Impact of Antifouling PEG Layer on the Performance of Functional Peptides in Regulating Cell Behaviors

Cell adhesive and other functional peptides (such as RGD, KRSR, YIGSR, VAPG, and BMP-2 peptides) are extensively studied and utilized in tissue engineering scaffolds and biomedical devices to modulate cell functions. Though PEG is frequently used as the antifouling layer, it is unclear how it affect...

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Published inJournal of the American Chemical Society Vol. 141; no. 42; pp. 16772 - 16780
Main Authors Chen, Qi, Yu, Shan, Zhang, Donghui, Zhang, Wenjing, Zhang, Haodong, Zou, Jingcheng, Mao, Zhengwei, Yuan, Yuan, Gao, Changyou, Liu, Runhui
Format Journal Article
LanguageEnglish
Published United States American Chemical Society 23.10.2019
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Summary:Cell adhesive and other functional peptides (such as RGD, KRSR, YIGSR, VAPG, and BMP-2 peptides) are extensively studied and utilized in tissue engineering scaffolds and biomedical devices to modulate cell functions. Though PEG is frequently used as the antifouling layer, it is unclear how it affects the performance of functional peptides. By analyzing the impact of PEG at short (OEG4), medium (OEG8), and long chain length (PEG2K), we reveal that PEG chain length is critical and a medium-length PEG enables functional peptides to display their optimal and genuine functions in cell adhesion, migration, and differentiation by providing excellent antifouling to minimize background noise of unwanted cell adhesion and high enough surface density of functional peptides. Our result provides new avenues for maximizing the genuine functions of peptides. This study also provides a solution to prevent the heterogeneous and even divergent results caused by inappropriate choice of antifouling PEG and provides a general guidance in identifying new functional peptides.
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ISSN:0002-7863
1520-5126
1520-5126
DOI:10.1021/jacs.9b07105