Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0042963 (vomiting)
31,883 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Taxol, a novel antimicrotubule agent that enhances tubulin polymerization and microtubule stability, was administered to adults with refractory leukemias as a 24-h i.v. infusion in a Phase I study. The primary objectives were to determine the maximum tolerated dose of taxol administered on this schedule to patients with acute leukemias and describe the nonhematological toxicities which became dose limiting. The starting dose, 200 mg/m2, was based on the maximum tolerated dose in solid tumor trials, in which myelosuppression precluded dose escalation. Seventeen patients received 28 evaluable courses at 200, 250, 315, and 390 mg/m2. Severe mucositis limited further dose escalation. Other nonhematological effects included peripheral neuropathy, alopecia, myalgias, arthralgias, nausea, vomiting, diarrhea, and an acute pulmonary reaction that was presumptively due to taxol's Cremophor vehicle. Mean peak taxol plasma concentrations at all dose levels were in the range of concentrations that were previously demonstrated to induce microtubule bundles, a morphological effect associated with cytotoxicity, in leukemia cells in vitro. Pretreatment blasts from 12 patients were incubated with taxol ex vivo. Taxol-induced microtubule bundles were apparent in the blasts of eight patients who also had cytoreduction of tumor, and sensitivity to bundle formation was related to the magnitude of antitumor activity. In contrast, taxol did not induce microtubule bundles ex vivo in the blasts of the other four total nonresponders. Based on this study, the maximum tolerated doses and recommended Phase II doses for taxol, limited by nonhematological toxicity and administered as a 24-h i.v. infusion to patients with refractory leukemias, are 390 and 315 mg/m2. Phase II trials at these myelosuppressive doses are required to determine taxol's activity in the treatment of leukemias. In addition, further evaluation of microtubule bundle formation ex vivo in Phase II studies is necessary to determine the ultimate utility of this assay in assessing tumor sensitivity to taxol.
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PMID:Phase I and pharmacodynamic study of taxol in refractory acute leukemias. 256 75

Taxol is a plant product derived from the western yew, Taxus brevifolia. We have conducted a phase I clinical study of Taxol used intravenously daily for 5 days at 3-week intervals. The starting dose was 5 mg/m2 daily, and the highest dose used was 40 mg/m2 daily for 5 days. The daily dosage of Taxol was mixed in 250 mL of intravenous fluid and infused over a period of 1 hour. A total of 20 patients with metastatic solid tumors refractory to standard therapy received 45 courses of therapy. Taxol was generally well tolerated and caused no significant nausea or vomiting. A mild degree of diarrhea was reported by six patients, and a moderate degree of stomatitis at the higher dose levels developed in four patients. All patients treated in the dosage range of 20 mg/m2 to 40 mg/m2 experienced nearly complete alopecia. Myelosuppression, predominantly in the form of leukopenia, was the dose-limiting toxicity. The nadir of leukopenia was reached between days 8 and 12 followed by complete recovery between days 15 and 21. Leukopenia was first observed following the Taxol dosage level of 20 mg/m2/d, was moderately severe at the dosage level of 30 mg/m2/d, and was severe at the dosage level of 40 mg/m2/d. No objective tumor regression was observed. A starting dosage level of 30 mg/m2/d for 5 days is recommended for phase II trials using this schedule.
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PMID:Phase I study of taxol using a 5-day intermittent schedule. 287 Nov 37

A dose-finding study was set up to identify the optimal dose of the combination of paclitaxel (Taxol; Bristol-Myers Squibb Company, Princeton, NJ) and carboplatin for phase II studies in patients with advanced chemotherapy-naive non-small cell lung cancer (NSCLC). The influence of drug sequence on the toxicity and pharmacokinetics of both agents was also assessed. To develop an ambulatory regimen for palliation of advanced NSCLC, paclitaxel was infused over 3 hours with standard premedication and carboplatin over 30 minutes. Cycles were repeated every 4 weeks. At each dose level, at least six patients were randomized to receive either paclitaxel followed by carboplatin or the reverse sequence. In the second and following cycles the alternate sequence was administered. The pharmacokinetics of both paclitaxel and carboplatin were compared in the first two cycles in at least two patients per dose level. Sixty-two patients have been entered in this study. Paclitaxel was increased from 100 mg/m2 in 25 mg/m2 increments up to a maximum of 225 mg/m2 combined with a fixed carboplatin dose (300 mg/m2). Thereafter, the drug doses were increased to a maximum of 400 mg/m2 carboplatin and 250 mg/m2 paclitaxel. In 243 cycles, the most frequent side effects were neutropenia, alopecia, and mild emesis. Only one patient developed a major hypersensitivity reaction to paclitaxel. Bone pain, myalgia, and peripheral neurotoxicity occurred more frequently at paclitaxel doses above 200 mg/m2. No significant differences in toxicity or in the pharmacokinetics of either drug were observed between the two drug sequences. The pharmacokinetics of paclitaxel were nonlinear and consistent with saturation. At the highest paclitaxel dose (250 mg/m2 with carboplatin 350 mg/m2) a toxic death due to severe leukopenia, thrombocytopenia, and hemorrhage occurred. Safe doses for phase II trials in untreated NSCLC are 200 mg/m2 paclitaxel with 300 mg/m2 carboplatin. Of 50 evaluable patients, five of the six major responses were observed at paclitaxel doses of 175 mg/m2 and above, which suggests a dose-response relationship for paclitaxel in NSCLC.
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PMID:Dose-finding and sequencing study of paclitaxel and carboplatin in non-small cell lung cancer. 754 30

