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W D Figg

Publications and source records attributed to W D Figg.

At least 127 records · Page 7Linked to original sources

Disposition of phenylbutyrate and its metabolites, phenylacetate and phenylacetylglutamine.

Phenylacetate, an inducer of tumor cytostasis and differentiation, shows promise as a relatively nontoxic antineoplastic agent. Phenylacetate, however, has an unpleasant odor that might limit patient acceptability. Phenylbutyrate, an odorless compound that also has activity in tumor models, is known to undergo rapid conversion to phenylacetate by beta-oxidation in vivo. This phase I study examined the pharmacokinetics of phenylbutyrate and characterized the disposition of the two metabolites, phenylacetate and phenylacetylglutamine. Fourteen patients with cancer (aged 51.8 +/- 13.8 years) received a 30-minute infusion of phenylbutyrate at 3 dose levels (600, 1200, and 2000 mg/m2). Serial blood samples and 24-hour urine collections were obtained. Samples were assayed by high-performance liquid chromatography. A model to simultaneously describe the pharmacokinetics of all three compounds was developed using ADAPT II. Data were modeled as molar equivalents. The model fit the data well as shown by mean (+/- SD) coefficients of determination (r2) for phenylbutyrate, phenylacetate, and phenylacetylglutamine, which were 0.96 +/- 0.07, 0.88 +/- 0.10, and 0.92 +/- 0.06, respectively. The intrapatient coefficient of variation percentage (CV%) around the parameter estimates were small (range 7.2-33.5%). Phenylbutyrate achieved peak concentrations in the range of in vitro tumor activity (500-2000 mumol/L) and exhibited saturable elimination (Km = 34.1 +/- 18.1 micrograms/mL and Vmax = 18.1 +/- 18 mg/h/kg). Metabolism was rapid; the times to maximum concentration for phenylacetate and phenylacetylglutamine were 1 and 2 hours, respectively. The conversion of phenylbutyrate to phenylacetate was extensive (80 +/- 12.6%), but serum concentrations of phenylacetate were low owing to rapid, subsequent conversion to phenylacetylglutamine.(ABSTRACT TRUNCATED AT 250 WORDS)

Adult↗

Pharmacologic variables associated with the development of neurologic toxicity in patients treated with suramin.

PURPOSE: To describe pharmacologic variables correlated with the development of neurologic toxicity in patients treated with suramin. METHODS: Eighty-one patients were treated with suramin in a phase I study. The rate of drug infusion was continuously adjusted to maintain a preassigned plasma suramin concentration (175, 215, or 275 micrograms/mL) for a fixed duration (2 to 8 weeks). RESULTS: Eight patients developed grade III/IV neurologic motor impairment (predominantly motor axonal polyneuropathy). All were treated at the 275-micrograms/mL concentration. One patient treated at the 215-micrograms/mL concentration developed grade II motor dysfunction. In addition, seven of nine patients had sensory symptoms. Pharmacologic variables associated with the development of polyneuropathy included total cumulative suramin dose, duration of exposure to plasma concentrations greater than 200 micrograms/mL, and area under the curve (AUC) greater than 200 micrograms/mL. CONCLUSION: Significant neurologic toxicity can result from therapy with suramin, even when dosing is designed to avoid exposure to plasma concentrations greater than 350 micrograms/mL. Future clinical trials of suramin should be designed in such a way as to limit the total cumulative dose to < or = 157 mg/kg given over a period of > or = 8 weeks, limit the period of exposure to plasma suramin concentrations greater than 200 micrograms/mL to < or = 25 days, and limit the AUC greater than 200 micrograms/mL to < or = 48,000 mg.h/AL.

Adult↗

A preliminary risk-benefit assessment of paclitaxel.

