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相关拉曼成像:发展与癌症应用。

Correlative Raman Imaging: Development and Cancer Applications.

机构信息

Institute for Experimental Endocrinology and Oncology 'G. Salvatore', IEOS-Second Unit, National Research Council, 80131 Naples, Italy.

出版信息

Biosensors (Basel). 2024 Jun 28;14(7):324. doi: 10.3390/bios14070324.

Abstract

Despite extensive research efforts, cancer continues to stand as one of the leading causes of death on a global scale. To gain profound insights into the intricate mechanisms underlying cancer onset and progression, it is imperative to possess methodologies that allow the study of cancer cells at the single-cell level, focusing on critical parameters such as cell morphology, metabolism, and molecular characteristics. These insights are essential for effectively discerning between healthy and cancerous cells and comprehending tumoral progression. Recent advancements in microscopy techniques have significantly advanced the study of cancer cells, with Raman microspectroscopy (RM) emerging as a particularly powerful tool. Indeed, RM can provide both biochemical and spatial details at the single-cell level without the need for labels or causing disruptions to cell integrity. Moreover, RM can be correlated with other microscopy techniques, creating a synergy that offers a spectrum of complementary insights into cancer cell morphology and biology. This review aims to explore the correlation between RM and other microscopy techniques such as confocal fluoresce microscopy (CFM), atomic force microscopy (AFM), digital holography microscopy (DHM), and mass spectrometry imaging (MSI). Each of these techniques has their own strengths, providing different perspectives and parameters about cancer cell features. The correlation between information from these various analysis methods is a valuable tool for physicians and researchers, aiding in the comprehension of cancer cell morphology and biology, unraveling mechanisms underlying cancer progression, and facilitating the development of early diagnosis and/or monitoring cancer progression.

摘要

尽管进行了广泛的研究努力,但癌症仍然是全球范围内主要的死亡原因之一。为了深入了解癌症发生和发展的复杂机制,必须拥有能够在单细胞水平上研究癌症细胞的方法,重点关注细胞形态、代谢和分子特征等关键参数。这些见解对于有效区分健康细胞和癌细胞以及理解肿瘤进展至关重要。近年来,显微镜技术的进步极大地推动了癌症细胞的研究,拉曼微光谱(RM)技术成为一种特别强大的工具。实际上,RM 可以在不使用标记物或破坏细胞完整性的情况下,提供单细胞水平的生化和空间细节。此外,RM 可以与其他显微镜技术相关联,形成协同作用,为癌症细胞形态和生物学提供一系列互补的见解。本综述旨在探讨 RM 与其他显微镜技术(如共聚焦荧光显微镜(CFM)、原子力显微镜(AFM)、数字全息显微镜(DHM)和质谱成像(MSI))之间的相关性。这些技术中的每一种都有其自身的优势,提供了有关癌细胞特征的不同视角和参数。这些各种分析方法的信息之间的相关性是医生和研究人员的宝贵工具,有助于理解癌细胞形态和生物学,揭示癌症进展的机制,并促进早期诊断和/或监测癌症进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1d88/11274409/2069d723c892/biosensors-14-00324-g005.jpg

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