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S Burdach

Publications and source records attributed to S Burdach.

At least 55 records · Page 3Linked to original sources

Risk factors for capillary leakage syndrome after bone marrow transplantation.

Age, hematopoietic growth factors, cyclosporin A, mode of bone marrow transplantation (BMT) (autologous, allogeneic-related, unrelated), and underlying disease were assessed as potential risk factors for capillary leakage syndrome (CLS) in 96 patients after BMT. CLS was defined as unexplained weight gain of > 3% within 24 h and nonresponsiveness to furosemide. CLS occurred in 9/21 patients after unrelated compared with 2/33 after allogeneic-related BMT (p = 0.0017) for hematopoietic disorders (n = 54) and in 6/7 patients after allogeneic-related compared with 3/35 after autologous BMT (p = 0.001) for solid tumors (n = 42). Hematopoietic growth factors and cyclosporin A were no significant risk factors on their own. We conclude that unrelated BMTs or high-intensity conditioning regimens used in combination with allogeneic-related BMT are the main risk factors for CLS.

Bone Marrow Transplantation↗

C1 esterase inhibitor concentrate for capillary leakage syndrome following bone marrow transplantation.

The prognosis of patients with severe capillary leakage syndrome (CLS) after bone marrow transplantation (BMT) is dismal despite aggressive use of intensive care therapy. Because the activated classical pathway of complement and relatively low levels of C1 esterase inhibitor (C1 INH) activity are known features in these patients, we evaluated the efficacy of a therapy using purified, human C1 INH concentrate. Severe CLS was defined as increase in body weight by more than 3% within 24 h combined with generalized edema, impaired hemodynamic system (tachycardia and/or decreased blood pressure), and non-responsiveness to furosemide. Of 142 patients, 22 developed severe CLS. The first seven patients whom we diagnosed with this complication were assessed as control patients. Fifteen patients with severe CLS were treated with C1 INH concentrate using a cumulative dose of 180 units/kg body wt. (initial dose: 60 units/kg, followed by two doses at 30 units/kg and four doses at 15 units/kg, every 12 h). The survival rate of patients with CLS was 57% at 1 year after BMT in the C1 INH treatment group, compared with 14% in the control group (p = 0.008). Eight of 15 treated patients are alive at a median of 9 months (range: 4-55) after BMT. The plasma levels of the complement activation parameters C4d and C5a were 3 +/- 1.1 mg/dl (mean +/- S.D.) and 0.3 +/- 0.1 microgram/l, respectively, prior to BMT, increasing to 8.2 +/- 2.1 mg/dl and 1.3 +/- 0.4 micrograms/l, respectively, at diagnosis of CLS. After infusion of C1 INH concentrate the plasma levels of C5a and C4d normalized. The activity of C1 INH rose to 139 +/- 10% of normal human plasma NHP pool (mean +/- S.D.) after infusion. The CH50 values were not significantly altered. The fluid status normalized within 11 days in 14 of 15 treated patients. The results of this study suggest that therapy with C1 INH concentrate improves the prognosis of patients with CLS after BMT. This has to be confirmed in a randomized, controlled trial.

Adolescent↗

Decreased interleukin 10 and increased interferon-gamma production in patients with chronic graft-versus-host disease after allogeneic bone marrow transplantation.

