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S Kasimir-Bauer

Publications and source records attributed to S Kasimir-Bauer.

12 recordsLinked to original sources

A summary of two clinical studies on tumor cell dissemination in primary and metastatic breast cancer: methods, prognostic significance and implication for alternative treatment protocols (Review).

Although only less than 10% of women with primary breast cancer have clinicopathologic signs of overt metastases, metastatic relapse occurs in about half of the cases with apparently localized tumors within five years after surgery. In 23% of the patients, bone marrow metastases are detectable at first relapse and this rate even increases in patients with metastatic breast cancer. However, hematogeneous or lymphatic spread of occult tumor cells can arise before diagnosis at an early stage of primary tumor growth and is regularly underestimated by currently available clinical and pathologic staging procedures. We studied cytokeratin-positive (CK+) cells in the bone marrow (BM) and tumor markers in the blood of 128 patients with primary breast cancer in order to obtain an early diagnosis of residual disease. In a second study, we monitored cytokeratin (CK)/17-1A positive cells in the BM and peripheral blood stem cells (PBSC) to evaluate whether dose intensive or high-dose (HD)-chemotherapy can eliminate micrometastases in high-risk breast cancer patients. The overall CK+ rate was 34% (44/128 patients), 29% (15/51) for patients with T1 tumors, 33% (28/84) for N0 patients and 31% (26/82) for patients with G1-2 breast carcinoma. Interestingly, 67% of CK+ patients were only positive in one of the two BM aspirates studied. At least one tumor marker including carcinoembryonic antigen, carbohydrate antigen 15-3 and tissue polypeptide antigen, was increased in 58/128 (45%) patients [21/58 (36%) were CK+ in the BM]. Surprisingly, levels for the extracellular domain of Her-2/neu in serum samples were within the normal range in every patient studied. After a 2-year follow-up, 7/128 patients relapsed (3/7 CK+/TM-; 2/7 CK-/TM+; 2/7 CK-/TM-). We concluded that studying two BM aspirates for CK+ cells by immunocytochemistry in combination with tumor marker determination is useful for identifying patients with a higher risk for relapse. A tumor cell enrichment technique, applied in 70 patients prior to immunocytochemistry using dynabeads directly coupled to an antibody (BerEp4) targeting the 17-1A antigen, did not enhance the detection rate of disseminated tumor cells in this patient group. We monitored CK+/17-1A+ cells in the BM and PBSC and studied Her-2/neu serum levels of patients with locally advanced (n=13, group 1) and metastatic breast cancer (n=30, group 2). CK+ cells were found in the BM of 3/13 (23%) group 1 patients before but not after chemotherapy resulting in an overall survival (OS) of 92% after a median follow-up of 33 months. Contamination of PBSC in 2/9 (22%) patients was not associated with decreased survival. In group 2 patients, the CK+ rate was 60% (18/30 patients) before and 40% (4/10 patients) after therapy with an OS rate of 43% after 29 months. PBSC samples were positive in 7/24 (29%) patients. CK+ BM and PBSC led to a rapid progress and short OS whereas tumor cell free BM and PBSC resulted in a mean OS of 30 months. The antigen 17-1A was detected on most CK+ cells in both patient groups before therapy, on all CK+ PBSC and on CK+ cells in group 2 patients after therapy. Increased Her-2/neu levels were found in group 2 patients before chemotherapy. In conclusion, micrometastatic cells are present in blood and PBSC grafts of high-risk breast cancer patients and can survive even HD-chemotherapy. Immunotherapeutic target antigens on the cell surface of these cells support the idea that a combined chemoimmunotherapy might be successful in eliminating minimal residual disease.

Adult↗

Evaluation of different methods for the detection of minimal residual disease in blood and bone marrow of patients with primary breast cancer: importance for clinical use?

We studied cytokeratin-positive (CK+) cells in the bone marrow (BM) and tumor markers (TM) in the blood of 128 patients with primary breast cancer in order to obtain an early diagnosis of residual disease. CK+ cells of two BM aspirations were detected by immunocytochemistry (IC). To evaluate the usefulness of immunomagnetic separation (IMS) for tumor cell enrichment in clinical samples, IMS was performed prior to IC and compared with the results for IC alone. The overall CK+ rate was 34% (44/128 patients), 29% (15/51) for patients with T1 tumors, 33% (28/84) for N0 patients and 31% (26/82) for patients with G1-2 breast carcinoma. Interestingly, 67% of CK+ patients were only positive in one of the two aspirates studied. A comparison between IC alone and IMS/IC could be performed in 70/128 patients (28/70 CK+). In 6/28 patients, CK+ cells were detected by both methods, in 16/28 patients only by IC and in 6/28 patients only by IMS. At least one TM, including carcinoembryonic antigen, carbohydrate antigen 15-3 and tissue polypeptide antigen, was increased in 58/128 (45%) patients [21/58 (36%) were CK+ in the BM]. Surprisingly, levels for the extracellular domain of Her-2/neu in serum samples were within the normal range in every patient studied. After a 2-year follow-up, 7/128 patients relapsed (3/7 CK+/TM-; 2/7 CK-/TM+; 2/7 CK-/TM-). We conclude that studying two BM aspirates for CK+ cells by IC in combination with TM determination is useful for identifying patients with a higher risk for relapse, however, tumor cell enrichment techniques will have to be improved for clinical use.

