Timing of concurrent radiotherapy and chemotherapy in limited-disease small-cell lung cancer: "Meta-analysis of meta-analyses".
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Publications and source records attributed to Branislav Jeremic.
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BACKGROUND: Radiation therapy (RT) alone is frequently used in elderly patients with medically inoperable early stage (I/II) non-small cell lung cancer (NSCLC). We retrospectively investigated the effectiveness of RT alone in this patient population treated in our institution. MATERIAL AND METHODS: Between 1995 and 1999, a total of 33 patients were treated with RT alone in our institution, all being males. RT doses ranged 66-78 Gy (median, 70 Gy) using standard fractionation (2.0 Gy per fraction). The age range was 71-97 years (median, 75 years) with 11 patients being >or=80 years old. Twenty-two (67%) patients had a squamous cell carcinoma. There were 24 (73%) stage I and nine (27%) stage II patients. RESULTS: Radiographic objective response rate was observed in 23 (70%) patients. The median survival time was 37.4 months and 3-year survival time was 50%, while the median cause-specific survival time was 48.1 months and a 3-year cause-specific survival rate was 55.3%. The median time to local recurrence was 36.8 months and a 3-year local recurrence-free survival rate was 50.2%, while the median time to distant metastasis was not achieved yet, the 3-year distant metastasis-free survival rate being 71.4%. One (3%) patient died of RT-induced acute lung toxicity, while only two (6%) patients experienced late grade 3 lung toxicity. No other high-grade toxicity was observed during this study. CONCLUSIONS: RT alone was effective and low toxic in elderly with early stage (I/II) NSCLC and could be considered as treatment of choice in this patient population.
PURPOSE: Recent research has enhanced our understanding of radiation injury at the molecular-cellular and tissue levels; significant strides have occurred in standardization of adverse event reporting in clinical trials. In response, the International Atomic Energy Agency, through its Division of Human Health and its section for Applied Radiation Biology and Radiotherapy, organized a consultation meeting in Atlanta (October 2, 2004) to discuss developments in radiobiology, normal tissue reactions, and adverse event reporting. METHODS AND MATERIALS: Representatives from cooperative groups of African Radiation Oncology Group, Curriculo Radioterapeutica Ibero Latino Americana, European Organization for Research and Treatment of Cancer, National Cancer Institute of Canada Clinical Trials Group, Radiation Therapy Oncology Group, and Trans-Tasman Radiation Oncology Group held the meeting discussion. RESULTS: Representatives of major radiotherapy groups/organizations and prominent leaders in radiotherapy discussed current understanding of normal tissue radiobiologic effects, the design and implementation of future clinical and translational projects for normal tissue injury, and the standardization of adverse-event reporting worldwide. CONCLUSIONS: The consensus was to adopt NCI comprehensive adverse event reporting terminology and grading system (CTCAE v3.0) as the new standard for all cooperative group trials. Future plans included the implementation of coordinated research projects focusing on normal tissue biomarkers and data collection methods.
PURPOSE: Using magnetic resonance imaging (MRI), residual tumor cannot be differentiated from nonspecific postoperative changes in operated patients with brain gliomas. The higher specificity and sensitivity of L-(methyl-11C)-labeled methionine positron emissions tomography (MET-PET) in gliomas has been demonstrated in previous studies and is the rationale for the integration of this investigation in gross tumor volume delineation. The goal of this trial was to quantify the affect of MET-PET vs. with MRI in gross tumor volume definition for radiotherapy planning of high-grade gliomas. METHODS AND MATERIALS: The trial included 39 patients with resected malignant gliomas. MRI and MET-PET data were coregistered based on mutual information. The residual tumor volume on MET-PET and the volume of tissue abnormalities on T1-weighted MRI (gadolinium [Gd] enhancement) and T2-weighted MRI (hyperintensity areas) were compared using MET-PET/MRI fusion images. RESULTS: The MET-PET vs. Gd-enhanced T1-weighted MRI analysis was performed on 39 patients. In 5 patients (13%), MET uptake corresponded exactly with Gd enhancement, and in 29 (74%) of 39 patients, the region of MET uptake was larger than that of the Gd enhancement. In 27 (69%) of the 39 patients, the Gd enhancement area extended beyond the MET enhancement. MET uptake was detected up to 45 mm beyond the Gd enhancement. MET-PET vs. T2-weighted MRI was investigated in 18 patients. MET uptake did not correspond exactly with the hyperintensity areas on T2-weighted MRI in any patient. In 9 (50%) of 18 patients, MET uptake extended beyond the hyperintensity area on the T2-weighted MRI, and in 18 (100%), at least some hyperintensity on the T2-weighted MRI was located outside the MET enhancement area. MET uptake was detected up to 40 mm beyond the hyperintensity area on T2-weighted MRI. CONCLUSION: In operated patients with brain gliomas, the size and location of residual MET uptake differs considerably from abnormalities found on postoperative MRI. Because postoperative changes cannot be differentiated from residual tumor by MRI, MET-PET, with a greater specificity for tumor tissue, can help to outline the gross tumor volume with greater accuracy.
