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Pharmacokinetics and toxicity of continuous infusion amphotericin B in cancer patients.

To evaluate the role of amphotericin B (AmB) in the biochemical modulation of antineoplastic agents, AmB was administered as a continuous infusion over a period of 52 to 120 h to 14 patients (26 courses) with advanced carcinomas. Continuous infusion amphotericin B (CI-AmB) was delivered at a rate of 0.5 to 0.8 mg/kg/d (19-31 mg/m2/d). The AmB plateau levels assayed by HPLC ranged from 0.7 to 1.9 micrograms/mL and were directly related to the infusion rate. The AmB plasma disposition was biphasic, with mean half-lives of 17 h for the first phase and 11 d for the terminal phase, and a mean residence time of 12 d. Biochemical modulation of antineoplastic agents (lomustine, doxorubicin, cyclophosphamide) by CI-AmB was not demonstrated clinically. Acute toxicities of fever and chills were noted in only 3 of the 26 courses. Reversible renal toxicity was observed in 23 courses. Therapeutic antifungal plasma levels were rapidly reached and maintained for the duration of infusion, with a reduction of acute toxicities associated with shorter infusions. These observations provide impetus for further clinical investigation of CI-AmB.

Adolescent↗

Degradation and disposal of some antineoplastic drugs.

Bulk quantities and pharmaceutical preparations of the antineoplastic drugs carmustine (BCNU), lomustine (CCNU), chlorozotocin, N-[2-chloroethyl]-N'-[2,6-dioxo-3-piperidinyl]-N-nitrosourea (PCNU), methyl CCNU, mechlorethamine, melphalan, chlorambucil, cyclophosphamide, ifosfamide, uracil mustard, and spiromustine may be degraded using nickel-aluminum alloy in KOH solution. The drugs are completely destroyed and only nonmutagenic reaction mixtures are produced. Destruction of cyclophosphamide in tablets requires refluxing in HCl before the nickel-aluminum alloy reduction. Streptozotocin, chlorambucil, and mechlorethamine may be degraded using an excess of saturated sodium bicarbonate solution. The nitrosourea drugs BCNU, CCNU, chlorozotocin, PCNU, methyl CCNU, and streptozotocin were also degraded using hydrogen bromide in glacial acetic acid. The drugs were completely destroyed but some of the reaction mixtures were mutagenic and the products were found to be, in some instances, the corresponding mutagenic, denitrosated compounds.

Acetates↗

Malignant histiocytosis: therapeutic results in 27 children treated with a single polychemotherapy regimen.

Twenty-seven children with histologically proven malignant histiocytosis were treated in the same institution from January, 1975 to December, 1986 with a combination chemotherapy regimen containing vincristine, cyclophosphamide, doxorubicine, and prednisone. Twenty-two patients achieved complete remission, one partial remission, and four no remission. Eight patients relapsed and were treated with Lomustine (CCNU), vinblastine, and bleomycin. In seven cases, a second complete remission was obtained. The overall survival rate is 81% at 5 years and the relapse-free survival rate is 54.5% at 5 years. Prognostic factors were fever and age under 10 at diagnosis, which were correlated with a higher incidence of relapse or no remission.

Adolescent↗

Amifostine for children with medulloblastoma treated with cisplatin-based chemotherapy.

In adult patients, amifostine appears to ameliorate cisplatin-related nephrotoxicity and ototoxicity. We assessed the safety and efficacy of amifostine in 11 children with newly diagnosed medulloblastoma/primitive neuroectodermal tumor treated with radiotherapy and vincristine, lomustine, and cisplatin. Amifostine was administered immediately prior to and 4 hr into the cisplatin infusion. Amifostine caused assymptomatic hypotension and hypocalcemia in 18 and 82% of patients, respectively. Despite amifostine use, 78% of patients developed significant ototoxicity. Although relatively well tolerated, amifostine does not appear to have a major impact on ameliorating the risk of developing significant nephro- and ototoxicity in children with medulloblastoma. Larger studies will help clarify these findings.

Amifostine↗

Ependymal tumors in childhood.

