Several polymer-based nanocomposites have been studied and used for tissue engineering applications in recent years. These biodegradable nanocomposites have proven advantageous for bone tissue cultivation and production. Materials such as polymers, metals, and ceramics are commonly used to fabricate biomaterials. Although some polymeric materials are biodegradable and bioactive in bone tissue engineering applications, they do not match the strength of the bone. On the other hand, metals come in various shapes and sizes, including screws, pins, plates, and stents. These metallic implants are mechanically strong and can temporarily support bones, joints, and teeth. They are neither absorbed/resorbed by the body nor transformed into bone. With...
Joint replacement and bone reconstructive surgeries are on the rise globally. Current strategies for...
Bone tissue is a nanocomposite consisting of an organic and inorganic matrix, in which the collagen ...
Tissue is vital to the organization of multicellular organisms, because it creates the different org...
Several polymer-based nanocomposites have been studied and used for tissue engineering applications ...
Most people who suffer acute injuries in accidents have fractured bones. Many of the basic processes...
Tissue engineering and regenerative medicine has been providing exciting technologies for the devel...
New materials that mimic natural bone properties, matching functional, mechanical, and biological pr...
The deficiencies of current bone graft substitutes have been a driving force in developing new and m...
One of the most important ideas ever produced by the application of materials science to the medical...
Worldwide, over 4.5 million bone tissue reconstructive surgical procedures are performed annually to...
The application of nanotechnology to regenerative medicine has increased over recent decades. The de...
Abstract: Polymer nanocomposite scaffolds of polylactic acid and poly(ε-caprolactone) with chitosan-...
A significant challenge in the current orthopedics is the development of suitable osteobiologic mate...
Since the worldwide incidence of bone disorders and cartilage damage has been increasing and traditi...
This book highlights novel nano-engineering advances that enable enhanced bone formation at the impl...
Joint replacement and bone reconstructive surgeries are on the rise globally. Current strategies for...
Bone tissue is a nanocomposite consisting of an organic and inorganic matrix, in which the collagen ...
Tissue is vital to the organization of multicellular organisms, because it creates the different org...
Several polymer-based nanocomposites have been studied and used for tissue engineering applications ...
Most people who suffer acute injuries in accidents have fractured bones. Many of the basic processes...
Tissue engineering and regenerative medicine has been providing exciting technologies for the devel...
New materials that mimic natural bone properties, matching functional, mechanical, and biological pr...
The deficiencies of current bone graft substitutes have been a driving force in developing new and m...
One of the most important ideas ever produced by the application of materials science to the medical...
Worldwide, over 4.5 million bone tissue reconstructive surgical procedures are performed annually to...
The application of nanotechnology to regenerative medicine has increased over recent decades. The de...
Abstract: Polymer nanocomposite scaffolds of polylactic acid and poly(ε-caprolactone) with chitosan-...
A significant challenge in the current orthopedics is the development of suitable osteobiologic mate...
Since the worldwide incidence of bone disorders and cartilage damage has been increasing and traditi...
This book highlights novel nano-engineering advances that enable enhanced bone formation at the impl...
Joint replacement and bone reconstructive surgeries are on the rise globally. Current strategies for...
Bone tissue is a nanocomposite consisting of an organic and inorganic matrix, in which the collagen ...
Tissue is vital to the organization of multicellular organisms, because it creates the different org...