Gene/Protein Disease Symptom Drug Enzyme Compound
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Query: UMLS:C0027947 (neutropenia)
17,527 document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)

Thirty-nine women with advanced, recurrent epithelial ovarian carcinoma who failed prior treatment with a platinum-based regimen were treated with leucovorin, 20 mg/m2 intravenously followed by 5-fluorouracil, 425 mg/m2 intravenously, daily for 5 consecutive days every 5 weeks in a phase II trial. Partial regressions were seen in 3 of 15 (20%) measurable disease patients, and objective regressions were seen in 3 of 14 (21%) evaluable/nonmeasurable disease patients. A 50% or greater decrease in CA-125 level was observed in 3 of 10 (30%) patients with no objectively evaluable or measurable disease. Overall objective response rate was 23% (95% confidence interval: 11 to 39%) in all 39 patients evaluated, with a median time to progression of 3 months and overall median survival of 7 months. Toxicities were acceptable and consisted of neutropenia, thrombocytopenia, stomatitis, and mild diarrhea. 5-Fluorouracil, as administered in this protocol, had modest antitumor activity in cisplatin-refractory ovarian carcinoma of short duration and minimal toxicity.
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PMID:Phase II evaluation of 5-fluorouracil and low-dose leucovorin in cisplatin-refractory advanced ovarian carcinoma. 806 43

Thirty-eight women with epithelial ovarian cancer were treated with gemcitabine, a new antimetabolite. All had previously received platinum, and 27 had also received paclitaxel. Four patients had a partial response giving a response rate of 13% in assessable patients (n = 31) and 11% for all patients entered. Additionally, 6 patients had stable disease with >50% reduction in CA-125 for at least 3 months. Activity was seen in patients resistant to both platinum and paclitaxel. Gemcitabine was well tolerated, with uncomplicated neutropenia the main hematological toxicity. Nonhematological toxicities were generally mild and included fatigue, myalgias, and skin rash. Gemcitabine has some activity in heavily pretreated ovarian cancer patients and deserves further investigation in this malignancy.
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PMID:Activity of gemcitabine in patients with advanced ovarian cancer: responses seen following platinum and paclitaxel. 889 75

CI-980 is a synthetic mitotic inhibitor that binds to the colchicine binding site of tubulin. It demonstrates broad activity against human and murine tumor models and shows no cross resistance with tumor models whose mechanism of resistance is mediated by P-glycoprotein (MDR-1). A phase I study was completed in 25 patients with solid tumors using a 24-hour infusion schedule, with courses repeated every 3 weeks. Eight dose levels were tested between 1.2 and 15.6 mg/m2. The maximum tolerated dose was 14.4 mg/m2. Neutropenia was dose-related but not dose-limiting; thrombocytopenia was infrequent. CNS toxicities were dose-limiting and consisted of dizziness, headache, loss of coordination, loss of consciousness, nervousness, and other symptoms. These events occurred near the end of the infusion and were reversible, usually within 24 hours. One patient who was to be treated at dose level 8 (intended dose was 19.2 mg/m2; actual dose was 15.6 mg/m2) became encephalopathic prior to completion of the infusion. Other adverse events included gastrointestinal toxicities (nausea, vomiting, anorexia, constipation, stomatitis, dyspepsia, bleeding, cheilitis), IV site erythema, fever, and fatigue. A partial response was observed in one patient with colon cancer and reductions in CA-125 levels were observed in 2 patients with ovarian cancer. Pharmacokinetics were linear and dose-proportional. Results indicate high systemic clearance and wide tissue distribution. Mean pharmacokinetic parameter values: T1/2 = 5.52 hours, plasma clearance 1163 mL/min/m2, and Vdss 376 L/m2.
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PMID:A phase I trial and pharmacokinetic evaluation of CI-980 in patients with advanced solid tumors. 938 46

