Application of profluorescent nitroxides for measurements of oxidative capacity of combustion generated particles
Oxidative stress caused by generation of free radicals and related reactive oxygen species (ROS) at the sites of deposition has been proposed as a mechanism for many of the adverse health outcomes associated with exposure to particulate matter (PM). Recently, a new profluorescent nitroxide molecu...
Main Authors: | , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
Association of the Chemical Engineers of Serbia
2012-01-01
|
Series: | Chemical Industry and Chemical Engineering Quarterly |
Subjects: | |
Online Access: | http://www.doiserbia.nb.rs/img/doi/1451-9372/2012/1451-93721200113S.pdf |
id |
doaj-899c1854c4614e62b7defb7731660f8e |
---|---|
record_format |
Article |
spelling |
doaj-899c1854c4614e62b7defb7731660f8e2020-11-25T01:27:42ZengAssociation of the Chemical Engineers of SerbiaChemical Industry and Chemical Engineering Quarterly1451-93722217-74342012-01-01184-265365910.2298/CICEQ120113113SApplication of profluorescent nitroxides for measurements of oxidative capacity of combustion generated particlesStevanovic S.Ristovski Z.D.Miljevic B.Fairfull-Smith K.E.Bottle S.E.Oxidative stress caused by generation of free radicals and related reactive oxygen species (ROS) at the sites of deposition has been proposed as a mechanism for many of the adverse health outcomes associated with exposure to particulate matter (PM). Recently, a new profluorescent nitroxide molecular probe (BPEAnit) developed at QUT was applied in an entirely novel, rapid and non-cell based assay for assessing the oxidative potential of particles (i.e. potential of particles to induce oxidative stress). The technique was applied on particles produced by several combustion sources, namely cigarette smoke, diesel exhaust and wood smoke. One of the main findings from the initial studies undertaken at QUT was that the oxidative potential per PM mass significantly varies for different combustion sources as well as the type of fuel used and combustion conditions. However, possibly the most important finding from our studies was that there was a strong correlation between the organic fraction of particles and the oxidative potential measured by the PFN assay, which clearly highlights the importance of organic species in particle-induced toxicity.http://www.doiserbia.nb.rs/img/doi/1451-9372/2012/1451-93721200113S.pdfcombustion particlesdiesel particles (DPM)oxidative stressreactive oxygen species (ROS) |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Stevanovic S. Ristovski Z.D. Miljevic B. Fairfull-Smith K.E. Bottle S.E. |
spellingShingle |
Stevanovic S. Ristovski Z.D. Miljevic B. Fairfull-Smith K.E. Bottle S.E. Application of profluorescent nitroxides for measurements of oxidative capacity of combustion generated particles Chemical Industry and Chemical Engineering Quarterly combustion particles diesel particles (DPM) oxidative stress reactive oxygen species (ROS) |
author_facet |
Stevanovic S. Ristovski Z.D. Miljevic B. Fairfull-Smith K.E. Bottle S.E. |
author_sort |
Stevanovic S. |
title |
Application of profluorescent nitroxides for measurements of oxidative capacity of combustion generated particles |
title_short |
Application of profluorescent nitroxides for measurements of oxidative capacity of combustion generated particles |
title_full |
Application of profluorescent nitroxides for measurements of oxidative capacity of combustion generated particles |
title_fullStr |
Application of profluorescent nitroxides for measurements of oxidative capacity of combustion generated particles |
title_full_unstemmed |
Application of profluorescent nitroxides for measurements of oxidative capacity of combustion generated particles |
title_sort |
application of profluorescent nitroxides for measurements of oxidative capacity of combustion generated particles |
publisher |
Association of the Chemical Engineers of Serbia |
series |
Chemical Industry and Chemical Engineering Quarterly |
issn |
1451-9372 2217-7434 |
publishDate |
2012-01-01 |
description |
Oxidative stress caused by generation of free radicals and related reactive oxygen species (ROS) at the sites of deposition has been proposed as a mechanism for many of the adverse health outcomes associated with exposure to particulate matter (PM). Recently, a new profluorescent nitroxide molecular probe (BPEAnit) developed at QUT was applied in an entirely novel, rapid and non-cell based assay for assessing the oxidative potential of particles (i.e. potential of particles to induce oxidative stress). The technique was applied on particles produced by several combustion sources, namely cigarette smoke, diesel exhaust and wood smoke. One of the main findings from the initial studies undertaken at QUT was that the oxidative potential per PM mass significantly varies for different combustion sources as well as the type of fuel used and combustion conditions. However, possibly the most important finding from our studies was that there was a strong correlation between the organic fraction of particles and the oxidative potential measured by the PFN assay, which clearly highlights the importance of organic species in particle-induced toxicity. |
topic |
combustion particles diesel particles (DPM) oxidative stress reactive oxygen species (ROS) |
url |
http://www.doiserbia.nb.rs/img/doi/1451-9372/2012/1451-93721200113S.pdf |
work_keys_str_mv |
AT stevanovics applicationofprofluorescentnitroxidesformeasurementsofoxidativecapacityofcombustiongeneratedparticles AT ristovskizd applicationofprofluorescentnitroxidesformeasurementsofoxidativecapacityofcombustiongeneratedparticles AT miljevicb applicationofprofluorescentnitroxidesformeasurementsofoxidativecapacityofcombustiongeneratedparticles AT fairfullsmithke applicationofprofluorescentnitroxidesformeasurementsofoxidativecapacityofcombustiongeneratedparticles AT bottlese applicationofprofluorescentnitroxidesformeasurementsofoxidativecapacityofcombustiongeneratedparticles |
_version_ |
1725103803678588928 |