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B Movsas

Publications and source records attributed to B Movsas.

At least 37 records · Page 2Linked to original sources

Role of adjuvant therapy in resected stage II/IIIA non-small-cell lung cancer.

The role of adjuvant therapy following complete resection of node-positive (stage II/IIIA) non-small-cell lung cancer remains controversial. Five-year survival rates in pathologic stage II disease range from 30% to 50% and in resected stage IIIA disease from 10% to 30%. The majority of recurrences following surgery are distant metastases. This two-part review, which will conclude in the January 2002 issue, analyzes the role of adjuvant therapy in this setting, using an evidence-based approach and focusing primarily on randomized trials and meta-analyses. The key variables in evaluating these studies are elucidated, ranging from the extent of mediastinal, systemic, and "molecular" staging to the quality of the adjuvant treatments administered. Some of the potential flaws inherent in meta-analyses are reviewed. To date, there is no convincing evidence that any therapy consistently improves survival in the adjuvant setting. Postoperative radiotherapy has been associated with a significant improvement in local control, particularly in patients with pathologic N2 disease. Chemotherapy should be offered to patients in appropriate clinical trials, and active phase III trials are reviewed. Future strategies include novel chemotherapy, methods to reduce toxicity, the emerging role of neoadjuvant therapy, and the promise of new biologic agents.

Carcinoma, Non-Small-Cell Lung↗

Optimum beam angles for the conformal treatment of lung cancer: a CT simulation study.

Treatment of lung cancer is often performed with cone-down oblique beams to spare spinal cord and normal structures. However, there is no optimum technique to determine oblique beam angles when a CT simulation is not available. Impact of oblique beam angle was investigated in this study. Fifteen patients with centrally located lung tumors were immobilized and scanned using a CT simulator. The target volumes, left and right lungs, and spinal cord were delineated on each slice. Patients were simulated starting with anterior-posterior treatment beams and subsequently an oblique opposed pair beam from 0 degrees up to 60 degrees at an interval of 5 degrees to optimize the projection of target-to-cord distance and minimize the lung volume in the treatment fields. Analysis was performed with a dose volume histogram (DVH) in each beam orientation. The distance between the target volume and spinal cord was linearly related to the angle of the beam. A larger angle facilitated further sparing of the spinal cord; however, progressively more lung volume was exposed. The 50% DVH data for lung volume was used as an indicator of lung volume. Although, the minimum lung volume was irradiated with an angle of 30 degrees, the additional lung treated increased by only 8 +/- 7% of the total lung volume for 30-60 degrees beam angles and cord distance increased by 18.5 mm. A 30 degrees oblique parallel-opposed beam for the cone-down treatment of lung provided minimum lung volume in the irradiated field; however, the spinal cord distance increased linearly with beam angle. A CT simulator is ideally suited for simulation of lung cancer to maximize the clearance from the spinal cord and minimize the additional lung volume irradiated. Int. J. Cancer (Radiat. Oncol. Invest.) 90, 359-365 (2000).

Aged↗

Increasing levels of hypoxia in prostate carcinoma correlate significantly with increasing clinical stage and patient age: an Eppendorf pO(2) study.

BACKGROUND: The purpose of this study was to analyze the extent of hypoxia in prostate carcinoma tumors using the Eppendorf pO(2) microelectrode and correlate this with pretreatment characteristics and prognostic factors. METHODS: Custom-made Eppendorf pO(2) microelectrodes were used to obtain pO(2) measurements from the pathologically involved region of the prostate (as determined by the pretreatment sextant biopsies) as well as from a region of normal muscle for comparison. Each set of measurements comprised approximately 100 separate readings of pO(2), for a total of 10,804 individual measurements. Fifty-five patients with localized prostate carcinoma were studied: Forty-one patients received brachytherapy implants, and 14 patients underwent radical prostatectomy. The pO(2) measurements were obtained in the operating room by using a sterile technique under spinal anesthesia for the brachytherapy group and under general anesthesia for the surgery group. The Eppendorf histograms were recorded and described by the median pO(2), mean pO(2), and percentage < 5 mm Hg and < 10 mm Hg. A multivariate mixed-effects analysis for the prediction of tumor oxygenation was performed and included the following covariates: type of tissue (prostate vs. muscle), type of treatment (implant vs. surgery) and/or anesthesia (spinal vs. general), prostate specific antigen level, disease stage, patient age and race, tumor grade, tumor volume, perineural invasion, and hormonal therapy. RESULTS: Due to differences in patient characteristics and the anesthesia employed, control measurements were obtained from normal muscle (in all but two patients). This internal comparison showed that the oxygen measurements from the pathologically involved portion of the prostate were significantly lower (average median pO(2), 9.9 mm Hg) compared with the measurements normal muscle (average median pO(2), 28.6 mm Hg; P < 0.0001). A multivariate, linear, mixed analysis demonstrated that, among all of the patients, the significant predictors of oxygenation were tissue (prostate vs. muscle) and anesthesia (spinal vs. general) or treatment (implant vs. surgery). Among the brachytherapy (spinal anesthesia) patients, the significant predictors of pO(2) were tissue type, disease stage, and patient age. There were no significant predictors of oxygenation in the surgical (general anesthesia) group. CONCLUSIONS: This study, employing in vivo electrode oxygen measurements, demonstrated that hypoxia exists in prostate carcinoma tumors. A dramatic effect of anesthesia was observed, likely due to modulation of polarography in the presence of fluorine. Within the group of brachytherapy (spinal anesthesia) patients, increasing levels of hypoxia (within prostatic tissue) correlated significantly with increasing clinical stage and patient age. More patients will be accrued to this prospective study to further correlate the oxygenation status in prostate carcinoma tumors with known prognostic factors and, ultimately, treatment outcome.

