Autefage Hélène, Gentleman Eileen, Littmann Elena, Hedegaard Martin A B, Von Erlach Thomas, O'Donnell Matthew, Burden Frank R, Winkler David A, Stevens Molly M
Departments of Materials and Bioengineering and Institute of Biomedical Engineering, Imperial College London, London SW7 2AZ, United Kingdom;
Departments of Materials and Bioengineering and Institute of Biomedical Engineering, Imperial College London, London SW7 2AZ, United Kingdom; Craniofacial Development and Stem Cell Biology, King's College London, London SE1 9RT, United Kingdom;
Proc Natl Acad Sci U S A. 2015 Apr 7;112(14):4280-5. doi: 10.1073/pnas.1419799112. Epub 2015 Mar 23.
Despite the increasing sophistication of biomaterials design and functional characterization studies, little is known regarding cells' global response to biomaterials. Here, we combined nontargeted holistic biological and physical science techniques to evaluate how simple strontium ion incorporation within the well-described biomaterial 45S5 bioactive glass (BG) influences the global response of human mesenchymal stem cells. Our objective analyses of whole gene-expression profiles, confirmed by standard molecular biology techniques, revealed that strontium-substituted BG up-regulated the isoprenoid pathway, suggesting an influence on both sterol metabolite synthesis and protein prenylation processes. This up-regulation was accompanied by increases in cellular and membrane cholesterol and lipid raft contents as determined by Raman spectroscopy mapping and total internal reflection fluorescence microscopy analyses and by an increase in cellular content of phosphorylated myosin II light chain. Our unexpected findings of this strong metabolic pathway regulation as a response to biomaterial composition highlight the benefits of discovery-driven nonreductionist approaches to gain a deeper understanding of global cell-material interactions and suggest alternative research routes for evaluating biomaterials to improve their design.
尽管生物材料设计和功能表征研究日益复杂,但对于细胞对生物材料的整体反应仍知之甚少。在此,我们结合了非靶向的整体生物学和物理科学技术,以评估在已充分描述的生物材料45S5生物活性玻璃(BG)中简单掺入锶离子如何影响人间充质干细胞的整体反应。我们通过标准分子生物学技术证实的对全基因表达谱的客观分析表明,锶取代的BG上调了类异戊二烯途径,表明对甾醇代谢产物合成和蛋白质异戊二烯化过程均有影响。通过拉曼光谱映射和全内反射荧光显微镜分析确定,这种上调伴随着细胞和膜胆固醇以及脂筏含量的增加,以及磷酸化肌球蛋白II轻链细胞含量的增加。我们对这种作为对生物材料组成反应的强烈代谢途径调节的意外发现,突出了发现驱动的非还原论方法在深入了解整体细胞-材料相互作用方面的益处,并为评估生物材料以改进其设计提出了替代研究途径。