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Correction

Correction

This article refers to:
Graphene oxide-PLGA hybrid nanofibres for the local delivery of IGF-1 and BDNF in spinal cord repair

Article title: Graphene oxide-PLGA hybrid nanofibres for the local delivery of IGF-1 and BDNF in spinal cord repair

Authors: Pan S, Qi Z, Li Q, Ma Y, Fu C, Zheng S, Kong W, Liu Q and Yang X

Journal: Artificial Cells, Nanomedicine, and Biotechnology

Bibliometrics: Volume 47, Number 01, pages 651–664

DOI: https://doi.org/10.1080/21691401.2019.1575843

When the above article was first published online, there were some errors in the article. was water contact angle of PLGA/GO membrane but not PLGA membrane. were mistakenly presented with incorrected images.

The correct images were shown as below:

This article has now been corrected as the wrong figures have been replaced with the correct figures in the article.

Figure 3. Water contact angle of pure PLGA nanofibres (A) and PLGA/GO nanofibres (B). (C) Average water contact angle of PLGA and PLGA/GO nanofibers. (*, p < .05, n = 4).

Figure 3. Water contact angle of pure PLGA nanofibres (A) and PLGA/GO nanofibres (B). (C) Average water contact angle of PLGA and PLGA/GO nanofibers. (*, p < .05, n = 4).

Figure 10. Longitudinal HE staining of spinal cord tissue after 4 weeks post-operation. (A) PLGA group. (B) PLGA/GO group. (C) PLGA/GO/IGF group. (D) PLGA/GO/BDNF group. (E) PLGA/GO/IGF/BDNF group. The Scale bar was 500 mm. (F) Quantification of the cavity areas of spinal cord tissue.

Figure 10. Longitudinal HE staining of spinal cord tissue after 4 weeks post-operation. (A) PLGA group. (B) PLGA/GO group. (C) PLGA/GO/IGF group. (D) PLGA/GO/BDNF group. (E) PLGA/GO/IGF/BDNF group. The Scale bar was 500 mm. (F) Quantification of the cavity areas of spinal cord tissue.