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Tailoring Nano-Porous Surface of Aligned Electrospun Poly (L-Lactic Acid) Fibers for Nerve Tissue Engineering.
Xuan, Hongyun; Li, Biyun; Xiong, Feng; Wu, Shuyuan; Zhang, Zhuojun; Yang, Yumin; Yuan, Huihua.
Afiliação
  • Xuan H; School of Life Sciences, Nantong University, Nantong 226019, China.
  • Li B; School of Life Sciences, Nantong University, Nantong 226019, China.
  • Xiong F; School of Life Sciences, Nantong University, Nantong 226019, China.
  • Wu S; School of Life Sciences, Nantong University, Nantong 226019, China.
  • Zhang Z; School of Life Sciences, Nantong University, Nantong 226019, China.
  • Yang Y; Key Laboratory of Neuroregeneration of Jiangsu and Ministry of Education, Co-Innovation Center of Neuroregeneration, Nantong University, Nantong 226001, China.
  • Yuan H; School of Life Sciences, Nantong University, Nantong 226019, China.
Int J Mol Sci ; 22(7)2021 Mar 29.
Article em En | MEDLINE | ID: mdl-33805568
ABSTRACT
Despite the existence of many attempts at nerve tissue engineering, there is no ideal strategy to date for effectively treating defective peripheral nerve tissue. In the present study, well-aligned poly (L-lactic acid) (PLLA) nanofibers with varied nano-porous surface structures were designed within different ambient humidity levels using the stable jet electrospinning (SJES) technique. Nanofibers have the capacity to inhibit bacterial adhesion, especially with respect to Staphylococcus aureus (S. aureus). It was noteworthy to find that the large nano-porous fibers were less detrimentally affected by S. aureus than smaller fibers. Large nano-pores furthermore proved more conducive to the proliferation and differentiation of neural stem cells (NSCs), while small nano-pores were more beneficial to NSC migration. Thus, this study concluded that well-aligned fibers with varied nano-porous surface structures could reduce bacterial colonization and enhance cellular responses, which could be used as promising material in tissue engineering, especially for neuro-regeneration.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Engenharia Tecidual / Nanofibras / Células-Tronco Neurais / Antibacterianos Idioma: En Ano de publicação: 2021 Tipo de documento: Article País de afiliação: China

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Engenharia Tecidual / Nanofibras / Células-Tronco Neurais / Antibacterianos Idioma: En Ano de publicação: 2021 Tipo de documento: Article País de afiliação: China