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首页> 外文期刊>Biomacromolecules >Biodegradable Polycarbonate-b-polypeptide and Polyester-b-polypeptide Block Copolymers: Synthesis and Nanoparticle Formation Towards Biomaterials
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Biodegradable Polycarbonate-b-polypeptide and Polyester-b-polypeptide Block Copolymers: Synthesis and Nanoparticle Formation Towards Biomaterials

机译:可生物降解的聚碳酸酯-b-多肽和聚酯-b-多肽嵌段共聚物:合成和纳米粒子形成的生物材料。

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The amino poly(trimethylene carbonate)-NHt-Boc (PTMC-NHt-Boc) and poly(ε-caprolactone)-NHt-Boc (PCL-NHt-Boc) were synthesized by ring-opening polymerization (ROP) of TMC or CL and subsequently deprotected into the corresponding PTMC-NH2 and PCL-NH2. These functional homopolymers were used as macroinitiators for the ROP of γ-benzyl-L-glutamate N-carboxy anhydride (BLG), consequently, giving the respective diblock copolymers PTMC-b-PBLG and PCL-b-PBLG in almost quantitative yields. The (co)polymers have been characterized by NMR and SEC analyses. DSC and IR studies confirmed the block structure of the copolymers and highlighted a phase separation between the rigid peptide (α-helix conformation) and the more flexible polyester segments. The self-assembly and the degradation behaviors of the copolymers depended on the nature of the polyester block and on the copolymer composition. Nanoparticles obtained from PBLG block copolymers were twice smaller (R_H < 100 nm) than those formed from PTMC and PCL homopolymers. Finally, their enzymatic degradation revealed that PTMC nanoparticles degraded faster than those made of PCL.
机译:通过TMC或CL的开环聚合(ROP)合成氨基聚碳酸三亚甲基酯-NHt-Boc(PTMC-NHt-Boc)和聚(ε-己内酯)-NHt-Boc(PCL-NHt-Boc)然后脱保护成相应的PTMC-NH2和PCL-NH2。这些功能均聚物被用作γ-苄基-L-谷氨酸N-羧酸酐(BLG)的ROP的大分子引发剂,从而以几乎定量的产率得到了相应的二嵌段共聚物PTMC-b-PBLG和PCL-b-PBLG。 (共)聚合物已经通过NMR和SEC分析表征。 DSC和IR研究证实了该共聚物的嵌段结构,并强调了刚性肽段(α-螺旋构象)与更具柔性的聚酯链段之间的相分离。共聚物的自组装和降解行为取决于聚酯嵌段的性质和共聚物组成。从PBLG嵌段共聚物获得的纳米粒子(R_H <100 nm)比从PTMC和PCL均聚物形成的纳米粒子小两倍。最后,它们的酶促降解表明PTMC纳米颗粒的降解速度比PCL纳米颗粒要快。

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