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- W2050166346 endingPage "026002" @default.
- W2050166346 startingPage "026002" @default.
- W2050166346 abstract "The state of collagen molecules in the fibres of tail tendon, skin and demineralized bone has been investigated in situ using differential scanning calorimetry (DSC). Hydroxyproline analysis and tissue digestion with bacterial collagenase and trypsin were used to confirm that the common cause of all the DSC endotherms was collagen denaturation. This occurred within a narrow temperature range in tendons, but over a wide temperature range in demineralized bone and old skin and demonstrated that in tendon and demineralized bone at least the same type I collagen molecule exists in different thermal states. Hypothesizing that this might be caused by different degrees of confinement within the fibre lattice, experiments were performed to measure the effect of changing the lattice dimensions by extracting the collagen into dilute solution with pepsin, swelling the lattice in acetic acid, and contracting the lattice by dehydration. A theoretical analysis was undertaken to predict the effect of dehydration. Results were consistent with the hypothesis, demonstrating that collagen molecules within the natural fibres of bone and old skin are located at different intermolecular spacings, revealing differences between molecules in the magnitude of either the attractive or repulsive forces controlling their separation. One potential cause of such variation is known differences in covalent cross-linking." @default.
- W2050166346 created "2016-06-24" @default.
- W2050166346 creator A5035847001 @default.
- W2050166346 creator A5060727022 @default.
- W2050166346 date "2011-01-24" @default.
- W2050166346 modified "2023-09-22" @default.
- W2050166346 title "Thermal stabilization of collagen in skin and decalcified bone" @default.
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- W2050166346 doi "https://doi.org/10.1088/1478-3975/8/2/026002" @default.
- W2050166346 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/21263166" @default.
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