Paclitaxel (Taxol; Bristol-Myers Squibb Company, Princeton, NJ) given as a 24-hour infusion, and carboplatin have activity in advanced non-small cell lung cancer (NSCLC) and ovarian cancer. Two dose-finding studies were initiated to identify the optimal doses for the paclitaxel/carboplatin combination when paclitaxel is given in a 3-hour infusion. The fact that the pharmacologic interaction between paclitaxel and cisplatin increases the toxicity of paclitaxel when cisplatin is given before it also prompted an investigation of the influence of drug sequence on toxicity and pharmacokinetics in the NSCLC trial. Thirty-three patients with advanced NSCLC and 11 with advanced ovarian cancer previously untreated by chemotherapy have been enrolled to date. In the NSCLC trial escalating doses of paclitaxel were given in combination with a fixed carboplatin dose of 300 mg/m2, while both drugs were escalated in the ovarian cancer study. In both studies paclitaxel was infused over 3 hours and carboplatin over 30 minutes, and cycles were repeated every 4 weeks. The most frequent side effect has been neutropenia, although this did not result in any infectious episodes. Alopecia and mild emesis also have been frequently encountered. Mild skin reactions have been reported in a few patients. Bone pain and myalgia occur more frequently at the highest paclitaxel doses. No difference in toxicity has been observed thus far between the two drug sequences in the NSCLC study. Both studies are still accruing patients as the maximum tolerated doses of paclitaxel in combination with carboplatin have not yet been reached (carboplatin 300 mg/m2 with paclitaxel 175 mg/m2 in the NSCLC study; carboplatin 400 mg/m2 with paclitaxel 150 mg/m2 in the ovarian cancer study). An investigation of maximum tolerated doses with granulocyte colony-stimulating factor support is planned thereafter.
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PMID:Preliminary results of two dose-finding studies of paclitaxel (Taxol) and carboplatin in non-small cell lung and ovarian cancers: a European Cancer Centre effort. 793 61

A dose-finding study was performed in 27 ovarian cancer patients to define the maximum tolerated dose of a 3-hour infusion of paclitaxel (Taxol; Bristol-Myers Squibb Company, Princeton, NJ) in combination with a fixed dose of carboplatin. The median age of the patients was 55 years (age range, 30 to 74 years), the median performance status was 0 (range, 0 to 2), and the sizes of tumors residual to first surgery were identified as > or = 1 cm (14 patients) or less than 1 cm (13 patients). All patients received carboplatin at a fixed dose of 300 mg/m2 over 1 hour. Paclitaxel was administered as a 3-hour infusion at five dose levels, starting at 150 mg/m2 and increasing in 25 mg/m2 increments to 250 mg/m2. In the absence of toxicity, courses were repeated every 4 weeks for a total of six cycles. Mild emesis, general alopecia, and moderate myalgias occurred. Hypersensitivity and cardiotoxicity were observed in 7.4% and 14.8% of patients, respectively. Moderate peripheral neuropathy was experienced by 30% of patients. Grade 3 and 4 neutropenia lasted less than 7 days; no patients required hospitalization for sepsis or febrile neutropenia, and no supportive treatment with granulocyte/granulocyte-macrophage colony-stimulating factor was needed. Twenty-one patients were evaluable for response. Overall response rate (complete response+partial response) was 81%, and responses were observed at all paclitaxel dose levels. The maximum tolerated dose was not achieved. In conclusion, with a fixed dose (300 mg/m2) of carboplatin, paclitaxel can be administered by 3-hour infusion at 250 mg/m2 with manageable toxicity and no supportive care is needed.
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PMID:Pilot study with fixed-dose carboplatin and escalating paclitaxel in advanced ovarian cancer. 855 81

