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Biomedical subjects

F M Muggia

Publications and source records attributed to F M Muggia.

At least 37 records · Page 2Linked to original sources

Tomudex (ZD1694, NSC 639186) in platinum-pretreated recurrent epithelial ovarian cancer: a phase II study by the Gynecologic Oncology Group.

PURPOSE: Tomudex is a second-generation folate analogue that when polyglutamated is a potent inhibitor of thymidylate synthase (TS). METHODS: Based on indications of antitumor activity in phase I trials, the Gynecologic Oncology Group initiated a phase II study of Tomudex 3 mg/m2 intravenously every 3 weeks in patients with epithelial ovarian cancer, who had been pretreated with platinum drugs, and had subsequently recurred more than 6 months following such treatment. RESULTS: Of 30 patients entered into the trial, 2 were pathologically ineligible, leaving 28 fully evaluable. In this patient population, Tomudex was generally well tolerated, but only three objective (partial) responses were documented. CONCLUSIONS: With the level of activity seen, the drug was not considered for further clinical development in ovarian cancer by the Gynecologic Oncology Group. However, it may be worthwhile to explore whether quantitation of TS could lead to selection of patients more likely to respond to this TS inhibitor.

Adult↗

Camptothecins: a review of their development and schedules of administration.

Used for centuries in traditional Chinese medicine, camptothecin was rediscovered in the 1950s during a search for compounds that could be used as a source for steroid synthesis. Due to its limited water solubility, a sodium salt was used in the early clinical trials. The severe toxicity and erratic absorption relegated this compound to the research laboratory until the 1980s when the topoisomerase enzyme was identified as the cellular target of camptothecin, the topoisomerase enzyme was found to be overexpressed in cancer cells and a structure-activity relationship was determined for camptothecin. These new developments brought the camptothecins back to the clinical setting for further testing. The various analogues that have been most studied to date include: irinotecan (CPT-11), and its derivative SN-38, topotecan, and 9-aminocamptothecin. Numerous trials have been conducted in an attempt to establish the efficacy in various tumour types, to determine the dose-limiting toxicity and to define the optimal schedule of administration. It seems that large doses of these drugs given on intermittent schedules are not effective. Our hypothesis is that the camptothecins require a prolonged schedule of administration given continuously at low doses or frequent intermittent dosing schedules to be most effective. With these schedules, normal haematopoietic cells and mucosal progenitor cells with low topoisomerase I levels may be spared, while efficacy is preserved.

Antineoplastic Agents, Phytogenic↗

A phase II study of Doxil (liposomal doxorubicin): lack of activity in poor prognosis soft tissue sarcomas.

BACKGROUND: Liposomal doxorubicin (Caelyx, Doxil) delivers doxorubicin to a tumor, but has a vastly altered pharmacology and attenuated acute and chronic toxicities. Therefore, its efficacy in soft tissue sarcomas is worth exploring. PATIENTS AND METHODS: Sixteen patients with recurrent or metastatic soft tissue sarcomas who had not failed prior doxorubicin were accrued into this phase II study. Patients were treated with Doxil at a dose of 50 mg/m2 every four weeks. RESULTS: No responses were seen but three patients were removed from study after only one cycle of treatment. Moreover, leiomyosarcoma was the most common histology and most patients had low grade, and bulky, disseminated tumors. Treatment was well tolerated with no episodes of grade 4 toxicity and only five episodes of grade 3 toxicities: two episodes of neutropenia and one each of stomatitis, dermatologic toxicity and nausea and vomiting. CONCLUSIONS: Doxil's lack of activity in this study of patients with adult soft tissue sarcoma may be related to the poor prognostic features of our population. We confirm its favorable toxicity profile and suggest that additional studies be done in patients with other characteristics.

Adult↗

Phase I and pharmacologic study of estramustine phosphate and short infusions of paclitaxel in women with solid tumors.

