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S Negoro

Publications and source records attributed to S Negoro.

At least 55 records · Page 3Linked to original sources

A phase II trial of combination of CPT-11 and cisplatin for advanced non-small-cell lung cancer. CPT-11 Lung Cancer Study Group.

A phase I trial of the combination of irinotecan (CPT-11) with cisplatin in advanced non-small cell lung cancer (NSCLC) showed a very promising response rate of 54% in previously untreated NSCLC patients. This study was conducted to confirm the activity and toxicities of CPT-11 and cisplatin combination for previously untreated NSCLC in a multi-institutional phase II study. Seventy patients with stage IIIB or IV NSCLC received CPT-11 60 mg m(-2) intravenously (i.v.) on days 1, 8 and 15, and cisplatin 80 mg m(-2) (i.v.) on day 1 every 4 weeks. Assessments were made of response, survival and toxicities. Sixty-nine were eligible, and evaluable for toxicities and survival, and 64 patients evaluable for response. Thirty-three patients (52%; 95% confidence interval 39-64%) achieved an objective response, with one complete response (2%) and 32 partial responses (50%). The median duration of response was 19 weeks and the overall median survival time was 44 weeks. The 1-year survival rate was 33%. The major toxic effects were leucopenia and diarrhoea. Grade 3 or 4 leucopenia, neutropenia, and diarrhoea occurred in 32 patients (46%), 53 patients (80%), and 13 patients (19%) respectively. A combination of CPT-11 and cisplatin is very effective against non-small-cell lung cancer with acceptable toxicities.

Adult↗

Combination of irinotecan and etoposide for treatment of refractory or relapsed small-cell lung cancer.

PURPOSE: To determine the response rate, survival, and toxicity of irinotecan (CPT-11), a topoisomerase I inhibitor, combined with etoposide, a topoisomerase II inhibitor, in refractory or relapsed small-cell lung cancer (SCLC). PATIENTS AND METHODS: Twenty-five patients with refractory or relapsed SCLC were entered onto the trial. All 25 patients had been pretreated with some form of cisplatin-based combination chemotherapy and had also received previous etoposide- or anthracyclinecontaining chemotherapy. The median time off chemotherapy was 6.7 months (range, 0.9 to 23.5). Patients were treated at 4-week intervals using CPT-11 (a starting dose of 70 mg/m2 intravenously on days 1, 8, and 15) plus etoposide (80 mg/m2 intravenously on days 1 to 3), with a subsequent dose based on toxicity. In addition, recombinant human granulocyte colony-stimulating factor (rhG-CSF; 2 microg/kg/d) was given from day 4 to day 21, except on the days of CPT-11 administration. RESULTS: All patients were assessable for toxicity and survival. Twenty-four patients were assessable for response. There were 14 partial responses (PRs) and three complete responses (CRs), for an overall response rate of 71% (95% confidence interval, 53% to 89%). The median response duration was 4.6 months. Median survival was 271 days. Major toxicities were myelosuppression (predominantly leukopenia) and diarrhea. Grade 3 to 4 neutropenia and thrombocytopenia occurred in 56% and 20% of patients, respectively. Grade 3 to 4 diarrhea was observed in 4%. There was one treatment-related death due to severe myelosuppression. CONCLUSION: A combination of CPT-11 and etoposide with rhG-CSF support is an active therapy against refractory or relapsed SCLC and deserves to be studied more extensively in a phase III trial.

Adult↗

[Recent issues in the treatment of advanced non-small-cell lung cancer].

