Ovarian cancer cells exhibit diverse migration strategies on stiff collagenous substrata.

IF 3.2 3区 生物学 Q2 BIOPHYSICS Biophysical journal Pub Date : 2024-11-19 Epub Date: 2024-10-24 DOI:10.1016/j.bpj.2024.10.014
Madhumitha Suresh, Ramray Bhat
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Abstract

In homoeostasis, the shape and sessility of untransformed epithelial cells are intricately linked together. Variations of this relationship in migrating cancer cells as they encounter different microenvironments are as yet ill understood. Here, we explore the interdependency of such traits in two morphologically distinct invasive ovarian cancer cell lines (OVCAR-3 and SK-OV-3) under mechanically variant contexts. We first established a metric toolkit that assessed traits associated with cell motion and shape, and rigorously measured their dynamical variation across trajectories of migration using a Shannon entropic distribution. Two stiffness conditions on polymerized collagen I with Young's moduli of 0.5 kPa (soft) and 20 kPa (stiff) were chosen. Both the epithelioid OVCAR-3 and mesenchymal SK-OV-3 cells on soft substrata exhibited slow and undirected migration. On stiff substrata, SK-OV-3 showed faster persistent directed motion. Surprisingly, OVCAR-3 cells on stiffer substrata moved even faster than SK-OV-3 cells but showed a distinct angular motion. The polarity of SK-OV-3 cells on stiff substrata was well correlated with their movement, whereas, for OVCAR-3, we observed an unusual "slip" behavior, wherein the axes of cell shape and movement were poorly correlated. Whereas SK-OV-3 and OVCAR-3 showed greater mean deformation on stiffer substrata, the latter was anticorrelated with variation in angular motion or the mean deviation between shape and motility axis for SK-OV-3 but poorly correlated for OVCAR-3. Moreover, on softer substrata OVCAR-3 and SK-OV-3 were relatively rigid but showed greater shape variation (with OVCAR-3 showing a higher fold change) on stiffer substrata. Our findings suggest that greater deformability on stiffer milieu allow epithelioid cells to overcome constraints on the congruence in axis of shape and motion seen for mesenchymal cells and display distinct motile behaviors across this phenotypic spectrum.

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卵巢癌细胞在坚硬的胶原基质上表现出多种迁移策略。
在恒定状态下,未转化的上皮细胞的形状和纤度错综复杂地联系在一起。迄今为止,人们对迁移癌细胞在遇到不同微环境时这种关系的变化还不甚了解。在这里,我们探讨了两种形态截然不同的侵袭性卵巢癌细胞系(OVCAR-3 和 SK-OV-3)在机械变异环境下此类特征的相互依存关系。我们首先建立了一个度量工具包,用于评估与细胞运动和形状相关的特征,并使用香农熵分布严格测量了它们在不同迁移轨迹中的动态变化。在聚合胶原 I 上选择了两种硬度条件,杨氏模量分别为 0.5 kPa(软)和 20 kPa(硬)。在软基质上,上皮细胞 OVCAR-3 和间质细胞 SK-OV-3 都表现出缓慢的无定向迁移。在硬质基底上,SK-OV-3 表现出更快的持续定向运动。令人惊讶的是,在较硬基质上的 OVCAR-3 细胞比 SK-OV-3 细胞移动得更快,但却表现出明显的角度运动。在坚硬的基质上,SK-OV-3 细胞的极性与其运动密切相关,而在 OVCAR-3 上,我们观察到了一种不寻常的 "滑动 "行为,即细胞形状轴与运动轴的相关性很差。虽然 SK-OV-3 和 OVCAR-3 在较硬的基质上表现出更大的平均变形,但后者与 SK-OV-3 的角运动变化或形状与运动轴之间的平均偏差不相关,而与 OVCAR-3 的相关性很差。此外,在较软的基质上,OVCAR-3 和 SK-OV-3 相对较硬,但在较硬的基质上,它们的形状变化更大(OVCAR-3 的折叠变化更大)。我们的研究结果表明,上皮样细胞在较硬的环境中具有更大的变形能力,从而克服了间充质细胞形状和运动轴一致的限制,并在这一表型谱系中表现出不同的运动行为。
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来源期刊
Biophysical journal
Biophysical journal 生物-生物物理
CiteScore
6.10
自引率
5.90%
发文量
3090
审稿时长
2 months
期刊介绍: BJ publishes original articles, letters, and perspectives on important problems in modern biophysics. The papers should be written so as to be of interest to a broad community of biophysicists. BJ welcomes experimental studies that employ quantitative physical approaches for the study of biological systems, including or spanning scales from molecule to whole organism. Experimental studies of a purely descriptive or phenomenological nature, with no theoretical or mechanistic underpinning, are not appropriate for publication in BJ. Theoretical studies should offer new insights into the understanding ofexperimental results or suggest new experimentally testable hypotheses. Articles reporting significant methodological or technological advances, which have potential to open new areas of biophysical investigation, are also suitable for publication in BJ. Papers describing improvements in accuracy or speed of existing methods or extra detail within methods described previously are not suitable for BJ.
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