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Biomedical subjects

K Kolbe

Publications and source records attributed to K Kolbe.

At least 37 records · Page 2Linked to original sources

Analysis of the p53 and MDM-2 gene in acute myeloid leukemia.

The MDM-2 (murine double minute 2) gene codes for a cellular protein that can bind to the p53 tumor suppressor gene product, thereby functioning as a negative regulator of p53. In order to define the role of the MDM-2 gene in the pathogenesis of human acute myeloid leukemia, the expression and the sequence of the MDM-2 gene were examined in samples of bone marrow and/or peripheral mononuclear cells of 38 patients by using immunostaining, polymerase chain reaction (PCR), single strand conformation polymorphism, and sequencing. Immunohistochemical staining detected a weak accumulation of the MDM-2 protein in AML patients of FAB classification M4 and M5. RT-PCR analysis revealed a heterogeneous expression pattern of MDM-2 mRNA in AML samples of different FAB classification. An increased level of MDM-2 mRNA expression was observed in 17 of 38 AML patients when compared to normal controls. No structural changes in a 488 bp region extending from nucleotide 890 to 1378 of the MDM-2 cDNA were detected using RT-SSCP and sequence analysis. In addition, heterogeneous expression of p53 transcripts was found with the highest p53 mRNA levels in AML M4 and M5. Interestingly, there seems to be a correlation between the relative ratios of p53 and MDM-2 mRNA levels in AML M4 and M5: in 15 of 23 cases high p53 mRNA expression was directly associated with high levels of MDM-2 transcripts. An exclusively intranuclear p53 immunostaining pattern was found in 10 of 16 (58%) AML FAB M4 and M5, whereas the remaining AML samples tested were negative for p53 (0/10). Using RT-SSCP analysis and direct sequencing of the RT-PCR amplification products of p53 exon 5-8, we observed that only 1 of 38 AML patients showed a point mutation in the p53 gene. This missense mutation occurred in the evolutionary highly conserved region of p53 at codon 255 (Ile to Phe). These data indicated that structural alterations of the p53 gene do not play an important role in the initiation and progression of AML. However, abrogation of p53 tumor suppressor function due to MDM-2 overexpression may be an alternative molecular mechanism by which a subset of AMLs may escape from p53-regulated growth control.

Acute Disease↗

Preliminary results of stem cell mobilization in chronic myeloid leukemia with a moderate intensity chemotherapy regimen and G-CSF or G-CSF plus IL-3.

Mobilization of Philadelphia chromosome (Ph) negative peripheral blood stem cells has been reported subsequent to intensive chemotherapy. We asked whether peripheral blood stem cells can be harvested subsequent to a less toxic chemotherapy regimen. Patients were treated with idarubicin 12 mg/m2 on day 1 and 2 and ara-C 100 mg/m2 days 1-5 and 5 or 10 micrograms/m2 G-CSF. In case of insufficient yield chemotherapy was repeated using IL-3 and G-CSF for mobilization of stem cells. Fourteen patients received 18 cycles of chemotherapy. The majority of patients were in late chronic phase and treated after secondary (interferon-alpha) IFN-alpha resistance. sufficient numbers of peripheral blood stem cells were harvested in 11 out of 14 patients. Although mixed Ph positive/Ph negative leukaphereses were harvested in the majority of patients, in no case were sufficient numbers of purely Ph negative progenitor cells for transplantation obtained. No toxic deaths were observed during the aplasia and the toxicity was acceptable. These preliminary results demonstrate that this procedure can be safely applied in patients with chronic phase CML and allows the harvesting of sufficient numbers of peripheral blood stem cells. The efficacy of this regimen for the mobilization of Ph negative cells should be further explored in patients at an earlier stage of the disease.

Adult↗

Plasma levels of IL-1, TNF alpha, IL-6, IL-8, G-CSF, and IL1-RA during febrile neutropenia: results of a prospective study in patients undergoing chemotherapy for acute myelogenous leukemia.

Plasma levels of IL-1, IL-6, IL-8, IL1-RA, TNF alpha, and G-CSF were prospectively studied during 23 chemotherapy cycles of 20 patients suffering from acute myelogenous leukemia. Increased plasma levels of IL-6, IL-8, and G-CSF were observed in patients with febrile neutropenia and/or major infection. Plasma levels of IL-6, IL-1, TNF alpha and IL-1-RA measured 1 day before and 1 day after the onset of febrile episodes did not accurately predict the development of major infection. In contrast, IL-8 plasma levels were significantly higher in those patients who subsequently developed major infection. The question whether IL-8 plasma levels identify high risk or low risk patients with sufficient specificity and sensitivity has to be answered in large scale clinical trials.