BACKGROUND: Ependymal tumors are classified as ependymoma (benign or low grade) versus anaplastic ependymoma (malignant or high grade). Ependymomas represent 5-10% of intracranial neoplasm in children. In this study, demographic data and the treatment results of pediatric patients with ependymal tumors, treated in a single institute, is reported. PATIENTS AND METHODS: Between 1989 and 2001, 40 (22 M/18 F) previously untreated patients with a median age of 5.5 years (3 months-15 years), of histologically proven ependymal tumors (except ependymoblastomas) were referred to the Institute of Oncology, University of Istanbul. The localization was supratentorial in 18, infratentorial in 20, both supra and infratentorial in two patients. Histologic subgroups were 18 ependymomas (43.6%), and 22 anaplastic ependymomas (56.4%). Total tumor resection was performed in 20 patients (50%), subtotal in 18 patients (45%), and biopsy only in 2 patients (5%). Postoperative treatment consisted of regional (8 patients) or craniospinal (CSI) (9 patients) radiotherapy (RT) in patients with ependymoma; regional (7 patients) or CSI RT (14 patients) with chemotherapy (ChT) in patients with anaplastic ependymoma; ChT only (1 patient) in patients less than 3 years of age. The standard technique for posterior fossa irradiation was parallel-opposed lateral fields and total dose was 45-54 Gy. Between September 1989 and May 1991 patients received regimen A, which consisted of RT followed by eight-in-one ChT, given every 4 weeks for eight courses. Patients who were treated between June 1991 and July 1994, received regimen B, which included two courses of postoperative "VEC" (vincristine, etoposide, cisplatin) ChT, administered every 3 weeks, followed by RT applied with low dose concomitant cisplatin used as a radiosensitizer. Patients with objective response to postoperative "VEC" continued to have "VEC" after completion of RT for six more courses. From August 1994 on, patients received regimen C, consisting of RT and concomitant infusion of cisplatin followed by "VCPCU" (vincristine, cyclophosphamide, procarbazine, lomustine) administered every 4 weeks for eight courses. RESULTS: A total of 40 patients were included in the outcome and survival data. The 5-year overall survival (OS) rate was 64.9%, and the 5-year progression-free survival rate was 50.8% for the whole series. Median time for progression or relapse was 24.3 months and there were 19 patients (43.6%) with relapse or progression. Non-metastatic patients (P = 0.0008, 5-year OS rate was 82% vs. 29%), and totally resected patients (P = 0.01, 5-year OS rate was 80% vs. 55%), and > or =3 years of age (P = 0.04, 5-year OS rate was 75% vs. 38%) had significantly better outcome. CONCLUSIONS: The majority of complete responders were patients who had total tumor removal. Treatment failure occurred mainly within the first 2 years, and outcome was dismal for patients who relapsed or had progressive disease. The median age at diagnosis is 6 years in our patient group; younger children (less than 3 years old) have less favorable outcome. There was no significant difference in survival or progression-free survival between the two histologic subtypes.

Adolescent↗

Inhibitory effects of anticancer drugs on dextromethorphan-O-demethylase activity in human liver microsomes.

The dextromethorphan-O-demethylase activity determined in human liver microsomes was used to screen various anticancer drugs for their ability to inhibit this cytochrome CYP2D6-dependent activity. Competitive inhibition indicates that the drug binds the enzyme and is potentially subjected to a polymorphic metabolism. Among the 13 anticancer drugs tested, 4 compounds caused competitive inhibition of dextromethorphan-O-demethylation: lomustine (Ki = 7.7 microM), doxorubicin (Ki = 75 microM), vinorelbine (Ki = 22 microM), and vinblastine (Ki = 42 microM). The results of these studies indicate that the metabolism of the drugs concerned is possibly altered in poor metabolizers of debrisoquine and requires further investigation to study their specific routes of biotransformation. The metabolism of these drugs probably involves various biotransformation pathways, among which the CYP2D6-dependent route would be of minor importance. A second hypothesis is that these drugs could be inhibitors of the isozyme without being a substrate.

Antineoplastic Agents↗

Evaluation of response to postradiation eight in one chemotherapy in childhood brain tumors.

