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B J Foster

Publications and source records attributed to B J Foster.

31 records · Page 2Linked to original sources

The pharmacokinetics and toxicity of the anthrapyrazole anti-cancer drug CI-941 in the mouse: a guide for rational dose escalation in patients.

CI-941 is a new synthetic DNA-binding agent selected for phase I clinical evaluation. The drug has broad-spectrum antitumour activity against a number of murine tumours and, in contrast to doxorubicin, is unlikely to induce cardiotoxicity by a free-radical-mediated mechanism. In this study the toxicity and pharmacokinetics of CI-941 were studied in the mouse to enable the implementation of a pharmacokinetically guided dose-escalation strategy in patients. Following a single i.v. bolus injection in mice, CI-941 induced dose-dependent leukopenia. The white blood cell counts were suppressed on day 3 by 18%, 50% and 65% of control, at doses of 10, 15 and 20 mg/kg CI-941, respectively. Other toxicities such as weight loss, alopecia, diarrhoea and convulsions were observed at doses greater than 20 mg/kg. Lethality studies in female Balb-c mice resulted in an LD10 value of 20 mg/kg (95% confidence limits; range, 19-21 mg/kg) and an LD50 value of 22 mg/kg (95% confidence limits; range, 21-23 mg/kg). The pharmacokinetics of CI-941 were studied at four dose levels from 1/10 of the LD10 to the LD10 (20 mg/kg). The drug was rapidly cleared from the plasma (250-400 ml/min per kg) at a rate approaching the cardiac output of mice, displaying triphasic plasma pharmacokinetics. The area under the plasma CI-941 concentration vs time curve (AUC) was linear with respect to the dose, up to and including 15 mg/kg (AUC = 110 microM x min at 15 mg/kg), but became non-linear at 20 mg/kg (AUC = 277 microM x min). Despite 80%-84% plasma protein binding, CI-941 was rapidly and extensively distributed into tissues, especially the kidney. Following i.v. bolus injections at doses of 1.5 and 15 mg/kg, elimination of the parent compound by urinary excretion accounted for 12%-18% of the delivered dose. A phase-I starting dose (based on that equivalent to 1/10 of the LD10 in the mouse) of 5 mg/m2 CI-941 is recommended for single administration schedules. In addition, a pharmacokinetically guided dose-escalation strategy, based on achieving a target AUC of 110 microM x min, is proposed.

Animals↗

Modulation of induced resistance to adriamycin in two human breast cancer cell lines with tamoxifen or perhexiline maleate.

The clinical utility of adriamycin in the treatment of patients with metastatic breast cancer is often-limited by the development of drug resistance. It has been recognized that in addition to the development of primary resistance against adriamycin, malignant cells can simultaneously develop cross-resistance to other agents. An adriamycin-resistant human breast cancer cell line (MCF 7Ad) was developed by exposing the parent line (MCF 7) to gradually increasing concentrations of adriamycin while the cells were being grown in monolayer. Using these lines in a clonogenic assay, the relative drug sensitivities to adriamycin, vinblastine, melphalan, 5-fluorouracil and methotrexate were studied. MCF 7Ad was 12.5-fold more resistant to adriamycin than MCF 7 and 500-fold cross-resistant to vinblastine. There was no cross-resistance to melphalan, 5-fluorouracil or methotrexate. The resistance of MCF 7Ad was decreased by simultaneous exposure to tamoxifen (by a factor of 3.33) or perhexiline maleate (by a factor of 7.50). This decreased resistance was evidenced by a shift to the left of the sensitivity curves. However, there was no consistent change in the sensitivity curves of MCF 7. At the selected concentration of tamoxifen and perhexiline maleate, the cloning efficiency of MCF 7 and MCF 7Ad was 80%-90% of control values in medium without tamoxifen, perhexiline maleate or cytotoxic drugs. The resistance of MCF 7Ad to adriamycin was associated with a lower accumulation of [14C]adriamycin than exhibited by the sensitive MCF 7 line. There was no consistent change in [14C]adriamycin accumulation in MCF 7 or MCF 7Ad when tamoxifen was added, but when perhexiline maleate was added the [14C] accumulation increased. These results suggest that the tamoxifen-induced change in MCF 7Ad adriamycin resistance was not due to an increase in the amount of cell-associated adriamycin, but rather to some other mechanism that increased the cytotoxicity of the adriamycin.