Age Factors↗

Importance of the mini-mental status examination in the treatment of patients with brain metastases: a report from the Radiation Therapy Oncology Group protocol 91-04.

PURPOSE: Little information is available on the importance of pretreatment Mini-Mental Status Exam (MMSE) on long-term survival and neurologic function following treatment for unresectable brain metastases. This study examines the importance of the MMSE in predicting outcome in a group of patients treated with an accelerated fractionation regimen of 30 Gy in 10 daily fractions in 2 weeks. MATERIALS AND METHODS: The Radiation Therapy Oncology Group (RTOG) accrued 445 patients to a Phase III comparison of accelerated hyperfractionated (AH) radiotherapy (1.6 Gy b.i.d.) to a total dose of 54.4 Gy vs. an accelerated fractionation (AF) of 30 Gy in 10 daily fractions from 1991 through 1995. All patients had histologic proof of malignancy at the primary site. Brain metastases were measurable by CT or MRI scan and all patients had a Karnofsky performance score (KPS) of at least 70 and a neurologic function classification of 1 or 2. Two hundred twenty-four patients were entered on the accelerated fractionated arm, and 182 were eligible for analysis (7 patients were judged ineligible, no MMSE information in 29, no survival data in 1, no forms submitted in 1). RESULTS: Average age was 60 years; 58% were male and 25% had a single intracranial lesion on their pretherapy evaluation. KPS was 70 in 32%, 80 in 31%, 90 in 29%, and 100 in 14%. The average MMSE was 26.5, which is the lower quartile for normal in the U.S. population. The range of the MMSE scores was 11-30 with 30 being the maximum. A score of less than 23 indicates possible dementia, which occurred in 16% of the patients prior to treatment. The median time from diagnosis to treatment was 5 days (range, 0-158 days). The median survival was 4.2 months with a 95% confidence interval of 3.7-5.1 months. Thirty-seven percent of the patients were alive at 6 months, and 17% were alive at 1 year. The following variables were examined in a Cox proportional-hazards model to determine their prognostic value for overall survival: age, gender, KPS, baseline MMSE, time until MMSE below 23, time since diagnosis, number of brain metastases, and radiosurgery eligibility. In all Cox model analyses, age, KPS, baseline MMSE, time until MMSE below 23, and time since diagnosis were treated as continuous variables. Statistically significant factors for survival were pretreatment MMSE (p = 0.0002), and KPS (p = 0.02). Age was of borderline significance (p = 0.065) as well as gender (p = 0.074). A poorer outcome is associated with an increasing age, male gender, lower MMSE, and shorter time until MMSE below 23. Improvement in MMSE over time was assessed; 62 patients died prior to obtaining follow-up MMSE, and 30 patients had a baseline MMSE of 30 (the maximum), and, therefore, no improvement could be expected. Of the remaining 88, 48 (54.5%) demonstrated an improvement in their MMSE at any follow-up visit. Lack of decline of MMSE below 23 was seen in long-term survivors, with 81% at 6 months and 66% at 1 year of patients maintaining a MMSE above 23. Analysis of time until death from brain metastases demonstrated that decreasing baseline MMSE (p = 0.003) and primary site (breast vs. lung vs. other p = 0.032) were highly associated with a terminal event. CONCLUSION: While gender and perhaps age remain significant predictors for survival, MMSE is also an important way of assessing a patient's outcome. Accelerated fractionation used in the treatment of brain metastases (30 Gy in 10 fractions) appears to also be associated with an improvement in MMSE and a lack of decline of MMSE below 23 in long-term survivors.

Adult↗

Phase II trial of induction high-dose chemotherapy followed by surgical resection and radiation therapy for patients with marginally resectable non-small cell carcinoma of the lung.

