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P Bader

Publications and source records attributed to P Bader.

At least 91 records · Page 5Linked to original sources

[Relapse of childhood ALL, AML and MDS after allogeneic stem cell transplantation can be prevented by donor lymphocyte infusion in a critical stage of increasing mixed chimerism].

BACKGROUND: Mortality in children with acute leukemias or MDS after allogeneic stem cell transplantation (allo-SCT) is mostly determined by relapses. It was recently shown by us that patients who develop increasing quantities of autologous hematopoietic cells in peripheral blood (increasing mixed chimerism, in-MC) after allo-SCT do significantly more often relapse (P < 0.0001) than patients with a complete chimerism (CC). In a small series of patients with in-MC, the relapse rate could be significantly reduced by administration of donor lymphocytes (DLI). METHODOLOGY: A prospective multicenter study was initiated under the question whether number of relapses can be significantly reduced either by withdrawal of post-transplant immunosuppression and/or by DLI in the critical stage of in-MC. RESULTS: Highly repetitive determination of the genetic status of 114 children with acute leukemias or MDS (ALL: n = 41, AML: n = 39, MDS: n = 34) revealed 55 cases with CC and 43 with in-MC. Relapses occurred significantly (P < 0.0001) more often in patients with in-MC (25/43) than in patients with CC (12/55). In-MC-patients showed a significantly (P < 0.01) enhanced event free survival rate (11/24) when DLI was given and/or post-transplant immunosuppression was stopped compared to patients which did not receive such an interventional regimen (1/19). Two in-MC-patients developed fatal GVHD after immunological intervention. CONCLUSION: These data substantiate that prophylactic immunotherapy on the basis of in-MC is a powerful treatment approach to suppress relapses of acute leukemias and MDS after allo-SCT.

Cause of Death↗

Ex vivo expansion of highly purified NK cells for immunotherapy after haploidentical stem cell transplantation in children.

BACKGROUND: Allogeneic natural killer (NK) cells are known to show medium to high cytotoxic activity against HLA-nonidentical leukemia or tumor cells. For a possible benefit of post transplant treatment with NK cells after haploidentical stem cell transplantation (haplo-SCT) we developed a clinical scale procedure for NK cell processing observing Good Manufacturing Practice (GMP). METHODS: Allogeneic donor NK cells were selected from 15 unstimulated leukaphereses using two rounds of immunomagnetic T cell depletion, followed by an NK cell enrichment step. CD56 (+)CD3 (-) NK cells were stimulated and expanded in vitro according to GMP. Quality control of NK cell purity, residual T cells and cytotoxic activity was done by multi-coloured flow cytometric analyses. RESULTS: Purification led to an absolute number of 234-1 237 x 10 (6) CD56 (+)CD3 (-) NK cells from leukapheresis harvests with a median purity of 95 % and a 4 to 6(1/2) log depletion of T cells. After two weeks stimulation with IL-2 a five-fold expansion of NK cells with a T cell contamination below 0.1 % was reached. Median cell viability was 95 % after purification and 99 % after expansion. The IL-2 stimulated NK cells showed a highly increased lytic activity against the MHC-I deficient K562 cells compared to freshly isolated NK cells and a medium cytotoxicity against patients' leukemic cells. CONCLUSIONS: Clinical scale enrichment and activation of allogeneic donor NK cells is feasible. High dose NK cell application may be a new treatment option for pediatric patients with leukemia or solid tumors in case of minimal residual disease or unbalanced chimerism post haplo-SCT as we could show for the first three patients .

Antigens, CD19↗

A comparison between three graft manipulation methods for haploidentical stem cell transplantation in pediatric patients: preliminary results of a pilot study.