Ex vivo production of interleukin 10 (IL-10) and interferon-gamma (IFN-gamma) was investigated in patients with (n = 5) or without (n = 5) chronic graft-versus-host disease (cGVHD) after allogeneic BMT. Patients were matched for time after transplantation and type of transplant. Anti-CD3-induced IL-10 production in MNCs isolated from patients with cGVHD (range/median: 26-650 pg/10(6) MNC; 400 pg/10(6) MNC) was significantly reduced compared to patients without cGVHD (646-2662 pg/10(6) MNC; 1314 pg/10(6) MNC; P < 0.05) or healthy controls (679-6361 pg/10(6) MNC; 3054 pg/10(6) MNC, P < 0.01). In vitro inhibition of IL-10 by an anti-IL-10 monoclonal antibody enhanced the release of IFN-gamma by anti-CD3-stimulated MNCs from 354 +/- 34 pg/10(6) MNCs to 899 +/- 61 pg/10(6) MNCs. Thus, low IL-10 production may cause high IFN-gamma release. In anti-CD3-activated MNCs obtained from patients with cGVHD IFN-gamma production was significantly increased (324-3331 pg/10(6) MNC; 1849 pg/10(6) MNC) compared to healthy donors (127-900 pg/10(6) MNC; 305 pg/10(6) MNC P < 0.01). In addition, median IFN-gamma release by anti-CD3-activated MNCs obtained from patients without cGVHD (464 pg/10(6) MNC) was about five-fold lower than in patients with cGVHD. In contrast to cytokine production, the differential leukocyte count (percentages of monocytes, T cells and CD4/CD8 ratio) was essentially the same both in patients with or without cGVHD. Thus, a different activation of Th-1 and Th-2 cells by anti-CD3 may be responsible for the deviant cytokine productions in patients with cGVHD. In conclusion, we observed significantly decreased IL-10 production in patinets with cGVHD and an increased median IFN-gamma secretion, which may contribute to the altered cytokine production after allogeneic BMT leading to cGVHD. Thus, supplementing IL-10 may become a new strategy for preventing cGVHD.

Adolescent↗

Autografting in Philadelphia (Ph)+ chronic myeloid leukaemia using cultured marrow: an update of a pilot study.

Incubation of CML marrow in long-term culture (LTC) conditions may result in selection of normal (Ph-) LTC-initiating cells (LTC-IC) as early as 10 days, and in production of Ph- clonogenic cells and mature end cells within 5 weeks. This was the rationale for using marrow cells from 10-day-old LTC to autograft nine chronic phase CML patients, ineligible for HLA-matched sibling donor transplant, and who were selected on the basis of a pre-transplant screening LTC test. Of the transplanted patients three died; two of graft failure and one of therapy-related toxicity with 97% Ph- cells 16 months following the autograft. The reconstituting haemopoietic cells in the seven engrafted patients were 100% Ph- in four, > or = 90% Ph- in two and 71% Ph- in the seventh, with a duration of complete cytogenetic response of 6-12 months. Three patients reverted to chronic phase and 100% Ph+ haemopoiesis 27-36 months post-autograft. The other three patients remain in continuous haematological remission with 22% Ph- cells in one and complete cytogenetic remission in the other two 3-4 years post-autograft. IFN therapy was generally introduced on the first evidence of recurrence of Ph+ cells or of cytogenetic deterioration. Further strategies to modulate immune surveillance in vivo may improve the outcome of cultured marrow autografts which give an initial and rather prolonged bias towards Ph- haemopoiesis.

Adult↗

Reversible brain MRI changes in acyclovir neurotoxicity.

This case report shows reversible brain MRI changes probably associated with acyclovir toxicity. So far, neuroimaging in acyclovir toxicity had been negative or uninformative. A 12-year-old girl developed focal secondary generalizing epileptic fits following 4 weeks of prophylactic administration of acyclovir (3 x 10 mg/kg body weight/day i.v.) on day +22 after allogeneic peripheral blood stem cell transplantation for CML. Infective causes were excluded. Brain MRI demonstrated multiple gadolinium-enhancing areas with impairment of the blood-brain barrier in cortical and subcortical regions. Clinical symptoms and neuroimaging pathology resolved completely within 9 days of acyclovir withdrawal.

Acyclovir↗

German consensus on immunogenetic donor search for transplantation of allogeneic bone marrow and peripheral blood stem cells.

