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基于聚乙二醇和功能化聚己内酯的三嵌段共聚物的温敏和 pH 响应性组装的特性研究。

Characterization of the thermo- and pH-responsive assembly of triblock copolymers based on poly(ethylene glycol) and functionalized poly(ε-caprolactone).

机构信息

Faculty of Pharmacy and Pharmaceutical Sciences, University of Alberta, Edmonton, Alberta, Canada T6G 2N8.

出版信息

Acta Biomater. 2011 Oct;7(10):3708-18. doi: 10.1016/j.actbio.2011.05.035. Epub 2011 Jun 6.

Abstract

A series of novel triblock copolymers composed of poly(ethylene glycol) (PEG) and poly(ε-caprolactone)-bearing benzyl carboxylate on the α-carbon of ε-caprolatone were synthesized through ring opening polymerization of α-benzyl carboxylate-ε-caprolactone by dihydroxylated PEG. The debenzylation of the synthesized copolymer, i.e., poly(α-benzyl carboxylate-ε-caprolactone)-b-PEG-b-poly(α-benzyl-carboxylate-ε-caprolactone) (PBCL-b-PEG-b-PBCL), in the presence of hydrogen gas using different levels of catalyst, was carried out to achieve copolymers with various degrees of free α-carboxyl to α-benzyl-ε-carboxylate groups on the hydrophobic block. Incomplete reduction of PBCL led to the formation of poly(α-carboxyl-co-benzyl caboxylate-ε-caprolactone) PCBCL in the lateral blocks at 27%, 50% and 75% carboxyl group substitution. The molecular weight and polydispersity of the resultant copolymers were estimated by (1)H NMR and MALDI-TOF. Synthesized triblock copolymers formed stable micelles at low concentrations (critical micellar concentrations (CMC) of 0.34-12.5 μg ml(-1)). Polymers containing carboxyl groups in their structure showed a pH-dependent increase in CMC. As the pH was raised from 4.0 to 9.0, CMC increased from 0.76 to 1.06 μg ml(-1), for 27% debenzylated polymer, and from 1.30 to 2.20 μg ml(-1), for 50% debenzylated polymers. In contrast, the CMC in polymers without carboxyl group was independent of pH (0.55 μg ml(-1)). Different changes in micellar size as a function of temperature was observed depending on the degree of debenzylation on the PCBCL block: polymers with 27% degree of debenzylation illustrated a rise in micelle size from ~38 to 55 nm as the temperature increased above 29°C, while polymers with 50% debenzylation showed a decrease in micelle size, from ~52 to 38 nm, with increase in temperature. A similar trend was observed at pH 4.5, 7.0 and 9.0 for polymers containing carboxyl groups on their hydrophobic block. The temperature for the onset of size change and/or the extent of aggregate size change was found to be dependent on the pH of the medium and the polymer concentration. The results point to a potential for the formation of thermo- and pH-responsive micelles from triblock copolymers of PEG and carboxyl substituted caprolactone. The results also imply a potential for the 27% debenzylated PCBCL-b-PEG-b-PCBCL copolymers to form a biodegradable thermoreversible gel with a transition temperature a few degrees below 37°C.

摘要

通过二羟基化聚乙二醇(PEG)引发α-苯甲酰基-ε-己内酯的开环聚合,合成了一系列新型的嵌段共聚物,该共聚物由聚乙二醇(PEG)和聚(ε-己内酯)以及ε-己内酯的α-碳上的苄基羧酸酯组成。在氢气存在下,使用不同水平的催化剂对合成的共聚物,即聚(α-苯甲酰基-ε-己内酯)-b-聚乙二醇-b-聚(α-苯甲酰基-ε-己内酯)(PBCL-b-PEG-b-PBCL)进行脱苄基化,以在疏水性嵌段上获得具有不同程度游离α-羧基与α-苄基-ε-羧基的共聚物。由于 PBCL 的不完全还原,在 27%、50%和 75%的羧基取代度下,在侧链形成了聚(α-羧基-co-苄基羧酸盐-ε-己内酯)PCBCL。通过(1)H NMR 和 MALDI-TOF 对所得共聚物的分子量和多分散性进行了估计。合成的嵌段共聚物在低浓度(临界胶束浓度(CMC)为 0.34-12.5 μg ml(-1))下形成稳定的胶束。含有羧基的聚合物表现出与 pH 值有关的 CMC 增加。当 pH 值从 4.0 升高到 9.0 时,27%脱苄基聚合物的 CMC 从 0.76 增加到 1.06 μg ml(-1),50%脱苄基聚合物的 CMC 从 1.30 增加到 2.20 μg ml(-1)。相比之下,不含羧基的聚合物的 CMC 与 pH 值无关(0.55 μg ml(-1))。根据 PCBCL 嵌段上脱苄基的程度,观察到不同的胶束尺寸随温度的变化:具有 27%脱苄基程度的聚合物在温度高于 29°C 时,胶束尺寸从38 增加到 55nm,而具有 50%脱苄基的聚合物的胶束尺寸从52 减小到 38nm,随着温度的升高。在含有疏水嵌段上羧基的聚合物中,在 pH 4.5、7.0 和 9.0 时观察到类似的趋势。尺寸变化的起始温度和/或聚集尺寸变化的程度取决于介质的 pH 值和聚合物浓度。结果表明,PEG 和羧基取代的己内酯的嵌段共聚物有可能形成热响应和 pH 响应的胶束。结果还表明,27%脱苄基的 PCBCL-b-PEG-b-PCBCL 共聚物有可能形成一种生物可降解的温敏可逆凝胶,其转变温度略低于 37°C。

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