AbstractThe structural properties of collagen have been the subject of numerous studies over past decades, but with the arrival of new technologies, such as the atomic force microscope and related techniques, a new era of research has emerged. Using microthermal analysis, it is now possible to image samples as well as performing localized thermal measurements without damaging or destroying the sample itself. This technique was successfully applied to characterize the thermal response between native collagen fibrils and their denatured form, gelatin. Thermal transitions identified at (150 ± 10)°C and (220 ± 10)°C can be related to the process of gelatinization of the collagen fibrils, whereas at higher temperatures, both the gelatin and coll...
Type I collagen is the most common protein among higher vertebrates. It forms the basis of fibrous c...
Dehydrothermal (DHT) crosslinking is routinely performed to increase the stiffness and the enzymatic...
BACKGROUND: Type I collagen is the most common protein among higher vertebrates. It forms the basis ...
AbstractThe structural properties of collagen have been the subject of numerous studies over past de...
Modification to macromolecular structure in fibrous collagen was explored to characterize physicoche...
The denaturation processes of collagen in the temperature range between 450 K and 670 K are revealed...
The denaturation processes of collagen in the temperature range between 450 K and 670 K are revealed...
This study aims to characterize and understand the effects of freezing on collagen structures and fu...
<div><p>ABSTRACT The thermal stability of collagen is of great interest for the scientific communiti...
This study aims to characterize and understand the effects of freezing on collagen structures and fu...
Mineralised collagen displays an improved hydrothermal stability compared to collagen that is unmine...
An angular displacement-enhanced heterodyne polarimeter has been employed to investigate the interpl...
Adsorption (at 37 degrees C) of type I collagen, in native and heat-denatured (30 min at 40 and 90 d...
Includes bibliographical references.Currently, no published study exists examining the effect of rai...
The hypothesis of this study was that collagen denaturation would lead to a significant decrease in ...
Type I collagen is the most common protein among higher vertebrates. It forms the basis of fibrous c...
Dehydrothermal (DHT) crosslinking is routinely performed to increase the stiffness and the enzymatic...
BACKGROUND: Type I collagen is the most common protein among higher vertebrates. It forms the basis ...
AbstractThe structural properties of collagen have been the subject of numerous studies over past de...
Modification to macromolecular structure in fibrous collagen was explored to characterize physicoche...
The denaturation processes of collagen in the temperature range between 450 K and 670 K are revealed...
The denaturation processes of collagen in the temperature range between 450 K and 670 K are revealed...
This study aims to characterize and understand the effects of freezing on collagen structures and fu...
<div><p>ABSTRACT The thermal stability of collagen is of great interest for the scientific communiti...
This study aims to characterize and understand the effects of freezing on collagen structures and fu...
Mineralised collagen displays an improved hydrothermal stability compared to collagen that is unmine...
An angular displacement-enhanced heterodyne polarimeter has been employed to investigate the interpl...
Adsorption (at 37 degrees C) of type I collagen, in native and heat-denatured (30 min at 40 and 90 d...
Includes bibliographical references.Currently, no published study exists examining the effect of rai...
The hypothesis of this study was that collagen denaturation would lead to a significant decrease in ...
Type I collagen is the most common protein among higher vertebrates. It forms the basis of fibrous c...
Dehydrothermal (DHT) crosslinking is routinely performed to increase the stiffness and the enzymatic...
BACKGROUND: Type I collagen is the most common protein among higher vertebrates. It forms the basis ...