Hadchity Elie, Aloy Marie-Thérèse, Paulin Christian, Armandy Emma, Watkin Emmanuel, Rousson Robert, Gleave Martin, Chapet Olivier, Rodriguez-Lafrasse Claire
Université de Lyon, Université Lyon-I, Lyon, France.
Mol Ther. 2009 Aug;17(8):1387-94. doi: 10.1038/mt.2009.90. Epub 2009 May 12.
In a wide range of human cancers, increased levels of heat shock protein 27 (Hsp27) are closely associated with tumorigenesis, metastasis, resistance to anticancer therapeutics, and thus poor prognosis. In this study, we evaluate the radiosensitizing effects of Hsp27 gene silencing using OGX-427, a second-generation antisense oligonucleotide (ASO), on the radioresistant head and neck squamous cell carcinoma (HNSCC) SQ20B cells. In vitro, the downregulation of Hsp27 significantly enhanced radiation-induced apoptotic and clonogenic death, and promoted Akt inactivation. In vivo, combining OGX-427 with local tumor irradiation (5 x 2 Gy) led to a significant regression of SQ20B tumors related to a high rate of apoptosis and decreased levels of glutathione antioxidant defenses. Increasing the total radiation dose (15 x 2 Gy) significantly amplified the radiosensitizing effect of OGX-427. Treatment of tumors with OGX-427 plus radiation resulted in a decrease in angiogenesis associated with a reduced activation of the Akt pathway. Furthermore, the combined treatment enhanced the survival of SQ20B-bearing mice and showed no signs of acute and delayed toxicity. Our findings demonstrate for the first time that Hsp27 knockdown enhances the cytotoxic effects of radiotherapy in vivo and provide preclinical proof of principle for clinical trials using Hsp27 antisense technology in the treatment of patients with HNSCC radioresistant cancers.
在多种人类癌症中,热休克蛋白27(Hsp27)水平升高与肿瘤发生、转移、抗癌治疗耐药性密切相关,因此预后较差。在本研究中,我们评估了使用第二代反义寡核苷酸(ASO)OGX - 427对耐辐射的头颈部鳞状细胞癌(HNSCC)SQ20B细胞进行Hsp27基因沉默的放射增敏作用。在体外,Hsp27的下调显著增强了辐射诱导的凋亡和克隆性死亡,并促进了Akt失活。在体内,将OGX - 427与局部肿瘤照射(5×2 Gy)相结合导致SQ20B肿瘤显著消退,这与高凋亡率和谷胱甘肽抗氧化防御水平降低有关。增加总辐射剂量(15×2 Gy)显著增强了OGX - 427的放射增敏作用。用OGX - 427加辐射治疗肿瘤导致血管生成减少,这与Akt途径的激活减少有关。此外,联合治疗提高了荷SQ20B小鼠的生存率,且未显示出急性和延迟毒性的迹象。我们的研究结果首次证明,Hsp27基因敲低可增强体内放疗的细胞毒性作用,并为在耐辐射HNSCC癌症患者治疗中使用Hsp27反义技术进行临床试验提供了临床前原理证明。