Capeáns C, Piñeiro A, Domínguez F, Loidi L, Buceta M, Carneiro C, Garcia-Caballero T, Sanchez-Salorio M
Department of Ophthalmology General Hospital of Galicia, Santiago de Compostela, Spain.
Exp Eye Res. 1998 May;66(5):581-9. doi: 10.1006/exer.1997.0452.
The purpose of this work was to investigate if MYC-dependent intracellular mitogenic pathway is active in cultures of human retinal pigment epithelial (hRPE) cells and whether myc antisense phosphorotioate oligonucleotides (c-myc-AS-ODN) are useful tools for inhibiting the proliferation of hRPE cells. Cultures of hRPE cells were established from adult human corneal donors. These cells were positively stained for cytokeratins and vimentin. Myc mRNA expression was determined by Northern blot analysis and it was determined by means of immunofluorescence if MYC was expressed. C-myc-AS-ODN effect on cell proliferation was estimated by evaluating the incorporation of 5-bromo-2'-deoxy-uridine into cellular DNA. Cell number was estimated by using a tetrazolium bromide based colorimetric method. Human RPE cells in culture expressed MYC and myc mRNA as well as prothymosin alpha mRNA--a gene whose transcription is under MYC control--indicating that MYC-dependent intracellular mitogenic pathway is active in these cells. In accordance with this, we found that blocking the expression of myc by the addition of c-myc-AS-ODN to the culture medium inhibited hRPE cell proliferation. The effect of the c-myc-AS-ODN was found to be sequence specific (the use of a control oligonucleotide with the same sequence but in an opposite direction had no effect) and dose-dependent (4 microM was the lowest effective dose tested). By using RT-PCR we found that the c-myc-AS-ODN inhibition of cell proliferation was related to a diminution in c-myc mRNA expression, and by immunofluorescence we detected a diminution in c-MYC protein staining in RPE cells after 48 hr of treatment with c-myc-AS-ODN. Furthermore, growth inhibition remained for at least 5 days after addition of a single dose of the c-myc-AS-ODN to the culture. We conclude that hRPE cell proliferation is under MYC control. Blocking the expression of myc by c-myc-AS-ODN inhibited hRPE cell proliferation. These findings establish a rationale for investigating the potential use of a c-myc-AS-ODN as a novel therapeutical tool in the treatment of Proliferative Vitreoretinopathy.
这项工作的目的是研究MYC依赖的细胞内促有丝分裂途径在人视网膜色素上皮(hRPE)细胞培养物中是否活跃,以及myc反义硫代磷酸酯寡核苷酸(c-myc-AS-ODN)是否是抑制hRPE细胞增殖的有效工具。hRPE细胞培养物取自成年人类角膜供体。这些细胞对角蛋白和波形蛋白呈阳性染色。通过Northern印迹分析确定Myc mRNA表达,并通过免疫荧光确定是否表达MYC。通过评估5-溴-2'-脱氧尿苷掺入细胞DNA来估计c-myc-AS-ODN对细胞增殖的影响。使用基于四唑溴盐的比色法估计细胞数量。培养的人RPE细胞表达MYC和myc mRNA以及前胸腺素α mRNA(一种转录受MYC控制的基因),表明MYC依赖的细胞内促有丝分裂途径在这些细胞中活跃。据此,我们发现通过向培养基中添加c-myc-AS-ODN来阻断myc的表达可抑制hRPE细胞增殖。发现c-myc-AS-ODN的作用具有序列特异性(使用具有相同序列但方向相反的对照寡核苷酸无效)且呈剂量依赖性(4 microM是测试的最低有效剂量)。通过RT-PCR我们发现c-myc-AS-ODN对细胞增殖的抑制与c-myc mRNA表达的减少有关,并且通过免疫荧光我们在c-myc-AS-ODN处理48小时后检测到RPE细胞中c-MYC蛋白染色减少。此外,在向培养物中添加单剂量的c-myc-AS-ODN后,生长抑制至少持续5天。我们得出结论,hRPE细胞增殖受MYC控制。通过c-myc-AS-ODN阻断myc的表达可抑制hRPE细胞增殖。这些发现为研究c-myc-AS-ODN作为增殖性玻璃体视网膜病变治疗中的新型治疗工具的潜在用途奠定了理论基础。