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James D Cox

Publications and source records attributed to James D Cox.

At least 19 recordsLinked to original sources

Central lymphatic irradiation for stage I-III follicular lymphoma: report from a single-institutional prospective study.

PURPOSE: This study was undertaken to update our experience with follicular lymphoma treated with central lymphatic irradiation (CLI). METHODS AND MATERIALS: A total of 47 patients were treated with CLI between January 1993 and March 2000 in a prospective manner. CLI consisted of mantle, whole abdomen, and pelvic radiation fields with a 1-month break after each field. Each field was treated to 3000-3060 cGy at 150-180 cGy per fraction followed by a boost dose of 900 cGy to the areas with gross disease. The median age was 52 years (range: 29-73 years). There were 29 males. The diagnoses were as follows: follicular small cleaved-cell lymphoma, 23 patients; follicular mixed-cell lymphoma, 19 patients; follicular large-cell lymphoma, 5 patients. Ann Arbor stages were as follows: I, 5 patients; II, 14 patients; and III, 28 patients. The International Prognostic Index (IPI) categories were as follows: 0, 14 patients; 1, 24 patients; and 2, 9 patients. M. D. Anderson Tumor Score was as follows: 0, 14 patients; 1, 18 patients; 2, 9 patients; 3, 4 patients; 4, 1 patient; and unknown, 1 patient. Two patients had abnormal LDH levels, and 11 patients had beta2M levels >2 mg/dL. Gender, pathology, stage, IPI, Anderson Tumor Score, beta2M, and number of disease sites were examined for significance in freedom from progression (FFP) by univariate analyses. RESULTS: The median follow-up was 54 months (range: 8-93 months) for the 45 surviving patients. Every patient achieved a complete response, except for 1 patient whose lymphoma progressed to diffuse large-cell lymphoma during treatment. The 5-year overall survival and FFP were 94% and 53%, respectively. No failure has yet been observed beyond 55 months of follow-up with 13 patients at risk. Patterns of failure were as follows: within the radiation field, 10; outside the fields, 4; and both, 2. Of the seven variables investigated, beta2M >2 mg/dL and IPI >1 were the only significant adverse prognostic factors for FFP (p = 0.023 and 0.046, respectively). CONCLUSIONS: CLI is well tolerated and seems to achieve durable FFP in about half of the patients with Stage I-III follicular lymphoma. Most of the experiences with CLI come from the treatment of Stage III disease and are very similar to our previous experience with combined modality treatment. Whether a plateau in FFP can be maintained beyond 5 years remains to be seen.

Adult↗

Primary central nervous system lymphoma: Phase I evaluation of infusional bromodeoxyuridine with whole brain accelerated fractionation radiation therapy after chemotherapy.

BACKGROUND: The current study was performed to determine the maximum tolerated dose (MTD), toxicity, and outcome of infusional 5 bromo-2'-deoxyuridine (bromodeoxyuridine; BUdR) given with accelerated fractionation whole brain radiation therapy (WBRT) after chemotherapy for the treatment of primary central nervous system lymphoma (PCNSL). METHODS: Twelve patients with untreated and histologically confirmed PCNSL were entered on the study between 1994 and 1996. Chemotherapy was comprised of one course of IDHAP plus high-dose methotrexate (HD-MTX). IDHAP is comprised of idarubicin at a dose of 1.5 mg/m(2)/day x 4 days intravenously by continuous infusion (i.v. CI), dexamethasone at a dose of 40 mg i.v. on Days 1-5, cytosine arabinoside at a dose of 2000 mg/ m(2) i.v. on Day 5 after cisplatin, and cisplatin at a dose of 25 mg/m(2)/day x 4 days i.v. CI. HD-MTX was given at a dose of 3.5 g/m(2) i.v. between Day 10 and Day 14 after IDHAP. BUdR was given as an i.v. CI over 48 hours, 2-3 days prior to WBRT and then weekly during WBRT. Dose escalation started at 1.5 g/m(2)/day for Cohort 1 with subsequent increments of 0.3 g/m(2)/day. The WBRT dose was 45 grays (Gy) at a dose of 1.5 Gy twice a day, 5 days per week. Neurocognitive testing was performed before, during, and after treatment. RESULTS: Nine of 12 patients entered on the study received BUdR. One of 3 patients in Cohort 1 developed leukoencephalopathy (LEP), a dose-limiting toxicity (DLT), within 2 months of the completion of therapy. Therefore, the next cohort received the same dose level. Because no toxicity was observed in Cohort 2, the third cohort received a BUdR dose of 1.8 g /m(2)/day. Shortly after completing enrollment in Cohort 3, 3 more patients developed LEP, including 2 from Cohort 1 who had received a dose of 1.5 g/m(2)/day. Thus, DLT occurred at a dose of 1.5 g/m(2)/day, the starting level in the current study. As a result, the trial was stopped. Eight of 12 patients achieved a complete response, 3 achieved a partial response, and 1 patient died before response assessment. CONCLUSIONS: Hyperfractionated WBRT with concurrent BUdR after chemotherapy was found to result in modest disease control but has unacceptable neurotoxicity.

