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Nonlinear ionizing radiation-induced changes in eye lens cell proliferation cyclin D1 expression and lens shape

机译:非线性电离辐射诱导的晶状体细胞增殖细胞周期蛋白D1表达和晶状体形状的变化

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摘要

Elevated cataract risk after radiation exposure was established soon after the discovery of X-rays in 1895. Today, increased cataract incidence among medical imaging practitioners and after nuclear incidents has highlighted how little is still understood about the biological responses of the lens to low-dose ionizing radiation (IR). Here, we show for the first time that in mice, lens epithelial cells (LECs) in the peripheral region repair DNA double strand breaks (DSB) after exposure to 20 and 100 mGy more slowly compared with circulating blood lymphocytes, as demonstrated by counts of γH2AX foci in cell nuclei. LECs in the central region repaired DSBs faster than either LECs in the lens periphery or lymphocytes. Although DSB markers (γH2AX, 53BP1 and RAD51) in both lens regions showed linear dose responses at the 1 h timepoint, nonlinear responses were observed in lenses for EdU (5-ethynyl-2′-deoxy-uridine) incorporation, cyclin D1 staining and cell density after 24 h at 100 and 250 mGy. After 10 months, the lens aspect ratio was also altered, an indicator of the consequences of the altered cell proliferation and cell density changes. A best-fit model demonstrated a dose-response peak at 500 mGy. These data identify specific nonlinear biological responses to low (less than 1000 mGy) dose IR-induced DNA damage in the lens epithelium.
机译:1895年发现X射线后不久,放射线暴露后白内障风险升高。如今,医学成像从业人员和核事故后白内障发生率增加,这凸显了人们对低剂量镜片的生物学反应的了解仍然很少电离辐射(IR)。在这里,我们首次显示,在小鼠中,与循环血淋巴细胞相比,暴露于20和100 mGy后,外围区域的晶状体上皮细胞(LEC)修复DNA双链断裂(DSB)的速度要慢得多, γH2AX焦点在细胞核中。中心区域的LEC修复DSB的速度比晶状体周围或淋巴细胞的LEC快。尽管两个晶状体区域的DSB标记(γH2AX,53BP1和RAD51)在1 h时间点均显示线性剂量响应,但在掺入EdU(5-乙炔基2'-脱氧尿苷),细胞周期蛋白D1染色和在100和250 mGy下24 h后的细胞密度。 10个月后,晶状体的长宽比也改变了,这是改变细胞增殖和细胞密度改变的后果的指标。最佳拟合模型显示了500 mGy的剂量反应峰。这些数据确定了对晶状体上皮中低剂量(小于1000 mGy)IR诱导的DNA损伤的特异性非线性生物学反应。

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