Sweet's syndrome and bronchiolitis obliterans organizing pneumonia.
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Biomedical subjects
Publications and source records attributed to M Pico.
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The mechanism of the transient beneficial effect of 1-deamino(8-D-arginine) vasopressin (dDAVP) infusion in the hemostasis of some BSS patients is not fully understood. We have studied the effect of dDAVP infusion in a BSS patient using an ex vivo perfusion system. Additional coagulation and flow cytometry studies were also performed. Prolonged bleeding time (> 30 min) was not affected by dDAVP infusion. However, perfusion experiments performed with low molecular weight heparin anticoagulated blood (which permits the study of fibrin deposition on perfused subendothelium) showed a significant increase in platelet deposition (6.2% before dDAVP infusion; 20.3% after) and fibrin formation. dDAVP infusion also caused an increase in prothrombin consumption compared with base line values (33 vs 46%). Flow cytometry studies of the patients platelets showed no changes in binding of monoclonal antibodies against CD41, CD36, CD62P or CD63. The increase in thrombus formation observed in perfusions may be dependent on FVIII since it could be reproduced by adding purified free or von Willebrand factor (vWf)-associated FVIII to the patient's blood in vitro. The shortening effect of dDAVP on bleeding time observed in some Bernard-Soulier syndrome patients might be related to an increase in factor FVIII levels induced by dDAVP infusion.
Recombinant factor VIIa (rFVIIa) is a recently added new tool for the treatment of haemophilia patients with inhibitors. A major drawback in the use of rFVIIa is its short half-life, which necessitates frequent bolus injections. Thus the use of rFVIIa in continuous infusion appears to be a good alternative. We describe the use of rFVIIa, administered by continuous infusion with a minipump during the insertion of a central venous catheter in a child with a high-titre factor VIII inhibitor. rFVIIa was administered as an intravenous bolus (90 micrograms kg-1 [4.5 kIU kg-1]), 1 h prior to central line insertion, after which the continuous infusion was immediately started for 5 days. The infusion rate was based on the clearance obtained from a previous pharmacokinetic study. Effective haemostasis and normal healing of surgical incisions were achieved after central line insertion. No local thrombophlebitis nor evidence of generalized activation of the coagulation cascade was observed. Single-dose pharmacokinetic parameter values were clearance (Cl) 34.6 mL h-1 kg-1, volume of distribution (Vd) 40.6 mL kg-1 and mean residence time (MRT) 1.17 h. The recovery was 2.27% U-1 kg-1. rFVIIa showed a monophasic decay. Cl during continuous infusion was 23.4 +/- 6.9 mL h-1 kg-1. The administration of rFVIIa by continuous infusion is effective, safe and more convenient when compared to other clotting factors. Moreover, continuous infusion provides significant economic savings (77% decrease in rFVIIa requirements).
Cytogenetic analysis is the gold standard for the follow-up of CML patients. The sensitivity of cytogenetics is fairly similar to that of Southern detection of M-BCR rearrangement (5%); this last technique has the potential advantage of being independent of cell division and yield of metaphases. IFN alpha treatment can induce lack of growth of hemopoietic precursors and poor yield of metaphases has been observed. For this reason we decided to study the grade of concordance and complementarity between analysis of karyotype and detection of M-BCR rearrangement of Southern blot. We studied 43 Ph1 positive, M-BCR positive pre-BMT CML patients (48 samples) treated with IFN alpha 2a. Karyotype was done on bone marrow cells by direct method, culture, and banding. Southern technique was performed onto DNA from peripheral blood leukocytes treated with BgIII (and Xbal if necessary) and hybridized with the universal probe (Ph1/bcr-3, Transprobe 1) labelled with dCTP32. A highly significant association between both tests was obtained. Of 48 samples analyzed, 34 were evaluable by both methods and 28 gave the same result for both tests. The concordance between the tests was good (kappa index: 0.63). Of total samples 27.1% was not evaluable by cytogenetics; this figure was 31.2% in samples from patients who were previously in complete cytogenetic response. All of the specimens not evaluable by karyotyping were evaluable by Southern. One sample was not analyzable by Southern but it was evaluable by cytogenetic analysis. The information obtained by Southern technique was clinically relevant, and decisions were made according to its results. We conclude that both tests show a significant association and a good concordance, although they are not interchangeable. Cytogenetic and molecular studies are complementary and must be employed together in CML patients treated with alpha-interferon.