In Germany allotransplantation of bone marrow or peripheral blood stem cells is presently performed by 34 different teams operating more or less independently. Thus, strategies of immunogenetic donor search, use of the various tissue typing techniques and policy on acceptable HLA mismatches in related and unrelated settings may vary considerably from one transplant centre to another. This paper summarises the results of the first German consensus meeting on immunogenetic donor search for bone marrow/peripheral blood stem cell grafting. The main goal of the participating transplant physicians and immunogeneticists was to define national standards for the above issues.

Bone Marrow Transplantation↗

High interleukin-10 serum levels are associated with fatal outcome in patients after bone marrow transplantation.

IL-10 plays an important role in the control of immune reactions during systemic infection. Here, IL-10 serum levels were investigated in patients after BMT. The IL-10 levels correlated with the clinical course of the patients and with serum levels of C-reactive protein (CRP) and neopterin (NP). A total of 26 patients with AML (7), ALL (12), CML (2), NHL (3) and multifocal Ewing's sarcoma (2) had received autologous (10) or allogeneic (16) BMT from related (9) or unrelated donors (7). Routine serum samples were obtained prior to BMT and at days 46 and 100 after BMT. However, in patients with severe complications additional samples were drawn at individual points in time. Prior to BMT, IL-10 serum levels were not detectable in 24/24 patients. Post-BMT, 11 patients developed elevated IL-10 levels, of these eight died of complications (DOC), whereas only one of 15 patients with undetectable IL-10 died of complications, indicating that high IL-10 levels were significantly correlated with severe life-threatening complications (chi2, P < 0.01). To determine the pathomechanism and role of the increased IL-10 levels, they were correlated to the respective NP and CRP serum concentrations. CRP and NP concentrations were found significantly elevated in patients with detectable IL-10, indicating a severe acute phase reaction associated with macrophage activation. In conclusion, high IL-10 serum levels in patients after BMT were significantly associated with fatal outcome. Since IL-10 is a strong suppressor of T cell immunity, high IL-10 production in patients with severe complications such as septic shock or GVHD > grade II after BMT might lead to functional immunodeficiency contributing to the poor prognosis of these patients.

Adolescent↗

Allogeneic bone marrow transplantation for chronic myelomonocytic leukemia in childhood: a report from the European Working Group on Myelodysplastic Syndrome in Childhood.

PURPOSE: To evaluate the role of allogeneic bone marrow transplantation (BMT) in children with chronic myelomonocytic leukemia (CMML). PATIENTS AND METHODS: Forty-three children with CMML given BMT and reported to the European Working Group on Myelodysplastic Syndrome in Childhood (EWOG-MDS) data base were evaluated. In 25 cases, the donor was a human leukocyte antigen (HLA)-identical or a one-antigen-disparate relative, in four cases a mismatched family donor, and in 14 a matched unrelated donor (MUD). Conditioning regimens consisted of total-body irradiation (TBI) and chemotherapy in 22 patients, whereas busulfan (Bu) with other cytotoxic drugs was used in the remaining patients. RESULTS: Six of 43 patients (14%), five of whom received transplants from alternative donors, failed to engraft. There was a significant difference in the incidences of chronic graft-versus-host disease (GVHD) between children transplanted from compatible/one-antigen-mismatched relatives and from alternative donors (23% and 87%, respectively; P < .005). Probabilities of transplant-related mortality for children given BMT from HLA-identical/one-antigen-disparate relatives or from MUD/ mismatched relatives were 9% and 46%, respectively. The probability of relapse for the entire group was 58%, whereas the 5-year event-free survival (EFS) rate was 31%. The EFS rate for children given BMT from an HLA-identical sibling or one-antigen-disparate relative was 38%. In this latter group, patients who received Bu had a better EFS compared with those given TBI (62% v 11%, P < .01). CONCLUSION: Children with CMML and an HLA-compatible relative should be transplanted as early as possible. Improvement of donor selection, GVHD prophylaxis, and supportive care are needed to ameliorate results of BMT from alternative donors.

Bone Marrow Transplantation↗

[Hematopoietic stem cell transplantation: principles and practice].

