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R Komaki

Publications and source records attributed to R Komaki.

At least 55 records · Page 3Linked to original sources

The benefit of treatment intensification is age and histology-dependent in patients with locally advanced non-small cell lung cancer (NSCLC): a quality-adjusted survival analysis of radiation therapy oncology group (RTOG) chemoradiation studies.

PURPOSE: Currently, chemoradiation treatment strategies in locally advanced NSCLC are essentially the same irrespective of tumor histology or patient age. The purpose of this study is to analyze the impact of age, histology, Karnofsky performance status (KPS), and specific toxicities on the median survival time (MST) and quality-adjusted survival (QTime) for each treatment strategy. METHODS AND MATERIALS: Nine hundred seventy-nine patients with Stage II-IIIB inoperable NSCLC were enrolled on 6 prospective Phase II and III studies from 1983 to 1995. Treatment regimens ranged from standard RT (SRT) to 60 Gy, hyperfractionated RT (HRT) to 69.6 Gy, induction chemotherapy (ICT) of cisplatin (CIS) and vinblastine (VBL) followed by SRT, ICT + concurrent CT (CCT) + SRT, and CCT + HRT; CCT consisted of etoposide or VBL + CIS. Toxicities assessed were skin, mucous membrane, lung, esophagus, neurologic, hematologic, and upper GI. QTime was calculated by weighting the time spent with a specific toxicity, as well as local or distant tumor progression. Each toxicity was weighted with increasing severity as the toxicity increased in grade. RESULTS: As expected, patients with the worst KPS (50-70) had the lowest MST (7.8 months) and QTime (6.7 months). Patients <70 years had improved survival with more aggressive therapy (i.e., ICT + SRT or CCT + HRT), while patients > 70 years achieved the best QTime with standard RT (SRT) alone. In patients with squamous cell carcinoma, those treated with ICT + CCT + SRT had dramatically improved MST (25.7 months) and QTime (21.8 months) compared to the other treatment regimens (11.7-12.8 and 10.7-12 months, respectively). Patients with adenocarcinoma, however, generally manifested incrementally better MST and QTime as the therapies intensified. Within the concurrent chemoradiation arms, the upper GI and lung toxicities had the greatest impact on QTime. CONCLUSION: This quality-adjusted survival analysis suggests that there is a critical relationship between the type of histology and its optimal treatment, age and the ability to tolerate intensive therapy, and the need to reduce lung and upper GI toxicities.

Adenocarcinoma↗

Effectiveness of accelerated radiotherapy for patients with inoperable non-small cell lung cancer (NSCLC) and borderline prognostic factors without distant metastasis: a retrospective review.

PURPOSE: The standard treatment for patients with unresectable or medically inoperable non-small cell lung cancer (NSCLC) and good prognostic factors (e.g., weight loss [WL] < or = 5% and Karnofsky performance status [KPS] > or = 70) is induction chemotherapy followed by definitive radiotherapy to the primary site at 1.8-2.0 Gy per fraction with a total dose of 60-63 Gy to the target volume. Patients with poor prognostic factors usually receive radiotherapy alone, but the fractionation schedule and total dose have not been standardized. To attempt to optimize irradiation doses and schedule, we compared the effectiveness of accelerated radiotherapy (ACRT) alone to 45 Gy at 3 Gy per fraction with standard radiation therapy (STRT) of 60-66 Gy at 2 Gy per fraction in regard to tumor response, local control, distant metastasis, toxicity, and survival. METHODS AND MATERIALS: Fifty-five patients treated with radiation for NSCLC at The University of Texas M. D. Anderson Cancer Center between 1990 and 1994 were identified. All 55 patients had node-positive, and no distant metastasis (N+, M0) of NSCLC. Two cohorts were identified. One cohort (26 patients) had borderline poor prognostic factors (KPS less than 70 but higher than 50, and/or WL of more than 5%) and was treated with radiotherapy alone to 45 Gy over 3 weeks at 3 Gy/fraction (ACRT). The second cohort (29 patients) had significantly better prognostic factors (KPS > or = 70 and WL < or = 5%) and was treated to 60-66 Gy over 6 to 6 1/2 weeks at 2 Gy per fraction (STRT) during the same period. RESULTS: In the first cohort treated by ACRT, the distribution of patients by AJCC stage was IIB 8%, IIIA 19%, and IIIB 73%. Sixty-two percent had KPS <70, and 76% had a WL of >5%. The maximum response rate as determined by chest X-ray was 60% among 45 of 55 patients who were evaluable for response: combined complete responses (20%) and partial responses (40%). Overall survival in these patients was 13% at 2 and 5 years, with a locoregional control rate of 42% and a freedom from distant metastasis rate of 54%. The ACRT cohort treated with 3 Gy per fraction had significantly lower KPS scores (p = 0.003) and greater WL (p = 0.063) than the cohort STRT treated with 2 Gy per fraction. However, treatment results and toxicity were not significantly different between the two cohorts in spite of significantly better prognostic factors in the STRT cohort. CONCLUSIONS: Despite having worse prognostic factors, the cohort treated with radiotherapy alone to 45 Gy at 3 Gy per fraction over 3 weeks (ACRT) had response rates, locoregional control, and overall survival comparable to those in the cohort treated by a total dose of 60-66 Gy at 2 Gy per fraction over 6 to 6 1/2 weeks (STRT). Given that accelerated treatment schedules decrease treatment time and cost less, these may, in the current health care environment, be important factors for health care providers to consider in treating patients who have locally advanced NSCLC and borderline poor prognostic factors.

