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H Link

Publications and source records attributed to H Link.

At least 217 records · Page 12Linked to original sources

Economic analysis of a randomized clinical trial to compare filgrastim-mobilized peripheral-blood progenitor-cell transplantation and autologous bone marrow transplantation in patients with Hodgkin's and non-Hodgkin's lymphoma.

PURPOSE: High-dose chemotherapy (HDC) with peripheral-blood progenitor cell (PBPC) and autologous bone marrow (ABM) transplant (T) has documented survival benefits for relapsed Hodgkin's disease (HD) and non-Hodgkin's lymphoma (NHL). Treatment costs associated with HDC and its supportive care have restricted its use both on and off clinical trial. In a prospective randomized clinical trial, filgrastim-mobilized PBPCT resulted in faster recovery of bone marrow function, with less hospitalization and supportive care than ABMT. This study was undertaken to analyze the costs of the two strategies using prospectively collected data from a randomized clinical trial that compared filgrastim-mobilized PBPCT versus ABMT. PATIENTS AND METHODS: Clinical results and resource utilization from a randomized clinical trial that compared filgrastim-mobilized PBPCT versus ABMT following carmustine, etoposide, cytarabine, and melphalan (BEAM) HDC for HD and NHL are presented. The trial was performed in six centers in Germany, the United Kingdom, and Belgium. Resource utilization data were used to project costs and Massay Cancer Center (MCC) in the United States incurred the cost of treating the cohort. Costs were projected to the United States, because the economic implications to United States centers are significant, costs of care vary markedly among countries but resource utilization on this trial did not, and a randomized trial is unlikely to be performed in the United States. RESULTS: Fifty-eight patients with relapsed HD or NHL underwent HDC with BEAM. The PBPCT and ABMT groups had similar short-term survival after BEAM. PBPCT patients had a shorter hospitalization (median, 17 v 23 days; P = .002), neutrophil recovery (11 v 14 days; P = .005), platelet recovery to > or = 20 x 10(9)/L (16 v 23 days; P = .02), and days of platelet transfusions (6 v 10; P < .001). Estimated costs were $8,531 for ABM harvest and $5,760 for PBPC collection, including filgrastim mobilization. The total estimated average cost was $59,314 for each ABMT patient versus $45,792 for each PBPCT patient. Cost savings of $13,521 (23%) were due to shorter hospitalizations with less supportive care. CONCLUSION: PBPCT is as safe and more effective than ABMT for HD and NHL in the short term. PBPCT represents a significant cost savings due to lower autograft collection costs, shorter hospital stays, and less supportive care. The savings exceed the costs for filgrastim mobilization and PBPC collection. Actual savings will vary depending on local practice patterns, charges, and costs.

Adolescent↗

Allogeneic transplantation with CD34+-selected cells.

We report the outcome of eight patients with different hematological malignancies who were transplanted with allogeneic CD34-selected mononuclear cells following myeloablative therapy. Four patients received G-CSF mobilized CD34-enriched peripheral blood progenitor cells (PBPC) together with CD34-enriched bone marrow (BM), two patients were transplanted with allogeneic G-CSF mobilized CD34-enriched PBPC alone, and two patients received only allogeneic CD34-enriched BM cells. On average, patients received 2.66 x 10(6) CD34+-cells/kg BW (range: 0.53-8.40 x 10(6) CD34+-cells/kg body weight) and 0.57 x 10(6) CD3+-cells/kg BW (range: 0.20-1.10 x 10(6) CD3+-cells/kg BW), respectively. Seven of the eight patients engrafted (ANC > 0.5 x 10(9)/L median: day +19 (range: 16-23 days); platelets > 20 x 10(9)/L median: day +34 (range: 21-47 days); one patient died on day +16 after transplantation and was not evaluable for engraftment. Three of seven patients evaluable for acute graft-versus-host disease (GvHD) developed acute GvHD grade II which resolved upon steroid treatment. Five of the eight patients are still alive and in remission with a median follow-up of 215 days (range: 80-420 days). Causes of death included fungal infection, cerebral bleeding and sepsis. These preliminary data suggest that CD34-enriched cells can be successfully given during for allogenic transplantation following myeloablative therapy in hematological malignancies. The impact of T-cell depletion by enrichment for CD34+-cells in an attempt to reducing the incidence and/or severity of acute and/or chronic GvHD still remains to be determined.

