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S Rodenhuis

Publications and source records attributed to S Rodenhuis.

At least 127 records · Page 7Linked to original sources

Effect of cisplatin-containing chemotherapy on lithium serum concentrations.

OBJECTIVE: A case in which a possible cisplatin interference with lithium pharmacokinetics is evaluated. DATA SYNTHESIS: A 36-year-old woman with disseminated cervical cancer and multiple metastatic lesions in both kidneys was being treated with five courses of bleomycin, vindesine, mitomycin C, and cisplatin. The patient had also been taking lithium carbonate for the management of a manic-depressive disorder. Serum and urinary lithium concentrations were measured daily during the first course of chemotherapy and on a periodic basis during and between the consecutive courses. Lithium concentrations remained within the therapeutic range during the first course and increased later in association with deterioration of the patient's renal function secondary to progressive disease in both kidneys. This required dose adjustments of lithium. CONCLUSIONS: Lithium therapy should be guided by serial serum concentrations in such patients.

Adult↗

The ras gene family in human non-small-cell lung cancer.

The three ras genes code for proteins with a putative role in cellular signal transduction. They belong to a larger family of small guanosine-triphosphate (GTP)-binding proteins. The ras proteins acquire transforming activity when amino acids are substituted at one of a few specific sites, as a result of a point mutation in the gene. In about one third of adenocarcinomas of the lung, a K-ras mutation is present in codon 12 of the gene. Patients with early stages of K-ras mutation-positive tumors have a very unfavorable prognosis, even if apparently radical resection of the tumor has taken place. K-ras mutations are very rare among nonsmokers, and it is reasonable to assume that carcinogens in tobacco smoke directly cause the mutation. The types of ras mutations found in lung cancer are different from those in gastrointestinal malignancies. Colon cancer is mainly associated with mutations leading to substitution of the normal glycine at amino acid position 12 of K-ras by either valine or aspartic acid, and mutations in N-ras are not exceptional. In contrast, the predominant mutation in lung cancer leads to substitution of cysteine in codon 12. Several other members of the ras gene superfamily are also expressed in human lung cancer, but a possible relationship with lung tumorigenesis remains to be established.

Adenocarcinoma↗

A rapid and simple procedure for the routine detection of ras point mutations in formalin-fixed, paraffin-embedded tissues.

The use of the polymerase chain reaction (PCR) to detect specific DNA sequences in small amounts of tissues or cells has become a widespread tool in the field of molecular biology. With the better understanding of the clinical significance of oncogene activations in human tumors, the application of PCR in a routine setting is rapidly gaining importance. We have developed a rapid and simple procedure for the detection of mutated ras oncogenes in routinely fixed, paraffin-embedded tissue samples. DNA is isolated from three 10 microns tissue sections by incubation with a nonionic detergent and proteinase K, and can be directly used for amplification by PCR. The amplified DNA fragments are then dot-blotted onto nylon membranes and are hybridized to radioactively labeled oligodeoxynucleotides, specific for each of the mutated ras sequences. After a selective washing procedure, only fully matched oligodeoxynucleotides remain bound to the membrane, thus revealing the nature of the sequences that were present in the starting material. With this method, the detection of point mutations in ras genes can be performed in a routine setting, and the results of the analyses can be available in as few as 3-4 days.

Base Sequence↗

Replacement of cisplatin with carboplatin in combination chemotherapy against ovarian cancer: long-term treatment results of a study of the Gynaecological Cancer Cooperative Group of the EORTC and experience at The Netherlands Cancer Institute.

Carboplatin-based chemotherapy has been evaluated in three studies of ovarian cancer patients. In the first, combination cisplatin and carboplatin plus doxorubicin/hexamethylmelamine/cyclophosphamide were compared as first-line treatment of ovarian cancer in 341 women with stage IIB to IV disease. There were no observed differences in results between the two treatment groups. In the second study, conventional doses of intravenous carboplatin (350 mg/m2, given on day 1) plus oral cyclophosphamide (100 mg/m2 days 2 to 6) were given to late-relapsing patients (12 to 72 months) previously treated with cisplatin. Mature data showed a 55% overall response rate, acceptable toxicity, and an absence of additive neurotoxicity. Finally, 65 patients with refractory disease or in early relapse after cisplatin therapy (within 12 months) were treated with high-dose carboplatin (800 mg/m2). Toxicity was severe, but the 45% combined response rate was considered encouraging and worthy of further evaluation. It was concluded that carboplatin is an appropriate replacement for cisplatin in the treatment of ovarian cancer.

