Porous scaffolds have been made from two polyurethanes based on thermally induced phase separation of polymer dissolved in a DMSO/water mixture in combination with salt leaching. It is possible to obtain very porous foams with a very high interconnectivity. A major advantage of this method is that variables like porosity, pore size, and interconnectivity can be independently adjusted with the absence of toxic materials in the production process. The obtained compression moduli were between 200 kPa and 1 MPa with a variation in porosity between 76 and 84%. Currently the biological and medical aspects are under evaluation. (C) 2008 Wiley Periodicals, Inc. J Biomed Mater Res 87A: 921-932, 2008</p
The literature describes that the most efficient cell penetration takes place at 200–500 µm depth of...
Porous polyurethane (PU) structures raise in- creasing interest as scaffolds in tissue engineering a...
Scaffolding plays pivotal role in tissue engineering. In this work, a novel processing technique has...
Porous scaffolds have been made from two polyurethanes based on thermally induced phase separation o...
Contains fulltext : 71440.pdf (publisher's version ) (Closed access)Porous scaffol...
In the past several types of synthetic porous materials have been made as meniscus reconstruction ma...
This article reports an enhanced solvent casting/particulate (salt) leaching (SCPL) method developed...
The invention presents a new method to prepare biomedical polyurethanes with high tensile and tear s...
Azadeh Asefnejad1, Mohammad Taghi Khorasani2, Aliasghar Behnamghader3, Babak Farsadzadeh1, Shahin Bo...
In this study, we present a novel composite scaffold fabricated using a thermally induced phase sepa...
Macroporous scaffolds composed of biodegradable polymers have found extensive use as three-dimension...
This paper examines a new technique for the preparation of porous scaffolds by combining selective p...
A technique for the preparation of porous polymeric structures involving coagulation, compression mo...
Polyurethane (PU) foam has unique characteristics making it suitable for many applications such as: ...
The aim of tissue engineering is the fabrication of three-dimensional scaffolds that can be used for...
The literature describes that the most efficient cell penetration takes place at 200–500 µm depth of...
Porous polyurethane (PU) structures raise in- creasing interest as scaffolds in tissue engineering a...
Scaffolding plays pivotal role in tissue engineering. In this work, a novel processing technique has...
Porous scaffolds have been made from two polyurethanes based on thermally induced phase separation o...
Contains fulltext : 71440.pdf (publisher's version ) (Closed access)Porous scaffol...
In the past several types of synthetic porous materials have been made as meniscus reconstruction ma...
This article reports an enhanced solvent casting/particulate (salt) leaching (SCPL) method developed...
The invention presents a new method to prepare biomedical polyurethanes with high tensile and tear s...
Azadeh Asefnejad1, Mohammad Taghi Khorasani2, Aliasghar Behnamghader3, Babak Farsadzadeh1, Shahin Bo...
In this study, we present a novel composite scaffold fabricated using a thermally induced phase sepa...
Macroporous scaffolds composed of biodegradable polymers have found extensive use as three-dimension...
This paper examines a new technique for the preparation of porous scaffolds by combining selective p...
A technique for the preparation of porous polymeric structures involving coagulation, compression mo...
Polyurethane (PU) foam has unique characteristics making it suitable for many applications such as: ...
The aim of tissue engineering is the fabrication of three-dimensional scaffolds that can be used for...
The literature describes that the most efficient cell penetration takes place at 200–500 µm depth of...
Porous polyurethane (PU) structures raise in- creasing interest as scaffolds in tissue engineering a...
Scaffolding plays pivotal role in tissue engineering. In this work, a novel processing technique has...