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Biomedical subjects

M E Scheulen

Publications and source records attributed to M E Scheulen.

At least 37 records · Page 2Linked to original sources

The Ras-Raf-MEK-ERK pathway in the treatment of cancer.

The mitogen activated protein kinases (MAPKs) are conserved proteins that regulate cell growth, division and death. Although activated in the cytosol, the MAPKs translocate to the nucleus upon activation and phosphorylate a large number of nuclear proteins. Investigating how Ras transmits extracellular growth signals, the MAPK pathway has emerged as the crucial route between membrane-bound Ras and the nucleus. The MAPK pathway represents a cascade of phosphorylation events including three pivotal kinases, namely Raf, MEK (MAP kinase kinase), and ERK (MAP kinase). These kinases present new opportunities for the development of novel anti-cancer drugs designed to be target-specific and probably less toxic than conventional chemotherapeutic agents. A number of drugs inhibiting Ras, Raf or MEK are currently under clinical investigation. This review addresses the rationale for targeting the MAP kinase pathway and the current status of various pharmacological approaches.

Animals↗

High-dose chemotherapy with peripheral blood stem cell transplantation for patients with advanced ovarian cancer.

PURPOSE: We report the results of high-dose chemotherapy (HDC) with peripheral blood stem cell transplantation in twenty-one patients with primarily advanced or relapsed ovarian cancer. METHODS: Twenty-five women underwent stem cell collection, and 21 were finally treated with different regimens of HDC containing cyclophosphamide, etoposide, carboplatin, and treosulfan. The patients received cyclophosphamide +/- cisplatin and cisplatin + paclitaxel, respectively, followed by G-CSF (n = 24) or GM-CSF (n = 1) for stem cell mobilization. RESULTS: A mean of 7.2 +/- 6.1 x 10(6) CD34+ cells per kg bw were collected. Thirteen patients received double transplants and one patient received a triple transplant. The median age was 47 years (range 24-61 years) and the mean number of prior regimens was three (range 1-8). Engraftment occurred on time in all patients and there was one treatment-related death resulting in an overall mortality rate of 4.8% among the 21 patients treated with HDC. The response rate was 72% (48% CR, 24% PR) and the mean time to progression and overall survival after HDC were 7 and 32 months, respectively. CONCLUSION: HDC could be performed safely in patients with advanced ovarian cancer. However, even with a high response rate, the duration of response is short, warranting new treatment approaches to further improve the outcome of this population of patients with unfavorable prognosis.

Adult↗

Long-term survival after induction therapy with idarubicin and cytosine arabinoside for de novo acute myeloid leukemia.

We treated 153 patients with de novo acute myeloid leukemia (AML) with two induction courses of conventional-dose cytosine arabinoside (ara-C) and idarubicin (AIDA) followed by either a third course of AIDA, high-dose ara-C or bone-marrow transplantation. The complete remission (CR) rate for all patients was 63.4%, with a higher CR rate for patients with a normal (versus unfavorable) karyotype (73.2% vs 52.5%; P=0.038). The probability of overall survival (OS) was 30.7% after 5 years (26.3% after 7 years). Improved OS at 5 years could be observed for patients up to 50 years old versus patients older than 50 years of age (37.6% vs 19.9%; P=0.001) and patients with a normal (versus unfavorable) karyotype (42.9% vs 14.1%; P=0.0016). Disease-free survival (DFS) after 5 years was 33.2% for all 97 CR patients and was significantly better for patients with a normal (versus unfavorable) karyotype (44.3% vs 12.3%; P= 0.003). Multivariate analysis revealed that the age for OS (P < 0.02) and the karyotype for both OS (P<0.03) and DFS (P< 0.05) were independent prognostic factors. In conclusion, AIDA is an effective and well-tolerated induction regimen (even in elderly patients) with a 5-year survival of more than 30% when combined with ara-C-containing postremission therapy. The karyotype is the most powerful prognostic factor for predicting the outcome of patients treated with this protocol.

Acute Disease↗

Investigation of bioavailability and pharmacokinetics of treosulfan capsules in patients with relapsed ovarian cancer.

