This paper focused on the short review of biopolymer based composite for tissue regeneration. Biopolymers have been slowly introduced into medical applications as a result of their ability to be bio-degradable and to be easily made. By selecting the appropriate biopolymer containing the selected additives to facilitate the polymer-filler interaction, composites with the desired properties can be obtained. Interfacial interactions between biopolymers, and thus Nano-fillers, significantly control the mechanical properties of biopolymer composites and these biopolymer composites such as bone, cartilage, vascular implants, and others
The incorporation of bioactive and biocompatible fillers improve the bone cell adhesion, proliferati...
Biodegradable polymers form a unique class of materials that created an entirely new concept when or...
This review covers the development of bioresorbable polymeric composites for applications in tissue ...
This paper focused on the short review of biopolymer based composite for tissue regeneration. Biopol...
The polymeric composite material with desirable features can be gained by selecting suitable biopoly...
Tissue engineering (TE) and regenerative medicine integrate information and technology from various ...
The 1970s saw the maturation of the composite industry and the beginning of research on composite ma...
The present review paper examines the use of different types of polymeric matrix composites in hard ...
The past decade has seen the rapid development of new strategies for the design of biodegradable mac...
Tissue engineering (TE) and regenerative medicine integrate information and technology from various ...
Tissue engineering (TE) and regenerative medicine integrate information and technology from various ...
During the past century, and particularly in the past three decades, the application of conventional...
During the last decade, tissue engineering has shown a considerable promise in providing more viable...
No single material is able to mimic the composition, structure and properties of native tissues, and...
Polymer-based composites are a group of biomaterials that exert synergic and combined activity. Ther...
The incorporation of bioactive and biocompatible fillers improve the bone cell adhesion, proliferati...
Biodegradable polymers form a unique class of materials that created an entirely new concept when or...
This review covers the development of bioresorbable polymeric composites for applications in tissue ...
This paper focused on the short review of biopolymer based composite for tissue regeneration. Biopol...
The polymeric composite material with desirable features can be gained by selecting suitable biopoly...
Tissue engineering (TE) and regenerative medicine integrate information and technology from various ...
The 1970s saw the maturation of the composite industry and the beginning of research on composite ma...
The present review paper examines the use of different types of polymeric matrix composites in hard ...
The past decade has seen the rapid development of new strategies for the design of biodegradable mac...
Tissue engineering (TE) and regenerative medicine integrate information and technology from various ...
Tissue engineering (TE) and regenerative medicine integrate information and technology from various ...
During the past century, and particularly in the past three decades, the application of conventional...
During the last decade, tissue engineering has shown a considerable promise in providing more viable...
No single material is able to mimic the composition, structure and properties of native tissues, and...
Polymer-based composites are a group of biomaterials that exert synergic and combined activity. Ther...
The incorporation of bioactive and biocompatible fillers improve the bone cell adhesion, proliferati...
Biodegradable polymers form a unique class of materials that created an entirely new concept when or...
This review covers the development of bioresorbable polymeric composites for applications in tissue ...