Adolescent↗

Interleukin-2 bolus infusion as late consolidation therapy in 2nd remission of acute myeloblastic leukemia.

The activation of autologous cytotoxic cells by interleukin-2 (IL-2) may be a promising tool for elimination of minimal residual blast populations in patients with acute myelocytic leukemia (AML) to prolong disease-free survival. Here, we report the results of a phase II study using IL-2 for consolidation therapy in patients with second remission of de novo AML. All patients in 1st relapse of AML received a uniform induction therapy consisting of intermediate high-dose AraC (iHDAraC) 2 x 600 mg/m2 d1-4 and VP-16 100 mg/m2 d1-7. Patients achieving 2nd remission were treated with 4 cycles recombinant IL-2 (rIL-2) 9 x 10(6) IU/m2 administered on d1-5 and 8-12/cycle as 1h infusion every six weeks. In 37/66 (56%) evaluable patients, complete remission (CR) was achieved. So far, 21/37 patients (4 after additional autologous bone marrow transplantation (ABMT) received rIL-2 consolidation. Three patients are too early for evaluation, 4 received allogeneic BMT, 6 relapsed before IL-2 was scheduled and 4 refused treatment with rIL-2. The median disease-free survival (DFS) was 11 (4-49+) months. Up to now, in 5/21 (24%) patients the duration of 2nd remission exceeded that of 1st remission 7/21 (33%) are in ongoing 2nd remission (7+ to 49+ months). The side effects of rIL-2 were generally moderate and manageable. Only in two patients, previously treated with ABMT, severe side effects occurred; septicaemia and pneumonia in one patient and desquamative erythrodermia in the second one. In accordance with other studies rebound lymphocytosis with a marked increase of CD56(+)-cells and release of secondary cytokines such as TNF-alpha, IFN-gamma and IL-6 was observed. The schedule is feasible and the data suggest a possible benefit for DFS, which, however has to be confirmed by randomized trials.

Adult↗

GM-CSF in a double-blind randomized, placebo controlled trial in therapy of adult patients with de novo acute myeloid leukemia (AML).

We investigated whether GM-CSF given concomitantly with chemotherapy (CT) and thereafter, improves the outcome of adults with de novo AML by increasing the efficacy of CT and reducing infections. CT included Ara-C, daunorubicin and etoposide (DAV) for induction and early consolidation therapy and one cycle with high-dose (patients aged < or = 50 years) or intermediate dose Ara-C (patients aged > 50 years)/daunorubicin for late consolidation therapy. Eight patients were randomized after DAVI to receive either GM-CSF (E. coli, 250 micrograms/m2/day, s.c.) or placebo starting 48 h prior to DAVII and the subsequent courses and given throughout CT until the absolute neutrophil count had recovered to > 500/microliters. The CR rate was 81% in the GM-CSF and 79% in the placebo group (p = 0.57; Fisher's exact test). The probability of relapse-free survival at 41 months after a median follow-up of 35 months was 42% in the GM-CSF and 41% in the placebo group (p = 0.89; log rank test). GM-CSF did not shorten the period of neutropenia < or = 500/microliters, while it prolonged the duration of thrombocytopenia < or = 25,000/microliters. The incidence and severity of infections as well as the non-hematological toxicity were similar in both groups. In summary, in this randomized trial GM-CSF as an adjunct to AML therapy was feasible. For the present GM-CSF does not have a significant effect on treatment outcome.

Adolescent↗

Hepatic manifestation of hemolytic uremic syndrome in an allogeneic bone marrow transplant recipient.

A 33-year-old woman presented 42 days after allogeneic bone marrow transplantation for acute monocytic leukemia (AML, FAB M5) with persistent thrombocytopenia, acute renal failure and Coombs negative hemolytic anemia. In the absence of the disseminated intravascular coagulation the diagnosis of hemolytic uremic syndrome due to immunosuppression with cyclosporin A was supposed. Because cessation of cyclosporin A and therapeutic infusions of fresh frozen plasma had failed, plasmaseparation therapy was started on day 79 after bone marrow transplantation. While hemolytic anemia improved during ongoing plasmaseparations the patient developed cholestatic liver failure due to hepatic manifestation of HUS. The histological lesions of liver involvement in thrombotic microangiopathies are discussed and a review of the literature is presented.

Adult↗

Effect of combination therapy with all-trans-retinoic acid and recombinant human granulocyte colony-stimulating factor in patients with myelodysplastic syndromes.

