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利用易于制备的阳离子碳点实现高效且可扩展的基因递送方法。

Efficient and scalable gene delivery method with easily generated cationic carbon dots.

作者信息

Algarra Manuel, Gonzalez-Muñoz Elena

机构信息

INAMAT2-Institute for Advanced Materials and Mathematics, Department of Science, Public University of Navarra, 31006, Pamplona, Spain.

Instituto de Investigación Biomédica de Málaga y Plataforma en Nanomedicina (IBIMA plataforma BIONAND) C/ Severo Ochoa, 35, Málaga, Spain.

出版信息

Biol Proced Online. 2024 Mar 8;26(1):6. doi: 10.1186/s12575-024-00232-7.

Abstract

Gene delivery is a complex process with several challenges when attempting to incorporate genetic material efficiently and safely into target cells. Some of the key challenges include not only efficient cellular uptake and endosomal escape to ensure that the genetic material can exert its effect but also minimizing the toxicity of the delivery system, which is vital for safe gene delivery. Of importance, if gene delivery systems are intended for biomedical applications or clinical use, they must be scalable and easy and affordable to manufacture to meet the demand. Here, we show an efficient gene delivery method using a combination of carbon dots coated by PEI through electrostatic binding to easily generate cationic carbon dots. We show a biofunctional approach to generate optimal cationic carbon dots (CCDs) that can be scaled up to meet specific transfection demands. CCDs improve cell viability and increase transfection efficiency four times over the standard of PEI polyplexes. Generated CCDs enabled the challenging transfection protocol to produce retroviral vectors via cell cotransfection of three different plasmids into packing cells, showing not only high efficiency but also functionality of the gene delivery, tested as the capacity to produce infective retroviral particles.

摘要

基因递送是一个复杂的过程,在试图将遗传物质高效且安全地整合到靶细胞中时会面临诸多挑战。一些关键挑战不仅包括有效的细胞摄取和内体逃逸,以确保遗传物质能够发挥其作用,还包括将递送系统的毒性降至最低,这对于安全的基因递送至关重要。重要的是,如果基因递送系统旨在用于生物医学应用或临床用途,它们必须具有可扩展性,并且易于制造且成本低廉,以满足需求。在此,我们展示了一种高效的基因递送方法,该方法使用通过静电结合被聚乙二醇化聚乙烯亚胺(PEI)包被的碳点组合,以轻松生成阳离子碳点。我们展示了一种生物功能方法,以生成可扩展以满足特定转染需求的最佳阳离子碳点(CCDs)。与PEI多聚体标准相比,CCDs提高了细胞活力,并将转染效率提高了四倍。生成的CCDs使得具有挑战性的转染方案能够通过将三种不同质粒共转染到包装细胞中来生产逆转录病毒载体,这不仅显示出高效率,而且还显示出基因递送的功能性,通过产生感染性逆转录病毒颗粒的能力进行测试。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ebe3/10921679/80133ddec02f/12575_2024_232_Fig1_HTML.jpg

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