Carcinoma, Non-Small-Cell Lung↗

Is prolonged survival possible for patients with supraclavicular node metastases in non-small cell lung cancer treated with chemoradiotherapy?: Analysis of the Radiation Therapy Oncology Group experience.

PURPOSE: To determine if patients with non-small cell lung carcinoma (NSCLC) and positive supraclavicular nodes (SN+) have a similar outcome to other patients with Stage IIIB NSCLC (SN-) when treated with modern chemoradiotherapy. METHODS AND MATERIALS: Using the Radiation Therapy Oncology Group (RTOG) database, data were retrospectively analyzed from five RTOG trials studying chemoradiotherapy for NSCLC: 88-04, 88-08 (chemo-RT arm), 90-15, 91-06, 92-04. Comparisons were made between the SN+ and SN- subgroups with respect to overall survival, progression-free survival (PFS), and metastases-free survival (MFS) using the log rank test. Cox multivariate proportional hazards regression analysis was used to determine the effect of several potential confounding variables, including histology (squamous vs. nonsquamous), age (>60 vs. < or = 60), Karnofsky Performance Status (KPS) (<90 vs. > or = 90), weight loss (> or = 5% vs. <5%), and gender. RESULTS: A total of 256 Stage IIIB patients were identified, of whom 47 had supraclavicular nodes (SN+) and 209 did not (SN-). Statistically significantly more SN+ patients had nonsquamous histology (p = 0.05); otherwise, known prognostic factors were well balanced. The median survival for SN+ patients was 16.2 months, vs. 15.6 months for SN- patients. The 4-year actuarial survival rates were 21% and 16% for SN+ and SN- patients respectively (p = 0.44). There was no statistically significant difference in the 4-year PFS rates (19% vs. 14%, p = 0.48). The Cox analysis did not show the presence or absence of supraclavicular nodal disease to be a prognostic factor for survival, MFS, or PFS. The only statistically significant factor on multivariate analysis was gender, with males having a 40% greater risk of mortality than females (p = 0.03). There were no clinically significant differences in toxicity when comparing SN+ vs. SN- patients. Among the 47 SN+ patients, there were no reported cases of brachial plexopathy or other > or = Grade 2 late neurologic toxicity. CONCLUSIONS: When treated with modern chemoradiotherapy, the outcome for patients with supraclavicular metastases appears to be similar to that of other Stage IIIB patients. SN+ patients should continue to be enrolled in trials studying aggressive chemoradiotherapy regimens for locally advanced NSCLC.

Carcinoma, Non-Small-Cell Lung↗

Addition of chemotherapy to radiation therapy alters failure patterns by cell type within non-small cell carcinoma of lung (NSCCL): analysis of radiation therapy oncology group (RTOG) trials.

PURPOSE: To evaluate the influence of cell type within non-small cell carcinoma of lung (NSCCL) on failure patterns when chemotherapy (CT) is combined with radiation therapy (RT). METHODS AND MATERIALS: Data from 4 RTOG studies including 1415 patients treated with RT alone, and 5 RTOG studies including 350 patients also treated with chemotherapy (RT + CT) were analyzed. Patterns of progression were evaluated for squamous cell carcinoma (SQ) (n = 946), adenocarcinoma (AD) (n = 532) and large cell carcinoma (LC) (n = 287). RESULTS: When treated with RT alone, SQ was more likely to progress at the primary site than LC (26% vs. 20%, p = 0.05). AD and LC were more likely to progress in the brain than SQ (20% and 18% vs. 11%, p = 0.0001 and 0.011, respectively). No differences were found in intrathoracic and distant metastasis by cell type. When treated with RT + CT, AD was less likely to progress at the primary than either SQ or LC (23% vs. 34% and 40%, respectively; p = 0.057 and 0.035). AD was more likely than SQ to metastasize to the brain (16% vs. 8%, p = 0.03), and other distant sites (26% vs. 14%,p = 0.019). No differences were found in intrathoracic metastasis. LC progressed at the primary site more often with RT + CT than with RT alone (40% vs. 20%, p = 0.036). Death with no clinical progression was more likely with SQ than AD or LC for RT alone and RT + CT (p < 0.01). Brain metastasis was altered little by the addition of CT, but other distant metastases were significantly decreased (p < 0.001) in all cell types by the addition of CT. CONCLUSION: CT, although effective in reducing distant metastasis in all types of NSCCL, has different effects on the primary tumor by cell type, and has no effect on brain metastasis or death with no progression. Different treatment strategies should be considered for the different cell types to advance progress with RT + CT in NSCCL.

Adenocarcinoma↗

Twice-daily compared with once-daily thoracic radiotherapy in limited small-cell lung cancer treated concurrently with cisplatin and etoposide.

