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整合、验证和扩展单分子表面增强拉曼光谱中的生物分子信息空间。

Integrating, Validating, and Expanding Information Space in Single-Molecule Surface-Enhanced Raman Spectroscopy for Biomolecules.

机构信息

Department of Chemistry, Seoul National University, Seoul 08826, South Korea.

出版信息

ACS Nano. 2024 Sep 17;18(37):25359-25371. doi: 10.1021/acsnano.4c09218. Epub 2024 Sep 4.

DOI:10.1021/acsnano.4c09218
PMID:39228259
Abstract

Single-molecule surface-enhanced Raman spectroscopy (SM-SERS) is an ultrahigh-resolution spectroscopic method for directly obtaining the complex vibrational mode information on individual molecules. SM-SERS offers a wide range of submolecular information on the hidden heterogeneity in its functional groups and varying structures, dynamics of conformational changes, binding and reaction kinetics, and interactions with the neighboring molecule and environment. Despite the richness in information on individual molecules and potential of SM-SERS in various detection targets, including large and complex biomolecules, several issues and practical considerations remain to be addressed, such as the requirement of long integration time, challenges in forming reliable and controllable interfaces between nanostructures and biomolecules, difficulty in determining hotspot size and shape, and most importantly, insufficient signal reproducibility and stability. Moreover, utilizing and interpreting SERS spectra is challenging, mainly because of the complexity and dynamic nature of molecular fingerprint Raman spectra, and this leads to fragmentary analysis and incomplete understanding of the spectra. In this Perspective, we discuss the current challenges and future opportunities of SM-SERS in views of system approaches by integrating molecules of interest, Raman dyes, plasmonic nanostructures, and artificial intelligence, particularly for detecting and analyzing biomolecules to realize the validation and expansion of information space in SM-SERS.

摘要

单分子表面增强拉曼光谱(SM-SERS)是一种超高分辨率的光谱方法,可直接获取单个分子的复杂振动模式信息。SM-SERS 提供了广泛的亚分子信息,包括其官能团和不同结构的隐藏异质性、构象变化的动力学、结合和反应动力学,以及与相邻分子和环境的相互作用。尽管 SM-SERS 在各种检测目标(包括大型和复杂的生物分子)中具有丰富的分子信息和潜力,但仍存在几个问题和实际考虑因素需要解决,例如长积分时间的要求、在纳米结构和生物分子之间形成可靠和可控界面的挑战、热点大小和形状的确定困难,以及最重要的是,信号重现性和稳定性不足。此外,利用和解释 SERS 光谱具有挑战性,主要是由于分子指纹拉曼光谱的复杂性和动态性质,这导致对光谱的分析不完整,理解不完整。在本观点中,我们从系统的角度讨论了 SM-SERS 的当前挑战和未来机遇,特别是在检测和分析生物分子方面,通过整合感兴趣的分子、拉曼染料、等离子体纳米结构和人工智能,实现 SM-SERS 信息空间的验证和扩展。

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