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Biomedical subjects

H A Burris

Publications and source records attributed to H A Burris.

7 recordsLinked to original sources

Activity of topotecan, a new topoisomerase I inhibitor, against human tumor colony-forming units in vitro.

BACKGROUND: Topotecan [(S)-9-dimethylaminomethyl(10-hydroxy-camptothecin), NSC 609699, SK&F 104864A], a semisynthetic analogue of the natural product camptothecin, is a cell cycle-specific drug that exerts antineoplastic activity through inhibition of topoisomerase I. Currently, topotecan is undergoing phase I and early phase II clinical trials. The dose-limiting toxicity for topotecan is myelosuppression. PURPOSE: Our purpose was to determine plasma concentrations and exposure times necessary for optimal clinical activity and tumor types that may be responsive in phase II clinical studies of topotecan. METHODS: A soft-agar cloning system assay was used to determine the in vitro effects of topotecan against cells from biopsy specimens of colorectal, breast, lung, ovarian, renal cell, and gastric cancers and cancers of unknown primary origin. We studied 141 freshly explanted tumor specimens, using 1-hour exposure to topotecan, and 80 were studied using continuous exposure. A decrease in tumor colony formation resulting from drug exposure was considered an in vitro response if survival of colonies was up to 50% of that in controls. RESULTS: With 1-hour exposure, in vitro responses were seen in 10% and 25% of assessable tumor specimens at final topotecan concentrations of 1.0 and 10.0 micrograms/mL, respectively. With continuous exposures at concentrations of 0.1 and 1.0 micrograms/mL, in vitro response rates were 34% and 76%, respectively. Specific activity was seen against colorectal, breast, non-small-cell lung, ovarian, and renal cell cancers, with responses observed in 27%, 25%, 32%, 39%, and 83%, respectively, of assessable tumor specimens after continuous exposure to 0.1 micrograms/mL topotecan. A subset of tumor specimens resistant to doxorubicin or fluorouracil was sensitive to topotecan, and the difference in sensitivity was statistically significant. In addition, some of the tumor specimens resistant to cyclophosphamide and etoposide were also sensitive to topotecan. CONCLUSIONS: Topotecan appears to be active in vitro against a variety of human tumors, including a subgroup resistant in vitro to standard antineoplastic agents. If plasma levels of 0.1 micrograms/mL can be achieved for prolonged periods of time in ongoing clinical trials, topotecan should have substantial clinical activity. IMPLICATIONS: Further clinical development of topotecan is warranted.

Antineoplastic Agents

Testicular relapse in adult acute myelogenous leukemia.

Testicular relapse (TR) in adult acute myelogenous leukemia (AML) is uncommon, occurring in only 1-2% of patients with bone marrow relapse. TR in the absence of systemic relapse has been reported previously in 2 adults and 12 children, of which 67% were monocytic variants of AML. This article presents the case of a 29-year-old man with AML that relapsed in his testicle without evidence of bone marrow relapse. This patient and the two previously mentioned adults experienced bone marrow relapse within 2 months and died within 7 months of their TR. TR in adult myelogenous leukemia should be considered a harbinger of systemic relapse and suggests a need for aggressive local and systemic therapy.

Adult

A phase I clinical and pharmacokinetic study of the topoisomerase I inhibitor topotecan (SK&F 104864) given as an intravenous bolus every 21 days.

Topotecan (SK&F 104864) is a novel antitumor agent whose mechanism of action is inhibition of the DNA unwinding protein topoisomerase I. An analog of camptothecin, topotecan was designed to be more water soluble in an effort to decrease the severe and sporadic toxicities experienced during phase I/II trials of the parent compound. In this phase I clinical and pharmacological trial, topotecan was given as a bolus intravenous (i.v.) infusion over 30 min every 21 days. A total of 42 patients entered the study, receiving doses ranging from 2.5 to 22.5 mg/m2. The maximum tolerated dose (MTD) of topotecan given in this schedule was 22.5 mg/m2. Myelosuppression, primarily neutropenia, was dose-limiting. The extent of prior therapy did not predict for more severe neutropenia. Non-hematologic toxicities were mild and included low-grade to moderate fever, nausea, vomiting, alopecia, diarrhea and skin rashes. There were no objective partial or complete responses, although there was a suggestion of antitumor activity in three patients. Topotecan undergoes pH-dependent hydrolysis of the lactone ring; only the closed, lactone form is active. The lactone form predominated during infusion, with hydrolysis occurring rapidly following the end of infusion. There were linear relationships between dose administered and peak plasma lactone concentrations as well as AUC lactone to AUC total. The lactone was rapidly cleared from plasma with a total body clearance of 25.7 (+/- 6.7) l/h/m2. The plasma lactone concentration declined rapidly with a harmonic mean terminal half-life of 3.4 (+/- 1.1)h. Lactone hydrolysis and renal excretion were the major routes of elimination.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult

Clinical trials with the topoisomerase I inhibitors.

Topoisomerase I represents a unique new target that can be exploited for development of new antineoplastic agents. There are now two new topoisomerase I inhibitors that are in early clinical trials that have generated a tremendous amount of interest. Topotecan (SKF 104864-A) is a topoisomerase I inhibitor that has been explored in phase I trials using a variety of dosages and schedules. The dose-limiting toxicity of the agent is neutropenia. Other toxicities include alopecia, very mild nausea and vomiting, anemia, and occasional fever. Responses have already been noted in patients with advanced, refractory ovarian cancer and non--small-cell lung cancer. The drug is currently undergoing intense phase II testing. Irinotecan (CPT-11) is also a topoisomerase I inhibitor, which has already undergone extensive phase I and early phase II clinical testing in both Japan and the United States. Dose-limiting toxicities of the agent have included neutropenia and diarrhea. Responses have been noted in patients with refractory colorectal cancer, non--small-cell lung cancer, lymphoma, ovarian cancer, head and neck cancer, pancreatic cancer, and breast cancer. There is no doubt both of these agents will be important additions to our chemotherapy armamentarium.

Animals