The combination of carboplatin and paclitaxel is an active regimen in non-small cell lung cancer (NSCLC). Historically, patients with stage III disease have manifested higher response rates than patients with metastatic disease, and patients achieving a pathologic complete response to induction chemoradiation therapy prior to surgery have shown better long-term outcome. Based upon our pilot data using high-dose carboplatin and paclitaxel, we designed a phase II trial in patients with marginally resectable stage IIIA NSCLC. Ten patients, with bulky nodal stage IIIA disease, initially received etoposide (2 g/m2) and granulocyte colony-stimulating factor (G-CSF) to mobilize peripheral blood stem cells (PBSC). Two cycles, 28 days apart, of carboplatin (AUC 12 in seven patients; AUC 16 in three patients) and paclitaxel (250 mg/m2) were administered with filgrastim (5 microg/kg) and PBSC support. After re-evaluation, patients underwent a thoracotomy followed by radiotherapy (44-60 Gy) if deemed resectable, or radiotherapy alone (60 Gy) if not resectable. The median age was 58.5 years (48-66) with a median ECOG performance status of 0 (0-1). Histology was adenocarcinoma in seven patients; the remainder had either squamous cell, large cell or bronchoalveolar carcinoma. Based on CT radiography, the overall response rate was 40%. Eight of ten patients underwent resection with four right pneumonectomies, three right upper lobectomies and one wedge resection of the right upper lobe. Six patients had a complete resection. Of eight patients resected, four were downstaged by induction therapy, three remained unchanged and one was found to have more extensive disease. The remaining two patients developed metastatic disease while receiving chemotherapy. The median dose of postoperative radiotherapy was 54 Gy (35-66 Gy). Actual median follow-up for all patients was 89 weeks (25 to 136+). The actuarial median overall survival was 124 weeks (25 to 136+) and time to progression was 57 weeks (17 to 136+). The median dose of carboplatin delivered expressed as mg/m2 was 779 (615-1540). Neutropenic fever occurred in two patients during the initial mobilization cycle only. The median number of units of RBC and/or platelets transfused was 0 (0-2 and 0-6, respectively). There were no significant non-hematologic toxicities. High-dose induction chemotherapy with stem cell rescue is feasible and safe with an acceptable response rate. Thoracotomy, including pneumonectomy and postoperative radiotherapy, were well tolerated by patients after undergoing high-dose induction chemotherapy with no apparent increase in peri-operative morbidity. The pathologic complete response rate was low--one out of ten patients. These results indicate that dose escalation of induction chemotherapy does not improve response rates even in this highly selected patient population. Accordingly, the complexity and potential toxicity of high-dose chemotherapy, as delivered in this trial as neoadjuvant treatment of non-small cell lung cancer, is not warranted.

Adenocarcinoma↗

Intracranial fibrosarcoma arising 5 years after chemotherapy alone for glioblastoma multiforme in a child.

We present a child diagnosed with glioblastoma multiforme during infancy and successfully treated with the 'eight-in-one' chemotherapy regimen, who developed an intracranial fibrosarcoma 5 years later. After resection of the fibrosarcoma, she received cranial radiation therapy and high dose chemotherapy with bone marrow transplant. She remains alive and recurrence-free 7 years following the diagnosis of her second intracranial malignancy.

Bone Marrow Transplantation↗

Cisplatin, ifosfamide, oral etoposide, and concurrent accelerated hyperfractionated thoracic radiation for patients with limited small-cell lung carcinoma: results of radiation therapy oncology group trial 93-12.

PURPOSE: The combination of cisplatin, ifosfamide, and oral etoposide (PIEo) given concurrently with accelerated hyperfractionated thoracic radiation was studied in patients with limited small-cell lung cancer in a phase II trial to assess response, survival, and toxicity. PATIENTS AND METHODS: Sixty-seven patients were accrued between March 1994 and April 1996. Chemotherapy doses were cisplatin 20 mg/m(2) and ifosfamide 1,200 mg/m(2) on days 1 to 3 and etoposide 40 mg/m(2) administered orally days 1 through 14. Radiation consisted of accelerated hyperfractionated thoracic radiation (AHTRT) 1.5 Gy bid x 30 fractions (total 45 Gy) days 1 through 19, concurrent with cycle 1 of chemotherapy. Three additional cycles of chemotherapy were given every 4 weeks after completion of chemoradiation. Prophylactic cranial radiation (25 Gy in 10 fractions) was offered to patients for whom complete response (CR) after completion of chemotherapy was achieved. RESULTS: An overall objective response rate of 78% (41 CRs [67%] and seven partial responses [11%]) was seen in 61 patients whose disease response could be evaluated. Median progression-free and overall survival estimates were 12.7 and 23.7 months, respectively. Two- and 3-year survival rates were estimated at 50% and 39%, respectively. Major toxic effects included grade 4 granulocytopenia in 34 (55%), grade 4 thrombocytopenia in 16 (26%), grade 3 to 5 fever/infection in six (10%; with one death resulting from sepsis), and grade 3/4 esophagitis in 27 patients (43%). Other nonhematologic toxic greater than grade 2 occurred in 11 patients (18%). CONCLUSION: Relative to conventional etoposide/cisplatin and concurrent AHTRT, chemoradiation with PIEo produced similar median and 2-year survival rates and a higher rate of acute esophageal toxicity. However, the locoregional control rate with a minimum follow-up of 2 years is excellent at 80%. It is conceivable that longer follow-up will prove this regimen more promising. Research efforts should focus on other methods to improve disease control in all potential sites of recurrence.

