Sterin M, Ringel I, Lecht S, Lelkes P I, Lazarovici P
Department of Pharmacology and Experimental Therapeutics, School of Pharmacy, Faculty of Medicine, The Hebrew University of Jerusalem, Jerusalem, Israel.
Endothelium. 2008 Sep-Oct;15(5-6):288-98. doi: 10.1080/10623320802487841.
Very few studies describe endothelial cell (EC) properties under three-dimensional (3D) conditions using (31)P magnetic resonance spectroscopy (MRS). The authors developed a model in which living ECs growing in Matrigel threads (3D conditions) for 5 days are monitored by (31)P MRS, providing the fingerprint of the major EC phosphometabolites. Organic extracts of membranal phospholipids were also analyzed by (31)P MRS. For comparison and as a model for two-dimensional (2D) tissue culture conditions, (31)P MRS spectra of aqueous extracts of EC phosphometabolites grown under 2D conditions were also evaluated. The phosphometabolites fingerprint of the cells cultured under 3D was significantly different from that of ECs maintained under 2D. Moreover, the pattern of phosphometabolites was affected by coculture with C6-glioma cells and upon treatment with valproic acid, which is under clinical investigation as an antioangiogenic anticancer drug. The major effects were modulation of (i) energy metabolism intermediates such as phosphocreatine, (ii) precursors of phospholipids such as phosphomonoesters, and (iii) degradation products of phospholipids such as glycerophosphocholine. This endothelial model will be usefull as an enabling platform technology for tissue engineering.
极少有研究使用磷-31磁共振波谱法(MRS)来描述三维(3D)条件下内皮细胞(EC)的特性。作者开发了一种模型,其中在基质胶纤维中生长5天的活内皮细胞(3D条件)通过磷-31磁共振波谱法进行监测,从而提供主要内皮细胞磷酸代谢物的特征图谱。膜磷脂的有机提取物也通过磷-31磁共振波谱法进行分析。为了进行比较并作为二维(2D)组织培养条件的模型,还评估了在2D条件下生长的内皮细胞磷酸代谢物水提取物的磷-31磁共振波谱。在3D条件下培养的细胞的磷酸代谢物特征图谱与在2D条件下培养的内皮细胞的图谱显著不同。此外,磷酸代谢物的模式受到与C6胶质瘤细胞共培养以及用丙戊酸处理的影响,丙戊酸作为一种抗血管生成抗癌药物正在进行临床研究。主要影响包括对(i)能量代谢中间体如磷酸肌酸、(ii)磷脂前体如磷酸单酯以及(iii)磷脂降解产物如甘油磷酸胆碱的调节。这种内皮细胞模型将作为组织工程的一种赋能平台技术而有用。