Adult↗

CD34 positive blood cells for allogeneic progenitor and stem cell transplantation.

The transplantation of allogeneic peripheral blood progenitor cells (PBPC) provides complete and sustained hematopoietic and lymphopoietic engraftment. In healthy donors, large amounts of PBPC can be mobilized with hematopoietic growth factors. However, the high content of immunocompetent T-cells in apheresis products may expose recipients of allogeneic PBPC to an elevated risk of acute and chronic graft-versus-host disease. Thus, the use of appropriate T-cell reduction, but not depletion might reduce this risk. The hazards of graft rejection and a higher relapse rate can be avoided by maintaining a portion of the T-cells in the graft. The positive selection of CD34+ cells from peripheral blood preparations simultaneously provides an approximately 1000-fold reduction of T-cells. These purified CD34+ cells containing committed and pluripotent stem cells are suitable for allogeneic transplantation and can be used in the following instances: 1. As hematopoietic stem and progenitor cell transplantation instead of bone marrow cells, from HLA-identical family donors; 2. for increasing the stem cell numbers from HLA-mismatched or three HLA-loci different family donors in order to reduce the incidence of rejection but without increasing the T-cell number; 3. boosting of poor marrow graft function with stem cells from the same family donors; 4. transplantation from volunteer matched unrelated donors; 5. split transplantation of CD34+ and T-cells; 6. addition of ex vivo expanded CD34+ cells to blood cell or bone marrow transplantation; 7. generation of antigen specific immune effector cells and antigen presenting cells for cell therapy.

Animals↗

The effects of monoamine reuptake inhibiting antidepressants in experimental allergic neuritis.

Experimental allergic neuritis (EAN) is a CD4+ T cell mediated autoimmune disease that is characterized by inflammation and demyelination affecting the peripheral nervous system (PNS). EAN represents an animal model for the study of the immunopathogenesis, immunoregulation and immunotherapy of human Guillain-Barré syndrome (GBS). Although the pathogenesis of EAN remains an enigma, growing evidence points to a possible involvement of an integrated attack by T cells, B cells and macrophages. Th1 related inflammatory cytokines like interferon-gamma (IFN-gamma), tumour necrosis factor-beta (TNF-beta) and TNF-alpha, IL-6 as well as IL-12 could play a major role in the development of tissue damage in EAN. The monoamine reuptake inhibiting antidepressants show immunomodulatory effects on clinical signs and immune response of EAN. The mechanisms behind the suppressive effect of zimeldine, norzimeldine, clomipramine and imipramine on EAN symptoms may include an action on T cell autoreactivities that are directed against myelin proteins. Suppression may be the net result of local accumulation of 5-HT and noradrenalin in regional lymph nodes and peripheral nerves as well as direct and indirect drug effects on cytokine release by peripheral lymphocytes. These antidepressant drugs also exert modulatory effects on MHC class I and II in EAN rat macrophages even in the absence of IFN-gamma. The modulatory effect of antidepressant drugs on IFN-gamma induced MHC class I and II expression may contribute to their influence on demyelinating autoimmune diseases, and may have implications for their clinical use.

Animals↗

High IL-6 and low IL-10 in the central nervous system are associated with protracted relapsing EAE in DA rats.

