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Biomedical subjects

R Pirker

Publications and source records attributed to R Pirker.

At least 37 records · Page 2Linked to original sources

Adjuvant and induction chemotherapy in non-small cell lung cancer.

About 25%-30% of patients with non-small cell lung cancer can be resected with curative intent. However, systemic relapses occur in up to 70% of these patients. Thus, postoperative adjuvant chemotherapy was evaluated in several randomised trials but the results of these trials were inconclusive with a survival benefit only in some trials. Shortcomings of these trials included low number of patients, poor patient compliance and inadequate chemotherapy protocols. A recent meta-analysis suggested an absolute survival benefit of 5% at five years for postoperative cisplatin-based chemotherapy as compared to surgery alone. Thus adjuvant chemotherapy with both improved chemotherapy protocols and improved anti-emetics is currently re-evaluated in several randomised trials on large patient populations.

Antineoplastic Agents↗

Expression of the lung resistance protein predicts poor outcome in de novo acute myeloid leukemia.

The 110-kD lung resistance protein (LRP) is overexpressed in P-glycoprotein-negative multidrug-resistant cell lines and most likely involved in the multidrug resistance (MDR) of these cell lines. To determine the clinical significance of LRP, we have studied LRP expression of leukemic blasts and its association with clinical outcome in patients with de novo acute myeloid leukemia (AML). LRP expression of leukemic blasts obtained from peripheral blood or bone marrow of previously untreated patients (n = 86) was determined by immunocytochemistry by means of monoclonal antibody LRP-56. LRP expression at diagnosis was detected in 31 (36%) patients. LRP expression was independent of age and sex of the patients, French-American-British subtype, cytogenetic abnormalities, and lactate dehydrogenase levels, but correlated with white blood cell count (P = .01). Eighty-two patients received standard induction chemotherapy that included cytarabine and MDR drugs (daunorubicin in most patients, additional etoposide in the majority of patients). The complete remission rate of induction chemotherapy was 72% (95% confidence interval [CI] = 61% to 82%) for the total study population. The complete remission rate was 81% (95% CI = 67% to 91%) for patients without LRP expression but only 55% (95% CI = 36% to 74%) for patients with LRP expression (P = .01). Overall survival and disease-free survival were estimated according to Kaplan-Meier in 82 and 59 patients, respectively. Overall survival was significantly longer in patients without LRP expression than in patients with LRP expression. At a median follow-up of 16 months, median overall survival was 17 months (95% CI = 12 to 38 months) for LRP-negative patients but only 8 months (95% CI = 4 to 12 months) for -positive patients (P = .006). Disease-free survival was 9 months (95% CI = 7 to 11 months) for LRP-negative patients and 6 months (95% CI = 5 to 8 months) for -positive patients (P = .078). Outcome was best in patients lacking both LRP and P-glycoprotein expression. In conclusion, LRP predicts for poor outcome and thus the LRP gene appears to be another clinically relevant drug resistance gene in AML.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Vinorelbine/gemcitabine in advanced non-small cell lung cancer (NSCLC): a phase I trial.

Vinorelbine and gemcitabine are both active as single agents in advanced non-small cell lung cancer (NSCLC). Because of their different mechanisms of action, good tolerability and possible administration on an out-patient basis, vinorelbine/gemcitabine should be an interesting combination for palliative chemotherapy. Thus, we initiated a phase I dose-escalation trial in order to determine the maximum tolerated doses of vinorelbine/gemcitabine that can be administered without haematopoietic growth factors, the dose-limiting toxicities and the most frequent side-effects of this novel combination. 40 chemotherapy-naïve patients with advanced NSCLC were treated with different doses of vinorelbine/gemcitabine on days 1, 8 and 15, and this treatment cycle was repeated on day 29. Vinorelbine and gemcitabine were escalated from 10 to 30 mg/m2 and 600 to 1200 mg/m2, respectively. A total of 63 treatment cycles were administered and 27 patients received at least two treatment cycles. Dose-limiting toxicities were leucopenia plus thrombocytopenia (2 patients) and mucositis (1 patient). The maximum tolerated dose was established at 25 mg/m2 vinorelbine combined with 1200 mg/m2 gemcitabine. Frequent side-effects were leucopenia, anaemia, nausea/vomiting, flu-like symptoms, skin rashes and elevation of liver enzymes. The recommended phase II doses are 20-25 mg/m2 vinorelbine combined with 1000-1200 mg/m2 gemcitabine on days 1, 8 and 15, but myelosuppression will have to be carefully monitored.

Adult↗

Phase II trial of gemcitabine in advanced non-small-cell lung cancer.

