Biodegradable polymers have been widely used as scaffolding materials to regenerate new tissues. To mimic natural extracellular matrix architecture, a novel highly porous structure, which is a three-dimensional interconnected fibrous network with a fiber diameter ranging from 50 to 500 nm, has been created from biodegradable aliphatic polyesters in this work. A porosity as high as 98.5% has been achieved. These nano-fibrous matrices were prepared from the polymer solutions by a procedure involving thermally induced gelation, solvent exchange, and freeze-drying. The effects of polymer concentration, thermal annealing, solvent exchange, and freezing temperature before freeze-drying on the nano-scale structures were studied. In general, at a h...
Electrospun nanofibers emulate extracellular matrix (ECM) morphology and architecture; however, smal...
In the most common approach of tissue engineering, a polymeric scaffold with a well-defined architec...
Mimicking the structural organization and biologic function of natural extracellular matrix has been...
Scaffolding plays a pivotal role in tissue engineering. To mimic the architecture of a natural extra...
Tissue engineering aims at resolving problems such as donor shortage and immune rejection faced by t...
The extracellular matrix, a component of all animal tissues, is required for cell adhesion, migrati...
The structural features of tissue engineering scaffolds affect cell response and must be engineered ...
In this article, we report on the preparation and cell culture performance of a novel fibrous matrix...
Scaffolds are crucial to tissue engineering/regeneration. In this work, a technique combining a uniq...
AbstractElectrospinning technology is used to fabricate sub-micrometric fiber mats made of a random ...
Three-dimensional (3D) printing is a powerful manufacturing tool for making 3D structures with well-...
Polymeric elastomers like Poly (1,3-diamino-2-hydroxypropane-co-polyol sebacate) (APS) have gained i...
Nano-scale renewable porous materials have a wide range of applications in the biomedical field such...
Regenerative medicine is an exciting field that aims to create regenerative alternatives to harvest ...
One possible interesting way of designing a scaffold for bone tissue engineering is to base it on t...
Electrospun nanofibers emulate extracellular matrix (ECM) morphology and architecture; however, smal...
In the most common approach of tissue engineering, a polymeric scaffold with a well-defined architec...
Mimicking the structural organization and biologic function of natural extracellular matrix has been...
Scaffolding plays a pivotal role in tissue engineering. To mimic the architecture of a natural extra...
Tissue engineering aims at resolving problems such as donor shortage and immune rejection faced by t...
The extracellular matrix, a component of all animal tissues, is required for cell adhesion, migrati...
The structural features of tissue engineering scaffolds affect cell response and must be engineered ...
In this article, we report on the preparation and cell culture performance of a novel fibrous matrix...
Scaffolds are crucial to tissue engineering/regeneration. In this work, a technique combining a uniq...
AbstractElectrospinning technology is used to fabricate sub-micrometric fiber mats made of a random ...
Three-dimensional (3D) printing is a powerful manufacturing tool for making 3D structures with well-...
Polymeric elastomers like Poly (1,3-diamino-2-hydroxypropane-co-polyol sebacate) (APS) have gained i...
Nano-scale renewable porous materials have a wide range of applications in the biomedical field such...
Regenerative medicine is an exciting field that aims to create regenerative alternatives to harvest ...
One possible interesting way of designing a scaffold for bone tissue engineering is to base it on t...
Electrospun nanofibers emulate extracellular matrix (ECM) morphology and architecture; however, smal...
In the most common approach of tissue engineering, a polymeric scaffold with a well-defined architec...
Mimicking the structural organization and biologic function of natural extracellular matrix has been...