Paclitaxel is an antineoplastic agent, first isolated and described in 1971. Despite its novel structure and apparent activity in vitro, little interest was shown in developing the compound because of its scarcity, problems with its formulation and the mistaken assumption that its mechanism of action was similar to that of the vinca alkaloids. Approximately 10 years later, the unique mechanism of action of paclitaxel, its ability to stabilise microtubules, was discovered, and its activity against human tumour xenografts was demonstrated. Interest in the drug was reignited and clinical testing began. Severe hypersensitivity reactions were controlled in the phase II programme with a premedication regimen consisting of dexamethasone, histamine H1-antagonists and H2-antagonists. Neutropenia was dose limiting in all studies conducted in patients with solid tumours. This toxicity was schedule-dependent, and less severe when paclitaxel was administered as a 3-hour infusion regimen. Peripheral neuropathy was mild to moderate in the initial experience, and dose-dependent. However, when bone marrow support with haemopoietic growth factors was used to allow paclitaxel dose intensification, neurotoxicity became dose limiting. To date, substantial clinical efficacy has been demonstrated in ovarian, breast, non-small-cell lung, and head and neck cancers. Response rates were low in initial studies in melanoma, prostate, colon, cervix and renal cancer. In December 1992, US Food and Drug Administration approval was granted for the use of paclitaxel as second-line therapy in ovarian cancer patients. More recently, similar approval was granted for use in recurrent breast cancer. Nevertheless, important questions remain.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Paclitaxel (taxol) inhibits protein isoprenylation and induces apoptosis in PC-3 human prostate cancer cells.

Paclitaxel was examined for its effects on cell survival, internucleosomal DNA fragmentation, and protein isoprenylation in the human prostate cancer cell line PC-3. Treatment of cells with paclitaxel at 5-60 nM for 24 hr resulted in a dose-dependent inhibition of cell viability (IC50, 31.2 nM), which was partially prevented by supplementing the cell culture medium with two nonsterol polyisoprenyl compounds, farnesyl-pyrophosphate (-PP) and geranylgeranyl-PP (3 microM each). Furthermore, agarose gel electrophoresis of DNA extracted from cells treated with paclitaxel (15-60 nM) for 24 hr showed DNA laddering with production of fragments of 180-base pair multiples, indicating the occurrence of apoptotic cell death. Internucleosomal DNA fragmentation by paclitaxel was also detected by a photometric enzyme immunoassay using antihistone antibodies; if culture medium was supplemented with farnesyl-PP and geranylgeranyl-PP (3 microM each), a reduction in mono- and oligonucleosome production was observed. The post-translational incorporation of metabolites of (RS)-[5-3H]mevalonolactone (100 microCi/ml) into prenylated proteins of PC-3 cells was inhibited by paclitaxel at 30 and 60 nM. In addition, the immunoprecipitation of p21ras and p21rap-1 proteins from PC-3 cells exposed to paclitaxel (30 and 60 nM) and labeled with (RS)-[5-3H]mevalonolactone showed a substantial inhibition of the incorporation of farnesyl and geranylgeranyl prenoid groups, respectively, into the aforementioned proteins. These results indicate that the inhibition of protein isoprenylation is a novel component of the complex biochemical effects of the drug and plays an important role in the mechanism of paclitaxel cytotoxicity in PC-3 cells.

Apoptosis↗

Pharmacokinetics of orally administered carboxyamido-triazole, an inhibitor of calcium-mediated signal transduction.

