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Curvature Perception of Mesenchymal Cells on Mesoscale Topographies
被引:0
作者:
Frey, Kerstin
[1
]
Brunner, Michael
[1
]
Curio, Christobal
[1
]
Kemkemer, Ralf
[1
,2
]
机构:
[1] Reutlingen Univ, Alteburgstrasse 150, D-72764 Reutlingen, Germany
[2] Max Plank Inst Med Res, Jahnstr 29, D-69120 Heidelberg, Germany
关键词:
(3-7) curvature perception;
curvature;
cytoskeleton;
geometry;
mechanobiology;
orientation;
pharmacological manipulation;
SINUSOIDAL WAVY SURFACES;
CONTACT GUIDANCE;
MICROFILAMENT BUNDLES;
GEOMETRIC CONTROL;
DIFFERENTIATION;
FIBROBLASTS;
ORIENTATION;
VIMENTIN;
TAXOL;
RHO;
D O I:
10.1002/adhm.202402865
中图分类号:
R318 [生物医学工程];
学科分类号:
0831 ;
摘要:
Cells can sense geometrical cues with sizes of several tens of micrometers in their vicinity. Recent in vitro studies show that cells can adapt their shape, align along specific directions, or regulate other cellular functions when grown on surfaces with curvatures larger than their size. Although possible mechanisms for such responses like the alignment along axial cues have been suggested, a detailed understanding of the involved cellular processes remains open. This work addresses this gap by systematically investigating mesenchymal cell and nucleus orientation responses using a low-cost model surface platform, the CurvChip. Using an array of cylindrically curved topographies with radii of curvatures ranging from tens to hundreds of micrometers, the contact guidance response of cells and nuclei is quantified in dependence on substratum curvature and manipulation of cytoskeletal components. Results suggest a desired perceived curvature for the investigated cells, and a very sensitive and robust curvature perception mechanism, as the effect of pharmacological manipulation of cytoskeletal components is relatively small. Furthermore, a comparison with previously published work strengthens the hypothesis of an involvement of the nucleus in the cell response to three-dimensional (3D) curvatures.
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页数:16
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