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Anionic Polymerization of an Amphiphilic Copolymer for Preparation of Block Copolymer Micelles Stabilized by π-π Stacking Interactions
Published on: October 10, 2016
Superior Antithrombogenic Syndiotactic Poly(Substituted Methylene) with Densely Packed Methoxyethyl Ends of Highly
Naruki Kurokawa1, Masamichi Kiyoura1, Hidetoshi Matsumoto2
1Department of Chemical Science and Engineering, Institute of Science Tokyo, Ookayama, Meguro-ku, Tokyo 152-8550, Japan.
Abstract:
A syndiotactic poly(substituted methylene) (st-PM) featuring (2-methoxyethoxy)carbonyl side chains (st-PMECM) exhibited considerably superior antithrombogenicity compared to a typical conventional antithrombogenic polyacrylate comprising the same side chain (i.e., poly(2-methoxyethyl acrylate); PMEA). The number of adherent platelets on the surface of the st-PMECM films was 0.8 × 103 mm-2, which was one-fourth of that on the PMEA films (3.2 × 103 mm-2), and 75% of these platelets were in the lowest activation state. During the platelet adhesion test, the st-PMECM films maintained surface wettability on the substrates, addressing the commonly observed dewetting issue in the practical applications of conventional antithrombogenic polyacrylates. In addition, the st-PMECM films retained their surface structure upon exposure to plasma, as indicated by the unchanged water contact angle over time, unlike in the case of polyacrylates. These characteristics of st-PMECM are attributed to the formation of liquid crystal structure, with the backbone arranged into a two-dimensional lattice and with the side chains stretched at an angle to the backbone axis. Owing to this structure, the methoxy moieties at the ends of the side chains were exposed to the outermost surface and hydrated with water, enabling the st-PMECM films to possess a larger amount of intermediate water on the surface than the PMEA films. The results demonstrate that st-PMs more effectively enhance the functionality of the side chains than polyacrylates featuring the same side chains, enabling st-PMECM to exhibit superior antithrombogenicity attributed to methoxy moieties. To the best of our knowledge, st-PMECM is the first inherently solid-like polymer that simultaneously exhibits outstanding antithrombogenicity.
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