Electrospun Hyaluronan-Gelatin Nanofibrous Matrix for Nerve Tissue Engineering

Author:

Liou Hau-Min1,Rau Lih-Rou1ORCID,Huang Chun-Chiang1,Lu Meng-Ru1,Hsu Fu-Yin12ORCID

Affiliation:

1. Institute of Bioscience and Biotechnology, National Taiwan Ocean University, Keelung 20224, Taiwan

2. Department of Life Sciences, National Taiwan Ocean University, Keelung 20224, Taiwan

Abstract

Schwann cells play a critical role in the repair of the peripheral nerve. The goal of this study was to fabricate electrospun gelatin (Gel) and hyaluronan-gelatin (HA-Gel) composite nanofibers to provide a suitable growth environment for Schwann cells. The fiber diameters of Gel, 0.5 HA-Gel, 1 HA-Gel, and 1.5 HA-Gel were 130 ± 30 nm, 294 ± 87 nm, 362 ± 129 nm, and 224 ± 54 nm, respectively. The biological performance of Gel and HA-Gel was evaluated using anin vitroculture of RT4-D6P2T rat Schwann cells. We found that the cell attachment and proliferation rates were not significantly different on these matrices. However, the Schwann cells displayed better organized F-actin on HA-Gel than on Gel. Moreover, the expression levels of several genes, including Nrg1, GFAP, and P0, were significantly higher on HA-Gel than on Gel. In addition, the levels of Nrg1 and P0 protein expression were also higher on the HA-Gel than on Gel. These results indicate that the hyaluronan-gelatin composite nanofibrous matrix could potentially be used in peripheral nerve repair.

Publisher

Hindawi Limited

Subject

General Materials Science

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