Unfortunately, most patients with non-small cell lung cancer (NSCLC) present with clinically unresectable advanced neoplasms. Since local treatment like surgery and radiation is not satisfactory for advanced NSCLC, effective systemic chemotherapy is necessary. But NSCLC is relatively resistant to chemotherapy. This report discusses the some recent issues in the treatment for advanced NSCLC. the issues are the following: 1) effect of post-operative chemotherapy and pre-operative induction chemotherapy in the patients with stage IIIA N2 disease; 2) efficacy combining chemotherapy with thoracic radiotherapy (TRT) in unresectable, locally advanced NSCLC; 3) timely combination of TRT and chemotherapy; 4) effect of chemotherapeutic agents as radiosensitizer; 5) potential effect of combination of TRT and new agents in unresectable, locally advanced NSCLC; 6) contribution of surgery following induction chemo-radiotherapy in locally advanced NSCLC; 7) reasons why response rate in cancer chemotherapy for advanced NSCLC does not always correlate with survival; 8) survival benefit of cancer chemotherapy in metastatic NSCLC; and 9) promising new agents (irinotecan, paclitaxel, docetaxel, vinorelbine and gemcitabine) along with combination chemotherapy, including these new agents.

Antineoplastic Combined Chemotherapy Protocols↗

Cisplatin-based combination chemotherapy for elderly patients with non-small-cell lung cancer.

PURPOSE: To compare the response rates, toxicities and survival durations of elderly patients (70 years of age or more) with those of younger patients (less than 70 years of age) with non-small-cell lung cancer (NSCLC) treated with cisplatin-based chemotherapy. PATIENTS AND METHODS: We analyzed retrospectively the data of 203 assessable patients entered on a prospective randomized trial of cisplatin-based combination chemotherapy. Chemotherapy consisted of three dosage regimens: (1) vindesine and cisplatin (VP); (2) mitomycin, vindesine and cisplatin (MVP); or (3) etoposide and cisplatin alternating with vindesine and mitomycin (EP/VM). RESULTS: A greater proportion of elderly patients had localized disease and more squamous cell carcinoma than non-elderly patients. The overall response rates were 44% in the elderly group and 28% in the non-elderly group. In the EP/VM arm, the response rate was significantly better in the elderly group than in the non-elderly group. The frequency of grade 4 leukocytopenia in the MVP and EP/VM arms in the elderly group was significantly greater than in the non-elderly group (P < 0.05). No differences were found in nonhematological toxicities between the two groups. There was no difference in overall survival between the groups. CONCLUSION: Elderly patients treated with mitomycin-containing regimens have higher hematologic toxicities than younger patients. The results of this study are consistent with the previously reported pharmacologic data on mitomycin suggesting altered pharmacokinetics in elderly patients. The improved response rate in the elderly patients was probably because more elderly patients had earlier disease, squamous cell carcinoma and better performance status. Cisplatin-based chemotherapy was tolerable for most elderly NSCLC patients with good performance status.

Age Factors↗

Dose-intensive chemotherapy in extensive-stage small-cell lung cancer.

The importance of the dose intensity of chemotherapy in achieving maximal therapeutic effect has recently been reported for several chemosensitive malignant diseases, with Murray et al. reporting that intensive weekly chemotherapy using the cisplatin, vincristine, doxorubicin, and etoposide (CODE) regimen in small-cell lung cancer (SCLC) is very effective. However, leukopenia is the major obstacle to delivering the planned dose in intensive regimens. Therefore, we investigated whether recombinant human granulocyte colony-stimulating factor (rhG-CSF) could allow full drug doses to be given as scheduled, thereby improving the final outcome. Extensive-stage (ES) SCLC patients were randomized to receive either CODE alone or CODE with rhG-CSF, with the CODE regimen consisting of cisplatin given i.v. at 25 mg/m2 weekly for 9 weeks; vincristine given i.v. at 1 mg/m2 during weeks 1, 2, 4, 6, and 8; and doxorubicin given i.v. at 40 mg/m2 and etoposide given i.v. at 80 mg/m2 for 3 days during weeks 1, 3, 5, 7, and 9, rhG-CSF at 50 micrograms/m2 was given s.c. on the days on which cytotoxic drugs were not given. From May 1989 to September 1991; 64 patients were enrolled in the study, of whom 63 were analyzable (31 for CODE alone and 32 for CODE with rhG-CSF). No difference in any of the patients' characteristics except gender was found between the two groups. The complete response (CR) rate was 34% in the CODE with rhG-CSF group and 23% in the CODE alone group; the median survival was 59 and 32 weeks, respectively, in these groups (P = 0.004). Therefore CODE with rhG-CSF improved the survival of ES SCLC patients. On the basis of these results a phase III study to determine whether CODE with rhG-CSF would increase survival as compared to the standard regimen in ES SCLC was designed by the Japan Clinical Oncology Group.