Ten children, 3 to 15 years of age with high risk primary brain tumors were treated with postradiation 'eight in one' chemotherapy; vincristine, lomustine, procarbazine, hydroxyurea, cisplatin, cytosine arabinoside, cyclophosphamide and methylprednisolone. The tumors comprised of three medulloblastomas, two primitive neuroectodermal tumors, one ependymoblastoma and four anaplastic ependymomas. Treatment involved surgery (two total resection, six subtotal and two biopsy only) followed by conventional radiotherapy (primary tumor: 50-54 Gy, whole brain: 30-45 Gy, and spinal axis: 25-36 Gy). Objective tumor response with radiotherapy was achieved in 7 of 9 patients (78%) (6/8 patients with residual tumor and one patient with complete resection but positive cerebrospinal fluid cytology). Complete response was attained in 4 of 9 patients (44%). 'Eight in one' chemotherapy was initiated four weeks after radiation and repeated at 4 weekly intervals for 5-8 courses. Postradiation 'eight in one' failed to show any additional effect on tumor responses. Median survival was 34 months (range 9-48 months) with five of ten patients alive: four in complete and one in partial remission. All the five survivors were among the patients who had achieved response to initial treatment. This result suggested that degree of response to initial treatment might determine subsequent outcome and thus the choice of modality for initial therapy might be important.

Adolescent↗

Mutagenic activity of some newly synthesized cytostatic 1-(2-chloroethyl)-4-arylacyl-1-nitrososemicarbazides in the Salmonella/mammalian microsome assay.

Five experimental anti-leukemic agents, 1-(2-chloroethyl)-4-arylacyl-1-nitrososemicarbazides, were synthesized and tested for genotoxicity in the Salmonella/mammalian microsome assay. No strong mutagenic activity could be detected when tested with the S. typhimurium TA98. A clear dose-dependent base-pair-substitution mutagenic activity was observed with each compound when the tester strain TA100 was used with or without metabolic activation. The genotoxicity of the unsubstituted substance was similar to that of the known mutagenic cytostatic drugs, lomustin and carmustin, and was stronger than the mutagenicity of each substituted derivative.

Antineoplastic Agents↗

Systemic chemotherapy for malignant melanoma.

Malignant melanoma is notoriously resistant to chemotherapy. Standard single agents include dacarbazine and the nitrosoureas, but most series treating patients with metastatic melanoma report response rates of about 20%. Occasional patients, however, achieve long term remission, amounting to cure, after such treatment. Adjuvant studies have failed to define any systemic therapy of value after surgery for primary or regional lymph node disease. Combinations of drugs have not been shown to be superior to single agents. Cisplatin and fotemustine are among the newer agents with activity. Isolated limb perfusion with melphalan and systemic therapy with high dose alkylating agents and marrow transplantation suggest that the resistance to conventional concentrations of alkylating agents is not absolute. One strategy to improve the efficacy of alkylating agents may therefore be the modulation of cellular glutathione or glutathione-S-transferase. Biological response modifiers remain of interest, though many of the protocols with the best response rates are impractical for routine use. Many patients with asymptomatic metastatic melanoma should be observed without treatment. Outside clinical trials, it is reasonable to use single agent dacarbazine or lomustine if chemotherapy is required.

Animals↗

Effects of exogenous factors on the cerebral glutathione in rodents.