PURPOSE: To investigate the feasibility and activity of hyperfractionated radiation therapy (Hfx RT) and concurrent chemotherapy (CT) consisting of low-dose, daily carboplatin and paclitaxel in patients with stage III non-small-cell lung cancer (NSCLC). PATIENTS AND METHODS: Sixty-four patients started their treatment on day 1 with 30 mg/m(2) of paclitaxel administered by 1-hour infusion. Hfx RT began on day 2 using 1.3 Gy bid to a total dose of 67.6 Gy and concurrent low-dose daily CT consisting of 25 mg/m(2) of carboplatin and 10 mg/m(2) of paclitaxel, both given Mondays to Fridays during RT course. RESULTS: Objective response rate was 83% and included complete response in 27 patients (42%) and partial response in 26 patients (41%). Ten patients (16%) had stable disease, whereas only one patient (2%) had progressive disease. The median survival time was 28 months, and 3- and 5-year survival rates were 37% and 26%, respectively. The median time to local progression was 26 months, and 3- and 5-year local progression-free survival rates were 37% and 33%, respectively. The median time to distant metastasis was 25 months, and 3- and 5- year distant metastasis-free survival rates were 37% and 31%, respectively. Acute high-grade (>/= grade 3) toxicity was hematologic (25%), esophageal (17%), bronchopulmonary (13%), and skin (9%). Late high-grade toxicity was infrequent. CONCLUSION: This combined Hfx RT/TC regimen produced results that are among the best ever reported and warrants further study in a prospective randomized fashion.
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PURPOSE: We retrospectively reviewed our Institution's database to investigate the outcome and impact of combined radiochemotherapy (RT/CT; concomitant or in sequence) in localised small-cell lung cancer (L-SCLC). MATERIAL AND METHODS: Between January 1995 to November 1999, 79 patients with L-SCLC received combined RT/CT at our Institution. RT was delivered concurrently or sequentially following the CT. Patients with treatment response received additional prophylactic cranial irradiation (PCI). RESULTS: Of the patients treated, 54% had received concurrent CT/RT compared to 46% receiving RT following the CT. PCI was administered to 80% of the patients. Complete response was observed in 66% of patients. With a median follow up of 30 months, median overall survival was 15.9 months; 14.3 months for patients who received RT following CT and 21.6 months for those receiving concurrent CT/RT. The type of schedule of combined radiochemotherapy was an independent prognostic factor for survival free of local recurrence, as was additional PCI for distant metastasis-free survival. CONCLUSIONS: Our results are similar to those reported previously in the literature. The main point of interest is that our patients were non-selected. We strongly support the use of concurrent CT/RT so as to achieve results comparable to the best in the literature.
PURPOSE: To evaluate the impact of positron emission tomography (PET) on target volume delineation for radiation treatment planning. MATERIAL AND METHODS: The data of the literature concerning the use of PET in target volume delineation are summarized. The following points are discussed for each tumor entity: biological background for the PET investigation, sensitivity and specificity of PET (with different tracers) in comparison to computed tomography (CT) and magnetic resonance imaging (MRI) and impact of PET on target volume definition. New PET tracers, which could visualize biological pathways, such as hypoxia, proliferation, angiogenesis, apoptosis and gene expression patterns, will also be discussed. RESULTS: The results of clinical studies on the integration of PET in target volume definition for lung, head-and-neck, genitourinary and brain tumors were analyzed. Fluorodeoxyglucose-(FDG-)PET has a significant impact on GTV (gross tumor volume) and PTV (planning target volume) delineation in lung cancer and can detect lymph node involvement and differentiate malignant tissue from atelectasis. In head-and-neck cancer, the value of FDG-PET for radiation treatment planning is still under investigation. For example, FDG-PET could be superior to CT and MRI in the detection of lymph node metastases and unknown primary cancer and in the differentiation of viable tumor tissue after treatment. Therefore, it might play an important role in GTV definition and sparing of normal tissue. Choline PET and acetate PET are promising tracers in the diagnosis of prostate cancer, but their validity in local tumor demarcation, lymph node diagnosis and detection of recurrence has to be defined in future clinical trials. FDG-PET seems to be particularly valuable in lymph node status definition in cervical cancer. In high-grade gliomas and meningiomas, methionine PET helps to define the GTV and differentiate tumor from normal tissue. For other entities like gastrointestinal cancer, lymphomas, sarcomas, etc., the data of the literature are yet insufficient. The imaging of hypoxia, cell proliferation, angiogenesis, apoptosis and gene expression leads to the identification of different areas of a biologically heterogeneous tumor mass that can individually be targeted using intensity modulated radiotherapy (IMRT). In addition, a biological dose distribution can be generated, the socalled dose painting. However, systematic experimental and clinical trials are necessary to validate this hypothesis. CONCLUSION: Regarding treatment planning in radiotherapy, PET offers advantages in terms of tumor delineation and the description of biological processes. To define the real impact of this investigation in radiation treatment planning, subsequent experimental, clinical and cost-benefit analyses are required.
