Lizhuan Zhang, Cai Yang, Juncai Li, Lu Wang, Ziwen Zhang, Minhui Su, Mengyuan Jiang, Qiuxia Yang, Ting Fu, Lei He, Weihong Tan
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引用次数: 0
摘要
快速、高效地富集和分离细胞外囊泡(EVs)对于提高疾病的精确诊断和治疗策略以及阐明EVs的复杂生物学作用至关重要。传统的分离电动汽车的方法往往受到冗长和费力的过程的影响。在这项研究中,我们引入了一种利用DNA纳米技术富集和分离ev的创新方法。我们开发了一种新的多价胆固醇修饰的抗白血病交叉DNA (PX-DNA-chol)结构,它是一种四链DNA结构,包含相邻的双螺旋,它们的局部螺旋轴平行缠绕在一起,可以作为一种有效的合成纳米胶。这种结构促进了纳米级电动汽车快速聚结成微米级的簇,从而简化了它们的富集。利用传统的低速离心机,这种有趣的方法在几分钟内实现了ev的快速浓缩,绕过了通常需要的费力和高速离心步骤。用我们的技术分离的ev质量与通过超离心方法获得的ev质量相当。鉴于这些进展,我们的px - dna - choll促进的电动汽车富集协议将推动电动汽车研究领域的发展,为电动汽车的深入研究提供一个强大的、可访问的工具。
Efficient and Rapid Enrichment of Extracellular Vesicles Using DNA Nanotechnology-Enabled Synthetic Nano-Glue
Swift and efficient enrichment and isolation of extracellular vesicles (EVs) are crucial for enhancing precise disease diagnostics and therapeutic strategies, as well as elucidating the complex biological roles of EVs. Conventional methods of isolating EVs are often marred by lengthy and laborious processes. In this study, we introduce an innovative approach to enrich and isolate EVs by leveraging the capabilities of DNA nanotechnology. We have developed a novel multivalent cholesterol-modified paranemic crossover DNA (PX-DNA-chol) construct, which is a four-stranded DNA structure containing adjacent double helices intertwined with their local helix axes parallel and serves as an effective synthetic nano-glue. This construct promotes the rapid coalescence of nanoscale EVs into clusters of micrometer scale, thereby streamlining their enrichment. Utilizing a conventional low-speed centrifuge, this intriguing methodology achieves a rapid concentration of EVs within minutes, bypassing the laborious and high-speed centrifugation steps typically required. The quality of EVs isolated by our technique is comparable to that obtained through ultracentrifugation methods. Given these advancements, our PX-DNA-chol-facilitated EVs enrichment protocol is poised to advance the field of EVs research, providing a robust and accessible tool for in-depth studies of EVs.
期刊介绍:
Analytical Chemistry, a peer-reviewed research journal, focuses on disseminating new and original knowledge across all branches of analytical chemistry. Fundamental articles may explore general principles of chemical measurement science and need not directly address existing or potential analytical methodology. They can be entirely theoretical or report experimental results. Contributions may cover various phases of analytical operations, including sampling, bioanalysis, electrochemistry, mass spectrometry, microscale and nanoscale systems, environmental analysis, separations, spectroscopy, chemical reactions and selectivity, instrumentation, imaging, surface analysis, and data processing. Papers discussing known analytical methods should present a significant, original application of the method, a notable improvement, or results on an important analyte.