Glanzmann's thrombasthenia is an inherited bleeding disorder that results from a deficit of glycoprotein (GP) IIb-IIIa complexes in platelets. Patient (EBV) is an adult male with GP IIb-IIIa levels < 5% of normal values and a history of blood transfusions. Western-blot analysis revealed a strong IgG antibody to GP IIIa in his plasma. The determinants were localized to the minimum-sized fragment of GP IIIa (50 kDa) retained on chymotrypsin-treated platelets and were lost on reduction of disulphides. A female patient (AF), previously described by us [Jallu, V., Pico, M., Chevaleyre, J., Vezon, G., Kunicki, T.J. & Nurden, A.T. (1992) Hum. Antibod. Hybridomas 3, 93-106] developed her anti-GP-IIIa antibody during pregnancy. This antibody was poorly reactive with the 50-kDa proteolytic fragment, yet bound to 115-kDa and 60-kDa hydrolytic products of GP IIIa. Antibodies from both patients recognized the GP-IIIa-like protein of endothelial cells, thus confirming that they were directed against the integrin beta 3-subunit. The (EBV) antibody reacted strongly with GP IIb-IIIa in an antigen capture assay performed with each of a panel of four murine monoclonal antibodies (mAbs) recognizing different epitopes on GP IIb-IIIa. In contrast, that from (AF) was specifically inhibited by AP-3, a murine mAb whose epitope is thought to be localized between amino acids 324-422 of GP IIIa. The residual GP IIb and GP IIIa contents of platelets from each patient were assessed in Western blotting using chemiluminescence detection. SZ-22, a murine mAb to the GP IIb heavy chain (140 kDa), located small amounts of a 130-kDa protein in (EBV) platelets. The anti-GP IIIa mAbs XII F9, P 37 and P 97 revealed trace amounts of protein with a relative mobility identical to that of GP IIIa in both (AF) and (EBV) platelets. This residual GP IIIa represented less than 0.5% of the amount in normal platelets. When, for each patient, plasma was tested in Western blotting against their own platelets, autoantibody activity to the residual GP IIIa was detected in both cases. Thus, patients (AF) and (EBV) have developed anti-GP-IIIa antibodies with restricted and distinct epitopes but recognizing self antigens.
Molecular genetic analysis has been performed on a patient with Bernard-Soulier syndrome (BSS). The patient had characteristically giant platelets and was deficient in the glycoprotein (GP) Ib/IX/V complex, the von Willebrand factor (vWf) receptor on platelets. Previous studies with monoclonal antibodies directed against GP Ib alpha (CD 42b) and GP IX (CD 42a) demonstrated the absence of GP Ib alpha and presence of small amounts of GP IX on the surface of the patient's platelets. In this study the presence of GP V (CD 42d) is also demonstrated. This indicates a defect in the alpha-subunit of glycoprotein Ib. Therefore polymerase chain reaction (PCR)-amplification of the genomic DNA coding for GP Ib alpha was performed. Nucleotide sequence analysis of the entire coding region of GP Ib alpha revealed a homozygous single base pair mutation T-->A, leading to a single amino acid substitution cysteine-->serine at position 209 of the mature protein. We took advantage of the Mse I target site in the mutant allele, created by the T-->A mutation, to analyse all available family members. PCR-ASRA (allele-specific restriction enzyme analysis) using the restriction enzyme Mse I, revealed the heterozygosity of the mother and the two children of the patient, whereas homozygosity of the patient for the Cys209Ser mutation was confirmed. The sister of the patient was not found to be a carrier of the mutant allele. The mutation identified in the family studied, responsible for the deficiency of the GP Ib/IX/V complex, suggests that the cysteine at amino acid position 209 may be involved in disulphide bonding.
