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单个细胞上生物分子表面涂层的方法与应用

Methods and Applications of Biomolecular Surface Coatings on Individual Cells.

作者信息

Choi Yonghyun, Phan Binh, Tanaka Masayoshi, Hong Jinkee, Choi Jonghoon

机构信息

School of Integrative Engineering, Chung-Ang University, Seoul 06974, Republic of Korea.

Department of Chemical Science and Engineering, Tokyo Institute of Technology, Tokyo 152-8552, Japan.

出版信息

ACS Appl Bio Mater. 2020 Oct 19;3(10):6556-6570. doi: 10.1021/acsabm.0c00867. Epub 2020 Sep 18.

Abstract

The complete recovery of tissues or cells damaged by an accident or illness is a major issue in medicine. With increasing medical costs and incidences of incurable diseases, this aspect is emerging as an important human health problem worldwide. However, reproducing actual cells and tissues is not easy because of the involvement of several variables. External environmental changes such as different pH levels, the presence of oxidants, and ultraviolet exposure can impair cell function or trigger cell death owing to the limitations of the cells. In addition, transplanted therapeutic cells die easily owing to inflammatory and immune responses. Efforts to overcome this problem through multilayer cell coating can provide avenues for diagnosis and basic cell biology studies owing to the following features of multilayer films: (i) high capacity available for attaching different biomolecules; (ii) natural replication of signal molecule diffusion across cells; and (iii) the possibility of cell patterning. Furthermore, light-triggered release from multilayer films achieves the delivery of biomolecules with a high spatiotemporal resolution. In this study, we reviewed the methods and recent innovations in multilayer cell coatings that demonstrate a strong potential for applications in biomolecule loading, cell patterning, and biosensors.

摘要

事故或疾病所损伤的组织或细胞的完全恢复是医学中的一个重大问题。随着医疗成本的增加和不治之症发病率的上升,这一问题正成为全球重要的人类健康问题。然而,由于涉及多个变量,复制实际的细胞和组织并非易事。外部环境变化,如不同的pH值、氧化剂的存在以及紫外线照射,由于细胞的局限性,会损害细胞功能或引发细胞死亡。此外,移植的治疗性细胞由于炎症和免疫反应很容易死亡。通过多层细胞包被来克服这一问题的努力,由于多层膜具有以下特点,可为诊断和基础细胞生物学研究提供途径:(i) 具有附着不同生物分子的高容量;(ii) 信号分子跨细胞扩散的自然复制;(iii) 细胞图案化的可能性。此外,多层膜的光触发释放实现了生物分子的高时空分辨率递送。在本研究中,我们回顾了多层细胞包被的方法和最新创新,这些方法在生物分子负载、细胞图案化和生物传感器应用方面显示出强大的潜力。

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