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用四面体DNA纳米结构增强治疗性核酸的神经元细胞摄取

Enhancing Neuronal Cell Uptake of Therapeutic Nucleic Acids with Tetrahedral DNA Nanostructures.

作者信息

Martins Ana S G, Reis Sara D, Benson Erik, Domingues Marco M, Cortinhas João, Vidal Silva Joana A, Santos Sofia D, Santos Nuno C, Pêgo Ana P, Moreno Pedro M D

机构信息

i3S (Instituto de Investigação e Inovação em Saúde), Universidade do Porto, INEB (Instituto Nacional de Engenharia Biomédica), Rua Alfredo Allen, 208, Porto, 4200-135, Portugal.

Faculty of Engineering of the University of Porto, Rua Dr. Roberto Frias, s/n, Porto, 4200-465, Portugal.

出版信息

Small. 2024 Jul;20(29):e2309140. doi: 10.1002/smll.202309140. Epub 2024 Feb 11.

Abstract

The successful translation of therapeutic nucleic acids (NAs) for the treatment of neurological disorders depends on their safe and efficient delivery to neural cells, in particular neurons. DNA nanostructures can be a promising NAs delivery vehicle. Nonetheless, the potential of DNA nanostructures for neuronal cell delivery of therapeutic NAs is unexplored. Here, tetrahedral DNA nanostructures (TDN) as siRNA delivery scaffolds to neuronal cells, exploring the influence of functionalization with two different reported neuronal targeting ligands: C4-3 RNA aptamer and Tet1 peptide are investigated. Nanostructures are characterized in vitro, as well as in silico using molecular dynamic simulations to better understand the overall TDN structural stability. Enhancement of neuronal cell uptake of TDN functionalized with the C4-3 Aptamer (TDN-Apt), not only in neuronal cell lines but also in primary neuronal cell cultures is demonstrated. Additionally, TDN and TDN-Apt nanostructures carrying siRNA are shown to promote silencing in a process aided by chloroquine-induced endosomal disruption. This work presents a thorough workflow for the structural and functional characterization of the proposed TDN as a nano-scaffold for neuronal delivery of therapeutic NAs and for targeting ligands evaluation, contributing to the future development of new neuronal drug delivery systems based on DNA nanostructures.

摘要

治疗性核酸(NAs)用于治疗神经疾病的成功翻译取决于它们安全有效地递送至神经细胞,特别是神经元。DNA纳米结构可能是一种有前景的NAs递送载体。尽管如此,DNA纳米结构用于将治疗性NAs递送至神经元细胞的潜力尚未得到探索。在此,研究了作为向神经元细胞递送siRNA支架的四面体DNA纳米结构(TDN),探讨了用两种不同的已报道的神经元靶向配体:C4-3 RNA适配体和Tet1肽进行功能化的影响。纳米结构在体外以及使用分子动力学模拟在计算机上进行表征,以更好地理解整体TDN结构稳定性。证明了用C4-3适配体(TDN-Apt)功能化的TDN对神经元细胞摄取的增强,不仅在神经元细胞系中,而且在原代神经元细胞培养物中也是如此。此外,携带siRNA的TDN和TDN-Apt纳米结构在氯喹诱导的内体破坏辅助的过程中显示出促进沉默。这项工作提出了一个全面的工作流程,用于对所提出的TDN进行结构和功能表征,作为用于治疗性NAs神经元递送的纳米支架和用于靶向配体评估,有助于基于DNA纳米结构的新型神经元药物递送系统的未来发展。

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