Patient A.F. is a 28-year-old polytransfused woman with an inherited bleeding disorder, Glanzmann's thrombasthenia. An abnormal platelet function is linked to severe decreases in the platelet content of the integrins GP IIb and GP IIIa. In 1987 the patient gave birth to a child with severe anemia and thrombocytopenia. Serological tests revealed the presence of anti-platelet antibody together with an anti-Rhesus D. Western blotting identified a major antibody that reacted with a protein of 90-95 kDa present in platelets and endothelial cells. This was identified as the beta 3 integrin subunit (GP IIIa). Antibody-binding required intact disulfides, while controlled digestion with proteases showed the determinant(s) to be retained within chymotrypsin- (50, 63 kDa) and Staphylococcus aureus V8 protease-derived (25-38 kDa) fragments of GP IIIa. Direct binding assays performed in the presence of monoclonal antibodies specific for different epitopes on GP IIb-IIIa complexes confirmed that the epitope was exposed on intact platelets and revealed a specific inhibition of A.F. IgG binding by the monoclonal antibody, AP-3. Other tests confirmed that the antibody reacted independently of the PlA or Pen polymorphisms carried by GP IIIa. IgG purified from A.F. plasma by adsorption and elution from paraformaldehyde-fixed normal platelets or electrophoretically separated GP IIIa was an inhibitor of ADP-induced platelet aggregation. Unexpectedly, Western blotting showed trace amounts of abnormally migrating GP IIIa in A.F. platelets, which retained an ability to react with her antibody. This suggests that the patient has formed an autoantibody reactive with an active site of the beta 3 integrin subunit and linked to the development of neonatal thrombocytopenia.
We evaluated platelet function in 59 patients with Raynaud's phenomenon (RP): 24 had primary RP (PRP) and in 35 RP was associated with diffuse scleroderma (DS). In the group with PRP there were 10 males and 14 females, with a mean age of 43 +/- 12 years and a time of evolution of 5 +/- 5 years. In the group with RP associated with DS there were 31 females and 4 males with a mean age of 53 +/- 12 years and a time of evolution of 9 +/- 7 years. The control group consisted of 20 healthy individuals (14 males and 6 females with a mean age of 40 +/- 12 years). In all patients and controls beta-thromboglobulin (BTG) and platelet factor 4 (PF4) levels were measured in plasma, and platelet aggregation was evaluated in the presence of adenosine diphosphate (ADP), collagen and arachidonic acid. The patients with RP associated with DS had BTG and PF4 higher than those with PRP and controls (p less than 0.02). The BTG/PF4 ratio was also significantly greater in patients with DS (p less than 0.005). The platelets from patients with DS had a greater aggregation with ADP (1 microM and 0.5 microM) than those from PRP (p less than 0.03). We concluded that patients with RP associated with DS had in vivo activation and a greater aggregation of platelets, in contrast with the absence of these findings in the group with PRP and in controls.
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We have used monoclonal antibodies AP-1 (anti-GP Ib alpha). AP-2 (anti-GP IIb-IIIa) and FMC 25 (anti-GP IX) in immunofluorescence and immunocytochemical studies on megakaryocytes (MK) isolated from a Bernard-Soulier syndrome (BSS) patient whose giant platelets were characteristically deficient in GP Ib-IX complexes. Electron microscopy showed that the patient's MK were similar in size to normal MK. However, a striking feature was the variable and intermittent nature of the demarcation membrane system which was often vacuolar in appearance. Permeabilized mature MK from normal individuals were strongly positive with AP-2, AP-1 and FMC 25. Those from the BSS patient were normal for AP-2, negative for AP-1 but weakly positive with FMC 25. Binding of the monoclonal antibodies to the patient's platelets was evaluated using flow cytometry. The results confirmed the absence of GP Ib alpha from the surface membranes, but showed the presence of small amounts of GP IX distributed throughout the platelet population. Our findings confirm that the membrane lesion in BSS is also to be found in MK and further show that the defect may affect differently individual constituents of the GP-Ib-IX complex.
A 29 yr old man with pulmonary tuberculosis and concomitant acquired plasma coagulation factor V deficiency is reported. The case is discussed together with three previously described cases. The bleeding tendency in a patient with pulmonary tuberculosis may be caused by a coagulation factor antibody and may be corrected by chemotherapy, as in the case described. Special therapeutic approaches are required in some cases.
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We found a correlation between increased platelet aggregation parameters and transient global amnesia and no differences between patients with transient global amnesia and transient ischemic attacks. Our findings support the theory of a vascular mechanism for transient global amnesia.
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