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本文引用的文献

1
Nucleolin-mediated cellular trafficking of DNA nanoparticle is lipid raft and microtubule dependent and can be modulated by glucocorticoid.核仁蛋白介导的 DNA 纳米颗粒的细胞内转运依赖于脂筏和微管,并且可以被糖皮质激素调节。
Mol Ther. 2011 Jan;19(1):93-102. doi: 10.1038/mt.2010.214. Epub 2010 Oct 19.
2
Advanced fluorescence microscopy methods illuminate the transfection pathway of nucleic acid nanoparticles.高级荧光显微镜方法阐明了核酸纳米颗粒的转染途径。
J Control Release. 2010 Nov 20;148(1):69-74. doi: 10.1016/j.jconrel.2010.08.029. Epub 2010 Sep 9.
3
Poly(glycoamidoamine) vehicles promote pDNA uptake through multiple routes and efficient gene expression via caveolae-mediated endocytosis.聚(糖酰胺)载体通过多种途径促进 pDNA 摄取,并通过 caveolae 介导的内吞作用实现高效基因表达。
Mol Pharm. 2010 Jun 7;7(3):738-50. doi: 10.1021/mp900282e.
4
Endocytosis of nanomedicines.纳米药物的内吞作用。
J Control Release. 2010 Aug 3;145(3):182-95. doi: 10.1016/j.jconrel.2010.01.036. Epub 2010 Mar 10.
5
Nanoparticles reveal that human cervicovaginal mucus is riddled with pores larger than viruses.纳米颗粒揭示,人类宫颈阴道黏液充满了比病毒还大的孔。
Proc Natl Acad Sci U S A. 2010 Jan 12;107(2):598-603. doi: 10.1073/pnas.0911748107. Epub 2009 Dec 16.
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The utilization of pathogen-like cellular trafficking by single chain block copolymer.单链嵌段共聚物对类病原体细胞内运输的利用。
Biomaterials. 2010 Mar;31(7):1757-64. doi: 10.1016/j.biomaterials.2009.11.020. Epub 2009 Dec 5.
7
Ocular delivery of compacted DNA-nanoparticles does not elicit toxicity in the mouse retina.致密 DNA-纳米颗粒经眼部给药不会引起小鼠视网膜毒性。
PLoS One. 2009 Oct 12;4(10):e7410. doi: 10.1371/journal.pone.0007410.
8
Nanoparticles evading the reticuloendothelial system: role of the supported bilayer.纳米颗粒逃避网状内皮系统:支撑双层膜的作用。
Biochim Biophys Acta. 2009 Oct;1788(10):2259-66. doi: 10.1016/j.bbamem.2009.06.022. Epub 2009 Jul 10.
9
Missing pieces in understanding the intracellular trafficking of polycation/DNA complexes.理解聚阳离子/DNA复合物细胞内运输过程中缺失的环节。
J Control Release. 2009 Oct 15;139(2):88-93. doi: 10.1016/j.jconrel.2009.06.031. Epub 2009 Jul 4.
10
Long-term transgene expression in the central nervous system using DNA nanoparticles.利用DNA纳米颗粒实现中枢神经系统中的长期转基因表达。
Mol Ther. 2009 Apr;17(4):641-50. doi: 10.1038/mt.2009.2. Epub 2009 Feb 17.

高度压缩聚合物 DNA 纳米颗粒的非降解性细胞内转运。

Non-degradative intracellular trafficking of highly compacted polymeric DNA nanoparticles.

机构信息

Department of Ophthalmology, The Wilmer Eye Institute, Johns Hopkins University School of Medicine, 400 N. Broadway, Baltimore, MD 21287, USA.

出版信息

J Control Release. 2012 Feb 28;158(1):102-7. doi: 10.1016/j.jconrel.2011.10.031. Epub 2011 Oct 30.

DOI:10.1016/j.jconrel.2011.10.031
PMID:22079809
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3294172/
Abstract

Highly compacted DNA nanoparticles (DNPs) composed of polyethylene glycol linked to a 30-mer of poly-l-lysine via a single cysteine residue (CK(30)PEG) have previously been shown to provide efficient gene delivery to the brain, eyes and lungs. In this study, we used a combination of flow cytometry, high-resolution live-cell confocal microscopy, and multiple particle tracking (MPT) to investigate the intracellular trafficking of highly compacted CK(30)PEG DNPs made using two different molecular weights of PEG, CK(30)PEG(10k) and CK(30)PEG(5k). We found that PEG MW did not have a major effect on particle morphology nor nanoparticle intracellular transport. CK(30)PEG(10k) and CK(30)PEG(5k) DNPs both entered human bronchial epithelial (BEAS-2B) cells via a caveolae-mediated pathway, bypassing degradative endolysosomal trafficking. Both nanoparticle formulations were found to rapidly accumulate in the perinuclear region of cells within 2h, 37±19% and 47±8% for CK(30)PEG(10k) and CK(30)PEG(5k), respectively. CK(30)PEG(10k) and CK(30)PEG(5k) DNPs moved within live cells at average velocities of 0.09±0.04μm/s and 0.11±0.04μm/s, respectively, in good agreement with reported values for caveolae. These findings show that highly compacted DNPs employ highly regulated trafficking mechanisms similar to biological pathogens to target specific intracellular compartments.

摘要

先前的研究表明,由聚乙二醇通过单个半胱氨酸残基连接到 30 聚赖氨酸组成的高度紧凑的 DNA 纳米颗粒(DNP)可有效递送至脑、眼和肺。在这项研究中,我们结合流式细胞术、高分辨率活细胞共聚焦显微镜和多粒子跟踪(MPT)技术,研究了两种不同分子量的聚乙二醇(CK(30)PEG(10k)和 CK(30)PEG(5k))制成的高度紧凑的 CK(30)PEG DNP 的细胞内转运。我们发现 PEG MW 对颗粒形态和纳米颗粒的细胞内转运没有重大影响。CK(30)PEG(10k)和 CK(30)PEG(5k)DNP 均通过穴样内陷介导的途径进入人支气管上皮细胞(BEAS-2B),绕过降解性内体溶酶体转运。两种纳米颗粒制剂都被发现能够在 2 小时内迅速在细胞的核周区域积累,CK(30)PEG(10k)和 CK(30)PEG(5k)分别为 37±19%和 47±8%。CK(30)PEG(10k)和 CK(30)PEG(5k)DNP 在活细胞内的平均速度分别为 0.09±0.04μm/s 和 0.11±0.04μm/s,与报道的穴样内陷速度一致。这些发现表明,高度紧凑的 DNP 采用高度调节的转运机制,类似于生物病原体,以靶向特定的细胞内区室。