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Biomedical subjects

S J Altman

Publications and source records attributed to S J Altman.

7 recordsLinked to original sources

A randomized trial of cisplatin, vinblastine, and bleomycin versus vinblastine, cisplatin, and etoposide in the treatment of advanced germ cell tumors of the testis: a Southwest Oncology Group study.

This is a Southwest Oncology Group (SWOG) prospective randomized trial of cisplatin, vinblastine, and bleomycin (PVB) versus vinblastine, cisplatin, and etoposide (VP-16) (VPV) in the treatment of advanced germ cell tumors of the testis. The study objective was to determine what effect the replacement of bleomycin with VP-16 has on complete response (CR), survival, and drug toxicity. One hundred sixty-nine patients were registered and randomized. Of these patients, 160 were assessable for response. All had histologically confirmed disseminated germ cell neoplasms of testicular origin. Forty-six had minimal metastatic disease, and 114 had maximal disease. Seventy-seven were randomized to PVB and 83 to VPV chemotherapy. There was no significant difference in pretreatment characteristics between the two arms with regard to tumor burden, histologic type, and overall performance status. Patients received four courses of induction chemotherapy, either PVB (cisplatin 120 mg/m2 day 3, vinblastine 12 mg/m2 day 1, bleomycin 15 U/m2 twice per week) or VPV (vinblastine 8 mg/m2 day 1, cisplatin 120 mg/m2 day 3, VP-16 50 mg/m2 days 2 to 5). Chemotherapy was given every 3 weeks. Cytoreductive surgery was done postinduction if a chemotherapy CR was not achieved. There was no difference in the percentage of patients achieving a disease-free status between PVB (77%) and VPV (73%). The mean leukocyte nadir was similar for both treatments, but the mean platelet nadir was significantly lower (P = .003) in the VPV arm. All bleomycin-related toxicities (pulmonary, mucositis, skin) were avoided in the VPV arm. We conclude that bleomycin can be replaced in first-line therapy for advanced germ cell tumors without sacrificing efficacy and with the advantage of avoiding unnecessary drug toxicity.

Adolescent

Tamoxifen and oophorectomy in the treatment of recurrent breast cancer: a Southwest Oncology Group Study.

The relatively short survival following chemotherapy in patients with metastatic carcinoma of the breast and the introduction of antiestrogens has led to renewed interest in the hormonal therapy of breast cancer. Pritchard et al. (Cancer Treat. Rep., 64: 787-796, 1980) have recently stated that response to the antiestrogen tamoxifen (TAM) strongly predicts a subsequent response to oophorectomy in premenopausal patients. The Southwest Oncology Group administered TAM to pre- and postmenopausal women with first recurrence of breast cancer. Following response and subsequent relapse, or after no response, patients underwent an oophorectomy while continuing on TAM. None of 14 premenopausal patients who responded to TAM had a response to oophorectomy plus TAM, while 5 of 22 had a remission with oophorectomy plus TAM after initially failing with TAM alone. The reverse was seen in postmenopausal women; 4 of 18 responders to TAM subsequently responded to oophorectomy plus TAM, but none of 18 TAM failures responded to oophorectomy plus TAM. These results suggest that in the premenopausal women the TAM dose may be insufficient to block all estrogen action and that oophorectomy, by removing the major source of estrogen, can result in a more effective antiestrogen action of TAM leading to a response. No explanation is readily available for the results in postmenopausal patients.

Breast Neoplasms

Combination chemotherapy for soft-tissue sarcomas: a phase III study.

A total of 144 patients with advanced sarcomas were entered into a randomized prospective protocol with four treatment arms utilizing different combinations of chemotherapeutic agents. Of these, 120 patients (83%) were judged acceptable. Treatment 1: actinomycin-D (Act-D), 0.01 mg/kg IV, days 1--5; phenylalanine mustard (L-PAM), 4 mg PO, days 1--10 every six weeks. Treatment 2: Act-D, 0.01 mg/kg IV, days 1--5; L-PAM, 4 mg PO, days 1--10; vincristine, 1 mg IV, days 1, 8, 15, 22, 29, 36, repeat every six weeks. Treatment 3: Act-D, 0.01 mg/kg IV, days 1--5; L-PAM, 4 mg PO, DAYS 1--10; NSC-1026, 200 mg/kg IV, days 1--6. Treatment 4: Adriamycin, 0.4 mg/kg IV, days 1, 2, 3, 8, 9, 10, then 2XWK starting day 15 (max. 1,200 mg). There was a provision that upon progression of the disease in the first three treatment regimens, patients would be crossed over to Treatment 4. Responses were as follows: 1 - Partial Response (PR) 1/25; No Change (NC) 9/25 (36%). gF2 - NC 17/26 (65%). 3 - NC 13/25 (52%). 4 - Complete Response (CR) 1/41; PR 6/41; (15%); NC 27/41 (66%). Clearly Treatment 4 was the best arm, with a 17% response rate and an initial progression rate of 17%. The only other response was a partial in 1. The difference is statistically significant (H = 17.247, P = 0.0006). If the responders to Adriamycin were analyzed without crossovers, the response rate would be 22% (6/27). (H = 14.079, P = 0.003). Median times to progression were 12.5, 8.7 weeks for 1 and 2, and 5 weeks for 3 and 4. There was no significant difference in the median survival times among the four treatment arms. It appears that Adriamycin as a single drug is superior to the drug combinations and would probably be even more effective used in combination with known active agents.

Antineoplastic Agents

Yoshi 864 (1-propanol, 3,3'-iminodi-, dimethanesulfonate [ester], hydrochloride): a phase II study in solid tumors.

Two hundred and eight acceptable patients were treated with Yoshi 864 (2 mg/kg/day by iv push X 5 days repeated once every 6 weeks). Toxicity was minimal. There was an overall response rate of 11%. Cross resistance with other alkylating agents may not be present. Because of its lack of toxicity, Yoshi 864 should be further evaluated in chronic myelocytic leukemia, lymphomas, and carcinomas of the ovary and bladder where significant responses were seen. It should also be evaluated in combinations as a replacement for other alkylating agents which cause more nausea and vomiting.

Alkylating Agents

Yoshi 864 (NSC 102627) 1-propanol, 3, 3'-iminodi-dimethanesulfonate (ester) hydrochloride: a phase 1 study.

Yoshi 864 was given i.v. push daily times 5 with 6 weeks' followup. Dose escalation was from 0.25 mg/kg to 2.7 mg/kg. Toxicity and effectiveness were first seen at 1.5 mg/kg. Twenty-five courses were given to 16 patients at or above this level. In 16 of 22 courses, exclusive of CML, thrombopenia and/or leukopenia occurred. Mean platelet and WBC nadirs occurred on day 24 and 29 with recovery taking 1-2 weeks and 2-3 weeks respectively. Hb fell in 11 courses. At 2.7 mg/kg, nausea and vomiting lasting 6-12 days occurred in 3 of 7 courses; during 5 coures patients slept 20 hours a day, and 1 was comatose for 2 days. Two patients with squamous cell carcinoma and 1 with an unknown primary responded. Both patients with CML had clinical remissions. It is recommended that a cooperative Phase II Study in a broad spectrum of human solid tumors including lymphomas and chronic myelocytic leukemia be undertaken at a dose level of 2 mg/kg.

Alkylating Agents