Gemcitabine has shown activity in different solid tumors. In the present study we have evaluated its efficacy in 32 patients with advanced non-small-cell lung cancer in a phase II trial. Gemcitabine (1250 mg/m2) was given intravenously as a 30-minute infusion on days 1, 8 and 15. Cycles were repeated every 4 weeks. Twenty-nine patients were evaluable for response and all patients for toxicity. Partial remissions and stable disease were seen in 4 (14%) and 13 (45%) patients, respectively. Improvement of symptoms occurred in 54% of the patients. Side effects were mild and included predominantly leukopenia and thrombocytopenia. In conclusion, gemcitabine is active and well tolerated in patients with advanced non-small-cell lung cancer.

Adult↗

Neurological monitoring of neurotoxicity induced by paclitaxel/cisplatin chemotherapy.

To evaluate the neurotoxicity of paclitaxel/cisplatin chemotherapy, we studied neurological and electrophysiological functions in 14 patients who had been treated with 1-7 courses of paclitaxel/cisplatin. The cumulative paclitaxel and cisplatin doses ranged from 175 to 1225 mg/m2 and 100-700 mg/m2, respectively. Neurological examinations as well as motor nerve conduction studies of the peroneal nerve were performed and summarised by means of a peripheral neuropathy score. Neurotoxicity with onset usually after the second treatment cycle occurred in 13 patients. 12 patients complained about sensory symptoms, 13 patients had impaired vibration sense and 8 patients developed additional muscle weakness, predominantly of the legs. Dysfunction of peroneal motor nerve conduction occurred in 13 patients. Reduction of amplitudes as well as slowing of conduction velocities were seen in 13 patients and prolonged distal latencies in 10 patients. The peripheral neuropathy score was elevated in 13 patients. Neurological symptoms, impairment of both vibration sense and tendon reflexes, and the peripheral neuropathy score increased with the cumulative doses of paclitaxel/cisplatin. Serial analysis among selected patients also revealed an increase in neurotoxicity with increasing cumulative drug doses. These data indicate the development of neurotoxicity in most patients treated with paclitaxel/cisplatin and also suggest that early signs of neurotoxicity can be detected by clinical examination with emphasis on symptoms as well as vibration sense and can be well documented by electrophysiological investigations.

Adult↗

MDR1 RNA transcripts do not indicate long-term prognosis in colorectal carcinomas.

Because P-glycoprotein expression might be associated with a more aggressive behaviour of colorectal carcinomas (Weinstein et al., Cancer Res, 1991, 51, 2720-2726), we determined the relationship between MDR1 RNA expression of the carcinomas and the survival of the patients. At a median duration of follow-up of 86 months, event-free survival of patients with MDR1 RNA-negative tumours (n = 35) was not significantly different to that of patients with MDR1 RNA positive tumours (n = 67). Among the different tumour stages, event-free survival of the patients was also independent of MDR1 gene expression of the tumours. Thus, these findings do not support the hypothesis that local aggressiveness of P-glycoprotein positive tumour cells translates into worse clinical outcome.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Expression of the multidrug resistance-associated protein (MRP) gene in colorectal carcinomas.

To determine the clinical significance of MRP in patients with colorectal carcinomas, we have studied the expression of the MRP gene by reverse transcription-polymerase chain reaction (RT-PCR) (n = 105) and by immunohistochemistry (n = 30). MRP mRNA expression was observed in 92 (88%) tumour specimens. Positive MRP staining with monoclonal antibodies QCRL-1 and QCRL-3 was detected in all samples studied with strong staining in seven (23%) and weak staining in 23 (77%) specimens. Strong MRP staining in these samples did not appear to be related to the age and sex of the patients, localization of the primary tumour, histological grade, tumour size, lymph node metastasis, distant metastasis and tumour stage. Strong MRP staining was not associated with MDR1 RNA or P-glycoprotein (P-gp) expression. Kaplan-Meier curves revealed that overall survival of patients with strong MRP-staining tumours was similar to the survival of patients with weak-staining tumours. These data indicate that the MRP gene is expressed in primary colorectal carcinomas but is neither related to known prognostic factors nor a prognostic factor by itself.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Immunocytochemical detection of the multidrug resistance-associated protein and P-glycoprotein in acute myeloid leukemia: impact of antibodies, sample source and disease status.