Administration, Oral↗

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↗

Hypoxic regions exist in human prostate carcinoma.

OBJECTIVES: The purpose of this study was to characterize, by use of the Eppendorf microelectrode, the extent of hypoxia (range/heterogeneity) in human prostate carcinomas. METHODS: Custom-made Eppendorf pO2 microelectrodes were used to obtain PO2 measurements from the pathologically involved side of the prostate, as well as from a region of normal muscle for comparison. Each set of measurements comprised approximately 100 separate readings of pO2, for a total of 2145 individual measurements. Twelve patients were studied, 7 of whom underwent brachytherapy, 3 a radical prostatectomy, and 2 a cystoprostatectomy. The pO2 measurements were obtained in the operating room, using sterile technique, under spinal anesthesia for the brachytherapy group patients and under general anesthesia for the surgery group patients. The Eppendorf histograms were recorded and described by the median pO2, mean pO2, and percentage of measurements less than 5 mm Hg and less than 10 mm Hg. RESULTS: Because of differences in patient characteristics and the anesthesia employed, control measurements were obtained from nearby normal muscle as an internal control in all but 2 patients. This internal comparison showed that the oxygen measurements from the pathologically involved portion of the prostate were significantly lower than those from normal muscle. Similarly, higher pO2 readings were obtained from the pathologically normal prostates (in the patients with bladder cancer) than from the prostates of patients with prostate carcinoma. Increasing levels of hypoxia were observed with increasing clinical stage. Significant predictors of oxygenation include the type of tissue (pathologically involved prostate versus normal muscle or normal prostate), clinical stage, and type of anesthesia. CONCLUSIONS: This report, to our knowledge, represents the first study to obtain in vivo electrode measurements of oxygen levels in patients with prostate cancer and suggests that hypoxic regions exist in human prostate carcinoma. More patients will be accrued to this prospective study to correlate the oxygenation status of prostate carcinoma with known prognostic factors and treatment outcome.

Adult↗

Phase I dose escalating trial of hyperfractionated pre-operative chemoradiation for locally advanced rectal cancer.

PURPOSE: To determine the acute toxicity, post-operative complications, pathologic response and extent of downstaging to high dose pre-operative radiation using a hyperfractionated radiation boost and concurrent chemotherapy in a prospective Phase I trial. MATERIALS & METHODS: To be eligible for this study, patients had to have adenocarcinoma of the rectum less than 12 cm from the anal verge with either Stage T4 or T3 but greater than 4 cm or greater than 40% of the bowel circumference. All patients received 45 Gy pelvic radiation (1.8 Gy per fraction). Subsequent radiation was given to the region of the gross tumor with a 2 cm margin. This "boost" treatment was given at 1.2 Gy twice daily to a total dose of 54.6 Gy for Level I, 57 Gy for Level II, and 61.8 Gy for Level III. 5-FU was given at 1g/m2 over 24 hours for a four day infusion during the first and sixth weeks of radiation, with the second course concurrent with the hyperfractionated radiation. Surgical resection was carried out 4-6 weeks following completion of chemoradiation (in curative cases) and additional adjuvant chemotherapy consisting of 5-FU and Leucovorin was given for an additional 4 monthly cycles Days 1 through 5 beginning four weeks post surgery. RESULTS: Twenty-seven patients, age 40-82 (median 61), completed the initial course of chemoradiation and are included in the analysis of toxicity. The median follow-up is 27 months (range 8-68). Eleven patients were treated to a dose of 54.6 Gy, nine patients to 57 Gy, and seven patients to 61.8 Gy. Twenty-one patients had T3 tumors, and six patients T4 tumors. Grade III acute toxicity from chemoradiation included proctitis (5 patients), dermatitis (9), diarrhea (five), leukopenia (1), cardiac (1). Grade IV toxicities included one patient with diarrhea (on dose Level I) and one patient (on dose Level III) with cardiac toxicity (unrelated to radiation). Surgical resection consisted of abdominal perineal resection in 16 and low anterior resection in 7. Four patients did not undergo a curative resection; three initially presented with metastases and one developed metastasis during the pre-operative regimen. Post-operative complications included pelvic or perineal abscess in two (on dose Levels I & II), and delayed wound healing in two (one of whom, on dose Level III, developed perineal wound dehiscence requiring surgical reconstruction). Of the 23 patients who had a curative resection, four manifested pathologic complete responses (17.4%). Thirteen of 23 patients (57%) had evidence of pathologic downstaging and only 1/23 patients (on dose Level I) had a positive resection margin. Of these 23 patients (with a minimum follow-up of 8 months), the patient with positive margins was the only one who developed a local failure (Fisher's Exact p=.04). The 3-year actuarial OS, DFS and LC rates are 82%, 72% and 96%, respectively. Twelve of 13 patients (92% at 3 years) > or = 61 years vs. 5/10 patients (45% at 3 years) < 61 years remained disease-free (log-rank p=0.017). CONCLUSION: This regimen of high dose pre-operative chemoradiation employing a hyperfractionated radiation boost is feasible and tolerable and results in significant downstaging in locally advanced rectal cancer. The vast majority of patients (96%) achieved negative margins, which appears to be a prerequisite for local control (p= 0.04). Older age (> or =61 years) was a significant predictor for improved DFS. This regimen (at dose Level III, 61.8 Gy) is currently being tested in a Phase II setting.

