DNA tetrahedron as nanoparticulated delivery system in combating diseases

A. Mandal
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Abstract

Many diseases suffer from drug resistance and nucleic acid cargo delivery. To optimize pharmaceutics and to enhance their efficiency of cellular uptake, DNA nanomaterial tetrahedrons, owing to their precise control in size, shape, excellent biocompatibility and cellular permeability, reduced cytotoxicity, good stability, ease synthesis and multiple sites for targeting design, have attracted attention for targeting cargos delivery. Their nanostructural binding efficiency with many cargos depends on their electrostatic attractions among free electrons of phosphate oxygen, sugar and base nitrogen. Self-assembled DNA tetrahedrons (DTs) alone also can regulate cellular processes to some extent, especially, on migration, differentiation, proliferation and autophagy, and their modifications with the attachment of aptamers, peptides, nucleic acids, antibodies, different low-molecular-weight drugs and other components, make them a novel targeted delivery system as effective nanomedicine. This review demonstrates the current progress of DTs towards their synthesis, characterization, biomedical applications, biodistribution, elimination and toxicity as possible nanoparticulated delivery system. Keywords: Diseases; Drug resistance; DNA tetrahedron; nanoparticulated delivery system; Nanomedicine
DNA 四面体作为纳米颗粒输送系统防治疾病
许多疾病都受到耐药性和核酸货物运输的困扰。为了优化制药和提高细胞摄取效率,DNA 纳米材料四面体因其精确的尺寸和形状控制、优异的生物相容性和细胞渗透性、降低细胞毒性、良好的稳定性、易于合成和多位点靶向设计等特点,在靶向载体递送方面备受关注。它们与许多载体的纳米结构结合效率取决于磷酸氧、糖和碱基氮的自由电子之间的静电吸引力。自组装 DNA 四面体(DTs)本身也能在一定程度上调控细胞过程,尤其是细胞的迁移、分化、增殖和自噬,而其附着的适配体、多肽、核酸、抗体、不同的低分子量药物和其他成分的修饰,使其成为一种新型的靶向递送系统,成为有效的纳米药物。本综述展示了 DTs 在合成、表征、生物医学应用、生物分布、消除和毒性等方面的研究进展。关键词疾病;耐药性;DNA 四面体;纳米颗粒给药系统;纳米药物
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