin S, was used to demonstrate a significant improvement in the deformability of deoxygenated sickle erythrocytes at concentrations (0.75-1.5 mmol/l] of BW12C and BWA589C that are achievable in vivo. Both compounds may therefore be of value for the treatment of sickle cell disease. 4. Filtration of sickle cells through pores of 5 microns diameter is a sensitive technique for evaluating the rheological effects of potential anti-sickling compounds.

Anemia, Sickle Cell

Bepridil protects sickle cells against the adverse rheological effects of cyclical deoxygenation.

Calcium influx into sickle cells, with consequential activation of the Ca2(+)-activated K+ efflux (Gardos) channel, is a potential cause of cellular dehydration and loss of deformability. Bepridil, a recently described inhibitor of the Gardos channel, was found at pharmacological concentration (1 mumol/l) to inhibit significantly (P less than 0.01) the loss of deformability when sickle cells were subjected to cycles of oxygenation-deoxygenation for 15 h at 37 degrees C. Bepridil also inhibited significantly (P less than 0.005) the formation of irreversibly sickled cells. Drugs that preserve the K+ and therefore water content of erythrocytes are of potential value for hydrotherapy of sickle cell disease.

Anemia, Sickle Cell

Effect of polymerization tendency on haematological, rheological and clinical parameters in sickle cell anaemia.

The polymerization tendency of sickle haemoglobin was estimated as a function of oxygen saturation in 30 patients with homozygous sickle cell anaemia. The deformability of their erythrocytes was also measured, by initial-flow-rate filtration at 37 degrees C through pores of 5 microns diameter, and clinical severity was assessed using a visual analogue scale. By means of partial correlation analysis, it was found that correlations between haematological, rheological, and clinical parameters in sickle cell anaemia could be explained on the basis of an association of each variable with polymerization tendency. Patients with the greatest tendency to form polymer had the least deformable erythrocytes and perceived their disease to be more severe as judged by the visual analogue scale. Polymer formation also appeared to be a determinant of the number of dense cells which, in turn, determine haemolytic rate and erythrocyte deformability.

Anemia, Sickle Cell

Erythrocyte heterogeneity in sickle cell disease: effect of deoxygenation on intracellular polymer formation and rheology of sub-populations.

Erythrocytes from 12 patients with homozygous sickle cell disease in the steady state were fractionated on a Percoll-Stractan density gradient. Erythrocyte deformability was measured by initial-flow-rate filtration through pores of 5 microns diameter and erythrocyte polymer content was calculated as a function of oxygen saturation. Density fractionated sub-populations of sickle cells showed distinct rheological characteristics, the filterability of dense cells being impaired by minimal oxygen desaturation with the apparent formation of little or no intracellular polymer. Lighter cell fractions required a greater degree of deoxygenation and polymer formation to impair deformability, although this occurred prior to morphological sickling. Dense cells therefore exert a disproportionate effect on blood rheology in sickle cell disease and are likely to have an adverse rheological effect in vivo at arterial oxygen tension.

Anemia, Sickle Cell

Evaluation of sealed vacuum extraction method (Seditainer) for measurement of erythrocyte sedimentation rate.

A sealed vacuum extraction method (Seditainer) for determining the erythrocyte sedimentation rate (ESR) was compared with the standard Westergren ESR technique. The Seditainer method was particularly easy to use, showed acceptable precision, reduced the biohazard risk to laboratory staff and, on storage of sealed blood specimens for 24 hours at 4 degrees C, gave ESR values that had decreased by a mean of only 1.9% (95% CI + 0.2 to -4.0%). Seditainer tubes are shorter (100 mm) than Westergren tubes (200 mm) and this reduced test sensitivity at ESR values above 55 mm/first hour. After application of the manufacturer's correction formula to adjust for tube length there was improved correlation (n = 150, r = 0.936, p less than 0.001), but still considerable scatter, between the Seditainer and Westergren results. Seditainer ESR values above 55 mm/first hour should therefore be regarded as semiquantitative. This vacuum extraction method offers a simple and safe technique for measuring the ESR and specimens can be stored overnight at 4 degrees C.

Blood Sedimentation

Acquired immunodeficiency syndrome.

