Management of aplastic anemia.
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Biomedical subjects
Publications and source records attributed to C Nissen.
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The kinetics of immunoglobulins (Ig) and antibodies were followed in 10 bone marrow transplant recipients who received either high doses (0.5 g/kg body weight) of polyspecific intravenous Ig (HD-IVIG) weekly or cytomegalovirus hyper-Ig (CMV-IVIG, 0.1 g/kg body weight) every 3 weeks. In the HD-IVIG group, the mean total IgG concentration more than tripled and similar significant increases were seen for IgG1 and IgG2. IgG antibodies to CMV showed a marked increase in the HD-IVIG and a less pronounced rise in the CMV-IVIG group. IgM antibodies to CMV were present initially or became detectable in five patients, unrelated to the IVIG preparation. HD-IVIG induced a significant increase of IgG antibodies to streptococcal group A carbohydrate (A-CHO) and to smooth strain lipopolysaccharides (LPS) but not of antibodies against lipid-A. When the Ig treatment was discontinued, levels of total IgG and of IgG antibody to CMV decreased with an apparent half-life of 30 days. Both IVIG preparations were well tolerated and had no negative feedback on total Ig and on specific antibody production or other antimicrobial defence mechanisms. In patient nos. 4 and 10 who developed severe graft-versus-host-disease, transient serum Ig peaks including several Ig isotypes appeared after day 14. In patient no. 10 this peak contained an IgG antibody to H. influenzae type b (Hib), and IgM antibodies to CMV, Hib, A-CHO and LPS. This study clearly shows that serum concentrations of Ig isotypes, subtypes and specific antibodies, depend on at least four factors: total amount and composition of Ig infused, consumption, catabolism and endogenous production.
No single cause can explain aplastic anemia. Two major factors are involved: An intrinsic derangement of hemopoietic proliferation capacity that is essentially compatible with life, but has to be considered a premalignant condition. This primarily diseased tissue can be destroyed by immune mechanisms in an attempt to achieve self-cure. Therefore, immunosuppressive therapy can mitigate this immune reaction but leaves the patient with a poorly proliferating bone marrow that is prone to late complications. The clinical presentation and course depend on the balance of these two major factors: If the immune reaction is strong, acute severe aplasia occurs, whereas in patients with a weak immune reaction the disease will present itself rather as chronic pancytopenia with myelodysplastic traits. Co-involvement of environmental cells in the disease process is an additional factor. Poor production of hemopoietic growth factors may aggravate aplasia and poor immune competence may allow abnormal clones to proliferate. All these pathophysiological factors are genetically determined.
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Four different preparations of antilymphocyte/antithymocyte globulin were tested in vitro for their toxicity to lymphocytes and to hematopoietic precursor cells, depending on concentration and time. Complete lymphocytotoxicity was observed at concentrations from 6.3 to 25 micrograms/ml, and suppression of colony formation by hematopoietic precursors was seen at concentrations from 12.5 to 250 micrograms/ml. Prolonged incubation time did not increase lymphocytotoxicity but augmented precursor cell damage. Lymphocytotoxicity was comparable among the four preparations tested whereas precursor cell toxicity varied widely. Antilymphocyte globulin is mitogenic and stimulates the release of hematopoietic growth factor activity by peripheral blood cells. Absorption of ALG with human T-cells eliminated precursor cell toxicity and mitogenicity but not the capacity to release hematopoietic growth factors. These results show that dose/time schedules for ALG administration may be relevant and ALG acts by virtue of inhibitory and stimulatory antibody effects.