PURPOSE: We sought to determine the tolerance of estramustine phosphate (EMP) combined with a 3-hour paclitaxel infusion in women with solid paclitaxel-pretreated solid tumors. Paclitaxel pharmacology was to be studied at the recommended phase II dose. PATIENTS AND METHODS: Paclitaxel was administered to cohorts of at least three assessable patients at doses of 150, 180, 210, and 225 mg/m2, while EMP was given at 900 and 1,200 mg/m2/d in divided doses orally for 2 days preceding and on the day of paclitaxel. The pharmacologic study was performed at 225 mg/m2 paclitaxel given in the absence and 3 weeks later in the presence of EMP 900 mg/m2/d. RESULTS: Thirty-eight patients received a total of 178 courses. Grade 3 nausea, vomiting, and diarrhea were common at EMP 1,200 mg/m2 and paclitaxel 225 mg/ m2; this was considered the maximum-tolerated dose. Since these toxicities appeared related to EMP, the pharmacologic study used a dose of 900 mg/m2 of this agent with 225 mg/m2 paclitaxel. Antitumor activity was documented against breast and ovarian cancers at all levels. Paclitaxel pharmacokinetics without and with EMP did not differ. CONCLUSION: EMP 900 mg/m2 for 3 days and 225 mg/m2 paclitaxel by 3-hour infusion are well tolerated; antitumor activity was seen in women with paclitaxel-pretreated solid tumors. This apparent enhancement of antitumor effects is unlikely to be mediated by P-glycoprotein.

Adult↗

Cellular but not plasma pharmacokinetics of lometrexol correlate with the occurrence of cumulative hematological toxicity.

Lometrexol inhibits the first folate-dependent enzyme in de novo purine biosynthesis and is avidly polyglutamated and retained in tissues expressing folylpolyglutamate synthetase. Although clinical studies have been limited by cumulative toxicity, preclinical studies show that pretreatment with folic acid can protect normal tissue while maintaining tumor cytotoxicity. Therefore, a Phase I study of lometrexol every 21 days preceded by i.v. folic acid was initiated. Lometrexol was studied in six patients at 15 mg/m2, in six patients at 20 mg/m2, in three patients at 25 mg/m2, and in nine patients at 30 mg/m2. Patients received either 5 mg of folic acid 1 h before or 25 mg/m2 3 h before lometrexol. Blood samples were obtained around the first course and weekly thereafter for determination of plasma and erythrocyte (RBC) lometrexol concentrations. Bioactive folates in plasma and RBCs were determined in a subset of patients. Lometrexol pharmacokinetics were best described by a three-compartment model. Mean clearance and volume of distribution were 1.6 +/- 0.6 liters/h/m2 and 8.9 +/- 4.1 liters/m2. Mean half-lives were 0.23 +/- 0.1, 2.9 +/- 1.4, and 25.0 +/- 48.7 h. Pharmacokinetics were independent of either lometrexol or folic acid dose. In the weekly blood samples, RBC lometrexol levels rose, long after plasma lometrexol was undetectable. RBC lometrexol levels were independent of folic acid or lometrexol dose. Bioactive folates measured in plasma and RBCs during this same time period did not accumulate. Rising RBC levels were correlated with a fall in hematocrit, hemoglobin, and platelet count. This study indicates that the cumulative toxicity of lometrexol is related to tissue concentration and not plasma pharmacokinetics. RBC lometrexol may be an indicator of cumulative drug exposure and effect.

Antimetabolites, Antineoplastic↗

Gemcitabine plus cisplatin combination given with amifostine (GAP) to heavily pretreated patients with gynecologic and peritoneal cancers: tolerance and activity in ovarian cancer.

Nine patients with cancers of gynecologic or peritoneal origin were treated with a combination of gemcitabine, amifostine and cisplatin (GAP). The rationale of including amifostine was primarily related to the amount of prior cisplatin the patients had received and the need to protect against additional neurotoxicity. After encouraging activity and tolerance had been noted, entry of three patients with severely compromised bone marrow was also allowed. These three patients required dose reductions and did not tolerate treatment more often than every other week, but nevertheless, one of them experienced a partial response lasting 9 months. Another two of the nine patients had CA125 decreases fulfilling Rustin's definition of response and one had elimination of ascites. Future studies of this combination are warranted.

