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Biomedical subjects

A Ganser

Publications and source records attributed to A Ganser.

At least 19 recordsLinked to original sources

Repeated administration of short infusions of bendamustine: a phase I study in patients with advanced progressive solid tumours.

PURPOSE: The cytotoxic agent bendamustine combines a purine-like benzimidazol and bifunctionally alkylating nitrogen mustard group. The drug has clinical antitumour activity in lymphoma, myeloma and breast cancer. In earlier dose-finding studies, the clinically tolerated dose for single-bolus bendamustine was 215 mg/m2; for fractionated therapy on 4 consecutive days it was 85 mg/m2. Anticholinergic symptoms, myelosuppression and cardiac dysrhythmia were dose-limiting. Our trial was designed to define the maximum tolerated dose of a short infusion schedule and to establish a recommended dose for ongoing and future clinical studies. METHODS: Patients with refractory malignant tumours qualified for the trial after written informed consent had been obtained. Bendamustine was given as a 30-min iv. infusion on days 1 and 8 of a 4 week cycle, with a starting dose of 100 mg/m2 and an increment per group of 20 mg/m2. RESULTS: Nineteen patients (13 male, 6 female; median age 57 years, range 37-74 years) were treated for one to two cycles with up to 180 mg/m2 bendamustine. At 160 mg/m2, fatigue grade 3 (NCI Common Toxicity Criteria) and dryness of the mouth grade 3 occurred in 2 patients, diarrhoea grade 3 in 1 patient; another patient with a history of myocardial infarction and arrhythmia developed a reversible total atrioventricular block after the first administration of 160 mg/m2 bendamustine. Other events, such as nausea/vomiting, loss of appetite, fever or chills, were not dose-limiting. Haematological toxicity was mild, except for sudden and long-lasting grade 3-4 lymphocytopenia, which occurred in all treatment cycles. Opportunistic infections were not observed. CONCLUSIONS: The maximum tolerated dose of a days-1 and -8 schedule of bendamustine, given as a 30-min i.v. infusion, is 160 mg/ m2; mouth dryness and fatigue are dose-limiting. The recommended dose for future trials is 140 mg/m2.

Adult

Intensive chemotherapy with idarubicin, ara-C, etoposide, and m-AMSA followed by immunotherapy with interleukin-2 for myelodysplastic syndromes and high-risk Acute Myeloid Leukemia (AML).

Intensive chemotherapy followed by treatment with interleukin-2 (IL-2) was evaluated in a prospective, randomized, multicenter trial including 18 patients with refractory anemia with excess of blasts in transformation (RAEB-T), 86 patients with acute myeloid leukemia (AML) evolving from myelodysplastic syndromes, and six patients with secondary AML after previous chemotherapy. Median age was 58 years (range: 18-76 years). Forty-nine patients (45%) achieved a complete remission (CR) after two induction cycles with idarubicin, ara-C, and etoposide, 52% of them aged </=60 years and 35% aged >60 years (p=0.06). After two consolidation courses, patients were randomized to four cycles of either high- or low-dose IL-2. Patients aged up to 55 years with an HLA-identical sibling donor were eligible for allogeneic bone marrow transplantation. The median relapse-free survival was 12.5 months, with a probability of ongoing CR at 6.5 years of 19%. Overall survival of all patients was 8 months, and 21 months for the CR patients. Median survival was significantly longer among patients aged </=60 years than among the older patients (16 vs 6 months, p<0.001). Median duration of survival and relapse-free survival were not statistically different in the two IL-2 treatment arms.

Acute Disease

Comparison of nested competitive RT-PCR and real-time RT-PCR for the detection and quantification of AML1/MTG8 fusion transcripts in t(8;21) positive acute myelogenous leukemia.

The chromosomal translocation t(8;21)(q22;q22) is one of the most frequent karyotypic aberrations in acute myeloid leukemia (AML) and results in a chimeric fusion transcript AML1/MTG8. Since AML1/MTG8 fusion transcripts remain detectable by RT-PCR in t(8;21) AML patients in long-term hematological remission, quantitative assessment of AML1/MTG8 transcripts is necessary for the monitoring of minimal residual disease (MRD) in these patients. Competitive RT-PCR and recently real-time RT-PCR are increasingly used for detection and quantification of leukemia specific fusion transcripts. For the direct comparison of both methods we cloned a 42 bp DNA fragment into the original AML1/MTG8 sequence. The resulting molecule was used as an internal competitor for our novel competitive nested RT-PCR for AML1/MTG8 and as an external standard for the generation of AML1/MTG8 standard curves in a real-time PCR assay. Using this standard molecule for both PCR techniques, we compared their sensitivity, linearity and reproducibility. Both methods were comparable with regard to all parameters tested irrespective of analyzing serial dilutions of plasmids, cell lines or samples from t(8;21) positive AML patients at different stages of the disease. Therefore, both techniques can be recommended for the monitoring of MRD in these particular AML patients. However, the automatization of the real-time PCR technique offers some technical advantages.

