Department of Experimental Clinical Oncology, Aarhus University Hospital, Aarhus, Denmark.
Semin Radiat Oncol. 2012 Apr;22(2):119-27. doi: 10.1016/j.semradonc.2011.12.006.
Reliable methods for identification of hypoxia in radiotherapy-treated tumors have been a desirable aim in radiation oncology for decades. Hypoxia is a common feature of the microenvironment in solid tumors, and it is associated with increased aggressiveness, reduced therapeutic response, and a poorer clinical outcome. In head and neck squamous cell carcinomas, the negative effect of hypoxia on radiotherapeutic response can be counteracted and minimized by applying hypoxic modification to radiotherapy, which favors the clinical outcome after treatment. However, not all tumors are hypoxic, hence not all patients benefit from the addition of hypoxic modification. Therefore, predictive and clinically applicable methods for pretherapeutic hypoxic evaluation and categorization are needed. Hypoxia gene expression signatures are a developing strategy to approach this obstacle. This method has evolved along with the development of complementary DNA microarray analysis and classifies tumors in accordance to the expression of specific hypoxia-responsive genes in the tumor biopsy. Thus, tumors are classified and categorized in terms of the biological behavior to hypoxic conditions in the microenvironment. Until now, most of the developed hypoxia signatures have only been evaluated in terms of their prognostic impact; however, recently, a predictive impact for hypoxic modification of radiotherapy was verified. Here, we provide an overview of the hypoxic issue in radiotherapy and present the most promising hypoxia gene expression signatures developed to date.
几十年来,可靠的方法来识别放射治疗肿瘤中的缺氧一直是放射肿瘤学的理想目标。缺氧是实体肿瘤微环境的常见特征,它与侵袭性增加、治疗反应降低和临床预后较差有关。在头颈部鳞状细胞癌中,通过对放射治疗进行缺氧修饰,可以抵消和最小化缺氧对放射治疗反应的负面影响,从而改善治疗后的临床结果。然而,并非所有肿瘤都缺氧,因此并非所有患者都受益于添加缺氧修饰。因此,需要预测性和临床适用的方法来进行治疗前缺氧评估和分类。缺氧基因表达特征是解决这一障碍的一种新兴策略。这种方法随着互补 DNA 微阵列分析的发展而发展,并根据肿瘤活检中特定的缺氧反应基因的表达对肿瘤进行分类。因此,根据肿瘤在微环境中对缺氧条件的生物学行为对肿瘤进行分类和分类。到目前为止,大多数已开发的缺氧特征仅在其预后影响方面进行了评估;然而,最近,已经验证了对放射治疗的缺氧修饰的预测影响。在这里,我们提供了放射治疗中缺氧问题的概述,并介绍了迄今为止开发的最有前途的缺氧基因表达特征。