Adult↗

Long-term outcome of phase II trial evaluating chemotherapy, chemoradiotherapy, and surgery for locoregionally advanced esophageal cancer.

PURPOSE: To evaluate the long-term outcome of chemotherapy, chemoradiotherapy, and surgery for patients with locoregionally advanced esophageal cancer. METHODS AND MATERIALS: Thirty-eight patients with locoregionally advanced esophageal cancer were entered into a Phase II study between November 1996 and October 1998 at the University of Texas M. D. Anderson Cancer Center. Patients initially received two cycles of chemotherapy with paclitaxel (200 mg/m(2)), 5-fluorouracil (750 mg/m(2)/d for 5 days), and cisplatin (15 mg/m(2)/d for 5 days), followed by chemoradiotherapy, consisting of radiation (45 Gy during 5 weeks) with 5-fluorouracil (300 mg/m(2)/d during radiation) and cisplatin (15 mg/m(2)/d for 5 days). Surgical resection was performed 4-6 weeks after the completion of the chemoradiotherapy. RESULTS: Most patients had adenocarcinoma (n = 32; 84%). Pretreatment endoscopic ultrasonography revealed T3 tumors in 33 patients (87%) and N1 disease in 25 patients (66%). Thirty-seven patients (97%) completed the planned chemotherapy and chemoradiotherapy, and 35 patients (92%) underwent surgery, with a 30-day mortality rate of 6% (2 of 35 patients). A pathologic complete response or microscopic residual carcinoma (<10% viable) was found in 25 (71%) of 35 patients and was associated with a disease-free survival rate of 72% at 3 years and 51% at 5 years. On the basis of an intention-to-treat analysis and a median potential follow-up of 58 months, the 3- and 5-year overall survival rate for all 38 patients was 63% and 39%, respectively. CONCLUSION: The long-term results of this study suggest that the strategy of induction chemotherapy followed by chemoradiotherapy and surgery is safe and warrants further evaluation in the treatment of patients with locoregionally advanced esophageal cancer.

Adenocarcinoma↗

Treatment planning for lung cancer: traditional homogeneous point-dose prescription compared with heterogeneity-corrected dose-volume prescription.

PURPOSE: To quantify the differences in doses to target volumes and critical thoracic structures calculated by traditional homogeneous point-dose prescription and heterogeneity-corrected volume-dose prescription. METHODS AND MATERIALS: Between 1998 and 2001, 30 patients with inoperable Stage I/II non-small-cell lung cancer underwent radiation treatment planning at our institution. A commercially available convolution/superposition- based algorithm was used. Three treatment plans were calculated for each patient using identical beam geometries: one plan was generated by traditional homogeneous point-dose prescription, a second by the traditional method with heterogeneity correction, and a third by heterogeneity-corrected volume-dose prescription that would cover 95% of the planned target volume (PTV). Target volume coverage, isocenter dose, and dose uniformity in the second and third plans were compared. RESULTS: The PTV, clinical target volume (CTV), and isocenter calculated by the heterogeneity-corrected volume-dose method were equivalent to those calculated by the traditional homogeneous point-dose method with heterogeneity correction. The fraction of the PTV covered by heterogeneity-corrected volume-dose prescription was significantly greater than the fraction covered by traditional homogeneous point-dose prescription with heterogeneity correction (p = 0.05). The dose prescribed using the traditional method would have been delivered to less than 90% of the PTV in 14 of 30 patients. There was no significant difference in the maximum and minimum doses to the PTV, the CTV, or the isocenter calculated by the traditional homogeneous method with heterogeneity correction and the heterogeneity-corrected volume-dose method. There was also no significant difference in the planned volume of lung receiving greater than 20 Gy as calculated by these two methods. CONCLUSION: When compared with traditional homogeneous radiation treatment planning, heterogeneity-corrected methods produce equivalent PTV, CTV, and isocenter doses while providing superior PTV coverage.

