Surface PEGylation suppresses pulmonary effects of CuO in allergen-induced lung inflammation

Kuvaus

Abstract Background Copper oxide (CuO) nanomaterials are used in a wide range of industrial and commercial applications. These materials can be hazardous, especially if they are inhaled. As a result, the pulmonary effects of CuO nanomaterials have been studied in healthy subjects but limited knowledge exists today about their effects on lungs with allergic airway inflammation (AAI). The objective of this study was to investigate how pristine CuO modulates allergic lung inflammation and whether surface modifications can influence its reactivity. CuO and its carboxylated (CuO COOH), methylaminated (CuO NH3) and PEGylated (CuO PEG) derivatives were administered here on four consecutive days via oropharyngeal aspiration in a mouse model of AAI. Standard genome-wide gene expression profiling as well as conventional histopathological and immunological methods were used to investigate the modulatory effects of the nanomaterials on both healthy and compromised immune system. Results Our data demonstrates that although CuO materials did not considerably influence hallmarks of allergic airway inflammation, the materials exacerbated the existing lung inflammation by eliciting dramatic pulmonary neutrophilia. Transcriptomic analysis showed that CuO, CuO COOH and CuO NH3 commonly enriched neutrophil-related biological processes, especially in healthy mice. In sharp contrast, CuO PEG had a significantly lower potential in triggering changes in lungs of healthy and allergic mice revealing that surface PEGylation suppresses the effects triggered by the pristine material. Conclusions CuO as well as its functionalized forms worsen allergic airway inflammation by causing neutrophilia in the lungs, however, our results also show that surface PEGylation can be a promising approach for inhibiting the effects of pristine CuO. Our study provides information for health and safety assessment of modified CuO materials, and it can be useful in the development of nanomedical applications.
Näytä enemmän

Julkaisuvuosi

2019

Aineiston tyyppi

Tekijät

Dario Greco - Tekijä

Veer Marwah - Tekijä

Tuntematon organisaatio

Alexandros Besinis - Tekijä

Harri Alenius - Tekijä

Henrik Wolff - Tekijä

Joanne Vassallo - Tekijä

Joseph Ndika - Tekijä

Kai Savolainen - Tekijä

Katrin Loeschner - Tekijä

Manuel Correia - Tekijä

Marit Ilves - Tekijä

Nicky Ehrlich - Tekijä

Pia Anneli Sofia Kinaret - Tekijä

Piia Karisola - Tekijä

Richard D. Handy - Tekijä

Vittorio Fortino - Tekijä

Yuri Fedutik - Tekijä

figshare - Julkaisija

Projekti

Muut tiedot

Tieteenalat

Nanoteknologia; Lääketieteen bioteknologia

Kieli

englanti

Saatavuus

Avoin

Lisenssi

Creative Commons Nimeä 4.0 Kansainvälinen (CC BY 4.0)

Avainsanat

Medical biotechnology, Nanotechnology

Asiasanat

Ajallinen kattavuus

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