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垂直纳米结构阵列的细胞纳米界面及其应用。

Cellular nanointerface of vertical nanostructure arrays and its applications.

作者信息

Zhang Aihua, Fang Jiaru, Li Xiangling, Wang Ji, Chen Meiwan, Chen Hui-Jiuan, He Gen, Xie Xi

机构信息

State Key Laboratory of Optoelectronic Materials and Technologies, Key Laboratory of Display Material and Technology, School of Electronics and Information Technology, Sun Yat-Sen University Guangzhou 510006 Guangdong Province China

School of Biomedical Engineering, Sun Yat-Sen University Guangzhou 510006 China.

出版信息

Nanoscale Adv. 2022 Feb 21;4(8):1844-1867. doi: 10.1039/d1na00775k. eCollection 2022 Apr 12.

Abstract

Vertically standing nanostructures with various morphologies have been developed with the emergence of the micro-/nanofabrication technology. When cells are cultured on them, various bio-nano interfaces between cells and vertical nanostructures would impact the cellular activities, depending on the shape, density, and height of nanostructures. Many cellular pathway activation processes involving a series of intracellular molecules (proteins, RNA, DNA, enzymes, ) would be triggered by the cell morphological changes induced by nanostructures, affecting the cell proliferation, apoptosis, differentiation, immune activation, cell adhesion, cell migration, and other behaviors. In addition, the highly localized cellular nanointerface enhances coupled stimulation on cells. Therefore, understanding the mechanism of the cellular nanointerface can not only provide innovative tools for regulating specific cell functions but also offers new aspects to understand the fundamental cellular activities that could facilitate the precise monitoring and treatment of diseases in the future. This review mainly describes the fabrication technology of vertical nanostructures, analyzing the formation of cellular nanointerfaces and the effects of cellular nanointerfaces on cells' fates and functions. At last, the applications of cellular nanointerfaces based on various nanostructures are summarized.

摘要

随着微纳制造技术的出现,已开发出具有各种形态的垂直站立纳米结构。当细胞在其上培养时,细胞与垂直纳米结构之间的各种生物纳米界面会影响细胞活动,这取决于纳米结构的形状、密度和高度。由纳米结构引起的细胞形态变化会触发许多涉及一系列细胞内分子(蛋白质、RNA、DNA、酶等)的细胞信号通路激活过程,影响细胞增殖、凋亡、分化、免疫激活、细胞粘附、细胞迁移及其他行为。此外,高度局部化的细胞纳米界面增强了对细胞的耦合刺激。因此,了解细胞纳米界面的机制不仅可以为调节特定细胞功能提供创新工具,还为理解基本细胞活动提供了新的视角,这可能有助于未来对疾病的精确监测和治疗。本综述主要描述垂直纳米结构的制造技术,分析细胞纳米界面的形成以及细胞纳米界面对细胞命运和功能的影响。最后,总结了基于各种纳米结构的细胞纳米界面的应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8742/9419580/6f3aaf0fed3e/d1na00775k-f1.jpg

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