BACKGROUND: For small-cell lung cancer confined to one hemithorax (limited small-cell lung cancer), thoracic radiotherapy improves survival, but the best ways of integrating chemotherapy and thoracic radiotherapy remain unsettled. Twice-daily accelerated thoracic radiotherapy has potential advantages over once-daily radiotherapy. METHODS: We studied 417 patients with limited small-cell lung cancer. All the patients received four 21-day cycles of cisplatin plus etoposide. We randomly assigned these patients to receive a total of 45 Gy of concurrent thoracic radiotherapy, given either twice daily over a three-week period or once daily over a period of five weeks. RESULTS: Twice-daily treatment beginning with the first cycle of chemotherapy significantly improved survival as compared with concurrent once-daily radiotherapy (P=0.04 by the log-rank test). After a median follow-up of almost 8 years, the median survival was 19 months for the once-daily group and 23 months for the twice-daily group. The survival rates for patients receiving once-daily radiotherapy were 41 percent at two years and 16 percent at five years. For patients receiving twice-daily radiotherapy, the survival rates were 47 percent at two years and 26 percent at five years. Grade 3 esophagitis was significantly more frequent with twice-daily thoracic radiotherapy, occurring in 27 percent of patients, as compared with 11 percent in the once-daily group (P<0.001). CONCLUSIONS: Four cycles of cisplatin plus etoposide and a course of radiotherapy (45 Gy, given either once or twice daily) beginning with cycle 1 of the chemotherapy resulted in overall two- and five-year survival rates of 44 percent and 23 percent, a considerable improvement in survival rates over previous results in patients with limited small-cell lung cancer.

Adult↗

A multidisciplinary surgical approach to superior sulcus tumors with vertebral invasion.

BACKGROUND: Vertebral body invasion by superior sulcus tumor has traditionally been considered a contraindication to surgical resection. Attempts at definitive radiation or chemoradiation have not been successful. Recent advances in spinal instrumentation have allowed more complete resection of vertebral body tumors. We, therefore, reviewed our recent experience with vertebral resection of superior sulcus tumors. METHODS: All patients (n = 17) undergoing resection of superior sulcus tumors with T4 involvement of the vertebrae from October 18, 1990 to September 21, 1998 at the University of Texas M.D. Anderson Cancer Center (MDACC) were evaluated. Their clinical and pathologic data were reviewed and analyzed for short- and long-term outcomes. RESULTS: Total vertebrectomy was performed in 7 patients (42%), partial vertebrectomy in 7 (42%), and 3 (18%) underwent neural foramina or transverse process resection. The median hospital stay was 11 days. Postoperative complications occurred in 7 patients (42%) and included pneumonia (6, 36%), arrhythmia (2, 12%), cerebrospinal fluid leak (2, 12%), wound breakdown (1, 6%), and reoperation for bleeding (1, 6%). Sixteen out of 17 patients received preoperative or postoperative radiation therapy. No perioperative mortality occurred. All patients remained ambulatory after spinal reconstruction. Overall actuarial survival at 2 years was 54%, with 11 patients still alive 2 to 50 months after resection. Locoregional tumor recurrence was noted in all 6 patients who had positive surgical margins, as opposed to 1 out of 11 patients (9%) with negative margins (p < 0.006). Additionally, the 2-year actuarial survival of patients with negative microscopic margins was 80% versus 0% for positive margins (p < 0.0006). CONCLUSIONS: An aggressive multidisciplinary approach to superior sulcus tumors with vertebral invasion can lead to long-term survival with acceptable morbidity if negative margins can be obtained. Vertebral body invasion should no longer be considered a contraindication for resection of superior sulcus tumors.

Adult↗

Combined chest wall resection with vertebrectomy and spinal reconstruction for the treatment of Pancoast tumors.

OBJECT: Traditionally, superior sulcus tumors of the lung that involve the chest wall and spinal column have been considered to be unresectable, and historically, patients harboring these tumors have been treated with local radiation therapy with, at best, modest results. The value of gross-total resection remains unclear in this patient population; however, with the recent advances in surgical technique and spinal instrumentation, procedures involving more radical removal of such tumors are now possible. At The University of Texas M. D. Anderson Cancer Center, the authors have developed a new technique for resecting superior sulcus tumors that invade the chest wall and spinal column. They present a technical description of this procedure and results in nine patients in whom stage IIIb superior sulcus tumors extensively invaded the vertebral column. METHODS: These patients underwent gross-total tumor resection via a combined approach that included posterolateral thoracotomy, apical lobectomy, chest wall resection, laminectomy, vertebrectomy, anterior spinal column reconstruction with methylmethacrylate, and placement of spinal instrumentation. There were six men and three women, with a mean age of 55 years (range 36-72 years). Histological examination revealed squamous cell carcinoma (three patients), adenocarcinoma (four patients), and large cell carcinoma (two patients). The mean postoperative follow-up period was 16 months. All patients are currently ambulatory or remained ambulatory until they died. Pain related to tumor invasion improved in four patients and remained unchanged in five. In three patients instrumentation failed and required revision. There was one case of cerebrospinal fluid leakage that was treated with lumbar drainage and one case of wound breakdown that required revision. Two patients experienced local tumor recurrence, and one patient developed a second primary lung tumor. CONCLUSIONS: The authors conclude that in selected patients, combined radical resection of superior sulcus tumors of the lung that involve the chest wall and spinal column may represent an acceptable treatment modality that can offer a potential cure while preserving neurological function and providing pain control.