Chromosomes, Human, Pair 21

Functional analysis of a single chain chimeric alpha/beta-granulocyte-macrophage colony-stimulating factor receptor. Importance of a glutamate residue in the transmembrane region.

To analyze the function of each subunit of the receptor for granulocyte-macrophage colony-stimulating factor (GM-CSF), GMR, we previously generated a single-chain chimeric receptor by fusion of the extracellular and transmembrane domain from the alpha-subunit (alpha-GMR) to the intracellular part of the beta-subunit (beta-GMR) introducing an additional glutamate residue at the fusion site (alpha/beta-GMR). We demonstrated the capacity of alpha/beta-GMR to bind GM-CSF with low affinity and to induce GM-CSF-dependent activation of tyrosine kinase activity and proliferation in transfected Ba/F3 cells. To further compare the functions of wild type and chimeric receptors, we now report that this alpha/beta-GMR is sufficient to mediate morphological changes, expression of alpha(4)- and beta(1)-integrin receptor subunits, and serine-phosphorylation of Akt kinase. To analyze the function of the glutamate residue at the fusion region of alpha/beta-GMR various point mutants changing this amino acid and its position were expressed in Ba/F3 cells. None of these mutants was capable of supporting GM-CSF-dependent proliferation; however, when beta-GMR was coexpressed, GM-CSF mediated short and long term proliferation. Interestingly, some mutants but not alpha/beta-GMR can induce proliferation in the presence of an anti-alpha-GMR antibody. These data demonstrate the significance of a glutamate residue in the transmembrane region of alpha/beta-GMR for ligand-induced receptor activation.

Animals

[Activated protein C resistance and venous thrombophilia: molecular genetic prevalence study in the German population].

BACKGROUND AND OBJECTIVE: Resistance against activated protein C (APC), caused by factor V R506Q mutation (factor V Leiden mutation), is among the most important hereditary clotting defects that are associated with an increased risk of venous thrombosis. As there are hardly any data for Germany regarding APC resistance that have been validated by genetic analysis, this study was undertaken to determine the prevalence of factor V Leiden (fVL) mutations in a sizeable group of patients in Germany with venous thromboembolism (VTE) and a control group of healthy persons. PATIENTS AND METHODS: 1200 consecutive patients (689 females, 511 males) from various regions of Germany were examined who, at an age between 0.1 and 45 years, had developed primary deep vein thrombosis (DVT) and/or pulmonary embolism (PE), as confirmed by imaging tests. The control group consisted of 740 healthy persons (332 females and 408 males; median age 33 years) for whom there was no evidence in their personal or family history of TE. Analysis of the fV-1691 genotype was by Mnll-restriction analysis of genomic fV DNA fragments, amplified by polymerase chain reaction. RESULTS: The prevalence in the control group was 7.5% the for heterozygotic fV:Q506 mutant (25 females, 30 males). For the patients the prevalence of the fV R506Q mutation was 27.2% (32.1% heterozygotes [165 females, 112 males]; 4.1% homozygotes [33 females, 16 males], i.e. significantly higher than in the healthy controls (P < 0.0001). In 81.3% of the patients with fV:Q506 DVT in the leg-pelvic vein region was found as the first manifestation, thrombosis in an atypical site in 14.4% and isolated PE in 4.3%. The first manifestation had occurred spontaneously in 36% of patients with the fV:Q506 mutant (44 females, 75 males), in 53.1% of homozygotes and in 33.5% of heterozygotic carriers of the mutation. CONCLUSION: The fV Leiden mutation due to APC resistance is the most common cause of venous thrombosis and apparently one of the most common inherited diseases.

Activated Protein C Resistance

TIF1gamma, a novel member of the transcriptional intermediary factor 1 family.