Since glutathione is thought to be involved in cerebral functions, changes in the glutathione level imply modulations of the neurotransmission in addition to all the known effects of GSH. It was investigated whether alterations of the cerebral glutathione can be induced by consumption of GSH, by inhibition or stimulation of the synthesis of GSH, or by an inhibition of the re-reduction of the oxidized glutathione. Aminophenazone, propyphenazone, acetaminophen, phenytoin, morphine and nitrofurantoin, known to deplete hepatic GSH, had no effects on cerebral GSH. Diethyl maleate (0.6 ml/kg) decreased the cerebral content of GSH and GSSG in adult rats as well as in fetuses. The depletion of the cerebral GSH caused by diethyl maleate treatment for 4 days was followed by an increase up to 125% and a subsequent return to the normal level after 1 week. In rats starved up to 71 h deficiency of exogenous amino acids caused only a minimal or no decrease in cerebral GSH. The specific inhibitor of the gamma-glutamylcysteine synthetase BSO only depleted GSH in the brain of young mice following the repeated s.c. administration of a high dose (890 mg/kg). After cobaltous chloride (20 mg/kg; twice a day for 2 or 4 days) the GSH level in the brain was unchanged. In vivo inhibition of the cerebral glutathione reductase was caused by ammonium metavanadate (12.5 mg/kg; three times a week for 6 weeks). Nitrofurantoin (150 mg/kg) had no effect. After lomustine (10 mg/kg) a minimal increase in glutathione reductase was found, but simultaneously also an increase in GSSG and of the ratio GSSG/total glutathione.

Animals↗

Modification of the 8 drugs in 1 day regimen: feasibility of substitution of other agents.

Six children (ages 2 to 14 years) with recurrent or poor risk primary brain tumors were treated with the '8 drugs in 1 day' chemotherapy regimen. As renal function deteriorated (median after five cycles), carboplatin was substituted in place of cisplatin at a median dose of 300 mg/m2 as a one hour infusion at hour three. Four patients also had their lomustine deleted and replaced by etoposide 100 mg/m2 at hour four. Compared to earlier cycles of chemotherapy, there was a moderate increase in transfusion requirement (especially platelets) but the incidences of fever and neutropenia were unchanged. Glomerular function as measured by nuclear glomerular filtration rate (GFR) remained unchanged or improved at the end of therapy. The severity of nausea and vomiting after substitution was markedly improved. Four of the six patients are still in complete remission 19 to 41 months after diagnosis or recurrence. It is feasible to substitute carboplatin and etoposide into the '8 drugs in 1 day' regimen when extramedullary toxicity is found.

Adolescent↗

Mutagenicity of cytostatic drugs in a bacterial system. I. Ames test.

A set of nine cytostatic drugs were tested in the standard plate incorporation method of Ames reversion test using four Salmonella typhimurium his strains. Six of them were classical and commonly used cytostatics, three (cloturin, butocin and oracin) are at different stages of development. The results showed 6-mercaptopurine, cloturin, adriamycin, mitoxantron, cyclophosphamide and lomustine to be mutagenic; butocin, oracin and tris(2-chloroethyl)amine were negative in this test.

Animals↗

Mutagenicity of cytostatic drugs in a bacterial system. II. DNA-repair test.

A liquid micromethod modification of the DNA-repair test using an automatic growth analyzer was developed. The wild strain Escherichia coli WP2 and six repair-deficient isogenic test strains were used. To compare this repair test with the conventional plate Ames test, a set of nine cytostatics were tested. Cloturin, adriamycin, mitoxantron, oracin, lomustine and tris(2-chloroethyl)amine were found to be positive, and 6-mercaptopurine, butocin and cyclophosphamide negative. The experimental micromethod appears to be useful for assessing the differential lethality in bacteria and can be combined in any short-term test system to predict genotoxicity.

Antineoplastic Agents↗

Contribution to the mechanism of chromate nephrotoxicity in developing rats: EPR investigations.

The effect of 2 mg and 1 mg Na2Cr2O7 (Cr)/100 g body wt. on renal function was investigated in 10- and 55-day-old rats, respectively. These doses were followed by equal Cr concentrations in the renal tissue of both age groups. Confirming previous data we found lower nephrotoxicity in young than in adult rats. The concentration of glutathione (GSH) and the activity of glutathione reductase (GSSG reductase) in renal tissue of adult rats were diminished by buthionine sulfoximine (BSO) and lomustine (CCNU) administration, respectively. In these animals Cr nephrotoxicity was decreased significantly. Lower nephrotoxicity was accompanied by slower disappearance of Cr(VI) from renal tissue homogenate in vitro. The time course of Cr(VI) reduction demonstrated by the signal intensity of Cr(V), as recorded by electron spin resonance (EPR) spectroscopy in the supernatant of renal tissue homogenate, enabled us to follow the reduction of Cr(VI) to Cr(III) via Cr(V). Maximally reached Cr(V) concentrations lowest in young rats, did not differ significantly in adult control and BSO and BSO + CCNU treated rats. Further reduction of Cr(V) to Cr(III) which appeared most rapidly in adult rats, was delayed by pretreatment with BSO and CCNU. From our results we concluded that (1) reduction of Cr(VI) was more related to the concentration of GSH than to the activity of GSSG reductase, (2) the formation of Cr-GSH-complexes with GSH oxidation seemed to be the first step of Cr(VI) metabolism, and (3) the stabilization of reactive Cr(V) by GSH seemed to be decisive for the preventive effect of BSO and CCNU as well as for age differences in chromate nephrotoxicity.