Adenocarcinoma↗

A pilot clinical laboratory trial of paclitaxel and endobronchial brachytherapy in patients with non-small cell lung cancer.

Paclitaxel enhances microtubule assembly and causes a cell cycle arrest in mitosis, the most radiosensitive phase. We conducted this study to improve our understanding of paclitaxel effects in vivo and to determine the maximum tolerated dose of paclitaxel preceding endobronchial radiation therapy (brachytherapy). The treatment consisted of two cycles of paclitaxel infused over 24 hours followed by 192Ir brachytherapy; cycles were repeated every 3 weeks. Tumor samples were obtained at baseline, after each paclitaxel infusion, and 3 weeks after completion of therapy. Twenty-two non-small cell lung cancer patients with a documented endobronchial lesion were enrolled in the study and 20 patients received the therapy with different doses of paclitaxel, initially without and then later with granulocyte colony-stimulating factor (G-CSF) support (5 microg/kg subcutaneously on days 3 to 10). With the starting paclitaxel dose of 135 mg/m2, five of seven patients developed neutropenia and fever, which mandated a dose reduction to 120 mg/m2. At this dose level, three of three patients had neutropenic fever; thus, 120 mg/m2 of paclitaxel was considered above the maximum tolerated dose without G-CSF support. However, with G-CSF support the therapy was well-tolerated without dose-limiting toxicity and accrual is continuing at the paclitaxel 175-mg/m2 dose level. While no patient had achieved systemic tumor response, 11 patients achieved partial response of the endobronchial lesion, which represents 68.8% of 16 patients who received two courses of therapy and 91.8% of 12 patients who had full evaluation by bronchoscopy after completion of therapy. The in vivo paclitaxel effects were studied using the pre- and post-paclitaxel therapy tumor samples in eight patients. Four (50%) patients had a significant increase in mitotic cells after paclitaxel, as assessed by MPM-2 immunostaining that recognizes a large family of mitotic phosphoproteins. A substantial increase in the number of micronucleated apoptotic cells, another paclitaxel effect, was also found in six patients. These results clearly indicate that patients with endobronchial lesions from recurrent NSCLC could not tolerate this combined modality regimen without G-CSF support. However, this group of patients provided a unique opportunity to study in vivo paclitaxel effects in a clinical trial setting.

Aged↗

Effect of docetaxel on the therapeutic ratio of fractionated radiotherapy in vivo.

The aim of this investigation was to determine whether docetaxel increases the therapeutic ratio of fractionated radiotherapy in vivo. Two tumor types were chosen based on their sensitivity to docetaxel as a single agent: (a) docetaxel-sensitive MCa-4 mammary adenocarcinoma, which responds to docetaxel by G2-M-phase cell cycle arrest, apoptosis, and subsequent reoxygenation of surviving tumor cells; and (b) docetaxel-resistant SCC-VII squamous cell carcinoma, which responds to docetaxel treatment only by G2-M-phase arrest. Response of the normal jejunal mucosa in mice was compared to the response of both tumor types to confirm therapeutic gain. We conducted micromorphometric analysis of tumor cell mitosis, assayed apoptosis by its histological appearance in tissue sections, and determined tumor response by tumor growth delay. Normal tissue response of the jejunum was assayed by micromorphometric analysis of mitotic and apoptotic indices, and clonal crypt stem cell survival was measured using the microcolony assay. Two clinically relevant treatment schedules were tested for both antitumor efficacy and normal tissue toxicity: (a) a single bolus of docetaxel (33 mg/kg i.v.) 24 h before five daily fractions of radiation; and (b) daily administration of docetaxel (8 mg/kg i.v.) with radiation delivered at the peak of mitotic arrest (9 h for MCa-4 and 6 h for SCC-VII tumors). The best therapeutic gain for docetaxel-sensitive MCa-4 was achieved with a single bolus of drug 24 h before the start of fractionated radiotherapy (therapeutic gain = 2.04). This schedule takes advantage of reoxygenation of hypoxic tumor cells during the interval between drug treatment and radiation delivery. The best therapeutic gain for docetaxel-resistant SCC-VII was achieved with intermittent multiple doses of docetaxel given during the course of fractionated radiotherapy. This schedule maximized the exposure of cells to radiation while they were arrested by docetaxel in the radiosensitive G2-M phases of the cell cycle (enhancement factor = 2.0). Final therapeutic gain was reduced to 1.59 because of increased normal tissue toxicity in mice treated with multiple intermittent doses of docetaxel in combination with fractionated radiotherapy. Thus, docetaxel greatly enhanced tumor response to fractionated radiotherapy, but the magnitude of therapeutic efficacy depended on drug-radiation scheduling. The greatest therapeutic gain in the treatment of docetaxel-sensitive tumors was achieved by a single large dose of docetaxel administered 1 day before the initiation of fractionated radiotherapy and in the treatment of docetaxel-resistant tumors by daily concomitant docetaxel-radiation treatments.

Adenocarcinoma↗

A pilot trial of hyperfractionated thoracic radiation therapy with concurrent cisplatin and oral etoposide for locally advanced inoperable non-small-cell lung cancer: a 5-year follow-up report.