We reviewed our initial institutional experience with the use of stereotactic hypofractionated radiation therapy (SFRT) in patients with stage I non-small cell lung cancer (NSCLC). Thirty patients with inoperable stage I non-small cell lung cancer due to a severe chronic obstructive pulmonary disease (COPD) and/or chronic heart disease (Eastern Cooperative Oncology Group (ECOG) performance status of 0-2) were treated between December 2000 and October 2003 with SFRT in curative intent. Infiltration of locoregional lymph nodes and distant metastases were ruled out by computerized tomography (CT) scan of the brain, thorax, and abdomen, and by whole body FDG-positron emission tomography scan in all patients. Total RT doses ranged from 24.0 to 37.5 Gy, given in 3-5 fractions to the 60% isodose encompassing the planning target volume. Immobilization was carried out by a vacuum couch and a low-pressure foil. The clinical target volume was the tumor as it appeared in lung windowing on lung CT scan. Organ movements (caused by breathing; range, 6-22 mm) and reproducibility of patient positioning in the couch (range, 3-12 mm) were calculated by sequential CT and orthogonal films. The individual values were taken into account as a safety margin for the definition of the planning target volume (PTV). The median follow-up of living patients is 18 months (range, 6-38 months). As maximum response, there were 10 (33%) complete responses (CRs) and 14 (47%) partial responses (PRs), resulting in a total response rate of 80%. Stable disease was observed in 6 (20%) patients, while no patient experienced progressive disease. During follow-up, 2 (7%) local recurrences were observed (after 17 and 18 months, respectively). Of 5 (17%) patients who developed distant metastasis, 1 patient developed it in liver (3 months), another one in brain (6 months), and another one in the lung (36 months), while 2 patients developed it in mediastinal lymph nodes (after 8, and 11 months, respectively) only. Of 9 (30%) patients who have died, only 3 (10%) died of cancer, while 6 (20%) died of cancer-unrelated or unknown causes. Acute side effects were mild and affected 9 (33%) patients during the RT course (fatigue being the most frequent one in 6 patients). There were 22 acute events occurring in 19 (63%) patients during the first 3 months post-SFRT, the most frequent one being pneumonitis observed in 14 (46%) patients. However, there was only one (3%) grade 3 acute toxicity and no patient experienced greater than grade 3 toxicity during this study. One (3%) patient experienced rib fracture as the late event. SFRT is a feasible and safe treatment method in inoperable patients with stage I NSCLC having reduced lung capacity. Longer follow-up is necessary to get robust data on late toxicity as well as survival.
