Effects of iRGD conjugation density on the and properties of cylindrical polymer brushes

iRGD can significantly improve the tumor accumulation and tumor penetration of nanomaterials. However, it still remains unclear how far iRGD can enhance the properties of nanomaterials when its conjugation density is maximized. Herein, we synthesized three types of cylindrical polymer brushes (CPBs)...

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Veröffentlicht in:Biomaterials science 2022-06, Vol.1 (12), p.3236-3244
Hauptverfasser: Yin, Changfeng, Xiao, Panpan, Liang, Mengke, Li, Jia, Sun, Ying, Jiang, Xiqun, Wu, Wei
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container_issue 12
container_start_page 3236
container_title Biomaterials science
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creator Yin, Changfeng
Xiao, Panpan
Liang, Mengke
Li, Jia
Sun, Ying
Jiang, Xiqun
Wu, Wei
description iRGD can significantly improve the tumor accumulation and tumor penetration of nanomaterials. However, it still remains unclear how far iRGD can enhance the properties of nanomaterials when its conjugation density is maximized. Herein, we synthesized three types of cylindrical polymer brushes (CPBs) with 0%, 50% and 100% of side chains terminated by iRGD, which were named CPBs-1, CPBs-2 and CPBs-3, respectively, and studied the effects of iRGD density on their cellular uptake, and tumor targeting ability and tumor permeability. It was demonstrated that compared with the iRGD-free CPBs-1, the cellular uptake of CPBs-3 was enhanced 5 times and their tumor accumulation was enhanced twice. The penetration depth of CPBs-3 in three-dimensional multicellular spheroids was larger than 100 μm. Our results provide useful information for the design of active tumor targeting nanomaterials as therapeutics or contrast agents. Cylindrical polymer brushes with different iRGD conjugation densities were synthesized and iRGD density effects on their biological properties were obtained.
doi_str_mv 10.1039/d2bm00468b
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title Effects of iRGD conjugation density on the and properties of cylindrical polymer brushes
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