Adult↗

Determination of hydroxyurea in plasma and peritoneal fluid by high-performance liquid chromatography using electrochemical detection.

A sensitive method has been developed for the determination of hydroxyurea in plasma and peritoneal fluid using reversed-phase high-performance liquid chromatography (HPLC) with electrochemical detection. Plasma or peritoneal fluid samples were treated with acetonitrile to precipitate proteins then injected to the HPLC. A C18 analytical column was used to separate hydroxyurea from interfering substances in the biological matrix. The mobile phase, consisting of 0.2 M sodium perchlorate-methanol (95:5, v/v) adjusted to pH 5.0, was delivered isocratically at a flow-rate of 1 ml/min and hydroxyurea was detected using a glassy-carbon electrode operating at an applied potential of +800 mV. Hydroxyurea eluted with a retention time of 3 min. The cycle time for analysis is short and the assay precision is acceptable (C.V. plasma=1.4-3.9%. C.V. peritoneal fluid=2.1-9.7%). The method has been validated and is linear from 25 to 400 ng/ml in plasma and 5 to 30 ng/ml in peritoneal fluid. The method has been shown to be applicable for pharmacokinetic studies.

Antineoplastic Agents↗

Carboplatin as a radiation sensitizer in locally advanced cervical cancer: a pilot study.

Radiation therapy is the mainstay in treatment of locally advanced cervical carcinoma. Several chemotherapeutic agents have been used as radiation sensitizers in the treatment of cervical cancer in an effort to improve local response and survival. A prospective study was designed to evaluate carboplatin as a radiosensitizer in advanced cervical cancer. Standard radiotherapy techniques were used to treat patients with Stage IIA-IIIB cervical cancer. Intravenous carboplatin was administered twice weekly concurrent with external beam radiation. Of 22 evaluable patients, there were 19 complete responders of whom 15 remain alive: 11 patients were alive and disease free at last visit for a median duration of 15 months follow-up (range, 4-43 months) and 4 patients remain alive with disease for a median duration of 17 months (range, 3-55 months). Seven have died, one of whom was without evidence of disease. There were no treatment-related deaths and no grade 4 toxicity. The most significant adverse effect was hematologic resulting in four patients with grade 3 neutropenia or anemia. There were no fistulae or late gastrointestinal or genitourinary complications. This pilot study suggests that carboplatin administered with standard radiation is safe, well-tolerated, and thus may be useful as a radiation sensitizer in the treatment of locally advanced cervical cancer.

Adult↗

Phase I/II study of intraperitoneal floxuridine and platinums (cisplatin and/or carboplatin).

Previous studies have shown that intraperitoneal (i.p.) floxuridine (FUDR) is tolerated at a dose of 3 g x 3 days given in 1.5-2 L of normal saline (NS). In a randomized phase II trial by the Southwest Oncology Group, this treatment was selected for further study because of a favorable 1-year progression-free survival. We have now evaluated ip FUDR in full doses combined with i.p. cisplatin given on the third day at a dose of 60 mg/m2 in 500 mL of NS. Intraperitoneal carboplatin was partially or fully substituted for i.p. cisplatin in patients with symptomatic neuropathies. All patients also received i.p. leucovorin, as previously piloted for fluoropyrimidine modulation. Seven patients with symptomatic ascites or measurable tumors were entered, as were 11 asymptomatic patients with minimal residual (< or = 1 cm) epithelial ovarian cancer. Six cycles of the combination of i.p. FUDR + cisplatin were completed in three patients; however, the combination of FUDR with both platinums was particularly well tolerated. Intraperitoneal FUDR + carboplatin (AUC of 5) was associated with some grade 3 and 4 thrombocytopenia and neutropenia. Eight of these 11 patients are alive, and 3 have been continuously with no evidence of disease exceeding 32 months. The regimen of i.p. FUDR + i.p. cisplatin (or i.p. FUDR with both platinums) is suitable for a phase III trial testing i.p. therapy either from the outset (e.g., i.p. up front) or after achieving clinical complete responses from initial treatment without intervening relapse (i.e., i.p. consolidation) in comparison to i.p. cisplatin.