PURPOSE: To improve the outcome of patients with locally advanced inoperable non-small cell lung cancer (NSCLC), we conducted a pilot trial of concurrent chemoradiation therapy using a cisplatin and oral etoposide regimen given concurrently with hyperfractionated radiation therapy. METHODS AND MATERIALS: In this single-institution pilot trial, we enrolled 23 patients with inoperable Stage IIIa (4) and IIIb (19) NSCLC. Treatment consisted of two cycles of chemotherapy with oral etoposide 50 mg one day alternating with 50 mg b.i.d. (50 mg/day if BSA is < 1.70 m2) on days 1-21 and intravenous cisplatin (40 mg/m2) on days 1 and 8 of a 28-day cycle. Radiation therapy was given twice a day (1.2 Gy per fraction), 5 days a week, to a total dose of 69.6 Gy in 58 fractions over 6 weeks. RESULTS: Overall, 18 (78%) of the 23 patients completed the chemotherapy as planned and 21 (91%) received thoracic irradiation per protocol. One patient died of radiation pneumonitis. Fourteen (78%) of 18 evaluable patients achieved objective responses. The median survival duration was 9.3 months for all patients and 20.2 months for 15 patients who had no more than 5% weight loss. After a minimum follow-up of 5 years, five patients (1 IIIa, 4 IIIb) are still alive and disease-free, which gives an actual 5-year survival rate of 22%. Four of the five 5-year survivors were among those who completed the treatment as planned. CONCLUSION: This long-term survival outcome compares favorably with that of other chemoradiation therapy trials and even with those reported in multimodality trials including surgery. These results suggest that intensive concurrent chemoradiation therapy is feasible, and some patients with locally advanced inoperable NSCLC may enjoy long-term survivorship following nonsurgical therapy.

Adult↗

Response, toxicity, failure patterns, and survival in five Radiation Therapy Oncology Group (RTOG) trials of sequential and/or concurrent chemotherapy and radiotherapy for locally advanced non-small-cell carcinoma of the lung.

PURPOSE: The purpose of this study was to assess response, toxicity, failure patterns, and survival differences in three chemotherapy (ChT)/radiation therapy (RT) sequencing strategies for locally advanced non-small cell lung cancer (NSCLC). METHODS AND MATERIALS: Five completed Radiation Therapy Oncology Group (RTOG) trials for Stage II-IIIA/B inoperable NSCLC patients employed one of the three following strategy groupings: 1) sequential ChT followed by standard RT (60 Gy in 6 weeks); 2) combined sequential and concurrent ChT and standard RT (60 Gy in 6 weeks); or 3) concurrent ChT and hyperfractionated RT (69.6 Gy in 6 weeks). All five trials required KPS > or = 70; two trials (314 patients) required <5% weight loss and three trials (147 patients) had no minimum weight loss requirement. In all five trials the ChT used cisplatin with either vinblastine or oral etoposide. Combining data for the five trials yielded an evaluable group of 461 patients. The three methods of sequencing ChT and RT were evaluated for differences in response, acute and late toxicity, patterns of failure, and survival. Acute toxicity was defined as that occurring within 90 days from the start of RT. Late toxicity was defined as that occurring after 90 days from the start of RT. Acute or late toxicity > or = grade 3 was defined as severe. Site of first failure was recorded by date. In-field failure excluded distant metastasis as a failure and included only tissue in the RT treatment field. Overall progression-free survival (PFS) was defined as survival without evidence of intra- or extrathoracic tumor or death from any cause. RESULTS: Group 1 had a lower overall response rate (63%) compared to either Group 2 (77%) or Group 3 (79%), p = 0.03 and 0.003, respectively. Overall grade 4/5 acute toxicities were nearly equal between groups. The severe nonhematologic acute toxicities were significantly different by strategy group (p < 0.0001). Group 1 and 2 were not statistically different. Group 3 had significantly more patients with severe acute nonhematologic toxicity (55%) than either Group 1 (27%) or 2 (34%) with p < 0.0001 and p = 0.0005, respectively. This was due to a severe acute esophagitis rate of 34% for Group 3 versus 1.3% for Group 1 and 6% for Group 2 (p < 0.0001 for both comparisons). Overall grade 4/5 late toxicities did not differ by group. Severe late nonhematologic toxicities were different by group (p = 0.0098). Group 1 patients had significantly fewer severe late nonhematologic toxicities (14%) compared to patients in Groups 2 (26%) or 3 (28%) (p = 0.046 and 0.038, respectively). Severe late lung toxicity was 10% for Group 1 compared to 21% and 20% for Groups 2 and 3, respectively. Severe late lung toxicities differed by group (p = 0.033), but not severe late esophagitis (p = 0.077). There were no differences between the three strategy groups for patterns of first failure. The in-field failures were higher in Group 2 (71%) compared to Groups 1 (56%) and 3 (55%), p = 0.0478. Pairwise comparisons yielded p-values of 0.068 and 0.015 for Group 2 versus 1 and Group 2 versus 3, respectively. Three-year PFS was better in Group 2 (15%) and 3 (15%) compared to Group 1 (7%), but not statistically significant (p = 0.454). Similarly, in-field PFS was better in Group 2 (17%) and 3 (20%) than Group 1 (9%), but not significant (p = 0.167). There were improvements in 3-year survival for Group 2 (17%) and Group 3 (25%) compared to Group 1 (15%), but the differences were not statistically significant (p = 0.47). The same results were present for patients with less than 5% weight loss and patients with stage IIIA tumors. CONCLUSION: Thus, concurrent ChT and hyperfractionated RT had a higher incidence of severe acute esophageal toxicity. Severe late lung toxicity with concurrent ChT/hyperfractionated RT, as well as with induction ChT followed by concurrent ChT/standard RT, may be greater compared to sequential ChT/RT. (ABSTRACT TRUNCATED)

