The hierarchical structure of bone and intrinsic material properties of its two primary constituents, carbonated apatite and fibrillar collagen, when being synergistically organized into an interpenetrating hard-soft composite, contribute to its excellent mechanical properties. Lamellar bone is the predominant structural motif in mammalian hard tissues; therefore, we believe the fabrication of a collagen/apatite composite with a hierarchical structure that emulates bone, consisting of a dense lamellar microstructure and a mineralized collagen fibril nanostructure, is an important first step toward the goal of regenerative bone tissue engineering. In this work, we exploit the liquid crystalline properties of collagen to fabricate dense matri...
Due to the high demand of scaffolds for treating bone fractures every year, biomimetic coatings and ...
Due to the high demand of scaffolds for treating bone fractures every year, biomimetic coatings and ...
Various kinds of three-dimensional (3D) scaffolds have been designed to mimic the biological spontan...
The hierarchical structure of bone and intrinsic material properties of its two primary constituents...
Nanoscale replication of the hierarchical organization of minerals in biogenic mineralized tissues i...
<div><p>Biomineralization templated by organic molecules to produce inorganic-organic nanocomposites...
Ideal biomaterials for bone grafts must be biocompatible, osteoconductive, osteoinductive and have a...
Biomineralization templated by organic molecules to produce inorganic-organic nanocomposites is a fa...
Natural bone has a complex hierarchical structure in which well-organized collagen fibrils are reinf...
Natural bone has a complex hierarchical structure in which well-organized collagen fibrils are reinf...
Bone, as a mineralized composite of inorganic (mostly carbonated hydroxyapatite) and organic (mainly...
The intercellular material in bone is a nanocomposite of aligned “hard” inorganics—calcium phosphate...
Bone can achieve high strength and toughness simultaneously through its composite structure and mult...
Bone can achieve high strength and toughness simultaneously through its composite structure and mult...
The intercellular material in bone is a nanocomposite of aligned “hard” inorganics—calcium phosphate...
Due to the high demand of scaffolds for treating bone fractures every year, biomimetic coatings and ...
Due to the high demand of scaffolds for treating bone fractures every year, biomimetic coatings and ...
Various kinds of three-dimensional (3D) scaffolds have been designed to mimic the biological spontan...
The hierarchical structure of bone and intrinsic material properties of its two primary constituents...
Nanoscale replication of the hierarchical organization of minerals in biogenic mineralized tissues i...
<div><p>Biomineralization templated by organic molecules to produce inorganic-organic nanocomposites...
Ideal biomaterials for bone grafts must be biocompatible, osteoconductive, osteoinductive and have a...
Biomineralization templated by organic molecules to produce inorganic-organic nanocomposites is a fa...
Natural bone has a complex hierarchical structure in which well-organized collagen fibrils are reinf...
Natural bone has a complex hierarchical structure in which well-organized collagen fibrils are reinf...
Bone, as a mineralized composite of inorganic (mostly carbonated hydroxyapatite) and organic (mainly...
The intercellular material in bone is a nanocomposite of aligned “hard” inorganics—calcium phosphate...
Bone can achieve high strength and toughness simultaneously through its composite structure and mult...
Bone can achieve high strength and toughness simultaneously through its composite structure and mult...
The intercellular material in bone is a nanocomposite of aligned “hard” inorganics—calcium phosphate...
Due to the high demand of scaffolds for treating bone fractures every year, biomimetic coatings and ...
Due to the high demand of scaffolds for treating bone fractures every year, biomimetic coatings and ...
Various kinds of three-dimensional (3D) scaffolds have been designed to mimic the biological spontan...