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Biomedical subjects

H Chaplin

Publications and source records attributed to H Chaplin.

At least 55 records · Page 3Linked to original sources

Grand rounds: autoimmune hemolytic anemia.

Autoimmune hemolytic anemia (AHA) may be either primary (ie, "idiopathic," one third of all patients) or secondary (ie, associated with underlying illness, two thirds of all patients). A positive Coombs antiglobulin test is the most important criterion for diagnosis of AHA, and characterization of RBC coating (as to whether it is by IgG alone, by IgG plus complement, or by complement alone) may be valuable in ruling out certain underlying illnesses as causative in selected patients. Many limitations to the antiglobulin test must be kept in mind. As routinely performed, a positive result requires greater than 500 molecules of IgG per RBC. Red blood cells from normal subjects have less than 35 molecules of IgG per RBC. Up to 2% to 5% of patients with AHA will have RBC coating in the 50 to 500 molecules per cell range and may therefore have "false"-negative antiglobulin tests. Apparent failures of strength of antiglobulin reactions to correlate with severity of in vivo RBC destruction may result from technical factors or may reflect intrinsic differences among autoantibodies (eg, IgG subclass, affinity). A likely mechanism of in vivo RBC destruction in AHA has been demonstrated in immune-mediated in vitro RBC "rosette" formation about macrophages and lymphocytes bearing specific receptors for subclasses of IgG and for subcomponents of complement. Increased avidity of macrophages for coated RBCs in response to such stimulus as infection may play an additional role. Treatment involves control of underlying disease and the judicious use of adrenal steroids, splenectomy, and immunosuppressive agents. Transfusions, while life-saving in life-threatening anemia, carry substantially increased risks in AHA patients. Their use should be strictly limited.

Aged↗

Quantification of antibodies to the C3d subcomponent of human C3.

Purified soluble C3d has been employed to measure the concentration of anti-C3d antibodies in immune rabbit sera. Multiple batches of C3d, prepared from C3-C3b substrate by treatment with C3b-inactivator (KAF), after labelling with 125I, retained 80% immunoreactivity, and were stable on storage at -50 degrees and +4 degrees. Concentrations of anti-C3d were determined by Scatchard analysis of equilibrium concentrations of bound and free C3d in a mixture of 125I-labelled C3d and anti-C3d. Separation of bound from free C3d was by G-75 Sephadex filtration. Assuming a 1:1 molar ratio in the antibody-C3d complex, anti-C3d antibody concentrations for four rabbit whole antisera and four IgG preparations fell in the range 288-2433 microgram/ml, with Ko values of 6-2 X 10(8)-2-9 X 10(9) litres/mol. One commercial antiglobulin-serum contained 3-6 microgram anti C3d/ml and had a Ko value of 1-7 X 10(8) litres/mol. Values for anti-C3d concentrations measured independently by an indirect method employing 125I-labelled sheep anti-rabbit IgG averaged 20% lower than those obtained with 125I-labelled C3d. Antibody concentrations were correlated with antiglobulin agglutination titres against C3d-coated red cells; a titre of 1 was given by an anti-C3d concentration of 0-5 microgram/ml.

Animals↗

Modulation of macrophage C3b receptor function by cytochalasin-sensitive structures.