Experimental autoimmune encephalomyelitis (EAE) is a CD4+ T cell-mediated, inflammatory demyelinating disease of the central nervous system (CNS) that serves as a model for multiple sclerosis (MS). The mechanisms behind differences in clinical course of EAE in different rat strains have not been defined. We induced acute EAE in Lewis rats and protracted relapsing EAE (PR-EAE) in DA rats and examined mRNA expression of IL-1 beta, IL-6, IL-10, IL-12, and TNF-beta in brain tissue sections, cerebrospinal fluid (CSF) cells, and lymph node cells. IL-1 beta, IL-12 and TNF-beta mRNA expression in brain tissue sections appeared early and peaked at the height of clinical signs in both acute and PR-EAE, consistent with a disease-promoting role for these cytokines. High levels of IL-6 mRNA-expressing cells were present in CNS and lymph node cells in PR-EAE, while almost absent in acute EAE. In contrast, IL-10 was very low in PR-EAE but strongly expressed in acute EAE, in particular during clinical recovery. Regulatory changes of IL-6 and IL-10 both systemically and within the CNS, but with temporal differences between compartments, seem pivotal for development of PR-EAE in DA rats. These findings could have relevance for pathogenesis and treatment of MS.

Animals↗

Induction of cytolysin mRNA in glial cells by IFN-gamma: a possible cytotoxic pathway in the CNS.

We utilized in situ hybridization to detect expression and regulation of cytolysin mRNA in microglia, astrocytes and oligodendrocytes from newborn rat brains. Expression under natural culture conditions was undetectable or very low, even after 10 days of culture. Cytolysin mRNA expression in microglia, astrocytes and oligodendrocytes was up-regulated by IFN-gamma. This up-regulation in glial cells was slow, and characterized by a gradually increased expression until day 10 of culture. IFN-gamma-mediated up-regulation of cytolysin mRNA was markedly more prominent in oligodendrocytes than in microglia and astrocytes. Unexpectedly, a combination of LPS and IFN-gamma did not exhibit a synergistic effect in the induction of cytolysin mRNA expression in the three types of glial cells. On the contrary, LPS strongly inhibited IFN-gamma-mediated cytolysin mRNA expression in microglia, astrocytes and oligodendrocytes. These results reveal that there may exist a glial cell-dependent cytotoxic pathway within the CNS, and that inducible cytolysin may play an important role in destruction of oligodendrocytes or clearance of infiltrating cells within the CNS in inflammatory diseases such as multiple sclerosis or experimental allergic encephalomyelitis.

Animals↗

Review: cytokines and the pathogenesis of multiple sclerosis.

Perivascular accumulation of mononuclear cells (MNCs) in the central nervous system (CNS) and high levels of myelin autoantigen-reactive T cells in blood and further enriched in cerebrospinal fluid (CSF) are characteristic for multiple sclerosis (MS) and suggest a role for immunoregulatory cytokines in MS pathogenesis. The difficulties inherent to measurements of cytokine concentrations in body fluids have been partly overcome by adopting techniques allowing cytokine determinations on cellular level. MS is associated with the parallel up-regulation of proinflammatory [interferon-gamma (IFN-gamma), tumor necrosis factor-alpha (TNF-alpha), lymphotoxin-alpha, and interleukin (IL)-12] and immune response-down-regulating [transforming growth factor-beta (TGF-beta), IL-10] cytokines systemically. A preferential up-modulation of TNF-alpha and lymphotoxin-alpha is observed in clinical exacerbations and of TGF-beta and IL-10 in remissions. The B cell-stimulating IL-4 and IL-6 are also up-regulated in MS, as is the cytolysis-promoting perforin. Cytokine production is elevated to an even higher degree in the CSF than systemically, underlining the autonomy of the immune responses in the CSF. All cytokine abnormalities are demonstrable already in very early MS, manifested by acute unilateral optic neuritis associated with more than two MS-like lesions on brain magnetic resonance imaging and oligoclonal IgG bands in CSF. The cytokine abnormalities hitherto observed are not MS specific, because they can be found in other inflammatory CNS diseases, e.g., aseptic meningitis and even noninflammatory neurological diseases like stroke. The influence on cytokine profiles, e.g., suppressing proinflammatory cytokines and promoting TGF-beta and IL-10, could be an important way to identify new and promising treatments of MS.

