poly(L-co-D,L-lactic acid) (PLDLA) is a bioresorbable and biocompatible copolymer obtained from the combination of L-lactic and D, L-lactic monomers. PLDLA membranes formed by aligned fibers were prepared by AC/DC electrospinning. Solutions of 8 and 10 wt % of PLDLA were used and membranes were collected by a rotating cylindrical collector. The results showed a slight increase in the fiber diameter with the increase in the polymer concentration. Fourier transform infrared spectroscopy results showed no changes in the chemical structure. Dynamic mechanical analysis results showed an increase in the storage modulus and a decrease in glass-transition temperature for the 10 wt % samples, which was corroborated by differential scanning calorimet...
Proceedings of the ASME International Mechanical Engineering Congress & Exposition, 2009, v. 14: Pro...
The use of biodegradable polyesters as temporary structural supports in the recuperation of damaged ...
AbstractThe absorbable polyacid is one of the most used and studied materials in tissue engineering....
Poly-L-co-D.L-lactic (PLDLA) is a bioresorbable polymer whose properties have been studied for degra...
AbstractElectrospun membranes of poly (L-Lactide) / poly (L-lactide-co-caprolactone) blend were prod...
Biodegradable poly(L-lactide acid) (PLLA) microfibers were prepared by electrospinning by varying ap...
Electrospinning is a valuable technique to fabricate fibrous scaffolds for tissue engineering. The t...
Nowadays, synthetic biodegradable polymers, such as aliphatic polyesters, are largely used in tissue...
The development of biomaterials for application in advanced therapies requires thorough characteriza...
This study describes the preparation of electrospun poly( caprolactone) (PCL) and poly( lactic acid)...
Electrospinning is a valuable technique to fabricate fibrous scaffolds for tissue engineering. The t...
Hydrolytic degradation of electrospun mats of poly(l-lactic acid), PLLA, as a function of crystallin...
There is increasing interest in aliphatic polyesters from lactones and lactides because of their bio...
Nonwoven fibrous mats were produced in the process of solution electrospinning. Polymeric fibres gen...
Porous biodegradable PLLA membranes, which can be used as supports for perfusion cell culture system...
Proceedings of the ASME International Mechanical Engineering Congress & Exposition, 2009, v. 14: Pro...
The use of biodegradable polyesters as temporary structural supports in the recuperation of damaged ...
AbstractThe absorbable polyacid is one of the most used and studied materials in tissue engineering....
Poly-L-co-D.L-lactic (PLDLA) is a bioresorbable polymer whose properties have been studied for degra...
AbstractElectrospun membranes of poly (L-Lactide) / poly (L-lactide-co-caprolactone) blend were prod...
Biodegradable poly(L-lactide acid) (PLLA) microfibers were prepared by electrospinning by varying ap...
Electrospinning is a valuable technique to fabricate fibrous scaffolds for tissue engineering. The t...
Nowadays, synthetic biodegradable polymers, such as aliphatic polyesters, are largely used in tissue...
The development of biomaterials for application in advanced therapies requires thorough characteriza...
This study describes the preparation of electrospun poly( caprolactone) (PCL) and poly( lactic acid)...
Electrospinning is a valuable technique to fabricate fibrous scaffolds for tissue engineering. The t...
Hydrolytic degradation of electrospun mats of poly(l-lactic acid), PLLA, as a function of crystallin...
There is increasing interest in aliphatic polyesters from lactones and lactides because of their bio...
Nonwoven fibrous mats were produced in the process of solution electrospinning. Polymeric fibres gen...
Porous biodegradable PLLA membranes, which can be used as supports for perfusion cell culture system...
Proceedings of the ASME International Mechanical Engineering Congress & Exposition, 2009, v. 14: Pro...
The use of biodegradable polyesters as temporary structural supports in the recuperation of damaged ...
AbstractThe absorbable polyacid is one of the most used and studied materials in tissue engineering....