PubMed Health⌕ Search

Biomedical subjects

D Hoth

Publications and source records attributed to D Hoth.

28 records · Page 2Linked to original sources

Phase I studies on chlorozotocin.

A phase I investigation of chlorozotocin, a new-water soluble chloroethylnitrosourea, was undertaken to define its pharmacologic effects in man. Forty-three patients received single intravenous doses ranging from 5 to 175 mg/m2 every 6 wk. No signs of toxicity were observed at doses of under 120 mg/m2, but thrombocytopenia occurred at higher doses. The thrombocytopenic nadir appeared to be dose-dependent and occurred 4 wk after treatment. Platelet transfusions were required in 2 patients who had previously received intensive chemotherapy. No significant leukopenia occurred. A mild reversible and delayed elevation of hepatic transaminases was found in 25% of courses of 120 mg/m2 or more. No renal toxicity was observed and gastrointestinal toxicity was mild. Investigation of clinical pharmacology revealed a rapid triphasic plasma clearance with initial t1/2S of 3, 15, and 30 min. The concentration of N-nitroso intact drug at 1 hr was 10% of the initial peak level. Renal excretion accounted for half of the dose. No significant concentration of N-nitroso intact or radiolabeled drug was detected in the cerebrospinal fluid of 2 patients in whom it was examined. There were objective signs of therapeutic activity in 5 patients, 3 of whom had melanoma. Based on these studies, the recommended dose for phase II investigation of chlorozotocin is 120 mg/m2 every 6 wk.

Adolescent↗

Sensitivity of human and murine hematopoietic precursor cells to 2-[3-(2-chloroethyl)-3-nitrosoureido]-D-glucopyranose and 1,3-bis(2-chloroethyl)-1-nitrosourea.

The sensitivity of mouse and human bone marrow hematopoietic precursor cells [colony-forming units committed to granulocyte-macrophage differentiatin (CFU-C)] was determined after in vitro incubation with chlorozotocin (2-[3-(2-chloroethyl)-3-nitrosoureido]-D-glucopyranose), or 1,3-bis(2-chloroethyl)-1-nitrosourea (BCNU), with the use of drug concentrations achieved during clinical administration. Chlorozotocin, at a concentration of 1 X 10(-4) M, did not decrease mouse CFU-C below the control of 44 colonies/10(5) nucleated cells; 5 X 10(-4) M produced a 70% reduction in CFU-C, and 1 X 10(-3) M chlorozotocin eliminated all colony formation. In contrast, BCNU at 1 X 10(-4) M resulted in a 55% reduction in CFU-C, and at 5 X 10(-4) M it eliminated all colony formation. For human marrow the threshold concentration for chlorozotocin toxicity was 1 X 10(4) M, which resulted in 25% reduction in CFU-C as compared to the control of 32 colonies/10(5) nucleated cells. In contrast, BCNU at 5 X 10(-5) M decreased human CFU-C to 47% of control, and at 1 X 10(-4) M it eliminated all colony formation. Twenty-four hr after in vitro exposure to 1 X 10(-4) M chlorozotocin, there was no reduction in human bone marrow DNA synthesis in contrast to a 42% reduction with 1 X 10(-4) M BCNU. The plasma concentration of drugs following a therapeutic dose in patients was measured and was found to correspond to the concentration range used in the in vitro studies of marrow toxicity.

Adult↗

Therapeutic use of tamoxifen in advanced breast cancer: correlation with biochemical parameters.

Tamoxifen (NSC-180973; ICI-46474) can provide palliation to patients with advanced breast cancer whose tumors contain estrogen-binding proteins (EBP). The drug is most effective in patients with bone metastasis and minimal prior therapy. In the present study, 72 patients with advanced breast cancer were evaluated for their response to oral tamoxifen therapy administered at a dose of 20 mg twice daily. Twenty-eight of 72 patients (38%) demonstrated objective responses to tamoxifen therapy. For patients with a positive EBP and no prior chemotherapy, eight of 11 (74%) responded. No patient possessing a tumor negative for EBP achieved a remission. Patients with tumors that possessed normal arylsulfatase B and glucose-6-phosphate dehydrogenase enzyme activities responded most favorably to tamoxifen therapy. These results demonstrate that tamoxifen is effective in the treatment of patients with advanced breast cancer, and EBP and specific enzymes might be useful in selecting the patients for hormone manipulation.

Adult↗

Overview of the preclinical development of an antiretroviral drug, 2',3'-dideoxyinosine.

AIDS has remained a significant and worsening medical problem since its first description as a new clinical entity in 1981. In the past 6 years, substantial progress has been made in the chemotherapy for this disease; such progress is likely to exert a major effect on the epidemic of human immunodeficiency virus infection in the coming decade. In this article, we overview the preclinical development of an antiretroviral drug, 2',3'-dideoxyinosine (didanosine; ddI), which has recently been shown in early phase I studies to have activity against human immunodeficiency virus in patients with AIDS or AIDS-related complex. Although we will not know the full clinical potential of ddI until we have the results of ongoing controlled clinical trials, this drug appears to possess desirable features for clinical use.

Animals↗

Investigational trials of anticancer drugs: establishing safeguards for experimentation.

The National Cancer Institute since 1955 has been charged with responsibility for discovering new anti-cancer agents and bringing them to clinical trial. These activities are carried out by NCI's Developmental Therapeutics Program, which has established systems for discovery, experimental testing, bulk synthesis, formulation, and toxicological testing of candidate drugs, and by the Cancer Therapy Evaluation Program, which conducts initial trials to establish safe doses of new agents and to determine their utility in treating specific forms of cancer. These clinical trials are conducted both at NCI in Bethesda, Md., and at selected cancer centers throughout the United States. This paper describes the safeguards that NCI has built into the clinical trials system in the past decade-safeguards that ensure the safety of patients and the accuracy of data collected and at the same time allow efficient testing of each promising new agent in the fight against cancer. Recent improvements in cancer survival leave little doubt that patients are indeed benefiting from extensive efforts to discover and develop new drugs for cancer treatment.

Antineoplastic Agents↗

Phase I clinical trial of spirogermanium.

Spirogermanium is a new azaspirane antitumor agent, with the metal germanium substituted for a one-carbon moiety in the ring structure. This drug inhibits DNA and RNA synthesis in HeLa cells, is cytotoxic in vitro, and has curative in vivo antitumor activity against the ascitic Walker 256 carcinosarcoma in rats. No hematologic toxicity was recorded during the preclinical toxicologic evaluation. The principal clinical toxic effects observed in this phase I trial were neurologic, manifested as lethargy, dizziness, and ataxia, while a grand mal seizure was produced after an accidental overdose. There was no evidence of hematologic, renal, or hepatic toxicity. A partial response was achieved in a patient with a well-differentiated lymphocytic lymphoma. We recommend that phase II trials be conducted with a twice or thrice weekly dose of 50-80 mg/m2, administered in a 30-minute iv infusion.

Adult↗