Antineoplastic Combined Chemotherapy Protocols↗

Failure patterns by prognostic group determined by recursive partitioning analysis (RPA) of 1547 patients on four radiation therapy oncology group (RTOG) studies in inoperable nonsmall-cell lung cancer (NSCLC).

PURPOSE: To identify groups of patients who might benefit from more aggressive systemic or local treatment, based on failure patterns when unresectable NSCLC was treated by radiation therapy (RT) alone. METHODS: From 4 RTOG trials, 1547 patients treated by RT alone were analyzed for patterns of first failure by RPA class defined by prognostic factors, including KPS, weight loss, nodal stage, pleural effusion, age and radiation therapy dose. All patients had NSCLC AJCC Stage II, IIIA, or IIIB, KPS > 50, with no previous RT or chemotherapy. Progressions in the primary (within irradiated fields), thorax (outside irradiated area, but within thorax), brain and distant metastasis other than brain were compared (2-sided) for each failure category by RPA. RESULTS: The RPA classes were 4 distinct subgroups that had significantly different median survivals of 12.6, 8.3, 6.3 and 3.3 months for Classes I, II, III and IV, respectively, (all groups, p = 0.0002). There were 583, 667, 249 and 48 patients in Classes I, II, III and IV, respectively. Primary failure was seen in 27%, 25%, 21% and 10% for Classes I, II, III, and IV, respectively (I vs. IV, p = 0.014; II vs. IV, p = 0.022). Distant metastasis, including brain metastasis, occurred at significantly higher rates among Classes I and II (58% and 54%) than in Classes III and IV (42% and 27%). A higher rate (58%) of death without an identifiable site of failure was found in Class IV than in Classes I, II and III (27%, 28% and 36%, respectively). CONCLUSIONS: The data suggest that physiologic compromise from the intrathoracic disease in Class IV patients is sufficient to cause death before specific sites of failure became evident. Clinical investigations using treatments directed at specific sites of failure could lead to improved outcome for Class I, II and, possibly, Class III patients. Inclusion of Class IV patients in clinical trials may obscure outcomes.

Aged↗

A multidisciplinary approach to therapy for unresectable malignant thymoma.

BACKGROUND: The therapeutic outcome for unresectable, locally advanced, malignant thymoma has been poor. OBJECTIVE: To improve tumor resectability and patient survival rates by studying a multimodal approach to therapy for unresectable malignant thymoma. DESIGN: Prospective cohort study. SETTING: Tertiary care cancer center. PARTICIPANTS: All eligible patients had newly diagnosed, histologically proven, unresectable malignant thymoma. INTERVENTION: The treatment regimen consisted of induction chemotherapy (three courses of cyclophosphamide, doxorubicin, cisplatin, and prednisone), surgical resection, postoperative radiation therapy, and consolidation chemotherapy (three courses of cyclophosphamide, doxorubicin, cisplatin, and prednisone). Tissue samples were taken at the time of surgical resection for assessment of tumor necrosis and Ki-67 expression. MEASUREMENTS: Tumor response and resectability (both overall and after induction chemotherapy) and disease-free survival rate in patients who received multimodal therapy. RESULTS: 13 patients were consecutively enrolled from February 1990 to December 1996, and 12 evaluable patients were assessed for response. Disease responded to induction chemotherapy completely in 3 patients (25%) and partially in 8 patients (67%); 1 patient had a minor response (8%). Eleven patients had surgical resection; 1 refused surgery. Tumors were removed completely in 9 (82%) and incompletely in 2 (18%) of 11 patients who had been receiving radiation therapy and consolidation chemotherapy. All 12 patients are alive (100% at 7 years), with a median follow-up of 43 months, and 10 patients are disease free (73% disease-free survival at 7 years). A high correlation was seen between tumor necrosis after induction chemotherapy and Ki-67 expression (r=-0.88). CONCLUSIONS: Aggressive multimodal treatment is highly effective and may cure locally advanced, unresectable malignant thymoma.

Adult↗

Prognostic significance of DNA content in stage I adenocarcinoma of the lung.

