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Polyplex Micelles with Double-Protective Compartments of Hydrophilic Shell and Thermoswitchable Palisade of Poly(oxazoline)-Based Block Copolymers for Promoted Gene Transfection

机译:具有亲水壳双重保护层的聚类胶束和基于聚(恶唑啉)的嵌段共聚物的热开关栅用于促进基因转染

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摘要

Improving the stability of polyplex micelles under physiological conditions is a critical issue for promoting gene transfection efficiencies. To this end, hydrophobic palisade was installed between the inner core of packaged plasmid DNA (pDNA) and the hydrophilic shell of polyplex micelles using a triblock copolymer consisting of hydrophilic poly(2-ethyl-2-oxazoline), thermoswitchable amphiphilic poly(2-n-propyl-2-oxazoline) (PnPrOx) and cationic poly(L-lysine). The two-step preparation procedure, mixing the triblock copolymer with pDNA below the lower critical solution temperature (LCST) of PnPrOx, followed by incubation above the LCST to form a hydrophobic palisade of the collapsed PnPrOx segment, induced the formation of spatially aligned hydrophilic-hydrophobic double-protected polyplex micelles. The prepared polyplex micelles exhibited significant tolerance against attacks from nuclease and polyanions compared to those without hydrophobic palisades, thereby promoting gene transfection. These results corroborated the utility of amphiphilic poly(oxazoline) as a molecular thermal switch to improve the stability of polyplex gene carriers relevant for physiological applications.
机译:在生理条件下提高多聚体胶束的稳定性是提高基因转染效率的关键问题。为此,使用由亲水性聚(2-乙基-2-恶唑啉),可热交换的两亲性聚(2-)组成的三嵌段共聚物,将疏水性栅栏安装在包装质粒DNA(pDNA)的内芯与多聚体胶束的亲水壳之间。正丙基-2-恶唑啉)(PnPrOx)和阳离子聚(L-赖氨酸)。分两步制备程序:在低于PnPrOx的最低临界溶液温度(LCST)的条件下将三嵌段共聚物与pDNA混合,然后在LCST上方孵育以形成折叠的PnPrOx片段的疏水性栅栏,从而诱导形成空间排列的亲水性疏水性双保护多聚体胶束。与没有疏水栅栏的胶束相比,制备的聚合物胶束对核酸酶和聚阴离子的攻击表现出显着的耐受性,从而促进了基因转染。这些结果证实了两亲性聚(恶唑啉)作为分子热开关以改善与生理学相关的多聚基因载体的稳定性的实用性。

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