Ekerdt Barbara L, Segalman Rachel A, Schaffer David V
Department of Chemical and Biomolecular Engineering, University of California, Berkeley, CA, USA.
Biotechnol J. 2013 Dec;8(12):1411-23. doi: 10.1002/biot.201300302. Epub 2013 Nov 6.
Interaction between biomaterials and cells is a critical aspect for successful application of tissue engineering research. Technological advances within the past decade have enabled a number of studies to investigate how the spatial organization of cell-adhesive ligands impacts complex and rich cell behaviors ranging from adhesion to differentiation. Cells in their native environment are surrounded by chemical and physical factors spanning a range of length scales from nanometers to hundreds of microns. Furthermore, signals in the form of cell-adhesive ligands presented from this environment in different size scales and/or geometrical arrangements can change how a cell senses and responds to its surroundings. Biology can thus convey information not only in the concentration of a ligand but through its ability to change the spatial organization of these cues, raising questions both on the mechanisms by which it patterns such information and on the means by which a cell interprets it. This review discusses major findings associated with various systems developed to study cell-adhesive ligand presentation as well as an overview of the important material systems used in these studies. Promising material systems to further investigations in this field are also examined. Future directions will likely include determining how cells sense local and global ligand concentrations, understanding underlying mechanisms that regulate cell behaviors, and investigating the function of more complex cell types and diverse ligands.
生物材料与细胞之间的相互作用是组织工程研究成功应用的关键因素。过去十年的技术进步使得许多研究能够探究细胞黏附配体的空间组织如何影响从黏附到分化等复杂多样的细胞行为。处于天然环境中的细胞被化学和物理因素所包围,这些因素涵盖了从纳米到数百微米的一系列长度尺度。此外,来自该环境的不同尺寸尺度和/或几何排列形式的细胞黏附配体信号能够改变细胞感知和响应周围环境的方式。因此,生物学不仅可以通过配体的浓度传递信息,还能通过改变这些信号线索的空间组织来传递信息,这就引发了关于其如何对这些信息进行模式化的机制以及细胞如何解读这些信息的问题。本综述讨论了与用于研究细胞黏附配体呈现的各种系统相关的主要发现,以及这些研究中使用的重要材料系统的概述。还研究了在该领域值得进一步研究的有前景的材料系统。未来的方向可能包括确定细胞如何感知局部和全局配体浓度、理解调节细胞行为的潜在机制,以及研究更复杂细胞类型和多样配体的功能。