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Molecular imaging of tumor hypoxia

机译:肿瘤缺氧的分子成像

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By allowing an earlier diagnosis and a more exhaustive assessment of extension of the disease, the tomography by emission of positrons (TEP) transforms the care of numerous cancers. At present, (18)F-fluorodesoxyglucose ([(18)F]-FDG) imaging appears as the only one available but new molecular markers are being developed. In the next future they would modify the approach of cancers. In this context, the molecular imaging of the hypoxia and especially the (18)Ffluoromisonidazole TEP ([(18)F]-MISO TEP) can give supplementary information allowing the mapping of hypoxic regions within the tumour. Because of the links, which exist between tumour hypoxia and treatment resistance of very numerous cancers, this information can have an interest, for determination of prognosis as well as for the delineation, volumes to be irradiated. Head and neck tumours are doubtless those for which the literature gives the most elements on the therapeutic impact of tumour hypoxia. Targeted therapies, based on hypoxia, already exist and the contribution of the molecular imaging could be decisive in the evaluation of the impact of such treatment. Molecular imaging of brain tumours remains to be developed. The potential contributions of the [(18)F]-MISO TEP for the care of these patients need to be confirmed. In this context, we propose a review of hypoxia molecular imaging taking as examples head and neck tumours and glioblastomas (GB), two tumours for which hypoxia is one of the key factors to overcome in order to increase therapeutics results.
机译:通过对疾病的扩展进行更早的诊断和更详尽的评估,通过发射正电子(TEP)进行的X线断层扫描可以改变许多癌症的治疗方法。目前,(18)F-氟脱氧葡萄糖([(18)F] -FDG)成像似乎是唯一可用的一种,但正在开发新的分子标记。在未来的将来,他们将改变癌症的治疗方法。在这种情况下,缺氧的分子影像学,尤其是(18)F-氟代咪唑TEP([(18)F] -MISO TEP)的分子成像可以提供补充信息,从而可以绘制肿瘤内的缺氧区域。由于肿瘤缺氧与许多癌症的治疗耐药性之间存在联系,因此该信息可能对确定预后以及确定要照射的体积感兴趣。头颈肿瘤无疑是那些文献中对肿瘤缺氧的治疗影响最多的那些肿瘤。基于缺氧的靶向疗法已经存在,分子影像学的贡献对于评估此类疗法的影响可能具有决定性作用。脑肿瘤的分子成像仍有待开发。需要确认[(18)F] -MISO TEP对这些患者的护理的潜在贡献。在这种情况下,我们提出了一个关于缺氧分子成像的综述,以头颈部肿瘤和成胶质细胞瘤(GB)为例,这两种肿瘤的缺氧是要提高治疗效果的关键因素之一。

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