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Cellular uptake and retention of nanoparticles: Insights on particle properties and interaction with cellular components

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References
237
[1]
Nanoparticles in tissue engineering: applications, challenges and prospects

Anwarul Hasan, Mahboob Morshed, Adnan Memic et al.

International Journal of Nanomedicine 2018 10.2147/ijn.s153758
[2]
Primavera "Emerging nano- and micro-technologies used in the treatment of type-1 diabetes" Nanomaterials (2020) 10.3390/nano10040789
[3]
Gold "Antimicrobial Activity of Metal and Metal-Oxide Based Nanoparticles" Adv. Ther. (2018)
[4]
Kevadiya "Neurotheranostics as personalized medicines" Adv. Drug Deliv. Rev. (2019) 10.1016/j.addr.2018.10.011
[5]
Kevadiya "Development of europium doped core-shell silica cobalt ferrite functionalized nanoparticles for magnetic resonance imaging" Acta Biomater. (2017) 10.1016/j.actbio.2016.11.071
[6]
Vlăsceanu "Graphene inks for the 3D printing of cell culture scaffolds and related molecular arrays" Compos. Part B Eng. (2019) 10.1016/j.compositesb.2019.01.010
[7]
Bussy "Carbon nanotubes in medicine and biology - Safety and toxicology" Adv. Drug Deliv. Rev. (2013) 10.1016/j.addr.2013.11.001
[8]
Marei "Nanotubes impregnated human olfactory bulb neural stem cells promote neuronal differentiation in Trimethyltin-induced neurodegeneration rat model" J. Cell. Physiol. (2017) 10.1002/jcp.25826
[9]
Zhang "Transferrin-mediated fullerenes nanoparticles as Fe2+-dependent drug vehicles for synergistic anti-tumor efficacy" Biomaterials (2015) 10.1016/j.biomaterials.2014.10.031
[10]
Yang "Carbon dots as nontoxic and high-performance fluorescence imaging agents" J. Phys. Chem. C. (2009) 10.1021/jp9085969
[11]
Augustine "Cellular response to nanobiomaterials" (2020)
[12]
Augustine "Metal Oxide Nanoparticles as Versatile Therapeutic Agents Modulating Cell Signaling Pathways: Linking Nanotechnology with Molecular Medicine" Appl. Mater. Today. (2017) 10.1016/j.apmt.2017.01.010
[13]
Thakor "Oxidative stress mediates the effects of raman-active gold nanoparticles in human cells" Small (2011) 10.1002/smll.201001466
[14]
Augustine "Electrospun polycaprolactone/ZnO nanocomposite membranes as biomaterials with antibacterial and cell adhesion properties" J. Polym. Res. (2014) 10.1007/s10965-013-0347-6
[15]
Augustine "Investigation of angiogenesis and its mechanism using zinc oxide nanoparticle-loaded electrospun tissue engineering scaffolds" RSC Adv. (2014) 10.1039/c4ra07361d
[16]
Dayem "The role of reactive oxygen species (ROS) in the biological activities of metallic nanoparticles" Int. J. Mol. Sci. (2017)
[17]
Augustine "Electrospun polycaprolactone (PCL) scaffolds embedded with europium hydroxide nanorods (EHNs) with enhanced vascularization and cell proliferation for tissue engineering applications, J. Mater" Chem. B. (2017)
[18]
Augustine "Electrospun PCL membranes incorporated with biosynthesized silver nanoparticles as antibacterial wound dressings" Appl. Nanosci. (2016) 10.1007/s13204-015-0439-1
[19]
Augustine "Electrospun polyvinyl alcohol membranes incorporated with green synthesized silver nanoparticles for wound dressing applications" J. Mater. Sci. Mater. Med. (2018) 10.1007/s10856-018-6169-7
[20]
Rees "The origin of heterogeneous nanoparticle uptake by cells" Nat. Commun. (2019) 10.1038/s41467-019-10112-4
[21]
Monnappa "Influence of amino acid corona, metallic core and surface functionalisation of nanoparticles on their in-vitro biological behaviour" Int. J. Nanotechnol. (2017) 10.1504/ijnt.2017.086766
[22]
Kumari "Cellular interactions of therapeutically delivered nanoparticles, Expert Opin" Drug Deliv. (2011)
[23]
Rothen-Rutishauser "Nanoparticle-cell interactions: Overview of uptake, intracellular fate and induction of cell responses" Nanosci. Technol. (2019) 10.1007/978-3-030-12461-8_6
[24]
de la Harpe "The Hemocompatibility of Nanoparticles: A Review of Cell–Nanoparticle Interactions and Hemostasis" Cells (2019) 10.3390/cells8101209
[25]
Concepts of nanoparticle cellular uptake, intracellular trafficking, and kinetics in nanomedicine