Transplantation of hematopoietic stem cells from mismatched related donors makes a potential donor available for every child in need of stem cell transplantation. Here, we compare three different graft manipulation methods in patients with leukemias and lymphomas: positive selection of stem cells with either CD34 (n = 39) or CD133-coated magnetic microbeads (n = 14) and a new strategy which depletes T- and B-cells through the use of CD3- and CD19-coated microbeads (n = 11). Median purity of stem cells was comparable after CD34 (+)-selection and CD133 (+)-selection, whereas stem cells were only slightly enriched after CD3 (+)/CD19 (+)-depletion (97.5 %, 93.4 % and 1.02 %). Indirect depletion of T-cells by positive selection resulted in 1 x 10 (4) (median) residual CD3 (+)-cells/kg (0.7-3 x 10 (4)). Patients with CD3/CD19-depleted grafts received 3.2 x 10 (4) (median) (0.7-16 x 10 (4)) residual T-cells/kg. Those grafts also comprised NK-cells (median number: 86 x 10 (6)/kg), dendritic cells and monocytes/granulocytes. Primary engraftment of the stem cell products was comparable after CD34- and CD133-selection (85 and 72 %). In the CD3/CD19 group, 91 % had a primary engraftment. After reconditioning, all patients (64/64) were finally engrafted. Patients with CD34-selected or CD133-selected grafts had similar incidences of a GvHD II-IV (3 and 7 %), whereas a GvHD was slightly increased in patients receiving CD3/CD19-depleted cells (27 %). Reconstitution of CD3 (+) T-cells was faster in the CD3/CD19 group than in the CD34 or CD133 group. These preliminary results indicate, that CD3/CD19-selected grafts may be advantageous regarding engraftment and immunoreconstitution. Since effector cell with potential antileukemic activity are cotransfused, such grafts may be suited in particular for patients with insufficient remission.

AC133 Antigen↗

Adenoviral infections after transplantation of positive selected stem cells from haploidentical donors in children: an update.

UNLABELLED: We present updated results of stem cell transplantation with highly purified stem cells from haploidentical parental donors and infection with human adenovirus (HAdV) post stem cell transplantation (SCT). Survival post SCT is primarily determined by relapse, infections and far less by GvHD or other transplant related mortality. During the immune reconstitution the host is at significant risk for severe viral infections. HAdV infection is especially in children an important complication post SCT, with significant morbidity and mortality despite new antiviral treatment strategies. Although control of infection seems to require T-cells, the characterization of HAdV-specific T-cells post SCT has not been introduced in surveillance and treatment decisions. METHODS: Therefore we evaluated the impact of HAdV-infections on the survival between 1995 and 2004 (n = 63) and studied the occurrence of adenovirus-specific T-cells in children with (n = 9) and without (n = 9) HAdV-infection post allogeneic SCT and in healthy donors (n = 53). After stimulation ex-vivo with HAdV-antigen IFN-gamma secreting T-cells were analyzed by flowcytometry and defined as HAdV-specific T-cells. RESULTS: Until day 180 post SCT the cumulative incidence of all lethal viral infections (HAdV n = 5, cytomegalovirus n = 3, herpes simplex virus n = 1) was 16 % for the whole cohort of patients. Cumulative incidence of HAdV-associated mortality was 8.5 %. Cumulative incidence of all lethal viral infections could be now reduced from 16 % to 8 % in conjunction with new surveillance- and therapeutic-strategies. Children with HAdV-associated mortality all had no specific T-cells, although reconstitution of absolute lymphocyte counts exceeded 300/microl within 30 days post transplant. Patients who cleared HAdV infection had normal frequencies of HAdV-specific T-cells until day 200 post SCT. CONCLUSION: In summary adenovirus specific T-cell reconstitution should be monitored in patients after SCT to limit the use of anti viral chemotherapy and help to identify those patients that would benefit from new therapeutic strategies like adoptive transfer of virus specific T-cells.

Adenovirus Infections, Human↗

Immunotherapy in children: report from the Reisensburg-Symposium October 20-22, 2004 and recent advances.

Immunotherapy of childhood malignancies has a magic aura of promising an easy way to cure. It is not only the public, but also the medical community, which has caused this hope. Therefore, it was worthwhile to bring together a panel of experts working in the field of immunotherapy in order to discuss ongoing projects, and to show hopes and disappointments. The result was a fascinating symposium sponsored by The Kind Philipp Leukemia Foundation (Mönchengladbach, Germany). The symposium took place in the Reissensburg near Ulm (Germany) which gives the ideal location for such an event.

Age Factors↗

Expression analysis of multidrug resistance associated genes in neuroblastomas.

In a series of 40 neuroblastomas we analyzed the relative mRNA levels of the MDR associated genes encoding MDR1/P-glycoprotein (MDR1), multidrug resistance associated protein (MRP), lung cancer resistance related protein (LRP) and topoisomerase IIalpha (TOPO IIalpha) by cDNA-PCR. Cyclin A (CYCA) was included to examine cellular proliferation activity. MYCN gene expression was analyzed as it was recently shown to be associated with enhanced MRP gene expression in neuroblastomas. We found that tumors with MYCN gene amplification exhibit significantly increased MYCN and MRP gene expression levels. Tumors with an allelic loss of the chromosomal 1p region showed significant (P<0.05) lower MDR1 gene expression (MDR1: 50+/-29, n=4) than tumors without (MDR1: 117+/-81, P<0.05, n=36). Moreover, significant positive correlations were found for MYCN/TOPO IIalpha (P<0.0001), MYCN/CYCA (P<0.05), TOPO IIalpha/CYCA (P<0.01), MRP/CYCA (P<0.0001) and MRP/LRP (P<0.05). Our results give evidence that MDR in neuroblastomas might be caused by multiple resistance factors and that a higher proliferation rate of neuroblastoma cells possibly based on altered MYCN gene expression is associated with enhanced MRP, CYCA and TOPO IIalpha gene expression.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Potentially therapeutically relevant differences of antisense oligonucleotide uptake in CD34+ hematopoietic stem cells, leukemic blasts and cancer cells from patients.

