Cell adhesion behavior of poly(l‐lactide‐co‐glycolide)‐poly(1,5‐dioxepan‐2‐one) random multiblock copolymers

Author:

Jikei Mitsutoshi1ORCID,Xoan Vu Thi1,Tanaka Nozomi1,Matsumoto Kazuya1,Honda Haruka2,Hikida Masaki2,Ueki Shigeharu3

Affiliation:

1. Department of Materials Engineering Graduate School of Engineering Science, Akita University Akita Japan

2. Department of Life Science Graduate School of Engineering Science, Akita University Akita Japan

3. Department of General Internal Medicine and Clinical Laboratory Medicine Graduate School of Medicine, Akita University Akita Japan

Abstract

AbstractAlthough bioabsorbable polymers are promising implant materials, implanting hydrophobic polymers induces platelet adhesions and subsequent thrombus formation. We recently reported that a multiblock copolymer composed of poly(l‐lactide‐co‐glycolide) (PLGA) and poly(1,5‐dioxepan‐2‐one) (PDXO) exhibited antiplatelet adhesive behavior. In this study, the cell adhesion behaviors of PLGA and PDXO random multiblock copolymers (PLGA−PDXO RMBCs) were examined. All the RMBCs showed antiplatelet adhesion behavior, and the copolymers containing 40 or 51 mol% of the PDXO component showed good antiplatelet adhesive behavior. Good culture behavior was observed for HeLa cells, but human umbilical vein endothelial cells (HUVECs) proliferation was poor on PLGA−PDXO RMBC surfaces. The cell attachment inhibition studies revealed that both integrin‐dependent and integrin‐independent interactions worked for HeLa cell culture, whereas only integrin‐dependent interactions played an important role for HUVEC culture proliferation on copolymer surfaces. The findings of this study revealed the unique cell‐selective adhesion behavior of PDXO containing multiblock polymers—being nonadhesive to platelets and HUVECs, and adhesive to HeLa cells.

Funder

Japan Agency for Medical Research and Development

Publisher

Wiley

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