Kamin Hannes, Nolte Lena, Bleilevens Andreas, Stickeler Elmar, Heinemann Dag, Maurer Jochen, Johannsmeier Sonja, Ripken Tammo
Industrial and Biomedical Optics Department, Laser Zentrum Hannover e.V., Hollerithallee 8, 30419 Hannover, Germany.
Clinic for Gynecology and Obstetrics, University Hospital Aachen, Pauwelstr. 30, 52074 Aachen, Germany.
Biomed Opt Express. 2023 Aug 10;14(9):4579-4593. doi: 10.1364/BOE.494181. eCollection 2023 Sep 1.
Triple-negative breast cancer is an aggressive subtype of breast cancer that has a poor five-year survival rate. The tumor's extracellular matrix is a major compartment of its microenvironment and influences the proliferation, migration and the formation of metastases. The study of such dependencies requires methods to analyze the tumor matrix in its native form. In this work, the limits of SHG-microscopy, namely limited penetration depth, sample size and specificity, are addressed by correlative three-dimensional imaging. We present the combination of scanning laser optical tomography (SLOT) and multiphoton microscopy, to depict the matrix collagen on different scales. Both methods can be used complementarily to generate full-volume views and allow for in-depth analysis. Additionally, we explore the use of SHG as a contrast mechanism for complex samples in SLOT. It was possible to depict the overall collagen structure and specific fibers using marker free imaging on different scales. An appropriate sample preparation enables the fixation of the structures while simultaneously conserving the fluorescence of antibody staining. We find that SHG is a suitable contrast mechanism to depict matrix collagen even in complex samples and using SLOT. The insights presented here shall further facilitate the study of the tumor extracellular matrix by correlative 3d imaging.
三阴性乳腺癌是一种侵袭性乳腺癌亚型,其五年生存率较低。肿瘤的细胞外基质是其微环境的主要组成部分,影响肿瘤的增殖、迁移和转移形成。对这种依赖性的研究需要能够分析天然形式肿瘤基质的方法。在这项工作中,通过相关三维成像解决了二次谐波显微镜(SHG显微镜)的局限性,即穿透深度有限、样本大小受限和特异性问题。我们展示了扫描激光光学断层扫描(SLOT)和多光子显微镜的结合,以在不同尺度上描绘基质胶原蛋白。这两种方法可以互补使用,以生成全量视图并进行深入分析。此外,我们探索了将SHG用作SLOT中复杂样品的对比机制。通过不同尺度上的无标记成像,可以描绘整体胶原蛋白结构和特定纤维。适当的样品制备能够固定结构,同时保留抗体染色的荧光。我们发现,即使在复杂样品中使用SLOT,SHG也是描绘基质胶原蛋白的合适对比机制。本文所提供的见解将进一步促进通过相关三维成像对肿瘤细胞外基质的研究。