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Verfasst von:Rennekamp, Benedikt [VerfasserIn]   i
 Karfusehr, Christoph [VerfasserIn]   i
 Kurth, Markus [VerfasserIn]   i
 Ünal, Aysecan [VerfasserIn]   i
 Monego, Debora [VerfasserIn]   i
 Riedmiller, Kai [VerfasserIn]   i
 Gryn’ova, Ganna [VerfasserIn]   i
 Hudson, David M. [VerfasserIn]   i
 Gräter, Frauke [VerfasserIn]   i
Titel:Collagen breaks at weak sacrificial bonds taming its mechanoradicals
Verf.angabe:Benedikt Rennekamp, Christoph Karfusehr, Markus Kurth, Aysecan Ünal, Debora Monego, Kai Riedmiller, Ganna Gryn’ova, David M. Hudson & Frauke Gräter
E-Jahr:2023
Jahr:12 April 2023
Umfang:11 S.
Fussnoten:Gesehen am 22.08.2023
Titel Quelle:Enthalten in: Nature Communications
Ort Quelle:[London] : Springer Nature, 2010
Jahr Quelle:2023
Band/Heft Quelle:14(2023), Artikel-ID 2075, Seite 1-11
ISSN Quelle:2041-1723
Abstract:Collagen is a force-bearing, hierarchical structural protein important to all connective tissue. In tendon collagen, high load even below macroscopic failure level creates mechanoradicals by homolytic bond scission, similar to polymers. The location and type of initial rupture sites critically decide on both the mechanical and chemical impact of these micro-ruptures on the tissue, but are yet to be explored. We here use scale-bridging simulations supported by gel electrophoresis and mass spectrometry to determine breakage points in collagen. We find collagen crosslinks, as opposed to the backbone, to harbor the weakest bonds, with one particular bond in trivalent crosslinks as the most dominant rupture site. We identify this bond as sacrificial, rupturing prior to other bonds while maintaining the material’s integrity. Also, collagen’s weak bonds funnel ruptures such that the potentially harmful mechanoradicals are readily stabilized. Our results suggest this unique failure mode of collagen to be tailored towards combatting an early onset of macroscopic failure and material ageing.
DOI:doi:10.1038/s41467-023-37726-z
URL:kostenfrei: Volltext: https://doi.org/10.1038/s41467-023-37726-z
 kostenfrei: Volltext: https://www.nature.com/articles/s41467-023-37726-z
 DOI: https://doi.org/10.1038/s41467-023-37726-z
Datenträger:Online-Ressource
Sprache:eng
Sach-SW:Biomaterials - proteins
 Biophysical chemistry
 Computational biophysics
 Mechanical properties
 Nanoscale biophysics
K10plus-PPN:1857624742
Verknüpfungen:→ Zeitschrift
 
 
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