A report entitled "Kaposi's Sarcoma and Pneumocytosis Carinii Pneumonia among homosexual men in New York City and California" in the MMWR in July 1981 alerted the world to the appearance of a completely new disease. The opportunistic infections and cancers occurring in these patients had previously only been seen in patients who were immunosuppressed. Homosexual men were the first as a major risk group to be identified. Others quickly followed. The pattern of occurrence clearly indicated an infectious agent as the likely cause, and within two years the virus had been identified in Europe and the USA. In Europe it was named Lymphadenopathy Associated Virus (LAV) by Montagnier its discover, and in the USA, Human T cell Lymphotrophic Virus III (HTLV III). It is now known as Human Immunodeficiency Virus (HIV).

Acquired Immunodeficiency Syndrome

Adenine nucleotides stimulate oxidation-induced calcium efflux from sarcoplasmic reticulum vesicles.

Micromolar concentrations of copper (Cu2+) and cysteine induce rapid efflux of calcium from sarcoplasmic reticulum (SR) vesicles. This effect appears to be due to a Cu2+-catalyzed oxidation of the added cysteine to a critical sulfhydryl group on the release protein from sarcoplasmic reticulum (J. L. Trimm, G. Salama, and J. J. Abramson (1986) J. Biol. Chem. 261, 16092-16098). The data presented here indicate that adenine nucleotides synergistically stimulate copper/cysteine (oxidation)-induced calcium efflux from SR vesicles. The order of effectiveness in stimulating calcium efflux is ATP greater than AMP-PCP greater than cAMP greater than AMP greater than adenine approximately NAD approximately NADH. Non-adenine-containing nucleotides such as GTP, CTP, UTP, and ITP and the high energy phosphate compound, acetyl phosphate, were ineffective in stimulating oxidation-induced calcium efflux. The relative effectiveness of various adenine nucleotides in stimulating calcium-induced calcium efflux and oxidation-induced calcium efflux are identical, suggesting that a common mode of action is involved when calcium release is triggered by either method. The stimulatory effect of the adenine nucleotides on oxidation-induced efflux is independent of external magnesium concentration and independent of the magnesium gradient across the SR membrane.

Adenine Nucleotides

Laboratory tests for monitoring prophylactic exchange transfusion in pregnancy complicated by sickle cell disease.

Prophylactic exchange transfusion is of uncertain value in pregnancy complicated by sickle cell disease (SCD), and there is a lack of laboratory tests to monitor its effect and determine the optimal number and frequency of transfusions. In a prospective study of four consecutive pregnancies complicated by SCD, the product of the PCV and percentage of haemoglobin S gave a 'sicklecrit' value that showed a significant (P less than 0.01) improvement following transfusion. Erythrocyte filterability through pores of 5 microns diameter also improved significantly (P less than 0.05) whereas whole blood viscosity did not, owing to the overriding effect of the increase in PCV. Measurement of sicklecrit and erythrocyte filterability, reflecting blood rheology in large and small vessels respectively, may therefore be used to monitor the effects of exchange transfusion in SCD.

Anemia, Sickle Cell

Automated measurement of plasma viscosity by capillary viscometer.

Plasma viscosity has several advantages over the erythrocyte sedimentation rate as a measurement of an acute phase response of more than 24 hours' duration. A new capillary viscometer (Coulter Viscometer II), which gives an automated measurement of plasma viscosity, was compared with the selected manual method (Harkness viscometer) of the International Committee for Standardization in Haematology. Automated measurement of plasma viscosity at 25 degrees C showed close correlation (r = 0.979, p less than 0.002) with the selected method for 160 specimens of plasma. Satisfactory precision both within batch and between batch (coefficients of variation of 1.7% or less) was obtained at viscosity values up to 5.7 mPa.s. There was no detectable carry over between samples and viscosity values were corrected adequately for ambient temperature for the range 15-32 degrees C. Careful daily cleaning was required to prevent accumulation of protein within the automatic sampling valve of the instrument. Automated measurement of plasma viscosity is an attractive alternative to measurement of the erythrocyte sedimentation rate.

Acute-Phase Proteins

Polymerization of sickle cell hemoglobin at arterial oxygen saturation impairs erythrocyte deformability.

