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Physical confinement alters tumor cell adhesion and migration phenotypes.物理禁闭改变肿瘤细胞黏附和迁移表型。
FASEB J. 2012 Oct;26(10):4045-56. doi: 10.1096/fj.12-211441. Epub 2012 Jun 15.
2
Independent regulation of tumor cell migration by matrix stiffness and confinement.基质硬度和限制对肿瘤细胞迁移的独立调控。
Proc Natl Acad Sci U S A. 2012 Jun 26;109(26):10334-9. doi: 10.1073/pnas.1118073109. Epub 2012 Jun 11.
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Quantifying traction stresses in adherent cells.量化贴壁细胞中的牵张力。
Methods Cell Biol. 2012;110:139-78. doi: 10.1016/B978-0-12-388403-9.00006-0.
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Biophysical control of invasive tumor cell behavior by extracellular matrix microarchitecture.细胞外基质微观结构对侵袭性肿瘤细胞行为的生物物理控制。
Biomaterials. 2012 Jun;33(16):4157-65. doi: 10.1016/j.biomaterials.2012.02.029. Epub 2012 Mar 8.
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Cellular traction stresses increase with increasing metastatic potential.细胞牵引力随转移潜能的增加而增加。
PLoS One. 2012;7(2):e32572. doi: 10.1371/journal.pone.0032572. Epub 2012 Feb 28.
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Fabrication of substrates with defined mechanical properties and topographical features for the study of cell migration.用于研究细胞迁移的具有确定机械性能和形貌特征的基底的制作。
Macromol Biosci. 2012 Jan;12(1):12-20. doi: 10.1002/mabi.201100264. Epub 2011 Oct 21.
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Interstitial guidance of cancer invasion.肿瘤侵袭的间质导向
J Pathol. 2012 Jan;226(2):185-99. doi: 10.1002/path.3031.
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Collective epithelial cell invasion overcomes mechanical barriers of collagenous extracellular matrix by a narrow tube-like geometry and MMP14-dependent local softening.集体上皮细胞浸润通过狭窄的管状几何形状和 MMP14 依赖性局部软化来克服胶原细胞外基质的机械屏障。
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In situ force mapping of mammary gland transformation.原位力图谱绘制在乳腺转化中的应用
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Microfabricated physical spatial gradients for investigating cell migration and invasion dynamics.用于研究细胞迁移和侵袭动力学的微加工物理空间梯度。
PLoS One. 2011;6(6):e20825. doi: 10.1371/journal.pone.0020825. Epub 2011 Jun 10.

微加工胶原轨道促进 3D 中单细胞转移侵袭。

Microfabricated collagen tracks facilitate single cell metastatic invasion in 3D.

机构信息

Department of Biomedical Engineering, Cornell University, 526 Campus Rd., Ithaca, NY 14853, USA.

出版信息

Integr Biol (Camb). 2013 Mar;5(3):606-16. doi: 10.1039/c3ib20196a.

DOI:10.1039/c3ib20196a
PMID:23388698
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3601578/
Abstract

While the mechanisms employed by metastatic cancer cells to migrate remain poorly understood, it has been widely accepted that metastatic cancer cells can invade the tumor stroma by degrading the extracellular matrix (ECM) with matrix metalloproteinases (MMPs). Although MMP inhibitors showed early promise in preventing metastasis in animal models, they have largely failed clinically. Recently, studies have shown that some cancer cells can use proteolysis to mechanically rearrange their ECM to form tube-like "microtracks" which other cells can follow without using MMPs themselves. We speculate that this mode of migration in the secondary cells may be one example of migration which can occur without endogenous protease activity in the secondary cells. Here we present a technique to study this migration in a 3D, collagen-based environment which mimics the size and topography of the tracks produced by proteolytically active cancer cells. Using time-lapse phase-contrast microscopy, we find that these microtracks permit the rapid and persistent migration of noninvasive MCF10A mammary epithelial cells, which are unable to otherwise migrate in 3D collagen. Additionally, while highly metastatic MDAMB231 breast cancer cells are able to invade a 3D collagen matrix, seeding within the patterned microtracks induced significantly increased cell migration speed, which was not decreased by pharmacological MMP inhibition. Together, these data suggest that microtracks within a 3D ECM may facilitate the migration of cells in an MMP-independent fashion, and may reveal novel insight into the clinical challenges facing MMP inhibitors.

摘要

虽然转移性癌细胞迁移所采用的机制仍了解甚少,但人们普遍认为转移性癌细胞可以通过基质金属蛋白酶 (MMPs) 降解细胞外基质 (ECM) 来侵袭肿瘤基质。尽管 MMP 抑制剂在动物模型中预防转移方面显示出早期的前景,但它们在临床上基本上已经失败。最近的研究表明,一些癌细胞可以利用蛋白水解作用来机械地重新排列其 ECM,形成管状的“微轨迹”,其他细胞可以在不自身使用 MMP 的情况下沿着这些微轨迹进行迁移。我们推测,次级细胞中的这种迁移模式可能是次级细胞中没有内源性蛋白酶活性即可发生的迁移模式之一。在这里,我们提出了一种在 3D 胶原基环境中研究这种迁移的技术,该环境模拟了蛋白水解活性癌细胞产生的轨迹的大小和形貌。通过延时相差显微镜,我们发现这些微轨迹允许非侵袭性 MCF10A 乳腺上皮细胞快速和持续地迁移,而这些细胞在 3D 胶原中无法迁移。此外,虽然高度转移性 MDA-MB-231 乳腺癌细胞能够侵袭 3D 胶原基质,但在图案化的微轨迹中播种会显著增加细胞迁移速度,而这种速度不会因药物 MMP 抑制而降低。总之,这些数据表明,3D ECM 中的微轨迹可能以 MMP 非依赖性方式促进细胞迁移,并可能为 MMP 抑制剂面临的临床挑战提供新的见解。