Your browser doesn't support javascript.
loading
Production of fibrous polymer scaffolds for tissue engineering using an automated solution blow spinning system
Hell, Alessandra Forgatti; Simbara, Márcia Mayumi Omi; Rodrigues, Paulo; Kakazu, Danilo Akio; Malmonge, Sônia Maria.
Afiliação
  • Hell, Alessandra Forgatti; Federal University of ABC. Center for Engineering, Modeling and Applied Social Sciences. São Bernardo do Campo. BR
  • Simbara, Márcia Mayumi Omi; Dante Pazzanese Institute of Cardiology. Center for Engineering in Circulatory Assistance. São Paulo. BR
  • Rodrigues, Paulo; Federal University of ABC. Center for Engineering, Modeling and Applied Social Sciences. São Bernardo do Campo. BR
  • Kakazu, Danilo Akio; Federal University of ABC. Center for Engineering, Modeling and Applied Social Sciences. São Bernardo do Campo. BR
  • Malmonge, Sônia Maria; Federal University of ABC. Center for Engineering, Modeling and Applied Social Sciences. São Bernardo do Campo. BR
Res. Biomed. Eng. (Online) ; 34(3): 273-278, July.-Sept. 2018. tab, graf
Artigo em Inglês | LILACS, Sec. Est. Saúde SP, SESSP-IDPCPROD, Sec. Est. Saúde SP | ID: biblio-984954
Biblioteca responsável: BR79.1
Localização: BR79.1
ABSTRACT
Abstract Introduction Solution blow spinning (SBS) and airbrushing are two techniques that can be used as alternatives to electrospinning in the production of fibrous scaffolds for tissue engineering (TE). SBS seems particularly interesting due to its versatility, however, it has not been much explored and no automated SBS systems were found in the literature. Therefore, the present work aimed to develop such equipment and compare the results to those found for airbrushing, considering the same set of parameters. Methods A new SBS set up, composed of a specially designed nozzle with automated movement, a syringe pump and a compressor, was used to produce fibrous poly (ε-caprolactone) (PCL) mats. The airbrushed fibers were produced under the same conditions, and samples of both types of mats were imaged using scanning electron microscopy (SEM) to compare them in terms of microstructure and fiber diameter. Results The SBS system was robust and performed well, in terms of movement and fiber deposition. In comparison to airbrushing's, SBS mats presented different microstructural characteristics (considering the parameters used). Conclusion The biggest advantage over airbrushing may be its versatility and simple automation, which may improve sample reproducibility, especially considering scaled up processes. To further improve this apparatus, a better understanding of how process variables interfere in the microstructure is needed, as well as more sophisticated interface and operation.
Assuntos


Texto completo: Disponível Coleções: Bases de dados nacionais / Brasil Base de dados: LILACS / Sec. Est. Saúde SP / SESSP-IDPCPROD Assunto principal: Bioengenharia Idioma: Inglês Revista: Res. Biomed. Eng. (Online) Ano de publicação: 2018 Tipo de documento: Artigo Instituição/País de afiliação: Dante Pazzanese Institute of Cardiology/BR / Federal University of ABC/BR

Texto completo: Disponível Coleções: Bases de dados nacionais / Brasil Base de dados: LILACS / Sec. Est. Saúde SP / SESSP-IDPCPROD Assunto principal: Bioengenharia Idioma: Inglês Revista: Res. Biomed. Eng. (Online) Ano de publicação: 2018 Tipo de documento: Artigo Instituição/País de afiliação: Dante Pazzanese Institute of Cardiology/BR / Federal University of ABC/BR
...