Cytokines↗

Shift from anti- to proinflammatory cytokine profiles in microglia through LPS- or IFN-gamma-mediated pathways.

In this study, cytokine mRNA profiles in microglia from newborn rats were detected by in situ hybridization. Under natural culture conditions, microglia expressed the immunosuppressive transforming growth factor-beta 1 (TGF-beta 1) and interleukin (IL) 10 to a greater degree than the pro-inflammatory cytokines IL-1 beta, IL-6, IL-12, interferon-gamma (IFN-gamma) and TNF-alpha. High TGF-beta 1 and IL-10 levels could reflect one mechanism for immune privilege within the CNS under physiological conditions. Stimulation of microglia with LPS or IFN gamma resulted in strong up-regulation of proinflammatory cytokines, while TGF-beta 1 and IL-10 were down-regulated. These effects of LPS or IFN-gamma are anticipated to reflect immunopathogenic processes within the CNS.

Animals↗

Both CD4+ and CD8+ T cells are essential to induce experimental autoimmune myasthenia gravis.

CD4+ T cells have been shown to be crucial in the development of experimental autoimmune myasthenia gravis (EAMG). The role of CD8+ T cells in EAMG is less well established. We previously showed that antibody depletion of CD8+ T cells in rats effectively suppresses EAMG. To further study the role and relationship of CD4+ versus CD8+ T cells in induction of EAMG, CD4-/-, CD8-/-, and CD4-8- mutant C57BL/6 mice and the parent CD4+8- wild-type mice were immunized with Torpedo acetylcholine receptor (AChR) plus complete Freund's adjuvant. Clinical EAMG was nearly completely prevented in CD4-8-, CD4-/-, and CD8-/- mice. This was associated with strongly reduced AChR-specific T and B cell responses, and with reduced levels of AChR-reactive interferon gamma (IFN-gamma) and interleukin 4 (IL-4) mRNA-expressing cells in lymphoid organs when compared with CD4+8+ wild-type mice. We conclude that (a) both CD4+ and CD8+ T cells are essential for development of EAMG, and a collaboration between these cell types may be necessary; (b) CD4+ as well as CD8+ T cells secrete IFN-gamma and IL-4, and both cytokines are involved in the development of EAMG; and (c), besides T cells, other immune cells might also be responsible for help of anti-AChR antibody production.

Animals↗

Transplantation of allogeneic CD34+ blood cells.

Pluripotent stem cells of hematopoiesis and lymphopoiesis are among the CD34+ cells in blood or bone marrow. After granulocyte-colony stimulating factor (G-CSF) treatment, 1% to 2% of the mononuclear cells in blood are CD34+ cells, which can be procured by leukapheresis. We investigated the potential of CD34+ blood cells for reconstituting hematopoiesis and lymphopoiesis after allogeneic transplantation. HLA-identical sibling donors of 10 patients with hematologic malignancies were treated with G-CSF (filgrastim), 5 microgram/kg subcutaneously twice daily for 5 to 7 days. CD34+ cells were selected from the apheresis concentrates by immunoadsorption, concomitantly the number of T cells was reduced 100- to 1,000-fold. After transplantation, five patients received cyclosporine A for graft-versus-host disease (GvHD) prophylaxis (group I); five patients additionally received methotrexate (group II). G-CSF and erythropoietin were given to all patients. Mean numbers of 7.45 x 10(6) CD34+ and 1.2 x 10(6) CD3+ cells per kilogram were transplanted. In group I, the median times of neutrophil recovery to 100, 500, and 1,000 per mm3 were 10, 10, and 11 days, respectively. Group II patients reached these neutrophil levels after 10, 14, and 15 days, respectively. Platelet transfusions were administered for a median of 18 days in group I and 30 days in group II, and red blood cells for 9 and 12 days, respectively. Between day 30 and 60, lymphocytes reached levels of 353 +/- 269 cells per mm3. The median grades of acute GvHD were III in group I and I in group II. Two patients in group I died from acute GvHD. Two leukemic relapses occurred in group II. Complete and stable donor hematopoiesis was shown in all patients with a median follow up of 370 (45 to 481) days. Allogeneic blood CD34+ cells can successfully reconstitute hematopoiesis and lymphopoiesis. Reduction of T cells by CD34+ blood cell enrichment and cyclosporine A alone might not be sufficient for prophylaxis of severe acute GvHD.

