首页> 外文期刊>In Vitro Cellular and Developmental Biology. Animal: Journal of the Tissues Culture Association >ESTABLISHMENT AND CHARACTERIZATION OF A NOVEL IN VITRO ANGIOGENESIS MODEL USING A MICROVASCULAR ENDOTHELIAL CELL LINE, F-2C, CULTURED IN CHEMICALLY DEFINED MEDIUM
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ESTABLISHMENT AND CHARACTERIZATION OF A NOVEL IN VITRO ANGIOGENESIS MODEL USING A MICROVASCULAR ENDOTHELIAL CELL LINE, F-2C, CULTURED IN CHEMICALLY DEFINED MEDIUM

机译:在化学定义培养基中培养的微血管内皮细胞系F-2C在体外血管生成模型中的建立和鉴定

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The behavior of vascular endothelial cells (EC) is an important factor in the processes involved in angiogenesis, but the regulatory mechanisms of angiogenesis, especially underlying the tubulogenesis by EC are not yet clear Although a number of in vitro experimental models of tubulogenesis have been developed by use of cultured EC, most of those models are too complex to be easily handled and further, the culture media are usually supplemented with serum, creating problems in interpretation of experimental results. To generate a simple in vitro angiogenesis study model under serum-free culture conditions, we adapted a murine microvascular endothelial cell line, F-2, to a chemically denned medium, Cos Medium 001, and successfully established a subline of F-2, designated F-2C, which revealed a unique growth pattern. In Cos Medium 001, F-2C proliferates in a cobblestone pattern at an early growth stage, but, at a late growth stage, spontaneously differentiates to form three-dimensional honeycombliketubular structures without the supplementation of any specific factors. The cell aggregation activity of F-2C in the presence of Ca~(2+) was much greater than that of F-2. The amount of subendothelial matrix deposited by F-2C was significantly higher than that by F-2, and increased prominently after the F-2C cells leached the differentiating stage of tubulogenesis. These findings indicate that F-2C is a new EC line in which tubulogenesis is spontaneously induced by the marked deposition of basement membrane analog to the subendothelial matrix and by the enhancement of presumable cadherin activity. We suggest that this cell line, F-2C, represents a simple and useful in vitro angiogenesis model.
机译:血管内皮细胞(EC)的行为是参与血管生成过程的重要因素,但是血管生成的调节机制,尤其是EC引起的肾小管生成的机制尚不清楚,尽管已经开发了许多体外实验方法通过使用培养的EC,大多数模型太复杂而难以处理,而且,通常在培养基中添加血清,在解释实验结果时会产生问题。为了在无血清培养条件下生成简单的体外血管生成研究模型,我们将鼠类微血管内皮细胞系F-2适应了化学浓缩培养基Cos 001,并成功建立了F-2亚系F-2C,揭示了独特的增长方式。在Cos培养基001中,F-2C在早期生长阶段以鹅卵石模式增殖,但在晚期生长阶段,自发分化形成三维蜂窝状管状结构,而无需添加任何特定因素。在Ca〜(2+)存在下,F-2C的细胞聚集活性远大于F-2。 F-2C沉积的内皮下基质的数量显着高于F-2,并且在F-2C细胞浸出细管形成的分化阶段后显着增加。这些发现表明,F-2C是一种新的EC系,其中通过基底膜类似物明显沉积到内皮下基质并通过增强推测的钙黏着蛋白活性而自发诱导肾小管生成。我们建议该细胞系F-2C代表一个简单而有用的体外血管生成模型。

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