INEB - Instituto de Engenharia Biomédica, Rua do Campo Alegre, No. 823, 4150-180 Porto, Portugal; FEUP - Faculdade de Engenharia da Universidade do Porto, Departamento de Engenharia Metalúrgica e de Materiais, Rua Dr. Roberto Frias, 4200-465 Porto, Portugal.
Acta Biomater. 2013 Nov;9(11):8773-89. doi: 10.1016/j.actbio.2013.08.004. Epub 2013 Aug 9.
Human mesenchymal stem cells (MSCs) are currently recognized as a powerful cell source for regenerative medicine, notably for their capacity to differentiate into multiple cell types. The combination of MSCs with biomaterials functionalized with instructive cues can be used as a strategy to direct specific lineage commitment, and can thus improve the therapeutic efficacy of these cells. In terms of biomaterial design, one common approach is the functionalization of materials with ligands capable of directly binding to cell receptors and trigger specific differentiation signaling pathways. Other strategies focus on the use of moieties that have an indirect effect, acting, for example, as sequesters of bioactive ligands present in the extracellular milieu that, in turn, will interact with cells. Compared with complex biomolecules, the use of simple compounds, such as chemical moieties and peptides, and other small molecules can be advantageous by leading to less expensive and easily tunable biomaterial formulations. This review describes different strategies that have been used to promote substrate-mediated guidance of osteogenic differentiation of immature osteoblasts, osteoprogenitors and MSCs, through chemically conjugated small moieties, both in two- and three-dimensional set-ups. In each case, the selected moiety, the coupling strategy and the main findings of the study were highlighted. The latest advances and future perspectives in the field are also discussed.
人骨髓间充质干细胞(MSCs)目前被认为是再生医学中一种强大的细胞来源,特别是因为它们能够分化为多种细胞类型。将 MSCs 与具有指导信号的生物材料结合使用,可以作为一种策略来指导特定的谱系定向分化,从而提高这些细胞的治疗效果。在生物材料设计方面,一种常见的方法是用能够直接与细胞受体结合并触发特定分化信号通路的配体对材料进行功能化。其他策略则侧重于使用具有间接作用的部分,例如作为细胞外环境中生物活性配体的隔离物,这些配体反过来又会与细胞相互作用。与复杂的生物分子相比,使用简单的化合物,如化学部分和肽,以及其他小分子,可以通过导致更便宜和更容易调节的生物材料配方来获得优势。本综述描述了不同的策略,这些策略已被用于通过化学偶联的小分子促进未成熟成骨细胞、成骨祖细胞和间充质干细胞在二维和三维环境中的成骨分化的基质介导导向。在每种情况下,都突出了所选部分、偶联策略和研究的主要发现。还讨论了该领域的最新进展和未来展望。