Adult↗

CODE chemotherapy with and without granulocyte colony-stimulating factor in small-cell lung cancer.

Sixty-three patients with extensive-stage small-cell lung cancer were randomized to receive either cyclophosphamide, vincristine, doxorubicin and etoposide (CODE) alone or CODE plus recombinant human granulocyte colony-stimulating factor (rhG-CSF). rhG-CSF administration in support of CODE chemotherapy resulted in increased mean total received dose intensity for all drugs (P = 0.03) with a significant improvement in survival (P = 0.004).

Adult↗

[Clinical evaluation of 2 mg granisetron tablet for nausea and vomiting induced by anticancer drugs including cisplatin].

1. The clinical efficacy and safety of the 2 mg granisetron tablet were assessed in 32 mainly lung cancer patients who were to receive treatment with anticancer drugs including CDDP. 2. One 2 mg granisetron tablet was administered prophylactically one hour before the start of CDDP administration. 3. Based on the development of nausea and vomiting in 24 hours after the start of CDDP administration, the study medication was judged to be "remarkably effective" or "effective" in 71.0% (22/31) of cases. 4. The study medication was judged to be "safe" in 96.9% (31/32) of cases, without causing any adverse reactions. 5. The above results indicate that the 2 mg granisetron tablet is safe and useful.

Adult↗

["State-of-the-art" chemotherapy for small-cell lung cancer].

A combination of etoposide and cisplatin (EP) is the current standard chemotherapy for small-cell lung cancer (SCLC). A combined modality-treatment of EP and thoracic irradiation has been established as the standard therapy for limited disease (LD)-SCLC. To improve further the results of treatment for SCLC, it is necessary to reconsider a new non-cross resistant alternating chemotherapy including promising new agents in LD-SCLC. A new maintenance chemotherapy with new agents should also be studied again. In extensive disease (ED)-SCLC, there were few long-term survivors in spite of aggressive chemotherapy. It is important to develop a new combination chemotherapy including new agents (irinotecan, topotecan, paclitaxel, docetaxel, and gemcitabine).

Antineoplastic Combined Chemotherapy Protocols↗

Alternation in the coronary blood flow velocity pattern in patients with no reflow and reperfused acute myocardial infarction.

BACKGROUND: Experimental and clinical evidence indicates that myocardial ischemia often damages the coronary microvasculature ("no-reflow" phenomenon). In this study, we examined the effect of this phenomenon on the coronary blood flow velocity pattern in patients with reperfused acute myocardial infarction. METHODS AND RESULTS: We measured coronary blood flow velocity after coronary angioplasty in 42 patients with acute myocardial infarction using a Doppler guidewire. Myocardial contrast echocardiography (MCE) was also performed before and after angioplasty. Thirty-one patients showed good contrast reperfusion (MCE reflow), whereas the other 11 showed no reflow (MCE no reflow). Peak velocity and duration of systolic coronary flow were significantly less in patients with MCE no reflow than in those with MCE reflow (8 +/- 4 versus 17 +/- 10 cm/s and 207 +/- 79 versus 289 +/- 55 ms, respectively; P < .01). Early systolic retrograde flow was frequently observed in patients with MCE no reflow, whereas it was observed in only 1 patient among those with MCE reflow (95% versus 3%; P < .001). Although peak diastolic flow velocity was similar between the two subsets, diastolic deceleration rate was significantly higher in patients with MCE no reflow than in those with MCE reflow (107 +/- 76 versus 56 +/- 31 cm/s2; P < .01). CONCLUSIONS: The coronary flow velocity pattern in patients with the no-reflow phenomenon was characterized by the appearance of systolic retrograde flow, diminished systolic antegrade flow, and rapid deceleration of diastolic flow. Thus, the Doppler guidewire allows us to assess the presence of microvascular dysfunction in AMI.

