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Jennifer A Orzano

Publications and source records attributed to Jennifer A Orzano.

3 recordsLinked to original sources

Concepts and clinical trials of dose-dense chemotherapy for breast cancer .

This article will review the strategy of dose-dense administration of chemotherapy for breast cancer. Increased dose density is achieved by reducing the interval between each dose of chemotherapy. The cumulative drug dose remains constant, but the same amount of drug is administered over a shorter period. Mathematical models of tumor growth have provided the basis for the clinical application of dose-dense chemotherapy. The Norton-Simon model suggests that increasing the dose density of chemotherapy will increase efficacy by minimizing the opportunity for regrowth of tumor cells between cycles of chemotherapy. Intergroup trial 9741, coordinated by the Cancer and Leukemia Group B (CALGB), tested the 2 hypotheses that dose-dense and sequential administration of chemotherapy regimens incorporating doxorubicin, cyclophosphamide, and paclitaxel would improve disease-free survival and overall survival. A statistically significant 4-year disease-free survival advantage was detected for the 2 dose-dense regimens compared with the regimens administered every 3 weeks. The mathematical concepts and previous clinical trials of dose density that contributed to the design of CALGB 9741 will be reviewed. The strengths and limitations of CALGB 9741 will then be discussed before the presentation of future directions of research and recommendations for clinical practice today.

Antineoplastic Combined Chemotherapy Protocols↗

Antibody-based vaccines for the treatment of melanoma.

Malignant melanoma remains a difficult clinical problem. Chemotherapy is not effective and immunotherapy has long been contemplated as the preferred approach to this disease. Extensive passive and active immunotherapy trials have been conducted. Active vaccination with whole cells or defined antigens, administered with a panoply of techniques to increase immunogenicity, has yielded inconsistent results. The development of antibody-based vaccines has allowed vaccination without the need for tumor tissue material or purified antigens. The idiotype network theory originally proposed by Lindemann and by Jerne provided the basis for the development of anti-idiotype (anti-Id) antibody vaccines, which mimic the internal image of the epitope targeted for immunization. Preclinical and phase I clinical data are available for various malignancies. In melanoma, some of the anti-Id vaccines have targeted gangliosides. One of these vaccines, TriGem, has been successful in generating a robust and specific humoral immunity in melanoma patients. Phase II data suggest this anti-Id vaccine has clinical activity.

Animals↗

Ifosfamide-induced encephalopathy.

A 46-year-old man with a history of metastatic transitional cell carcinoma of the bladder received treatment with ifosfamide/mesna. He had reversible encephalopathy after the first cycle of chemotherapy. Adequate clinical response was achieved, with an obvious decrease in tumor size. Subsequently, an identical treatment was given without adverse central nervous system effects. Few data exist about retreatment with intravenous ifosfamide/mesna after induced encephalopathy, but this case suggests that this adverse effect may not recur in some patients.

Antineoplastic Agents, Alkylating↗