DNA nanogel encapsulated by a lipid vesicle

A. Kim, J. Moon, D. Irvine, Sunghwan Jung, Soong Ho Um
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引用次数: 1

Abstract

DNA has been used as a new generic material due to its selectivity and intrinsic bioconipatibility, to construct a variety of nano-architectures[l] such as cubic, tetrahedral, and even complicated origami. Recently, a 3-D hydrogel matrix of DNA has been manufactured at macroscopic scale[2] for biomedical applications as an extra-cellular matrix and a cell-free protein amplification platform[3]. To explore DNA hydrogel in a microscopic level, we report a novel method to produce DNA nanogel enclosed by a lipid vesicle. Nano-sized DNA hydrogels have been simply prepared by mixing precursors with DOPC lipid components under repeated sonications, following by nanometer filtering. After peeling off outer lipids using a lipid-chaotropic reagent (Triton X-100), we observe uniform nanogels entirely composed of DNA. With increasing the amount of DOPC lipids, the size of DNA nanogel has decreased. Our theoretical model based on equilibrium thermodynamics predicts such trend consistent with experiments. It indicates that DOPC lipid molecules energetically interfere with crosslink mechanisms among DNA units. DNA nanogel of well-controlled size may be incorporated with functional multi-modules and further applied to novel and advanced technological tools for in vivo diagnostics or therapeutics in preventive medicines.
被脂质囊泡包裹的DNA纳米凝胶
DNA由于其选择性和内在的生物相容性,已被用作一种新的通用材料,用于构建各种纳米结构[1],如立方、四面体,甚至复杂的折纸。最近,一种三维DNA水凝胶基质已经在宏观尺度上被制造出来,用于生物医学应用,作为细胞外基质和无细胞蛋白扩增平台。为了在微观水平上探索DNA水凝胶,我们报道了一种新的方法来生产被脂质囊泡包围的DNA纳米凝胶。通过将前驱体与DOPC脂质组分在重复超声下混合,然后进行纳米过滤,简单地制备了纳米级DNA水凝胶。使用脂质混沌试剂(Triton X-100)剥离外层脂质后,我们观察到完全由DNA组成的均匀纳米凝胶。随着DOPC脂质含量的增加,DNA纳米凝胶的尺寸减小。我们基于平衡热力学的理论模型预测了这一趋势,与实验结果一致。这表明DOPC脂质分子大力干扰DNA单元之间的交联机制。尺寸控制良好的DNA纳米凝胶可以与功能多模块结合,并进一步应用于预防药物体内诊断或治疗的新型先进技术工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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