Literature DB >> 23402533

Nanoparticle geometry and surface orientation influence mode of cellular uptake.

Heather Herd1, Nicole Daum, Arwyn T Jones, Hanno Huwer, Hamidreza Ghandehari, Claus-Michael Lehr.   

Abstract

In order to engineer safer nanomaterials, there is a need to understand, systematically evaluate, and develop constructs with appropriate cellular uptake and intracellular fates. The overall goal of this project is to determine the uptake patterns of silica nanoparticle geometries in model cells, in order to aid in the identification of the role of geometry on cellular uptake and transport. In our experiments we observed a significant difference in the viability of two phenotypes of primary macrophages; immortalized macrophages exhibited similar patterns. However, both primary and immortalized epithelial cells did not exhibit toxicity profiles. Interestingly uptake of these geometries in all cell lines exhibited very different time-dependent patterns. A screening of a series of chemical inhibitors of endocytosis was performed to isolate the uptake mechanisms of the different particles. The results show that all geometries exhibit very different uptake profiles and that this may be due to the orientation of the nanoparticles when they interact with the cell surface. Additionally, evidence suggests that these uptake patterns initialize different downstream cellular pathways, dependent on cell type and phenotype.

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Year:  2013        PMID: 23402533      PMCID: PMC3860363          DOI: 10.1021/nn304439f

Source DB:  PubMed          Journal:  ACS Nano        ISSN: 1936-0851            Impact factor:   15.881


  48 in total

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Review 9.  Endocytosis unplugged: multiple ways to enter the cell.

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Journal:  Cell Res       Date:  2010-02-02       Impact factor: 25.617

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Authors:  A Piasek; J Thyberg
Journal:  J Cell Sci       Date:  1980-10       Impact factor: 5.285

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  67 in total

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8.  Transient Receptor Potential Ion Channel-Dependent Toxicity of Silica Nanoparticles and Poly(amido amine) Dendrimers.

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Journal:  J Pharmacol Exp Ther       Date:  2018-11-15       Impact factor: 4.030

9.  Transcriptional responses of human aortic endothelial cells to nanoconstructs used in biomedical applications.

Authors:  Philip J Moos; Matthew Honeggar; Alexander Malugin; Heather Herd; Giridhar Thiagarajan; Hamidreza Ghandehari
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10.  Silica Nanoparticle-Endothelial Interaction: Uptake and Effect on Platelet Adhesion under Flow Conditions.

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