Adult↗

ras and human tumors.

Mutational activation of ras oncogenes is frequently encountered in human tumors. For unexplained reasons, K-ras mutations are predominantly found in pancreatic cancer, colorectal cancer and adeno-carcinoma of the lung, N-ras is predominantly found in a subset of acute leukemias and in myelodysplastic syndromes, while H-ras mutations are rare. In most tumors, ras mutations are not clearly associated with specific clinical or biological features, but in lung cancer, childhood lymphoblastic leukemia and possibly in myelodysplastic syndromes ras mutations may predict a poor prognosis. Accumulating evidence suggests that exposure to chemical carcinogens is responsible for many ras mutations in humans.

Gene Expression Regulation, Neoplastic↗

Differential activation of ras genes by point mutation in human colon cancer with metastases to either lung or liver.

To study the possible role of ras oncogene activation in the dissemination of colon cancer, we determined point mutations in codons 12, 13 and 61 in K- and N-ras in 3 groups of tumors: (A) primary tumors of patients who had undergone surgery for Dukes' B (early-stage) colon cancer, (B) primary tumors and metastases from patients undergoing resection of isolated lung metastases and (C) primary tumors and metastases from patients undergoing resection of isolated liver metastases. In 129 samples from 93 patients, 54 (42%) were positive for point mutations in either K- or N-ras. Most mutations (89%) were found in the K-ras gene. In group A (n = 50) ras point mutations were detected in 16 cases (32%) (15 in K-ras and 1 in N-ras). Thirteen out of 23 cases in group B (57%) were positive for a ras point mutation: 10 in K-ras and 3 in N-ras. In group C (n = 20), point mutations in codon 12 of K-ras, but none in H- or N-ras, were found in 10 cases (50%). In 31 cases the primary tumors from the metastases in groups B and C were available for analysis and 15 contained a ras point mutation (48%). Not all mutations were present in both the primary tumor and the metastasis. In 3 instances, a mutation was detected in the metastasis but not in the primary tumor, whereas in 1 case a mutation was found in the primary tumor.

Adenocarcinoma↗

Relationship between K-ras oncogene activation and smoking in adenocarcinoma of the human lung.

To investigate a possible relationship between the exposure to tobacco smoke and the presence of ras point mutations, we examined lung adenocarcinoma samples from 27 smokers and from 27 nonsmokers. Activating point mutations in K-ras (also known as KRAS2) and N-ras (also known as NRAS) were determined by using the polymerase chain reaction and oligonucleotide hybridization to detect the mutated sequences. Mutations were more often found in adenocarcinomas obtained from smokers (eight of 27) than in adenocarcinomas obtained from nonsmokers (two of 27) (P = .044, Fisher's exact test). All mutations were present in K-ras codon 12. None of the other parameters examined differed significantly between the ras-positive and ras-negative groups. We conclude that exposure to carcinogenic agents in tobacco smoke is an important factor in the induction of point mutations in K-ras in human lung adenocarcinomas, but that K-ras mutations may also infrequently occur in tumors of non-smokers.

Adenocarcinoma↗

Allele-specific detection of K-ras oncogene expression in human non-small-cell lung carcinomas.