In the human clonogenic assay, mitoxantrone possesses among the steepest dose-response curves of any cytotoxic agent against ovarian cancer. To test the potential clinical relevance of this observation, we conducted a phase 2 trial of moderately high dose single agent mitoxantrone (28 mg/m2 delivered every 3-4 weeks) along with granulocyte-macrophage colony stimulating factor (250 micrograms/m2/day beginning 24 h after mitoxantrone and continuing until neutrophil recovery) in 34 patients with clinically defined platinum and paclitaxel-refractory ovarian cancer. The major toxicity of treatment was severe neutropenia which was almost universal. However, there were no treatment-related infectious deaths. Significant cardiac toxicity was not observed. Five of 33 evaluable patients demonstrated objective evidence of a response to treatment (1 patient achieving a partial response of measurable tumor masses, 4 patients achieving a > or = 50% reduction in CA-125 antigen level), with a median duration of response of 3 months (range 2-5 months). We conclude that moderately high dose mitoxantrone has definite, although very limited, single agent activity in platinum and paclitaxel-refractory ovarian cancer. Unfortunately, as this regimen produces severe hematologic toxicity and response durations are short, it cannot be recommended for routine clinical use. The role of an even higher dose mitoxantrone schedule employed as a component of a high dose chemotherapy program with bone marrow or peripheral progenitor cell protection in the treatment of ovarian cancer remains to be defined.
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PMID:Phase 2 trial of moderately high dose single agent mitoxantrone in platinum and paclitaxel-refractory ovarian cancer. 969 88

Our objective was to determine the maximum tolerated dose of cyclosporin A (CsA) delivered as a loading dose (LD) and continuous i.v. infusion (CI) in combination with carboplatin in patients with refractory gynecologic cancers. Twenty-nine heavily pretreated patients (25 ovarian epithelial, 2 cervical, and 2 endometrial carcinomas) received 113 cycles of CsA and carboplatin from September 1989 to September 1991. Twenty-four of these 29 carcinomas were strictly defined to be platinum resistant. CsA was administered as a LD escalated from 6 to 10 mg/kg followed by a 24-h CI from 2.5 to 14.5 mg/kg/day. Carboplatin was targeted to an area under the time versus concentration curve (AUC) of 6 mg/ml x min and was not dose escalated. Whole-blood CsA concentrations (fluorescence polarization immunoassay) at the maximum tolerated dose (10 mg/kg LD, 14.5 mg/kg/day CI) ranged from 2.4 to 3.0 microgram/ml over 12 h. Estimated median carboplatin AUC, based on calculated carboplatin clearance, was 7.9 mg/ml x min. The dose-limiting toxicity of the combination of CsA and carboplatin was grade 4 thrombocytopenia. Grade 3 or 4 thrombocytopenia occurred in 35% of the patients, which could be explained by the effects of carboplatin (AUC of 6 mg/ml x min) alone. Overall, neutropenia occurred in 24% of the patients and anemia in 17% of the patients. Grade 3 or 4 nausea or vomiting was noted in 10 and 14% of the patients, respectively. Grade 3 hypertension during CsA administration occurred in 14% of the patients. No grade 3 or 4 nephrotoxicity was seen in this trial. Three objective responses were noted: one complete response (11 months) and one partial response (5 months), both in potentially platinum-sensitive patients with platinum-free intervals of only 9 months each. One platinum-resistant patient had a partial response for 21 months. Five additional patients experienced >75% reduction of CA-125 or a return to a normal CA-125 titer. We concluded that whole-blood CsA concentrations of >3.0 microgram/ml (as seen when CsA is used as a modulator of multidrug resistance) were not achievable in this combination with carboplatin in this population of heavily pretreated gynecologic cancer patients. However, because CsA is used in this trial as a chemosensitizer in platinum-sensitive tumors and as a chemomodulator of platinum resistance, we targeted a CsA concentration of >1.0 microgram/ml, which was achieved. The CsA dose recommended for a Phase II trial of this combination is 10 mg/kg LD and 11.6 mg/kg/day CI, which results in blood CsA concentrations ranging from 1.2 to 1.3 microgram/ml over 12 h. Responses in this population of refractory gynecologic cancer patients are unusual, and these encouraging results form the basis for a Phase II trial of this combination.
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PMID:Phase I trial of intravenous carboplatin and cyclosporin A in refractory gynecologic cancer patients. 981 19

