Cole Martin A, Voelcker Nicolas H, Thissen Helmut, Griesser Hans J
University of South Australia, Ian Wark Research Institute, Adelaide SA, Australia.
Biomaterials. 2009 Mar;30(9):1827-50. doi: 10.1016/j.biomaterials.2008.12.026. Epub 2009 Jan 13.
Real-time control over and reversibility of biomolecule-surface interactions at interfaces is an increasingly important goal for a range of scientific fields and applications. The field of stimuli-responsive, smart or switchable systems has generated much research interest due to its potential to attain unprecedented levels of control over biomolecule adsorption processes and interactions at engineered interfaces, including the control over reversibility of adsorption. Advances in this field are particularly relevant to applications in the areas of biosensing, chromatography, drug delivery and regenerative medicine. The control over biomolecule adsorption and desorption processes at interfaces is often used to control subsequent events such as cell-surface interactions. Considerable research interest has been directed at systems that can be reversibly switched between interacting and non-interacting states and used thus for switching, on and off, bio-interfacial interactions such as protein adsorption. Such switchable coatings often incorporate features such as temporal resolution, spatial resolution and reversibility. Here we review recent literature on switchable coatings that employ stimuli such as light, temperature, electric potential, pH and ionic strength to control protein adsorption/desorption and cell attachment/detachment en route to the development of next-generation smart bio-interfaces.
对界面处生物分子与表面相互作用进行实时控制并实现其可逆性,对于一系列科学领域和应用而言,正日益成为一个重要目标。刺激响应型、智能或可切换系统领域因其有潜力在工程界面上对生物分子吸附过程及相互作用实现前所未有的控制水平,包括对吸附可逆性的控制,而引发了诸多研究兴趣。该领域的进展与生物传感、色谱分析、药物递送和再生医学等领域的应用尤其相关。对界面处生物分子吸附和解吸过程的控制常被用于控制诸如细胞与表面相互作用等后续事件。大量研究兴趣集中在能够在相互作用和非相互作用状态之间可逆切换、进而用于开启和关闭诸如蛋白质吸附等生物界面相互作用的系统。此类可切换涂层通常具备时间分辨率、空间分辨率和可逆性等特性。在此,我们综述了近期有关可切换涂层的文献,这些涂层利用光、温度、电势、pH值和离子强度等刺激因素来控制蛋白质吸附/解吸以及细胞附着/脱离,以推动下一代智能生物界面的发展。