Yang Yong, Wang Kai, Gu Xiaosong, Leong Kam W
Department of Chemical and Biomedical Engineering, West Virginia University, Morgantown, WV 26506, USA.
Key Laboratory of Neuroregeneration of Jiangsu and the Ministry of Education, Co-Innovation Center of Neuroregeneration, Nantong University, Nantong, Jiangsu 226001, China.
Engineering (Beijing). 2017 Feb;3(1):36-54. doi: 10.1016/J.ENG.2017.01.014. Epub 2017 Feb 21.
The stiffness and nanotopographical characteristics of the extracellular matrix (ECM) influence numerous developmental, physiological, and pathological processes . These biophysical cues have therefore been applied to modulate almost all aspects of cell behavior, from cell adhesion and spreading to proliferation and differentiation. Delineation of the biophysical modulation of cell behavior is critical to the rational design of new biomaterials, implants, and medical devices. The effects of stiffness and topographical cues on cell behavior have previously been reviewed, respectively; however, the interwoven effects of stiffness and nanotopographical cues on cell behavior have not been well described, despite similarities in phenotypic manifestations. Herein, we first review the effects of substrate stiffness and nanotopography on cell behavior, and then focus on intracellular transmission of the biophysical signals from integrins to nucleus. Attempts are made to connect extracellular regulation of cell behavior with the biophysical cues. We then discuss the challenges in dissecting the biophysical regulation of cell behavior and in translating the mechanistic understanding of these cues to tissue engineering and regenerative medicine.
细胞外基质(ECM)的硬度和纳米拓扑特征影响着众多发育、生理和病理过程。因此,这些生物物理信号已被应用于调节细胞行为的几乎所有方面,从细胞黏附、铺展到增殖和分化。明确细胞行为的生物物理调节对于合理设计新型生物材料、植入物和医疗设备至关重要。先前已分别综述了硬度和拓扑信号对细胞行为的影响;然而,尽管在表型表现上存在相似性,但硬度和纳米拓扑信号对细胞行为的交织影响尚未得到充分描述。在此,我们首先综述底物硬度和纳米拓扑对细胞行为的影响,然后聚焦于生物物理信号从整合素到细胞核的细胞内传递。我们试图将细胞行为的细胞外调节与生物物理信号联系起来。接着,我们讨论在剖析细胞行为的生物物理调节以及将对这些信号的机制理解转化到组织工程和再生医学方面所面临的挑战。