Acute Disease↗

[Therapy of chronic myeloid leukemia with interferon-alpha. A decade of experiences].

PATIENTS AND RESULTS: One hundred and fifty-nine patients with chronic myelogenous leukemia have been treated in six studies during 10 years at Hannover Medical School University Center. The prognosis of 111 patients without pretreatment has been improved compared to conventional therapy with a median survival of 5.7 years. Cytogenetic remissions have been induced in all studies followed for a longer time. The most pronounced improvement of prognosis has been observed in these patients. CONCLUSIONS: Several conclusions can be drawn on the basis of the results on the different treatment concepts: 1. Patients with pretreatment have an unfavourable response to interferon. 2. There is a likely effect of the dose of Interferon alpha on the frequency of cytogenetic remissions. 3. The combination of Interferon alpha and interferon gamma has been toxic and ineffective in a pilot study. 4. The combination of interferon and cytosine arabinoside has a positive impact on the frequency of cytogenetic remissions. A continuous parallel application of both drugs seems to be most effective in this respect. An ongoing trial has been initiated to compare a fixed combination of Interferon alpha and cytosine arabinoside and with hydroxyurea respectively. Additionally the feasibility of autologous peripheral blood stem cell transplantation will be studied in patients with insufficient response to the interferon treatment.

Antineoplastic Agents↗

[Intensive post-remission therapy in acute myeloid leukemia. Results of a prospective comparative study by the South Germany Hemoblastosis Group].

BACKGROUND: To study intensive postremission therapy in adult patients with acute myeloid leukemia myeloablative therapy followed by allogeneic or unpurged autologous bone marrow transplantation (BMT) was compared with high-dose cytosine-arabinoside/daunorubicin (HDAC) consolidation. PATIENTS AND METHODS: 148 de novo AML patients of maximum 50 years (median 36 years, range 16 to 50) were enrolled in the trial. Following induction and early consolidation chemotherapy consisting of daunorubicin, cytosine-arabinoside and VP-16 (DAV), patients with an HLA-identical sibling underwent allogeneic BMT. The other patients received (by randomization or patient's decision) either HDAC or high-dose busulfan plus cyclophosphamide followed by autologous BMT. RESULTS: Hundred and five 105 (70.9%) patients achieved a complete remission. The event-free survival rates after intensive postremission therapy after 72 months were: after BMT (24 patients) 62% (95% confidence interval +/- 19%), after HDAC (44 patients) 36 +/- 16% and after autologous BMT (12 patients) 18 +/- 22%. Thus allogeneic BMT was superior to autologous BMT (p = 0.04), as was HDAC compared to autologous BMT, although not significantly so (p = 0.15). Patients receiving 2 cycles of HDAC had a better 6-year event-free survival rate (47%) and a lower relapse rate (50%) than patients who received only 1 course (29% and 70% respectively). CONCLUSIONS: High-dose busulfan/cyclophosphamide followed by unpurged autologous BMT early after achieving CR had no advantage over high-dose ara-c/daunorubicin. Two cycles of HDAC yielded better results than 1 cycle. The highest event-free survival rate was reached with myeloablative therapy followed by allogeneic BMT.

Adolescent↗

[10 years transplantation of bone marrow and hematopoietic stem cells in adults at the Hannover Medical School].

