The Institute for Drug Research, The School of Pharmacy, Faculty of Medicine, The Hebrew University of Jerusalem, Jerusalem 9112192, Israel.
Int J Mol Sci. 2021 Jan 8;22(2):584. doi: 10.3390/ijms22020584.
(1) Background: Chiral nanoparticular systems have recently emerged as a compelling platform for investigating stereospecific behavior at the nanoscopic level. We describe chiroselective supramolecular interactions that occur between DNA oligonucleotides and chiral polyurea nanocapsules. (2) Methods: We employ interfacial polyaddition reactions between toluene 2,4-diisocyanate and lysine enantiomers that occur in volatile oil-in-water nanoemulsions to synthesize hollow, solvent-free capsules with average sizes of approximately 300 nm and neutral surface potential. (3) Results: The resultant nanocapsules exhibit chiroptical activity and interact differentially with single stranded DNA oligonucleotides despite the lack of surface charge and, thus, the absence of significant electrostatic interactions. Preferential binding of DNA on D-polyurea nanocapsules compared to their L-counterparts is demonstrated by a fourfold increase in capsule size, a 50% higher rise in the absolute value of negative zeta potential (ζ-potential), and a three times lower free DNA concentration after equilibration with the excess of DNA. (4) Conclusions: We infer that the chirality of the novel polymeric nanocapsules affects their supramolecular interactions with DNA, possibly through modification of the surface morphology. These interactions can be exploited when developing carriers for gene therapy and theranostics. The resultant constructs are expected to be highly biocompatible due to their neutral potential and biodegradability of polyurea shells.
(1) 背景:手性纳米颗粒系统最近作为一种在纳米尺度上研究立体特异性行为的引人注目的平台而出现。我们描述了 DNA 寡核苷酸与手性聚脲纳米胶囊之间发生的手选超分子相互作用。(2) 方法:我们在挥发性油包水纳米乳液中利用甲苯 2,4-二异氰酸酯和赖氨酸对映异构体之间的界面聚加成反应来合成具有约 300nm 平均尺寸且表面电位为中性的中空无溶剂胶囊。(3) 结果:所得纳米胶囊表现出手征活性,并与单链 DNA 寡核苷酸发生不同的相互作用,尽管缺乏表面电荷,因此不存在显著的静电相互作用。与 L-对映体相比,D-聚脲纳米胶囊对 DNA 的优先结合通过胶囊尺寸增加四倍、绝对负 ζ-电位(ζ-电位)升高 50%以及与过量 DNA 平衡后游离 DNA 浓度降低三倍来证明。(4) 结论:我们推断新型聚合物纳米胶囊的手性会影响它们与 DNA 的超分子相互作用,可能是通过改变表面形态。在开发基因治疗和治疗学载体时可以利用这些相互作用。由于其中性电位和聚脲壳的可生物降解性,所得构建体预计具有高度的生物相容性。