Point mutations in codon 12 of the K-ras oncogene are frequent in human lung adenocarcinomas. To study the expression of the K-ras gene in these tumors we have developed a mRNA detection technique based on the polymerase chain reaction (PCR). By this technique, K-ras expression can be detected semi-quantitatively in samples of less than 100 ng total RNA. Hybridization of the amplified cDNA sequences with mutation-specific oligonucleotides allows separate quantification of the expression of normal and point-mutated alleles in a single sample. RNA samples from 24 human non-small-cell lung carcinomas (NSCLC), from 2 lung metastases of colonic adenocarcinomas, from 3 human lung adenocarcinoma cell lines, and from normal lung tissue were analyzed. In most tumors, expression of K-ras was detected at levels equal to or several times higher than those found in normal lung tissue. A lung metastasis from a colon adenocarcinoma, known to contain an amplified K-ras gene, highly over-expressed the K-ras gene. In those tumors in which the K-ras oncogene was activated by a point mutation, both alleles of the gene were expressed. Our results show that a high over-expression of K-ras is a rare event in human lung carcinomas, but that a certain degree of over-expression of the mutated allele can be demonstrated in tumors with an activated K-ras gene. With the technique we describe here, adequate estimation of the expression of specific genes in minimal amounts of tumor cells becomes possible.

Adenocarcinoma↗

Initial experience with treatment of human B cell lymphoma with anti-CD19 monoclonal antibody.

Six patients with progressive B cell non-Hodgkin's lymphoma have been treated with an IgG2a mouse monoclonal antibody (mAb) against the B cell differentiation antigen CD19, with total doses varying from 225 mg to 1000 mg. Free mAb was detected in the serum after doses of 15-30 mg. After the mAb infusions the number of circulating tumour cells was temporarily reduced, but in some cases antibody-coated cells remained in the circulation for several days. mAb penetrated to extravascular tumour sites; in general higher doses were required to saturate cells in the lymph nodes than to sensitize tumour cells in the bone marrow. mAb doses of up to 250 mg were given i.v. over 4 h without major toxicity. One patient twice achieved a partial remission after two periods of mAb treatment with an 8-month interval; the second remission lasted for 9 months. One patient showed a minor response. None of the patients made antibodies against the mouse immunoglobulin. Serum immunoglobulin levels were followed as a measure of the function of the normal B cell compartment; no significant changes were seen up to 6 months after mAb treatment.

Aged↗

Intraperitoneal chemotherapy for malignant peritoneal mesothelioma.

4 patients with malignant peritoneal mesothelioma have been treated with intraperitoneal chemotherapy in the Netherlands Cancer Institute in the recent years. 1 patient achieved a complete remission for 36+ months and another patient had a partial remission that lasted for 10 months. Intraperitoneal chemotherapy alone or in combination with other treatment modalities may yield a response rate of 58% with 24% complete remissions in 70 patients reviewed in the literature. Although these data should be considered with caution because of the heterogenicity of the patient group treated, cisplatin-based intraperitoneal chemotherapy seems to be the best available treatment for malignant peritoneal mesothelioma at present.

Adult↗

Sequential administration of recombinant human interleukin-2 and dacarbazine in metastatic melanoma: a multicenter phase II study.

Twenty-five assessable patients with metastatic melanoma have been entered in a multicenter phase II study of two induction cycles of human recombinant interleukin-2(IL2), 18 x 10(6) IU/m2/d continuous intravenous (IV) infusion on days 1 to 5 and days 12 to 17. Dacarbazine (DTIC), 850 mg/m2 IV bolus was given on day 26. The cycle was repeated at 5 weeks. Maintenance therapy was scheduled 3 weeks after the completion of induction treatment, consisting of IL2, 18 x 10(6) IU/m2/d for 5 days alternating with DTIC, 850 mg/m2 IV every 3 weeks, for a total of 18 weeks. Six patients responded (24%); two complete and four partial. Stable disease was seen in five patients. None of the six patients with more than two sites of metastases responded. Maximum response was observed in the first 3 months of treatment. Progression-free periods of 6 months and longer were seen in the two complete responders (8 and 17+ months), in two of the four partial responders (7 and 12+ months), and in three of the five patients with stable disease (9+, 15, and 17+ months). Toxicity included fever, skin rash, fatigue, anorexia, and diarrhea in most patients. Two patients had a weight gain of more than 10%. Eight patients needed intensive care for the observation and treatment of a myocardial injury (one patient), ventricular tachycardia (one), hypotension and oliguria (four), and sepsis (two). Sequential treatment with IL2 and DTIC appears to be effective but not clearly better than could be expected of IL2 alone.