Adult↗

Phase II study of liposomal doxorubicin in refractory ovarian cancer: antitumor activity and toxicity modification by liposomal encapsulation.

PURPOSE: A phase II study of liposomal doxorubicin was conducted in patients with ovarian cancer who failed to respond to platinum- and paclitaxel-based regimens. Liposomal doxorubicin was selected as a result of its superior activity against ovarian cancer xenografts relative to free doxorubicin and activity in refractory ovarian cancer patients that was noted during the phase I study. PATIENTS AND METHODS: Thirty-five consecutive patients were accrued in two institutions (22 in one and 13 in the other). All had progressive disease after either cisplatin or carboplatin and paclitaxel, or at least one platinum-based and one paclitaxel-based regimen. Patients received intravenous (I.V.) liposomal doxorubicin 50 mg/m2 every 3 weeks with a dose reduction to 40 mg/m2 in the event of grade 3 or 4 toxicities, or a lengthening of the interval to 4 weeks (and occasionally to 5 weeks) with persistence of grade 1 or 2 toxicities beyond 3 weeks. RESULTS: Nine clinical responses (one complete response [CR], eight partial responses [PRs]) were observed in 35 patients (25.7%), with seven of these having been confirmed by two consecutive computed tomographic (CT) measurements. The median progression-free survival was 5.7 months with an overall survival of 1.5 to 24+ months (median, 11 months). Although 13 patients experienced grade 3 or 4 nonhematologic skin and mucosal toxicities (either hand-foot syndrome or stomatitis), with dose modifications, the treatment was very well tolerated. Nausea that was clearly attributable to the drug, hair loss, extravasation necrosis, or decreases in ejection fraction did not occur. CONCLUSION: Liposomal doxorubicin has substantial activity against ovarian cancer refractory to platinum and paclitaxel. The responses achieved with liposomal doxorubicin were durable and maintained with minimal toxicity. This liposomal formulation should be evaluated further in combination with other drugs in less refractory patients.

Aged↗

Clinical efficacy and prospects for use of pegylated liposomal doxorubicin in the treatment of ovarian and breast cancers.

There is an urgent need for more active and better tolerated chemotherapy regimens for the treatment of advanced breast and ovarian cancers. Current therapeutic strategies in these malignancies include the use of moderately effective initial regimens that are usually accepted by patients. Tolerability considerations are especially important in the development of palliative regimens: retreatment for persistent or hormone-resistant disease must include quality-of-life analyses. Pegylated liposomal doxorubicin (PLD) has demonstrated a better therapeutic index than free doxorubicin in murine solid tumours and human tumour xenografts in nude mice. In early clinical studies in patients with refractory ovarian cancer, PLD has produced high response rates (26%) and gratifyingly long response durations (8 to 21 + months after onset of therapy). Less mature data also suggest that PLD is active against breast cancer. Information from these same clinical studies confirms the marked reduction in several toxicities associated with free doxorubicin, including nausea and vomiting, myelosuppression and cardiotoxicity. Alopecia is also markedly diminished. On the other hand, mucosal and skin toxicities appear to be more common with PLD. PLD therefore offers the prospect of retaining activity, together with attenuated acute toxicity. In addition to facilitating the development of palliative regimens with better tolerability, the drug may lend itself to effective integration of chemotherapy with loco-regional therapies; utilisation in 'maintenance' regimens that are associated with an acceptable quality of life for the patient, and the avoidance of long term toxicities associated with treatment. Moreover, additional study of PLD in combination with other drugs and modalities may extend the use of the drug beyond palliation to the development of combination regimens with other drugs at conventional doses, and high doses with G-CSF support.

