基于内部合成的含乙二醇ABC三嵌段共聚物及其与二嵌段混合物的热凝胶配方

IF 6.8 2区 化学 Q1 POLYMER SCIENCE European Polymer Journal Pub Date : 2025-03-19 Epub Date: 2025-02-09 DOI:10.1016/j.eurpolymj.2025.113816
Lezhi Wang, Theoni K. Georgiou
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引用次数: 0

摘要

本研究研究了一系列以乙二醇(EG)为基础的共聚单体与不同长度的PEG垂链合成的ABC三嵌段三元共聚物的热响应性能。采用序贯基团转移聚合(GTP)法制备了目标摩尔质量为8100 g/mol的三元共聚物,其组成具有一定的多样性。具体来说,甲氧基甲基丙烯酸乙二醇酯(MEGMA, B区)的疏水含量在25%到55% w/w之间变化,并对热响应性低聚(乙二醇)甲基丙烯酸甲醚酯(OEGMA,平均摩尔质量为300 g/mol, A区)和二(乙二醇)甲基丙烯酸甲醚酯(DEGMA, C区)进行相应的调整,得到16种不同的组成。浊度法测定了云点温度,动态光散射法(DLS)评价了胶束自组装行为。在16种三元共聚物中,有三种表现出形成热凝胶的能力。将这些三元聚合物与高性能的二嵌段共聚物混合,可以实现可调的溶胶-凝胶转变,并确定了在生理温度下促进热凝胶形成的特定浓度。值得注意的是,M1聚合物溶液——三嵌段三元聚合物和二嵌段三元聚合物的混合物,均含有50% w/w MEGMA含量——表现出优异的荧光素钠模型药物的缓释,优于行业标准Pluronic F127。这项研究强调了在这些新型三嵌段三元聚合物中,平衡亲水性和疏水性对于有效的溶胶-凝胶过渡的重要性,并提出了一种简单而有效的策略来多样化聚合物混合物,以微调凝胶范围并增强多功能性。
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Thermogelling Formulations based on In-House synthesized ethylene Glycol-Containing ABC triblock copolymers and their mixtures with diblocks
This study investigated the thermoresponsive properties of a novel series of ABC triblock terpolymers synthesized from ethylene glycol (EG)-based comonomers with varying lengths of PEG pendant chains. The terpolymers, with a targeted molar mass of 8100 g/mol, were synthesized using sequential Group Transfer Polymerization (GTP) and featured a range of compositions. Specifically, the hydrophobic content of methoxy ethylene glycol methacrylate (MEGMA, block B) was varied between 25 % and 55 % w/w, with corresponding adjustments to the thermoresponsive oligo(ethylene glycol) methyl ether methacrylate (OEGMA with an average molar mass of 300 g/mol, block A) and di(ethylene glycol) methyl ether methacrylate (DEGMA, block C), resulting in 16 distinct compositions. The cloud point temperatures were determined via turbidimetry, while dynamic light scattering (DLS) was employed to assess micellar self-assembly behavior. Of the 16 terpolymers, three demonstrated the ability to form thermogels. Blending these terpolymers with a high-performing diblock copolymer enabled tunable sol-to-gel transitions and identified a specific concentration that facilitated thermogel formation at physiological temperatures. Notably, the M1 polymer solution—a mixture of a triblock terpolymer and its diblock counterpart, both with 50 % w/w MEGMA content—exhibited superior sustained release of the sodium fluorescein model drug, outperforming the industry-standard Pluronic F127. This study underscores the importance of balancing hydrophilicity and hydrophobicity for effective sol–gel transitions in these novel triblock terpolymers and presents a straightforward yet effective strategy for diversifying polymer mixtures to fine-tune the gelation range and enhance versatility.
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来源期刊
European Polymer Journal
European Polymer Journal 化学-高分子科学
CiteScore
9.90
自引率
10.00%
发文量
691
审稿时长
23 days
期刊介绍: European Polymer Journal is dedicated to publishing work on fundamental and applied polymer chemistry and macromolecular materials. The journal covers all aspects of polymer synthesis, including polymerization mechanisms and chemical functional transformations, with a focus on novel polymers and the relationships between molecular structure and polymer properties. In addition, we welcome submissions on bio-based or renewable polymers, stimuli-responsive systems and polymer bio-hybrids. European Polymer Journal also publishes research on the biomedical application of polymers, including drug delivery and regenerative medicine. The main scope is covered but not limited to the following core research areas: Polymer synthesis and functionalization • Novel synthetic routes for polymerization, functional modification, controlled/living polymerization and precision polymers. Stimuli-responsive polymers • Including shape memory and self-healing polymers. Supramolecular polymers and self-assembly • Molecular recognition and higher order polymer structures. Renewable and sustainable polymers • Bio-based, biodegradable and anti-microbial polymers and polymeric bio-nanocomposites. Polymers at interfaces and surfaces • Chemistry and engineering of surfaces with biological relevance, including patterning, antifouling polymers and polymers for membrane applications. Biomedical applications and nanomedicine • Polymers for regenerative medicine, drug delivery molecular release and gene therapy The scope of European Polymer Journal no longer includes Polymer Physics.
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