[ EN ] We have developed a microporous hybrid membrane that combines polylactic acid, chitosan nanoparticles and bioactive glass, PLLA / CHT / BG-NPs, designed to provide support in bone regeneration with tissue engineering techniques. The material was produced in three steps. On one hand, the membrane of PLLA was obtained by a method of freeze extraction. The process of freeze extraction produces a polymeric membrane with interconnected pores and with a pore size in the range of micrometers. The porosity depends on the concentration of PLLA solution in dioxane. In this work, membranes produced from solutions with 10% by weight of PLLA was used. The nanoparticles, which are useful for delivery of ions from the bioactive glass from the pores...
One of the important research topics in tissue engineering is the development of optimum three-dimen...
Recent studies in tissue engineering have highlighted the importance of the development of composite...
Efforts in tissue engineering aim at creating scaffolds that mimic the physiological environment wit...
[EN] We have developed a microporous hybrid membrane that combines polylactic acid, chitosan nanopar...
Poly(L-lactic acid)/Chitosan (PLLA/CHT) hybrid scaffolds were prepared by depositing CHT onto the po...
Item does not contain fulltextBarrier membranes are used in periodontal applications with the aim of...
Bioactive glass nanoparticles (BG-NPs) capable of inducing apatite precipitation upon immersion in s...
Nowadays, guided tissue regeneration (GTR) research is centred in the development of composite bioab...
In the current study, a bioactive glass (BG) powder was prepared by sol-gel technique in the system ...
International audienceBone tissue engineering is gaining popularity as an alternative method for the...
Despite the remarkable osteoconductive properties attributed to bioactive glass since its discovery,...
The functionality of tissue engineering scaffolds can be enhanced by localized delivery of appropria...
A chitosan/poly(L-lactic acid) (PLLA) multilayered membrane was prepared for the purpose of guided t...
One of the important research topics in tissue engineering is the development of optimum three-dimen...
Copyright © 2014 K. Nazemi et al. This is an open access article distributed under the Creative Comm...
One of the important research topics in tissue engineering is the development of optimum three-dimen...
Recent studies in tissue engineering have highlighted the importance of the development of composite...
Efforts in tissue engineering aim at creating scaffolds that mimic the physiological environment wit...
[EN] We have developed a microporous hybrid membrane that combines polylactic acid, chitosan nanopar...
Poly(L-lactic acid)/Chitosan (PLLA/CHT) hybrid scaffolds were prepared by depositing CHT onto the po...
Item does not contain fulltextBarrier membranes are used in periodontal applications with the aim of...
Bioactive glass nanoparticles (BG-NPs) capable of inducing apatite precipitation upon immersion in s...
Nowadays, guided tissue regeneration (GTR) research is centred in the development of composite bioab...
In the current study, a bioactive glass (BG) powder was prepared by sol-gel technique in the system ...
International audienceBone tissue engineering is gaining popularity as an alternative method for the...
Despite the remarkable osteoconductive properties attributed to bioactive glass since its discovery,...
The functionality of tissue engineering scaffolds can be enhanced by localized delivery of appropria...
A chitosan/poly(L-lactic acid) (PLLA) multilayered membrane was prepared for the purpose of guided t...
One of the important research topics in tissue engineering is the development of optimum three-dimen...
Copyright © 2014 K. Nazemi et al. This is an open access article distributed under the Creative Comm...
One of the important research topics in tissue engineering is the development of optimum three-dimen...
Recent studies in tissue engineering have highlighted the importance of the development of composite...
Efforts in tissue engineering aim at creating scaffolds that mimic the physiological environment wit...