Berger Adam C, Wang Xue-Qing, Zalatoris Alice, Cenna Jonathan, Watson James C
Division of Surgical Research, Department of Surgical Oncology, Fox Chase Cancer Center, Philadelphia, PA 19111, USA.
Microvasc Res. 2004 Nov;68(3):179-87. doi: 10.1016/j.mvr.2004.05.005.
The rat aortic ring model is well utilized for evaluation of angiogenesis. We report here an alternative assay employing an ex vivo mouse aorta angiogenesis model that can be extensively manipulated and serially evaluated using digital-assisted image analysis. Mouse aortas were harvested, cut into 2-mm disks, and cultured in fibrin matrix with growth media. Radial vascular outgrowths arose from the cut edge of the aortic disk and were digitally photographed and serially quantified. A variety of culture conditions were evaluated to determine their ability to alter angiogenesis in this model. Vessel outgrowth became apparent on day 3 and continued through day 10 with linear growth occurring between days 3 and 6. Increasing concentrations of serum from 0% to 40% resulted in stimulation of angiogenesis after day 3. Suramin and endostatin dramatically inhibited angiogenesis, which was more profound when applied at day 0 than when linear growth could be identified (day 3). Cells isolated from vessel outgrowths were predominantly endothelial in origin by immunocytochemistry and FACS analysis. We demonstrate that angiogenesis in an ex vivo murine model can be easily quantified using digital image analysis, responds appropriately to stimulation and inhibition, and exhibits differential results based on time of inhibitor administration. Antiangiogenic agents may be most effective if administered before development of accelerated vessel growth.
大鼠主动脉环模型被广泛用于评估血管生成。我们在此报告一种替代检测方法,即采用体外小鼠主动脉血管生成模型,该模型可通过数字辅助图像分析进行广泛操作和连续评估。收获小鼠主动脉,切成2毫米的薄片,在含有生长培养基的纤维蛋白基质中培养。从主动脉薄片的切割边缘长出放射状血管分支,并进行数字拍照和连续定量。评估了多种培养条件,以确定它们在该模型中改变血管生成的能力。血管分支在第3天开始明显出现,并持续到第10天,在第3天至第6天呈线性生长。将血清浓度从0%增加到40%会在第3天后刺激血管生成。苏拉明和内皮抑素显著抑制血管生成,在第0天应用时比在可识别线性生长时(第3天)应用时抑制作用更显著。通过免疫细胞化学和流式细胞术分析,从血管分支中分离出的细胞主要起源于内皮细胞。我们证明,使用数字图像分析可以轻松量化体外小鼠模型中的血管生成,其对刺激和抑制反应适当,并且根据抑制剂给药时间呈现不同结果。如果在血管加速生长之前给药,抗血管生成剂可能最有效。