The phenotype of cancer cell invasion controlled by fibril diameter and pore size of 3D collagen networks

被引:151
|
作者
Sapudom, Jiranuwat [1 ]
Rubner, Stefan [1 ]
Martin, Steve [1 ]
Kurth, Tony [2 ]
Riedel, Stefanie [2 ]
Mierke, Claudia T. [2 ]
Pompe, Tilo [1 ]
机构
[1] Univ Leipzig, Inst Biochem, Biophys Chem Grp, Fac Biosci Pharm & Psychol, D-04103 Leipzig, Germany
[2] Univ Leipzig, Biol Phys Div, Inst Expt Phys 1, Fac Phys & Earth Sci, D-04103 Leipzig, Germany
关键词
Collagen; Cell morphology; ECM (extracellular matrix); Microstructure; Mechanical properties; Invasion; IN-VITRO; MATRIX STIFFNESS; TUMOR-CELLS; MECHANICAL-PROPERTIES; EXTRACELLULAR-MATRIX; BREAST-CANCER; MIGRATION; MICROENVIRONMENT; FIBRILLOGENESIS; MICROSTRUCTURE;
D O I
10.1016/j.biomaterials.2015.02.022
中图分类号
R318 [生物医学工程];
学科分类号
0831 ;
摘要
The behavior of cancer cells is strongly influenced by the properties of extracellular microenvironments, including topology, mechanics and composition. As topological and mechanical properties of the extracellular matrix are hard to access and control for in-depth studies of underlying mechanisms in vivo, defined biomimetic in vitro models are needed. Herein we show, how pore size and fibril diameter of collagen I networks distinctively regulate cancer cell morphology and invasion. Three-dimensional collagen I matrices with a tight control of pore size, fibril diameter and stiffness were reconstituted by adjustment of concentration and pH value during matrix reconstitution. At first, a detailed analysis of topology and mechanics of matrices using confocal laser scanning microscopy, image analysis tools and force spectroscopy indicate pore size and not fibril diameter as the major determinant of matrix elasticity. Secondly, by using two different breast cancer cell lines (MDA-MB-231 and MCF-7), we demonstrate collagen fibril diameter - and not pore size - to primarily regulate cell morphology, cluster formation and invasion. Invasiveness increased and clustering decreased with increasing fibril diameter for both, the highly invasive MDA-MB-231 cells with mesenchymal migratory phenotype and the MCF-7 cells with amoeboid migratory phenotype. As this behavior was independent of overall pore size, matrix elasticity is shown to be not the major determinant of the cell characteristics. Our work emphasizes the complex relationship between structural-mechanical properties of the extracellular matrix and invasive behavior of cancer cells. It suggests a correlation of migratory and invasive phenotype of cancer cells in dependence on topological and mechanical features of the length scale of single fibrils and not on coarse-grained network properties. (C) 2015 Elsevier Ltd. All rights reserved.
引用
收藏
页码:367 / 375
页数:9
相关论文
共 50 条
  • [41] Endothelial cells promote 3D invasion of GBM by IL-8-dependent induction of cancer stem cell properties
    McCoy, Michael G.
    Nyanyo, Dennis
    Hung, Carol K.
    Goerger, Julian Palacios
    Zipfel, Warren R.
    Williams, Rebecca M.
    Nishimura, Nozomi
    Fischbach, Claudia
    SCIENTIFIC REPORTS, 2019, 9 (1)
  • [42] 3D collagen microchamber arrays for combined chemotherapy effect evaluation on cancer cell numbers and migration
    Yao, Jingru
    Li, Guoqiang
    Zhou, Lianjie
    Xu, Shuyan
    Song, Kena
    Zhang, Hongfei
    Zhang, Xianquan
    Shuai, Jianwei
    Ye, Fangfu
    Li, Ming
    Chen, Guo
    Liu, He
    Shaw, Peter
    Liu, Liyu
    BIOMICROFLUIDICS, 2023, 17 (01)
  • [43] MT1-MMP- and Cdc42-dependent signaling co-regulate cell invasion and tunnel formation in 3D collagen matrices
    Fisher, Kevin E.
    Sacharidou, Anastasia
    Stratman, Amber N.
    Mayo, Anne M.
    Fisher, Sarah B.
    Mahan, Rachel D.
    Davis, Michael J.
    Davis, George E.
    JOURNAL OF CELL SCIENCE, 2009, 122 (24) : 4558 - 4569
  • [44] Human 3D vascularized organotypic microfluidic assays to study breast cancer cell extravasation
    Jeon, Jessie S.
    Bersini, Simone
    Gilardi, Mara
    Dubini, Gabriele
    Charest, Joseph L.
    Moretti, Matteo
    Kamm, Roger D.
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2015, 112 (01) : 214 - 219
  • [45] Cell Migration in Microfabricated 3D Collagen Microtracks is Mediated Through the Prometastatic Protein Girdin
    Rahman-Zaman, Aniqua
    Shan, Shuo
    Reinhart-King, Cynthia A.
    CELLULAR AND MOLECULAR BIOENGINEERING, 2018, 11 (01) : 1 - 10
  • [46] Visualizing collagen proteolysis by peptide hybridization: From 3D cell culture to in vivo imaging
    Bennink, Lucas L.
    Li, Yang
    Kim, Bumjin
    Shin, Ik Jae
    San, Boi Hoa
    Zangari, Maurizio
    Yoon, Donghoon
    Yu, S. Michael
    BIOMATERIALS, 2018, 183 : 67 - 76
  • [47] Marine Collagen Substrates for 2D and 3D Ovarian Cancer Cell Systems
    Paradiso, Francesca
    Fitzgerald, Joan
    Yao, Seydou
    Barry, Frank
    Taraballi, Francesca
    Gonzalez, Deyarina
    Conlan, R. Steven
    Francis, Lewis
    FRONTIERS IN BIOENGINEERING AND BIOTECHNOLOGY, 2019, 7
  • [48] Micropassage-embedding composite hydrogel fibers enable quantitative evaluation of cancer cell invasion under 3D coculture conditions
    Sugimoto, Manami
    Kitagawa, Yoichi
    Yamada, Masumi
    Yajima, Yuya
    Utoh, Rie
    Seki, Minoru
    LAB ON A CHIP, 2018, 18 (09) : 1378 - 1387
  • [49] Development and characterisation of 3D collagen-gelatin based scaffolds for breast cancer research
    Redmond, John
    McCarthy, Helen O.
    Buchanan, Paul
    Levingstone, Tanya J.
    Dunne, Nicholas J.
    BIOMATERIALS ADVANCES, 2022, 142
  • [50] The integration of pore size and porosity distribution on Ti-6A1-4V scaffolds by 3D printing in the modulation of osteo-differentation
    Wo, Jin
    Huang, Shi-shu
    Wu, Dong-ying
    Zhu, Jun
    Li, Zhi-zhong
    Yuan, Feng
    JOURNAL OF APPLIED BIOMATERIALS & FUNCTIONAL MATERIALS, 2020, 18