Mechanically overloading collagen fibrils uncoils collagen molecules, placing them in a stable, denatured state.
about
Bowstring Stretching and Quantitative Imaging of Single Collagen Fibrils via Atomic Force MicroscopyMolecular assessment of collagen denaturation in decellularized tissues using a collagen hybridizing peptideNanomechanical mapping of hydrated rat tail tendon collagen I fibrils.Thermal Destabilization of Collagen Matrix Hierarchical Structure by Freeze/Thaw.Evaluation of Tissue Homogenization to Support the Generation of GMP-Compliant Mesenchymal Stromal Cells from the Umbilical CordHigh spatial resolution (1.1 μm and 20 nm) FTIR polarization contrast imaging reveals pre-rupture disorder in damaged tendon.Tendon overload results in alterations in cell shape and increased markers of inflammation and matrix degradation.Quantitative phase measurements of tendon collagen fibres.Molecular level detection and localization of mechanical damage in collagen enabled by collagen hybridizing peptides.Detection and characterization of molecular-level collagen damage in overstretched cerebral arteries.In tendons, differing physiological requirements lead to functionally distinct nanostructures.Macrophage-like U937 cells recognize collagen fibrils with strain-induced discrete plasticity damage.
P2860
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P2860
Mechanically overloading collagen fibrils uncoils collagen molecules, placing them in a stable, denatured state.
description
2013 nî lūn-bûn
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2013年の論文
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2013年学术文章
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2013年学术文章
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name
Mechanically overloading colla ...... in a stable, denatured state.
@en
Mechanically overloading colla ...... in a stable, denatured state.
@nl
type
label
Mechanically overloading colla ...... in a stable, denatured state.
@en
Mechanically overloading colla ...... in a stable, denatured state.
@nl
prefLabel
Mechanically overloading colla ...... in a stable, denatured state.
@en
Mechanically overloading colla ...... in a stable, denatured state.
@nl
P1433
P1476
Mechanically overloading colla ...... in a stable, denatured state.
@en
P2093
J Michael Lee
Julia M Harrison
P356
10.1016/J.MATBIO.2013.07.003
P577
2013-07-21T00:00:00Z