Antisense oligonucleotide (ON) technology, e.g. against drug resistance or antiapoptotic factors, may play an important role in future cancer chemotherapy. An unanswered question in this field is the capacity for uptake of antisense molecules in normal and malignant patients' cells. Therefore, we examined the cellular uptake of FITC-labeled phosphorothioate modified ONs in: i) cells from the T-lymphoblastoid cell line CCRF-CEM, ii) CD34+ hematopoietic progenitors from healthy donors, iii) blasts from ALL or AML patients, iv) cells from the ovarian cancer cell line A2780 and v) cancer cells from malignant fluids. The cationic polymer ExGen was taken as a carrier for transfection, while FITC-ON uptake was evaluated by flow cytometry. We found marked differences between these cell types. Cancer cells from the cell line A2780 and from patients showed a distinctly enhanced uptake compared to hematopoietic progenitors and leukemic blasts. Since bone marrow toxicity substantially limits any conventional chemotherapeutic regimen, a better ON uptake in cancer cells compared to hematopoietic precursors might give an advantage for therapeutic approaches using e.g. ON-based chemosensitization.

Antigens, CD34↗

[Iatrogenic esophageal perforation-- severe complication in the care of premature infants].

Two preterm neonates were referred to our institution, one with suspected oesophageal atresia and one with the definite diagnosis of oesophageal atresia for further treatment. Diagnostic procedures identified an iatrogenic perforation of the oesophagus which was caused by a feeding tube in both patients. The treatment was based on broad-spectrum antibiotic therapy and parenteral nutrition. The perforations healed without long term sequelae.

Anti-Bacterial Agents↗

Quantitative assessment of mixed hematopoietic chimerism by polymerase chain reaction after allogeneic BMT.

Patients who develop mixed hematopoietic chimerism (MHC) after allogeneic bone marrow transplantation (allo-BMT) might have an increased risk of relapse or graft failure. In order to identify patients with MHC we established a quantitative polymerase chain reaction (PCR) approach to estimate the individual degree of autologous recovery and investigate the dynamics of MHC posttransplant. Therefore standardized mixed chimeric samples were generated in each individual case by mixing pretransplant recipient and donor DNA at a range of percentages. After amplification the samples were analyzed densitometrically and signal intensities were taken as the basis of individual standard curves. Subsequently posttransplant DNA samples were also analyzed, the intensity of the informative signals were compared to the standard curves and autologous recovery was expressed in percentage related to host DNA. We investigated 40 pediatric patients receiving allo-BMT by this method. 10/40 developed MHC during course of the observation period. Each patient with MHC revealed a certain dynamic. This approach might be helpful when deciding on early intervention and additional treatment to prevent graft failure or relapse.

Bone Marrow Transplantation↗

Expression analysis of protein kinase C isozymes and multidrug resistance associated genes in ovarian cancer cells.

We recently demonstrated a correlation between the expression levels of the PKC eta isozyme and the MDR1 or MRP genes in blasts from AML patients, and in primary breast cancers. In order to extend these findings we analysed ovarian cancer cells from 14 ascites aspirates from 8 patients using a cDNA-PCR approach. 5 patients were examined in follow up studies. 4 out of these 5 patients received continuous chemotherapy. The relative increases in MDR1, MRP, LRP or PKC eta mRNA expression levels were monitored. In one of these patients combined significant increase in MDR1, MRP, LRP and PKC was seen. One follow up sample was obtained after chemotherapy was discontinued. In this case significant relative decreases of MDR1, LRP and PKC eta mRNA expression levels were found. Furthermore, a significant positive correlation was determined for the relative mRNA expression levels of MRP and PKC eta. These results point to a multifactorial emergence of MDR in this type of tumor with a possible involvement of the PKC eta isozyme.

ATP Binding Cassette Transporter, Subfamily B, Mem↗