Immunocytochemical detection of the expression of the MRP gene and the MDR1 gene in clinical specimens might be affected by several factors. Thus, we studied the impact of monoclonal antibodies, sample source (peripheral blood vs bone marrow) and disease status on the expression of multidrug resistance-associated protein (MRP) as well as P-glycoprotein (P-gp) in leukemic cells of patients with acute myeloid leukemia (AML). MRP expression was determined by means of anti-MRP antibodies (QCRL-1, QCRL-3, QCRL-1/QCRL-3 or MRPr1). In the case of P-gp, monoclonal antibodies C219 and MRK16 were used. High MRP expression ranged from 5 to 35% and high P-gp expression from 5 to 14% of the specimens. A fair correlation between results obtained with QCRL-1/QCRL-3 and those obtained with MRPr1, as well as a moderate correlation between C219 and MRK16, were seen. MRP and P-gp expression of peripheral blood blasts were similar to those of bone marrow blasts in the majority of cases. The degrees of MRP expression at the time of diagnosis were also similar to the degrees of expression at relapse, albeit an analysis of sequential MRP expression in 13 patients indicated an increase of expression at relapse in six patients as compared to the time of diagnosis.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Multidrug resistance-associated protein in acute myeloid leukemia: No impact on treatment outcome.

Drug resistance remains a major problem in the treatment of patients with acute myeloid leukemia (AML). Expression of the MDR1 gene in leukemic cells was shown previously to be associated with worse clinical outcome of the patients. The multidrug resistance-associated protein (MRP) has been shown recently to be another protein causing the multidrug resistance phenotype in cell lines, but its impact on clinical outcome in patients with AML remains to be proven. To determine the clinical significance of MRP in patients with de novo AML, we have studied the MRP expression in leukemic cells and its association with both response to induction chemotherapy and survival of the patients. MRP gene expression was determined by immuno-cytochemistry (n = 80) by means of the monoclonal antibodies QCRL-1 and QCRL-3. MRP expression was low, intermediate, and high in 19, 55, and 26% of the patients, respectively. High MRP expression was independent of age and sex of the patients, WBC count, and percentage of blasts. However, high MRP expression was more frequent in the FAB M5 subtype as compared to the other subtypes. MRP expression had no impact on clinical outcome. The complete remission rates were 65, 68, and 63% for patients with low, intermediate, and high expression, respectively. Overall survival was also independent of MRP expression. In contrast, patients with P-glycoprotein-positive AML had lower complete remission rates and shorter durations of survival. These data indicate that MRP is expressed in patients with de novo AML but, in contrast to P-glycoprotein, does not predict for outcome of induction chemotherapy or survival.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Multidrug resistance in leukemias and its reversal.

Drug resistance often results in failure of anticancer chemotherapy in leukemias. Several mechanisms of drug resistance are known with multidrug resistance (MDR) being the best characterized one. MDR can be due to enhanced expression of certain genes (MDR1, MRP or LRP), alterations in glutathione-S-transferase activity or GSH levels and to reduction of the amount or the activity of topoisomerase II. Here we review the current status of the clinical significance of the various mechanisms of MDR in leukemias and also discuss possibilities for the reversal of MDR. MDR1 gene expression has been seen in many leukemias, notably in acute myeloid leukemia (AML) and blast crisis of chronic myeloid leukemia. Both MDR1 RNA and P-glycoprotein expression of the leukemic cells have been shown to correlate with poor clinical outcome in AML. However, preliminary results indicate that the MRP gene as well as the LRP gene can be expressed in AML. Thus, drug resistance in leukemias appears to be multifactorial. P-glycoprotein-mediated MDR can be reversed by several drugs. These resistance modifiers are currently evaluated with regard to their clinical efficacy. Despite some encouraging results, reversal of drug resistance and subsequent improvement in clinical outcome remains to be shown.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Clinical relevance of drug resistance genes in malignant disease.

Drug resistance is a major reason for the failure of anticancer chemotherapy. Multidrug resistance has been recognized as an important type of resistance and can be due to various mechanisms. Here we review the published data on the presence and clinical significance of these mechanisms in solid tumors and hematological malignancies. We also refer to new treatment strategies resulting from the knowledge of the various mechanisms of drug resistance present in malignant diseases.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

MRP and MDR1 gene expression in primary breast carcinomas.

To evaluate the clinically important mechanisms of drug resistance in breast cancer, the expression of the MRP gene and the corresponding one for the MDR1 gene were determined in primary breast carcinoma specimens by both reverse transcription-PCR (n = 134) and immunohistochemistry (n = 63). Expression of MRP RNA was observed in all breast cancer specimens. MDR1 RNA was detected in 80 (60%) of the carcinomas. Staining with monoclonal antibodies QCRL-1 and QCRL-3, which both recognize MRP, was strong in 15 (24%) and weak in the remaining 48 specimens (76%). Staining with C219, which recognizes P-glycoprotein, was strong in 6 (9%), weak in 30 (48%), and negative in 27 (43%) of the samples. Strong MRP staining was more frequent in T3 and T4 tumors than in T1 and T2 tumors and in the primary tumors of patients with distant metastases but was independent of age, menopausal status, histology, histological grade, estrogen receptor, progesterone receptor, and lymph node involvement. No correlation between MRP staining and expression of MDR1 RNA or P-glycoprotein was observed. Thus, these results indicate expression of both the MRP gene and the MDR1 gene in primary breast carcinomas and suggest that clinical drug resistance in breast cancer is most likely multifactorial.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Dexverapamil as resistance modifier in acute myeloid leukaemia.

