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)

This study was designed to determine the safety and efficacy of the combination therapy of gemcitabine plus carboplatin when used as a second-line treatment in patients with metastatic breast cancer (MBC). From February 2002 to May 2003, 30 previously treated patients with adenocarcinoma of the breast received gemcitabine 1000 mg/m2 on days 1 and 8 plus carboplatin to an area under the curve (AUC) of 5 on day 1. The carboplatin dose was changed to an AUC of 4.5 because of toxicity, with cycles repeated every 3 weeks. Among 30 patients enrolled, 25 were assessable for response rate (RR). There was no complete response; 9 patients (30%) had partial response, for an overall RR of 30%. The median time to progression for the study group was 20.47 weeks (range, 8-46 weeks). Treatment-related toxicities included grade 3/4 neutropenia in 50% of patients (20% of whom had febrile neutropenia), grade 3/4 anemia in 26.6% of patients, and grade 3/4 thrombocytopenia in 30%. Eleven patients (36.67%) had grade 1 alopecia, and 1 patient (3.33%) had grade 2 alopecia. Moderate nausea was observed in 8 patients (26.67%), and vomiting occurred in 7 patients. Four patients had asthenia and 3 (10%) experienced stomatitis. Three patients discontinued treatment because of hematologic toxicity (thrombocytopenia) and 2 patients are still receiving treatment. Carboplatin plus gemcitabine is an active combination for patients with MBC despite significant but manageable hematologic toxicity.
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PMID:Gemcitabine plus carboplatin combination therapy as second-line treatment in patients with relapsed breast cancer. 1524 14

DHA-paclitaxel is a conjugate of paclitaxel and the fatty acid, docosahexaenoic acid. Preclinical studies have demonstrated increased activity, relative to paclitaxel, with the potential for an improved therapeutic ratio. We conducted a phase I study to determine the maximum tolerated doses of DHA-paclitaxel and carboplatin when administered in combination. Two cohorts of patients were treated: carboplatin AUC 5 with DHA-paclitaxel 660 mg m(-2) and carboplatin AUC 5 with DHA-paclitaxel 880 mg m(-2). Both drugs were given on day 1 every 21 days. A total of 15 patients were enrolled with a median age of 59 years (range 33-71). All patients had advanced cancer refractory to standard treatment, performance status 0-2 and were without major organ dysfunction. A total of 54 cycles of treatment were delivered. No dose-limiting toxicity (DLT) was seen in the first cohort of three patients. In an expanded second cohort, neutropenia was the main DLT, occurring in the first cycle of treatment in five of 12 patients: three of these patients and one additional patient also experienced dose-limiting grade 3 transient rises in liver transaminases. No alopecia was seen and one patient developed clinically significant neuropathy. One partial response was seen in a patient with advanced adenocarcinoma of the oesophago-gastric junction and 12 patients had stable disease with a median time to progression of 184 days (range 60-506 days). The recommended phase II dose in pretreated patients is Carboplatin AUC 5 and DHA-paclitaxel 660 mg m(-2) given every 21 days. Further studies with Carboplatin AUC 5 and DHA-paclitaxel 880 mg m(-2), given every 28 days, are warranted in chemo-naive patients.
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PMID:Phase I/II study of DHA-paclitaxel in combination with carboplatin in patients with advanced malignant solid tumours. 1549 16

Concurrent chemoradiotherapy plays an important role in the treatment of unresectable NSCLC. This phase II study was conducted to evaluate the efficacy and toxicity of paclitaxel (PTX) and carboplatin (CBDCA) at a recommended dose, based on other previous phase I studies. Twenty-two unresectable stage III NSCLC patients participated in this trial. Of those 22 patients, 19 were evaluable, with a median age of 57 (with ages ranging between 42 and 74), in stages IIIA/IIIB: 6/13. Every patient displayed adequate organ functions. Treatment consisted of a 1-hour i.v. infusion of 50 mg/m2 of PTX followed by a half-hour infusion of CBDCA AUC 2 administered weekly concurrently with radiation treatment, every first day of those weeks in which the patient underwent radiotherapy. Concurrent thoracic radiation therapy was performed in daily doses of 2 Gy to a total dose of 66 Gy over a period of 6.5 weeks. After completion of chemoradiotherapy, consolidation chemotherapy was administered via a 3-hour i.v. infusion of 175 mg/2 PTX on days 1 and 22, in combination with a 1-hour i.v. infusion of CBDCA AUC 6 on days 1 and 22, q 4 weeks for 4 cycles. The overall response rate was 78.9% (95% CI: 62-87.7) with 5 CR (26.3%), 10 PR (52.6%), 2 SD (15.8%), and 1 PD (5.3%). The median survival rate of the patients was 13.9 months, and the 1-year survival rate was 65.1%. Toxicity was moderate: grade 2 neutropenia was seen in 8, and grade 3 neutropenia in 5 patients. Grade 2 thrombocytopenia was seen in 3 patients, and grade 3 thrombocytopenia was not observed. Nonhematologic toxicities were moderate: esophagitis was the most common, and significant toxicity was noted in this study (89.4%). Grade 1 asthenia/fatigue was observed in 5, and grade 2 asthenia/fatigue in 3 patients; furthermore, grade 1 peripheral neuropathy was seen in 4 of the cases and grade 2 peripheral neuropathy in 3 of the cases. Concurrent chemoradiotherapy with weekly PTX/CBDCA, followed by consolidation chemotherapy with the same regimen in patients with stage III unresectable NSCLC is feasible and well tolerated.
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PMID:Preliminary results of a phase II study of weekly paclitaxel (PTX) and carboplatin (CBDCA) administered concurrently with thoracic radiation therapy (TRT) followed by consolidation chemotherapy with PTX/CBDCA for stage III unresectable non-small-cell lung cancer (NSCLC). 1557 39