PURPOSE: Treosulfan (L-threitol-1,4-bis-methanesulfonate, Ovastat) is a prodrug of a bifunctional alkylating agent with activity in ovarian carcinoma and other solid tumors. In a pharmacologic study of the bioavailability of treosulfan in a capsule formulation, patients with relapsed ovarian carcinoma were treated with alternating doses of oral and intravenous (i.v.) treosulfan of 1.5 or 2.0 g daily for 5 to 8 days. METHODS: A sensitive method for the determination of treosulfan in plasma and urine by reversed-phase high-performance liquid chromatography had previously been developed. Pharmacokinetic analyses of treosulfan were carried on plasma and urine samples from 20 i.v. courses and 20 courses of oral administration. RESULTS: The bioavailability ratio (f) of oral to i.v. administration was calculated as 0.97 +/- 0.18 (mean +/- SD) using the values AUC oral = 82.1 +/- 39.4 microg/ml h and AUC i.v. = 85.4 +/- 30.3 microg/ml h. The peak plasma concentration cmax (29 +/- 14 microg/ml vs 65 +/- 23 microg/ml) was significantly (P < 0.01) higher after i.v. administration and the tmax after oral administration was 1.5 +/- 0.34 h. The terminal half-life of treosulfan was about 1.8 h. The mean urinary excretion of the parent compound was about 15% of the administered total dose over 24 h (range 6-26%). CONCLUSIONS: The high and relatively constant bioavailability of treosulfan indicates that capsules provide a satisfactory noninvasive treatment alternative. A feasible and reliable oral treosulfan formulation could provide the basis for the development of long-term low-dose outpatient treatment of patients with malignant diseases.

Administration, Oral↗

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↗

Simultaneous measurement of cellular P-glycoprotein content and function by multiparametric flow-cytometry.

OBJECTIVE: A multiparametric approach was applied to simultaneously determine expression and function of the drug efflux pump P-glycoprotein (PGP) in multidrug-resistant (MDR) human leukemic lymphoblast cell lines and isolated leukemic blasts using flow-cytometry in a patient with acute myeloid leukemia (AML). METHODS: The antigen was measured by staining PGP using the monoclonal antibody 4e3 which does not inhibit the function of PGP. The 4e3 antibody binds to an external epitope of PGP and can therefore be used for staining living cells. Drug transport, mediated by PGP, was determined simultaneously by measuring rhodamine 123 (rho123) efflux. The MDR cell lines, CEM/VLB10-2 and CEM/VBL100 are 10-fold and 270-fold resistant to vinblastine (VBL), respectively, compared to the human PGP-negative parent cell line CEM/WT and they express different amounts of PGP. Initially, living cells were stained using the 4e3 antibody and a secondary antibody labeled with 7-amino-4-methylcoumarin-3-acetic acid (AMCA). Cells were then incubated for 60 min with rho123 (10 microM) and analyzed for rhodamine and AMCA-derived fluorescence. The decrease in rho123 fluorescence was determined after a further period of 30 min. RESULTS: CEM/VLB100 cells expressed larger amounts of PGP, and rho123 fluorescence after 30 min was 85% lower than the parent cell line. PGP expression and rho123 efflux were also detected in CEM/VLB10-2 cells which display a low degree of resistance, thus reflecting the high sensitivity of this method. PGP-expressing blasts and moderate rho123 efflux were also observed in a specimen derived from a patient with clinically resistant acute myeloid leukemia (AML). CONCLUSION: A multiparametric approach using flow-cytometry allows the reliable and sensitive measurement of both PGP expression and function simultaneously in single cells.

ATP Binding Cassette Transporter, Subfamily B↗

Clinical phase I dose escalation and pharmacokinetic study of high-dose chemotherapy with treosulfan and autologous peripheral blood stem cell transplantation in patients with advanced malignancies.

A Phase I dose escalation and pharmacokinetic study of the alkylating cytotoxic agent treosulfan was conducted to evaluate the maximum tolerated dose and the dose-limiting toxicities in patients with advanced malignancies rescued by autologous peripheral blood stem cell transplantation. Twenty-two patients (15 ovarian and 7 other carcinomas/lymphomas) with a median age of 48 years were treated with 28 high-dose courses. Treosulfan was infused over 2 h at escalating doses from 20 to 56 g/m2, and pharmacokinetic parameters were analyzed. At 56 g/m2, three of six patients experienced dose-limiting toxicities: diarrhea grade III/IV in three patients; mucositis/stomatitis grade III in one patient; toxic epidermal necrolysis in one patient; and grade III acidosis in one patient. Other low-grade side effects, including erythema, pain, fatigue, and nausea/vomiting, were recorded. Two patients died within 4 weeks after treatment because of rapid tumor progression and fungal infection, respectively. Plasma half-life, distribution volume, and renal elimination of treosulfan were independent of dose, whereas the increase in area under the curve was linear up to 56 g/m2 treosulfan. The maximum tolerated dose of high-dose treosulfan is 47 g/m2. A split-dose or continuous infusion regimen is recommended for future high-dose trials. In consideration of antineoplastic activity and limited organ toxicity, inclusion of high-dose treosulfan in combination protocols with autologous peripheral blood stem cell transplantation seems worthwhile.