Since all-trans retinoic acid (ATRA) and granulocyte colony-stimulating factor (G-CSF) not only enhance proliferation and differentiation of normal myeloid cells but also synergistically promote the differentiation of myeloid leukemic blast cells in vitro, we have started a pilot study of combined treatment with ATRA and G-CSF in patients with myelodysplastic syndrome, to analyze the effect of these drugs on hematopoietic differentiation. ATRA was given at 45 mg/m2/day p.o. from week 1-12 and G-CSF at 5 micrograms/kg/day s.c. from week 5-12 with dose modifications according to the absolute neutrophil counts (ANC). A total of 15 patients, predominantly with refractory anemia, were treated. During initial ATRA therapy, a bilineage response with increases of both ANC and platelet counts occurred in three patients. During combined ATRA/G-CSF therapy, ANC increased in all patients, and platelets increased in three out of 14 evaluable patients. An increase in hemoglobin concentration and a decrease in transfusion requirements occurred in one patient each. In the bone marrow, the myeloid-to-erythroid ratio increased during ATRA treatment and remained increased during concomitant G-CSF administration, while the maturation index of myeloid cells increased only in response to ATRA therapy, but returned to baseline during ATRA/G-CSF treatment. Cytogenetic analysis demonstrated persistence of the abnormal clones in all patients. The number of circulating progenitor cells CFU-GM increased in all patients studied. Serum concentrations of the soluble TNF receptor and IL-2 receptor both increased, while TNF-alpha--already elevated prior to therapy--and soluble ICAM-1 concentrations did not significantly change. Adverse effects included dermatitis and cheilosis in most patients, and a drop in platelet counts related to G-CSF in one patient. The pilot study demonstrates that the combination treatment with ATRA/G-CSF is well tolerated, leading to normalization of ANC in most, and improvement of platelets and red blood cells in a subgroup of patients.

Adult↗

Aggressive chemotherapy combined with G-CSF and maintenance therapy with interleukin-2 for patients with advanced myelodysplastic syndrome, subacute or secondary acute myeloid leukemia--initial results.

Aggressive chemotherapy of advanced myelodysplastic syndrome (MDS), acute myeloid leukemia (AML) evolving from MDS, subacute AML and secondary AML has usually been associated with low complete remission (CR) rates, a high incidence of early death, and low disease-free survival. We therefore have initiated a phase-III trial of aggressive chemotherapy consisting of idarubicin, cytosine arabinoside, and VP-16 to improve the CR rate. Each chemotherapy cycle is followed by G-CSF to accelerate neutrophil recovery and to reduce the incidence of infections. Until now, 19 patients with high-risk AML have been entered. The CR rate is 47%, with only one death during induction. Patients achieving CR are randomized to receive either high-dose or low-dose interleukin-2 to eliminate residual leukemic cells and to prolong the duration of remission.

Adult↗

IL-2, IL-3, and IFN-gamma differently affect in vivo frequencies of circulating precursors of cytotoxic T lymphocytes (CTL-P).

Experimental animal and human in vivo studies have previously demonstrated the impact of exogenous administration of various cytokines on frequencies of circulating myeloid and LAK precursor cells. For the first time we investigated whether exogenous cytokines, in the absence of antigenic challenge, may also influence frequencies of circulating antigen-specific cytotoxic T-lymphocyte precursor cells. We further asked whether triggering of autoimmune pathways as has been reported for several cytokines can be confirmed on the cellular level by demonstration of induction of autoreactive CTL-p. Limiting dilution analysis was used to determine alloreactive CTL-p frequencies in 31 patients with nonhematologic diseases before and after short-term systemic treatment with either rIL-2 (4.8 x 10(6) IU/m2 bid), rIL-3 (2.5, 5.0 or 10.0 micrograms/kg qd), rGM-CSF (5 micrograms/kg qd), rIFN-gamma (200 or 400 micrograms qd), or IFN-alpha (3 or 5 x 10(6) IU qod). Simultaneously, autoreactive CTL-p frequencies were determined by split-well analysis in 25 of these patients. We found that rIL-2 significantly expands the circulating precursor pool of alloreactive CTL (p < 0.05). rIL-3 affected CTL-p frequencies in a dose-dependent fashion. Low and intermediate doses of rIL-3 did not exhibit significant effects, whereas 10 micrograms/kg rIL-3 led to expansion of alloreactive CTL-p in the same order of magnitude as did rIL-2. This effect was statistically significant when compared with rGM-CSF (p < 0.02), which apparently had no influence on alloreactive CTL-p frequencies. In contrast to rIL-2 and rIL-3, exogenous rIFN-gamma markedly reduced the circulating precursor pool of CTL. This again was statistically significant compared with rIFN-alpha (p < 0.03), which, like rGM-CSF, did not exhibit any effects on the level of alloreactive CTL-p. Frequencies of autoreactive CTL-p were invariably below the limit of detection in our system (< 1/300,000). In conclusion, these data demonstrate that (a) short-term systemic administration of rIL-2, rIL-3, and rIFN-gamma differently affects the clone size of circulating precursors of alloreactive CTL in man, while rGM-CSF and rIFN-alpha do not exhibit measurable effects, and (b) none of the cytokines administered is capable of uncovering detectable frequencies of autoreactive CTL-p.

