Department of Radiation Oncology, University of Pennsylvania School of Medicine, Philadelphia, Pennsylvania, USA.
Nutr Cancer. 2011;63(7):1114-21. doi: 10.1080/01635581.2011.605981. Epub 2011 Sep 14.
The objectives of the present study were to characterize γ-ray, 1 GeV/n proton, and 1 GeV/n iron ion radiation-induced adverse biological effects in terms of toxicity and transformation of HTori-3 human thyroid epithelial cells; to evaluate the ability of L-selenomethionine (SeM) to protect against radiation-induced transformation when present at different times during the assay period; and to evaluate the tumorigenicity of HTori-3 cells derived from anchorage-independent colonies following iron ion radiation exposure. Cell survival was determined by a clonogenic assay, transformation was measured by a soft agar colony formation assay, and the tumorigenic potential of the cells was determined by injecting them subcutaneously into athymic nude mice and monitoring tumor formation. The results demonstrate that exposure of HTori-3 cells to γ-ray, proton, or iron ion radiation resulted in decreased clonogenic survival, which persisted for weeks after the radiation exposure. Treatment with SeM initiated up to 7 days after the radiation exposure conferred significant protection against radiation-induced anchorage-independent growth. HTori-3 cells derived from all evaluated anchorage-independent colonies formed tumors when injected into athymic nude mice, indicating that these cells are tumorigenic and that anchorage-independent colony growth is a reliable surrogate endpoint biomarker for the radiation-induced malignant transformation of HTori-3 cells.
本研究的目的是描述 γ 射线、1 GeV/n 质子和 1 GeV/n 铁离子辐射诱导 HTori-3 人甲状腺上皮细胞毒性和转化的不良生物学效应;评估 L-硒代蛋氨酸(SeM)在实验期间不同时间存在时对辐射诱导转化的保护能力;并评估 HTori-3 细胞在铁离子辐射暴露后从非锚定依赖性集落中获得的致瘤性。细胞存活率通过集落形成实验确定,转化通过软琼脂集落形成实验测量,细胞的致瘤潜能通过皮下注射到无胸腺裸鼠中并监测肿瘤形成来确定。结果表明,HTori-3 细胞暴露于 γ 射线、质子或铁离子辐射会导致克隆形成存活率降低,这种情况在辐射暴露后持续数周。辐射暴露后 7 天内开始用 SeM 处理可显著防止辐射诱导的非锚定生长。从所有评估的非锚定集落中获得的 HTori-3 细胞在注射到无胸腺裸鼠中时形成肿瘤,表明这些细胞具有致瘤性,并且非锚定集落生长是 HTori-3 细胞辐射诱导恶性转化的可靠替代终点生物标志物。