PATIENTS AND METHODS: From January 1986 until August 1995 230 adult patients received an allogeneic or autologous transplantation of bone marrow or hematopoietic blood stem cells. The conditioning and myeloablative treatment regimens were chosen according to the underlying disease and type of transplant. RESULTS: The observation period comprises 1 to 115 months after transplantation. After allogeneic transplantation from HLA-identical family donors, the probabilities of disease-free survival were for acute myeloid leukemia in first complete remission (CR) (n = 35) 77%, for acute lymphoid leukemia in 1st CR (n = 7) 72% and in 2nd CR (n = 10) 40%, in first chronic phase of chronic myeloid leukemia (n = 34) 50% and in severe aplastic anemia (n = 7) 100%. Following myeloablative therapy and autologous transplantation the probabilities of disease-free survival were 47% in relapsed Hodgkin's disease (n = 22) and 42% for relapsed high-grade non-Hodgkin's lymphoma (n = 12). Eight of 10 patients with acute myeloid and 7 of 8 with acute lymphoid leukemia suffered a leukemic relapse after autologous bone marrow transplantation. Three of 8 patients with relapsed testicular cancer survived relapse-free. Treatment failures were due to more advanced acute graft versus host disease after allogeneic transplantation and caused by relapse after autologous transplantation. Current protocols evaluate the allogeneic transplantation of enriched CD34+ blood stem cells. In chronic myeloid leukemia the autologous transplantation of blood stem cells after myeloablative therapy is being studied.

Adolescent↗

[Ex vivo increase in hematopoietic progenitor cells for clinical use].

BACKGROUND: The clinical use of ex vivo expanded hematopoietic progenitor cells is currently explored. MATERIAL AND METHODS: In this study the culturing of G-CSF mobilized and purified CD34+ blood cells was investigated. The interleukins IL-1 beta, IL-3 and IL-6 (each at a dose of 300 U/ml) and stem cell factor (25 ng/ml) without or with erythropoietin (1 U/ml) were used. Cells of 10 healthy sibling donors and 10 patients with solid tumors were incubated under small-scale (n = 15, 2 ml) and large-scale (n = 7, 50 ml) culture conditions at 37 degrees C for 5 and 4 weeks, respectively. The cell density was adjusted to about 1 x 10(5) cells/ml. RESULTS: The nucleated cell counts increased approximately 7-fold and 10- to 70-fold after 1 and 2 weeks of incubation. Numbers of CD34+ cells doubled to triplicated within this time interval, without any significant changes in their clonogenicity (CFU-GM and BFU-E output). Thereafter a depletion of the CD34+ cell pool was noticed. However the numbers of CD34+/CD38(-)- or CD34+/ HLA-DR(-)- cells were reduced to a lesser extent. The expanded cells generated predominantly myeloid and almost no lymphoid cells. More glycophorin-A+ cells were produced when erythropoietin was added. Replacement of non-human additives with heat-inactivated autologous plasma had no influence on cell growth. Almost no proliferation was obtained with a 10-fold higher cell density (1.7 x 10(6)/ml in 100 ml), but the cells maintained their viability for 13 to 16 days. CONCLUSIONS: This study suggests, that the chosen culture conditions might be feasible for a large-scale ex vivo expansion of hematopoietic progenitor cells for clinical application. The impact of the ex vivo generated cells on hematopoietic regeneration after chemotherapy is currently under clinical investigation.

Antigens, CD34↗

Mucosal tolerance to experimental autoimmune myasthenia gravis is associated with down-regulation of AChR-specific IFN-gamma-expressing Th1-like cells and up-regulation of TGF-beta mRNA in mononuclear cells.

Oral and nasal administration of nicotinic acetylcholine receptor (AChR) to Lewis rats prior to myasthenogenic immunization with AChR and complete Freund's adjuvant (CFA) resulted in prevention or marked decrease of the severity of experimental autoimmune myasthenia gravis (EAMG) and suppression of AChR-specific B-cell responses and of AChR-reactive T-cell function. To examine the involvement of immunoregulatory cytokines and the underlying mechanisms involved in tolerance induction, in situ hybridization with radiolabeled cDNA oligonucleotide proves was adopted to enumerate mononuclear cells (MNC) expressing mRNA for the proinflammatory cytokine interferon-gamma (IFN-gamma), the B cell-stimulating interleukin-4 (IL-4), and the immunosuppressive transforming growth factor-beta (TGF-beta). Popliteal and inguinal lymph nodes from EAMG rats contained elevated numbers of AChR-reactive IFN-gamma, IL-4, and TGF-beta mRNA-expressing cells, compared to control rats receiving PBS orally or nasally and injected with CFA only. Oral and nasal tolerance was accompanied by decreased numbers of AChR-reactive IFN-gamma and IL-4 mRNA-expressing cells and strong up-regulation of TGF-beta mRNA-positive cells in lymphoid organs when compared to nontolerized EAMG control rats. The results suggest that IFN-gamma and IL-4 are central effector molecules in the development of EAMG and that TGF-beta plays an important role in tolerance induction to EAMG.

