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Biomedical subjects

G Sarosy

Publications and source records attributed to G Sarosy.

23 records · Page 2Linked to original sources

Ifosfamide--pharmacologic overview.

Ifosfamide and its structural analogue cyclophosphamide are oxazaphosphorine nitrogen mustards, a group of compounds synthesized in West Germany more than 20 years ago. Whereas both chloroethyl groups of cyclophosphamide are attached to the same exocyclic nitrogen, one of ifosfamide's chloroethyl groups is attached to an endocyclic nitrogen. This minor structural change may account for the different pharmacologic behavior of these two compounds as well as their different spectrums of clinical activity and toxicity. Initial clinical trials of ifosfamide explored the use of a single intravenous dose. Hemorrhagic cystitis appeared to be dose-dependent and limited the use of this agent. However, the development of a systemic thiol uroprotector, such as mesna, has overcome this toxicity, permitting higher ifosfamide doses to be administered. Currently, ifosfamide is usually administered daily for five days in combination with mesna. The pharmacology and metabolism of ifosfamide may explain the toxicities associated with this compound and should be considered when designing schedules of administration.

Animals↗

The systemic administration of intravenous melphalan.

Melphalan (L-phenylalanine mustard) is a bifunctional alkylating agent that is commonly administered orally to treat a wide variety of malignancies, including cancers of the breast and ovary, as well as multiple myeloma. Although commercially available in Europe and Canada, intravenous (IV) melphalan remains investigational in the United States. The role of IV melphalan in cancer chemotherapy is not well defined, despite its manageable toxicity and higher and more predictable blood levels following IV administration compared with oral administration. In addition, unlike oral melphalan, an extensive phase I evaluation of IV melphalan has not been undertaken. At lower doses (eg, 30 to 70 mg/m2), both as a single agent and in combination, the activity of IV melphalan has been evaluated in only a limited number of diseases. However, striking activity has been observed in previously untreated patients with rhabdomyosarcoma, a disease not generally considered responsive to alkylating agents. When administered at high doses (greater than 140 mg/m2) requiring bone marrow reinfusion, melphalan effects a high response rate (but no improvement in survival) in a variety of nonhematologic tumor types, including resistant tumors such as melanoma and colon carcinoma. In contrast, in poor-prognosis patients with non-Hodgkin's lymphoma, Hodgkin's disease, multiple myeloma, or neuroblastoma, high-dose melphalan-containing regimens have yielded both high response rates and improved survival, despite considerable toxicity. Additional clinical trials will be necessary to define the spectrum of activity of lower doses of IV melphalan and to define subgroups of patients most likely to benefit from high-dose melphalan.

Administration, Oral↗

N-methylformamide: cytotoxic, radiosensitizer, or chemosensitizer.

N-methylformamide (NMF), a polar solvent, is currently being evaluated by the National Cancer Institute (NCI) as an antineoplastic agent because of its activity against colon, mammary, and lung tumor xenografts. Results from preclinical studies suggest that it has radiosensitizing, chemosensitizing, and differentiating activity. Its mechanism of action remains unknown, but may involve cellular depletion of glutathione, cell membrane changes, or modulation of proto-oncogene expression. Preclinical toxicology studies conducted in mice, rats, and beagle dogs showed reversible hepatotoxicity to be dose-limiting. Clinically, NMF is administered both orally and by intravenous (IV) injection. The bioavailability with oral administration is 90% to 95%. The highest reported plasma concentration of NMF is approximately 4 mmol/L in a patient who received a dose of 2,000 mg/m2 of IV NMF. Biphasic elimination with IV NMF is seen on both the daily for five days and weekly for 3 weeks schedule. Approximately 5% to 7% of the total administered IV dose is excreted in the urine. In phase I studies, dose-limiting toxicities included reversible hepatotoxicity, a generalized malaise syndrome, and nausea and vomiting. One partial response has been reported in the 111 patients treated on phase II trials in colorectal, head and neck, and renal carcinomas. Suggestions for the future development of this drug are presented.

Animals↗

Rationale for and conduct of a phase I clinical trial with interferon alfa-2b plus doxorubicin.

A human tumor cloning system was utilized to screen for the antitumor activity of recombinant interferon alfa-2b (Intron A) alone and in combination with standard antineoplastic agents. These in vitro studies confirmed synergistic effects of alfa-2b plus doxorubicin against primary human tumors. Based on those in vitro findings, a phase I study has been conducted by Sarosy and colleagues that demonstrated that recombinant interferon alpha-2b and doxorubicin could be given together. Myelosuppression was the dose-limiting toxicity. Because responses were noted in the phase I trials with the combination, phase II trials of the combination are warranted. Additional phase I studies that should be pursued include recombinant interferon alpha-2b plus 5-fluorouracil, interferon plus cisplatinum, and interferon plus DTIC.

Antineoplastic Combined Chemotherapy Protocols↗