Carboxyamido-triazole (CAI), inhibits proliferation, invasion, and metastatic potential of a number of cancer cell lines at concentrations greater than 0.4 microgram/ml. The objective of this study was to characterize the pharmacokinetic profile from the first Phase I clinical trial of CAI for the single test dose and multiple daily dosing schedule. Two different p.o. formulations (liquid and gelcap) of CAI were administered. Thirty-nine patients with cancer were enrolled. The dose escalation schema was 100, 125, and 150 mg/m2/day and 200 and 330 mg/m2 every other day of the liquid formulation, plus 100 and 125 mg/m2/day and 200 mg/m2 every other day of the gelcap. The CAI pharmacokinetics are best described by a two-compartment open linear model. The gelcap was more rapidly absorbed than the liquid [time to maximum plasma concentration (Tmax) = 2.06 +/- 1.02 versus 5.31 +/- 3.59 h, P2 = 0.0012] which resulted in higher peak plasma concentrations. There was no evidence of saturable elimination as the dose was increased. The mean steady-state peak concentration was 5.1 +/- 1.0 microgram/ml for the 150 mg/m2/day multiple daily dosing regimen. The terminal half-life of CAI was relatively prolonged, 111 h, and the total body p.o. clearance was low (1.87 liters/h). The peak concentration for all dose levels explored was greater than the targeted concentration suggested by in vitro data for activity. Thus, these data suggest that an effective cytostatic exposure of CAI may be obtained with daily or every other day dosing without severe toxicity.

Administration, Oral↗

Chimeric fusion protein toxin DAB486IL-2 in advanced mycosis fungoides and the Sezary syndrome: correlation of activity and interleukin-2 receptor expression in a phase II study.

DAB486IL-2 is a recombinant toxin with the cell surface-binding domain of diphtheria toxin (DT) replaced by interleukin-2 (IL-2). To correlate clinical response with expression of components of the IL-2 receptor (IL-2R), 14 patients with cutaneous T-cell lymphoma (CTCL) received five daily 90-minute infusions every 21 days. There were no complete responses, 1 partial response (PR), 2 major biologic effects (major cutaneous improvement without change in circulating neoplastic cells), 3 stable disease (SD), and 8 progressive disease (PD). Responders had easily detected expression of CD25 (Tac; alpha-chain of IL-2R) in skin, and in two responders expression of the beta chain of the IL-2 receptor (beta-IL-2R) was detectable by reverse transcriptase-polymerase chain reaction. CD25 was also detected in 8 of 11 SD or PD patients, with beta-IL-2R in 3 of 8 SD or PD patients. Two of the three responders had anti-DT antibodies before treatment. Reversible increased hepatic transaminases occurred in 13 of 14 patients during the first course, with decreased frequency in repeated courses. The maximal serum concentration after the first infusion of DAB486IL-2 varied (1,369 +/- 1,155 ng/mL [mean +/- SD]; n = 14; range, 55 to 3,999 ng/mL) with a short half-life (T1/2 beta = 0.21 +/- 0.12 h [mean +/- SD]; range, 0.099 to 0.57 h). The area under the concentration curve varied inversely with anti-DT antibody titer. We conclude that DA-B486IL-2 has valuable activity in certain patients with CTCL. Expression of the IL-2R may be necessary but is not sufficient to predict response.

Diphtheria Toxin↗

Acute renal toxicity associated with suramin in the treatment of prostate cancer.

The use of suramin, a polysulfonated naphthylurea, in the treatment of advanced prostate cancer currently is being investigated. A 52-year-old man developed acute renal dysfunction after receiving nine doses of suramin. His suramin therapy was discontinued, but his serum creatinine level continued to rise to 10.8 mg/dl during the next 6 days. The patient was not rechallenged with suramin, and his renal function returned to baseline within the next 3 weeks. Future investigators of this drug should be aware of the possibility of such a reaction with parenteral administration.

Acute Kidney Injury↗

Hypothyroidism associated with aminoglutethimide in patients with prostate cancer.

OBJECTIVE: The administration of aminoglutethimide and hydrocortisone is a second-line hormonal maneuver commonly prescribed for the treatment of metastatic prostate cancer. We determine the incidence of aminoglutethimide-induced primary hypothyroidism in an elderly population who have prostate cancer. DESIGN: Prospective evaluation. PATIENTS: Twenty-nine men with stage D2 prostate cancer who were treated at the National Cancer Institute, Bethesda, Md, in 1992. RESULTS: Clinical and biochemical evidence of hypothyroidism (thyrotropin levels greater than 10 mU/L) was noted in nine of 29 patients treated following the initiation of aminoglutethimide (250 mg four times daily). The elevation in thyrotropin and the clinical symptoms of hypothyroidism were reversed by the administration of levothyroxine (n = 4). CONCLUSION: Hypothyroidism should be included in the differential diagnosis of lethargy in elderly patients who are receiving aminoglutethimide for prostate cancer. Furthermore, patients who are receiving this agent at a dosage of 1000 mg/d or greater should have their serum thyrotropin levels monitored, and replacement therapy with levothyroxine should be initiated when abnormally elevated levels are noted.