Aged↗

Myocardial perfusion patterns related to thrombolysis in myocardial infarction perfusion grades after coronary angioplasty in patients with acute anterior wall myocardial infarction.

BACKGROUND: Epicardial coronary flow is occasionally reduced even after coronary intervention despite the absence of vessel obstruction in patients with acute myocardial infarction. Our aim was to clarify the cause and outcomes of radiocontrast slow filling in patients with reperfused acute anterior myocardial infarction by assessing microvascular damage with the use of myocardial contrast echocardiography (MCE) and functional outcomes. METHODS AND RESULTS: We carefully reviewed the cineangiograms of 86 patients who achieved coronary revascularization within 12 hours of the onset and underwent MCE before and soon after recanalization with the intracoronary injection of sonicated microbubbles. Antegrade coronary flow after recanalization was graded by two observers based on Thrombolysis in Myocardial Infarction (TIMI) trial flow grades. Left ventricular ejection fraction was measured on the day of infarction and 1 month later. TIMI grade 2 was observed in 18 patients (21%), and the other 68 patients manifested TIMI grade 3 after recanalization. All patients with TIMI 2 showed substantial MCE no reflow, whereas only 11 patients (16%) with TIMI 3 showed MCE no reflow. Functional improvement was worse in patients with TIMI 2 than in those with TIMI 3 (TIMI 2, 38 +/- 8% versus 40 +/- 8%, P = NS [acute versus late]; TIMI 3, 44 +/- 13% versus 55 +/- 13%, P < .001). Among patients with TIMI 3, significant functional improvement was observed only in patients with MCE reflow (MCE reflow, 46 +/- 13% versus 57 +/- 12%, P < .001; MCE no reflow, 35 +/- 11% versus 45 +/- 12%, P = NS). CONCLUSIONS: Despite no obstructive lesion of the vessel, TIMI 2 is caused by advanced microvascular damage and is a highly specific, although not sensitive, predictor of poor functional outcomes in patients with acute myocardial infarction. TIMI 3 does not necessarily indicate myocardial salvage, and detection of MCE no reflow in these patients is particularly useful for the prediction of functional outcome.

Adult↗

Application of N-terminally truncated DNA polymerase from Thermus thermophilus (delta Tth polymerase) to DNA sequencing and polymerase chain reactions: comparative study of delta Tth and wild-type Tth polymerases.

N-Terminally truncated DNA polymerase from Thermus thermophilus (delta Tth polymerase) lacking 5'-3' exonuclease activity was used for DNA sequencing and polymerase chain reaction (PCR). In contrast to the high background of the sequencing ladder observed with the wild-type Tth polymerase, delta Tth polymerase gave readable sequencing patterns which extend up to more than 500 bases from the primer site on cycle sequencing and automated sequencing. The delta Tth polymerase was used for the standard and mutagenic PCR, and net amplification of the DNA and the mutations accumulated during PCR were analyzed. Under mutagenic PCR, the mutation rates were 7.0 x 10(-4) (Tth) and 8.3 x 10(-4) (delta Tth) per nucleotide per cycle of amplification, which were 4-9 times higher than the rates under standard PCR.

Automation↗

Solubility of artificial proteins with random sequences.

A library of artificial random proteins of 141 amino acid residues of which 95 are random and which includes the 20 kinds of amino acids was prepared. Out of the 25 identified random proteins, 5 were soluble in the cell lysate, indicating that about 20% of the random proteins expressed in Escherichia coli are expected to be soluble. The soluble random proteins RP3-42 and RP3-45 and insoluble RP3-70 were purified. The solubility of the purified form is the same as that in the cell lysate.

