Salvage chemotherapy for relapsed and refractory metastatic breast cancer is a challenging issue for oncologists. At our institution, the combination of mitomycin-C, vinblastine and cisplatin (MVP) is used for treatment. The records of 19 consecutive patients with refractory metastatic breast cancer treated with MVP between April 1992 and October 1995 were reviewed. The regimen consisted of mitomycin-C 6 mg/m2, vinblastine 6 mg/m2 and cisplatin 60 mg/m2, repeated every 3 to 4 weeks. The median age of patients was 49 years (range, 35-71 yr). All patients had clinically measurable or evaluable disease and a Karnofsky's performance status greater than or equal to 50%. The median number of prior chemotherapy regimens was two (range, 1-4). Eighteen (94.7%) patients had previously received an anthracycline/anthracenedione-containing regimen, and seven (36.9%) had progression of disease during these therapies. Sixteen patients had two or more sites of metastasis and 17 patients had visceral disease. The median duration of follow-up was 26 months. A mean of 3.5 courses (range, 1-7) was administered. One patient was lost to follow-up after one course of treatment. Of the remaining 18 patients, two complete and five partial responses were observed, for a total response rate of 37% (range, 17-61%, 95% CI). One of the partial responders had disease progression during anthracycline treatment. Treatment-related toxicities were relatively well tolerated. There were no treatment-related deaths. The median duration of response was 3 months (range, 2-11 mo). The median overall survival was 7 months (range, 1-32 mo). Our data suggest that the MVP regimen is an effective palliative treatment for patients with refractory metastatic breast cancer.
Lymphoblast colony-culture of adult acute lymphoblastic leukemia (ALL) was studied to explore its clinical implication. Among 13 marrow cultures from ALL patients with full-blown disease, 11 developed leukemic colonies. A type of colony, very similar to a lymphoblastic colony and possibly T-cell in origin, could be found in four cultures of the six control marrows. To minimize the difficulty in differentiating a leukemic blast colony and a normal lymphocyte colony, based solely on morphology, a quantitative approach was used. Since both the mean of blast colony count and the mean of blast percentage of leukemic marrow were significantly higher than those of the control group, mean value plus two standard deviations of the control group were defined arbitrarily as upper normal limits. The defined normal range was then used to examine the relationship between results of the cultures and clinical outcome for the ALL patients. Early relapse or incomplete remission following chemotherapy could be predicted in four patients by these quantitative colony-culture assays 0.5-2 months before full-blown disease. The low colony count and low blast percentage in the colony-culture assay of the fifth patient is compatible with the clinical observation of continuous remission. One culture, growing clusters only, had an increased blast percentage; this correlated well with cytogenetic relapse two months later. In summary, the quantitative colony-culture assay could detect morphologically unidentifiable leukemic cells in ALL patients with early relapse or incomplete remission. This quantitative colony-culture system, though not ultrasensitive in the detection of minimal residual leukemic cells, was of potential value as a prognostic assay.