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Synthesis of an ethyleneimine/tetrahedral DNA nanostructure complex and its potential application as a multi-functional delivery vehicle

机译:DNA合成乙亚胺/四面体纳米结构复杂,其潜力应用程序作为多功能交付车辆

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摘要

Nowadays, DNA nanostructures are extensively researched for their biocompatibility, editable functionality, and structural stability. Tetrahedral DNA nanostructures (TDNs), widely known for their membrane permeability, are regarded as potential candidates for drug delivery. However, the stability and membrane permeability of TDNs call for further enhancement if in vivo usage is ascribed. To overcome the drawbacks of TDNs, ethylene imine (PEI, 25 kDa, branched)-a classic cationic polymer in the field of gene delivery-was applied. Via a facile one-pot synthesis method, a PEI/TDNs complex was formed. Subsequently, a DNase protection assay, a cytotoxicity assay, endocytosis-related experiments, and lysosome staining were performed to examine the potential of PEI/TDNs as a delivery vehicle. The combination of PEI and TDNs not only overcame the drawbacks of each substance but also retained their individual merits. Traditionally, drug-delivery vehicles that enable enhanced cell entry and lysosome escape are often compromised by their toxicity and poor multifunctionality. We believe this novel PEI/TDNs complex with enhanced systemic stability, biocompatibility, cell-entry ability, and lysosome-escape ability and unsurpassed editable functionality could be a powerful tool as a multi-functional delivery vehicle in targeted drug delivery, in vivo imaging, and other related fields.
机译:如今,广泛DNA纳米结构研究其生物相容性,可编辑功能和结构稳定性。四面体DNA纳米结构(TDNs),广泛膜透性著称,被视为潜在的候选药物交付。渗透率的TDNs呼吁进一步加强是否认为体内使用。缺点TDNs,乙烯亚胺(25 kDa,裴支)——经典的阳离子聚合物基因的生产应用。合成方法,裴/ TDNs复杂形成的。细胞毒性试验,endocytosis-related进行了实验,溶酶体染色检查裴/ TDNs的潜力运载工具。每个物质的不仅克服了缺点但是也保留了各自的优点。传统上,药物运输车辆,使增强细胞和溶酶体逃逸被他们的毒性和贫穷多功能性。裴/ TDNs复杂与增强的系统性稳定性、生物相容性、单元格条目的能力,和lysosome-escape能力和无与伦比的可编辑的功能可能是一个强大的工具作为一个多功能运载工具靶向药物输送、体内成像其他相关领域。

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