手性(物理)
再生医学
材料科学
仿生学
纳米技术
生物分子
超分子化学
超分子手性
设计要素和原则
化学
干细胞
计算机科学
分子
物理
细胞生物学
手征对称破缺
量子力学
生物
夸克
软件工程
有机化学
Nambu–Jona Lasinio模型
作者
David W. Green,Jong‐Min Lee,Eun‐Jung Kim,Dong‐Joon Lee,Han‐Sung Jung
标识
DOI:10.1002/admi.201500411
摘要
Chirality is integral to biological complexity. Chiral biomolecules are central to all fundamental recognition, conformational and replication functions in biological systems. Chirality also exists in living cells and higher order biological structures. Less is known about the cellular interactions with chirality, although most living cells are imprinted with chiral‐based signatures. The harnessing of molecular, supramolecular, and structural chirality has been largely overlooked in biomaterials chemistry and the engineering of biological structures for regenerative medicine. Since chirality is a fundamental element of biological architecture its implementation in materials biomimicry is a necessity for mechanical, structural, and biological reasons. Take the latter, new investigations show the direct influence of biomimetic chiral patterning and chiral‐based architecture on stem cell activities and behavior. Biomimetic integration of chirality signatures into medical biomaterials provides a new capability to maximize biological function and compatibility especially for morphogenesis and regeneration.
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