1. Sustained Immobilization of Growth Factor Proteins Based on Functionalized Parylenes
- Author
-
Jyun-Ting Wu, Chao-Wei Huang, Chih-Yeh Lin, Ting-Pi Sun, Chia-Jie Chen, Hsien-Yeh Chen, Jiashing Yu, Yung-Chih Chen, and Chiao-Tzu Su
- Subjects
chemistry.chemical_classification ,Bioconjugation ,Materials science ,Polymers ,Growth factor ,medicine.medical_treatment ,Biomaterial ,Mesenchymal Stem Cells ,Peptide ,Xylenes ,Bone morphogenetic protein ,Vascular endothelial growth factor ,chemistry.chemical_compound ,Biochemistry ,chemistry ,medicine ,Animals ,Intercellular Signaling Peptides and Proteins ,Surface modification ,Cattle ,General Materials Science ,Cells, Cultured ,Conjugate - Abstract
Protein molecules immobilized on biomaterial surfaces are performed based on oriented conjugation or replaced mimicking peptides. The sustainable immobilization of growth factor proteins using functionalized parylene coatings is demonstrated in this study. Site-specific and nonspecific immobilization approaches are realized to conjugate bone morphogenetic protein (BMP-2). The binding affinities and conformational changes of BMP-2 are confirmed by QCM and SPR characterizations. Osteoinduction of stem cells is examined by ALP activity on the BMP-2 modified surfaces. Finally, immobilizations and equally sustained biological functions of vascular endothelial growth factor (VEGF) and a mimicking peptide of KLTWQELYQLKYKG (QK) are also examined and confirmed.
- Published
- 2014
- Full Text
- View/download PDF