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人视网膜周细胞系的建立与鉴定:糖尿病视网膜病变研究的新工具。

Establishment and characterization of a human retinal pericyte line: a novel tool for the study of diabetic retinopathy.

作者信息

Berrone Elena, Beltramo Elena, Buttiglieri Stefano, Tarallo Sonia, Rosso Arturo, Hammes Hans-Peter, Porta Massimo

机构信息

Department of Internal Medicine, University of Turin, Corso Dogliotti 14, I-10126 Torino, Italy.

出版信息

Int J Mol Med. 2009 Mar;23(3):373-8. doi: 10.3892/ijmm_00000141.

Abstract

Loss of pericytes from retinal microvessels is one of the key events in the natural history of diabetic retinopathy. Cultured human retinal pericytes would constitute an extremely useful tool for the study of the early events in the pathogenesis of this complication, but, due to legal and ethical issues, pericytes of animal origin have been mostly used so far for in vitro assays. We aimed at establishing an immortalized human retinal pericyte (HRP) line, as a species-specific model to investigate the pericyte-related aspects of diabetic retinopathy. Primary human retinal pericytes (WT-HRP) were immortalized through electroporation with a plasmid vector containing the Bmi-1 oncogene that induces telomerase activity, resulting in the establishment of a permanent pericyte line (Bmi-HRP), which showed telomerase activity and facilitated propagation. The immortalized cells were characterized for typical pericyte morphology and marker expression. Immunofluorescence studies demonstrated that Bmi-HRP maintain the same morphology and express the typical markers of wild-type pericytes. The response of the cell line to high glucose damaging stimulus was also evaluated, as senescence-associated beta-galactosidase activity and cell proliferation and a clear negative effect of high glucose on Bmi-HRP proliferation and senescence, in line with the characteristic response of wild-type cells, was observed. The combination of infinite proliferation capability and stable differentiation potential makes our Bmi-HRP line a promising candidate model to study pathogenic mechanisms and therapeutic applications in diabetic retinopathy.

摘要

视网膜微血管周细胞的丧失是糖尿病视网膜病变自然病程中的关键事件之一。培养的人视网膜周细胞将成为研究该并发症发病机制早期事件的极其有用的工具,但是,由于法律和伦理问题,迄今为止,动物来源的周细胞大多用于体外试验。我们旨在建立永生化人视网膜周细胞(HRP)系,作为一种物种特异性模型来研究糖尿病视网膜病变中与周细胞相关的方面。通过用含有诱导端粒酶活性的Bmi-1癌基因的质粒载体进行电穿孔,使人原代视网膜周细胞(WT-HRP)永生化,从而建立了一个永久性周细胞系(Bmi-HRP),该细胞系显示出端粒酶活性并便于传代培养。对永生化细胞进行典型周细胞形态和标志物表达的鉴定。免疫荧光研究表明,Bmi-HRP保持相同的形态并表达野生型周细胞的典型标志物。还评估了该细胞系对高糖损伤刺激的反应,观察到衰老相关β-半乳糖苷酶活性、细胞增殖以及高糖对Bmi-HRP增殖和衰老具有明显的负面影响,这与野生型细胞的特征性反应一致。无限增殖能力和稳定分化潜能的结合使我们的Bmi-HRP系成为研究糖尿病视网膜病变发病机制和治疗应用的有前景的候选模型。

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