Adult↗

Filtration of malignant cells: tumour cell depletion in an ex vivo model using a leukocyte adhesion filter.

The clinical use of leukocyte adhesion filters is based on differentiated depletion of blood cells, although most of the mechanisms of filtration are still unclear. There is also evidence that leukocyte adhesion filters can remove disseminated tumour cells from patients' blood. The following proves this observation and consists of three parts: in the first part we analysed the depletion capacity of the LeucotrapWB filter medium (Pall) in an employed small-scale model for the cell line HT29 (colorectal origin) in phosphate-buffered saline (PBS) solution. A depletion rate of more than 99.6% for HT29 cells was seen. In the second part of the study, samples of whole blood were spiked with HT29 cells in a similar setting, showing comparable results. In the last part, defined cell suspensions of various human primary tumours were admixed to whole blood samples and afterwards filtrated in a scale-up model. Again, a nearly complete tumour cell reduction was seen after filtration. Results show a significant tumour cell reduction and, for most cases, a complete depletion of tumour cells independently from quality and origin of the tumour tissue. These experiments and further investigation are supposed to help to reduce the risk of dissemination of tumour cells in patients undergoing oncological surgery.

Cell Adhesion↗

Survival of tumor cells in stem cell preparations and bone marrow of patients with high-risk or metastatic breast cancer after receiving dose-intensive or high-dose chemotherapy.

PURPOSE: We evaluated whether dose-intensive or high-dose chemotherapy can eliminate micrometastases in high-risk breast cancer patients. EXPERIMENTAL DESIGN: We monitored cytokeratin (CK)/17-1A positive cells in the bone marrow (BM) and peripheral blood stem cells (PBSC) and studied Her-2/neu serum levels of patients with locally advanced (n = 13; group 1) and metastatic breast cancer (n = 30; group 2) using immunomagnetic separation, immunocytochemistry, and ELISA. RESULTS: CK+ cells were found in the BM of 3 of 13 (23%) group 1 patients before but not after chemotherapy, resulting in an overall survival (OS) of 92% after a median follow-up of 33 months. Contamination of PBSC in 2 of 9 (22%) patients was not associated with decreased survival. In group 2 patients, the CK+ rate was 60% (18 of 30 patients) before and 40% (4 of 10 patients) after therapy with an OS rate of 43% after 29 months. PBSC samples were positive in 7 of 24 (29%) patients. CK+ BM and PBSC led to a rapid progress and short OS, whereas tumor cell-free BM and PBSC resulted in a mean OS of 30 months. The antigen 17-1A was detected on most CK+ cells in both patient groups before therapy, on all of CK+ PBSC, and on CK+ cells in group 2 patients after therapy. Increased Her-2/neu levels were found in group 2 patients before chemotherapy. CONCLUSION: Micrometastatic cells are present in PBSC grafts and can survive even high-dose chemotherapy. The presence of immunotherapeutic target antigens supports the idea that a combined chemoimmunotherapy might be successful in eliminating minimal residual disease.

Antibiotics, Antineoplastic↗

In vitro effect of multidrug resistance modifiers on idarubicinol efflux in blasts of acute myeloid leukemia.