Carcinoma, Non-Small-Cell Lung↗

Long-term follow-up of a prospective study of combined modality therapy for stage I-II indolent non-Hodgkin's lymphoma.

PURPOSE: Standard therapy for patients with stage I-II indolent lymphoma has been involved-field radiation therapy (IF-XRT), which achieves 10-year disease-free survival in 40% to 50% of patients, with many of these patients cured. We investigated the potential for combined-modality therapy to increase the disease-free survival for such patients. PATIENTS AND METHODS: A total of 102 eligible patients with stage I-II low grade lymphoma (International Working Formulation criteria) were enrolled from 1984 to 1992. Treatment comprised 10 cycles of risk-adapted chemotherapy (cyclophosphamide, vincristine, prednisone, bleomycin [COP-Bleo], and with doxorubicin added for some [CHOP-Bleo]) and 30 to 40 Gy IF-XRT. RESULTS: The patients' median age was 56 years (range, 28 to 77), with follicular histology in 83%, bulky disease (>/= 5 cm) in 24%, and stage II in 52%. There were no treatment-related deaths and 99% of patients attained complete remission. With a median follow-up of 10 years, the 10-year time to treatment failure and overall survival were 76% and 82%, respectively. For patients with follicular lymphoma, these figures were 72% and 80%, respectively. The only factor associated with treatment failure, for follicular lymphoma patients, was stage-modified International Prognostic Factors Index score (P =.02). None of 17 patients with diffuse small lymphocytic or mucosa-associated lymphoid tissue histology have relapsed. Elevated serum beta2-microglobulin was associated with shorter survival (P <.0001). The 10-year survival after relapse was 46%. There have been two cases of myelodysplasia and 12 other new malignancies, including four arising within radiation fields. CONCLUSION: With prolonged follow-up, combined-modality therapy with risk-adapted COP-/CHOP-Bleo and IF radiation has attained higher rates of disease control and survival than previously reported with IF-XRT alone. This apparent improvement is being further explored in an ongoing randomized trial.

Adult↗

Preliminary evaluation of low-grade toxicity with conformal radiation therapy for prostate cancer on RTOG 9406 dose levels I and II.

PURPOSE: To evaluate the rates of low-grade late effects in patients treated for prostate cancer on Radiation Therapy Oncology Group (RTOG) 9406. MATERIALS AND METHODS: Between August 1994 and September 1999, 424 patients were entered on this dose escalation trial of three-dimensional conformal radiation therapy (3D-CRT) for localized adenocarcinoma of the prostate at doses of 68.4 Gy (level I) and 73.8 Gy (level II). We have previously reported Grade 3 or greater late toxicity of patients treated on the first two dose levels of this trial. This analysis examines the distribution of all late toxicities in these patients. All radiation prescriptions were a minimum dose to a planning target volume (PTV). Patients were stratified according to clinical stage and risk of seminal vesicle invasion (SVI) based upon Gleason score and presenting prostate-specific antigen. Group 1 includes patients with T1,2 disease with SVI risk < 15%, and Group 2 includes patients with T1,2 disease with SVI risk > 15%. Group 3 patients had T3 disease. Average months at risk after completion of therapy ranged from 21.4 to 40.1 months for patients treated at dose level I and 10.0 to 34.2 months for patients at dose level II. The frequency of all grades of late effects was compared with a similar group of patients treated in RTOG studies 7506 and 7706 with adjustments made for the interval from completion of therapy. The RTOG toxicity scoring scales for late effects were used for grading. RESULTS: The rate of Grade 3 or greater late toxicity continues to be low compared with RTOG historical controls. No Grade 4 or 5 late sequelae were reported in any of the 393 evaluable patients during the period of observation. The frequency of patients free of any complications was lower in RTOG 9406 than in historical controls. In the 73 Group 1 patients treated on dose level 1, there were 24 patients without sequelae compared with an expected rate of 39.7 (p = 0.013), and in 80 Group 3 patients at dose level II there were 24 patients without sequelae when 56.2 were expected (p < 0.0001). Other groups treated at these dose levels demonstrated a nonsignificant reduction in the rate of patients free of any side effects. These data suggest that the reduction in high-grade morbidity may be related to a shift of complications to lower grades. CONCLUSIONS: Morbidity of 3D-CRT in the treatment of prostate cancer is low. It is important to continue to closely examine late effects in patients treated in RTOG 9406. The primary objective of dose escalation without an increase rate of >/= Grade 3 sequelae has been achieved. However, the reduction in Grade 3 complications may have resulted in a higher incidence of Grade 1 or 2 late effects. Because Grade 2 late effects may have a significant impact on a patient's quality of life, it is important to reduce these complications as much as possible. Clinical trials should use quality-of-life measures to determine that trade-offs between severity and rates of toxicity are acceptable to patients.

