用SV40缺陷DNA永生化的猪血管平滑肌细胞:细胞生长和胶原合成的特性。

K Fujimitsu, N Sakata, S Jimi, S Takebayashi, Y Sasaguri, M Morimatsu
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引用次数: 1

摘要

用猴病毒40质粒DNA (SV40 DNA)转染猪冠状动脉内侧壁平滑肌细胞(SMC),建立了猪冠状动脉内侧壁平滑肌细胞系。研究了转染细胞(SV40-SMC)的生长、胶原和非胶原合成等特性。SV40- smc在细胞核内表达SV40大T抗原、c-myc和c-myb编码蛋白。免疫荧光染色显示SV40-SMC在过融合和肌动蛋白丝中呈“丘陵和山谷”状排列。电镜观察,SV40-SMC的合成细胞器数量比SMC多,而丝束数量比SMC少。SV40-SMC的生长活性是SMC的3倍,细胞密度是SMC的4.4倍。在含有5%血浆衍生血清(PDS)而不是正常血清的培养基中,平滑肌细胞不能生长,而SV40-SMC在该培养基中增殖。SV40-SMC在软琼脂凝胶中不生长,而人宫颈癌细胞系HeLa S3细胞在软琼脂凝胶中形成菌落。通过免疫荧光(IF)染色,SV40-SMC和SMC均检测到I、III、IV和V型胶原。然而,SV40-SMC中胶原蛋白和非胶原蛋白的合成高于对照样品。结果表明,SV40-SMC在形态特征上是血管SMC的连续细胞系,具有较高的生长活性,胶原和非胶原合成增加。该细胞系可用于研究与血管内膜SMC增殖和细胞外基质积累有关的动脉粥样硬化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Porcine vascular smooth muscle cells immortalized with SV40 ori-defective DNA: characteristics of cell growth and collagen synthesis.

A cell line derived from medial smooth muscle cells (SMC) was established from the porcine coronary artery by transfection with ori-defective simian virus 40 plasmid DNA (SV40 DNA). The characteristics of transfected cells (SV40-SMC) such as cell growth, collagen and non-collagen syntheses were investigated. SV40-SMC expressed SV40 large T antigen, c-myc and c-myb encoded proteins in the nuclei. SV40-SMC demonstrated a 'hills and valleys'-like arrangement in overconfluence and actin filaments upon immunofluorescent staining. Under electron microscopic observation, SV40-SMC had larger amounts of synthetic organelles and smaller amounts of filament bundles than those of SMC. SV40-SMC demonstrated three times higher growth activity and 4.4 times greater cellular density than SMC. Smooth muscle cells did not grow in media containing 5% plasma derived serum (PDS) instead of normal serum, whereas SV40-SMC proliferated in this medium. SV40-SMC did not grow in soft agar gel, while HeLa S3 cells, a cell line of human cervical carcinoma, formed colonies in this gel. By immunofluorescent (IF) staining, collagen phenotypes I, III, IV and V were detected in both SV40-SMC and SMC. However, protein synthesis including collagen and non-collagen was higher in SV40-SMC than in the control sample. It was concluded that SV40-SMC were a continuous cell line for vascular SMC regarding morphological characteristics, and demonstrated a higher growth activity, with increased collagen and non-collagen syntheses. This cell line is useful for the investigation of atherogenesis in relation to a proliferation of SMC and an accumulation of extracellular matrices in vascular intima.

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