PURPOSE: Up to 30% of lung cancers (Stage I) with the most favorable outcome recur within 5 years after surgery. This study reviews the pattern of failure after surgical resection in early lung cancers and determines whether flow cytometric DNA variables were prognostic indicators for survival, disease-free survival (DFS), or distant metastasis-free survival (DMFS). METHODS AND MATERIALS: Pathologic specimens from 45 patients at The University of Texas M. D. Anderson Cancer Center who underwent surgical resection and mediastinal nodal dissection for stage I (AJCC) adenocarcinomas of the lung were analyzed by flow cytometry for DNA content. Survival was calculated by the method of Desu and Lee. Chi-square and cross tabulation were used in the analysis. RESULTS: The mean age of the patients was 62 years, and 52.3% were male. All patients were clinical Stage I (T1-2 N0), Karnofsky performance status > or = 70, and had a weight loss <10 lbs. Median overall survival (OS) and DFS were 50 months and 33 months, respectively. OS, DFS, and DMFS at 1, 3 and 5 years were 73%, 57%, and 35%; 63%, 53%, and 45%; and 67%, 56%, and 48%, respectively. Analysis of all 45 patients revealed 86% of patients developing brain metastasis had an abnormal DNA content > or = 30%, whereas 4% of patients with brain metastasis had abnormal DNA content < 30% (p = 0.01). This correlation maintained significance when only pT1/2 lesions were analyzed. There was a significant statistical correlation between abnormal DNA and 5-year OS, with 74% OS for those with abnormal DNA < 30% vs. 42% for > or = 30% (p = 0.036). The 5-year DFS for pT1/2 patients was significantly correlated with abnormal DNA content: 53% for patients with abnormal DNA < 30% vs. 17% for patients with abnormal DNA > or = 30%, respectively (p = 0.03). Of those with %S fraction (%S) < 2, 13% failed locally compared to 41% of those with %S > or = 2. There was a highly significant correlation between DNA index (DNAI) and aneuploid %S: 68% of patients with a DNAI > or = 1.7 had > or = 2.6 aneuploid %S, whereas only 13% of patients with DNAI > or = 1.7 had aneuploid %S < 2.6. (p < 0.001). Grouping the percent of abnormal DNA and overall %S according to low vs. mixed vs. high values correlated with DFS (p = 0.02). CONCLUSIONS: This study confirms significant correlation between a high DNA index and a higher frequency of brain metastasis, as well as worse OS. Although DNA content variables were not predictive of recurrence at other sites, brain metastasis represents the worst outcome from distant metastasis. Further studies are needed, as well as prospective trials, for evaluating adjuvant therapy in patients with adverse DNA variables following complete surgical resection for early disease. If high-risk patients could be identified after resection, adjuvant therapy (chemotherapy or elective brain irradiation) could be administered.

Adult↗

Factors influencing the development of lung fibrosis after chemoradiation for small cell carcinoma of the lung: evidence for inherent interindividual variation.

PURPOSE: Clinical observations often reveal individual differences in the severity of lung fibrosis after definitive radiation therapy for lung cancer. Recent experimental studies suggest that the risk of developing lung fibrosis may be genetically controlled. The present study was undertaken to examine the magnitude of individual variation in the incidence and severity of lung fibrosis in a well-defined patient population treated by concurrent chemoradiation for limited small-cell lung carcinomas (LSCLC). MATERIALS AND METHODS: Between 1989 and 1994, 56 patients with LSCLC were enrolled in one of two controlled prospective studies of concurrent chemotherapy and concomitant conventional (45 Gy in 25 fractions q.d. over 5 weeks) or accelerated (45 Gy in 30 fractions b.i.d. over 3 weeks) radiotherapy. Chemotherapy consisted of cisplatin and etoposide (PE) or PE plus ifosfamide and mesna (PIE). Of the 56, a group of 25 patients who had serial computerized tomography (CT) examinations of the chest and were deemed to have unequivocal radiographic complete responses were selected for this study. The severity of lung fibrosis was recorded for each patient from the CT images using an arbitrary scale (0 to 3) at 1 year after treatment. Radiographic fibrosis scores were recorded on 1-3 CT slices in 3 different dose-areas (20-30 Gy; 30-40 Gy; and >40 Gy) that were defined using the corresponding CT slices from the patient's CT treatment plan. Of these patients, 23 (92%) had at least 2 slices scored; 11 patients had all 3 slices scored. RESULTS: Among the clinical and treatment parameters investigated (including type of chemotherapy), only total dose and fractionation schedule were identified as significant and independent determinants of lung fibrosis. Radiographic fibrosis scores were higher in high-dose areas and among patients treated with the accelerated schedule. Using a fit of the proportional odds (PO) model based on the total dose and fractionation schedule, fibrosis score residuals were calculated for each patient. The residual for each score is defined as the difference between the observed and expected score based on the dose and treatment schedule received. Average residuals varied significantly among patients (p = 0.005, Kruskal-Willis test). Using a modified version of the PO model, the coefficient of variation in patient heterogeneity was estimated to be 10.1% (95% confidence interval: 6.2-14.9%). Inclusion of the heterogeneity factor, in addition to total dose and fractionation schedule, improved the fit of the PO model to an extremely high level of significance (p < 10(-7)). CONCLUSIONS: Our data indicate that the risk and severity of lung fibrosis analyzed radiographically on CT images increases with total dose and with the use of an accelerated radiation schedule, for patients treated with chemoradiation for small-cell lung cancer. There was also demonstrable patient-to-patient heterogeneity, suggesting that the risk of lung fibrosis is strongly affected by inherent factors that vary among individuals.

Adult↗

Prognostic biomarker study in pathologically staged N1 non-small cell lung cancer.