Phase II study results demonstrating high efficacy and low toxicity for a weekly schedule of high-dose 5-fluorouracil/folinic acid (5-FU/FA) in intensively pretreated metastatic breast cancer patients prompted the addition of paclitaxel (Taxol; Bristol-Myers Squibb Company, Princeton, NJ) to this regimen in a phase I/II trial in outpatients: high-dose 5-FU (24-hour infusion)/FA (2-hour infusion preceding 5-FU) is given for 6 weeks (days 1, 8, 15, 22, 29, and 36), with paclitaxel (3-hour infusion) administered on days 1 and 22; 2 weeks' rest follows. Folinic acid 500 mg/m2 was administered throughout; the respective 5-FU doses for dose levels 1 through 3 were 1.5, 1.8, and 2.0 g/m2 with paclitaxel 135 mg/m2. Dose level 4 (500 mg/m2 FA, 2.0 g/m2 5-FU, and 175 mg/m2 paclitaxel) was chosen for phase II evaluation. To date, 46 patients with bidimensionally measurable disease (four each at dose levels 1, 2, and 3, and 34 at dose level 4) have been entered. The 12 patients treated at dose levels 1 through 3 were titrated to level 4 doses when phase II began; 35 patients are evaluable for response. The median age is 46 years, and the median number of metastatic sites is 2.5. Fourteen patients had received adjuvant chemotherapy, nine chemotherapy for metastasis, and 23 chemotherapy both adjuvantly and for metastasis. Of 31 anthracycline-treated patients, 27 had anthracycline-resistant disease. No dose-limiting toxicity appeared until dose level 4, when grade 3 or 4 leukopenia and diarrhea occurred in 15 and eight, respectively, of 108 cycles. Mild to moderate mucositis, hand-foot syndrome, myalgia, and nausea/vomiting occurred in 20% to 40% of cycles. One (3%) of the 35 patients had a complete response, 18 (51%) had partial responses, 14 (40%) had stable disease, and two (6%) had disease progression. Eleven (55%) of 20 evaluable patients with anthracycline-resistant disease responded (95% confidence interval, 34% to 76%). Median time to maximum response was 2 months, and the remission duration was 8+ months. Median survival time has not been reached. Paclitaxel and weekly high-dose 5-FU/FA was well tolerated and highly effective, even in patients with anthracycline-resistant metastatic breast cancer. The regimen can be administered safely to outpatients.
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PMID:Phase I/II study with paclitaxel in combination with weekly high-dose 5-fluorouracil/folinic acid in the treatment of metastatic breast cancer: an interim analysis. 855 83

The activity of single-agent paclitaxel (Taxol; Bristol-Myers Squibb Company, Princeton, NJ) has been documented in untreated and previously treated metastatic breast cancer, including both patients with anthracycline-resistant disease and those with extensive pretreatment. Such activity has prompted investigations of the optimal doses and schedules of paclitaxel/doxorubicin combinations. With one exception, paclitaxel has been administered as either a 24- or a 3-hour infusion, while the administration times for doxorubicin vary from bolus injection to 72-hour infusion. Results of these completed phase I and II trials are reviewed. Also reported are two European trials that have achieved promising results. In Milan, a phase I/II trial has shown a preliminary response rate exceeding 90% in 32 chemotherapy-naive patients treated with an alternating schedule of paclitaxel given over 3 hours and intravenous bolus doxorubicin. At doses of paclitaxel 200 mg/m2 and doxorubicin 60 mg/m2, the dose-limiting toxicities were neutropenia, oral mucositis, myalgias, and peripheral neuropathy. Congestive heart failure occurred in six patients. A phase I/II study of a 30-minute doxorubicin infusion preceding a 3-hour paclitaxel infusion every 3 weeks in minimally pretreated patients also is reported. Of 29 patients evaluable for response, 17 have achieved partial responses and seven complete responses, for an overall response rate of 83% (95% confidence interval, 79% to 99%). Toxicities observed were grades 3 to 4 neutropenia and moderate paresthesias, nausea/vomiting, alopecia, myalgia, and mucositis. Cardiotoxicity also occurred, as 15 patients had a significant decrease in left ventricular ejection fraction measured by isotope cardiography. Six of these developed congestive heart failure. This effect has been observed only in studies using short infusions of both drugs, and it is now being investigated whether lowering the peak doxorubicin concentration will preclude it.
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PMID:Paclitaxel and doxorubicin, a highly active combination in the treatment of metastatic breast cancer. 862 30

