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首页> 外文期刊>ACS Omega >Facile Strategies to Synthesize Dual Location Dual Acidic pH/Reduction-Responsive Degradable Block Copolymers Bearing Acetal/Disulfide Block Junctions and Disulfide Pendants
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Facile Strategies to Synthesize Dual Location Dual Acidic pH/Reduction-Responsive Degradable Block Copolymers Bearing Acetal/Disulfide Block Junctions and Disulfide Pendants

机译:合成带有缩醛/二硫键连接点和二硫键的双位置双酸性pH /还原反应性可降解嵌段共聚物的简便策略

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We report new dual acidic pH/reduction-responsive degradable amphiphilic block copolymers featured with dual acidic pH-labile acetal linkage and a reductively-cleavable disulfide bond at the hydrophilic/hydrophobic block junction as well as pendant disulfide bonds in the hydrophobic block. Centered on the use of a macroinitiator approach, three strategies utilize the combination of atom transfer radical polymerization and reversible addition fragmentation chain transfer polymerization in a sequential or concurrent mechanism, along with facile coupling reactions. Combined structural analysis with dual-stimuli-responsive degradation investigation allows better understanding of the architectures and orthogonalities of the formed block copolymers as a diblock or a triblock copolymer. Our study presents the development of effective synthetic strategies to well-defined multifunctional amphiphilic block copolymers that exhibit dual-stimuli-responsive degradation at dual location (called the DL-DSRD strategy), thus potentially promising as nanoassemblies for effective drug delivery.
机译:我们报告了新型的双酸性pH /还原反应可降解两亲嵌段共聚物,具有双酸性pH不稳定的乙缩醛键和亲水/疏水嵌段连接处可还原裂解的二硫键以及疏水嵌段中的侧链二硫键。集中于使用大分子引发剂的方法,三种策略利用原子转移自由基聚合和可逆加成断裂链转移聚合的组合,以顺序或并发的机理,以及容易的偶联反应。将结构分析与双刺激响应降解研究相结合,可以更好地理解形成的嵌段共聚物作为二嵌段或三嵌段共聚物的结构和正交性。我们的研究提出了对定义明确的多功能两亲嵌段共聚物的有效合成策略的发展,该共聚物在双重位置均表现出双重刺激响应降解(称为DL-DSRD策略),因此有望作为纳米组件用于有效的药物递送。

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