Literature DB >> 23736871

Dynamic development of the protein corona on silica nanoparticles: composition and role in toxicity.

Ninell P Mortensen1, Gregory B Hurst, Wei Wang, Carmen M Foster, Prakash D Nallathamby, Scott T Retterer.   

Abstract

The formation and composition of the protein corona on silica (SiO2) nanoparticles (NP) with different surface chemistries was evaluated over time. Native SiO2, amine (-NH2) and carboxy (-COO(-)) modified NP were examined following incubation in mammalian growth media containing fetal bovine serum (FBS) for 1, 4, 24 and 48 hours. The protein corona transition from its early dynamic state to the later more stable corona was evaluated using mass spectrometry. The NP diameter was 22.4 ± 2.2 nm measured by scanning transmission electron microscopy (STEM). Changes in hydrodynamic diameter and agglomeration kinetics were studied using dynamic light scattering (DLS). The initial surface chemistry of the NP played an important role in the development and final composition of the protein corona, impacting agglomeration kinetics and NP toxicity. Particle toxicity, indicated by changes in membrane integrity and mitochondrial activity, was measured by lactate dehydrogenase (LDH) release and tetrazolium reduction (MTT), respectively, in mouse alveolar macrophages (RAW264.7) and mouse lung epithelial cells (C10). SiO2-COO(-) NP had a slower agglomeration rate, formed smaller aggregates, and exhibited lower cytotoxicity compared to SiO2 and SiO2-NH2. Composition of the protein corona for each of the three NP was unique, indicating a strong dependence of corona development on NP surface chemistry. This work underscores the need to understand all aspects of NP toxicity, particularly the influence of agglomeration on effective dose and particle size. Furthermore, the interplay between materials and local biological environment is emphasized and highlights the need to conduct toxicity profiling under physiologically relevant conditions that provide an appropriate estimation of material modifications that occur during exposure in natural environments.

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Year:  2013        PMID: 23736871     DOI: 10.1039/c3nr33280b

Source DB:  PubMed          Journal:  Nanoscale        ISSN: 2040-3364            Impact factor:   7.790


  19 in total

1.  Label-Free in Situ pH Monitoring in a Single Living Cell Using an Optical Nanoprobe.

Authors:  Qingbo Yang; Xiaobei Zhang; Yang Song; Ke Li; Honglan Shi; Hai Xiao; Yinfa Ma
Journal:  Med Devices Sens       Date:  2020-03-12

2.  New surface radiolabeling schemes of super paramagnetic iron oxide nanoparticles (SPIONs) for biodistribution studies.

Authors:  Prakash D Nallathamby; Ninell P Mortensen; Heather A Palko; Mike Malfatti; Catherine Smith; James Sonnett; Mitchel J Doktycz; Baohua Gu; Ryan K Roeder; Wei Wang; Scott T Retterer
Journal:  Nanoscale       Date:  2015-04-21       Impact factor: 7.790

3.  Differential Protein Adsorption and Cellular Uptake of Silica Nanoparticles Based on Size and Porosity.

Authors:  Jiban Saikia; Mostafa Yazdimamaghani; Seyyed Pouya Hadipour Moghaddam; Hamidreza Ghandehari
Journal:  ACS Appl Mater Interfaces       Date:  2016-12-06       Impact factor: 9.229

4.  Silica Nanocapsules with Different Sizes and Physicochemical Properties as Suitable Nanocarriers for Uptake in T-Cells.

Authors:  Raweewan Thiramanas; Shuai Jiang; Johanna Simon; Katharina Landfester; Volker Mailänder
Journal:  Int J Nanomedicine       Date:  2020-08-13

5.  Investigation of Twenty Metal, Metal Oxide, and Metal Sulfide Nanoparticles' Impact on Differentiated Caco-2 Monolayer Integrity.

Authors:  Ninell P Mortensen; Maria Moreno Caffaro; Purvi R Patel; Md Jamal Uddin; Shyam Aravamudhan; Susan J Sumner; Timothy R Fennell
Journal:  NanoImpact       Date:  2020-02-13

6.  The nano-plasma interface: Implications of the protein corona.

Authors:  Joy Wolfram; Yong Yang; Jianliang Shen; Asad Moten; Chunying Chen; Haifa Shen; Mauro Ferrari; Yuliang Zhao
Journal:  Colloids Surf B Biointerfaces       Date:  2014-03-02       Impact factor: 5.268

7.  Unveil early-stage nanocytotoxicity by a label-free single cell pH nanoprobe.

Authors:  Qingbo Yang; Alexandre Cristea; Charles Roberts; Kun Liu; Yang Song; Hai Xiao; Honglan Shi; Yinfa Ma
Journal:  Analyst       Date:  2020-11-09       Impact factor: 4.616

Review 8.  Safety of Nanoparticles in Medicine.

Authors:  Joy Wolfram; Motao Zhu; Yong Yang; Jianliang Shen; Emanuela Gentile; Donatella Paolino; Massimo Fresta; Guangjun Nie; Chunying Chen; Haifa Shen; Mauro Ferrari; Yuliang Zhao
Journal:  Curr Drug Targets       Date:  2015       Impact factor: 3.465

Review 9.  Targeting inhaled therapy beyond the lungs.

Authors:  Ninell P Mortensen; Anthony J Hickey
Journal:  Respiration       Date:  2014       Impact factor: 3.966

10.  Altered characteristics of silica nanoparticles in bovine and human serum: the importance of nanomaterial characterization prior to its toxicological evaluation.

Authors:  Emilia Izak-Nau; Matthias Voetz; Stefanie Eiden; Albert Duschl; Victor F Puntes
Journal:  Part Fibre Toxicol       Date:  2013-11-11       Impact factor: 9.400

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