Adenocarcinoma↗

Effects of radiotherapy and chemotherapy on lung function in patients with non-small-cell lung cancer.

PURPOSE: To evaluate the effects of chemoradiation on objective tests of pulmonary function. MATERIALS AND METHODS: One hundred lung cancer patients treated in five protocols between 1992 and 2000 with combinations of thoracic radiotherapy (RT) and chemotherapy were evaluated with pre- and post-RT pulmonary function tests. The pulmonary function tests were analyzed for changes in measures of obstruction (forced expiratory volume in 1 s per unit of vital capacity [FEV(1)/VC]), restriction (total lung capacity [TLC]), and diffusing capacity (diffusing capacity for carbon monoxide [DLCO]). The use and timing of chemotherapy and RT, as well as patient, tumor, and treatment factors, were evaluated using univariate and multivariate analyses. RESULTS: No treatment or patient factors were significantly associated with changes in FEV(1)/VC. Chemotherapy with RT, compared with RT alone, was associated with a lower post-RT TLC (92% vs. 107%, p = 0.002). Nodal status (N2-N3 vs. N1), tumor location (central vs. peripheral), use of >/=6 treatment fields, and tumor volume >/=100 cm(3) were also associated with a significantly lower post-RT TLC. On univariate analysis, the use of any chemotherapy (p = 0.029) and the use of concurrent vs. sequential chemotherapy (p = 0.028) were predictive of a lower post-RT DLCO. Patient age >/=60 years, nodal status (N2-N3 vs. N0-N1), tumor volume >/=100 cm(3), tumor location (central vs. peripheral), and use of >/=6 treatment fields were also associated with a significantly lower post-RT DLCO. The fractional volume of irradiated normal lung correlated with the decrease in DLCO (p <0.001), with a 1.3% DLCO decline for each 1% of total lung volume that received >20 Gy. CONCLUSIONS: The addition of chemotherapy to RT significantly exacerbates the post-RT decrease in TLC and DLCO. The greatest decrease in DLCO occurs in patients treated with concurrent chemoradiation.

Adult↗

Clinical implications of incorporating heterogeneity corrections in mantle field irradiation.

PURPOSE: Patient dose calculations for mantle-field irradiation have traditionally been performed using homogeneous, water phantom data. The advent of computed tomography (CT)-based treatment planning now permits dose calculations to be corrected for actual patient density. Incorporation of full heterogeneity corrections is desirable, because calculations performed in this fashion more closely represent the actual dose delivered to the patient. In preparation for full clinical implementation of heterogeneity corrections in mantle irradiation, an evaluation of possible changes in dosimetry when transitioning from treatment plans generated without heterogeneity corrections to treatment plans that incorporated full heterogeneity corrections is presented. MATERIALS AND METHODS: A retrospective analysis was performed of treatment plans with and without heterogeneity corrections for 15 consecutive patients who had undergone full mantle-field irradiation. Comparisons were made of the absolute delivered doses (in cGy per monitor unit) and the absolute volume (in cubic centimeters) enclosed by the isodose surface of the 30.6 Gy prescription line and the surface representing 90% of the prescribed dose. Dose-volume histograms (DVHs) were generated and studied to evaluate differences in the doses received by the lungs, heart, and spinal cord between corrected and uncorrected plans. Comparisons were made of the volumes of lung receiving at least 20 Gy, the volumes of heart receiving at least 25.2 Gy, and the maximum cord dose. RESULTS: Dosimetric differences between heterogeneity-corrected and heterogeneity-uncorrected calculations were small. The mean total ratio of corrected-to-uncorrected dose per monitor unit was 1.01, with a standard deviation (SD) of 0.02. The mean corrected-to-uncorrected treated volume ratio (30.6 Gy) was 0.97, SD 0.14, and the mean corrected-to-uncorrected volume ratio of the 90% isodose surface was 0.99, SD 0.02. The ratio of the volume of lung receiving at least 20 Gy was 1.03, SD 0.02; the ratio of the volume of heart receiving at least 25.2 Gy was 1.01, SD 0.03; and the maximum spinal cord dose ratio was 1.02, SD 0.02. CONCLUSIONS: In all patient treatment plans evaluated, no significant dosimetric differences were observed between heterogeneity-corrected and heterogeneity-uncorrected treatment plans. However, unpredictable differences in the prescription isodose (30.6 Gy) were observed. The differences in coverage at the 90% isodose volume were negligible. The dose administered to lung in heterogeneity-corrected plans demonstrates a higher dose overall, with the greatest increase occurring at volumes receiving at least 20 Gy. In light of these small dosimetric differences, we believe that heterogeneity corrections can be incorporated into full mantle-field treatment planning.

