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Updated: Jun 20, 2026

Preparation of Extracellular Matrix Protein Fibers for Brillouin Spectroscopy
Published on: September 15, 2016
Dielectric response of deeply supercooled hydration water in the connective tissue proteins collagen and elastin
Catalin Gainaru1, Ariane Fillmer, Roland Böhmer
1Fakultät for Physik, Technische Universität Dortmund, 44221 Dortmund, Germany. catalin.gainaru@uni-dortmund.de
Abstract:
The low-temperature dielectric relaxation of collagen and elastin was studied over a wide range of hydrations h. The hydration-shell response increases weakly with temperature, is thermally activated, and conforms to energy barrier scaling. This demonstrates the existence of a decoupled, secondary relaxation akin to that in binary structural glasses. Indications for fragile-to-strong transitions and other changes of mechanism are not found for hydrated collagen and elastin. For low h, the dielectric strength increases superlinearly with h; concomitantly, the water molecules trigger significant mobility of the protein surface.
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