Bone has a complex hierarchical structure that has evolved to serve structural and metabolic roles in the body. Due to the complexity of bone structure and the number of diseases which affect the ultrastructural constituents of bone, it is important to develop quantitative methods to assess bone nanoscale properties. Autosomal dominant Osteogenesis Imperfecta results predominantly from glycine substitutions (80%) and splice site mutations (20%) in the genes encoding the α1 or α2 chains of Type I collagen. Genotype-phenotype correlations using over 830 collagen mutations have revealed that lethal mutations are located in regions crucial for collagen-ligand binding in the matrix. However, few of these correlations have been extended to collag...
Understanding the properties of bone is of both fundamental and clinical relevance. The basis of bon...
Bone is a strong and tough material composed of apatite mineral, organic matter, and water. Changes ...
The collagen molecule, which is the building block of collagen fibrils, is a triple helix of two ?1(...
Bone is an amazing material evolved by nature to elegantly balance structural and metabolic needs in...
Alternations of collagen and mineral at the molecular level may have a significant impact on the str...
This study demonstrates that collagen, the most abundant protein in animals, exists as a distributio...
This article details a quantitative method to measure the D-periodic spacing of type I collagen fibr...
Understanding the properties of bone is of both fundamental and clinical relevance. The basis of bon...
Osteogenesis imperfecta is a congenital disease commonly characterized by brittle bones and caused b...
Molecular alteration in type I collagen, i.e., substituting the α2 chain with α1 chain in tropocolla...
Alternations of collagen and mineral at the molecular level may have a significant impact on the str...
Molecular alteration in type I collagen, i.e., substituting the α2 chain with α1 chain in tropocolla...
Bone relies on multiple orders of organization to properly fulfill its functional requirements. At i...
When looking at bone at the nanoscale, it consists of a matrix of type I collagen and hydroxyapatite...
Alternations of collagen and mineral at the molecular level may have a significant impact on the str...
Understanding the properties of bone is of both fundamental and clinical relevance. The basis of bon...
Bone is a strong and tough material composed of apatite mineral, organic matter, and water. Changes ...
The collagen molecule, which is the building block of collagen fibrils, is a triple helix of two ?1(...
Bone is an amazing material evolved by nature to elegantly balance structural and metabolic needs in...
Alternations of collagen and mineral at the molecular level may have a significant impact on the str...
This study demonstrates that collagen, the most abundant protein in animals, exists as a distributio...
This article details a quantitative method to measure the D-periodic spacing of type I collagen fibr...
Understanding the properties of bone is of both fundamental and clinical relevance. The basis of bon...
Osteogenesis imperfecta is a congenital disease commonly characterized by brittle bones and caused b...
Molecular alteration in type I collagen, i.e., substituting the α2 chain with α1 chain in tropocolla...
Alternations of collagen and mineral at the molecular level may have a significant impact on the str...
Molecular alteration in type I collagen, i.e., substituting the α2 chain with α1 chain in tropocolla...
Bone relies on multiple orders of organization to properly fulfill its functional requirements. At i...
When looking at bone at the nanoscale, it consists of a matrix of type I collagen and hydroxyapatite...
Alternations of collagen and mineral at the molecular level may have a significant impact on the str...
Understanding the properties of bone is of both fundamental and clinical relevance. The basis of bon...
Bone is a strong and tough material composed of apatite mineral, organic matter, and water. Changes ...
The collagen molecule, which is the building block of collagen fibrils, is a triple helix of two ?1(...