Autoimmunity↗

Monoclonal antibody BW494 defines a blood group Lewisa/type 1 chain-related antigen on carcinoma-associated mucins.

The murine monoclonal antibody (MAb) BW494 defines a carbohydrate epitope on a mucin-type glycoprotein which is expressed on the majority of well-differentiated adenocarcinomas of the pancreas. In this contribution we present evidence for the detailed structural requirements of the BW494 interaction with the glycan portions on (neo)glycoproteins or (neo)glycolipids as revealed by solid-phase binding assays and inhibition assays of BW494 binding to synthetic antigens or to the affinity-isolated cancer mucin CA494. The observed cross-reactivity of spacer-linked Gal beta 1-3GalNAc beta (TF-beta) and Gal beta 1-3GlcNAc beta (type 1 chain) is indicative of an epitope that comprises a terminal Gal beta 1-3HexNAc unit. The active conformation of this epitope is critically influenced by the chemical environment of the terminal disaccharide, i.e. by adjacent aglycon or spacer moieties or by substitution with further sugar residues at the reducing end. Although a strong enhancement of antibody binding is observed for the type 1 chain derived Lea antigen, MAb BW494 is distinct in its reactivity from Lea-specific antibodies.

Animals↗

Clinical and prognostic significance of the Philadelphia chromosome in adult patients with acute lymphoblastic leukemia.

Between 1983 and 1991 the Philadelphia chromosome (Ph1) was found in bone marrow and/or peripheral blood cells of 25 adult patients with acute lymphoblastic leukemia (ALL). The Ph1 as sole anomaly was seen in 13 patients, while six patients had additional structural and another six structural and numerical aberrations. Most patients (23/25) received combination chemotherapy according to the BMFT protocols 1/81, 2/84, 3/87, and 4/89. For 25 evaluable patients two early deaths, two treatment failures, two partial remissions (PR), and 19 complete remissions (CR) after phase 1 or 2 of the induction regimen were recorded. Two of these 19 patients who achieved CR are presently disease free, whereas 17 have relapsed after a median duration of remission of 9 months. Actuarial median survival for all patients was 13 months. The probability of continuous complete remission (CCR) after 39 months, as well as that of survival after 40 months, is only 6%. Our results confirm that the presence of the Ph1 is associated with a poor prognosis in adult-ALL patients. Therefore, whenever first CR is obtained and an HLA-identical donor is available, allogeneic bone marrow transplantation (BMT) should be performed at once, the more so, since transplantation in second CR seems to offer no cure. Future studies will have to show whether an intensified cytotoxic therapy can improve the prognosis of Ph1(+)-ALL.

Adult↗

Effect of granulocyte-macrophage colony-stimulating factor on neutropenia and related morbidity induced by myelotoxic chemotherapy.

A phase Ib/II clinical study was undertaken to assess the efficacy of recombinant human granulocyte-macrophage colony-stimulating factor (GM-CSF) to attenuate neutropenia and associated morbidity caused by high-dose anticancer chemotherapy administered in the presence or absence of autologous bone marrow support. We treated 22 patients with various solid tumors and lymphoid neoplasias with a single daily subcutaneous dose of GM-CSF (250 micrograms/m2) 48 h after a second cycle of highly myelotoxic chemotherapy for a period of 10 days and compared intraindividually neutropenia-related clinical and laboratory variables with data obtained from the same patients having previously received a first neutropenia-inducing cycle of identical chemotherapy in the absence of GM-CSF. We show that GM-CSF is active in neutropenic patients by significantly increasing the neutrophil nadir, reducing the time of relevant neutropenia, and reducing the duration of the patient's hospital stay and necessity for parenteral antibiotics. No significant toxicity was encountered with subcutaneous GM-CSF treatment.

Agranulocytosis↗

Effect of granulocyte-macrophage colony-stimulating factor on neutropenia and related morbidity induced by myelotoxic chemotherapy.

