Guo Ke-Tai, Scharnweber Dieter, Schwenzer Bernd, Ziemer Gerhard, Wendel Hans P
Department of Thoracic, Cardiac and Vascular Surgery, University Hospital of Tuebingen, Calwerstr. 7/1, 72076 Tuebingen, Germany.
Biomaterials. 2007 Jan;28(3):468-74. doi: 10.1016/j.biomaterials.2006.09.021. Epub 2006 Oct 12.
To improve cell seeding efficiency and cytocompatibility, we designed a new coating material for scaffolds. We used aptamers, highly specific cell binding nucleic acids generated by combinatorial chemistry with an in vitro selection called systematic evolution of exponential enrichment (SELEX). In this study, we functionalized Ti-alloy surfaces to enhance cell adhesion. By coating the material with a cell specific aptamer, working as a capture molecule, we could improve the attachment of cells effectively and avoid the limitations of the currently available materials. Aptamers, immobilized by partial electrochemical entrapment in oxide layers on Ti-alloy surfaces were able to capture cells out of a flowing suspension rapidly. This model proves that surface immobilized aptamers can greatly enhance the attachment of seeded cells. This technology opens new perspectives towards clinical application of stem cell and tissue engineering strategies.
为提高细胞接种效率和细胞相容性,我们设计了一种用于支架的新型涂层材料。我们使用了适体,即通过组合化学与一种名为指数富集系统进化(SELEX)的体外筛选方法产生的高度特异性细胞结合核酸。在本研究中,我们对钛合金表面进行功能化处理以增强细胞黏附。通过用细胞特异性适体包被材料(作为捕获分子),我们能够有效改善细胞的附着,并避免现有材料的局限性。通过部分电化学截留固定在钛合金表面氧化层中的适体能够快速从流动悬浮液中捕获细胞。该模型证明表面固定的适体可大大增强接种细胞的附着。这项技术为干细胞和组织工程策略的临床应用开辟了新的前景。