Dose Fractionation, Radiation↗

Analysis of in-field control and late toxicity for adults with early-stage Hodgkin's disease treated with chemotherapy followed by radiotherapy.

PURPOSE: We analyzed in-field (IF) control in adults with early-stage Hodgkin's disease who received chemotherapy followed by radiotherapy (RT) in terms of the (1) chemotherapeutic regimen used and number of cycles delivered, (2) response to chemotherapy, and (3) initial tumor size. Cardiac toxicity and second malignancies, particularly the incidence of solid tumors in terms of the RT field size treated, were also examined. METHODS AND MATERIALS: From 1980 to 1995, 286 patients ranging in age from 16 to 88 years (median: 28 years) with Ann Arbor clinical Stage I or II Hodgkin's disease underwent chemotherapy followed 3 to 4 weeks later by RT. There were 516 nodal sites measuring 0.5 to 19.0 cm at the start of chemotherapy, including 134 cases of bulky mediastinal disease. NOVP, MOPP, ABVD, CVPP/ABDIC, and other chemotherapeutic regimens were given to 161, 67, 19, 18, and 21 patients, respectively. Patients received 1-8 (median: 3) cycles of induction chemotherapy. All 533 gross nodal and extranodal sites of disease were included in the RT fields. The median prescribed RT dose for gross disease was 40.0 Gy given in 20 daily 2.0-Gy fractions. There was little variation in the RT dose. Eighty-five patients were treated with involved-field or regional RT (to one side of the diaphragm), and 201 patients were treated with extended-field RT (to both sides of the diaphragm), based on the protocol on which they were enrolled. RESULTS: Follow-up of surviving patients ranged from 1.3 to 19.9 years (median: 7.4 years). Based on a review of simulation films, there were 16 IF, 8 marginal, and 15 out-of-field recurrences. The chemotherapeutic regimen used and the number of cycles of chemotherapy delivered did not significantly affect IF control. IF control also did not significantly depend on the response to induction chemotherapy. In cases where there was a confirmed or unconfirmed complete response as opposed to a partial response or stable disease in response to induction chemotherapy for bulky nodal disease, the 5-year IF control rates were 99% and 92%, respectively (p = 0.0006). The 15-year actuarial risks of coronary artery disease requiring surgical intervention and of solid tumors were 4.1% and 16.8%, respectively. There was a trend toward a greater risk of solid tumors in patients who received extended-field RT rather than involved-field or regional RT (p = 0.08). CONCLUSIONS: In patients with nonbulky disease, induction chemotherapy followed by RT to a median dose of 40.0 Gy resulted in excellent IF control, regardless of the chemotherapeutic regimen used, the fact that only 1-2 cycles of chemotherapy were delivered, and the response to chemotherapy. There was a trend toward a higher incidence of solid tumors in patients who received consolidation RT to both sides rather than only one side of the diaphragm. Ongoing Phase III trials will help clarify whether lower RT doses and smaller RT fields after chemotherapy can maintain the IF control seen in our study, but with a lower incidence of late complications in patients with Stage I or II Hodgkin's disease.

Adolescent↗

Combination of a COX-2 inhibitor with radiotherapy or radiochemotherapy in the treatment of thoracic cancer.