We report the cloning and characterization of a novel member of the Transcriptional Intermediary Factor 1 (TIF1) gene family, human TIF1gamma. Similar to TIF1alpha and TIF1beta, the structure of TIF1beta is characterized by multiple domains: RING finger, B boxes, Coiled coil, PHD/TTC, and bromodomain. Although structurally related to TIF1alpha and TIF1beta, TIF1gamma presents several functional differences. In contrast to TIF1alpha, but like TIF1beta, TIF1 does not interact with nuclear receptors in yeast two-hybrid or GST pull-down assays and does not interfere with retinoic acid response in transfected mammalian cells. Whereas TIF1alpha and TIF1beta were previously found to interact with the KRAB silencing domain of KOX1 and with the HP1alpha, MODI (HP1beta) and MOD2 (HP1gamma) heterochromatinic proteins, suggesting that they may participate in a complex involved in heterochromatin-induced gene repression, TIF1gamma does not interact with either the KRAB domain of KOX1 or the HP1 proteins. Nevertheless, TIF1gamma, like TIF1alpha and TIF1beta, exhibits a strong silencing activity when tethered to a promoter. Since deletion of a novel motif unique to the three TIF1 proteins, called TIF1 signature sequence (TSS), abrogates transcriptional repression by TIF1gamma, this motif likely participates in TIF1 dependent repression.

Amino Acid Sequence

Treatment of patients with low-risk myelodysplastic syndromes using a combination of all-trans retinoic acid, interferon alpha, and granulocyte colony-stimulating factor.

Used as single agents, ATRA, G-CSF, and IFN-alpha have shown a moderate benefit in patients with low-risk MDS, with a response rate of 10%. The aim of the present study was to evaluate the efficacy of a combination of these agents. The effect on hemoglobin (Hb), platelets, and absolute neutrophil count (ANC), as well as on transfusion frequency, was examined in 25 patients with MDS (11 RA, four RARS, eight RAEB, two CMML). The median age was 61 years (range 44-81), and the male/female ratio was 14/11. Treatment consisted of ATRA at 25 mg/m2/day p.o. for months 1, 3, 5, 7, 9, and 11, IFN-alpha at 1.5 MIU twice a week s.c. for 52 weeks, and, in patients with initial ANC <500/microl, G-CSF at 100-480 microg daily s.c. according to the degree of ANC. The duration of therapy was scheduled for 12 months. Two patients achieved ongoing CR (+19 months; +16 months), one patient with RA after 3 months and one with CMML after 7 months of treatment. In all patients, the mean ANC increased significantly from 1400+/-200/microl before the start of therapy to 3500+/-600/microl at the end of treatment (p=0.025). In two patients an increase of Hb was observed, and one patient ceased to require transfusions. In an additional patient with RA and 5q-syndrome, the platelet count normalized following administration of ATRA/IFN-alpha, increasing from 89,000/microl to 293,000/microl. The eight RAEB patients were nonresponders. We conclude that therapy with ATRA, IFNalpha, and G-CSF is effective in approximately 35% of low-risk MDS patients (in this study: six of 17) and may induce complete remission in individual cases.

Adult

Association between structural and numerical chromosomal aberrations in acute myeloblastic leukemia: a study by RT-PCR and FISH in 447 patients with de-novo AML.

We analyzed 447 patients with de novo AML using alpha-satellite probes for the chromosomes 7, 8, X, and Y and RT-PCR for t(8;21), t(15;17) and inv(16). In 130/447 patients (29%) chromosomal aberrations were found. Thirty-three patients (7%) had a t(8;21); 11 of these had the additional loss of a sex chromosome (p<0.001) and two a trisomy 8. Twenty-nine patients (6%) had a t(15;17); four of these had a trisomy 8. Sixteen patients (4%) displayed an inv(16); four of these had a trisomy 8. Twenty-two patients (5%) had a sole trisomy 8 and one patient the combination of trisomy 8 and trisomy X. Five patients (1%) displayed the loss of a Y-chromosome as the sole abnormality and two patients had a sole trisomy X. In 22 patients (5%) a monosomy 7 was found, and in none of these patients were additional chromosomal aberrations detected by RT-PCR (p < 0.05). In conclusion, trisomy 8 and the loss of a gonosome are frequently associated with structural chromosomal aberrations with a significant association of -X/Y and t(8;21). The absence of these genomic lesions in AMLs with monosomy 7 suggests that the monosomy 7 has a specific role in the development of these leukemias and their clinical course.

Adolescent

Complete response of a gastric primary after a short but toxic course of 'S-1' EORTC Early Clinical Studies Group.

We report the case of an unresected, metastatic gastric cancer, which was treated with a very short course of the oral 5-fluorouracil (5-FU) prodrug S-1. The patient had to discontinue chemotherapy during the first treatment cycle due to severe toxicity, but achieved a pathologically confirmed, long-term complete response of her primary tumour, a diffuse-type poorly differentiated adenocarcinoma.

