Blaes N, Bourdillon M C, Daniel-Lamaziere J M, Michaille J J, Andujar M, Covacho C
INSERM Unit 63, Bron, France.
In Vitro Cell Dev Biol. 1991 Sep;27A(9):725-34. doi: 10.1007/BF02633218.
Smooth muscle cell proliferation is an important feature of atherogenesis. Some works have hypothesized that a transformation of smooth muscle cells could arise during this pathological process. The present paper describes two spontaneously transformed cell lines of arterial smooth muscle cells (SMC) established from aortic media of adult rat. The cell lines have been designated V6 and V8; some of their morphologic, growth, and metabolic characteristics are described and compared to their parent cells. The two cell lines appeared distinct by their morphology and by their degree of transformation. V6 cells appeared as elongated spindle-shaped cells whereas V8 cells were spread cells with a cobblestone pattern. Karyotypes of both cell lines showed a high polyploidy level. V6 and V8 cell lines were immortalized and showed growth characteristics of transformed cells: low requirement of serum to grow, ability to form colonies in soft agar and tumorigenicity in nude mice; V8 cells presented a higher malignancy than V6 cells. Both V6 and V8 cells exhibited characteristics of cultured arterial SMC: ultrastructure, alpha actin expression at the protein and mRNA level, prostacyclin production. The remarkably different morphologies of the V6 and V8 lines and their transformed phenotype suggest that these cell lines could be useful models to study SMC differentiation and proliferation with respect to atherosclerotic or hypertensive vascular diseases.
平滑肌细胞增殖是动脉粥样硬化形成的一个重要特征。一些研究推测,在这个病理过程中可能会发生平滑肌细胞的转变。本文描述了从成年大鼠主动脉中膜建立的两种自发转化的动脉平滑肌细胞(SMC)系。这两个细胞系被命名为V6和V8;描述了它们的一些形态、生长和代谢特征,并与它们的亲代细胞进行了比较。这两个细胞系在形态和转化程度上表现出明显差异。V6细胞呈细长的纺锤形,而V8细胞是呈鹅卵石样分布的铺展细胞。两个细胞系的核型都显示出高度的多倍体水平。V6和V8细胞系具有永生化特性,并表现出转化细胞的生长特征:生长对血清的需求低、能在软琼脂中形成集落以及在裸鼠中具有致瘤性;V8细胞的恶性程度高于V6细胞。V6和V8细胞都表现出培养的动脉SMC的特征:超微结构、蛋白质和mRNA水平的α肌动蛋白表达、前列环素的产生。V6和V8细胞系显著不同的形态及其转化表型表明,这些细胞系可能是研究动脉粥样硬化或高血压血管疾病中SMC分化和增殖的有用模型。