This study was designed to evaluate the tolerability and therapeutic activity of paclitaxel and carboplatin combination therapy followed by radical thoracic radiotherapy with a concomitant boost technique with concurrent weekly paclitaxel in good performance status of patients with stage IIIA and IIIB non-small cell lung cancer. Patients with newly diagnosed inoperable non-small cell lung cancer received paclitaxel (100 mg/m(2)) as a 1-h infusion on d 1,8,15,28,35, and 42. Carboplatin (area under the curve of 6) was given as a 30-min infusion on d 1 and 28. Radiotherapy commenced on d 49 and was delivered with accelerated fractionation with concomitant boost at 1.8 Gy/fraction/d, 5 d/week and 1.5 Gy/fraction/d to a boost field as a second daily treatment for the last 10 treatment days to 60 Gy/35 fractions/5 wk. During radiation treatment, paclitaxel (60 mg/m(2)) was given as a 1-h infusion once weekly for 5 wk. Twenty-four patients were enrolled in the study. Hematologic toxicities and alopecia were the major acute toxicities during induction chemotherapy; 8.7% of the patients experienced grade 3-4 neutropenia and alopecia. The main acute toxicity of concurrent chemoradiotherapy was esophagitis; grade 3 esophagitis was documented in 23.5% of the patients. No major late toxicity was seen. Overall response rate to the treatment was 65.2%. The median and 1-yr overall-survival rates were 24.9 mo and 63.8%, respectively. The median and 1-yr progression-free survival rates were 9.0 mo and 27.8%, respectively. The main acute toxicities were hematologic toxicity, esophagitis, and alopecia. The response rate and the survival rates achieved with this treatment regimen are particularly noteworthy, especially considering the advanced stage of the patients treated.
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PMID:Induction and concurrent chemotherapy with concomitant boost radiotherapy in non-small cell lung cancer. 1626 Aug 54

The therapeutic efficacy and adverse reactions were compared between 14 patients who received TJ therapy using paclitaxel (PTX) and carboplatin (CBDCA) and 39 who received CAP therapy using cyclophosphamide (CPA), doxorubicin (DXR) and cisplatin (CDDP) as postoperative chemotherapy for cancer of the uterine body. In TJ therapy, PTX (175 mg/m(2)) and CBDCA (AUC 5) were administered on Day 1 (every 3 weeks), while in CAP therapy, CPA (500 mg/m(2)), DXR (40 mg/m(2)) and CDDP (50 mg/m(2)) were administered on Day 1 (every 4 weeks). Grade 3 or more severe hematotoxicity included leukocytopenia (incidence in the TJ and CAP groups: 71.4% and 64.1%, respectively), neutropenia (100%, 87.1%), thrombocytopenia (0%, 12.8%), and anemia (0%, 20.5%). No significant differences were noted between the two groups. Grade 3 or severe non-hematologic toxicities included nausea (0%, 15.4%) and vomiting (0%, 12.8%) with significantly higher incidence in the CAP therapy group (p=0.0000736, p=0.000736), peripheral sensory disturbance (7.1%, 0%) and arthralgia (7.1%, 0%) with significantly higher incidence in the TJ therapy group (p=0.00129, p=0.00000538). The survival rate and disease-free survival rate showed no significant differences between the two groups. TJ therapy is thought to be as effective as CAP therapy, and can be safely conducted, although precautions are required regarding arthralgia and neuropathy.
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PMID:[Adjuvant chemotherapy of paclitaxel plus carboplatin in uterine corpus cancer--comparison with cisplatin, adriamycin plus cyclophosphamide]. 1683 85