Age Factors↗

Cerebral blood volume, genotype and chemosensitivity in oligodendroglial tumours.

INTRODUCTION: The biological factors responsible for differential chemoresponsiveness in oligodendroglial tumours with or without the -1p/-19q genotype are unknown, but tumour vascularity may contribute. We aimed to determine whether dynamic susceptibility contrast (DSC) magnetic resonance imaging (MRI) could distinguish molecular subtypes of oligodendroglial tumour, and examined the relationship between relative cerebral blood volume (rCBV) and outcome following procarbazine, lomustine and vincristine (PCV) chemotherapy. METHODS: Pretherapy rCBV was calculated and inter- and intraobserver variability assessed. Allelic imbalance in 1p36, 19q13, 17p13, 10p12-15, and 10q22-26 and p53 mutation (exons 5-8) were determined. rCBV was compared with genotype and clinicopathological characteristics (n=37) and outcome following PCV chemotherapy (n=33). RESULTS: 1p/19q loss was seen in 6/9 grade II oligodendrogliomas, 6/14 grade II oligoastrocytomas, 4/4 grade III oligodendrogliomas, and 3/10 grade III oligoastrocytomas. rCBV measurements had good inter- and intraobserver variability, but did not distinguish histology subtype or grade. Tumours with 1p/19q loss had higher rCBV values (Student's t-test P=0.001). Receiver operating characteristic analysis revealed a cut-off of 1.59 for identifying genotype (sensitivity 92%, specificity 76%). Tumours with high and low rCBV showed response to chemotherapy. The -1p/-19q genotype, but not rCBV, was strongly associated with response, progression-free and overall survival following PCV chemotherapy. Tumours with high rCBV and intact 1p/19q were associated with shorter progression-free and overall patient survival than those with intact 1p/19q and low rCBV or high rCBV and 1p/19q loss. CONCLUSION: rCBV identifies oligodendroglial tumours with 1p/19q loss, but does not predict chemosensitivity. The prognostic significance of rCBV may differ in oligodendroglial tumours with or without the -1p/-19q genotype.

Adult↗

Chemosensitivity of glioma cells in vitro: a meta analysis.

PURPOSE: The disappointing results of chemotherapy in glioblastoma might be caused by the choices of agents, which mostly include nitrosurea. We compared the in vitro efficacy of chemotherapeutic agents, developing a method to summarize published data. METHOD: Between 1966 and 1995 chemotherapy in glioma cells was reported in 1643 articles. Efficacy was mostly described by the drug concentration that killed 50% of the cells (LC50). It was measured with various cell-culture techniques, of which a colorimetric test [3-(4,5-dimethylthiazol-2-yl)-2,5-diphenyltrazolium bromide] was mostly used. We calculated factors from these data to transform results to LC50 values as if the colorimetric test was used in all of them. This allowed data from all publications to be summarized in a new type of meta analysis. RESULTS: The most important agents and the average LC50 values (mg/l) were actinomycin-D 0.042, vincristine 0.075, mitoxantrone 0.12, vinblastine 0.21, doxorubicin 0.29, diaziquone 0.76, cisplatin 1.1, methotrexate 1.1, cytasine arabinoside 1.59, 5-flurouracil 2.33, bleomycin 18.6, carboplatin 29.8, carmustine 37.0, nimustine 48.9, and lomustine 76.7. The most resistant cell was SNB56, followed with increasing sensitivity by SF128 and A172, and primary cultures P497, SF210, U87MG, SF126, 9L, P540, U251MG, HU62, C6. The complete list of original data is available upon request. CONCLUSION: The efficacy of nitrosourea in vitro is low.