Adenocarcinoma↗

Dose escalation with 3D conformal treatment: five year outcomes, treatment optimization, and future directions.

PURPOSE: To report the 5-year outcomes of dose escalation with 3D conformal treatment (3DCRT) of prostate cancer. METHODS AND MATERIALS: Two hundred thirty-two consecutive patients were treated with 3DCRT alone between 6/89 and 10/92 with ICRU reporting point dose that increased from 63 to 79 Gy. The median follow-up was 60 months, and any patient free of clinical or biochemical evidence of disease was termed bNED. Biochemical failure was defined as prostate-specific antigen (PSA) rising on two consecutive recordings and exceeding 1.5 ng/ml. Morbidity was reported by the Radiation Therapy Oncology Group (RTOG) scale, the Late Effects Normal Tissue (LENT) scale, and a Fox Chase modification of the latter (FC-LENT). All patients were treated with a four-field technique with a 1 cm clinical target volume (CTV) to planning target volume (PTV) margin to the prostate or prostate boost; the CTV and gross tumor volume (GTV) were the same. Actuarial rates of outcome were calculated by Kaplan-Meier and cumulative incidence methods and compared using the log rank and Gray's test statistic, respectively. Cox regression models were used to establish prognostic factors predictive of the various measures of outcome. Five-year Kaplan-Meier bNED rates were utilized by dose group to estimate logit response models for bNED and late morbidity. RESULTS: PSA <10 ng/ml: No dose response was demonstrated using estimated bNED rates or by analysis of PSA nadir vs. dose. PSA 10-19.9 ng/ml: A bNED dose response was demonstrated (p = 0.02) using the log rank test. The logit response model showed 5-year bNED rates of 35% at 70 Gy and 75% at 76 Gy (p = 0.0049) and illustrated the relative ineffectiveness of conventional dose treatment. PSA 20+ ng/ml: A bNED dose response was demonstrated (p = 0.02) using the log rank test. The logit response model indicated a 5-year bNED rate of 10% at 70 Gy and 32% at 76 Gy (p = 0.10). Morbidity: Dose response was demonstrated for FC-LENT grade 2 and grade 3,4 GI morbidity and for LENT grade 2 GU sequelae. RTOG grade 3,4 GI morbidity at 5 years was <1%. Factors associated with bNED, cause-specific survival, and metastasis were studied using Cox multivariate analysis. Pretreatment PSA (p = 0.0001), Gleason score 7-10 (p = 0.0001), and dose (p = 0.017) were significantly predictive of bNED. For each 1 Gy increase in dose, the hazard of bNED failure decreased by 8%. Palpation stage was associated with cause-specific survival (p = 0.002) and distant metastasis (p = 0.0004). Gleason score was also predictive of distant metastasis (p = 0.02). CONCLUSIONS: A dose response was observed for patients with pretreatment PSA >10 ng/ml based on 5-year bNED results. No dose response was observed for patients with pretreatment PSA < 10 ng/ml. Dose response was observed for FC-LENT grade 2 and grade 3,4 GI sequelae and for LENT grade 2 GU sequelae. Optimization of treatment was made possible by the results in this report. The improvement in 5-year bNED rates for patients with PSA levels > 10 ng/ml strongly suggests that clinical trials employing radiation should investigate the use of 3DCRT and prostate doses of 76-80 Gy.

Dose-Response Relationship, Radiation↗

Is there an increased risk of second primaries following prostate irradiation?

