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Dual Reduction/Acid-Responsive Disassembly and Thermoresponsive Tunability of Degradable Double Hydrophilic Block Copolymer

机译:双重还原/酸响应性拆卸和可降解双亲水嵌段共聚物的热反应性可调性

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摘要

We report a thermoresponsive double hydrophilic block copolymer degradable in response to dual reduction and acidic pH at dual locations. The copolymer consists of a poly(ethylene oxide) block covalently connected through an acid-labile acetal linkage with a thermoresponsive polymethacrylate block containing pendant oligo(ethylene oxide) and disulfide groups. The copolymer undergoes temperature-driven self-assembly in water to form nanoassemblies with acetal linkages at the core/corona interface and disulfide pendants in the core, exhibiting dual reduction/acid responses at dual locations. The physically assembled nanoaggregates are converted to disulfide-core-crosslinked nanogels through disulfide–thiol exchange reaction, retaining enhanced colloidal stability, yet degraded to water-soluble unimers upon reduction/acid-responsive degradation. Further, the copolymer exhibits improved tunability of thermoresponsive property upon the cleavage of junction acetal and pendant disulfide linkages individually and in combined manner. This work suggests that dual location dual reduction/acid-responsive degradation is a versatile strategy toward effective drug delivery exhibiting disulfide-core-crosslinking capability and disassembly as well as improved thermoresponsive tunability.
机译:我们报告了热响应的双亲水嵌段共聚物,响应于双位置的双重还原和酸性pH可降解。共聚物由与含有悬垂寡核苷酸(环氧乙烷)和二硫酰基的热常数聚甲基丙烯酸酯嵌段共价连接的聚(环氧乙烷)嵌段组成。共聚物在水中进行温度驱动的自组装,以在核心/电晕界面和核心中的二硫键处形成缩醛键的纳米粘合剂,在双位置表现出双重还原/酸反应。通过二硫化物 - 硫醇交换反应将物理组装的纳米聚糖转化为二硫键 - 核交联的纳米粒子,保持增强的胶体稳定性,但在还原/酸响应性降解时降解到水溶性的单倍。此外,共聚物在单独和组合的方式上表现出在结缩醛和侧链连杆的切割时具有改善的热响应性的可调性。这项工作表明,双定位双重还原/酸响应性降解是有效药物递送的多功能策略,其具有二硫核交联能力和拆卸的有效药物递送和拆卸以及改善的热敏可调性。

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