纳米棒
内体
细胞内
胶体金
纳米技术
生物物理学
光热治疗
纳米颗粒
乙二醇
材料科学
内吞作用
化学
细胞
生物化学
生物
有机化学
作者
Hongrong Yang,Zhong Chen,Lei Zhang,Wing‐Yin Yung,Ken Cham‐Fai Leung,Ho Yin Edwin Chan,Chung Hang Jonathan Choi
出处
期刊:Small
[Wiley]
日期:2016-07-21
卷期号:12 (37): 5178-5189
被引量:89
标识
DOI:10.1002/smll.201601483
摘要
Biomedical applications of non-spherical nanoparticles such as photothermal therapy and molecular imaging require their efficient intracellular delivery, yet reported details on their interactions with the cell remain inconsistent. Here, the effects of nanoparticle geometry and receptor targeting on the cellular uptake and intracellular trafficking are systematically explored by using C166 (mouse endothelial) cells and gold nanoparticles of four different aspect ratios (ARs) from 1 to 7. When coated with poly(ethylene glycol) strands, the cellular uptake of untargeted nanoparticles monotonically decreases with AR. Next, gold nanoparticles are functionalized with DNA oligonucleotides to target Class A scavenger receptors expressed by C166 cells. Intriguingly, cellular uptake is maximized at a particular AR: shorter nanorods (AR = 2) enter C166 cells more than nanospheres (AR = 1) and longer nanorods (AR = 4 or 7). Strikingly, long targeted nanorods align to the cell membrane in a near-parallel manner followed by rotating by ≈90° to enter the cell via a caveolae-mediated pathway. Upon cellular entry, targeted nanorods of all ARs predominantly traffic to the late endosome without progressing to the lysosome. The studies yield important materials design rules for drug delivery carriers based on targeted, anisotropic nanoparticles.
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