Adenocarcinoma

Interleukin 10 (IL-10): an immunosuppressive factor and independent predictor in patients with metastatic renal cell carcinoma.

Interleukin 10 (IL-10) is an immunosuppressive factor and has been detected in tumour cell cultures of renal cell carcinoma and of malignant melanoma. IL-10 has been described as a cytokine of the Th2 response; it is able to suppress antigen-presenting cells (APCs) and may lead to down-regulation of HLA class I and II molecules on dendritic cells and to anergy of T-lymphocytes. We evaluated pretreatment serum levels of soluble IL-10 and various clinical parameters to determine their prognostic value in 80 advanced renal cell carcinoma patients seen at our institution between May 1990 and April 1996. For statistical evaluation we used both univariate and multivariate Cox proportional hazards models. An elevated pretreatment serum level of IL-10 was a statistically independent predictor of unfavourable outcome (P < 0.0028), in addition to the well-known clinical and biochemical risk factors. These data support risk stratification for future therapeutic trials and identify a predictor which needs to be validated in prospective studies and may potentially influence decision making in palliative management of patients with metastatic renal cell carcinoma. These data also suggest a potential role of IL-10 in the development of advanced renal cell carcinoma and in the future design of therapeutic strategies.

Adult

Prognostic impact of in vivo soluble cell adhesion molecules in metastatic renal cell carcinoma.

The purpose of the study was to determine prognostic significance of pretreatment serum levels of different molecules involved in cell to cell interactions along with other clinical parameters in patients with metastatic renal cell carcinoma. sICAM-1, sVCAM-1 and sELAM-1 serum levels were determined by ELISA assays in sera from 99 patients with histologically confirmed progressive metastatic renal cell carcinoma prior to initiation of systemic therapy. Kaplan-Meier survival analysis, log-rank statistics and two-proportional Cox regression analyses were employed to identify risk factors and to demonstrate statistical independence. In univariate analyses, the following pretreatment risk factors could be identified: serum sICAM-1 level > 360 ng ml(-1), erythrocyte sedimentation rate > 70 mm h(-1), serum C-reactive protein level > 8 mg l(-1), serum lactic dehydrogenase level > 240 U/l and neutrophil count > 6000 microl(-1). Multivariate analyses demonstrated statistical independence for serum sICAM-1 level, erythrocyte sedimentation rate (ESR) and serum C-reactive protein (CRP) level as pretreatment predictors of overall patient survival. The prognostic significance of sICAM-1 might indicate a role of this molecule for tumour progression, potentially in association with the abrogation of anti-tumour immune responses. The possibility of defining a pretreatment risk model based on sICAM-1 level, ESR and CRP also warrants further investigation, with regard to a possible linkage between acute phase proteins and sICAM-1 levels.

Carcinoma, Renal Cell

Prophylaxis and treatment of chemo- and radiotherapy-induced oral mucositis - are there new strategies?

Oral mucositis is a major dose-limiting toxic effect of intensive cancer chemotherapy. Oral complications may lead to dose reduction or delay in further cancer treatment. Mucositis can be caused directly by cytotoxic effects and indirectly by sustained neutropenia after cytostatic therapy. An impaired mucosal barrier predisposes to life-threatening septic complications during aplasia. The prevalence of an oral focus in febrile neutropenia has been reported in up to 30% of cases and also reduces quality of life. The basic strategies aim at pain relief and prevention of bacterial and fungal infectious complications. However, no effective causal prophylaxis or treatment of oral mucositis is widely accepted. The introduction of cytokines, eg granulocyte-macrophage colony-stimulating factor (GM-CSF) and granulocyte colony-stimulating factor (G-CSF) for oral mucositis may be particularly effective and offer a new and hopeful approach. At present, the optimal growth factor, best schedule, effective dosage and best mode of application is not known.

Antineoplastic Agents

Monitoring of BCR-ABL expression using real-time RT-PCR in CML after bone marrow or peripheral blood stem cell transplantation.