Adult↗

[Value of tumor-associated antigens CA 72-4 vs. CEA and CA 19-9 in the follow-up after stomach cancer].

OBJECTIVE: To compare the value of tumour markers CA-72-4 and CA 19-9 and the cardioembryonic antigen (CEA) in the follow-up of patients after potentially curative surgery of gastric carcinoma. PATIENTS AND METHODS: CA 72-4, CA 19-9 and CEA were measured prospectively in 279 patients 1-36 months after potentially curative primary surgery for histologically proven gastric carcinoma. Evaluation was by "receiver-operating-characteristics" (ROC) curves using "believe the positive" rules as well as by linear combinations. RESULTS: Recurrences were found in 54 patients. CA 72-4 (by radioimmunoassay) was the most sensitive single test (sensitivity 43%, specificity 95%). Radioimmunological and enzyme-immunological tests of CA 79-4 correlated well (r = 0.8). The various values, obtained by certain test kits, when newly calculated for the purpose of after-care, differed markedly from upper limits reported by the manufacturers. Measurement of both CA 72-4 and CA 19-9 increased the sensitivity to 54%. INTERPRETATION: Special levels of CA 72-4 and CA 19-9 have been identified which are of value in the follow-up of patients after operation for gastric carcinoma. Single measurements of CA 74-2 are as a rule preferable to those of CA 19-9 or of both CA 11-9 and CEA. In fact, CEA should be measured only in exceptional circumstances. But combined measurements of CA 72-4 and CA 19-9 increase sensitivity and prognostic value of the results.

Adenocarcinoma↗

Clinical pharmacokinetics of intravenous treosulfan in patients with advanced solid tumors.

Treosulfan (L-threitol- 1,4-bis-methanesulfonate, Ovastat) is a prodrug of a bifunctional alkylating agent with activity in ovarian carcinoma and other solid tumors. For a clinical and pharmacology study, patients with advanced, refractory, or resistant solid tumors were treated with a single-dose intravenous 30-min infusion of 8 or 10 g/m2 treosulfan. A sensitive method for the determination of treosulfan in plasma and urine by reverse-phase high-performance liquid chromatography was developed. A total of 14 plasma and urine treosulfan pharmacokinetics determinations were analyzed in the 8-g/m2 group and 7 were analyzed in the 10-g/m2 group, the maximum tolerated dose for this group of pretreated patients. The terminal half-life of treosulfan was in the range of 1.8 h. AUC and Cmax values were significantly (P < 0.01) higher in the 10-g/m2 group (AUC 708+/-168 versus 977+/-182 microg ml(-1) h, Cmax 465+/-98 versus 597+/-94 microg/ml). The mean urinary excretion of the parent compound was about 25% of the total dose delivered over 48 h (range 5-49%), and about 20% was excreted during the first 6 h after administration. Currently, a clinical phase I pharmacokinetics and dose-escalation trial with autologous blood stem-cell support has been started at 20 g/m2 treosulfan using a 2-h infusion protocol.

Adult↗

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↗

Cardiac troponin I plasma levels for diagnosis and quantitation of perioperative myocardial damage in patients undergoing coronary artery bypass surgery.

OBJECTIVE: The definition of a reliable and generally accepted diagnostic standard for perioperative myocardial damage is desirable. Cardiac troponin I (cTnI) is highly specific for myocardial tissue and can be measured rapidly. The aim of our study was to evaluate the diagnostic potential of cTnI for myocardial lesions in patients undergoing coronary artery bypass surgery (CABG). METHODS: A total of 119 patients with diffuse coronary artery disease were operated on using blood cardioplegia. Serial blood samples drawn before and after surgery were analyzed for the activity of creatine kinase MB isoenzyme (CKMB) and the concentrations of CKMB mass, cardiac troponins T and I. On the basis of the biochemical results (except cTnI) and the findings of electrocardiography/echocardiography, patients were classified and cTnI was studied for each group separately: group I, minor myocardial damage; group II, non-transmural infarction; group III, transmural infarction; and group IV, preoperative non-transmural infarction. RESULTS: In 87 patients of group I (73.1%) cTnI levels remained low; 19 patients (16.0%) were assigned to group II, 8 patients (6.7%) to group III, and 5 patients (4.2%) to group IV. For discrimination of patients without and with perioperative myocardial infarction (PMI) by one cTnI determination, the use of cutoff values of 6.5 ng/ml at 8 h, 9.8 ng/ml at 12 h, and 11.6 ng/ml at 24 h after aortic unclamping resulted in a diagnostic efficiency of 88, 94 and 98%). Especially, a cTnI value at 24 h had a sensitivity of 100% and a specificity of 97%. Cardiac troponin levels at 24 h were found to correlate closely with the well-recognized 2-48 h area-under-the-curve (P < 0.0001; R = 0.993), making serial determinations unnecessary. CONCLUSIONS: cTnI qualifies as a marker for diagnosis of PMI and quantitation of the amount of myocardial damage, because of the availability of a quick diagnostic test with high specificity, the high diagnostic efficiency, and especially the sufficient information gained by a single determination 24 h after aortic unclamping.

