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精确构建的DNA折纸纳米结构的几何特征与其进入人晶状体上皮细胞的细胞内吞作用之间的相关性。

Correlation of precisely fabricated geometric characteristics of DNA-origami nanostructures with their cellular entry in human lens epithelial cells.

作者信息

Guo Yexuan, Xiong Tianze, Yan Hong, Zhang Rui Xue

机构信息

Institute of Medical Research, Northwestern Polytechnical University, 127 West Youyi Road, Xi'an, 710072, Shaanxi, China.

Xi'an People's Hospital (Xi'an Fourth Hospital), Shaanxi Eye Hospital, 21 Jiefang Road, Xi'an, 710004, Shaanxi, China.

出版信息

Discov Nano. 2025 Jan 22;20(1):13. doi: 10.1186/s11671-025-04188-9.

Abstract

Human lens epithelial cells (hLECs) are critical for lens transparency, and their aberrant metabolic activity and gene expression can lead to cataract. Intracellular delivery to hLECs, especially to sub-cellular organelles (e.g., mitochondrion and nucleus), is a key step in engineering cells for cell- and gene- based therapies. Despite a broad variety of nano- and microparticles can enter cells, their spatial characteristics relevant to cellular uptake and localization remains elusive. To investigate cellular internalization of nanostructures in hLECs, herein, DNA nanotechnology was exploited to precisely fabricate four distinct, mass-controlled DNA-origami nanostructures (DONs) through computer-aided design. Ensembled DONs included the rods, ring, triangle, and octahedron with defined geometric parameters of accessible surface area, effective volume, compactness, aspect ratio, size and vertex number. Atomic force microscopy and agarose gel electrophoresis showed that four DONs self-assembled within 3.5h with up to 59% yield and exhibited structural intactness in cell culture medium for 4 h. Flow cytometry analysis of four Cy5-labelled DONs in hLECs HLE-B3 found time-dependent cellular uptake over 2 h, among which the octahedron and triangle had higher cellular accumulation than the rod and ring. More importantly, the vertex number among other geometric parameters was positively correlated with cellular entry. Confocal images further revealed that four DONs had preferential localization at mitochondria to nucleus at 2 h in HLE-B3 cells, and the degree of their biodistribution varied among DONs as evidenced by Manders' correlation coefficient. This study demonstrates the DONs dependent cellular uptake and intracellular compartment localization in hLECs, heralding the future design of structure-modulating delivery of nanomedicine for ocular therapy.

摘要

人晶状体上皮细胞(hLECs)对晶状体透明度至关重要,其异常的代谢活性和基因表达会导致白内障。向hLECs进行细胞内递送,尤其是递送至亚细胞器(如线粒体和细胞核),是基于细胞和基因疗法的细胞工程中的关键步骤。尽管各种各样的纳米和微粒可以进入细胞,但其与细胞摄取和定位相关的空间特征仍然难以捉摸。为了研究hLECs中纳米结构的细胞内化,本文利用DNA纳米技术通过计算机辅助设计精确制造了四种不同的、质量可控的DNA折纸纳米结构(DONs)。组装好的DONs包括具有可及表面积、有效体积、紧凑性、纵横比、尺寸和顶点数等确定几何参数的棒状、环状、三角形和八面体。原子力显微镜和琼脂糖凝胶电泳表明,四种DONs在3.5小时内自组装,产率高达59%,并在细胞培养基中4小时内保持结构完整性。对hLECs HLE-B3中四种Cy5标记的DONs进行流式细胞术分析发现,在2小时内细胞摄取呈时间依赖性,其中八面体和三角形的细胞积累高于棒状和环状。更重要的是,在其他几何参数中,顶点数与细胞进入呈正相关。共聚焦图像进一步显示,在HLE-B3细胞中,四种DONs在2小时时优先定位于线粒体而非细胞核,并且它们的生物分布程度在不同的DONs之间有所不同,这由曼德尔斯相关系数证明。本研究证明了DONs在hLECs中的细胞摄取和细胞内区室定位依赖性,为眼部治疗的纳米药物结构调节递送的未来设计开辟了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e32/11754578/c63c6305c0f5/11671_2025_4188_Fig1_HTML.jpg

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