Antineoplastic Agents↗

Hepatocyte toxicity of mechlorethamine and other alkylating anticancer drugs. Role of lipid peroxidation.

The alkylating anticancer drugs, mechlorethamine (HN2), chlorambucil, cyclophosphamide, carmustine and lomustine readily induced cytotoxicity in isolated rat hepatocytes. Hepatocyte glutathione (GSH) was depleted rapidly following addition of the drugs. Lipid peroxidation ensued following GSH depletion and before cytotoxicity occurred. Furthermore, cytotoxicity was delayed by the antioxidants butylated hydroxyanisole (BHA) and alpha-tocopherol, the ferric iron chelator desferoxamine or the radical trap 4-hydroxy-2,2,6,6-tetramethylpiperidine-N-oxyl (TEMPO) even when added 10 min later. HN2 was much less toxic to hepatocytes under nitrogen and caused much less lipid peroxidation than under aerobic conditions. Cytotoxicity induced by HN2 was also prevented by choline, suggesting that a choline carrier is responsible for HN2 uptake in the hepatocytes. Various sulfur compounds acted as antidotes for HN2 cytotoxicity. Thiosulfate was still effective when added 30 min after HN2. Depletion of GSH in the hepatocytes markedly increased their susceptibility to HN2. However, BHA, desferoxamine or TEMPO protected these hepatocytes from HN2. This suggests that antioxidants could prove useful in preventing the increased risk of hepatotoxicity if GSH-depleting agents are used to overcome tumor resistance to nitrogen mustards.

Alkylating Agents↗

The effect of chemotherapy on the in vivo frequency of glycophorin A 'null' variant erythrocytes.

A human in vivo somatic cell assay based on the enumeration of variant erythrocytes lacking expression of an allelic form of the cell-surface sialoglycoprotein, glycophorin A, was applied to the study of blood samples from patients obtained prior to, during, and following chemotherapy for malignant disease in order to determine the effect of mutagenic chemical agents on the frequency of variant cells. In 22 patients assayed prior to therapy, the mean variant cell frequency was 11.9 per million, which was not significantly different from that observed in healthy controls. In an initial cross-sectional survey, blood samples were obtained at various times during and after therapy from 30 patients diagnosed with a variety of malignancies who were treated with one or more known mutagenic agents including adriamycin, bleomycin, cis-platinum, cyclophosphamide, dacarbazine, etoposide, lomustine, mechlorethamine, melphalan, mitomycin C, and procarbazine. Significant elevations in the mean frequency of variant cells over pre-therapy and normal levels were observed in samples obtained during and after therapy. In a time-series study, 14 breast cancer patients treated with CAF (cyclophosphamide, adriamycin, 5-fluorouracil), CMF (cyclophosphamide, methotrexate, 5-fluorouracil), or VMF (vinblastine, methotrexate, 5-fluorouracil) adjuvant chemotherapy were sampled repeatedly during and after therapy. For the CAF and CMF patients an increase in the frequency of variant cells was observed with a lag in the appearance of induced variants after initiation of therapy; variant frequencies gradually increased during therapy reaching a maximum at or shortly after the end of therapy, then declined to near pre-therapy levels within 6 months. The maximum level of induced variants ranged from 2- to 7-fold over pre-therapy or normal levels depending on the combination of agents used. The breast cancer patients treated with both adriamycin and cyclophosphamide showed consistent elevations in the frequency of variant cells; patients treated only with cyclophosphamide showed lower and more variable elevations. The data demonstrate that mutagenic chemotherapy agents induce elevated levels of glycophorin A variant erythrocytes consistent with the hypothesis that variant cells result from somatic mutation. The elevations in variant cells were transient, suggesting that these agents primarily affect the rapidly cycling committed erythroid cell population.

Adolescent↗