Administration, Intranasal↗

Randomised trial of filgrastim-mobilised peripheral blood progenitor cell transplantation versus autologous bone-marrow transplantation in lymphoma patients.

BACKGROUND: A randomised trial comparing filgrastim-mobilised peripheral blood progenitor cell (PBPC) transplants with autologous bone marrow transplantation (ABMT) for haematopoietic stem cell support has not been done. We compared the effects of filgrastim-mobilised PBPC or autologous bone marrow reinfused to lymphoma patients after high-dose chemotherapy in a prospective randomised multicentre trial. METHODS: The trial was done at six centres in three European countries. After high-dose chemotherapy (carmustine, etoposide, cytarabine, and melphalan [BEAM protocol]) 58 patients with advanced Hodgkin's disease or high-grade non-Hodgkin lymphoma received either filgrastim-mobilised PBPC (n = 27) or bone marrow (n = 31) for haemopoietic reconstitution. FINDINGS: The median number of days with platelet transfusions after grafting was 6 in the PBPC transplantation group and 10 in the ABMT group (estimate of treatment difference 5 days, 95% CI 3-7 days). Time to platelet recovery above 20 x 10(9)/L was 16 days in the PBPC transplantation group and 23 days in the ABMT group (p = 0.02). Time to neutrophil recovery above 0.5 x 10(9)/L was also reduced in the PBPC transplantation group (11 vs 14 days, p = 0.005). Patients randomised to PBPC transplantation needed fewer red blood cell transfusions (two vs three, p = 0.002) and spent less time in hospital (17 vs 23 days, p = 0.002). Early post-transplant morbidity and mortality as well as overall survival (median follow-up 311 days) were similar in both groups. There was no notable toxicity ascribed to filgrastim administration or the leucapheresis procedures. INTERPRETATION: In patients with lymphoma treated with high-dose chemotherapy, reinfusing filgrastim-mobilised PBPC instead of autologous bone marrow significantly reduced the number of platelet transfusions, the time to platelet and neutrophil recovery, and led to earlier discharge from hospital.

Adult↗

Autoreactive T cell responses and cytokine patterns reflect resistance to experimental autoimmune myasthenia gravis in Wistar Furth rats.

Various mouse and rat strains show different susceptibilities to experimental autoimmune myasthenia gravis (EAMG) that can be induced by immunization with acetylcholine receptor (AChR) and Freund's complete adjuvant, and represents a model for the antibody-mediated myasthenia gravis in humans. We examined AChR-induced B and T cell responses and cytokine mRNA expression to study the mechanisms behind susceptibility to EAMG in Lewis rats and resistance in Wistar Furth (WF) rats. Both strains had similarly elevated concentrations and affinities of serum anti-AChR antibodies, and no difference between the two strains for frequencies of cells in lymphoid organs expressing mRNA of the B cell stimulating cytokine interleukin-4 was found. In contrast, T cell responses to AChR measured by proliferation and by enumeration of interferon-gamma-expressing cells at both mRNA and protein level were lower in the resistant WF rats. This strain showed, instead, an up-regulation of the anti-inflammatory transforming growth factor-beta. Strain-related differences in the susceptibility to actively induced EAMG are thus related to quantitative differences in distribution between pro-inflammatory and anti-inflammatory cytokines.

Animals↗