The effect of topotecan on CA-125 serum levels was evaluated in 30 patients with advanced epithelial ovarian cancer. All patients had progressive disease and were relapsing during (11 patients) or after (19 patients) chemotherapy containing paclitaxel and platinum. Topotecan (1.0 mg/m(2)/day) was administered intravenously on Days 1-5 every 3 weeks. The patients had received a median of 2 (1-5) prior regimens. Four patients had increased CA-125 only, and 26 had both measurable disease and increased CA-125. Two patients (7%) achieved a clinical partial response with durations of 5 and 10+ months, respectively. Eighteen other patients (60%) exhibited no clinical change with a median duration of 5+ months (range: 2-11+ months). Among these patients 9 (30%) had a biochemical response. The rate of change in CA-125 (s, slope of the exponential regression curve) during treatment with topotecan was compared with s over a period before treatment. A decrease in s was observed in 20 patients (74%). Comparing the mean values of s before and during topotecan, a significant (P = 0.005) decrease was seen in the CA-125 serum levels. The mean doubling times before and during treatment were 59 and 1421 days, respectively. Toxicity was mainly hematologic. Neutropenia grades III and IV were seen in 16 and 10 patients, respectively. No patients died due to side effects. Generally the side effects were mild to moderate. In conclusion, at the given dose intensity topotecan shows activity in advanced paclitaxel- and platinum-resistant ovarian cancer based on CA-125 measurements.
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PMID:Effect of topotecan on serum CA-125 in patients with advanced epithelial ovarian cancer. 1083 46

A phase I study was performed to determine the maximum tolerated doses of intravenous etoposide and paclitaxel for women with previously treated persistent or recurrent ovarian cancer. Starting doses were paclitaxel 135 mg/m2 during 24 hours and etoposide 50 mg/m2/day for 3 consecutive days. The study was designed to escalate first the dose of etoposide, and then the dose of paclitaxel, in successive cohorts of patients. In an attempt to determine whether toxicity was affected by sequence of the drugs, the order of administration of the two drugs was reversed on alternate cycles. The starting doses of paclitaxel (135 mg/m2/24 hours) and etoposide (50 mg/m2/day x 3) caused severe neutropenia even with the addition of granulocyte colony-stimulating factor, and the trial was amended to administer the paclitaxel during 3 hours. However, this also proved too myelosuppressive without growth factor support. Twenty-one women were treated. A complete response was observed in one of nine patients with measurable disease, and a major decrease in CA-125 was noted in two patients who did not have measurable disease. Because of the severe myelosuppression observed in most patients, dose reduction was often required after the first cycle. The power to detect sequence-dependent variation in toxicity was minimal; however, no large differences were observed. A combination of the usual doses of these drugs will be difficult to administer in patients who have received previous chemotherapy for ovarian cancer.
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PMID:Phase I trial of paclitaxel and etoposide for recurrent ovarian carcinoma: a Gynecologic Oncology Group Study. 1120 8