Breast Neoplasms↗

Hexamethylmelamine: a critical review of an active drug.

Hexamethylmelamine is an s-triazine that began clinical trials during the 1960s based on its level of antitumor activity in murine tumor models. Phase I studies were performed using an oral formulation given in divided doses for varying numbers of days. The most frequently reported toxicities included nausea, vomiting, abdominal cramps, anorexia, weight loss and malaise. Less frequently reported toxicities were anemia, thrombocytopenia, leucopenia and peripheral neuropathy. Clinical antitumor activity was noted in the phase I studies in a variety of tumor types. Since then a large number of studies have been performed using hexamethylmelamine as a single agent and in a variety of combinations. Unfortunately, almost none of these studies sought to define the utility of this drug relative to other treatments for the diseases in which it showed activity, or to define the contribution of this drug to the activity of any given combination. Thus its role in the treatment of patients with malignancies remains undefined.

Altretamine↗

Pentamethylmelamine: review of an aqueous analog of hexamethylmelamine.

The s-triazine derivatives have shown preclinical antitumor activity against several histologic types. The most widely used compound of this class in the clinic, hexamethylmelamine, has been largely restricted to oral use because of its low solubility and lack of stability in solutions suitable for parenteral administration. New analogs were sought which were soluble and stable and retained antitumor activity. Pentamethylmelamine (PMM), the monodemethylated derivative, showed these promising characteristics. Preclinical toxicology studies of PMM in mice, dogs, and monkeys showed toxic manifestations that involved the hematopoietic, lymphatic, renal, male reproductive, gastrointestinal, and nervous systems; these changes were both infusion-rate- and dose-dependent. Clinical phase I trials of PMM were performed using a variety of infusion durations and frequency schedules. The dose-limiting toxic effect common to all of these trials was protracted nausea and vomiting. In addition, some studies reported dose-limiting central nervous system manifestations in the form of agitation, drowsiness, somnolence, and even coma. Mild to moderate hematologic changes were noted. Because of the severity and frequency of the gastrointestinal and central nervous system toxic effects observed in the completed trials, no new clinical trials of PMM sponsored by the National Cancer Institute are planned. However, the interest in finding a clinically useful parenteral triazine continues.

Altretamine↗

Role of hexamethylmelamine in the treatment of ovarian cancer: where is the needle in the haystack?

Hexamethylmelamine (HMM) was selected for development as an antineoplastic agent because it demonstrated activity in a variety of preclinical tumor models. Its mechanism of action is unknown. It has been used in clinical trials since 1964. The clinical toxic effects have consisted of signs and symptoms involving the following systems: gastrointestinal (nausea, vomiting, anorexia), hematologic (leukopenia, mild anemia), and neurologic (critical depression, hallucinations, peripheral motor and sensory deficits). Antitumor activity against advanced ovarian cancer was demonstrated in phase I trials and the drug was quickly incorporated into trials which utilized drug combinations. The majority of these have consisted of phase II trials without an identified control population. As might be predicted, all of the HMM-containing combinations are active. However, the contribution of HMM to the antitumor activity of the combination remains conjectural. Thus, in spite of greater than 15 years of clinical trials with a drug that has single-agent activity, the questions regarding the role of HMM in the treatment of ovarian cancer remain unanswered.

Altretamine↗

Gallium nitrate: the second metal with clinical activity.

