Identification of early biomarkers during acetaminophen-induced hepatotoxicity by fourier transform infrared microspectroscopy

Acetaminophen is a widely prescribed drug used to relieve pain and fever; however, it is a leading cause of drug-induced liver injury and a burden on public healthcare. In this study, hepatotoxicity in mice post oral dosing of acetaminophen was investigated using liver and sera samples with Fourier...

Full description

Bibliographic Details
Main Authors: Gautam, R, Deobagkar-Lele, M, Chandrasekar, B, Rakshit, S, Kumar B N, V, Umapathy, S, Nandi, D
Format: Journal article
Language:English
Published: Public Library of Science 2012
_version_ 1826342874699005952
author Gautam, R
Deobagkar-Lele, M
Chandrasekar, B
Rakshit, S
Kumar B N, V
Umapathy, S
Nandi, D
author_facet Gautam, R
Deobagkar-Lele, M
Chandrasekar, B
Rakshit, S
Kumar B N, V
Umapathy, S
Nandi, D
author_sort Gautam, R
collection OXFORD
description Acetaminophen is a widely prescribed drug used to relieve pain and fever; however, it is a leading cause of drug-induced liver injury and a burden on public healthcare. In this study, hepatotoxicity in mice post oral dosing of acetaminophen was investigated using liver and sera samples with Fourier Transform Infrared microspectroscopy. The infrared spectra of acetaminophen treated livers in BALB/c mice show decrease in glycogen, increase in amounts of cholesteryl esters and DNA respectively. Rescue experiments using L-methionine demonstrate that depletion in glycogen and increase in DNA are abrogated with pre-treatment, but not post-treatment, with L-methionine. This indicates that changes in glycogen and DNA are more sensitive to the rapid depletion of glutathione. Importantly, analysis of sera identified lowering of glycogen and increase in DNA and chlolesteryl esters earlier than increase in alanine aminotransferase, which is routinely used to diagnose liver damage. In addition, these changes are also observed in C57BL/6 and Nos2(-/-) mice. There is no difference in the kinetics of expression of these three molecules in both strains of mice, the extent of damage is similar and corroborated with ALT and histological analysis. Quantification of cytokines in sera showed increase upon APAP treatment. Although the levels of Tnfα and Ifnγ in sera are not significantly affected, Nos2(-/-) mice display lower Il6 but higher Il10 levels during this acute model of hepatotoxicity. Overall, this study reinforces the growing potential of Fourier Transform Infrared microspectroscopy as a fast, highly sensitive and label-free technique for non-invasive diagnosis of liver damage. The combination of Fourier Transform Infrared microspectroscopy and cytokine analysis is a powerful tool to identify multiple biomarkers, understand differential host responses and evaluate therapeutic regimens during liver damage and, possibly, other diseases.
first_indexed 2025-03-11T23:38:12Z
format Journal article
id oxford-uuid:d28f4927-91d2-495a-9d43-06daf7b3ff41
institution University of Oxford
language English
last_indexed 2025-03-11T23:38:12Z
publishDate 2012
publisher Public Library of Science
record_format dspace
spelling oxford-uuid:d28f4927-91d2-495a-9d43-06daf7b3ff412025-03-11T12:47:30ZIdentification of early biomarkers during acetaminophen-induced hepatotoxicity by fourier transform infrared microspectroscopyJournal articlehttp://purl.org/coar/resource_type/c_dcae04bcuuid:d28f4927-91d2-495a-9d43-06daf7b3ff41EnglishSymplectic ElementsPublic Library of Science2012Gautam, RDeobagkar-Lele, MChandrasekar, BRakshit, SKumar B N, VUmapathy, SNandi, DAcetaminophen is a widely prescribed drug used to relieve pain and fever; however, it is a leading cause of drug-induced liver injury and a burden on public healthcare. In this study, hepatotoxicity in mice post oral dosing of acetaminophen was investigated using liver and sera samples with Fourier Transform Infrared microspectroscopy. The infrared spectra of acetaminophen treated livers in BALB/c mice show decrease in glycogen, increase in amounts of cholesteryl esters and DNA respectively. Rescue experiments using L-methionine demonstrate that depletion in glycogen and increase in DNA are abrogated with pre-treatment, but not post-treatment, with L-methionine. This indicates that changes in glycogen and DNA are more sensitive to the rapid depletion of glutathione. Importantly, analysis of sera identified lowering of glycogen and increase in DNA and chlolesteryl esters earlier than increase in alanine aminotransferase, which is routinely used to diagnose liver damage. In addition, these changes are also observed in C57BL/6 and Nos2(-/-) mice. There is no difference in the kinetics of expression of these three molecules in both strains of mice, the extent of damage is similar and corroborated with ALT and histological analysis. Quantification of cytokines in sera showed increase upon APAP treatment. Although the levels of Tnfα and Ifnγ in sera are not significantly affected, Nos2(-/-) mice display lower Il6 but higher Il10 levels during this acute model of hepatotoxicity. Overall, this study reinforces the growing potential of Fourier Transform Infrared microspectroscopy as a fast, highly sensitive and label-free technique for non-invasive diagnosis of liver damage. The combination of Fourier Transform Infrared microspectroscopy and cytokine analysis is a powerful tool to identify multiple biomarkers, understand differential host responses and evaluate therapeutic regimens during liver damage and, possibly, other diseases.
spellingShingle Gautam, R
Deobagkar-Lele, M
Chandrasekar, B
Rakshit, S
Kumar B N, V
Umapathy, S
Nandi, D
Identification of early biomarkers during acetaminophen-induced hepatotoxicity by fourier transform infrared microspectroscopy
title Identification of early biomarkers during acetaminophen-induced hepatotoxicity by fourier transform infrared microspectroscopy
title_full Identification of early biomarkers during acetaminophen-induced hepatotoxicity by fourier transform infrared microspectroscopy
title_fullStr Identification of early biomarkers during acetaminophen-induced hepatotoxicity by fourier transform infrared microspectroscopy
title_full_unstemmed Identification of early biomarkers during acetaminophen-induced hepatotoxicity by fourier transform infrared microspectroscopy
title_short Identification of early biomarkers during acetaminophen-induced hepatotoxicity by fourier transform infrared microspectroscopy
title_sort identification of early biomarkers during acetaminophen induced hepatotoxicity by fourier transform infrared microspectroscopy
work_keys_str_mv AT gautamr identificationofearlybiomarkersduringacetaminopheninducedhepatotoxicitybyfouriertransforminfraredmicrospectroscopy
AT deobagkarlelem identificationofearlybiomarkersduringacetaminopheninducedhepatotoxicitybyfouriertransforminfraredmicrospectroscopy
AT chandrasekarb identificationofearlybiomarkersduringacetaminopheninducedhepatotoxicitybyfouriertransforminfraredmicrospectroscopy
AT rakshits identificationofearlybiomarkersduringacetaminopheninducedhepatotoxicitybyfouriertransforminfraredmicrospectroscopy
AT kumarbnv identificationofearlybiomarkersduringacetaminopheninducedhepatotoxicitybyfouriertransforminfraredmicrospectroscopy
AT umapathys identificationofearlybiomarkersduringacetaminopheninducedhepatotoxicitybyfouriertransforminfraredmicrospectroscopy
AT nandid identificationofearlybiomarkersduringacetaminopheninducedhepatotoxicitybyfouriertransforminfraredmicrospectroscopy