Cyclooxygenase-2 (COX-2) is an enzyme involved in prostaglandin production in pathologic states such as inflammatory processes and cancer. The enzyme is often overexpressed in premalignant lesions and cancer, including cancers of the lung and esophagus. Inhibition of this enzyme with selective COX-2 inhibitors was found to enhance tumor response to radiation in preclinical studies, suggesting that these agents can improve the response of various cancers to radiotherapy. On the basis of these preclinical findings, clinical trials of the combination of celecoxib, a selective COX-2 inhibitor, with radiotherapy were initiated in patients with lung carcinoma and with chemoradiotherapy in patients with esophageal carcinoma. The rationale for using selective COX-2 inhibitors is discussed, and the current clinical protocols and the initial findings are described.

Anti-Inflammatory Agents, Non-Steroidal↗

Epidermal growth factor receptor, cyclooxygenase-2, and BAX expression in the primary non-small cell lung cancer and brain metastases.

PURPOSE: The purpose is to identify biological markers that predict brain metastasis and treatment outcome in non-small cell lung cancer (NSCLC). EXPERIMENTAL DESIGN: Samples were obtained from the primary tumors, lymph nodes, and brain metastases of 29 patients with NSCLC who had undergone resection of both the pulmonary tumors and the brain lesions. Samples from 29 patients matched for age, sex, and histology whose pulmonary tumors were resected served as controls. Samples were stained with H&E as well as immunohistochemical stains for epidermal growth factor receptor (EGFR), cyclooxygenase 2 (COX-2), and BAX. Comparisons were made between patients with and without brain metastasis. Independent investigators determined the percentage of positive cells. RESULTS: There was positive correlation in expression of all three biomarkers between primary lung tumors and lymph node metastases. Significantly higher levels of EGFR were found in lymph node metastases in the control group (P = 0.0147). COX-2 expression in brain lesions correlated with expression in primary tumors (P = 0.023). BAX levels were lower in poorly differentiated tumors in lymph node metastases in the control group (P = 0.01) and in brain metastases (P = 0.045). Low EGFR expression and high COX-2 expression in lymph node metastasis were associated with poorer treatment outcome. CONCLUSIONS: Expression of EGFR, COX-2, and BAX in primary lung tumors did not differ between patients with brain metastases from NSCLC and those without brain metastases. These three biomarkers cannot be used to predict brain metastasis. Studies of other biomarkers are under way in an effort to predict brain metastasis among patients with NSCLC.

Adult↗

An elevated serum beta-2-microglobulin level is an adverse prognostic factor for overall survival in patients with early-stage Hodgkin disease.

BACKGROUND: The relative importance of prognostic factors in patients with early-stage Hodgkin disease remains controversial. The purpose of this study was to evaluate prognostic factors among patients who received chemotherapy before radiotherapy. METHODS: From 1987 to 1995, 217 consecutive patients ranging in age from 16 to 88 years (median, 28 years) with Ann Arbor Stage I (n = 55) or II (n = 162) Hodgkin disease underwent chemotherapy before radiotherapy at a single center. Most were treated on prospective studies. Patients received a median of three cycles of induction chemotherapy. Mitoxantrone, vincristine, vinblastine, and prednisone (NOVP), doxorubicin, bleomycin, vinblastine, and dacarbazine (ABVD), mechlorethamine, vincristine, procarbazine, and prednisone (MOPP), cyclophosphamide, vinblastine, procarbazine, prednisone, doxorubicin, bleomycin, dacarbazine, and CCNU (CVPP/ABDIC), or other chemotherapeutic regimens were given to 160, 18, 15, 10, and 14 patients, respectively. The median radiotherapy dose was 40 Gy. Serum beta-2-microglobulin (beta-2M) levels ranged from 1.0 to 4.1 mg/L (median, 1.7 mg/L; upper limit of normal, 2.0 mg/L). We studied univariate and multivariate associations between survival and the following clinical features: serum beta-2M level above 1.25 times the upper limit of normal (n = 12), male gender (n = 113), hypoalbuminemia (n = 11), and bulky mediastinal disease (n = 94). RESULTS: Follow-up of surviving patients ranged from 0.9 to 13.4 years (median, 6.6 years) and 92% were observed for 3.0 or more years. Nineteen patients have died. Only elevation of the serum beta-2M level was an independent adverse prognostic factor for overall survival (P = 0.0009). CONCLUSIONS: The prognostic significance of a simple, widely available, and inexpensive blood test, beta-2M, has not been studied routinely in patients with Hodgkin disease and should be tested prospectively in large, cooperative group trials.

Adolescent↗

Interim report of toxicity from 3D conformal radiation therapy (3D-CRT) for prostate cancer on 3DOG/RTOG 9406, level III (79.2 Gy).

