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六臂星形聚(δ-戊内酯)-嵌段-甲氧基聚(乙二醇)共聚物的合成与表征

Synthesis and characterization of six-arm star poly(delta-valerolactone)-block-methoxy poly(ethylene glycol) copolymers.

作者信息

Zeng Faquan, Lee Helen, Chidiac Marc, Allen Christine

机构信息

Department of Pharmaceutical Sciences, University of Toronto, 19 Russell St., Toronto, Ontario, Canada M5S 2S2.

出版信息

Biomacromolecules. 2005 Jul-Aug;6(4):2140-9. doi: 10.1021/bm050124+.

Abstract

Novel amphiphilic six-arm star diblock copolymers based on biocompatible and biodegradable poly(delta-valerolactone) (PVL) and methoxy poly(ethylene glycol) (MePEG) were synthesized by a two-step process. First, the hydrophobic star-shaped PVL with hydroxyl terminated functional groups was synthesized using a multifunctional alcohol, dipentaerythritol (DPE), as the initiator and fumaric acid as the catalyst. The amphiphilic six-arm star copolymer of poly(delta-valerolactone)-b-methoxy poly(ethylene glycol), (PVL-b-MePEG)(6), was then synthesized by coupling the hydroxyl terminated six-arm PVL homopolymer with alpha-methoxy-omega-chloroformate-poly(ethylene glycol) (MePEG-COCl). (1)H NMR and GPC analyses confirmed the successful synthesis of star-shaped copolymers with predicted compositions and narrow molecular weight distributions. DSC analysis revealed that the glass transition temperatures of the star PVL homopolymers with M(n) between 5000 and 49 000 are not dependent on their molecular weights, whereas the melting temperatures of both the PVL homopolymers and the amphiphilic (PVL-b-MePEG)(6) copolymers increase with an increase in the PVL molecular weight. Micelles were prepared from the (PVL-b-MePEG)(6) copolymers via the dialysis method and found to have effective mean diameters ranging from 10 to 45 nm, depending on the copolymer composition. In addition, the (PVL-b-MePEG)(6) copolymers having lower PVL content were found to form micelles with a narrow monomodal size distribution, whereas the copolymers having higher PVL content tended to form aggregates with a bimodal size distribution. The noncytotoxicity of the copolymers was also confirmed in CHO-K1 fibroblast cells using a cell viability assay, indicating that the (PVL-b-MePEG)(6) copolymers are suitable for biomedical applications such as drug delivery.

摘要

基于生物相容性和可生物降解的聚(δ-戊内酯)(PVL)和甲氧基聚(乙二醇)(MePEG)的新型两亲性六臂星形二嵌段共聚物通过两步法合成。首先,使用多官能醇二季戊四醇(DPE)作为引发剂,富马酸作为催化剂,合成了具有羟基封端官能团的疏水性星形PVL。然后,通过将羟基封端的六臂PVL均聚物与α-甲氧基-ω-氯甲酸酯-聚(乙二醇)(MePEG-COCl)偶联,合成了聚(δ-戊内酯)-b-甲氧基聚(乙二醇)的两亲性六臂星形共聚物(PVL-b-MePEG)(6)。1H NMR和GPC分析证实成功合成了具有预测组成和窄分子量分布的星形共聚物。DSC分析表明,Mn在5000至49000之间的星形PVL均聚物的玻璃化转变温度不依赖于其分子量,而PVL均聚物和两亲性(PVL-b-MePEG)(6)共聚物的熔点均随PVL分子量的增加而升高。通过透析法由(PVL-b-MePEG)(6)共聚物制备胶束,发现其有效平均直径范围为10至45nm,具体取决于共聚物组成。此外,发现具有较低PVL含量的(PVL-b-MePEG)(6)共聚物形成具有窄单峰尺寸分布的胶束,而具有较高PVL含量的共聚物倾向于形成具有双峰尺寸分布的聚集体。使用细胞活力测定法在CHO-K1成纤维细胞中也证实了共聚物的无细胞毒性,表明(PVL-b-MePEG)(6)共聚物适用于药物递送等生物医学应用。

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