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QCM与光学显微镜共同应用于研究细胞–细胞相互作用对细胞–基质黏附的影响 被引量:3
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作者 黄靓圆 周铁安 +2 位作者 谭成方 潘炜松 李文蔚 《中国细胞生物学学报》 CAS CSCD 2019年第9期1756-1762,共7页
细胞–基质黏附是一个动态而复杂的过程。在细胞培养与伤口愈合等细胞集体迁移过程中,细胞不同密度或细胞–细胞间不同相互作用势必影响细胞–基质间黏附,可有关这种影响的动态研究尚少。石英晶体微天平技术以细胞群为研究对象,能够实... 细胞–基质黏附是一个动态而复杂的过程。在细胞培养与伤口愈合等细胞集体迁移过程中,细胞不同密度或细胞–细胞间不同相互作用势必影响细胞–基质间黏附,可有关这种影响的动态研究尚少。石英晶体微天平技术以细胞群为研究对象,能够实时监测细胞与传感元件表面之间的黏附相互作用及细胞黏弹性变化。该文通过培养不同细胞数目以模拟细胞–细胞间不同相互作用,将QCM技术与光学显微镜技术共同应用于研究人脐静脉内皮细胞细胞–细胞相互作用对细胞–基质间黏附的影响。结果显示,细胞–细胞间相互作用对细胞黏附的影响不具有单调性,需分强度范围讨论。当细胞–细胞间相互作用处于较弱范围时,细胞–细胞间相互作用可促进细胞铺展和细胞黏着斑的形成,最终强化细胞黏附,而强劲的细胞–细胞间相互作用会约束细胞铺展,减小黏着斑面积,细胞黏附因此减弱。 展开更多
关键词 石英晶体微天平 光学显微镜 细胞–细胞相互作用 细胞–基质黏附 人脐静脉内皮细胞
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Biophysical Regulation of Cell Behavior-Cross Talk between Substrate Stiffness and Nanotopography 被引量:14
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作者 Yong Yang Kai Wang +1 位作者 Xiaosong Gu Kam W. Leong 《Engineering》 SCIE EI 2017年第1期36-54,共19页
The stiffness and nanotopographical characteristics of the extracellular matrix (ECM) influence numerous developmental, physiological, and pathological processes in vivo. These biophysical cues have therefore been a... The stiffness and nanotopographical characteristics of the extracellular matrix (ECM) influence numerous developmental, physiological, and pathological processes in vivo. 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. 展开更多
关键词 Extracellular matrix Stiffness Nanotopography Adhesive ligands Cell behavior
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