Aged↗

A phase I and pharmacokinetic study of intravenous phenylacetate in patients with cancer.

Phenylacetate has recently been shown to suppress tumor growth and promote differentiation in experimental models. A phase I trial of phenylacetate was conducted in 17 patients with advanced solid tumors. Each patient received a single i.v. bolus dose followed by a 14-day continuous i.v. infusion of the drug. Twenty-one cycles of therapy were administered at four dose levels, achieved by increasing the rate of the continuous i.v. infusion. Phenylacetate displayed nonlinear pharmacokinetics [Km = 105.1 +/- 44.5 (SD) microgram/ml, Vmax = 24.1 +/- 5.2 mg/kg/h and Vd = 19.2 +/- 3.3 L]. There was also evidence for induction of drug clearance. Ninety-nine % of phenylacetate elimination was accounted for by conversion to phenylacetylglutamine, which was excreted in the urine. Continuous i.v. infusion rates resulting in serum phenylacetate concentrations exceeding Km often resulted in rapid drug accumulation and dose-limiting toxicity, which consisted of reversible central nervous system depression, preceded by emesis. Three of nine patients with metastatic, hormone-refractory prostate cancer maintained stable prostatic specific antigen levels for more than 2 months; another had less bone pain. One of six patients with glioblastoma multiforme, whose steroid dosage has remained unchanged for the duration of therapy, has sustained functional improvement for more than 9 months. The use of adaptive control with feedback for the dosing of each patient enabled us to safely maintain stable phenylacetate concentrations up to the range of 200-300 micrograms/ml, which resulted in clinical improvement in some patients with advanced disease.

Adult↗

Assay of the antiangiogenic compound TNP-470, and one of its metabolites, AGM-1883, by reversed-phase high-performance liquid chromatography in plasma.

This paper describes a reversed-phase, high-performance liquid chromatographic (HPLC) method for the isolation, detection, and quantification of TNP-470 (I) and one of its active metabolites, AGM-1883 (II), from plasma. These compounds are initially extracted from plasma with an organic solvent and then separated from one another on a C18 column. Those fractions eluting from the C18 column and containing either I or II are then derivatized through their epoxide moieties with sodium 8-quinolinethiolate (SQT). This derivatization produces fluorescent species that are isolated and quantified by a second reversed-phase HPLC analysis. The assay yields a lower limit of reliable quantification of 2.5 ng/ml and is linear to a concentration at least as high as 160 ng/ml. The inter-assay percent coefficient of variation is less than 18%.

Acetamides↗

Surprising activity of flutamide withdrawal, when combined with aminoglutethimide, in treatment of "hormone-refractory" prostate cancer.