This article describes the basic definitions, indications and complications of hematopoietic stem cell transplantation. The different modes of transplantation (autologous, allogeneic-related and allogeneic-unrelated transplantation) are explained with regard to the underlying immunological processes and consequences for duration of treatment, distribution of age, complications, lethality, and for the family of the patient. In our department, the duration of the hospital stay was (median) 44 days for autologous BMT, 45 days for allogeneic-related BMT and 66 days for allogeneic-unrelated BMT. Six to twelve years old children showed a peak for allogeneic related transplantations; these children were treated mainly for relapse of acute lymphoblastic or myeloid leukemias. Patients over 15 years old showed a peak for autologous transplantations; due to the research focus of our center, Ewing's sarcoma was the main underlying disease in this age group. Allogeneic-unrelated transplantations were uniformly distributed over the whole age range from nine months to 24 years.

Adolescent↗

The pulmonary alveolar proteinosis in granulocyte macrophage colony-stimulating factor/interleukins 3/5 beta c receptor-deficient mice is reversed by bone marrow transplantation.

Mice mutant for granulocyte macrophage colony-stimulating factor (GM-CSF) or the common receptor component (beta c) for GM-CSF, interleukin (IL)-3, and IL-5 exhibit a lung disorder similar to human pulmonary alveolar proteinosis, a rare disease with congenital, infantile, and adult forms. Bone marrow transplantation and hematopoietic reconstitution of beta c mutant mice with wild-type bone marrow reversed the established disease state in the lungs, defining this disease as hematopoietic in nature. It is likely that the disease involves alveolar macrophages, as donor myeloid cell engraftment into the lungs of mutant recipient mice correlated with reverting both the disease and an abnormal macrophage morphology seen in the lungs of affected animals. Recombination Activating Gene-2 mutant donor bone marrow, which lacks the potential to develop lymphocytes, reversed the pathology in the lungs to the same extent as whole bone marrow. These data establish that certain lung disorders, if of cell-autonomous hematopoietic origin, can be manipulated by bone marrow transplantation.

Animals↗

Combined chemokine and cytokine gene transfer enhances antitumor immunity.

The probability of producing a specific antitumor response should be increased by multiplying the number of T lymphocytes that encounter the malignant cells. We tested this prediction in a murine model, using a recently discovered T-cell chemokine, lymphotactin (Lptn). This chemokine increased tumor cell infiltration with CD4+ lymphocytes but generated little antitumor activity. Coexpression of the T-cell growth factor interleukin-2, however, greatly expanded the T lymphocytes attracted by Lptn, affording protection from the growth of established tumor in a CD4+ and CD8+ T cell-dependent manner. Lesser synergy was seen with GM-CSF. Hence coexpression of a T-cell chemokine and T-cell growth factor potentiates antitumor responses in vivo, suggesting a general strategy to improve cancer immunotherapy.

Animals↗

Generation of the complement activation product C5a precedes interleukin-2-induced capillary leakage syndrome.

Capillary leakage syndrome (CLS) is a severe side effect of intravenous interleukin-2 (IL-2) therapy. Twenty-seven cycles of IL-2 therapy [six (day 1), nine (day 2), and 12 >( 10(6) U/m(2) body surface (days 3 to 5), given as continuous infusion] were analyzed in children and adolescents. The anaphylatoxin C5a was assessed as an early predictor for CLS. CLS developed in 11 of 27 cycles of IL-2 infusion. C5a at day 2 of IL-2 infusion (0.8-9.43 mu g/L; median, 1.8 mu g/L) was increased in CLS patients when compared with baseline values (0.21-0.74 mu g/L; median, 0.40 mu g/L; p = 0.01) and when compared with C5a at day 2 in non-CLS patients (0.44-1.2 mu g/L; median, 0.62 mu g/L; p <0.01). Ten of 11 CLS patients showed C5a levels >1.0 mu g/L, whereas 14 of 16 patients who did not develop CLS showed C5a <1.0 mu g/L (predictive value positive 83% for CLS).