Gallium nitrate is the anhydrate salt of the naturally occurring heavy metal. It has demonstrated antitumor activity in a variety of murine tumor models, including Walker carcinosarcoma 256, fibrosarcoma M-89, leukemia K-1964, adenocarcinoma 755, mammary carcinoma YMC, reticulum cell sarcoma A-RCS, lymphoma P1798, and osteosarcoma 124F. Preclinical studies performed in rats, rabbits, dogs, and monkeys showed the dose-limiting toxicity to be renal. The hepatic, pulmonary, gastrointestinal, hematologic, and integumentary systems were also involved. The major route of elimination is the kidneys, with 35%-71% of the infused dose excreted within 24 hours. Three phase I studies suggested the following phase II doses: 700-750 mg/m2 by short infusion, once every 2-3 weeks; 300 mg/m2/day by short infusion for 3 consecutive days, to be repeated every 2 weeks; and 300 mg/m2/day by continuous infusion for 7 consecutive days, to be repeated every 3-5 weeks. The major organ toxicity reported was renal; however, this can be adequately controlled either by hydration and osmotic diuresis or by use of continuous schedule. (Either maneuver appears to allow delivery of the recommended phase II dose with a less than 30% risk of change in serum creatinine.) In limited phase II evaluation, the drug has shown antitumor activity in patients with either refractory lymphomas or small cell lung carcinoma, with total objective response rates of 28% and 11%, respectively. In addition, it has been effective in the treatment of patients with cancer-related hypercalcemia by having an inhibitory effect on calcium reabsorption from bone. Single-agent phase II studies are planned in all major tumor types. Some are already ongoing in patients with genitourinary malignancies (renal, bladder, prostate, testicular), small cell lung carcinoma, and multiple myeloma. Metabolic studies are in progress at Memorial Sloan-Kettering Cancer Center to further elucidate the mechanism or mechanisms of the hypocalcemic effects.

Animals↗

Echinomycin: the first bifunctional intercalating agent in clinical trials.

Echinomycin is a quinoxaline antibiotic that was originally isolated from Streptomyces echinatus. Based on its antitumor activity against two i.p. implanted murine tumors, the B16 melanoma, and the P388 leukemia, it was brought into clinical trials by the National Cancer Institute. Recent studies on its cytotoxic action have related its antitumor activity with its ability to bifunctionally intercalate with double stranded DNA. Toxicologic studies were carried out in CDF1 mice and beagle dogs using intravenous injections. For the mice studies the dose ranges were 288-692 mcg/kg (864-2076 mcg/m2) by single bolus, and 112-254 mcg/kg/day (336-762 mcg/m2/day) for five consecutive days. In the dog, dose ranges studied were 8.9-89.4 mcg/kg (178-1788 mcg/m2) by single bolus, and 3.4-33.5 mcg/kg/day (68-670 mcg/m2/day) for five consecutive days. The major toxic effects were found in the gastrointestinal, hepatic, and lymphoreticular systems. These were reversible at all but the highest dose, in dogs that had been treated for five consecutive days. Phase I clinical trials using various intravenous schedules were sponsored by the National Cancer Institute. Nausea, vomiting, reversible liver enzyme abnormalities, and allergic reactions were the most common toxicities encountered. Based on results from these studies, the National Cancer Institute has recently begun phase II trials in a broad range of diseases. These trials will further characterize echinomycin's toxic effects and its antitumor activity.

Animals↗

Results of NCI-sponsored phase I trials with carboplatin.

Carboplatin has been developed for clinical trials as a less nephrotoxic, less emetogenic analog of cisplatin. In preclinical tumor models it was less potent than the parent compound on a molar basis, but reduced toxicity allowed comparable antitumor doses to be given. In phase I studies its dose-limiting toxicities were reversible myelosuppression, especially thrombocytopenia. Leucopenia and anemia occurred to a lesser degree. Other reported toxicities included nausea, vomiting, malaise, myalgia, arthralgia, ototoxicity, hypomagnesemia, and proteinuria. Nausea and vomiting occurred frequently, but was much less severe than that observed with cisplatin. The incidence of serum creatinine elevations was low. The increase was usually reversible and occurred only in association with administration of aminoglycosides, or abnormal pretreatment renal function. Recommended phase II doses by schedule are: bolus every 4 weeks, 400-500 mg/m2 (560 mg/m2 in children); 24 hour continuous infusion every 4 weeks, 320-400 mg/m2; weekly bolus for 4 consecutive weeks with 2 weeks rest, 100-125 mg/m2 (175 mg/m2 in children); bolus for 5 consecutive days every 4 weeks, 77-95 mg/m2. Objective responses were observed during these phase I studies in adult patients (head and neck, breast, renal carcinomas) and children (osteosarcoma, brain stem lesions). In addition to phase II evaluations in all major tumor types, plans for phase III studies in selected tumors are underway.

