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《未来生物材料开发荧光工具集ABC指南》

The ABC Guide to Fluorescent Toolsets for the Development of Future Biomaterials.

作者信息

Arai Satoshi

机构信息

Waseda Bioscience Research Institute in Singapore, Singapore, Singapore.

Research Institute for Science and Engineering, Waseda University, Tokyo, Japan.

出版信息

Front Bioeng Biotechnol. 2019 Jan 23;7:5. doi: 10.3389/fbioe.2019.00005. eCollection 2019.

Abstract

In recent decades, diversified approaches using nanoparticles or nano-structured scaffolds have been applied to drug delivery and tissue engineering. Thanks to recent interdisciplinary studies, the materials developed have been intensively evaluated at animal level. Despite these efforts, less attention has been paid to what is really going on at the subcellular level during the interaction between a nanomaterial and a cell. As the proposed concept becomes more complex, the need for investigation of the dynamics of these materials at the cellular level becomes more prominent. For a deeper understanding of cellular events, fluorescent imaging techniques have been a powerful means whereby spatiotemporal information related to cellular events can be visualized as detectable fluorescent signals. To date, several excellent review papers have summarized the use of fluorescent imaging toolsets in cellular biology. However, applying these toolsets becomes a laborious process for those who are not familiar with imaging studies to engage with owing to the skills gap between them and cell biologists. This review aims to highlight the valuable essentials of fluorescent imaging as a tool for the development of effective biomaterials by introducing some cases including photothermal and photodynamic therapies. This distilled information will be a convenient short-cut for those who are keen to fabricate next generation biomaterials.

摘要

近几十年来,使用纳米颗粒或纳米结构支架的多种方法已应用于药物递送和组织工程。得益于最近的跨学科研究,所开发的材料已在动物水平上进行了深入评估。尽管做出了这些努力,但在纳米材料与细胞相互作用过程中,亚细胞水平上实际发生的情况却较少受到关注。随着所提出的概念变得更加复杂,在细胞水平上研究这些材料动力学的需求变得更加突出。为了更深入地理解细胞事件,荧光成像技术一直是一种强大的手段,通过它与细胞事件相关的时空信息可以被可视化为可检测的荧光信号。迄今为止,已有几篇优秀的综述论文总结了荧光成像工具集在细胞生物学中的应用。然而,对于那些不熟悉成像研究的人来说,由于他们与细胞生物学家之间存在技能差距,应用这些工具集成为一个费力的过程。本综述旨在通过介绍一些包括光热疗法和光动力疗法在内的案例,突出荧光成像作为开发有效生物材料工具的宝贵要点。这些提炼出来的信息将为那些热衷于制造下一代生物材料的人提供一条便捷的捷径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e05/6351439/bae88858b1c0/fbioe-07-00005-g0001.jpg

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