PURPOSE: A prospective Phase I dose escalation study was conducted to determine the maximally tolerated radiation dose in men treated with three-dimensional conformal radiotherapy (3D-CRT) for localized prostate cancer. This is a preliminary report of toxicity at Level III (79.2 Gy) on 3D Oncology Group/Radiation Therapy Oncology Group (RTOG) 9406. METHODS AND MATERIALS: Between November 26, 1996 and October 1, 1998, 173 patients with clinically organ-confined prostate cancer (T1 and T2) were accrued to a Level III dose of 79.2 Gy. One hundred sixty-nine patients were available for analysis of toxicity. Patients were registered to two groups according to the risk of seminal vesicle invasion (SVI) on the basis of presenting PSA and Gleason score. Group 1 patients had a calculated risk of SVI <15%, and Group 2 patients had a risk of SVI > or = 15%. For Group 1 patients, the planning target volume (PTV) margins were 5-10 mm around the prostate only. For Group 2 patients, the same margins were applied to the prostate and seminal vesicles (PTV(1)) for the initial 55.8 Gy; then treatment volume was reduced to the prostate only (PTV(2)). To reduce the rectal dose on dose Level III, the minimum PTV dose was limited to 73.8 Gy, whereas the minimum gross target volume dose was 79.2 Gy, both in 44 fractions. The incidence of > or = 3 Grade late effects was compared to that in a similar group of patients treated on RTOG 7506 and 7706 studies. RESULTS: Acute tolerance to 79.2 Gy was excellent with no patients experiencing > or = Grade 3 acute toxicity. The acute toxicity rate was comparable to that reported for previous lower dose levels. With the median follow-up of 3.3 years (range: 0.4-4.4 years), a total of 4 patients (2.4%) experienced Grade 3 late toxicity, three cases of which were related to the bladder, and one related to the rectum. There were no Grade 4 or 5 late complications noted during the period of observation. These results are also comparable to those reported at dose Levels I and II. The expected incidence of > or = 3 Grade 3 late toxicity was calculated using historical data from two previous RTOG prostate cancer trials, 7506 and 7706. The calculated risk accounted for the difference in follow-up duration between patients in this study and the historical experience. The observed rate of > or = Grade 3 late effects for Group 1 (two cases) is significantly lower (p = 0.0002) than the 17.6 cases that would have been expected from the historical control. The observed rate for Group 2 (two cases) was also significantly lower (p = 0.0037) than the 12.1 cases expected. CONCLUSION: Based on excellent tolerance of 3D-CRT for stages T1 and T2 prostate cancer, further biological dose escalation has been pursued to Levels IV and V, 74 Gy and 78 Gy, respectively, at 2 Gy per day, in an attempt to reduce the total treatment duration. This trial has closed. A Phase III comparative RTOG trial is being developed to determine whether high-dose 3D-CRT improves efficacy.

Adult↗

Astroscope.

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Diagnostic Imaging↗

Association of Ki-67, p53, and bcl-2 expression of the primary non-small-cell lung cancer lesion with brain metastatic lesion.

PURPOSE: The study was conducted to determine whether immunohistochemical analysis of Ki-67, p53, and bcl-2 in patients with non-small-cell lung cancer is associated with a higher rate of brain metastases and whether the intrapatient expression of these biomarkers (in the primary tumors vs. brain lesions) is similar. METHODS AND MATERIALS: At the M. D. Anderson Cancer Center, tumors from 29 case patients with primary lung tumor and brain metastasis and 29 control patients with primary lung tumor but no brain metastasis were resected and examined for immunohistochemical expression. Ki-67, p53, and bcl-2 were analyzed in resected primary lung, lymph node, and metastatic brain tumors. Each control patient was matched by age, gender, and histology to a patient with brain metastasis. RESULTS: No significant differences in patient survival characteristics were detected between the case group and control group. Also, difference in patient outcome between the two groups was not generally predicted by biomarker analysis. However, when the groups were combined, the biomarker analysis was predictive for certain patient outcome end points. Using median values as cutoff points between low and high expression of biomarkers, it was observed that high expression of Ki-67 (>40%) in lung primaries was associated with poorer disease-free survival (p = 0.04), whereas low expression of p53 in lung primaries was associated with poorer overall survival (p = 0.04), and these patients had a higher rate of nonbrain distant metastases (p = 0.02). The patients with brain metastases were particularly prone to developing nonbrain distant metastases if the percentage of p53-positive cells in brain metastases was low (p = 0.01). There was a positive correlation in the expression of Ki-67 (p = 0.02)(r(2) = 0.1608), as well as p53 (p < 0.001) (r(2) = 0.7380), between lung primaries and brain metastases. Compared to Ki-67 and p53, bcl-2 was the least predictive. CONCLUSION: Differences in biomarker expression between the case and control groups did not serve as significant predictors of brain metastasis or patient survival. There was a strong correlation between lung primary biomarker expression and brain metastasis expression for Ki-67 and p53. Univariate analysis showed that low p53 and high Ki-67 expression predicted poor prognosis. This study shows that there may be a strong correlation between biomarker expression in non-small-cell lung cancer primary tumors and their brain metastases.