The current initial standard chemotherapy for advanced ovarian cancer is a regimen with a combination of platinum and taxane. However, the 5-year survival rate remains at 40% or lower, and the recurrence rate is as high as 70-80%. Second-line chemotherapy for recurrent cases has not yet been established. We conducted a phase I study of combined chemotherapy with paclitaxel (TXL) and carboplatin (CBDCA) administered weekly for recurrent and refractory ovarian cancer. The subjects were patients with a histopathologically confirmed diagnosis of malignant epithelial ovarian cancer, with recurrent or refractory disease after the initial chemotherapy. TXL was administered at escalating concentrations up to 60-100 mg/m(2), while the dose of CBDCA was fixed at an AUC of 2. In regard to the dosing schedule, premedication was performed as defined before TXL administration, and TXL and CBDCA were administered, in that order, by intravenous infusion for over at least 1 hour. The 4-week period, including the administration of both drugs on Day 1, 8, and 15, was regarded as one course of treatment. No cases developed grade 4 hematoxicity, but leukopenia and neutropenia occurred. All cases of leukopenia of step 4 and step 5 developed grade 3 leukopenia. Grade 2 thrombocytopenia was one example at a low rate. Non-hematological toxicity included neuropathy, arthralgia and muscle pain, but none of the patients developed grade 3 or 4. The response rate was 41.7% (5/12). The response rate of cases administered over TXL 80 mg was 66.7% (4/6). Based on these results,the following dose schedule was recommended for planning and designing a phase II study in the future: CBDCA AUC 2+TXL 80 mg/m(2) (Days 1, 8, and 15 q 4 weeks).
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PMID:[Combined chemotherapy with weekly paclitaxel and carboplatin for recurrent and refractory epithelial ovarian cancer--phase I study]. 1703 35

The inhibition of topoisomerase I by topotecan results in a compensatory increase in topoisomerase II associated with increased in vitro sensitivity of tumors to etoposide. Maximal synergy has been observed for the sequence of topotecan followed by etoposide. Carboplatin has clinical activity when combined with either of these two agents. These interactions were the pharmacologic rationale for topotecan p.o. days 1-5, carboplatin i.v. day 6, and etoposide p.o. days 6-10. Three successive dose levels were explored: (1) topotecan 2mg/day, carboplatin AUC 5, etoposide 150 mg/day; (2) topotecan 3mg/day, carboplatin AUC 5, etoposide 150 mg/day; and (3) topotecan 3mg/day, carboplatin AUC 5, etoposide 200mg/day. Filgrastim 5 microg/kg/day was injected s.c. days 11-18. Up to 6 cycles were administered every 21 days. Eligible patients had measurable or evaluable, extensive disease, small lung cell lung cancer, no prior chemotherapy, ECOG performance status 0-2, and adequate hematologic, renal, and hepatic function. Follow-up was weekly for CBC. Tumor response was assessed after 2 and 6 cycles. Dose limiting toxicity (DLT) was defined as any of the following in cycle 1: grade 3 or 4 non-hematologic toxicity other than nausea and vomiting, grade 4 neutropenia lasting more than 3 days, neutropenic fever or sepsis, grade 4 thrombocytopenia, or failure to recover neutrophils >or=1500/microl or platelets >or=100,000/microl by day 28. Ten patients were enrolled: median age 62 (range, 50-79); female/male 4/6; and performance status 0/1/2 in 2/7/1. Three patients each were treated on dose levels 1 and 2 without DLT. The first 2 patients entered on dose level 3 had no DLT. The third patient on dose level 3 developed grade 4 neutropenia lasting more than 3 days, neutropenic fever, and grade 4 thrombocytopenia on day 15 of cycle 1. The fourth patient on dose level 3 developed grade 4 thrombocytopenia on day 18 of cycle 1. One patient received only 1 cycle and was not evaluable for response. Seven patients completed 6 cycles: 1 had a complete response and 6 achieved a partial response. The third patient on dose level 3 received 2 cycles and had stable disease, but had to be removed from protocol treatment because of grade 4 neutropenia despite dose reduction in cycle 2. The fourth patient on dose level 3 achieved a partial response, but had to be removed from protocol therapy after cycle 5 because of recurrent grade 4 thrombocytopenia. In conclusion, neutropenia and thrombocytopenia were dose-limiting. The maximum tolerated dose (MTD) is topotecan 3mg/day p.o. days 1-5, carboplatin AUC 5i.v. day 6, and etoposide 150 mg/day p.o. days 6-10 with filgrastim.
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PMID:Phase I and pharmacologic study of sequential topotecan-carboplatin-etoposide in patients with extensive stage small cell lung cancer. 1704 3