Aged↗

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↗

Phase I clinical and pharmacokinetic study of titanocene dichloride in adults with advanced solid tumors.

This Phase I dose-escalation clinical trial of a lyophilized formulation of titanocene dichloride (MKT4) was conducted to determine the maximum tolerated dose, the dose-limiting toxicity (DLT), and pharmacokinetics of titanium (Ti) after a single i.v. infusion of MKT4. Forty patients with refractory solid malignancies were treated with a total of 78 courses. Using a modified Fibonacci scheme, 15 mg/m2 initial doses of titanocene dichloride were increased in cohorts of three patients up to level 11 (560 mg/m2) if DLT was not observed. The maximum tolerated dose was 315 mg/m2, and nephrotoxicity was DLT. Two minor responses (bladder carcinoma and non-small cell lung cancer) were observed. The pharmacokinetics of plasma Ti were assessed in 14 treatment courses by atomic absorption spectroscopy. The ratio for the area under the curve(0-infinity) in plasma and whole blood was 1.2. The following pharmacokinetic parameters were determined for plasma, as calculated in a two-compartment model: biological half-life t1/2beta in plasma was 22.8+/-11.2 h (xh +/- pseudo-SD), peak plasma concentration cmax approximately 30 microg/ml at a dose of 420 mg/m2, distribution volume Vss= 5.34+/-2.1 L (xa +/- SD), and a total clearance CItotal = 2.58+/-1.23 ml/min (xa +/- SD). There was a linear correlation between the area under the curve(0-infinity) of Ti in plasma and the titanocene dichloride dose administered with a correlation coefficient r2 of 0.8856. Plasma protein binding of Ti was in the 70-80% range. Between 3% and 16% of the total amount of Ti administered were renally excreted during the first 36 h. The recommended dose for Phase II evaluation is 240 mg/m2 given every 3 weeks with i.v. hydration to reduce renal toxicity.

Adult↗

Phase I and pharmacokinetic study of the P-glycoprotein modulator dexniguldipine-HCL.

Dexniguldipine (DNIG) is the R-enantiomer of the dihydropyridine derivate niguldipine. DNIG showed a binding affinity to the P-glycoprotein (P-gp) and therefore it is to be assumed to block the P-gp pumping mechanism. This open phase I study was conducted to determine the maximal tolerated dose (MTD) and safety of intravenously administered DNIG alone and in combination with vinblastine in patients with a metastatic or locally advanced cancer. Additionally, serum levels of DNIG were assessed and compared between dosage groups to investigate the intravenous dose linearity. The study was divided into two parts concerning DNIG administration. In part I the patients received DNIG for four hours daily over four consecutive days and additionally 0.15 mg/kg vinblastine at day 3. Treatment was started with 1 mg/kg/4h, and whenever the drug was well tolerated the dosage was increased. In part II the patients received up to three courses of a four-hour infusion (5 and 7 mg/kg/4h) of DNIG followed by a continuous infusion for 48 hours (5 and 7 mg/kg/24h). Twenty-six patients entered this trial and were given at least one infusion of DNIG; vinblastine was given immediately after the 4-hour infusion. One to seven courses and dosages from 1-11 mg/kg were administered. In five patients the dose limiting toxicity was seen in cardiovascular adverse events such as a drop in blood pressure, decreased heart rate and in one patient an AV block III. Most frequent adverse events were nausea, dizziness, vomiting, peripheral paresthesia, atactic gait, mild constipation, polyuria, hypocalcemia; all disappeared within 24 hours after discontinuation of infusion. A linear increase in DNIG serum concentration with increasing doses was found following intravenous infusion of DNIG over a four-hour period. Long-term infusion regimes over a period of two or five days resulted in reasonably constant DNIG serum levels. MTD was determined at 5 mg/kg/4h. It is to be assumed that the MTD for continuous infusion of DNIG is higher than 5 mg/kg/24h, but this was not followed up in the study and must be the aim of a later trial.

ATP Binding Cassette Transporter, Subfamily B, Mem↗