Recent results show that the intracellular uptake pattern of idarubicin (IDA) in multidrug-resistant (MDR) cells is nearly identical to that seen in the drug-sensitive parent cell line, whereas the MDR cells have minimal daunorubicin (DNR) uptake compared with the drug-sensitive parent cells. It is known that the major metabolite of IDA, idarubicinol (IDA-OL), has nearly the same cytotoxicity as IDA, while the cytotoxicity of daunorubicinol (DNR-OL) is about 1/30th of that of DNR. We examined the effect of the MDR modifiers verapamil and dexniguldipine on the efflux of IDA, DNR and their hydroxylated metabolites IDA-OL and DNR-OL in blast populations of acute myeloid leukemia (AML), in the MDR-negative cell line CEM-CCRF and in their MDR-positive counterpart (CEM-VBL). All patients with relapsed or persistent AML had been pretreated with IDA and cytosine arabinoside. The efflux of the anthracyclines was estimated by flow cytometry. A total of 36 patients with AML were investigated; 18 out of 36 AML blast populations showed an efflux of DNR, DNR-OL and IDA-OL. The efflux of DNR, DNR-OL and particularly IDA-OL could be reversed by 10 microM verapamil or 1 microM dexniguldipine. For IDA we found an effusion of 40 +/- 11% in all blast populations which could not be significantly inhibited by the modulators. Similar results for IDA were found in the MDR-positive cell line (CEM-VBL 100) and in their MDR-negative counterpart (CEM-CCRF). The incubation of CEM-CCRF cells with DNR, DNR-OL, IDA-OL and especially IDA led to MDR induction as determined by reverse transcription/polymerase chain reaction analysis with MDR-specific primer and by cellular efflux studies. We conclude that the outcome of chemotherapy with idarubicin is influenced by MDR, although IDA is not essentially MDR-dependent itself, but because IDA-OL is actively involved in multidrug resistance. Further investigations should consider the question of whether the combination of IDA and MDR modifiers can enhance the serum level of the active metabolite IDA-OL and can reverse the MDR pattern in cells treated with IDA.

Antineoplastic Agents↗

Analysis of thrombopoietin receptor (c-mpl) mRNA expression in de novo acute myeloid leukemia.

Expression of the thrombopoietin receptor, c-mpl, has been recently suggested to represent an adverse prognostic factor in myelodysplasia and acute myeloid leukemia (AML). To further evaluate this putative correlation, we assessed the c-mpl mRNA expression in blast samples of 53 AML patients. Overall, c-mpl mRNA expression was observed in 27 (51%) patients. No significant difference between c-mpl(+) and c-mpl(-) patients was found with respect to established prognostic factors such as age (50 vs. 53 years) or karyotype, whereas a significant correlation was observed between c-mpl and CD34 expression (P = 0.026). Among 40 patients who completed standard-/high-dose cytarabine-containing induction/consolidation treatment and were evaluable for treatment response, a higher complete remission (CR) rate was achieved in c-mpl- than in c-mpl(+) patients (95 vs. 68%; P = 0.026). Upon multivariate analysis, this relationship was independent from CD34 expression. CR duration was not significantly longer in c-mpl(-) than in c-mpl(+) patients (median: 14 vs. 10 months, P = 0.262). In conclusion, our data strongly support the previously suggested notion that c-mpl expression is of prognostic relevance for CR induction in de novo AML patients, and suggest determination of c-mpl expression within larger prospective studies in the attempt to develop risk-adapted AML treatment strategies.

Acute Disease↗

Chronic myelogenous leukemia: effect of interferon-alpha treatment on phagocytic activity and capacity of circulating neutrophils.

This study focuses on the effect of interferon (IFN)-alpha on phagocytosis of FITC-labeled Escherichia coli by polymorphonuclear neutrophils (PMNs) in chronic myelogenous leukemia (CML). The phagocytic activity and capacity of PMNs from IFN-alpha treated patients (n = 17), untreated CML patients (n = 9) and from healthy donors (n = 20) were compared using flow cytometry. Both parameters of PMN phagocytosis were reduced in untreated CML and in IFN-alpha treated CML with Ph1 chromosome persistence but normal in IFN-alpha treated CML with Ph1 conversion. Thus, the phagocytic performance of PMNs in patients with chronic phase CML is significantly improved after successful treatment with IFN-alpha.

Adolescent↗

In acute myeloid leukemia, coexpression of at least two proteins, including P-glycoprotein, the multidrug resistance-related protein, bcl-2, mutant p53, and heat-shock protein 27, is predictive of the response to induction chemotherapy.

To identify prognostic factors alternative or additional to P-glycoprotein (Pgp), we studied the impact of the multidrug resistance-related protein (MRP), bcl-2 (flow cytometry), mutant p53 (single-strand conformation polymorphism), and heat-shock protein 27 (HSP27, Western blotting) in myeloid blasts obtained at the time of diagnosis in patients with de novo acute myeloid leukemia (AML). We collected bone marrow samples from untreated AML patients, prepared the cells as well as the cellular protein, and froze all the material. We then analyzed 20 patients who responded with complete remission (CR) and 20 patients who had blast persistence (BP). The purpose of the study was to determine whether leukemic blasts from patients with BP were more resistant to chemotherapy than those from patients with CR. There was no significant correlation between the expression of any of these proteins alone and treatment outcome in both groups studied. In contrast, there was a significant correlation between the coexpression of at least two of these proteins and response (p = 0.0298), which turned out to be a significant independent prognostic factor for treatment failure (p = 0.0329, relative risk = 1.5) according to multivariate analysis. We conclude that drug resistance in AML is multifactorial. Thus, coexpression of different resistance mechanisms may be responsible for the primary drug resistance in de novo AML.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Down-regulation of topoisomerase II by camptothecin does not prevent additive activity of the topoisomerase II inhibitor etoposide in vitro.