The new fully automated reticulocyte analyzer, Sysmex R-1000 (TOA Medical Electronics, Kobe, Japan), was evaluated for its routine use in the Hematological Laboratory at the University Hospital Basel, Switzerland. The operating characteristics, such as within-run precision, linearity, and carryover, fulfilled the manufacturer's specifications and are excellent. Correlation with the standard method, manual reticulocyte counting, is linear for normal and high values. For low reticulocyte counts the regression points show a deviation from their linearity. An absolute zero value is not obtained by the R-1000. The R-1000 measures total RNA content of each cell and expresses the value as low fluorescence ratio (LFR), medium fluorescence ratio (MFR), and high fluorescence ratio (HFR). The analysis of this ratio resolves the problem of zero reticulocytes: A fraction of less than 0.002 (0.2%) with an LFR of 100% represents aplasia; a shift of the intensity of fluorescence to HFR heralds regeneration. Results of samples stored at room temperature remain stable and within the range of the within-run precision for up to 12 hours, when stored at 5 degrees C for more than 48 hours. The authors conclude that the R-1000 is easy to operate, fulfills the criteria for accuracy and precision, and is highly suitable for daily routine use in a large central hematologic laboratory.
This study describes the prevalence and degree of chronic cyclosporine-associated nephropathy and its risk factors. For this purpose we reviewed all available renal histology specimens in 169 bone marrow transplant recipients treated during an eight year period with cyclosporine for prevention of graft-versus-host-disease, and determined their pattern and degree of histomorphological changes. A total of 51 specimens obtained from 49 patients by biopsy (n = 12) or autopsy (n = 39) was evaluated. The pattern of histomorphological changes was compared with diagnosis, age, sex, and potential risk factors--such as cyclosporine dose, levels, duration of therapy, changes in serum creatinine and onset of hypertension. Morphological lesions of chronic cyclosporine-associated nephropathy were found in 67% of the specimens. They were more frequent and more severe with increasing duration of cyclosporine therapy, in patients with a higher increase in serum creatinine during the first 3 months and in patients given total-body irradiation for conditioning. These latter findings suggest that additional damage sensitizes the kidney to irreversible toxic effects of cyclosporine.
In a dose escalation study we tested the feasibility and tolerance of high-dose recombinant human erythropoietin (r-HuEPO) therapy in four patients with ineffective erythropoiesis due to myelodysplastic syndromes (MDS) or paroxysmal nocturnal hemoglobinuria (PNH). Recombinant human EPO was administered i.v. with an initial dose of 50 U/kg body weight (BW) three times per week. The dose was increased by steps of 25 or 50 U/kg bW with intervals of 1-4 weeks up to a maximum dose of 500 U/kg BW three times per week. All patients were treated as outpatients. Pre-study treatment with cyclosporin A and/or Danazol was continued in three patients. In one patient r-HuEPO was discontinued after 20 weeks because of relapse of severe aplastic anemia. No major side effects were observed even at the maximum dose. One patient with PNH showed an increase of hemoglobin from 89 to 139 g/liter that permitted monthly phlebotomies to reduce his iron overload. In one patient with MDS the reticulocyte count increased from 2.5 to 50 x 10(9)/liter, and the transfusion requirement decreased to 2 U every 3-4 weeks instead of every 2 weeks. Two patients did not complete the whole treatment period and showed no rise in reticulocyte count. We conclude that high dose r-HuEPO therapy is feasible in patients with anemia due to MDS or PNH. High-dose r-HuEPO appears to have some effect on anemia due to ineffective erythropoiesis in a subgroup of patients. Further studies are needed to identify potential responders and to define the optimal administration of r-HuEPO.