Paclitaxel (Taxol; Bristol-Myers Squibb Company, Princeton, NJ) is an effective drug in the treatment of metastatic breast cancer (MBC). In the salvage setting, 5-fluorouracil (5-FU) and folinic acid have proved to be effective against MBC as well. Recent preclinical data suggest that paclitaxel plus 5-FU has additive cytotoxicity. Given these observations, we initiated a phase II trial in which 38 women with MBC have been treated with a combination of all three drugs. All patients are currently evaluable for toxicity and 34 are evaluable for response. All women had histologically proven and assessable disease. Patients with prior exposure to paclitaxel were ineligible. Patient characteristics include a median age of 51 years (age range, 31 to 73 years) and a median performance status of 1 (range, 0 to 2). Thirty-three patients have received prior chemotherapy, of whom 23 had adjuvant chemotherapy only. Fifty-eight percent of the patients (22 of 38) had received prior doxorubicin or mitoxantrone; four patients had only hormonal therapy. Four patients had bone-only disease, and three patients had lymphangitic spread or cytologically positive pleural effusion as the only evaluable disease. Treatment consisted of paclitaxel 175 mg/m2 over 3 hours (day 1 only), followed by folinic acid 300 mg over 1 hour, followed by 5-FU 350 mg/m2 on days 1 to 3. Patients received standard paclitaxel premedications. To date, 175 cycles have been administered (median cycle length, 29 days; median number of cycles per patient, five). Toxicities included grade 3/4 infections in nine cycles (5%), grade 3/4 mucositis in three cycles, grade 3/4 nausea/vomiting in three cycles, grade 1 paresthesias in 12 patients (32%), alopecia 100%, and 17 cycles (10%) associated with dose reduction. Based on Cancer and Leukemia Group B toxicity criteria, arthralgia/myalgias were modest and graded mild (32 cycles), moderate (nine cycles), or severe (two cycles). There were two major hypersensitivity reactions, prompting removal of those patients from further protocol treatment. Four patients are unassessable for response due to hypersensitivity reactions (two) and unevaluable disease (two). Among the 34 patients evaluable for response, there were three complete responses, 18 partial responses, one minor response, nine stable disease, and three progressive disease (response rate, 62%). Responses were seen in patients who had received prior doxorubicin or mitoxantrone (11 of 22 patients) and in anthracycline/naive patients (10 of 16 patients). Responses were observed in all metastatic sites: soft tissue, viscera, and bone. Paclitaxel/5-FU/folinic acid appears to be an effective and well-tolerated outpatient regimen for women with MBC, even after failure of anthracycline-containing therapy.
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PMID:Paclitaxel and 5-fluorouracil in metastatic breast cancer: the US experience. 862 38

We evaluated the activity and toxicity of two sequences of taxol combined with vinorelbine in disseminated malignant melanoma, metastatic beyond regional lymph nodes. Fifteen previously untreated patients, nine males and six females (median age 56 years), were enlisted between May 1994 and February 1995. Eight patients received vinorelbine 30 mg/m2 (maximum dose 50 mg) first, follow 24 h later by taxol 120 mg/m2 (maximum dose 240 mg) infused over 3 h (the V/T sequence). Seven patients received the reverse (T/V) sequence. In 79 administered courses there were no anaphylactic episodes, the main toxicity being alopecia (WHO grade 3). Significant neutropenia, emesis or neuropathy was not observed in either schedule (WHO grades 0 or 1). Three major responses, all with the V/T sequences, were seen; one complete (CR) in nodal and cutaneous sites lasting 13 months and two partial (PR), omental, ascites in one and hepatic, splenic and nodal in the other, lasting 7 and 6 months, respectively. Clinically meaningful tumor regressions, not qualifying strictly for the criteria of major response, were observed in two additional patients in the T/V sequence. Taxol combined with vinorelbine is active against disseminated malignant melanoma. The importance of sequencing the two drugs remains to be determined with accrual of more patients into the study.
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PMID:Taxol and vinorelbine: a new active combination for disseminated malignant melanoma. 874 Jul 20

Paclitaxel (Taxol; Bristol-Myers Squibb Company, Princeton, NJ) is active against advanced breast cancer and anthracycline-resistant breast cancer. We assessed the efficacy and toxicity of doxorubicin followed by a 3-hour infusion of paclitaxel in women with advanced breast cancer. Participants could have received at most one prior adjuvant chemotherapy regimen, but no previous exposure to anthracyclines or taxanes was permitted. The patients were treated every 3 weeks with doxorubicin (50 or 60 mg/m2) followed 30 minutes later by paclitaxel (155, 175, or 200 mg/m2). After reaching the maximum cumulative doxorubicin dose, treatment could be continued with paclitaxel alone. Thirty women were included, of whom 29 were evaluable for response. The overall response rate was 83% (95% confidence interval, 64% to 94%), with 24% of patients attaining complete remission. Median response duration for complete responders was 8+ months (range, 4 to 13 months) and median time to progression was 9 months (range, 2 to 18 months). Main toxicities were neutropenia, paresthesia, nausea/vomiting, alopecia, myalgia, and cardiotoxicity. In 15 patients (50%), the left ventricular ejection fraction decreased to below normal levels; six patients (20%) developed congestive heart failure. In conclusion, the combination of doxorubicin and paclitaxel is highly active; dose-limiting toxicities are neutropenia, neuropathy, and cumulative cardiotoxicity.
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PMID:Doxorubicin and paclitaxel, a highly active combination in the treatment of metastatic breast cancer. 889 95


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