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三维癌细胞侵入排列的胶原蛋白的动力学

Dynamics of 3D carcinoma cell invasion into aligned collagen.

作者信息

Ray Arja, Morford Rachel K, Ghaderi Nima, Odde David J, Provenzano Paolo P

机构信息

Department of Biomedical Engineering, University of Minnesota, 7-120 NHH, 312 Church St SE, Minneapolis, MN 55455, USA.

出版信息

Integr Biol (Camb). 2018 Feb 19;10(2):100-112. doi: 10.1039/c7ib00152e.

Abstract

Carcinoma cells frequently expand and invade from a confined lesion, or multicellular clusters, into and through the stroma on the path to metastasis, often with an efficiency dictated by the architecture and composition of the microenvironment. Specifically, in desmoplastic carcinomas such as those of the breast, aligned collagen tracks provide contact guidance cues for directed cancer cell invasion. Yet, the evolving dynamics of this process of invasion remains poorly understood, in part due to difficulties in continuously capturing both spatial and temporal heterogeneity and progression to invasion in experimental systems. Therefore, to study the local invasion process from cell dense clusters into aligned collagen architectures found in solid tumors, we developed a novel engineered 3D invasion platform that integrates an aligned collagen matrix with a cell dense tumor-like plug. Using multiphoton microscopy and quantitative analysis of cell motility, we track the invasion of cancer cells from cell-dense bulk clusters into the pre-aligned 3D matrix, and define the temporal evolution of the advancing invasion fronts over several days. This enables us to identify and probe cell dynamics in key regions of interest: behind, at, and beyond the edge of the invading lesion at distinct time points. Analysis of single cell migration identifies significant spatial heterogeneity in migration behavior between cells in the highly cell-dense region behind the leading edge of the invasion front and cells at and beyond the leading edge. Moreover, temporal variations in motility and directionality are also observed between cells within the cell-dense tumor-like plug and the leading invasive edge as its boundary extends into the anisotropic collagen over time. Furthermore, experimental results combined with mathematical modeling demonstrate that in addition to contact guidance, physical crowding of cells is a key regulating factor orchestrating variability in single cell migration during invasion into anisotropic ECM. Thus, our novel platform enables us to capture spatio-temporal dynamics of cell behavior behind, at, and beyond the invasive front and reveals heterogeneous, local interactions that lead to the emergence and maintenance of the advancing front.

摘要

癌细胞常常从局限性病变或多细胞簇中扩张并侵入,在转移过程中进入并穿过基质,其效率通常由微环境的结构和组成决定。具体而言,在诸如乳腺的促结缔组织增生性癌中,排列的胶原纤维束为癌细胞的定向侵袭提供接触导向线索。然而,这一侵袭过程不断演变的动态变化仍知之甚少,部分原因是在实验系统中持续捕捉空间和时间异质性以及向侵袭进展存在困难。因此,为了研究从细胞密集簇向实体瘤中发现的排列胶原结构的局部侵袭过程,我们开发了一种新型的工程化3D侵袭平台,该平台将排列的胶原基质与细胞密集的肿瘤样栓块整合在一起。利用多光子显微镜和细胞运动性的定量分析,我们追踪癌细胞从细胞密集的块状簇向预先排列的3D基质的侵袭,并确定侵袭前沿在数天内的时间演变。这使我们能够识别和探究感兴趣的关键区域中的细胞动态:在不同时间点,侵袭病变边缘之后、边缘处以及边缘之外。对单细胞迁移的分析表明,侵袭前沿前缘后方高度细胞密集区域中的细胞与前缘处及前缘之外的细胞之间的迁移行为存在显著的空间异质性。此外,随着细胞密集的肿瘤样栓块与侵袭前沿的边界随着时间延伸到各向异性的胶原中,在细胞密集的肿瘤样栓块内的细胞与侵袭前沿之间也观察到运动性和方向性的时间变化。此外,实验结果与数学建模相结合表明,除了接触导向外,细胞的物理拥挤是在侵入各向异性细胞外基质过程中协调单细胞迁移变异性的关键调节因素。因此,我们的新型平台使我们能够捕捉侵袭前沿之后、边缘处以及边缘之外的细胞行为的时空动态,并揭示导致前进前沿出现和维持的异质性局部相互作用。

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