Non-enzymatic advanced glycation end product (AGE) cross-linking of collagen molecules has been hypothesised to result in significant changes to the mechanical properties of the connective tissues within the body, potentially resulting in a number of age related diseases. We have investigated the effect of two of these cross-links, glucosepane and DOGDIC, on the tensile and lateral moduli of the collagen molecule through the use of a steered molecular dynamics approach, using previously identified preferential formation sites for intra-molecular cross-links. Our results show that the presence of intra-molecular AGE cross-links increases the tensile and lateral Young’s moduli in the low strain domain by between 3.0 - 8.5 % and 2.9 - 60.3 % r...
The extracellular matrix (ECM) undergoes progressive age-related stiffening and loss of proteolytic ...
Collagen is a ubiquitous protein with remarkable mechanical properties. It is highly elastic, shows ...
The mechanical performance of biological tissues is underpinned by a complex and finely balanced str...
Non-enzymatic advanced glycation end product (AGE) cross-linking of collagen molecules has been hypo...
Non-enzymatic advanced glycation end product (AGE) cross-linking of collagen molecules has been hypo...
Non-enzymatic advanced glycation end product (AGE) cross-linking of collagen molecules has been hypo...
Covalently cross-linked advanced glycation end products (AGE) are among the major post-translational...
Covalently cross-linked advanced glycation end products (AGE) are among the major post-translational...
AbstractCovalently cross-linked advanced glycation end products (AGE) are among the major post-trans...
Covalently cross-linked advanced glycation end products (AGE) are among the major post-translational...
The accumulation of advanced glycation end‐products is a fundamental process that is central to age‐...
Covalently cross-linked advanced glycation end products (AGE) are among the major post-translational...
Collagen is a key constituent in structural materials found in biology, including bone, tendon, skin...
AbstractTendons are important load-bearing structures, which are frequently injured in both sports a...
Covalently cross-linked advanced glycation end products (AGE) are among the major post-translational...
The extracellular matrix (ECM) undergoes progressive age-related stiffening and loss of proteolytic ...
Collagen is a ubiquitous protein with remarkable mechanical properties. It is highly elastic, shows ...
The mechanical performance of biological tissues is underpinned by a complex and finely balanced str...
Non-enzymatic advanced glycation end product (AGE) cross-linking of collagen molecules has been hypo...
Non-enzymatic advanced glycation end product (AGE) cross-linking of collagen molecules has been hypo...
Non-enzymatic advanced glycation end product (AGE) cross-linking of collagen molecules has been hypo...
Covalently cross-linked advanced glycation end products (AGE) are among the major post-translational...
Covalently cross-linked advanced glycation end products (AGE) are among the major post-translational...
AbstractCovalently cross-linked advanced glycation end products (AGE) are among the major post-trans...
Covalently cross-linked advanced glycation end products (AGE) are among the major post-translational...
The accumulation of advanced glycation end‐products is a fundamental process that is central to age‐...
Covalently cross-linked advanced glycation end products (AGE) are among the major post-translational...
Collagen is a key constituent in structural materials found in biology, including bone, tendon, skin...
AbstractTendons are important load-bearing structures, which are frequently injured in both sports a...
Covalently cross-linked advanced glycation end products (AGE) are among the major post-translational...
The extracellular matrix (ECM) undergoes progressive age-related stiffening and loss of proteolytic ...
Collagen is a ubiquitous protein with remarkable mechanical properties. It is highly elastic, shows ...
The mechanical performance of biological tissues is underpinned by a complex and finely balanced str...