Animals↗

Potential therapeutic and diagnostic applications of the growth of testicular cancer in soft agar.

Sixteen histologically documented testicular cancer specimens obtained at diagnostic procedures following induction chemotherapy with cis-platinum containing regimens were cloned in soft agar. Seven (44%) of the specimens cultured formed colonies with a mean cloning efficiency of .021%. Colony formation was observed with all the common histologic subtypes of testicular cancer (seminoma, embryonal carcinoma, choriocarcinoma and mixed tumors). In vitro drug sensitivity tests were performed using cis-platinum, vinblastine and VP-16. Three of four specimens demonstrated a decrease in colony formation to less than 50% of controls after a 1 h exposure to VP-16 at 300 micrograms/ml. Two of these patients had a response to treatment with a VP-16 based salvage regimen. Immunoperoxidase staining of the colonies for alpha feto protein and human chorionic gonadotropin were correlated with the serum levels of these tumor markers determined at the time the specimen was obtained. In three instances the same markers were elevated in the serum as detected within cells which formed the colonies; however, in two other cases the marker(s) that was elevated in the serum was not expressed in the colonies. In one case a biopsy of a residual retroperitoneal mass following chemotherapy histologically was a teratoma, but it formed colonies in the assay which stained positive for alpha feto protein. This patient subsequently developed an elevated serum alpha feto protein. These studies have demonstrated that (a) testicular cancer can be cloned directly in soft agar; (b) a heterogeneous tumor cell population exists in metastatic testicular cancer specimens; and (c) a dose response exists for VP-16 in relapsed testicular cancer which suggests that increasing the dose of VP-16 may be clinically beneficial.

Agar↗

Review of gentamicin therapy based on pharmacokinetics.

The feasibility of using pharmacokinetic estimations of drug serum levels to evaluate gentamicin use was explored. A consecutive series of 40 adult patients who received nonprophylactic "piggyback" gentamicin therapy was retrospectively evaluated. Traditional factors in the evaluation of antibiotic use, such as identity of microbe and sensitivity to antibiotic, were monitored. Additionally, peak and trough drug serum levels were computed for each patient. These were compared with toxic serum levels and minimum inhibitory concentrations as reported in the literature. Certain factors, such as duration of therapy and existence of alternate antibiotic therapy, suggested less than optimal therapy in the study patients. However, computed serum levels revealed that the patients experienced both safe and effective peak and trough gentamicin levels. Only with the use of pharmacokinetic estimations of drug serum levels could a comprehensive conclusion be reached regarding the appropriateness of therapy. Gentamicin therapy was generally rational in the study group. The use of pharmacokinetic principles in the calculation of serum levels may be a useful tool in drug use studies.

Adult↗

Cryptophycin 1 cellular levels and effects in vitro using L1210 cells.

Cryptophycin 1 is a natural product that was initially isolated from blue-green algae which has shown potent broad spectrum antitumor activity in preclinical in vitro and in vivo models. The drug strongly binds to tubulin and disrupts microtubule assembly for more than 24 hours after its removal. We evaluated cell survival, intracellular levels and inhibition of macromolecular synthesis in L1210 cells following exposure to cryptophycin 1 in vitro. Cell survival was strongly inhibited following drug exposure for either 1 or 4 hours. Intracellular drug levels were minimally affected by temperature (4 degrees C versus 37 degrees C) or exposure times up to 1 hour. However, extracellular drug concentration in culture media and increasing cell numbers did affect the concentration of intracellular drug levels in a nearly proportional manner. The synthesis of DNA and RNA was inhibited less than 5%, while protein synthesis inhibition was near 30%. Thus, none of the macromolecules were inhibited enough to explain the inhibition of tumor cell growth.

Animals↗