Nathan D. Donahue, Handan Acar, Stefan Wilhelm

Advanced Drug Delivery Reviews 2019 10.1016/j.addr.2019.04.008
[26]
Qin "Proteomic analysis of intracellular protein corona of nanoparticles elucidates nano-trafficking network and nano-bio interactions" Theranostics (2020) 10.7150/thno.38900
[27]
Brandelli "The interaction of nanostructured antimicrobials with biological systems: Cellular uptake, trafficking and potential toxicity" Food Sci. Hum. Wellness. (2020) 10.1016/j.fshw.2019.12.003
[28]
Kevadiya "Multimodal theranostic nanoformulations permit magnetic resonance bioimaging of antiretroviral drug particle tissue-cell biodistribution" Theranostics (2018) 10.7150/thno.22764
[29]
Kevadiya "Rod-shape theranostic nanoparticles facilitate antiretroviral drug biodistribution and activity in human immunodeficiency virus susceptible cells and tissues" Theranostics (2020) 10.7150/thno.39847
[30]
Sharifi "Enzyme immobilization onto the nanomaterials: Application in enzyme stability and prodrug-activated cancer therapy" Int. J. Biol. Macromol. (2020) 10.1016/j.ijbiomac.2019.12.064
[31]
Kumar "Chemical functionalization of graphene to augment stem cell osteogenesis and inhibit biofilm formation on polymer composites for orthopedic applications" ACS Appl. Mater. Interfaces. (2015) 10.1021/am5079732
[32]
Samanipour "Ferritin Nanocage Conjugated Hybrid Hydrogel for Tissue Engineering and Drug Delivery Applications" ACS Biomater. Sci. Eng. (2020) 10.1021/acsbiomaterials.9b01482
[33]
Gong "Silver Iodide-Chitosan Nanotag Induced Biocatalytic Precipitation for Self-Enhanced Ultrasensitive Photocathodic Immunosensor" Anal. Chem. (2016) 10.1021/acs.analchem.6b00297
[34]
Park "TiO2 nanotube surfaces: 15 nm - an optimal length scale of surface topography for cell adhesion and differentiation" Small (2009) 10.1002/smll.200801476
[35]
Gelain "Novel opportunities and challenges offered by nanobiomaterials in tissue engineering" Int. J. Nanomedicine. (2008) 10.2147/ijn.s3795
[36]
Dvir "Nanotechnological strategies for engineering complex tissues" Nat. Nanotechnol. (2011) 10.1038/nnano.2010.246
[37]
Zhang "Physical Principles of Nanoparticle Cellular Endocytosis" ACS Nano. (2015) 10.1021/acsnano.5b03184
[38]
Contini "Nanoparticle–membrane interactions" J. Exp. Nanosci. (2018) 10.1080/17458080.2017.1413253
[39]
Mukadam "Rilpivirine-associated aggregation-induced emission enables cell-based nanoparticle tracking" Biomaterials (2020) 10.1016/j.biomaterials.2019.119669
[40]
Ottemann "Bioimaging predictors of rilpivirine biodistribution and antiretroviral activities" Biomaterials (2018) 10.1016/j.biomaterials.2018.09.018
[41]
Alexeev "Harnessing Janus nanoparticles to create controllable pores in membranes" ACS Nano. (2008) 10.1021/nn8000998
[42]
Lin "Cell membranes open “doors” for cationic nanoparticles/ biomolecules: Insights into uptake kinetics" ACS Nano. (2013) 10.1021/nn4040553
[43]
Cho "The effects of size, shape, and surface functional group of gold nanostructures on their adsorption and internalization by cells" Small (2010) 10.1002/smll.200901622
[44]
Wong "Balance of chemistry, topography, and mechanics at the cell-biomaterial interface: Issues and challenges for assessing the role of substrate mechanics on cell response" Surf. Sci. (2004) 10.1016/j.susc.2004.06.186
[45]
Sosnik "Challenges in oral drug delivery of antiretrovirals and the innovative strategies to overcome them" Adv. Drug Deliv. Rev. (2016) 10.1016/j.addr.2015.12.022
[46]
Kahbasi "The effect of aluminum oxide on red blood cell integrity and hemoglobin structure at nanoscale" Int. J. Biol. Macromol. (2019) 10.1016/j.ijbiomac.2019.07.154
[47]
Le Ouay "Antibacterial activity of silver nanoparticles: A surface science insight" Nano Today. (2015) 10.1016/j.nantod.2015.04.002
[48]
Gamasaee "The effects of nickel oxide nanoparticles on structural changes, heme degradation, aggregation of hemoglobin and expression of apoptotic genes in lymphocytes" J. Biomol. Struct. Dyn. (2019)
[49]
Hess "Designing inorganic nanomaterials for vaccines and immunotherapies" Nano Today (2019) 10.1016/j.nantod.2019.04.005
[50]
Hosseinali "Biophysical, molecular dynamics and cellular studies on the interaction of nickel oxide nanoparticles with tau proteins and neuron-like cells" Int. J. Biol. Macromol. (2019) 10.1016/j.ijbiomac.2018.12.062

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Published
Dec 01, 2020
Vol/Issue
25
Pages
101692
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Funding
Qatar National Research Fund
Cite This Article
Robin Augustine, Anwarul Hasan, Rosita Primavera, et al. (2020). Cellular uptake and retention of nanoparticles: Insights on particle properties and interaction with cellular components. Materials Today Communications, 25, 101692. https://doi.org/10.1016/j.mtcomm.2020.101692