PURPOSE: To assess the risk of developing a second primary cancer following prostate irradiation compared to the underlying risk in patients with prostate cancer. METHODS AND MATERIALS: The baseline rate of secondary cancers following prostate cancer was obtained from a study of 18,135 patients from the Connecticut Tumor Registry, of whom only 12.5% received radiotherapy. These patients, with a mean age of 72 and a mean follow-up of 3.9 years, were compared to a cohort of 543 patients (median age 70) with similar follow-up (median 3.9 years), all of whom were treated with definitive radiotherapy at Fox Chase Cancer Center. The possible association between various covariates (age, dose, palpation stage, field size, Gleason score, pretreatment PSA) and the development of a secondary cancer was assessed. RESULTS: 1,053 of 18,135 patients (5.8%) in the Connecticut Tumor Registry developed a second primary cancer compared with 31 of 543 (5.7%) patients treated with prostate radiation (p = 0.99). Although this risk increases gradually over time, it is not significantly different, at any time period, between the two groups of patients. Of the 31 secondary primaries in the irradiated group, 82% had a history of tobacco and/or alcohol use. Only melanomas were significantly increased compared to the expected rate in an age-matched population (p < 0.001). Five of the 31 secondary cancers occurred within the radiation field (four bladder, one colon), four within 3 years and only one occurred 9 years after radiotherapy. No association was found between age (<70 vs. > or =70 and as a continuous variable), dose (<74 vs. > or =74 Gy), palpation stage ( or =T2C), field size (prostate vs. pelvic), radiation technique (conventional vs. conformal), Gleason score (2-6 vs. 7-10), or pretreatment PSA (<15 vs. > or =15 and as a continuous variable) and the risk of developing a second primary. Although a lower radiation dose (as a continuous variable) correlated with an increased risk of developing a secondary cancer (p = 0.04), this phenomenon is likely due to differences in follow-up time. CONCLUSION: Up to at least 10 years, there is no increased risk of developing a second primary cancer following prostate irradiation compared to the baseline rate from prostate cancer itself. This risk is not higher in younger patients with localized disease (<T2C), who often must choose between surgery and radiation. The vast majority of secondary cancers occurred outside of the radiation field (84%) and/or within 3 years of radiotherapy (97%), suggesting they were not caused by radiation. Most of these patients had lifestyles with predisposing risk factors. Patients with prostate cancer manifested a significantly increased risk of developing melanomas, suggesting that they may benefit from patient education and skin screening examinations.

Aged↗

Validation and predictive power of Radiation Therapy Oncology Group (RTOG) recursive partitioning analysis classes for malignant glioma patients: a report using RTOG 90-06.

PURPOSE: The recursive partitioning analysis (RPA) classes for malignant glioma patients were previously established using data on over 1500 patients entered on Radiation Therapy Oncology Group (RTOG) clinical trials. The purpose of the current analysis was to validate the RPA classes with a new dataset (RTOG 90-06), determine the predictive power of the RPA classes, and establish the usefulness of the database norms for the RPA classes. PATIENTS AND METHODS: There are six RPA classes for malignant glioma patients that comprise distinct groups of patients with significantly different survival outcome. RTOG 90-06 is a randomized Phase III study of 712 patients accrued from 1990 to 1994. The minimum potential follow-up is 18 months. The treatment arms were combined for the purpose of this analysis. There were 84, 13, 105, 240, 150, and 23 patients in the RPA Classes I-VI from RTOG 90-06, respectively. RESULTS: The median survival times (MST) and 2-year survival rates for the six RPA classes in RTOG 90-06 are compared to those previously published. The MST and 2-year survival rates for the RTOG RPA classes were within 95% confidence intervals of the 90-06 estimates for Classes I, III, IV, and V. The RPA classes explained 43% of the variation (squared error loss). By comparison, a Cox model explains 30% of the variation. The RPA classes within RTOG 90-06 are statistically distinct with all comparisons exceeding 0.0001, except those involving Class II. A survival analysis from a prior RTOG study indicated that 72.0 Gy had superior outcome to literature controls; analysis of this data by RPA classes indicates the survival results were not superior to the RTOG database norms. CONCLUSION: The validity of the model is verified by the reliability of the RPA classes to define distinct groups with respect to survival. Further evidence is given by prediction of MST and 2-year survival for all classes except Class II. The RPA classes explained a good portion of the variation in survival outcome in the data. Lack of correlation in RPA Class II between datasets may be an artifact of the small sample size or an indication that this class is not distinct. The validation of the RPA classes attests to their usefulness as historical controls for the comparison of future Phase II results.

Dose Fractionation, Radiation↗

Response during radiotherapy may be associated with outcome in mediastinal Hodgkin's disease.