Adolescent↗

Differential production of interleukin-3 in human T lymphocytes following either CD3 or CD2 receptor activation.

Interleukin-3 (IL-3) is expressed in T lymphocytes and stimulates the growth of multipotent hematopoietic progenitors. Little is known, however, about the stimuli that lead to IL-3 protein release. We examined IL-3 and granulocyte-macrophage colony-stimulating factor (GM-CSF) mRNA expression and protein secretion in human T lymphocytes following activation via the TCR/CD3 complex, the CD2 receptor, and the IL-2 receptor. GM-CSF mRNA expression and protein release were found in CD3 and CD2 activated T cells with maximum GM-CSF release following stimulation with IL-2. IL-3 protein release is regulated via the CD2 receptor with virtually no IL-3 release after T cell stimulation via CD3. In contrast, IL-3 mRNA accumulation is more pronounced after CD3 activation than after CD2 activation. This suggests that upregulation of IL-3 protein release following T cell stimulation via CD-2 occurs largely at the translational or posttranslational level. These data also indicate that differential control of cytokine production can occur in response to activation of the alternative T cell receptor. Interaction of the T cell CD2-receptor with its natural ligand LFA-3 expressed on stromal cells might represent a regulatory mechanism for rapid release of IL-3, facilitating proliferation of multipotent hematopoietic cells.

CD2 Antigens↗

Humoral immunodeficiency in patients after bone marrow transplantation.

Ex vivo IgG production was determined in 17 children and adolescents and in 14 adult patients between 10 months and 6 years after BMT. Twenty-four patients received allogeneic transplants. Seven patients were transplanted with autografts. Seven patients received immunosuppressive therapy. B cells were purified by positive selection with a CD20 antibody. After IL-2 or IL-10 stimulation, IgG production of SAC-preactivated B cells in patients with immunosuppression (median/range: 11/4-15 ng/ml or 14210-29 ng/ml) was significantly reduced compared with patients receiving allogenic (30/3-860 ng/ml or 33/2-3431 ng/ml; P < 0.01) or autologous transplants (75/7-1431 ng/ml or 269-/7-13600 ng/ml, P < 0.01). In 14/31 patients ex vivo IgG production was defective. Investigations of B cell function in patients with defective IgG production was performed significantly earlier after BMT compared with patients with normal IgG production ex vivo (2 +/- 1 years vs 3.3 +/- 1.5 years; P < 0.05). In addition, only patients with a B cell deficiency received immunosuppression. However, patients ex vivo IgG produced by B cells was decreased, but IgG production/sIgG+ B cells was within range of healthy volunteers. The number of IgG-committed B cells in these patients was significantly reduced compared to patients without deficiency (23/19-45/microliter vs 100/14-336/microliter; P < 0.05), indicating an in vivo switching defect. Although IL-10 is known to induce IgG-isotype switching in vitro, production of IL-10 by anti-CD3 activated MNCs obtained from patients with a switching defect did not differ from patients without B cell defects (1699/400-2662 pg/ml vs 724-112-1826 pg/ml). In nine patients IgG production and IgG production/sIgG+ B cells were impaired. The number of sIgG+ B cells was not decreased compared with patients without B cell deficiency (115/18-288/microliter), indicating a defective terminal differentiation of IgG-committed B cells to plasma cells. Although autocrine IL-6 is essential for plasma cell formation of isotype-determined B cells, it was comparable in patients with a terminal deficiency and without deficiency (3838/583-5967 pg/ml vs 2423/1643-6184 pg/ml). However, IL-10 production by anti-CD3 activated MNCs in patients with a terminal B cell defect (426/54-2262 pg/ml, P < 0.05) was significantly lower than in patients without deficiency, indicating a deviant cytokine production by T cells which might in part account for the B cell defect. Defective isotype switching as well as impaired terminal differentiation of B cells were found. Further analysis of factors regulating isotype-switching in vivo as well as cytokine receptor expression or signalling processes of differentiation factors in activated B cells might help to characterize the nature of these B cell deficiencies after BMT.

