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An applicable electrospinning process for fabricating a mechanically improved nanofiber mat
Authors:Geun Hyung Kim  Houkseop Han  Jong Ha Park  Wan Doo Kim
Affiliation:1. Department of Future Technology, Korea Institute of Machinery and Materials, Yuseong‐gu, Daejeon 305‐343, KoreaDepartment of Future Technology, Korea Institute of Machinery and Materials, Yuseong‐gu, Daejeon 305‐343, Korea;2. Department of Future Technology, Korea Institute of Machinery and Materials, Yuseong‐gu, Daejeon 305‐343, Korea
Abstract:Engineered polymer scaffolds play an important role in tissue engineering. An ideal scaffold should have good mechanical properties and provide a biologically functional implant site. Considering their large surface area and high porosity, nanofibers have good potential as biomimetic scaffolds. However, the main shortcomings of scaffolds consisting of nanofibers are their mechanical inability to sustain a stress environment for neotissues and shape‐ability to form a variety of shapes and sizes. In this study, we produced design‐based poly (ε‐carprolactone) (PCL) nanofiber mats using an electrospinning method with various auxiliary electrodes and an xy moving system. To achieve stable initial solution at a nozzle tip of the electrospinning, various types of auxiliary electrodes were introduced. To characterize the effect of the electrodes in the electric‐field distribution near the nozzle tip, we calculated the electric field concentration factor and compared it with the experimental results. The nanofiber mat produced using the moving xy target system demonstrated orthotropic mechanical properties due to the fiber orientation, and human dermal fibroblasts seeded on the structure tended to grow according to nanofiber orientation. POLYM. ENG. SCI., 47:707–712, 2007. © 2007 Society of Plastics Engineers.
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