1. Enhancement of Wound Healing Efficacy by Increasing the Stability and Skin‐Penetrating Property of bFGF Using 30Kc19α‐Based Fusion Protein
- Author
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Tai Hyun Park, Hyunbum Kim, Young-Hyeon An, Mihn Jeong Park, Nathaniel S. Hwang, Jina Ryu, Tae Keun Kim, G. Kate Park, Haein Lee, Hak Soo Choi, and Junghyeon Ko
- Subjects
Wound Healing ,Angiogenesis ,Basic fibroblast growth factor ,Biomedical Engineering ,Endothelial Cells ,Fusion protein ,Recombinant Proteins ,Article ,General Biochemistry, Genetics and Molecular Biology ,Cell biology ,Biomaterials ,Mice ,chemistry.chemical_compound ,medicine.anatomical_structure ,chemistry ,Dermis ,In vivo ,cardiovascular system ,medicine ,Animals ,Fibroblast Growth Factor 2 ,Protein stabilization ,Wound healing ,Skin ,Transdermal - Abstract
The instability of recombinant basic fibroblast growth factor (bFGF) is a major disadvantage for its therapeutic use and means frequent applications to cells or tissues are required for sustained effects. Originating from silkworm hemolymph, 30Kc19α is a cell-penetrating protein that also has protein stabilization properties. Herein, it was investigated whether fusing 30Kc19α to bFGF could enhance the stability and skin penetration properties of bFGF, which may consequently increase its therapeutic efficacy. The fusion of 30Kc19α to bFGF protein increased protein stability, as confirmed by ELISA. 30Kc19α-bFGF also retained the biological activity of bFGF as it facilitated the migration and proliferation of fibroblasts and angiogenesis of endothelial cells. It was discovered that 30Kc19α could improve the transdermal delivery of a small molecular fluorophore through the skin of hairless mice. Importantly, it increased the accumulation of bFGF and further facilitated its translocation into the skin through follicular routes. Finally, when applied to a skin wound model in vivo, 30Kc19α-bFGF penetrated the dermis layer effectively, which promoted cell proliferation, tissue granulation, angiogenesis, and tissue remodeling. Consequently, our findings suggest that 30Kc19α improves the therapeutic functionalities of bFGF, and would be useful as a protein stabilizer and/or a delivery vehicle in therapeutic applications.
- Published
- 2021
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