Effect of Physico-Chemical Properties of Nanoparticles on Their Intracellular Uptake

被引:186
作者
Sabourian, Parinaz [1 ,2 ]
Yazdani, Ghazaleh [1 ]
Ashraf, Seyed Sajad [1 ]
Frounchi, Masoud [1 ]
Mashayekhan, Shohreh [1 ]
Kiani, Sahar [3 ]
Kakkar, Ashok [2 ]
机构
[1] Sharif Univ Technol, Dept Chem & Petr Engn, Azadi Ave, Tehran 111559465, Iran
[2] McGill Univ, Dept Chem, 801 Sherbrooke St West, Montreal, PQ H3A 0B8, Canada
[3] ACECR, ROYAN Inst Stem Cell Biol & Technol, Dept Brain & Cognit Sci, Cell Sci Res Ctr, Tehran 16635148, Iran
基金
美国国家科学基金会;
关键词
intracellular delivery; nanoparticles; physico-chemical properties; cellular uptake; active; passive transport; DEPENDENT CELLULAR UPTAKE; DRUG-DELIVERY SYSTEM; PROTEIN CORONA; SURFACE-CHARGE; FUNCTIONALIZED NANOPARTICLES; GOLD NANOPARTICLES; IN-VIVO; SIZE; ENDOCYTOSIS; SHAPE;
D O I
10.3390/ijms21218019
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Cellular internalization of inorganic, lipidic and polymeric nanoparticles is of great significance in the quest to develop effective formulations for the treatment of high morbidity rate diseases. Understanding nanoparticle-cell interactions plays a key role in therapeutic interventions, and it continues to be a topic of great interest to both chemists and biologists. The mechanistic evaluation of cellular uptake is quite complex and is continuously being aided by the design of nanocarriers with desired physico-chemical properties. The progress in biomedicine, including enhancing the rate of uptake by the cells, is being made through the development of structure-property relationships in nanoparticles. We summarize here investigations related to transport pathways through active and passive mechanisms, and the role played by physico-chemical properties of nanoparticles, including size, geometry or shape, core-corona structure, surface chemistry, ligand binding and mechanical effects, in influencing intracellular delivery. It is becoming clear that designing nanoparticles with specific surface composition, and engineered physical and mechanical characteristics, can facilitate their internalization more efficiently into the targeted cells, as well as enhance the rate of cellular uptake.
引用
收藏
页码:1 / 20
页数:20
相关论文
共 117 条
[51]   Interleukin 2 receptors and detergent-resistant membrane domains define a clathrin-independent endocytic pathway [J].
Lamaze, C ;
Dujeancourt, A ;
Baba, T ;
Lo, CG ;
Benmerah, A ;
Dautry-Varsat, A .
MOLECULAR CELL, 2001, 7 (03) :661-671
[52]   Preventing Protein Adsorption and Macrophage Uptake of Gold Nanoparticles via a Hydrophobic Shield [J].
Larson, Timothy A. ;
Joshi, Pratixa R. ;
Sokolov, Konstantin .
ACS NANO, 2012, 6 (10) :9182-9190
[53]   Effects of the Presence or Absence of a Protein Corona on Silica Nanoparticle Uptake and Impact on Cells [J].
Lesniak, Anna ;
Fenaroli, Federico ;
Monopoli, Marco R. ;
Aberg, Christoffer ;
Dawson, Kenneth A. ;
Salvati, Anna .
ACS NANO, 2012, 6 (07) :5845-5857
[54]   Unexpected Size Effect: The Interplay between Different-Sized Nanoparticles in Their Cellular Uptake [J].
Li, Ling ;
Xi, Wen-Song ;
Su, Qianqian ;
Li, Yang ;
Yan, Gui-Hua ;
Liu, Yuanfang ;
Wang, Haifang ;
Cao, Aoneng .
SMALL, 2019, 15 (38)
[55]   Effects of ligand distribution on receptor-diffusion-mediated cellular uptake of nanoparticles [J].
Li, Long ;
Zhang, Yudie ;
Wang, Jizeng .
ROYAL SOCIETY OPEN SCIENCE, 2017, 4 (05)
[56]   Computational Investigation of Interaction between Nanoparticles and Membranes: Hydrophobic/Hydrophilic Effect [J].
Li, Yang ;
Chen, Xin ;
Gu, Ning .
JOURNAL OF PHYSICAL CHEMISTRY B, 2008, 112 (51) :16647-16653
[57]   Macropinocytosis: an endocytic pathway for internalising large gulps [J].
Lim, Jet Phey ;
Gleeson, Paul A. .
IMMUNOLOGY AND CELL BIOLOGY, 2011, 89 (08) :836-843
[58]   Understanding the Lipid and Protein Corona Formation on Different Sized Polymeric Nanoparticles [J].
Lima, Tania ;
Bernfur, Katja ;
Vilanova, Manuel ;
Cedervall, Tommy .
SCIENTIFIC REPORTS, 2020, 10 (01)
[59]   Programmed drug delivery system based on optimized "size decrease and hydrophilicity/hydrophobicity transformation" for enhanced hepatocellular carcinoma therapy of doxorubicin [J].
Liu, Yuanyuan ;
Li, Lian ;
Li, Lijia ;
Zhou, Zhou ;
Wang, Fengling ;
Xiong, Xiaofeng ;
Zhou, Rui ;
Huang, Yuan .
NANOMEDICINE-NANOTECHNOLOGY BIOLOGY AND MEDICINE, 2018, 14 (04) :1111-1122
[60]   Influence of Nanoparticle Shape, Size, and Surface Functionalization on Cellular Uptake [J].
Ma, Ningning ;
Ma, Chao ;
Li, Chuanyan ;
Wang, Ting ;
Tang, Yongjun ;
Wang, Hongyin ;
Mou, Xianbo ;
Chen, Zhan ;
He, Nongyue .
JOURNAL OF NANOSCIENCE AND NANOTECHNOLOGY, 2013, 13 (10) :6485-6498