Amino Acid Sequence↗

Dose escalation study of carboplatin with fixed-dose etoposide plus granulocyte-colony stimulating factor in patients with small cell lung carcinoma. A study of the Lung Cancer Study Group of West Japan.

BACKGROUND: We performed a Phase I-II trial to determine the maximum tolerated dose of carboplatin (CBDCA) with a fixed dose of VP-16 and granulocyte-colony stimulating factor (G-CSF) in small cell lung cancer (SCLC) patients. METHODS: Treatment consisted of a starting dose of CBDCA, 400 mg/m2 (i.v., Day 1); VP-16, 100 mg/m2 (i.v., Days 1-3), and G-CSF, 2 micrograms/kg (s.c., Days 4-17) every 4 weeks for four cycles. The dose of CBDCA was escalated in increments of 50 mg/m2 until Grade IV toxicity on the World Health Organization scale developed in two-thirds or more of the patients. RESULTS: Seventy-five previously untreated patients with pathology confirmed SCLC were entered into the trial. Seventy-one patients were eligible and 70 patients were evaluated for response. Forty-five patients had limited disease (LD) and 26 had extensive disease (ED). The response rate of the 70 patients who could be evaluated was 81%, with 23% attaining a complete response (CR) and 58% attaining a partial response (PR). The response rate was 80% in LD patients (CR, 23%; PR, 57%) and 85% in ED patients (CR, 23%; PR, 62%). The major dose-limiting toxicity was thrombocytopenia. Nephrotoxicity, neurotoxicity, and ototoxicity were uncommon. The doses of CBDCA that resulted in unacceptable thrombocytopenia were 700 mg/m2 in patients younger than 70 years and 500 mg/m2 in patients older than 70 years. Overall median survival time (MST) was 9 months. MST of LD patients and ED patients were 11 months and 7 months, respectively. The dose-limiting toxicity of CBDCA with a fixed dose of VP-16 and using G-CSF as bone marrow rescue was age-related thrombocytopenia. The maximum tolerated dose of CBDCA was 650 mg/m2 if patients were younger than 70 years and 450 mg/m2 if they were 70 years or older. CONCLUSIONS: When we retrospectively compared our results with those using standard chemotherapy regimens, we saw no therapeutic benefit from increasing planned doses of CBDCA up to 700 mg/m2 in combination with G-CSF in patients with SCLC.

Aged↗

Randomized study of vinorelbine (VRB) versus vindesine (VDS) in previously untreated stage IIIB or IV non-small-cell lung cancer (NSCLC). The Japan Vinorelbine Lung Cancer Cooperative Study Group.

PURPOSE: We compared the activity of vinorelbine (VRB) and vindesine (VDS) in a randomized crossover study in patients with previously untreated stages IIIB or IV non-small-cell lung cancer (NSCLC). PATIENTS AND METHODS: Two hundred four patients were assessable for response and toxicity. VRB was administered at a dose of 25 mg/m2 weekly and VDS at a dose of 3 mg/m2 weekly. Patients who failed to respond after 4 cycles of initial monotherapy were switched to a combination chemotherapy (VRB-->VDS + cisplatin (P) or VDS-->VRB + P). RESULTS: Objective response was observed in 31.1% of patients in the VRB arm versus 8.9% of those in the VDS arm (P = 0.0002). The median duration of response to VRB was 18.5+ weeks (range, 7.9 to 107.5+ weeks) compared with 11.7+ weeks (range, 6.0 to 35.0+ weeks) for VDS. Of the 69 patients who failed to respond to initial monotherapy, 33 in the VRB group who subsequently received VDS + P did not respond and 13 (26.5%) of 49 initially on VDS who received subsequent VRB + P responded. The rates of grades 3 and 4 leukopenia were similar in the two monotherapy arms (VRB, 55.3% vs. VDS, 48.5%). However, grade 3 anemia was more frequent in the patients on VRB than in those on VDS. The incidence of peripheral neurotoxicity was significantly higher with VDS than with VRB (P = 0.002), but VRB induced a slightly higher rate of local cutaneous reaction than VDS (P = 0.012). With the combination of cisplatin and these vinca alkaloids, peripheral neurotoxicity was less frequent in the VRB group than in the VDS group. CONCLUSION: Our results demonstrate that VRB yields a higher response rate than VDS in stage IIIB or IV NSCLC, with the same extent of toxicity in terms of leukocytopenia. The peripheral neurotoxic effects were also milder with VRB than with VDS. In second-line chemotherapy, there was a notable difference in response between the VRB + P and VDS + P regimens.