Adult↗

Twice daily irradiation increases locoregional control in patients with medically inoperable or surgically unresectable stage II-IIIB non-small-cell lung cancer.

PURPOSE: To evaluate the effect of q.d. or b.i.d. radiotherapy (RT) on the outcome of patients with locally advanced non-small-cell lung cancer. METHODS AND MATERIALS: We retrospectively reviewed the outcome of 261 patients with medically inoperable or surgically unresectable Stage II-IIIB non-small-cell lung cancer, who were treated with combined modality cisplatin-based chemotherapy and RT. Chemotherapy was administered either sequentially or concurrently with thoracic RT. The median follow-up was 18 months (range 2-92). Treatment groups included sequential chemotherapy and q.d. RT (n = 109), concurrent chemotherapy and q.d. RT (n = 48), and concurrent chemotherapy and b.i.d. RT (n = 104). Of the 261 patients, 97% had a Karnofsky performance score > or =80, and 86.2% had < or =5% weight loss in the 3 months before diagnosis; 66.7% had nonsquamous cell histologic features. All but 8 patients had Stage IIIA-B disease. RESULTS: The 2- and 5-year locoregional control rate was 42.4% and 25.7% for the q.d. group and 70.6% and 45.8% for the b.i.d. group, respectively (p = 0.0001). The 2- and 5-year disease-free survival rate was 26.7% and 6.5% for the q.d. group and 39.6% and 27.3% for the b.i.d. group, respectively (p = 0.0114). The corresponding overall survival rates were 35.9% and 9.4% for the q.d. group and 38.7% and 26.1% for the b.i.d. group. No difference was found in the rate of distant metastasis between the 2 groups. Multivariate analysis indicated that b.i.d. RT was a favorable prognostic factor for locoregional control and disease-free survival. CONCLUSION: RT b.i.d. significantly improved locoregional control and disease-free survival compared with RT q.d. in patients with Stage IIIA-B non-small-cell lung cancer.

Adult↗

International prognostic index-based outcomes for diffuse large B-cell lymphomas.

BACKGROUND: We present the results of doxorubicin-based chemotherapy with or without involved-field radiotherapy for patients with diffuse large B-cell lymphoma (DLBCL) according to the international prognostic index (IPI). METHODS: From September 1988 through December 1996, 294 patients with Stage I-IV Working Formulation large B-cell or T-cell lymphomas were treated prospectively on two protocols at our center. Diagnoses were reclassified subsequently according to the new World Health Organization classification. Two-hundred and twenty-four patients had DLBCL, including 24 patients with primary mediastinal large B-cell lymphoma. Treatment consisted of a median of six cycles of cyclophosphamide, doxorubicin, vincristine, and prednisone (CHOP) chemotherapy with or without involved-field radiotherapy (median dose, 39.6 Gy). RESULTS/CONCLUSIONS: The median length of follow-up among surviving patients was 5.0 years. Patient subgroups differed from each other in terms of progression-free (P = 0.003), cause-specific (P = 0.003), and overall (P = 0.001) survival rates when analyzed by IPI. Five-year progression-free, cause-specific, and overall survival rates for 212 patients with an IPI of 0-2 were 73%, 84%, and 82%, respectively, versus only 37%, 33%, and 32% for 12 patients with an IPI of 3-4. To improve our results, we are conducting clinical trials with young DLBCL patients and with patients who are older than 60 years. The young DLBCL patients, who have more than two adverse prognostic features, are receiving high-dose chemotherapy and autologous stem cell rescue. The patients who are older than 60 years, regardless of IPI, are receiving rituximab immunotherapy and liposomal CHOP chemotherapy with or without involved-field radiotherapy.

Adolescent↗