Antibiotics, Antineoplastic↗

Response to estramustine phosphate and paclitaxel in patients with advanced breast cancer: a phase I study.

Estramustine phosphate (EMP) is thought to form a chemical link between estradiol and non-nitrogen mustard. An estramustine-binding protein has been isolated in prostate, breast, and brain cancers as well as in malignant melanoma cells. Estramustine phosphate's ability to bind to microtubular-associated proteins and to interfere with mdr-mediated drug efflux are thought to result in its enhancement of paclitaxel (Taxol; Bristol-Myers Squibb Company, Princeton, NJ) activity in cell lines and in its ability to affect hormone-resistant prostate cancer. This phase I study administered combined paclitaxel and EMP to 25 women with ovarian, breast, and other tumors and assessed efficacy and toxicity. Estramustine phosphate was administered at two dose levels, 900 or 1,200 mg/m2 daily on days 1, 2, and 3 in 3-week cycles. On day 3, paclitaxel (150, 180, 210, or 225 mg/m2) was given concomitantly by 3-hour infusion. Therapeutic effects were noted in all patients. Partial responses were noted in three of eight patients with breast cancer who had failed to improve on paclitaxel alone. Three other patients experienced prolonged stable disease. Only moderate toxicities were noted until EMP levels of 1,200 mg/m2 were reached. At these dose levels, gastrointestinal toxicities became more prominent. The addition of EMP to paclitaxel allowed patients to receive paclitaxel for longer periods, and may have enhanced the therapeutic effects of paclitaxel. If so, the mechanisms of such enhancement warrant investigation. The two drugs may work on different aspects of microtubular function, for example, or may reduce efflux of paclitaxel in P-glycoprotein overexpressed tumors.

Adult↗

Tolerance of paclitaxel 3-hour infusion with and without granulocyte colony-stimulating factor on a biweekly schedule.

The object of this study was to define the toxicity and maximum tolerated dose of paclitaxel (Taxol; Bristol-Myers Squibb Company, Princeton, NJ) administered on a biweekly schedule, without and with granulocyte colony-stimulating factor support. Eligible patients had a diagnosis of recurrent or metastatic carcinoma and had received no more than one prior chemotherapy regimen. Patients were treated with paclitaxel administered as a 3-hour infusion. Entry dose level was 150/mg/m2. Subsequent dose levels were 175, 200, and 225 mg/m2. Granulocyte colony-stimulating factor was added at the two highest dose levels beginning on day 4, until absolute neutrophil count was above 10 x 10(9)/L. Forty-six patients were entered. Up to 175 mg/m2 could be safely administered every 2 weeks. Previously treated patients experienced severe dose-limiting neutropenia at 200 mg/m2, and at 225 mg/m2 all patients experienced treatment delays due to grade 3/4 neutropenia. Dose intensity was maintained in all patients due to the addition of granulocyte colony-stimulating factor. Escalation to 250 mg/m2 does not appear desirable, due to neurotoxicity.

Adolescent↗

Camptothecin and its analogs. An overview of their potential in cancer therapeutics.

From the outset of their clinical testing the camptothecins have shown antitumor activity against gastrointestinal cancer. With the definition of mechanism of action and introduction of several analogs their antitumor activity spectrum has expanded to include ovarian, cervical, small-cell and non-small cell lung cancers and malignant lymphomas, among others. The wide range of trials in these disease areas have been reviewed for CPT-11, topotecan, and 9-aminocamptothecin. A therapeutic role is anticipated for these and other camptothecins in these disease sites. Issues in guiding treatment indications and clinical development include: 1) pharmacokinetics and scheduling relevant to each of the drugs, with the oral route emerging as a practical way for testing prolonged exposure; 2) dose-intensification with cytokines, and its relevance in maintaining effective doses particularly in combination with other myelosuppressive drugs; and 3) pharmacodynamic determinants of response-an area of research that is particularly attractive because topoisomerase I is the target for camptothecins.

Antineoplastic Agents, Phytogenic↗