Topoisomerases (Topo) I and II are cellular enzymes that catalyze the relaxation of topologically strained DNA and that are involved in a number of DNA-related processes. Their complete inhibition by Topo I and II inhibitors gives promise for improvements in the treatment of malignant diseases. However, preclinical studies showed down-regulation of Topo II protein expression by Topo I inhibitors, which may preclude the useful application of combined topoisomerase inhibition in the clinic. We investigated the efficacy of the combination of etoposide (ETP) and camptothecin (CPT) in human gastric and lung cancer cell lines with different sensitivity towards ETP. The cytotoxicity of different drugs was assessed by the sulforhodamine B assay. Drug interactions were evaluated by isobologram analysis. The polymerase chain reaction and flow cytometry were employed for examination of the mdr1 (multidrug resistance type 1) phenotype. As reported by others, incubation of the P glycoprotein (P-gp)-negative tumor cell lines with the Topo I inhibitor CPT resulted in a significant down-regulation of Topo II protein expression. This was obviously due to changes in the cell cycle distribution of the cells induced by the treatment, with a marked increase of cells in G2/M phase and a consecutive decrease of S phase cells. Despite these biochemical changes, isobologram analysis showed additive cytotoxic activity of CPT and ETP in all the cell lines, independent of whether the drug incubation was performed simultaneously or sequentially. These data indicate that down-regulation of Topo II protein by CPT does not prevent additive activity of CPT and ETP in vitro, and therefore combined Topo I and II inhibition may be useful for investigation in clinical trials.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Modulation of multidrug resistance by BIBW22BS in blasts of de novo or relapsed or persistent acute myeloid leukemia ex vivo.

The phenylpteridine derivative BIBW22BS (BIBW22) is a potent modulator of multidrug resistance (MDR). We investigated BIBW22 in comparison to dexniguldipine and verapamil as modifier of MDR in blasts of de novo, relapsed or persistent acute myeloid leukemia (AML) in vitro. All patients with relapsed or persistent AML had been pretreated with idarubicin and cytosine arabinoside. The degree of MDR was determined by efflux kinetics of rhodamine 123 (R123), daunorubicin, and idarubicin measured by flow cytometry (FACS). A total of 51 patients with AML, 25 de novo and 26 relapsed or persistent, were investigated. While only 6 out of 25 de novo AML blast populations showed moderate efflux of R123 and daunorubicin, 17 out of 26 blast populations of relapsed or persistent AML had an efflux between 20% and 44% within 15 min ex vivo. This efflux could be significantly inhibited by 1 microM BIBW22, 1 microM dexniguldipine, or 10 microM verapamil. For idarubicin we found an effusion of 40+/-9% within 15 min in all blast populations that could not be inhibited by the modulators. Clinically achievable drug concentrations causing only moderate side-effects are in the range of 0.5 microM dexniguldipine and 3 microM verapamil. Up to now, BIBW22 has not been investigated clinically. Thus the potential toxicity of concentrations of 0.5-1 microM BIBW22, sufficient for an optimal efflux inhibition ex vivo, is not known yet. We conclude from our ex vivo investigations in blast populations of de novo, relapsed or persistent AML that BIBW22 is a potent modulator of MDR.

Antigens, CD34↗

Philadelphia chromosome-positive chronic myelogenous leukemia: functional defects in circulating mature neutrophils of untreated and interferon-alpha-treated patients.

This study focuses on possible functional defects of circulating mature neutrophils in chronic phase chronic myelogenous leukemia (CML) and their modulation by interferon-alpha (IFN-alpha). Polymorphonuclear cells (PMN) of seven untreated and nine IFN-alpha-treated patients were evaluated for the following parameters by the following methods: generation of oxygen species, by luminol-dependent chemiluminescence; leukotriene B4 (LTB4) generation, by high-performance liquid chromatography (HPLC); expression of LTB4 and formylmethionyl-leucyl phenylalanine (FMLP) receptor sites, by 3H-binding assay; and GTPase activity, by 32P-gamma-GTP. Compared to normal controls, reduced values were obtained in treated and untreated CML for most parameters studied. Therapy with IFN-alpha resulted in significantly diminished values for oxygen species (NaF stimulation) and LTB4 (FMLP stimulation) generation, as well as FMLP receptor expression as compared to untreated CML. We conclude that alterations at the level of oxygen species production, mediator generation, receptor expression, and transmembrane signaling are involved in functional defects of circulating mature neutrophils from CML patients. IFN-alpha seems to enhance some of these functional defects, but the clinical relevance of these findings has be elucidated.

Adult↗