A relationship between the rate of regression of lymphomas treated with chemotherapy and long-term outcome has been observed. This study was undertaken to determine if the rate of tumor regression during radiotherapy for mediastinal Hodgkin's disease is a predictor of in-field recurrence. Twenty-nine patients with early-stage Hodgkin's disease treated with radiotherapy alone as part of an NCI randomized trial had both a non-massive mediastinal component of disease and all requisite simulation and port films available for analysis. The histology was nodular sclerosis in all patients. Stage distribution was as follows: IA-1; IIA-17; IIB-8; IIIA1-3. The median age was 27 years and the median radiation dose was 4470 cGy. A mediastinal mass ratio was calculated from each patient's simulation and weekly port films by dividing the width of the mediastinal mass by the intrathoracic diameter at the level of the carina. Histopathologic correlation was also done to quantify the degree of tumor vs. sclerosis in the specimens. Univariate analysis and Cox proportional hazards analysis were used to study the association between several covariates (stage, sex, symptoms, extra-lymphatic disease, initial mediastinal mass ratio, age, dose, percent tumor in the specimen, and cumulative percentage of tumor regression) and time to in-field recurrence, as well as probability of any failure. Univariate analysis indicates that lower dose, higher percent tumor in the specimen, and lower cumulative percent regression are statistically significant predictors for in-field recurrence, as well as for any failure. By Cox regression analysis, cumulative percent regression is the sole factor independently associated with in-field recurrence (two-tailed P=0.04). The percent tumor in the specimen is the only factor similarly identified for time to any failure (two-tailed P=0.02). Histopathologic correlation suggests that patients with early stage mediastinal Hodgkin's disease who demonstrate a high percent tumor in the specimen may be at increased risk of failure. Patients with a low cumulative percent regression during radiotherapy appear to be at an increased risk of in-field recurrence.

Adolescent↗

Age-related prostate cancer metastases.

OBJECTIVES: Metastatic prostate cancer results in significant patient morbidity, health care expenditure, and ultimately in mortality. We sought to identify patient and treatment factors predictive of distant metastases in patients completing external beam radiotherapy. METHODS: Five hundred sixty-seven patients completing external beam radiotherapy at Fox Chase Cancer Center, Philadelphia, Pennsylvania between March 1987 and November 1994 for Stage T1 to T3 tumors were analyzed. Distant metastases were detected by radionuclide bone scans. Estimates of rates for distant metastases as a first failure were conducted using cumulative incidence methods and predictors of failure were analyzed univariately and multivariately. RESULTS: The median follow-up was 46 months. On univariate analysis, the following were statistically significant predictors of distant metastases at 5 years: patient age greater than 65 years, pretreatment prostate-specific antigen (PSA) level, advanced stage, lower radiation dose, and Gleason score 7 to 10. Multivariate testing confirmed that age greater than 65 years, high pretreatment PSA level, lower radiation dose, and advanced stage were significant independent predictors of distant metastases. CONCLUSIONS: Men over the age of 65 years are more likely to experience distant failure than are younger men. The discovery of age-related differences in patterns of failure has significant therapeutic implications with regard to patient selection, trial design, and adjuvant therapy recommendations. Furthermore, age-related differences in failure may influence comparison of outcome data for radiotherapy series, which tend to have older patients, to surgical reports that usually include significantly younger men.

Adenocarcinoma↗

Primary cardiac sarcoma: a novel treatment approach.

Primary cardiac sarcomas carry a dismal prognosis with no known curative therapy using standard treatment approaches. By its very location, the possibility of a radical complete resection--the underlying principle in the management of any soft-tissue sarcoma--is precluded. While literally in a continuous "blood bath," cardiac sarcomas are associated with a very high rate of hematogenous metastases. This report describes the management of a case in a 51-year-old white man with a high-grade unresectable cardiac sarcoma who was treated with hyperfractionated (twice daily) radiotherapy to a total dose of 7,050 cGy along with a radiosensitizer, (5'-iododeoxyuridine. The patient currently is disease-free and functioning well more than 5 years following this novel treatment approach.

Antineoplastic Agents↗

Prostate cancer patient subsets showing improved bNED control with adjuvant androgen deprivation.