To analyze the value of real time RT-PCR for monitoring of bcr-abl expression in CML patients after allogeneic or autologous stem cell transplantation (SCT), we generated pairs of PCR-primers and TaqMan probes specific for either the b2a2- or the b3a2-variant of bcr-abl. Either variant could be detected specifically from cDNA from a single K562 (b3a2) and BV173 (b2a2) cell with the respective TaqMan probe. Bcr-abl expression was normalized by comparison with GAPDH expression, and samples were quantitated using standard cDNA dilutions from K562 or BV173 cells. In a retrospective analysis 13 patients with CML after allogeneic (n = 10) or autologous (n = 3) SCT including patients with relapsed or persistent CML were analyzed by both real-time and conventional nested RT-PCR. In addition chimerism was monitored by FISH analysis of sex chromosomes in three patients with relapsed disease. The bcr-abl/GAPDH ratio dropped at least 1000-fold in all seven patients evaluable prior to and after allogeneic SCT as estimated by real-time RT-PCR, and conventional RT-PCR became negative in 6/7 patients. In five patients with relapsed or persistent disease after allogeneic SCT the bcr-abl/GAPDH ratio eventually increased again, and real-time RT-PCR was as sensitive as conventional RT-PCR for detection of bcr-abl. Donor lymphocyte infusions (DLI) were given to all five patients, and the bcr-abl/GAPDH ratio dropped to undetectable levels in two patients both remaining in continuing molecular remission. In contrast, in three other patients the bcr-abl/GAPDH ratio decreased only or did not change significantly after DLI. In three patients undergoing autologous SCT the bcr-abl/GAPDH ratio dropped only 1.1 to 30-fold, and the patients were tested positive with real-time RT-PCR at all time points. These data demonstrate that real-time RT-PCR is valuable to quantitate bcr-abl expression in CML patients after transplantation.

Bone Marrow Transplantation

Real-time RT-PCR for the detection and quantification of AML1/MTG8 fusion transcripts in t(8;21)-positive AML patients.

AML1/MTG8 was quantified relative to the expression of the GAPDH housekeeping gene by real-time RT-PCR in 22 patients with t(8;21)-positive acute myeloblastic leukaemia (AML) at initial diagnosis and in seven of these patients also during/after chemotherapy and allogeneic bone marrow transplantation. Real-time PCR was able to specifically detect and quantify AML1/MTG8 over a 5 log range. The detection limit for t(8;21)-positive cells was a dilution of 1:105. The AML1/MTG8 expression varied considerably among the 22 AML patients at intial diagnosis with a ratio AML1/MTG8:GAPDH of 0.5135+/-0.536 (range 0.1-2.14, median 0.318). In six patients with t(8;21)-positive AML a marked decline of AML1/MTG8 could be induced by chemotherapy. These patients are in ongoing complete haematological remission (CR) with a constant low-level AML1/MTG8 expression. In another patient a rapid rise of AML1/MTG8 transcripts could be detected in CR after allogeneic bone marrow transplantation and the patient relapsed 10 weeks later. In conclusion, real-time RT-PCR is a suitable approach for the quantification of AML1/MTG8 transcripts in the monitoring of AML patients with t(8;21) during/after chemotherapy and can provide data of prognostic relevance.

Chromosomes, Human, Pair 21

Cytogenetic aberrations in myelodysplastic syndrome detected by comparative genomic hybridization and fluorescence in situ hybridization.

Conventional cytogenetics (CC) is proven as a diagnostic and prognostic factor in myelodysplastic syndrome (MDS). However, CC may be hampered by insufficient metaphase preparation and cannot analyze interphase nuclei. These problems are solved by using comparative genomic hybridization (CGH). The CGH was applied to samples from 45 patients with MDS, and the results were compared with CC and fluorescence in situ hybridization (FISH). The CC detected aberrations in 12 of 45 samples, including chromosomes 3 (n = 1), 5 (n = 9), 7 (n = 2),8(n = 1), 18(n = 1),21 (n = 1), X (n = 1), and Y(n = 2). In one patient, loss of B and C group chromosomes and a marker chromosome were seen. The CGH revealed chromosomal imbalances in 18 of 45 samples, including chromosomes 5 (n = 11), 7 (n = 2), 8 (n = 1), 18(n = 1), 20(n = 1), 21 (n = 1), X (n = 1), and Y (n = 2). All unbalanced aberrations found by CC were detected by CGH, too. In two patients, the CGH found additional aberrations and redefined the aberrations of the chromosomes of the B and C group in one sample. The FISH confirmed these aberrations. Additionally performed FISH for chromosomes 5, 7, and 8 gave normal findings in all patients found to be normal in CC and CGH. The CGH and FISH confirmed the results obtained by CC. All three techniques showed changes of chromosomes 5 and 7 as the most frequent aberrations, emphasizing the importance of these chromosomes in the development of MDS. Furthermore, the CC is proven as the basic technique for cytogenetic evaluation of MDS.

Adolescent