PURPOSE: The prognostic influence of 6 biomarkers correlated to histologic subtypes of non-small cell lung cancer (NSCLC) on loco-regional control, overall survival, disease-free survival (DFS), and distant disease control (DDC) rates, all measured at 5 years, were examined. MATERIALS & METHODS: Cell blocks from the primary tumors of 137 patients with pathologically staged N1 NSCLC at MDACC were analyzed by 6-biomarker status correlated to histological subtypes and their outcomes. RESULTS: The ranges of biomarker values were as follows: apoptotic index, 0.2-2.8%; mitotic index, 0-1.8%; the proportion of cells in S+G2M, 3-36%; p53 status, 0-100%; Ki-67, 0-9.3%; DNA index, 1.0-2.74. Subtypes of 137 cases from the postoperative pathology specimen showed that 74 patients had squamous carcinoma and 63 patients had adenocarcinoma. Mean and median lengths of follow-up were 4.21 years and 2.43 years, respectively. Patients with squamous cell carcinoma (SCC) had a better 5-year survival (p = 0.006), DFS (p = 0.002), and distant metastasis control (p = 0.002) than patients with adenocarcinoma (AC). Among patients with AC, the DNA index was a significant predictor of 5-year DFS (p = 0.02), DDC rate (p = 0.04), and local-regional control (p < 0.05). Higher apoptosis (p = 0.03) and mitosis indices (p = 0.03) were also univariate predictors of increased distant disease among patients with AC. Multivariate analysis of patients with AC revealed that the DNA index and Ki-67 were the only significant independent predictors of distant metastasis (p < 0.04 and p < 0.02, respectively) and DFS (p < 0.04 for both). Among patients with SCC, univariate analysis showed that S+G2M proportion (p < 0.05) and Ki-67 levels (p < 0.02) were significant predictors for local-regional control; for SC, multivariate analysis showed that only mitosis was a significant predictor in this case for overall survival (p < 0.04). CONCLUSION: Spontaneous apoptotic index and Ki-67 were significantly higher in SC than in AC. Patients with SC had less distant metastasis better DFS and overall survival than those with AC. Multivariate analysis revealed that DNA index and Ki-67 status were significant predictors for DDC and DFS in patients with AC, but only mitotic index was a significant predictor of overall survival for patients with SCC.

Adenocarcinoma↗

Integration of filgrastim into chemoradiation for limited small cell lung cancer: a Phase I study.

PURPOSE: Recent studies document the value of early combined modality therapy of small cell lung cancer, but also indicate that early thoracic radiation adds to myelosuppression and can complicate further chemotherapy. Other studies indicate that simultaneous use of growth factors with thoracic radiation may be deleterious. However, temporal separation of growth factor use from cytotoxic therapy may allow dose intensity to be maintained/enhanced during combined modality treatment. We sought to integrate filgrastim into a novel chemoradiation regimen for patients with limited small cell lung cancer using an approach that separated growth factor administration from both chemotherapy and thoracic radiation. METHODS AND MATERIALS: Twenty-seven patients with limited disease small cell lung cancer were enrolled in a Phase I trial of cisplatin, ifosfamide/mesna, oral etoposide, and thoracic radiation (1.5 Gy b.i.d. x 30 fractions days 1-19 cycle 1) +/- filgrastim (5 microg/kg/day). Filgrastim was given on days 20-25 of cycle 1 after completion of radiation and following completion of oral etoposide in subsequent cycles. The primary end point was determination of maximum tolerated dose (MTD) of chemotherapy. Serial cohorts were treated with and without filgrastim. RESULTS: Because of dose-limiting thrombocytopenia, primarily, and nonhematologic toxicity, the MTDs with and without filgrastim were identical (cisplatin 20 mg/m2 i.v. and ifosfamide 1200 mg/m2 i.v., both given days 1-3, and etoposide 40 mg/m2 p.o. days 1-14). Filgrastim use shortened the duration of neutropenia at the MTD (median 4 vs. 7 days), but was not associated with a reduction in febrile neutropenia. Although growth factor administration did not allow dose escalation of this regimen, it did allow chemotherapy doses to be maintained at the MTD more frequently through four cycles of therapy. In the 24 evaluable patients, the overall response rate was 100% (71% partial and 29% complete). CONCLUSIONS: Despite careful attention to the timing of growth factor with chemoradiation, the administration of filgrastim with this regimen did not allow dose escalation. As in many other recent studies of hematopoietic growth factors given prophylactically with chemotherapy, the duration of neutropenia at the MTD was shortened and the need for dose reduction throughout treatment was reduced in patients receiving filgrastim at the MTD.

Adult↗

Long-term follow-up of patients enrolled in a randomized trial comparing perioperative chemotherapy and surgery with surgery alone in resectable stage IIIA non-small-cell lung cancer.

Our previously reported randomized study of patients with untreated, potentially resectable clinical stage IIIA non-small-cell lung cancer found that patients treated with perioperative chemotherapy and surgery had a significant increase in median survival compared to patients treated with surgery alone. We have now re-analyzed the results of the study with a median time from random allocation to analysis for all patients of 82 months. The increase in survival conferred by perioperative chemotherapy was maintained during the period of extended observation.

Antineoplastic Agents↗