State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Wuhan University of Technology, Wuhan 430070, PR China.
Chem Soc Rev. 2012 Mar 7;41(5):1972-84. doi: 10.1039/c1cs15209b. Epub 2011 Dec 2.
Chiral phenomena are ubiquitous in nature from macroscopic to microscopic, including the high chirality preference of small biomolecules, special steric conformations of biomacromolecules induced by it, as well as chirality-triggered biological and physiological processes. The introduction of chirality into the study of interface interactions between materials and biological systems leads to the generation of chiral biointerface materials, which provides a new platform for understanding the chiral phenomena in biological system, as well as the development of novel biomaterials and devices. This critical review gives a brief introduction to the recent advances in this field. We start from the fabrication of chiral biointerface materials, and further investigate the stereo-selective interaction between biological systems and chiral interface materials to find out key factors governing the performance of such materials in given conditions, then introduce some special functionalities and potential applications of chiral biointerface materials, and finally present our own thinking about the future development of this area (108 references).
手性现象无处不在,从宏观到微观都有体现,包括小分子生物物质的高手性偏好、大分子生物物质受其诱导的特殊空间构象,以及手性触发的生物和生理过程。将手性引入到材料与生物系统之间的界面相互作用的研究中,产生了手性生物界面材料,为理解生物系统中的手性现象以及开发新型生物材料和器件提供了新的平台。本文简要介绍了该领域的最新进展。我们从手性生物界面材料的制备开始,进一步研究了生物系统与手性界面材料之间的立体选择性相互作用,以找出控制这些材料在给定条件下性能的关键因素,然后介绍了手性生物界面材料的一些特殊功能和潜在应用,并最后提出了我们对该领域未来发展的一些思考(108 篇参考文献)。