Center for Regenerative Therapeutic, Department of Medicine, Brigham and Women's Hospital, Cambridge, Massachusetts, USA.
FASEB J. 2011 Sep;25(9):3045-56. doi: 10.1096/fj.10-178384. Epub 2011 Jun 7.
Nature has evolved effective cell adhesion mechanisms to deliver inflammatory cells to inflamed tissue; however, many culture-expanded therapeutic cells are incapable of targeting diseased tissues following systemic infusion, which represents a great challenge in cell therapy. Our aim was to develop simple approaches to program cell-cell interactions that would otherwise not exist toward cell targeting and understanding the complex biology of cell-cell interactions. We employed a chemistry approach to engineer P- or L-selectin binding nucleic acid aptamers onto mesenchymal stem cells (MSCs) to enable them to engage inflamed endothelial cells and leukocytes, respectively. We show for the first time that engineered cells with a single artificial adhesion ligand can recapitulate 3 critical cell interactions in the inflammatory cell adhesion cascade under dynamic flow conditions. Aptamer-engineered MSCs adhered on respective selectin surfaces under static conditions >10 times more efficiently than controls including scrambled-DNA modified MSCs. Significantly, engineered MSCs can be directly captured from the flow stream by selectin surfaces or selectin-expressing cells under flow conditions (≤2dyn/cm²). The simple chemistry approach and the versatility of aptamers permit the concept of engineered cell-cell interactions to be generically applicable for targeting cells to diseased tissues and elucidating the biology of cell-cell interactions.
大自然已经进化出有效的细胞黏附机制,将炎症细胞输送到炎症组织;然而,许多经过体外扩增的治疗细胞在全身输注后无法靶向病变组织,这在细胞治疗中是一个巨大的挑战。我们的目的是开发简单的方法来设计细胞-细胞相互作用,否则这些相互作用将不存在于细胞靶向和理解细胞-细胞相互作用的复杂生物学中。我们采用化学方法将 P 选择素或 L 选择素结合核酸适体工程化到间充质干细胞(MSCs)上,分别使它们能够与炎症内皮细胞和白细胞结合。我们首次表明,在动态流动条件下,具有单个人工黏附配体的工程化细胞可以再现炎症细胞黏附级联反应中的 3 个关键细胞相互作用。在静态条件下,与包括随机 DNA 修饰的 MSC 在内的对照相比,工程化 MSC 与相应的选择素表面的黏附效率高 10 多倍。重要的是,在流动条件下(≤2dyn/cm²),工程化 MSC 可以直接通过选择素表面或表达选择素的细胞从流动相中捕获。简单的化学方法和适体的多功能性允许工程化细胞-细胞相互作用的概念可普遍适用于将细胞靶向病变组织和阐明细胞-细胞相互作用的生物学。