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J-J Bretel

Publications and source records attributed to J-J Bretel.

4 recordsLinked to original sources

[Lung cancer: is there a place for elective nodal irradiation?].

The use of conformal radiotherapy in lung cancer has considerably evolved with the advent of improved staging technologies and methods of radiation delivery. Patients with limited disease, inoperable for medical reasons, may be treated with conformal radiotherapy alone; patients with more advanced disease are treated with combined chemo-radiotherapy. If local control may be improved by radiotherapy dose escalation according to several studies, toxicity and more particularly pulmonary toxicity seems to be related to radiation volume. Thus the use of elective nodal irradiation is being questioned. Data for early stage (stage I) non-small-cell lung cancer treated with conformal radiotherapy or stereotactic hypofractionated radiotherapy strongly supports the use of smaller fields that do not incorporate elective nodal regions; local control and survival rates approach those of surgical series. In locally advanced non-small cell lung cancer, eliminating elective nodal irradiation allows to maximize tumor dose and minimize normal tissue toxicity in combined modality treatments; results are encouraging. The use of staging modalities such as positron emission tomography and eventually oesophageal ultrasonography is increasing, allowing to encompass the tumor volume with more accuracy. Several studies have confirmed that involved-field irradiation results into a regional nodal rate of less than 10%. Further larger-scale studies would be needed to definitely establish "no elective nodal irradiation" as a standard in non-small cell lung cancer. There are very few data concerning small cell lung cancer.

Humans↗

[Prophylactic cranial irradiation in non-small cell lung cancer].

Prophylactic cranial irradiation (PCI) has become part of the standard treatment in patients with small cell lung cancer (SCLC) in complete remission. Not only does it decrease the risk of brain recurrence by almost 50%, it has a significant positive effect on survival (5.4 percent increase at 3 years). As the prognosis of patients with locally advanced non-small cell lung cancer (NSCLC) has improved with combined modality treatment, brain metastases have also become an important cause of failure (10 to 30%, approaching 50% in certain studies as in SCLC). Survival after treatment of brain metastases is poor and impact on quality of life of patients is important. As in SCLC, 4 randomised evaluating PCI in NSCLC have been carried out in the seventies and early eighties. If 3 out of 4 trials have shown a significant decrease of brain metastases, none of them demonstrated any impact on survival. Thus PCI cannot be recommended as standard treatment in NSCLC, however new trials would be needed.

Brain Neoplasms↗

[Thymic tumors].

Thymomas and thymic carcinomas are rare and slow-growing tumors, which develop within the anterior mediastinum. Thymomas are often associated with autoimmune disorders and most particularly myasthenia gravis. The treatment of choice remains a complete surgical resection. Postoperative radiotherapy is often combined in case of invasive thymoma invading into adjacent organs. Postoperative radiotherapy in stage II with invasion into capsule has been more controversial lately. In inoperable locally advanced, or metastatic thymic tumors, neoadjuvant cisplatin-based followed by surgery and radiotherapy has given interesting results in the past years.

Carcinoma↗

[Modalities of radiotherapy in small cell lung cancer: thoracic radiotherapy and prophylactic cerebral irradiation].

Small cell lung cancers (SCC) represent 20% of all lung cancers. After the initial control of the extension, only one third of the patients with SCC will finally have limited disease. The treatment of limited SCC currently relies on chemo-radiotherapeutic combinations that have improved overall survival and survival without metastases over the last few years. Nevertheless, even in limited forms, survival at 5 years varies from 10 to 15% and rarely exceeds 25% in the best series. The risk of relapse is high: although around 70% of patients with a limited form will have complete response, only 15 to 20% of them will exhibit prolonged survival. Indeed, most patients relapse, and the risk of cerebral dissemination for example is particularly high, reaching 50% at 2 years even in complete responders. After the results of a meta-analysis evaluating prophylactic cranial irradiation (PCI) among SCC complete responders, demonstrating 5% enhancement of survival at 3 years, PCI is part of the standard management of SCC in complete response. Despite the improvement in overall survival with the combined treatments, the mediocre results observed in terms of long-term survival warrant further clinical trials in order to define the optimal polychemotherapeutic and radiotherapeutic modalities, the best means of combining these two therapies and the place for new therapies.

Brain Neoplasms↗