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PURPOSE: To retrospectively investigate the difference between conventionally fractionated (CF) and hyperfractionated (Hfx) radiation therapy (RT), with and without either daily cisplatin (CDDP) or carboplatin (CBDCA), in patients with locally advanced squamous cell carcinoma of the head and neck (SCCHN) enrolled onto two consecutive prospective randomized studies. PATIENTS AND METHODS: Treatment consisted of CF RT (70 Gy, group 1), CF RT and either daily CDDP (6 mg/m2) or daily CBDCA (25 mg/m2; group 2), Hfx RT (77 Gy, 1.1 Gy bid; group 3), or Hfx RT and daily CDDP (group 4). RESULTS: Hfx RT plus CDDP achieved better overall survival (OS) and local recurrence-free survival (LRFS) than any other group. There was an insignificant difference favoring Hfx RT over CF RT, either alone or in combination with CDDP or CBDCA, regarding both OS (P =.058 and P =.051, respectively) and LRFS (P =.088 and P =.091, respectively). No difference was seen between CF RT plus chemotherapy (CHT) and Hfx RT alone regarding either OS (P =.32) or LRFS (P =.48). Regional recurrence-free survival was similar in the four treatment groups. CF RT plus CHT and Hfx RT plus CDDP achieved better distant metastasis-free survival than CF RT and Hfx RT. High-grade toxicity was significantly more frequent in Hfx RT plus CDDP than in any other group, except in the Hfx RT group. Hfx RT led to significantly more acute toxicity and xerostomia than CF RT plus CHT. Hfx RT was more toxic than CF RT, either alone or with concurrent CHT. CONCLUSION: Results of this study show that there may be a therapeutic benefit for CF RT plus CHT over Hfx RT plus CDDP in patients with SCCHN, but this cannot be firmly established without a larger and well-planned controlled trial.
PURPOSE: To provide updated outcome data (10 years) of a Phase II study of combined surgery, postoperative radiotherapy, and adjuvant chemotherapy in patients with anaplastic oligodendroglioma and oligoastrocytoma. METHODS AND MATERIALS: In 23 adult patients, surgery, postoperative radiotherapy (60 Gy in 30 daily fractions within 6 weeks), and adjuvant modified chemotherapy (procarbazine 60 mg/m(2) on Days 1-14, lomustine 100 mg/m(2) on Day 1, and vincristine 1.4 mg/m(2) [maximum 2 mg] on Days 1 and 8) were administered every 6 weeks for up to six cycles or until progression occurred. RESULTS: The median follow-up was 116 months for all patients. The median survival time was 118 months, and the 5-year and 10-year survival rate was 57% and 47%, respectively. The median time to tumor progression was 78 months, with a 5-year and 10-year progression-free survival rate of 52% and 39%, respectively. Gender, age, Karnofsky performance status, location, and histologic type did not influence survival. Patients with tumors 4 cm (p = 0.0470), as did those with total tumor resection compared with those with subtotal tumor resection or biopsy only (p = 0.0024). Gender, Karnofsky performance status, location, and histologic type did not influence progression-free survival, but younger age (p = 0.0389), smaller tumor size (p = 0.0357), and more radical surgery (p = 0.0033) correlated positively with it. Acute high-grade (Grade 3 or worse) chemotherapy-related toxicity was mainly hematologic, with 3 patients (13%) experiencing acute Grade 4 toxicity. CONCLUSION: The results of this 10-year update confirmed that the trimodality approach is effective in patients with anaplastic oligodendroglioma and oligoastrocytoma.
BACKGROUND: The EORTC Trial 22845 on the role of immediate postoperative radiotherapy in patients with supratentorial lowgrade glioma revealed an advantage of immediate postoperative radiotherapy for progression-free survival, but not for overall survival. It is still an open question in which clinical setting immediate radiotherapy should be considered and whether chemotherapy may become a useful alternative. MATERIAL AND METHODS: Reports in the literature spanning 60 years of radiation therapy were reviewed with respect to timing of radiotherapy, prognostic factors, dose prescriptions, modern treatment techniques, and late effects. Data on chemotherapy were also reviewed. Based on these data, the role of immediate postoperative radiotherapy or chemotherapy in adult low-grade glioma is presented. RESULTS: Radiotherapy is able to control symptoms in up to 80% of cases. Malignant transformation occurs in 36-86% of cases upon progressive disease. Long-term median survival crucially depends on prognostic factors and ranges between 12 months and 10 years. Radiotherapy does not cause neurocognitive deficits, provided that modern treatment techniques and moderate dose prescriptions are used. Recent series with small patient numbers indicate that chemotherapy using PCV or temozolomide may prolong median survival and induces response rates of 50% in oligodendroglial tumors. CONCLUSION: The arguments for immediate postoperative irradiation include: low-grade gliomas respond to radiotherapy; the tumors often display an aggressive pathobiological behavior; patients with high risk profile may benefit from immediate radiotherapy in terms of progression-free and overall survival; modern focal radiotherapy is far less toxic than feared; radiotherapy might be more effective at diagnosis than at progression. Chemotherapy might be an alternative in immediate postoperative treatment. Its role, however, is unclear. The forthcoming prospective trial of the EORTC will address this issue in a randomized setting.
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