Adult↗

Pentostatin in refractory chronic lymphocytic leukemia: a phase II trial of the European Organization for Research and Treatment of Cancer.

Pentostatin was used to treat 26 patients with advanced B-cell chronic lymphocytic leukemia resistant to conventional treatment. Twenty patients had progressive disease on previous regimens and six had had partial remission and then relapsed 3-34 months after previous chemotherapy. Eleven patients had previously been treated with three different regimens. 10 had been treated with two regimens, and five had been treated with one regimen. Pentostatin was administered at a dosage of 4 mg/m2 weekly for 3 weeks, then 4 mg/m2 every other week for 6 weeks and once a month for 6 months. Seven of 26 assessable patients (27%) achieved partial remission and five (19%) achieved clinical improvement. The median duration of partial remission until relapse or death was 210 days. Myelosuppression was minor and transient in responsive patients, indicating some degree of selective effect on lymphocytes. Except for one patient who died of cerebral hemorrhage during the first 6 weeks of treatment, no drug-related deaths were registered. Major toxic effects included nausea in 17 patients (mainly grade 1), infections in 15, and liver enzyme elevations in five. Thus, pentostatin is active, even in patients with advanced B-cell chronic lymphocytic leukemia that is refractory to multiple chemotherapy regimens. Response can be achieved with mild myelosuppression.

Adult↗

High-performance liquid chromatographic analysis of the new antitumour drug SK&F 104864-A (NSC 609699) in plasma.

A high-performance liquid chromatographic (HPLC) assay is described for the determination of the new, investigational antitumour drug SK&F 104864-A and its lactone ring opened form (SK&F 105992). The analytical methodology reported here involves a protein precipitation step with methanol as sample pretreatment procedure. The instability of the drug necessitates that the plasma fraction is obtained within 5 min after blood sampling by centrifugation, immediately followed by protein precipitation with cold methanol (-30 degrees C). The methanolic extract can be stored at -30 degrees C for several days without deterioration of the analyses. Stability data of the drug and its lactone ring opened metabolite in plasma and after methanolic extraction are discussed. The parent drug and the metabolite are separated by reversed-phase ion-pair liquid chromatography on a LiChrosorb RP-18 column, using methanol-water eluent (pH 6.0) with sodium dioctylsulphosuccinate (DOSS) as ion-pairing agent and fluorescence detection. The proposed method has been validated and, subsequently, implemented in a phase I clinical trial for pharmacokinetic evaluation of the new cytotoxic agent.

Aged↗

The ras oncogenes in human lung cancer.

The three well-characterized genes of the ras gene family H-ras, K-ras, and N-ras, code for closely related 21-kD proteins that have a role in the transduction of growth signals. The ras proteins acquire transforming potential when a point mutation in the gene leads to replacement of an amino acid in one of the critical positions 12, 13, or 61. Overexpression of the normal protein, usually associated with gene amplification, can have similar effects. The detection of mutationally activated ras genes has been facilitated by the development of oligonucleotide hybridization assays that allow the identification of each possible mutation at the critical sites. Employment of the polymerase chain reaction has greatly increased the sensitivity of these assays. Studies of human lung cancer have shown that adenocarcinoma is the only subtype associated with ras mutations. These occur in about 30% of primary tumors. In almost all cases, the mutation is present in codon 12 of the K-ras gene. No mutations have been observed to date in tumors of nonsmokers, suggesting that the mutation may result from exposure to carcinogenic ingredients of tobacco smoke. Amplifications of ras genes were shown to be very uncommon in clinically early stages of lung cancer. Analysis of the clinical data of patients who were operated on for adenocarcinoma of the lung shows that K-ras mutations are not associated with particular histologic characteristics of the tumors or with specific presenting features. Patients with K-ras mutations, however, had significantly worse survival than did those without an activation.

Adenocarcinoma↗