We have examined the filterability of sickle erythrocytes, using an initial-flow-rate method, to determine whether sufficient hemoglobin S polymer forms at arterial oxygen saturation to adversely affect erythrocyte deformability. The amount of intracellular polymer was calculated as a function of oxygen saturation to estimate the polymerization tendency for each of eight patients with sickle cell anemia (SCA). Progressive reduction of oxygen tension within the arterial range caused a sudden loss of filterability of SCA erythrocytes through 5-micron-diam pores at a critical PO2 between 110 and 190 mmHg. This loss of filterability occurred at a higher PO2 than did morphological sickling, and the critical PO2 correlated significantly (r = 0.844-0.881, P less than 0.01) with the polymerization tendency for each patient. Study of density-gradient fractionated cells from four SCA patients indicated that the critical PO2 of dense cells was reached when only a small amount of polymer had formed, indicating the influence of this subpopulation on the results obtained for unfractionated cells. Impairment of erythrocyte filterability at high oxygen saturation (greater than 90%) suggests that small changes in oxygen saturation within the arterial circulation cause rheological impairment of sickle cells.

Anemia, Sickle Cell

Unfolding of iron and copper complexes of human lactoferrin and transferrin.

1. Human lactoferrin and transferrin are capable of binding two iron or copper ions into specific binding sites in the presence of bicarbonate. 2. Urea and several alkyl ureas have been effective in unfolding these metal-protein complexes. 3. Biphasic transitions are observed for the unfolding of each of the metal complexes of these proteins as determined by direct visible spectroscopy suggesting the release of iron(III) and Cu(II) ions from both of these metal-binding proteins during the unfolding process. 4. Greater stabilization and increased resistance to protein unfolding is observed for all iron(III) complexes compared to Cu(II) complexes of lactoferrin and transferrin as determined by isothermal unfolding and thermal denaturation. 5. Relative stabilization of the different metal-protein complexes investigated within this study were determined to be as follows: Lf-Fe(III) greater than Lf-Cu(II); Tf-Fe(III) greater than Tf-Cu(II), and Lf-Fe(III) greater than Tf-Fe(III); Lf-Cu(II) greater than Tf-Cu(II).

Circular Dichroism

Rheology of the sickle cell disorders.

The sickling process causes secondary changes in cell shape, size, cation and water content, and membrane structure that contribute to the impairment of intrinsic cell deformability (Figure 2). This rheological defect is partially compensated by a low haematocrit, which moderates the rise in whole-blood viscosity, and by a rise in cardiac output which increases capillary flow velocity (Berger and King, 1982). A delicate balance exists between these mechanisms and any local disturbance of this balance by pathological changes in factors extrinsic to the sickle cell (Figure 2) can precipitate vaso-occlusion. There is still considerable controversy over the site (arteriolar, capillary, or venular) of vaso-occlusion, the type of sickle cell (reversibly sickled or irreversibly sickled) that is primarily involved, and the relative importance of extra-erythrocytic precipitating factors such as stasis, hypoxia, hyperosmolality, acidosis, alteration in temperature, acute-phase rise in plasma proteins and leukocytes, prothrombotic changes in coagulation factors and platelets, and adhesion of blood cells to vascular endothelium (Figure 2). A low-grade hypercoagulable state has been described in patients with SS (Leichtman and Brewer, 1978; Richardson et al, 1979) which may be related to the procoagulant effect of the shift of phosphatidyl serine to the outer lipid bilayer of the sickle cell (Chiu et al, 1981; Franck et al, 1985). Platelets appear to accumulate at sites of vaso-occlusion (Siegel et al, 1985) and their migration to the vessel wall may be enhanced by the presence of poorly deformable erythrocytes (Aarts et al, 1984). Endothelial cell damage in the arterial or venous circulation may also contribute (Klug et al, 1982). Thus vaso-occlusion appears to result from a complex interaction between blood cells, plasma proteins and endothelium and any one of several precipitating factors may disturb the fragile steady state and cause a painful crisis. The study of sickle cells by rheological methods has considerable potential for investigating the pathophysiology of vaso-occlusive episodes in the SCD and for monitoring, both in vitro and ex vivo, the efficacy of antisickling compounds. Because of the multiple intrinsic and extrinsic factors that contribute to the rheological defect, it is not yet known which of these should be the primary target for an antisickling agent. In-vitro rheological studies in which different metabolic stresses can be applied to intact sickle cells in the presence of a putative antisickling drug should help to answer this question.(ABSTRACT TRUNCATED AT 400 WORDS)

Anemia, Sickle Cell