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      Electrospinning of PCL/PVP blends for tissue engineering scaffolds.

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          Abstract

          Currently, one of the main drawbacks of using poly(ε-caprolactone) in the biomedical and pharmaceutical fields is represented by its low biodegradation rate. To overcome this limitation, electrospinning of PCL blended with a water-soluble poly(N-vinyl-2-pyrrolidone) was used to fabricate scaffolds with tunable fiber surface morphology and controllable degradation rates. Electrospun scaffolds revealed a highly immiscible blend state. The incorporated PVP phase was dispersed as inclusions within the electrospun fibers, and then easily extracted by immersing them in cell culture medium, exhibiting nanoporosity on the fiber surface. As a striking result, nanoporosity facilitated not only fiber biodegradation rates, but also improved cell attachment and spreading on the blend electrospun scaffolds. The present findings demonstrate that simultaneous electrospinning technique for PCL with water-soluble PVP provides important insights for successful tuning biodegradation rate for the PCL electrospun scaffolds but not limited to expand other high valuable biocompatible polymers for the future biomedical applications, ranging from tissue regeneration to controlled drug delivery.

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          Author and article information

          Journal
          J Mater Sci Mater Med
          Journal of materials science. Materials in medicine
          1573-4838
          0957-4530
          Jun 2013
          : 24
          : 6
          Affiliations
          [1 ] Group of NanoMedicine, CEIT and TECNUN-University of Navarra, Paseo de Mikeletegi 48, 20009 San Sebastian, Spain. gmkim@ceit.es
          Article
          10.1007/s10856-013-4893-6
          23468162
          6c65279a-f66a-4440-b501-ba97c3d08dd3
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