In this study, the authors sought to investigate the response rate and toxicity of carboplatin in patients with progressive low-grade glioma (LGG). Thirty-two patients with progressive LGG were treated with carboplatin at a dosage of 560 mg/m(2). Treatment was given at 4-week intervals and continued until the disease progressed, unacceptable toxicity supervened, or for 12 additional courses after achieving maximal response. Patients with stable disease were treated with a total of 12 cycles. All patients were treated as outpatients. Patients were evaluated for response to treatment and toxicity. All patients received a minimum of two cycles of carboplatin, and were examined for response. A partial response was achieved in nine patients (28%) and a minimal response in two (6%), for an overall response rate of 34% (11 of 32 patients). Eighteen patients (56%) had stable disease. A partial response was achieved in the nine patients after a median of six cycles (range 4-11 cycles), a minimal response was achieved in the two patients after five cycles. Glioma progression was noted in three patients after three, five, and five cycles, respectively. The 11 patients in whom some response was achieved had either an optic pathway tumor or a juvenile pilocytic astrocytoma. Twenty-six of the 32 patients had those characteristics, making the response rate in that group 42% (11 of 26 patients). Thirty-two patients received a total of 387 cycles of chemotherapy. Hematological toxicity was moderate. Twenty-one patients developed thrombocytopenia (platelet count < 50,000/microl); three patients required one platelet transfusion each. Nine patients developed neutropenia (absolute neutrophil count < 500/microl); one developed fever and required administration of antibiotic agents. One dose adjustment in each of the patients prevented further thrombocytopenia and neutropenia. Two patients with stable disease died of respiratory complications. One patient developed Grade III ototoxicity after receiving five cycles, one patient developed hypersensitivity to carboplatin, and none developed nephrotoxicity. Carboplatin given at a dosage of 560 mg/m(2) every 4 weeks has activity in patients with progressive LGG. This drug regimen is relatively simple and well tolerated. Further investigation and longer follow-up study are warranted.
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PMID:Phase II study of carboplatin (CBDCA) in progressive low-grade gliomas. 1716 3

Doxorubicin, platinum compounds, and taxanes represent the chemotherapeutic agents with the greatest activity in endometrial cancer. We conducted an optimal-dose determination of combination chemotherapy consisting of paclitaxel (TXL), doxorubicin, and carboplatin (CBDCA) (TAC) in patients with endometrial cancer. Patients with epithelial endometrial cancer requiring adjuvant therapy were enrolled between June 2003 and March 2005. No patients had received prior radiotherapy, and only two patients had previously undergone chemotherapy. Doxorubicin was infused on day 1, and TXL followed by CBDCA was administered on day 2. The starting dose was doxorubicin 35 mg/m(2), TXL 120 mg/m(2), and CBDCA area under the curve (AUC). The dose of each agent was gradually escalated. Patients were scheduled to receive at least four cycles of therapy. If patients experienced grade 4 neutropenia or neutropenic fever with grade 3 neutropenia, they were permitted to be administered granulocyte colony-stimulating factor after the second course. Twenty-seven patients were enrolled. Although four patients out of 27 experienced dose-limiting toxicities, a maximum tolerated dose was not established at the final dose level. Five patients (three for recurrent and two for advanced) had measurable lesions. There were four responders (three for partial response and one for complete response) in our series. The recommended dose of TAC therapy for endometrial cancer was doxorubicin 45 mg/m(2) for day 1, TXL 150 mg/m(2) and CBDCA AUC 5 for day 2.
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PMID:Phase I trial of paclitaxel, doxorubicin, and carboplatin (TAC) for the treatment of endometrial cancer. 1729 Dec 55

Carboplatin/docetaxel chemotherapy was evaluated in advanced squamous cell carcinoma of the head and neck (SCCHN). Eligibility included patients with recurrent, persistent, or metastatic SCCHN with Zubrod performance status 0-2. Docetaxel 65 mg/m(2) and carboplatin (AUC of 6) were given IV in a 21-day cycle to 68 patients. Response probability was 25 percent (95%CI: 15-38). The major toxicity observed was neutropenia, with 36 patients (61 percent) experiencing Grade 3 or worse. Median progression-free survival was 3.8 months (95%CI, 3.1-4.8) Median overall survival was 7.4 months (95%CI, 6.2-8.9). The results of this study suggest this regimen is active for outpatient treatment of recurrent SCCHN patients with good performance status.
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PMID:Evaluation of the combination of docetaxel/carboplatin in patients with metastatic or recurrent squamous cell carcinoma of the head and neck (SCCHN): a Southwest Oncology Group Phase II study. 1753 Apr 88


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