
本研究中建立了内皮型一氧化氮合成酶(eNOS)稳定转染表达细胞系,探讨其在辐射诱导旁效应中的促进作用。利用荧光探针DAF-FM与Griess试剂盒,间接检测稳定表达细胞系辐照后细胞内、外一氧化氮(NO)浓度变化;表达细胞系辐照后培养液转移至受体细胞(MRC5)共孵育,检测受体细胞DNA双链断裂,辐照细胞与受体细胞共培养2 d,检测微核形成率。研究发现,辐射后15 min,供体细胞NO诱导水平达到峰值;eNOS高表达细胞系辐照后15 min时间点的转培养液诱导受体细胞产生较高的DNA双链断裂;eNOS高表达细胞系辐照后与受体细胞共培养,诱导受体细胞出现更多的微核。结果表明:NOS高表达促进辐射旁效应的产生,其催化产生的NO是主要的诱导因子之一。
The overexpression of eNOS cell line was constructed to investigate the role of eNOS in the induction of radiation induced bystander effects without pharmacologic intervention. By using of the fluorescent probe DAF-FM and Griess reagent system, the formation of the extracellular and intracellular NO in irradiated donor cell (HEK-Vector and HEK-eNOS) was detected indirectly. DNA double strand breaks and micronucleus were measured in the recipient MRC5 cells after the MRC5 was co-cultured with the condition medium from the irradiated donor cells and the irradiated cells themselves, respectively. The result showed that the levels of both extracellular and intracellular NO elevated at peak at 15 min after exposure to X-rays. The medium of the irradiated donor cells at 15 min after exposure to 5 Gy X-rays was transferred to recipient cells and incubated for 30 min. More bystander γ H2AX foci, a biomarker of DSB, were observed at 15 min in the bystander cells co-cultured with the condition medium from the irradiated eNOS overexpression cells. Significant increment of MN was found in the bystander MRC5 cells co-cultured with the irradiated eNOS overexpression cells than the vector cell line. Taken together, our results suggest that the induction of bystander effect can be promoted by the overexpression of NOS and the NO derived from the catalytic reaction of NOS after irradiation is the major factor in the induction of the bystander effects.Cited
一氧化氮合成酶一氧化氮辐射旁效应
Nitric oxide synthase (NOS)Nitric oxide (NO)IrradiationBystander effect
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