Department of Cranio-Maxillofacial Surgery, Oral Biotechnology & Bioengineering, University Hospital Zurich and Dental School, University of Zurich, Switzerland.
Langmuir. 2010 Jul 6;26(13):11127-34. doi: 10.1021/la1008895.
Stable tethering of bioactive peptides like RGD to surfaces can be achieved via chemical bonding, biotin streptavidin interaction, or photocross-linking. More challenging is the immobilization of proteins, since methods applied to immobilize peptides are either not specific or versatile enough or might even compromise the protein's bioactivity. To overcome this limitation, we have employed a scheme that by enzymatic (transglutaminase) reaction allows the site-directed and site-specific coupling of growth factors and other molecules to nonfouling poly(L-lysine)-graft-poly(ethylene glycol) (PLL-g-PEG) coated surfaces under physiological conditions. By our modular and flexible design principle, we are able to functionalize these surfaces directly with peptides and growth factors or precisely position poly(ethylene glycol) (PEG)-like hydrogels for the presentation of growth factors as exemplified with vascular endothelial growth factor (VEGF).
稳定地将生物活性肽(如 RGD)键合到表面上,可以通过化学结合、生物素-链霉亲和素相互作用或光交联来实现。更具挑战性的是蛋白质的固定化,因为应用于固定化肽的方法要么不够特异或多功能,要么甚至可能损害蛋白质的生物活性。为了克服这一限制,我们采用了一种方案,通过酶(转谷氨酰胺酶)反应,允许在生理条件下将生长因子和其他分子定点、特异性地偶联到非固着聚(L-赖氨酸)-接枝-聚(乙二醇)(PLL-g-PEG)涂层表面。通过我们的模块化和灵活的设计原则,我们能够直接将肽和生长因子功能化到这些表面上,或者精确地定位聚(乙二醇)(PEG)样水凝胶以呈现生长因子,例如以血管内皮生长因子(VEGF)为例。