A total of 304 children under the age of 15 years with acquired severe aplastic anemia (SAA) received immunosuppressive therapy (IS) (n = 133) or a matched bone marrow transplant (BMT) (n = 171). The projected 10-year survival is 48% and 63% respectively (p = 0.002). Results following BMT have improved considerably over the years from 49% in 1970-80, to 70% in 1981-83 (p = 0.002) and to 81% between 1984-88 (p = 0.08). Other favorable prognostic factors are the use of cyclosporin A (p = 0.004), no previous therapy (p = 0.006) and early BMT (p = 0.009). In multivariate analysis only the year of treatment proved significant (p = 0.02). In contrast, results of IS are greatly dependent on the severity of pre-treatment neutropenia with survival of 56% versus 37% for neutrophils more or less than 0.2 x 10(9)/l (p = 0.003). Poor survival was associated in univariate analysis with female sex (43%), post-hepatitis SAA (37%), children not receiving androgens (38%) and patients younger than 5 years (35%), especially if associated with a low neutrophil count (11%). In multivariate analysis only the degree of neutropenia proved significant (p = 0.005). These results suggest that IS is a satisfactory alternative therapy for children with moderately SAA in the absence of an HLA-identical sibling, although BMT remains the treatment of choice. In children under 5 years with very SAA, results with IS are so poor that a search for an unrelated matched donor is justified as early as possible.
In a prospective open study 16 consecutive patients with a myeloproliferative syndrome and thrombocytosis were treated with interferon (IFN) alpha-2a. 4 patients had polycythemia vera, 4 essential thrombocythemia, 3 myeloid metaplasia and 5 chronic granulocytic leukemia. Platelet counts decreased in all treated patients within 2 to 12 weeks from a median value of 1010 x 10(9)/l to 350 x 10(9)/l. No primary or secondary resistance was observed. The initial dose of IFN was 9 m U per day. After correction of the thrombocytosis, it was progressively reduced to a minimum dose of 3 m U per week. Despite the good platelet response to IFN, leukocytosis persisted in 3 patients and polycythemia in a further 3. Side effects and poor compliance required discontinuation of therapy in 6 patients. Special attention is focused on the follow-up in 6 patients who have been treated for more than 15 months.
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A piglet model of respiratory failure was used to compare airway pressures required for adequate gas exchange by a conventional positive pressure ventilator (CMV) and a high-frequency pneumatic flow interrupter (HFFI). Twelve newborn piglets (age means = 3.8 days and weight means = 1.4 kg) were given saline lung lavages after receiving intravenous Ketamine and Pavulon. Femoral and jugular vessels were catheterized for measurements of aortic and pulmonary blood pressures and gases, cardiac output, hematocrit, glucose and for the infusion of fluids. Airway pressures were measured 5 mm above the distal tip of the endothracheal tube. Lung lavage resulted in decreased static compliance and a twofold increase in pulmonary shunting. Following lavage the animals were kept on 100% oxygen and randomly assigned to either CMV (30/min) or HFFI (600/min) ventilation and thereafter were switched every 30 minutes to the alternate mode. Inspiratory duration was 33% of the total respiratory cycle during CMV and 30-50% for HFFI. Sixteen pairs of data comparing both ventilator modes were used. Blood gases, cardiovascular variables, alveolar-arterial oxygen gradient, and pulmonary shunting were not different with either ventilator. Positive end-expiratory pressure (5.3 and 5.6 cm H2O) and mean airway pressure (12.5 and 11.9 cm H2O) were equal for CMV and HFFI, respectively. Peak inspiratory pressure was significantly lower for HFFI (23.1 +/- 3.7 SD cm H2O) than for CMV (30.4 +/- 5.5 SD cm H2O). The lower peak inflation pressure required during HFFI ventilation may reduce the potential for lung rupture.
In an open prospective pilot trial, we tested the effect of recombinant interferon alpha-2 a (rIFN alpha-2 a) on thrombocytosis in myeloproliferative disorders (MPD). Since October 1986, 13 patients with MPD (4 with chronic granulocytic leukemia, 4 with polycythemia vera, 3 with essential thrombocythemia and 2 with myeloid metaplasia) were treated with rIFN alpha-2 a. Platelet counts decreased in all treated patients within 2 to 10 weeks from a median value of 1,050 x 10(9)/l (range 610-1,940 x 10(9)/l) to 340 x 10(9)/l (range 230-495 x 10(9)/l). The response was dose-dependent. In 11 patients we observed a simultaneous reduction of the white blood cell count. Six patients still continue the IFN alpha-2 a therapy. In 7 treatment was discontinued, because of chronic side effects in 3, and because of noncompliance in one. In these patients, thrombocytosis recurred after discontinuation of the therapy. These results show that rIFN alpha-2 a is effective in controlling thrombocytosis in MPD. However, the long-term benefit of interferon in these disorders remains to be established.
