Tockary Theofilus A, Osada Kensuke, Motoda Yusuke, Hiki Shigehiro, Chen Qixian, Takeda Kaori M, Dirisala Anjaneyulu, Osawa Shigehito, Kataoka Kazunori
Department of Materials Engineering, Graduate School of Engineering, The University of Tokyo 7-3-1 Hongo, Bunkyoku, Tokyo, 113-8656, Japan.
Department of Bioengineering, Graduate School of Engineering, The University of Tokyo 7-3-1 Hongo, Bunkyoku, Tokyo, 113-8656, Japan.
Small. 2016 Mar 2;12(9):1193-200. doi: 10.1002/smll.201501815. Epub 2015 Oct 1.
The role of poly(ethylene-glycol) (PEG) in rod-shaped polyplex micelle structures, having a characteristic core of folded plasmid DNA (pDNA) and a shell of tethered PEG chains, is investigated using PEG-detachable polyplex micelles. Rod shapes undergo change to compacted globule shapes by removal of PEG from polyplex micelles prepared from block copolymer with acid-labile linkage between PEG and poly(l-lysine) (PLys) through exposure to acidic milieu. This structural change supports the previous investigation on the rod shapes that PEG shell prevents the DNA structure from being globule shaped as the most favored structure in minimizing surface area. Noteworthy, despite the PEG is continuously depleted, the structural change does not occur in gradual shortening manner but the rod shapes keep their length unchanged and abruptly transform into globule shapes. Analysis of PEG density reveals the transition occurred when tethered PEG of rod shapes has decreased to a critical crowdedness, i.e., discontacted with neighboring PEG, which eventually illuminates another contribution, rigidity of DNA packaged as bundle in the rod shapes, in addition to the steric repulsion of PEG, in sustaining rod shapes. This investigation affirms significant role of PEG and also DNA rigidity as bundle in the formation of rod-shaped structures enduring the quest of compaction of charge-neutralized DNA in the polyplex micelles.
使用可去除聚乙二醇(PEG)的多聚体胶束研究了聚乙二醇(PEG)在棒状多聚体胶束结构中的作用,该结构具有折叠质粒DNA(pDNA)的特征性核心和连接的PEG链壳。通过暴露于酸性环境,从由PEG与聚(L-赖氨酸)(PLys)之间具有酸不稳定连接的嵌段共聚物制备的多聚体胶束中去除PEG,棒状结构会转变为紧密的球状结构。这种结构变化支持了先前关于棒状结构的研究,即PEG壳可防止DNA结构成为球状,因为球状是最小化表面积时最有利的结构。值得注意的是,尽管PEG不断消耗,但结构变化并非以逐渐缩短的方式发生,而是棒状结构保持其长度不变,并突然转变为球状结构。对PEG密度的分析表明,当棒状结构连接的PEG减少到临界拥挤状态,即与相邻PEG脱离接触时,就会发生转变,这最终揭示了除PEG的空间排斥作用外,棒状结构中作为束状包装的DNA的刚性在维持棒状结构方面的另一个作用。这项研究证实了PEG以及作为束状的DNA刚性在形成棒状结构中的重要作用,该结构经受住了多聚体胶束中电荷中和DNA压缩的探索。