This article reports an enhanced solvent casting/particulate (salt) leaching (SCPL) method developed for preparing three-dimensional porous polyurethane (PU) scaffolds for cardiac tissue engineering. The solvent for the preparation of the PU scaffolds was a mixture of dimethylformamide (DFM) and tetrahydrofuran (THF). The enhanced method involved the combination of a conventional SCPL method and a step of centrifugation, with the centrifugation being employed to improve the pore uniformity and the pore interconnectivity of scaffolds. Highly porous three-dimensional scaffolds with a well interconnected porous structure could be achieved at the polymer solution concentration of up to 20% by air or vacuum drying to remove the solvent. When the...
Tubular polymer scaffolds based on tissue engineering techniques have been studied as potential alte...
In the past several types of synthetic porous materials have been made as meniscus reconstruction ma...
The supply of nutrients and the removal of waste products play a major role in tissue engineering. F...
This article reports an enhanced solvent casting/particulate (salt) leaching (SCPL) method developed...
Porous scaffolds have been made from two polyurethanes based on thermally induced phase separation o...
Biomaterial scaffolds are a key part of cardiac tissue engineering therapies. Our group has recently...
Cardiovascular diseases refer to the class of diseases that involve the heart or blood vessels (arte...
While small bone defects heal spontaneously, critical size defects may exceed the body’s regenerati...
The literature describes that the most efficient cell penetration takes place at 200–500 µm depth of...
Azadeh Asefnejad1, Mohammad Taghi Khorasani2, Aliasghar Behnamghader3, Babak Farsadzadeh1, Shahin Bo...
Contains fulltext : 71440.pdf (publisher's version ) (Closed access)Porous scaffol...
The currently available mechanical and bio-prosthetic heart valve (HV) have still not the rigorous c...
This paper examines a new technique for the preparation of porous scaffolds by combining selective p...
A remarkable challenge in myocardial tissue engineering is the development of biomimetic constructs ...
The properties of polyurethane-Bioglass® (PU-BG) scaffolds have been optimized using solvent casting...
Tubular polymer scaffolds based on tissue engineering techniques have been studied as potential alte...
In the past several types of synthetic porous materials have been made as meniscus reconstruction ma...
The supply of nutrients and the removal of waste products play a major role in tissue engineering. F...
This article reports an enhanced solvent casting/particulate (salt) leaching (SCPL) method developed...
Porous scaffolds have been made from two polyurethanes based on thermally induced phase separation o...
Biomaterial scaffolds are a key part of cardiac tissue engineering therapies. Our group has recently...
Cardiovascular diseases refer to the class of diseases that involve the heart or blood vessels (arte...
While small bone defects heal spontaneously, critical size defects may exceed the body’s regenerati...
The literature describes that the most efficient cell penetration takes place at 200–500 µm depth of...
Azadeh Asefnejad1, Mohammad Taghi Khorasani2, Aliasghar Behnamghader3, Babak Farsadzadeh1, Shahin Bo...
Contains fulltext : 71440.pdf (publisher's version ) (Closed access)Porous scaffol...
The currently available mechanical and bio-prosthetic heart valve (HV) have still not the rigorous c...
This paper examines a new technique for the preparation of porous scaffolds by combining selective p...
A remarkable challenge in myocardial tissue engineering is the development of biomimetic constructs ...
The properties of polyurethane-Bioglass® (PU-BG) scaffolds have been optimized using solvent casting...
Tubular polymer scaffolds based on tissue engineering techniques have been studied as potential alte...
In the past several types of synthetic porous materials have been made as meniscus reconstruction ma...
The supply of nutrients and the removal of waste products play a major role in tissue engineering. F...