Adult↗

Dose-escalation study of oral etoposide and carboplatin in patients with advanced lung cancer.

A dose-escalation study of daily etoposide and carboplatin was carried out on 23 patients with advanced lung cancer using a starting dose of 40 mg/m2/day etoposide given orally for 21 days and 250 mg/m2 carboplatin given intravenously (IV) on day 1. A total of 41 courses were given. Myelosuppression was the major dose-limiting toxicity. The maximum tolerated dose was reached at the fourth level with 40 mg/m2/day etoposide for 21 days and 400 mg/m2 carboplatin on day 1, once every 4 weeks. Non-hematological toxicities were generally mild or reversible. The recommended doses of this combination chemotherapy are 40 mg/m2/day etoposide for 21 days and 350 mg/m2 carboplatin on day 1. The response rate for non-small cell lung cancer and small cell lung cancer was 16.7% and 60% (95% confidence intervals of 3.6% to 41.4%, and 14.7% to 94.7%), respectively. A phase II study is necessary to define the efficacy and safety of this combination chemotherapy.

Administration, Oral↗

Determinants of myelosuppression in the treatment of non-small cell lung cancer with cisplatin-containing chemotherapy.

Data on 16 potential risk factors for myelosuppression were assessed in 134 patients who received either vindesine and cisplatin (VP) or mitomycin C, vindesine and cisplatin (MVP) for inoperable stage III or IV non-small cell lung cancer in a randomized trial. Determinant factors for myelosuppression were evaluated by using univariate analysis and the logistic regression model. Recursive partitioning and amalgamation (RPA) was also used to define patient subgroups frequently suffering from severe bone marrow toxicity. Overall, 33 (25%) of 134 patients experienced at least one episode of grade 4 leukopenia. In univariate analysis, age, body surface area, serum creatinine, and pretreatment hemoglobin concentration were associated with severe leukopenia. A multivariate analysis using the logistic regression method showed that only raised creatinine level was an independent predictor for grade 4 leukopenia (P = 0.049). The RPA model generated three distinct subgroups based on age, body surface area and regimen. The three subgroups were distinguished by the frequency of severe (grade 4) leukopenia (50%, 25%, and 2.4%, respectively) (P < 0.001). Grade 4 leukopenia occurred more frequently in patients in class 3 (age > or = 65 years and treatment with MVP). The RPA model was useful in identifying the risk factors for myelosuppression induced by cisplatin-based chemotherapy, and in defining patient subgroups with elevated risk of toxicity.

Adult↗

[Current status of phase I and phase II trials--experience in Habikino from 1988 to 1994].

Introduction of a new agent in the treatment for cancer will require usually three phases of investigation. A new drug will be tested in a small series of patients for toxicity and feasibility; the main objective of a phase I trial is to determine the maximum tolerated dose with a specific type of administration. Demonstration of activity is the major goal of phase II trials, which will place some confidence interval on the efficacy of the new agent. Information obtained from phase I and II studies should be the basis for phase III trials. Based upon our experience with the clinical development of CPT-11, this paper reviews the two factors which influence the quality of the phase I and II trials. Firstly, adequately designed and prepared plans for every clinical trial are essential minimum requirement. Another issue which has been frequently overlooked has been variation from the planned protocol treatment. Such variations can be due to the intolerance of the patient to toxicity as well as the individual physician's poor perceptions and the physician's intolerance of toxicity.

Adult↗