Volume 1, Issue 4 (11-2016)                   hrjbaq 2016, 1(4): 231-238 | Back to browse issues page



DOI: 10.18869/acadpub.hrjbaq.1.4.231

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Karbalaeimahdi A, Javadi H, Ghollasi M, Kamali M, Salimi A. Design and Fabrication of Poly-Aniline/Poly-Caprolactone/Gelatin Composite Nano-Scaffolds and Study of Biocompatibility of Nano-Fibers. hrjbaq. 2016; 1 (4) :231-238
URL: http://hrjbaq.ir/article-1-77-en.html

Nanobiotechnology Research Center, Baqiyatallah University of Medical Sciences, Tehran, Iran , salimiali@bmsu.ac.ir
Abstract:   (1746 Views)

Introduction: Tissue engineering approach using the combination of stem cells and nanofibrous scaffolds has attracted the interest of research community for regeneration applications.

Materials and Methods: In this study, PANi/PCL/Gel composite nanofibrous scaffold was fabricated by electrospinning. Plasma treatment technique was used for the surface modification of nanofibers. Contact angle technique and scanning electron microscopy (SEM) were used for characterization of electrospun nanofibers. Growth and proliferation of the cells as well as the biocompatibility of nanoscaffolds were evaluated by MTT assay.

Results: The results of the contact angle technique showed the surface modification of electrospun nanofibrous scaffolds. The MTT results showed that the synthesized nanofibers did not have any toxic effect and promoted the growth and proliferation of fibroblast cells. SEM images confirmed the adhesion and biocompatibility of nanofibers.

Conclusions: Our results suggested PANi/PCL/Gel electrospun nanofibers as a biocompatible composite for the regenerative medicine.

Full-Text [PDF 755 kb]   (750 Downloads)    
Type of Study: Research | Subject: Special
Received: 2016/09/10 | Revised: 2016/12/7 | Accepted: 2016/10/4 | Published: 2016/11/21 | ePublished: 2016/11/21

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