State and Local Joint Engineering Laboratory for Novel Functional Polymeric Materials, College of Chemistry, Chemical Engineering and Materials Science, Soochow University , 199 Ren'ai Road, Suzhou 215123, P.R. China.
ACS Appl Mater Interfaces. 2017 Aug 9;9(31):25767-25774. doi: 10.1021/acsami.7b06483. Epub 2017 Jul 25.
Smart biointerfaces with capability to regulate cell-surface interactions in response to external stimuli are of great interest for both fundamental research and practical applications. Smart surfaces with "ON/OFF" switchability for a single function such as cell attachment/detachment are well-known and useful, but the ability to switch between two different functions may be seen as the next level of "smart". In this work reported, a smart supramolecular surface capable of switching functions reversibly between bactericidal activity and bacteria-releasing ability in response to UV-visible light is developed. This platform is composed of surface-containing azobenzene (Azo) groups and a biocidal β-cyclodextrin derivative conjugated with seven quaternary ammonium salt groups (CD-QAS). The surface-immobilized Azo groups in trans form can specially incorporate CD-QAS to achieve a strongly bactericidal surface that kill more than 90% attached bacteria. On irradiation with UV light, the Azo groups switch to cis form, resulting in the dissociation of the Azo/CD-QAS inclusion complex and release of dead bacteria from the surface. After the kill-and-release cycle, the surface can be easily regenerated for reuse by irradiation with visible light and reincorporation of fresh CD-QAS. The use of supramolecular chemistry represents a promising approach to the realization of smart, multifunctional surfaces, and has the potential to be applied to diverse materials and devices in the biomedical field.
具有响应外部刺激调节细胞表面相互作用能力的智能生物界面对于基础研究和实际应用都非常有意义。具有“开/关”单功能切换能力的智能表面,如细胞附着/脱离,是众所周知且有用的,但能够在两种不同功能之间切换的能力可能被视为下一个层次的“智能”。在本工作中,开发了一种智能超分子表面,能够在响应紫外可见光时可逆地在杀菌活性和细菌释放能力之间切换功能。该平台由表面含偶氮苯(Azo)基团和与七个季铵盐基团(CD-QAS)共轭的杀菌β-环糊精衍生物组成。在反式构象中固定在表面上的 Azo 基团可以特别地包含 CD-QAS,以实现具有强杀菌性的表面,能够杀死超过 90%附着的细菌。用紫外光照射时,Azo 基团转变为顺式构象,导致 Azo/CD-QAS 包合物的解离,并将死亡的细菌从表面释放出来。在杀伤和释放循环之后,通过可见光照射和重新掺入新鲜的 CD-QAS,可以轻松地将表面再生以供重复使用。超分子化学的使用代表了实现智能多功能表面的一种很有前途的方法,并且有可能应用于生物医学领域的各种材料和设备。