In order to evaluate dexverapamil as a resistance modifier in acute myeloid leukaemia, we have added dexverapamil (4 x 300 mg/d orally) to DA chemotherapy (daunorubicin, cytosine arabinoside) in six patients with acute myeloid leukaemia. Two patients (1 first and 1 second relapse) achieved complete remission and two patients (1 refractory disease, 1 third relapse) showed some improvement. One patient in first relapse died due to disease progression and one drug-refractory patient remained refractory. The peak plasma levels of dexverapamil and nordexverapamil ranged from about 600 to 4100 ng/ml and from 450 to 1130 ng/ml, respectively. Major sideeffects were hypotension and sinus bradycardia. These results show the need for further evaluation of dexverapamil as a resistance modifier in acute myeloid leukaemia.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Paclitaxel/cisplatin in advanced non-small-cell lung cancer (NSCLC).

BACKGROUND: Paclitaxel (Taxol) as single agent has shown promising activity in advanced non-small-cell lung cancer (NSCLC). Because paclitaxel lends itself to combination with other anticancer drugs, we have determined the efficacy of paclitaxel combined with cisplatin in patients with advanced NSCLC in a phase II trial. PATIENTS AND METHODS: Twenty patients with NSCLC stage IIIB or IV were treated with paclitaxel (175 mg/m2) as a 3-hour infusion after standard premedication on day 1 and cisplatin (50 mg/m2 daily) on days 1 and 2. Treatment was repeated every 3 weeks. RESULTS: All 20 patients were evaluable for response and toxic effects. Partial responses were seen in 7 (35%) patients and no change in 9 (45%) patients. Major side effects included leukopenia, anemia, alopecia and dose-limiting neurotoxicity. CONCLUSIONS: Paclitaxel/cisplatin has shown good antitumor activity in patients with advanced NSCLC and should be further evaluated in this disease. Because neurotoxicity has been dose-limiting, methods for its prevention or early detection should further enhance the clinical value of this combination chemotherapy.

Adolescent↗

MDR1 gene expression in lymphocytes of patients with renal transplants.

The MDR1 gene, a multidrug resistance gene, codes for P-glycoprotein which pumps hydrophobic drugs out of the cells. Since cyclosporins also bind to P-glycoprotein and might be pumped by this transmembrane protein, we determined the expression of the MDR1 gene in the lymphocytes of 32 patients with renal transplants. MDR1 RNA expression of lymphocytes was measured by slot blot analysis and compared to the expression of drug-sensitive KB-3-1 cells and multidrug-resistant KB-8-5 cells. MDR1 RNA expression was detected in the lymphocytes of 9 (28%) patients, whereas no expression was seen in the remaining 23 patients. No association between MDR1 RNA expression and transplant function or hematological parameters was observed. However, none of the 6 patients who had transplants for more than 40 months expressed the MDR1 gene in their lymphocytes. In conclusion, expression of the MDR1 gene does occur in lymphocytes of patients with renal transplants and might reduce the immunosuppressive efficacy of cyclosporins through enhanced efflux of cyclosporins.

ATP Binding Cassette Transporter, Subfamily B, Mem↗

Intrinsic MDR-1 gene and P-glycoprotein expression in human melanoma cell lines.

Metastatic malignant melanoma is considered a chemotherapy-refractory malignancy. A few previous studies have delivered contradictory results regarding the presence and functionality of P-glycoprotein (P-gp), a transmembranous protein associated with the classical multidrug resistance (cMDR), in malignant melanoma. Therefore we have investigated this issue on 33 cell lines established from primary and metastatic lesions of human malignant melanoma, comparing different cMDR detection methods. Immunocytochemically 33% of the cell lines stained positive for P-gp. The data correlated with those of a P-gp-radioimmunometric (antibody-binding) assay. When RT-PCR was used for MDR-1 mRNA determination, 76% of the melanoma cell lines scored positive. Slot-blot analysis was seen to be less sensitive than RT-PCR. Results from the functional P-gp assays, using daunomycin (DM) as MDR-substrate, showed no influence of P-gp expression on drug accumulation and cytotoxicity. However, the cMDR-modifier verapamil (VP) significantly increased both parameters in those melanoma cells with the highest P-gp levels. We conclude that cMDR is apparently not the decisive but probably a complementary protective mechanism against toxic agents in malignant melanoma.

ATP Binding Cassette Transporter, Subfamily B, Mem↗