Minoda Masahiko, Otsubo Tomomi, Yamamoto Yohei, Zhao Jianxin, Honda Yoshitomo, Tanaka Tomonari, Motoyanagi Jin
Faculty of Molecular Chemistry and Engineering, Graduate School of Science and Technology, Kyoto Institute of Technology, Matsugasaki, Sakyo-ku, Kyoto 606-8585, Japan.
Department of Orthodontics, Osaka Dental University, 8-1, Kuzuhahanazonocho, Hirakata, Osaka 573-1121, Japan.
Polymers (Basel). 2019 Jan 5;11(1):70. doi: 10.3390/polym11010070.
This study concerned the controlled synthesis of periodic glycopolymers by reversible addition-fragmentation chain transfer (RAFT) copolymerization. To this end, maltose- and lactose-substituted vinyl ethers (MalVE and LacVE, respectively) and maltose-substituted maleimide (MalMI) were newly synthesized. RAFT copolymerization of MalVE and ethyl maleimide (EtMI) (monomer feed ratio: MalVE:EtMI = 1:1) afforded periodic glycopolymers (poly(MalVE--EtMI)) consisting of major parts of alternating structure (-(MalVE-EtMI)-) and a small part of consecutive sequences of EtMI (⁻EtMI-EtMI-). Occurrence of the latter sequences was caused by the homopolymerizability of maleimide under the present polymerization condition, and the formation of the consecutive sequences of EtMI was successfully suppressed by varying the monomer feed ratio. RAFT copolymerization of LacVE and EtMI was also found to proceed and similarly yielded periodic glycopolymers (poly(LacVE--EtMI)). Moreover, RAFT copolymerization of LacVE and MalMI (monomer feed ratio: LacVE:MalMI = 1:1) was performed to give copolymers (poly(LacVE--MalMI)) having composition ratio of LacVE/MalMI ≈ 36/64. The resultant periodic glycopolymers poly(MalVE--EtMI) and poly(LacVE--EtMI) were subjected to lectin binding assay using concanavalin A and peanut agglutinin, exhibiting the glycocluster effect. Moreover, these glycopolymers obtained from the copolymerization of VE and MI were found to be non-cytotoxic.
本研究涉及通过可逆加成-断裂链转移(RAFT)共聚法对周期性糖聚合物进行可控合成。为此,新合成了麦芽糖和乳糖取代的乙烯基醚(分别为MalVE和LacVE)以及麦芽糖取代的马来酰亚胺(MalMI)。MalVE与乙基马来酰亚胺(EtMI)的RAFT共聚(单体进料比:MalVE:EtMI = 1:1)得到了周期性糖聚合物(聚(MalVE-EtMI)),其主要部分为交替结构(-(MalVE-EtMI)-),还有一小部分为EtMI的连续序列(⁻EtMI-EtMI-)。后一种序列的出现是由于在当前聚合条件下马来酰亚胺的均聚性,通过改变单体进料比成功抑制了EtMI连续序列的形成。还发现LacVE与EtMI的RAFT共聚也能进行,并同样得到周期性糖聚合物(聚(LacVE-EtMI))。此外,进行了LacVE与MalMI的RAFT共聚(单体进料比:LacVE:MalMI = 1:1),以得到LacVE/MalMI组成比约为36/64的共聚物(聚(LacVE-MalMI))。所得的周期性糖聚合物聚(MalVE-EtMI)和聚(LacVE-EtMI)使用伴刀豆球蛋白A和花生凝集素进行凝集素结合测定,表现出糖簇效应。此外,发现这些由VE和MI共聚得到的糖聚合物无细胞毒性。