PURPOSE: Cooperative groups have investigated the outcome of androgen deprivation therapy combined with radiation therapy in prostate cancer patients with variable pretreatment prognostic indicators. This report describes an objective means of selecting patients for adjuvant hormonal therapy by a retrospective matched case/control comparison of outcome between patients with specific pretreatment characteristics who receive adjuvant hormones (RT+H) vs. patients with identical pretreatment characteristics treated with radiation therapy alone (RT). In addition, this report shows the 5-year bNED control for patients selected by this method for RT+H vs. RT alone. METHODS AND MATERIALS: From 10/88 to 12/93, 517 T1-T3 NXM0 patients with known pretreatment PSA level were treated at Fox Chase Cancer Center. Four hundred fifty-nine of those patients were treated with RT alone while 58 were treated with RT+H. The patients were categorized according to putative prognostic factors indicative of bNED control, which include the palpation stage, Gleason score, and pretreatment PSA. We compared actuarial bNED control rates according to treatment group within each of the prognostic groups. In addition, we devised a retrospective matched case/control selection of RT patients for comparison with the RT+H group. Five-year bNED control was compared for the two treatment groups, excluding the best prognosis group, using 56 RT+H patients and 56 matched (by stage, grade, and pretreatment PSA level) controls randomly selected from the RT alone group. bNED control for the entire group of 517 patients was then analyzed multivariately using step-wise Cox regression to determine independent predictors of outcome. Covariates considered for entry into the model included stage (T1/T2AB vs. T2C/T3), grade (2-6 vs. 7-10), pretreatment PSA (0-15 vs. > 15), treatment (RT vs. RT+H), and center of prostate dose. bNED failure is defined as PSA > or = 1.5 ngm/ml and rising on two consecutive determinations. The median follow-up for the 112 matched case/control patients was 41 months. The median follow-up was 46 months for the RT (range 11-102 months) and 37 months for the RT+H group (range 6-82 months). RESULTS: Univariate analysis according to treatment for the prognostic factors of palpation stage, Gleason score, and pretreatment PSA demonstrates a significant improvement in 3-year bNED control with the addition of hormones for patients with T2C/T3, Gleason score 7-10, or pretreatment PSA > 15 ngm/ml. A comparison of bNED control according to treatment demonstrates improvement in 5-year bNED control of 55% for patients treated with RT+H vs. 31% for those patients treated with RT alone (p = 0.0088), although there is not a survival advantage. Multivariate analysis demonstrates that hormonal treatment is a highly significant independent predictor of bNED control (p = 0.0006) along with pretreatment PSA (p = 0.0001), palpation stage (p = 0.0001), grade (p = 0.0030), and dose (p = 0.0001). CONCLUSIONS: (1) Patients with specific adverse pretreatment prognostic factors (i.e., T2C/T3, Gleason score 7-10, pretreatment PSA > 15) benefit from adjuvant hormonal therapy. (2) Upon multivariate analysis, hormonal therapy is determined to be a highly significant predictor of bNED control, after adjusting for all other covariates. (3) The 5-year bNED control rates of 55% for RT+H vs. 31% for RT alone represents the magnitude of benefit from adjuvant hormone therapy. (4) The bNED control curves are separated by about 20 months, representing a delay in disease progression with adjuvant hormonal therapy, as there is no overall survival difference.

Analysis of Variance↗

A randomized phase III study of accelerated hyperfractionation versus standard in patients with unresected brain metastases: a report of the Radiation Therapy Oncology Group (RTOG) 9104.

PURPOSE: To compare 1-year survival and acute toxicity rates between an accelerated hyperfractionated (AH) radiotherapy (1.6 Gy b.i.d.) to a total dose of 54.4 Gy vs. an accelerated fractionation (AF) of 30 Gy in 10 daily fractions in patients with unresected brain metastasis. METHODS AND MATERIALS: The Radiation Therapy Oncology Group (RTOG) accrued 445 patients to a Phase III comparison of accelerated hyperfractionation vs. standard fractionation from 1991 through 1995. All patients had histologic proof of malignancy at the primary site. Brain metastasis were measurable by CT or MRI scan and all patients had a Karnofsky performance score (KPS) of at least 70 and a neurologic function classification of 1 or 2. For AH, 32 Gy in 20 fractions over 10 treatment days (1.6 Gy twice daily) was delivered to the whole brain. A boost of 22.4 Gy in 14 fractions was delivered to each lesion with a 2-cm margin. RESULTS: The average age in both groups was 60 years; nearly two-thirds of all patients had lung primaries. Of the 429 eligible and analyzable patients, the median survival time was 4.5 months in both arms. The 1-year survival rate was 19% in the AF arm vs. 16% in the AH arm. No difference in median or 1-year survival was observed among patients with solitary metastasis between treatment arms. Recursive partitioning analysis (RPA) classes have previously been identified and patients with a KPS of 70 or more, a controlled primary tumor, less than 65 years of age, and brain metastases only (RPA class I), had a 1-year survival of 35% in the AF arm vs. 25% in the AH arm (p = 0.95). In a multivariate model, only age, KPS, extent of metastatic disease (intracranial metastases only vs. intra- and extracranial metastases), and status of primary (controlled vs. uncontrolled) were statistically significant (at p < 0.05). Treatment assignment was not statistically significant. Overall Grade III or IV toxicity was equivalent in both arms, and one fatal toxicity at 44 days secondary to cerebral edema was seen in the AH arm. CONCLUSION: Although a previous RTOG Phase I/II report had suggested a potential benefit in patients with limited metastatic disease, a good Karnofsky performance status, or neurologic function when treated with an AH regimen, this randomized comparison could not demonstrate any improvement in survival when compared to a conventional regimen of 30 Gy in 10 fractions. Therefore, this accelerated hyperfractionated regimen to 54.4 Gy cannot be recommended for patients with intracranial metastatic disease.

Adult↗