Adolescent↗

Treatment of acute graft-versus-host disease with methylprednisolone and cyclosporine with or without an anti-interleukin-2 receptor monoclonal antibody. A multicenter phase III study.

A double-blind, placebo-controlled trial of BT563, including 13 European centers, was initiated in October 1989 to compare the efficacy of the combination of in vivo anti-CD25 mAb (BT 563), cyclosporine, and steroids versus placebo and CSA-steroids in the treatment of grade II and III acute graft-versus-host disease (GVHD). Sixty-nine patients participated in the study, which excluded non-genotypically identical allogeneic bone marrow transplant recipients. No statistically significant differences were observed, clinically or biologically, between the 2 groups before the onset of the treatment. Treatment responses were scored during and after the 3-week treatment period (mAb or placebo). Efficacy was evaluated on days 4, 10, 20, 30, and 60 or on any day the patient's condition was found to be deteriorating. Preceding and systemically untreated GVHD of grade I was observed in 59% of the cases. No statistically clinically significant differences between the 2 groups were observed during or upon completion of treatment in GVHD grade. Nine patients in the placebo group and 6 in the active group were withdrawn of the study. Thirteen of these 15 patients were withdrawn because of failure of GVHD therapy (9 in the placebo group and 4 in the BT563 group). At day 20 after onset of the treatment, the response rate was 63% and 70% for the placebo and BT563 groups, respectively (NS). Probability of survival at 1 year was 59% and 66% (NS) for the placebo and active groups, respectively. In conclusion, despite preliminary promising results in the treatment of steroid-resistant acute GVHD, the role of first-line treatment with an in vivo anti-interleukin-2 receptor mAb remains to be determined.

Acute Disease↗

Definition of a new score for severity of generalized Neisseria meningitidis infection.

Neisseria meningitidis infection may present as meningitis or as severe, fulminant sepsis. In order to classify individual patients early according to the expected course of the disease, we developed a score named Neisseria sepsis index [NESI]. The NESI was defined using the parameters heart rate, mean arterial blood pressure, base excess and presence of acute subcutaneous bleeding and/or skin necroses (minimal value [= no evidence for sepsis] NESI 0; maximum value [= most severe sepsis] NESI 8). Seventeen patients with documented, systemic N. meningitidis infection were prospectively assessed for the terminal complement complex (TCC), serum tumour necrosis factor alpha (TNF alpha) levels (as laboratory parameters for severity of sepsis) and NESI score. The evaluation was immediately performed when the patients were admitted to the hospital. The 17 patients showed the following distribution of data: NESI 0 (n = 4), NESI 1 (n = 6), NESI 2 (n = 0), NESI 3 (n = 1), NESI 4 (n = 2), NESI 5 (n = 2), NESI 6 (n = 0), NESI 7 (n = 1), NESI 8 (n = 1). Mortality was 4/17 patients, all had NESI > or = 5. TCC values ranged from 647-6461 ng/ml (normal range: 130-360 ng/ml); and was not correlated to NESI. TNF alpha values ranged from 10-910 pg/ml and were correlated to NESI (r2 = 0.71, n = 17, P < 0.001). In patients with fatal outcome, TNF alpha was 600 +/- 160 pg/ml (mean +/- SEM) and in surviving patients 130 +/- 50 pg/ml (mean +/- SEM). TNF alpha was increased in 15/17 patients when compared to normal controls (< 27 pg/ml). CONCLUSION. The NESI is based on few clinical, objective data, that are available in every hospital. NESI appears to offer an instrument: (1) for making decisions in regard to appropriate monitoring and treatment of vital organ function; and (2) for assessing the quality of care for this life-threatening infection.

Adolescent↗