Scaffolds providing a 3D environment which can effectively promote the adhesion, proliferation and differentiation of cells are crucial to tissue regeneration. In this study, the poly-l-lactic acid (PLLA) scaffold with hierarchical pore structural was fabricated via two-step thermally induced phase separation (TIPS). To mimic both physical architecture and chemical composite of natural bone extracellular matrix (ECM), gelatin fibers were introduced into the pores of PLLA scaffolds and formed 3D network structure via TIPS. Human adipose tissue-derived stem cells (ADSCs) were harvested and seeded into PLLA/gel hybrid scaffolds and cultured in vitro for biocompatibility assay. The surface morphology, porosity and compressive modulus of scaffol...
In the most common approach of tissue engineering, a polymeric scaffold with a well-defined architec...
In this study, the design and fabrication of porous scaffolds, made of blends of polylactic-co-capro...
Biodegradable poly(lactic acid) (PLA) is widely used to fabricate 3D scaffolds for tissue regenerat...
Scaffolds providing a 3D environment which can effectively promote the adhesion, proliferation and d...
Scaffolds providing a 3D environment which can effectively promote the adhesion, proliferation and d...
Biomimetic biomaterials are widely being explored as scaffold for bone regeneration. In this study, ...
The basic approach to bone tissue engineering involves the development of highly porous biodegradabl...
The basic approach to bone tissue engineering involves the development of highly porous biodegradabl...
The basic approach to bone tissue engineering involves the development of highly porous biodegradabl...
The present study deals with the design, fabrication and characterization of porous scaffolds for ti...
The lack of a vascular network and poor perfusion is what mostly prevents three-dimensional (3D) sca...
The lack of a vascular network and poor perfusion is what mostly prevents three-dimensional (3D) sca...
The lack of a vascular network and poor perfusion is what mostly prevents three-dimensional (3D) sca...
In skin tissue engineering, a three-dimensional porous scaffold is necessary to support cell adhesio...
Recently, the application of nanostructured materials in the field of tissue engineering has garnere...
In the most common approach of tissue engineering, a polymeric scaffold with a well-defined architec...
In this study, the design and fabrication of porous scaffolds, made of blends of polylactic-co-capro...
Biodegradable poly(lactic acid) (PLA) is widely used to fabricate 3D scaffolds for tissue regenerat...
Scaffolds providing a 3D environment which can effectively promote the adhesion, proliferation and d...
Scaffolds providing a 3D environment which can effectively promote the adhesion, proliferation and d...
Biomimetic biomaterials are widely being explored as scaffold for bone regeneration. In this study, ...
The basic approach to bone tissue engineering involves the development of highly porous biodegradabl...
The basic approach to bone tissue engineering involves the development of highly porous biodegradabl...
The basic approach to bone tissue engineering involves the development of highly porous biodegradabl...
The present study deals with the design, fabrication and characterization of porous scaffolds for ti...
The lack of a vascular network and poor perfusion is what mostly prevents three-dimensional (3D) sca...
The lack of a vascular network and poor perfusion is what mostly prevents three-dimensional (3D) sca...
The lack of a vascular network and poor perfusion is what mostly prevents three-dimensional (3D) sca...
In skin tissue engineering, a three-dimensional porous scaffold is necessary to support cell adhesio...
Recently, the application of nanostructured materials in the field of tissue engineering has garnere...
In the most common approach of tissue engineering, a polymeric scaffold with a well-defined architec...
In this study, the design and fabrication of porous scaffolds, made of blends of polylactic-co-capro...
Biodegradable poly(lactic acid) (PLA) is widely used to fabricate 3D scaffolds for tissue regenerat...