Both ifosfamide and vinorelbine have been shown to produce responses in women with previously treated ovarian cancer. However, vinorelbine has been reported to cause severe neuropathy in patients previously treated with paclitaxel. We assessed a regimen consisting of ifosfamide 1.6 g/m2/d and vinorelbine 30 mg/m2/d for 3 days consecutively every 21 days. Because these doses resulted in severe neutropenia despite the use of granulocyte colony-stimulating factor, doses were reduced to a final level of ifosfamide 960 mg/m2/d and vinorelbine 20 mg/m2/d. Peripheral sensory neuropathy was evaluated by questionnaire. A total of 30 women were treated. All had previously been treated with both a platinum compound and paclitaxel. One partial response was observed among 23 patients with measurable disease, and two CA-125 responses were noted among seven patients without measurable disease. Severe progressive neurotoxicity was not observed. Despite the fact that almost half the patients had not been exposed to cyclophosphamide, this regimen produced few responses. Superior response rates have been reported with single-agent vinorelbine at doses that do not require growth factor support. With this dose and schedule, vinorelbine is reasonably safe therapy for patients who have received prior paclitaxel and who have have mild baseline sensory neuropathy.
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PMID:Absence of major peripheral neuropathy in a phase II trial of ifosfamide with vinorelbine in patients with ovarian cancer previously treated with platinum and paclitaxel. 1123 50

Gemcitabine has activity in advanced ovarian cancer, with responses in platinum-resistant disease. This study assessed the activity of gemcitabine in previously untreated patients with advanced epithelial ovarian cancer. All patients had histologically verified invasive epithelial ovarian cancer, International Federation of Gynecology and Obstetrics (FIGO) stage III/IV disease and no prior chemotherapy. Patients received gemcitabine 1250 mg/m(2) on days 1, 8 and 15 of a 28-day cycle. Radiological response was assessed after two cycles. Between December 1992 and October 1995, 35 patients were enrolled. Of 33 evaluable patients, there was one complete response and five partial responses, for an overall response rate of 18% (95% confidence interval 7-36%). Forty-two percent of patients had a greater than 50% decrease in their CA-125 levels. Of the 25 patients who received platinum-based chemotherapy following treatment with gemcitabine, 12 achieved an overall response rate of 48%. Toxicity was mild, with two episodes of WHO grade 4 neutropenia (not associated with fever) and two episodes of grade 4 thrombocytopenia (not associated with bleeding). Gemcitabine has single-agent activity for poor-prognosis patients with advanced ovarian cancer. Similar results with subsequent platinum-based therapy indicate a lack of cross-resistance. This, combined with gemcitabine's favorable toxicity profile, warrants testing in comparative trials.
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PMID:Multicenter phase II study of gemcitabine in previously untreated patients with advanced epithelial ovarian cancer. 1160 51

Topotecan has demonstrated antitumor activity in heavily pretreated patients with ovarian carcinoma. This report examines the activity and toxicity of topotecan in 29 heavily pretreated patients with recurrent ovarian, peritoneal, and fallopian tube carcinoma. Topotecan 1.5 mg/m2 was administered intravenously on days 1-5, every 21 days. It was second-line chemotherapy in 6 (20.7%) patients, third-line in 15 (51.7%), fourth-line in 4 (13.8%), fifth-line in 3 (10.3%), and seventh-line in 1 (3.4%). Median dose intensity was 1.667 mg/m(2)/week, and median relative dose intensity was 0.67. Disease complete response was observed in 5 (17.2%) patients, partial response in 1 (3.4%), stable disease in 12 (41.4%), and progressive disease in 11 (37.9%). CA-125 complete response was observed in 3 (10.3%) patients, partial response in 11 (37.9%), stable level in 5 (17.2%), and progressive level in 9 (31%), and no data were available in 1 (3.4%) patient. Toxicity was mainly hematologic: grade 3-4 neutropenia was observed in 20 (69%) patients, grade 3-4 leukopenia in 12 (41.4%), grade 3-4 thrombocytopenia in 9 (31%), and grade 3-4 anemia in 2 (6.9%). It is concluded that topotecan has considerable activity and noncumulative hematologic toxicity in heavily pretreated patients with recurrent ovarian, peritoneal, and fallopian tube carcinoma.
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PMID:Topotecan in heavily pretreated patients with recurrent ovarian, peritoneal, and fallopian tube carcinoma. 1601 14


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