Nijhuis E H A, Poot A A, Feijen J, Vermes I
University of Twente, Faculty of Science and Technology, Department of Polymer Chemistry and Biomaterials, Institute of Biomedical Technology (BMTI), The Netherlands.
Int J Radiat Biol. 2008 Feb;84(2):99-105. doi: 10.1080/09553000701817084.
The effect of heat treatment in combination with X-irradiation was examined with regard to expression of p53, a tumor suppressor gene product, and Hsp70, a heat-shock protein, in association with the occurrence of programmed cell death (apoptosis).
Three hematopoietic cell lines (HSB2, HL60 and Kasumi-1), which differ in p53 status, were exposed to 42.5 degrees C during one hour and/or X-radiation (total dose 8 Gy). After exposure, both mRNA and protein expression levels of Hsp70 and p53 were investigated by real-time PCR (polymerase chain reaction) and Western blotting. Apoptosis was simultaneously analyzed by observation of cell morphology as well as flowcytometric determination of Annexin V binding to phosphatidylserine and propidium iodide exclusion.
Both HL60 and HSB2 cell lines with a low p53 status and a quick response to heat treatment with Hsp70 over-expression are less susceptible to heat-induced apoptosis compared to Kasumi-1 cells with wild-type p53 protein and no Hsp70 response. The combination of first applying X-irradiation followed by heat treatment resulted in the most effective induction of apoptosis due to impairment of the Hsp70 response in all three cell lines.
These results indicate that the Hsp70 response and p53 status mediate the susceptibility of hematopoietic cells to undergo heat-induced apoptosis. Therefore, these parameters can be used as markers to predict the effectiveness of hyperthermia in cancer treatment.
研究热处理联合X射线照射对肿瘤抑制基因产物p53和热休克蛋白Hsp70表达的影响,以及与程序性细胞死亡(凋亡)发生的关系。
选用三种p53状态不同的造血细胞系(HSB2、HL60和Kasumi-1),分别进行1小时42.5℃处理和/或X射线照射(总剂量8 Gy)。处理后,通过实时聚合酶链反应(PCR)和蛋白质印迹法检测Hsp70和p53的mRNA及蛋白质表达水平。同时,通过观察细胞形态以及流式细胞术检测膜联蛋白V与磷脂酰丝氨酸的结合及碘化丙啶排斥情况来分析凋亡。
与具有野生型p53蛋白且无Hsp70反应的Kasumi-1细胞相比,p53状态低且对热处理有Hsp70过表达快速反应的HL60和HSB2细胞系对热诱导凋亡的敏感性较低。先进行X射线照射再进行热处理的联合处理在所有三种细胞系中由于Hsp70反应受损而导致最有效的凋亡诱导。
这些结果表明,Hsp70反应和p