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用于生命科学中纳米级化学表征的原子力显微镜红外光谱:最新进展与未来方向。

AFM-IR for Nanoscale Chemical Characterization in Life Sciences: Recent Developments and Future Directions.

作者信息

V D Dos Santos A Catarina, Hondl Nikolaus, Ramos-Garcia Victoria, Kuligowski Julia, Lendl Bernhard, Ramer Georg

机构信息

Institute of Chemical Technologies and Analytics, TU Wien, Getreidemarkt 9, 1060 Vienna, Austria.

Health Research Institute La Fe, Avenida Fernando Abril Martorell 106, 46026 Valencia, Spain.

出版信息

ACS Meas Sci Au. 2023 Jun 16;3(5):301-314. doi: 10.1021/acsmeasuresciau.3c00010. eCollection 2023 Oct 18.

Abstract

Despite the ubiquitous absorption of mid-infrared (IR) radiation by virtually all molecules that belong to the major biomolecules groups (proteins, lipids, carbohydrates, nucleic acids), the application of conventional IR microscopy to the life sciences remained somewhat limited, due to the restrictions on spatial resolution imposed by the diffraction limit (in the order of several micrometers). This issue is addressed by AFM-IR, a scanning probe-based technique that allows for chemical analysis at the nanoscale with resolutions down to 10 nm and thus has the potential to contribute to the investigation of nano and microscale biological processes. In this perspective, in addition to a concise description of the working principles and operating modes of AFM-IR, we present and evaluate the latest key applications of AFM-IR to the life sciences, summarizing what the technique has to offer to this field. Furthermore, we discuss the most relevant current limitations and point out potential future developments and areas for further application for fruitful interdisciplinary collaboration.

摘要

尽管几乎所有属于主要生物分子类别(蛋白质、脂质、碳水化合物、核酸)的分子都会普遍吸收中红外(IR)辐射,但由于衍射极限(几微米量级)对空间分辨率的限制,传统红外显微镜在生命科学中的应用仍然受到一定限制。原子力显微镜红外光谱(AFM-IR)解决了这个问题,它是一种基于扫描探针的技术,能够在纳米尺度进行化学分析,分辨率可达10纳米,因此有潜力为纳米和微米尺度生物过程的研究做出贡献。从这个角度来看,除了简要描述AFM-IR的工作原理和操作模式外,我们还展示并评估了AFM-IR在生命科学中的最新关键应用,总结了该技术为这一领域带来的贡献。此外,我们讨论了当前最相关的局限性,并指出了潜在的未来发展方向以及进一步应用的领域,以促进富有成效的跨学科合作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/05d8/10588935/fe906d3f7e8d/tg3c00010_0001.jpg

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