Efficient Synthesis of Crgd Functionalized Polymers as Building Blocks of Targeted Drug Delivery Systems
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Date
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Open Access Color
BRONZE
Green Open Access
Yes
OpenAIRE Downloads
3
OpenAIRE Views
4
Publicly Funded
No
Abstract
Synthetic peptides with cyclic arginine-glycine-aspartate motif (cRGD) play an important role in cell recognition and cell adhesion. cRGD-decorated soluble polymers and polymeric nanoparticles have been increasingly used for cell-specific delivery of antitumor drugs. While the significance of cRGD modification for tumor cell-specific targeting of polymeric carriers is well-accepted, straightforward procedures ensuring the fidelity of cRGD modification of polymeric systems are still lacking. Herein, we have reported an in-situ polymerization approach for synthesis of cRGD-end-functionalized well-defined polymers as potential building blocks of targeted drug delivery systems. A new cRGD peptide functionalized RAFT agent was synthesized as confirmed by MALDI-TOF and 1H NMR spectroscopy. The ability of this RAFT agent to control polymerizations was then tested using two different monomers oligoethyleneglycol acrylate and t-butyl methacrylate. The RAFT-controlled character of polymerizations and the living characteristic of the synthesized polymers were investigated through a series of kinetic experiments. The cytotoxicity and targeting capability of cRGD-functionalized OEGA polymers were investigated using cell lines expressing αvβ3 integrins at varying extents.
Description
Keywords
End-group functionalization, RAFT polymerization, Targeted drug delivery, RGD, Polymeric nanoparticles, Targeted drug delivery, RGD, RAFT polymerization, End-group functionalization, Polymeric nanoparticles
Fields of Science
02 engineering and technology, 0210 nano-technology, 01 natural sciences, 0104 chemical sciences
Citation
Thankappan, H., Zelçak, A., Taykoz, D., and Bulmuş, V. (2018). Efficient synthesis of cRGD functionalized polymers as building blocks of targeted drug delivery systems. European Polymer Journal, 103, 421-432. doi:10.1016/j.eurpolymj.2018.04.025
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OpenCitations Citation Count
5
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Volume
103
Issue
Start Page
421
End Page
432
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CrossRef : 5
Scopus : 6
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Mendeley Readers : 15
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6
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5
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Page Views
982
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Downloads
449
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