A quantitative rosette assay was employed in order to determine if through pharmacologic probes we could gain an insight into the nature of the interaction between C3b-coated particles and the macrophage C3b receptor. Rabbit alveolar macrophage monolayers were challenged with chromium-labeled, complement-coated (via cold agglutinin) human erythrocytes (HEC3b) and the per cent of bound counts determined in the distilled water lysate. With this assay system in which ingestion is negligible, the cytochalasins (A greater than E greater than D greater than B) produced the most marked inhibition of rosette formation compared to control treated monolayers. No agent examined produced consistent augmentation. Cytochalasin A at 10(-5), 10(-6), and 10(-7) M inhibited rosette formation by 77+/- 2, 44 +/- 4 and 15 +/- 7 (S.E.), per cent, respectively. Cytochalasin E was also markedly inhibitory, Cytochalasins B and D produced approximately 30% inhibition at 10(-5) M. The cytochalasin effect was not secondary to an interaction between these agents and complement-sensitized erythrocytes, although cytochalasin E was also able to reduce erythrocyte-bouund C3b reactivity. Cytochalasin A and E modulation of the macrophage C3b reactivity occurred within a few minutes and was only slightly reversible. Cytochalasins A and E could also disrupt performed rosettes but the effect was not as pronounced as when these agents were present before and/or during the actual adherence phenomenon. Vinblastine and colchicine (10(-5) and 10(-6) M) also produced significant inhibition of rosette formation, although the magnitude of the effect was less than that for cytochalasins A and E. Further characterization of the vinblastine and colchicine effect demonstrated that the inhibition was rapid, irreversible over a 60-min incubation, and not explained by an alteration in macrophage attachment or in HEC3b reactivity. Agents producing insignificant inhibition of rosette formation included the following: dibutyryl cAMP and cAMP agonists (PGE1, theophylline), 8-bromo cGMP and cGMP agonists (carbachol, asorbic acid), dimethylsulfoxide, heparin, ethanol, dextran sulfate, DEAE-dextran, and poly-L-lysine. The data suggest that cytochalasin, vinblastine and colchicine sensitive membrane structures, most likely microfilaments and microtubules, are important in the interaction of C3b-coated particles with the macrophage C3b receptor.

Agglutinins↗

Hemostatic alterations accompanying sickle cell pain crises.

Three patients with sickle-cell disease (SSD) were followed, weekly, for 1 1/2 to 2 years, during which time they experienced one or more episodes of crisis. Crisis was associated with reproducible sequential hemostatic alterations indicating intravascular fibrin formation and a marked disturbance in platelet economy. With crisis onset, or possibly before, there was an increase in plasma high-molecular-weight fibrinogen complexes and a transient fall in platelet count, with a subsequent rise in both fibrinogen concentration and platelet count; plasma fibrinogen peaked 1 week after crisis onset and platelet count approximately 2 weeks after onset. Subsidence of crisis was associated with a fall in high-molecular-weight fibrinogen complexes and a subsequent increase in fibrinogen first derivative, an early fibrinogen breakdown product. Hemostatic findings and patient clinical status were generally correlated, the findings during asymptomatic periods being essentially normal. Agents affecting platelet function (aspirin alone or in combination with dipyridamole) appeared to reduce the extent of laboratory abnormality, suggesting potential clinical usefulness in this disorder.

Acute Disease↗

Coagulation factor XIII concentration in sickle-cell disease.

Plasma factor XIII was assayed serially for a 1 1/2 to 2 year period in four patients with sickle-cell disease (SSD), during which several episodes of SSD crisis were observed. During crisis-free periods, plasma factor XIII concentration was lower than in normal subjects. With crisis onset, there was usually a concomitant fall in platelets and in plasma factor XIII soon after followed by a rise in fibrinogen concentration and platelet count. Following crisis resolution there was an increase in plasma factor XIII concentration peaking 3 weeks after crisis onset and occurring at the time of subsidence of thrombocytosis. It is suggested that the observed changes in plasma factor XIII concentration in SSD patients support the hypothesis that in the early stage of SSD crisis, fibrin deposition and/or thrombosis significantly enhance the role of sickled erythrocytes in producing vascular occlusion and/or organ infarction.

Adult↗

Gamma heavy chain disease: rapid, sustained response to cyclophosphamide and prednisone.

A patient, CAL, with gamma heavy chain disease is presented who has had a complete remission lasting over 2 yr with combination chemotherapy consisting of pulsatile cyclophosphamide and prednisone. The patient exhibited many features of an atuoimmune process including a vasculitis, low serum complement levels, a positive antiglobulin (Coombs) test, Raynaud's phenomenon, and keratoconjunctivitis sicca. The CAL paraprotein was found to have several previously undescribed characteristics. It reacted with antisera to Fd, Fab, and Fab', suggesting that most of the Fd portion of the molecule was intace. CAL protein consists of two polypeptide chains of molecular weight 49,000 covalently linked to form a dimer of 95,000 molecular weight. The covalent linkage suggests that the hinge region of this gamma heavy chain is intact.

Bone Marrow Examination↗