PURPOSE: A phase Ib/II clinical study was undertaken to assess the efficacy of recombinant human (rh) granulocyte-macrophage colony-stimulating (GM-CSF) factor in attenuating neutropenia and associated morbidity caused by high-dose anticancer chemotherapy administered in the presence or absence of autologous bone marrow support. PATIENTS AND METHODS: Twenty-two patients with various solid tumors and lymphoid neoplasias were treated with a single daily subcutaneous dose of rh GM-CSF (250 micrograms/m2) 48 hours after receiving a second cycle of highly myelotoxic chemotherapy for a period of 10 days. Within-subject comparisons on neutropenia-related clinical and laboratory variables were made with data obtained from the same patients after they received the first neutropenia-inducing cycle of identical chemotherapy in the absence of GM-CSF. RESULTS: GM-CSF was active in neutropenic patients because it significantly increased the neutrophilic nadir, reduced the time of relevant neutropenia, and reduced the duration of a patient's hospital stay and the necessity for parenteral antibiotics. No significant toxicity was encountered with subcutaneous GM-CSF treatment. CONCLUSION: Although GM-CSF was shown to significantly reduce chemotherapy-associated morbidity in patients receiving myelotoxic cancer chemotherapy, additional studies are needed to assess whether the use of GM-CSF in anticancer chemotherapy will allow an increase in the dosage level, leading to improved response rates and survival among cancer patients.

Adolescent↗

Hematopoietic growth factors in oncology.

Hematopoietic growth factors, or hemopoietins, are peptide hormones produced by peripheral blood cells, bone marrow stroma, as well as several other cell types, such as endothelial cells and fibroblasts. Hemopoietins play a central role in regulating peripheral blood cell number and function. By recombinant DNA technology, several of these factors, also called colony-stimulating factors (CSF) or interleukins, are now available in such quantities to allow clinical evaluation. First experiences in clinical trials show that these peptides are capable of stimulating production of various cell types of the peripheral blood by stimulation of bone marrow progenitor cells without significant toxicity for the patient under treatment. Treatment of renal anemia by erythropoietin and reduction of chemotherapy-induced myelosuppression by G- and GM-CSF are already defined indications for these hemopoietins. Further studies are under way to test the indication of these factors in other clinical situations as well as studies investigating the biology, pharmacology, and clinical efficacy of interleukin 3 (IL-3).

Hematopoietic Cell Growth Factors↗

Pharmacokinetics of nicotinic acid-salicylic acid interaction.

Both nicotinic acid and salicylic acid undergo glycine conjugation in human beings. Competitive inhibition may therefore be possible when these substances are used concomitantly in patients with hyperlipidemic disorders. The aim of this study was to determine, in six healthy subjects, whether nicotinic acid steady-state levels and total clearance are affected by concomitant aspirin administration. Steady-state nicotinic acid concentrations were obtained in all six volunteers by infusion of nicotinic acid solutions at constant rates (0.075 to 0.100 mg/kg/min) for 6 hours; aspirin (1 gm) was administered orally 120 minutes after the beginning of the infusion of nicotinic acid. Plasma samples were analyzed for nicotinic acid, nicotinuric acid, and salicylic acid. After aspirin administration an immediate marked decrease of nicotinuric acid levels could be observed in all six volunteers, whereas nicotinic acid concentrations increased. We hypothesize that salicylic acid causes a concentration-dependent decrease of total nicotinic acid clearance that results in the saturation (and effective elimination) of the nicotinuric acid conjugation pathway.

Administration, Oral↗

[CEA determination to differentiate between pheochromocytoma with ectopic calcitonin formation and type-II multiple endocrine neoplasms].

Plasma levels of calcitonin and carcinoembryonic antigen (CEA) were determined pre-operatively and two months postoperatively in ten patients with C-cell carcinoma as part of multiple endocrine neoplasia type II. In addition, CEA was measured in extracts from 20 different phaeochromocytomas (five from patients with multiple endocrine neoplasia type II, 15 from patients with sporadic phaeochromocytoma). In comparison, CEA concentration was determined in extracts from five C-cell carcinomas of patients with multiple endocrine neoplasia type II. When correlating pre- and postoperative calcitonin and CEA levels, there was a significant linear relationship (P less than 0.001). CEA concentration in extracts from phaeochromocytomas was at the lower level of sensitivity (4.7 +/- 12.2 pg/mg tumour wet-weight). In extracts from C-cell carcinomas they were much higher (6402 +/- 4570 pg/mg tumour wet-weight). The results suggest that it is possible, in patients with phaeochromocytoma and high calcitonin levels, to differentiate by additional CEA determination between C-cell carcinoma in the course of multiple endocrine neoplasia type II and sporadic phaeochromocytoma with ectopic calcitonin liberation.

Adrenal Gland Neoplasms↗