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    find Keyword "乏氧" 2 results
    • 惡性腫瘤放射增敏機制及藥物研究進展

      放射治療是惡性腫瘤治療的有效方式之一,幾乎超過50%的惡性腫瘤患者在抗癌過程中接受過放射治療。但是高能量的放射線在殺死腫瘤細胞的同時,不可避免會損傷腫瘤周圍正常組織。所以控制腫瘤放射劑量,使腫瘤放射“局部化”,是腫瘤科醫生共同的追求。放射增敏劑的使用助于獲得相對低量高效的放射劑量,有效增加腫瘤局部控制率,降低放射對腫瘤周圍正常組織的傷害。但是目前臨床上使用的放射增敏劑,大多數存在藥物自身細胞毒性大、選擇性低、價格昂貴等特點,限制了臨床廣泛使用。所以尋找安全經濟且可區分腫瘤組織和正常組織的“智能型”放射增敏物質十分迫切且必要。這篇綜述主要對腫瘤放射增敏機制及相關藥物研究進展進行了總結分析,并介紹一些新興的放射增敏措施,為臨床上放射增敏劑的使用和進一步研發提供方向。

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    • Effect of HIF-1α on reverse differentiation of hepatocellular carcinoma cells in hypoxic environment

      ObjectiveTo explore the effects of hypoxia inducible factor-1 alpha (HIF-1α) on the reverse differentiation of hepatocellular carcinoma cells into liver cancer stem cells, and the maintenance of malignant biological behavior in hypoxic environment.MethodsCD133-negative cells in HepG2 cells were separated by immunomagnetic beads and divided into two groups. The cells of siRNA group were transfected with siRNA-HIF-1α to silence the expression of HIF-1α gene, while cells of the blank control group did not transfect any siRNA fragments. The two groups of cells were cultured under normal and hypoxic conditions respectively. MTT, cloning and Transwell chamber experiments were used to detect the proliferation and invasion ability of cells. Western blot and real-time PCR (RT-PCR) were used to detect the expressions of HIF-1α, CD133, CD90, and CD44 protein and mRNA in cells.ResultsMTT results showed that the cell proliferation rate increased with the prolongation of hypoxia in four groups. Compared with the blank control group at 24, 32, 40, and 48 hours, the cell proliferation rate decreased significantly after siRNA-HIF-1a transfection, on both two kinds of cultured conditions (P<0.05). The results of plate cloning experiment showed that the number of cell-forming clones increased significantly after hypoxic culture (there were significant differences between the transfected normoxic group and transfected hypoxic group, blank control normoxic group and blank control hypoxic group, P<0.05); and the formation of transfected hypoxic condition group at the same time of hypoxia was also significant (P<0.05). The number of clones were significantly less than that of the blank control group at the hypoxic condition (P<0.05). Transwell lab experiment showed that after hypoxic culture, the number of cells migrated to the inferior chamber in the transfection group was significantly reduced compared with that of the blank control group (P<0.05). Western blot and RT-PCR results showed that the expression levels of HIF-1α protein and tumor stem cell markers (CD133, CD90, and CD44 protein) in the blank control hypoxic condition group were significantly higher than those in the other three groups (P<0.05); after siRNA-HIF-1a transfection, HIF-1α mRNA and tumor stem cell markers mRNA (CD133, CD90, and CD44 mRNA) in the transfected hypoxic condition group were significantly lower than those in the transfected normal condition group and the blank control normal condition group (P<0.05).ConclusionsIn hypoxia environment, HIF-1α can promote hepatocellular carcinoma cells to differentiate into liver cancer stem cells and enhance their malignant biological behavior.

      Release date:2019-01-16 10:05 Export PDF Favorites Scan
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  • 松坂南