468 severe aplastic anaemia (SAA) patients registered in the EBMT-SAA registry who did not undergo bone marrow transplantation and were treated with immunosuppressive therapy (IS; 96% of patients received ATG) were evaluated. Their median age was 23 years (range 1-73) at initial IS therapy, 59% were males; in 69% the aetiology of SAA was idiopathic. Of these 468 patients, 245 had a follow-up of less than 2 years after IS 166/245 died, 71/245 are still alive, 8/245 are lost to follow-up. Of 223 patients who survived greater than or equal to 2 years (LTS long-term survivors), 191 are alive, 21 died greater than 2 years and 11 are lost. Median follow-up of 223 LTS was 4.1 years (range 2.0-10.9). Comparison of 166 patients who died less than 2 years and 223 LTS revealed no difference at time of initial IS therapy as regards sex, duration of AA, or its aetiology, but the age distribution and, in particular, severity of SAA differed significantly: more LTS were between 21 and 40 years old (44% v. 32%, P less than 0.02), less LTS had reticulocytes less than 20 x 10(9)/l (63% v. 80%, P less than 0.001), polymorphonuclear granulocytes (PMN) less than 0.2 x 10(9)/l (30% v. 57%, P less than 0.001), haemorrhages (58% v. 79%, P less than 0.002) and infection (30% v. 49%, P less than 0.005) at time of IS. A gradual improvement of blood counts was seen in patients alive greater than or equal to 2 years after IS. At 2 years after IS 80% had a normal haemoglobin and PMN greater than 0.5 x 10(9)/l, but only after 5 years 80% of cases had platelets greater than 50 x 10(9)/l. Development of clonal disease was reported of 31 LTS: 19 developed paroxysmal nocturnal haemoglobinuria (PNH), one acute leukaemia, 11 myelodysplastic syndromes and of these 11 five subsequently acute leukaemia. The majority of these patients (23/31) are still alive. Actuarial mortality of LTS is 22% at 8 years, but so far no plateau was achieved. It is concluded that SAA patients who become LTS following IS, show an improvement in haematological status but are probably not cured and are prone to develop clonal (malignant) disease.
24 patients who were treated with antilymphocyte globulin (ALG) for severe aplastic anaemia (SAA) were tested for endogenous release of granulocyte colony stimulating activity (G-CSA) prior to, and at various intervals after treatment. CSA-production in vitro was induced with autologous serum as a source of 'releaser' activity, avoiding the use of plant mitogens. Before treatment, G-CSA-release was highly variable. Though mean values were higher in the 17 patients who subsequently responded to ALG treatment than in the six non-responders, this difference was not statistically significant. In the 17 responders, G-CSA-release strongly increased prior to improvement of peripheral blood counts. In one responder patient tested-before, and at regular intervals after ALG, CSA-release was high before, abnormally low at 7 d and increased again to high values before the onset of bone marrow reconstitution. In six patients who did not respond to ALG-treatment, G-CSA release decreased after treatment, and a second course of ALG was ineffective when given during this low CSA-phase. Five of the 24 patients developed paroxysmal nocturnal haemoglobinuria (PNH) at 9 months to 3 years after ALG-treatment. In all, the onset of PNH was associated with very low G-CSA-release, whether it had been high or low before treatment. We conclude that low-CSA-release after ALG treatment is a poor prognostic sign. It either indicates progression of marrow failure or heralds PNH. Such patients may be candidates for early bone marrow transplantation or treatment with G-CSF or GM-CSF.