BACKGROUND: The best treatment for patients with "hormone-refractory" metastatic prostate cancer is unclear, particularly in patients for whom suramin and hydrocortisone have failed. PURPOSE: We investigated a combination of flutamide withdrawal and aminoglutethimide in suramin- and hydrocortisone-pretreated patients with "hormone-refractory" prostate cancer. METHODS: Twenty-nine patients with metastatic prostate cancer were treated with simultaneous flutamide withdrawal and aminoglutethimide (250 mg given orally four times daily). All patients were taking flutamide at the time of entry, and previous treatments with medical or surgical castration, flutamide, suramin, and hydrocortisone had failed in all of these patients. Because of suramin-induced adrenal insufficiency, all patients had previously received, and continued to receive, physiological doses of hydrocortisone. Treatment of all non-surgically castrated patients had previously failed; however, these patients continued to receive depot leuprolide. RESULTS: In 14 (48%) of 29 patients, the prostate-specific antigen (PSA) decreased by more than 80% for 4 or more weeks. Improvements in anemia, thrombocytopenia, soft-tissue masses, bone scans, and symptoms were also noted. Factors associated with response included prolonged flutamide pretreatment, a markedly elevated pretreatment PSA, and the absence of soft-tissue disease. CONCLUSIONS: Flutamide withdrawal, when combined with the simultaneous administration of aminoglutethimide, is a therapeutically active approach in patients with "hormone-refractory" prostate cancer. IMPLICATIONS: On the basis of these and additional data, we hypothesize that prolonged exposure to flutamide results in the selective proliferation of cancer cells containing a mutant androgen receptor that aberrantly recognizes flutamide metabolites and nonandrogenic steroids as androgenic stimuli.

Aged↗

In vitro antitumor effect of hydroxyurea on hormone-refractory prostate cancer cells and its potentiation by phenylbutyrate.

Previous clinical trials have suggested that hydroxyurea may possess some activity against prostate cancer. The in vitro antiproliferative activity of hydroxyurea was evaluated in three hormone-refractory prostate cancer cell lines, PC-3, DU-145 and PC-3M. Fifty-percent inhibition of growth in all three cell lines required prolonged (120 h) exposure to hydroxyurea at a concentration of approximately 100 microM. Using pharmacokinetic data obtained during the course of a clinical trial of hydroxyurea, we simulated a dosing regimen that would sustain plasma drug concentrations above 100 microM for 120 h (1 g loading dose, followed by 500 mg every 6 h for 5 days in a 70 kg man). Since this dosing regimen is likely to generate an unacceptable degree of myelosuppression, in vitro combination studies were conducted with hydroxyurea and phenylbutyrate, a new differentiating agent with no myelosuppressive effects. These studies resulted in a reduction of the hydroxyurea concentration necessary for 50% growth inhibition (50 microM of hydroxyurea plus 0.5 mM of phenylbutyrate). A regimen designed to achieve that hydroxyurea concentration (400 mg loading dose, followed by 200 mg every 6 h for 5 days) should be clinically achievable. Based on these results, this combination deserves further evaluation in patients with stage D prostate cancer.

Cell Division↗

Ondansetron: a novel antiemetic agent.

Ondansetron hydrochloride is a new serotonin receptor antagonist that is effective in preventing emesis associated with cancer chemotherapy. The antiemetic effect appears to be exerted through a peripheral vagal blocking within the gastrointestinal tract, as well as an inhibitory effect within the chemoreceptor trigger zone (CTZ). Plasma concentrations of ondansetron peak 1 hour after an oral dose, and the tablet has an absolute bioavailability of 59%. Ondansetron undergoes extensive hepatic oxidative metabolism in the liver. The half-life of ondansetron is 3.5 hours in healthy volunteers; elderly patients have a slightly reduced clearance, and pediatric patients have increased clearance. Although less than 10% of ondansetron is recovered unchanged in the urine, most metabolites are eliminated by this route. The recommended dose of ondansetron is 0.15 mg/kg for three doses on the day of chemotherapy (30 minutes before chemotherapy and 4 and 8 hours afterward). An alternative regimen includes a single-day dose of 32 mg IV in adult patients before chemotherapy. The efficacy of ondansetron therapy for delayed emesis has not been determined. Ondansetron has proven to be appropriate as a single agent or as an addition to standard antiemetic therapy (ie, corticosteroids, benzodiazepines, neurotransmitter blockers) in preventing and treating acute chemotherapy-induced emesis (CIE). Initial results of clinical trials in prevention of radiotherapy-induced emesis and anesthesia-induced emesis appear positive. Ondansetron is well tolerated, with few adverse events (eg, headache, sedation).

Antineoplastic Agents↗