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低功率微波辐射通过上调P27Kip1表达抑制兔晶状体上皮细胞的增殖。

Low power microwave radiation inhibits the proliferation of rabbit lens epithelial cells by upregulating P27Kip1 expression.

作者信息

Yao Ke, Wang Kai Jun, Sun Zhao Hui, Tan Jian, Xu Wen, Zhu Li Jun, Lu De Qiang

机构信息

Eye Center, Affiliated Second Hospital, College of Medicine, Zhejiang University and Ophthalmology Institute, Hangzhou, China.

出版信息

Mol Vis. 2004 Feb 25;10:138-43.

Abstract

PURPOSE

The goal of this study was to examine the effects of low power microwave radiation (<10 mW/cm2) on the proliferation of cultured rabbit lens epithelial cells (RLEC).

METHODS

Cultured RLEC were exposed to continuous microwave radiation at a frequency of 2,450 MHz and power densities of 0.10, 0.25, 0.50, 1.00, and 2.00 mW/cm2 for 8 h. Cell morphologic changes were observed under a phase-contrast microscope. Cell viability was measured using the MTT assay and cell cycle analysis was measured using flow cytometry. After exposure to 2.00 mW/cm2 microwave radiation for 4, 6, and 8 h, the expression of cell cycle-regulatory proteins, P21WAF1 and P27Kip1, was examined using western blot analysis. Finally, the levels of P21WAF1 and P27Kip1 mRNA were analyzed by reverse transcription-polymerase chain reaction (RT-PCR).

RESULTS

After 8 h of radiation treatment, cells treated with 0.50, 1.00, and 2.00 mW/cm2 microwave radiation exhibited decreased cell viability, increased cell condensation and an inhibition of DNA synthesis. RLEC showed significant G0/G1 arrest. No obvious changes could be detected in the 0.10 and 0.25 mW/cm2 microwave treatment groups. Protein expression of P27Kip1 was markedly increased after microwave radiation. However, the mRNA levels were unchanged. On the other hand, there were no detectable differences in P21WAF1 protein expression and mRNA levels between microwave treatment and control groups.

CONCLUSIONS

This study suggests that low power microwave radiation higher than 0.50 mW/cm2 can inhibit lens epithelial cell proliferation, and increase the expression of P27Kip1. These effects may account for the decline of lens epithelial proliferation after exposure to microwave radiation.

摘要

目的

本研究旨在探讨低功率微波辐射(<10 mW/cm2)对培养的兔晶状体上皮细胞(RLEC)增殖的影响。

方法

将培养的RLEC暴露于频率为2450 MHz、功率密度分别为0.10、0.25、0.50、1.00和2.00 mW/cm2的连续微波辐射下8小时。在相差显微镜下观察细胞形态变化。使用MTT法测量细胞活力,并使用流式细胞术进行细胞周期分析。在暴露于2.00 mW/cm2微波辐射4、6和8小时后,使用蛋白质印迹分析检测细胞周期调节蛋白P21WAF1和P27Kip1的表达。最后,通过逆转录-聚合酶链反应(RT-PCR)分析P21WAF1和P27Kip1 mRNA的水平。

结果

辐射处理8小时后,接受0.50、1.00和2.00 mW/cm2微波辐射的细胞表现出细胞活力下降、细胞凝聚增加以及DNA合成受到抑制。RLEC显示出明显的G0/G1期阻滞。在0.10和0.25 mW/cm2微波处理组中未检测到明显变化。微波辐射后P27Kip1的蛋白质表达显著增加。然而,mRNA水平未发生变化。另一方面,微波处理组和对照组之间P21WAF1蛋白质表达和mRNA水平没有可检测到的差异。

结论

本研究表明,高于0.50 mW/cm2的低功率微波辐射可抑制晶状体上皮细胞增殖,并增加P27Kip1的表达。这些作用可能解释了暴露于微波辐射后晶状体上皮增殖的下降。

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