Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

SWATH-MS for discovery of early biomarkers of drug-induced cardiotoxicity using an animal doxorubicin model

View through CrossRef
Abstract Background Clinical use of anthracyclines is limited by cumulative dose-dependent cardiotoxicity, though the mechanisms responsible for this are complex and incompletely understood. Existing biomarkers of anthracycline-related cardiotoxicity, such as troponin and NT-proBNP, lack sensitivity for the earliest stages of cardiotoxicity, therefore limiting scope to switch to alternative, safer treatment. As such, a reliable early biomarker of anthracycline-related cardiotoxicity remains a key unmet research need. Methods We investigated the rat myocardial proteome to identify novel biomarkers of anthracycline-related cardiotoxicity warranting further investigation for routine clinical application. Six groups of 8 Han-Wistar rats were dosed weekly for 1-7 doses with either doxorubicin 1.25mg/kg or saline control, followed by terminal bleeds. Sequential window acquisition of all theoretical mass spectra (SWATH-MS) was used to compare the rat myocardial proteome at serial timepoints and between doxorubicin- and saline-treated animals. A shortlist of candidate biomarkers was generated by identifying proteins with significant log 2 fold changes at early/mid timepoint dysregulation, sustained to later timepoints. Pathway analysis for human ortholog proteins was undertaken using the Uniprot database and STRING. Results Three proteins were differentially expressed at early, mid- and late timepoints (myosin light chain 3, desmin and cysteine-rich protein 2). A further 10 proteins were differentially expressed at mid- and late timepoints. Pathway analysis identified biological processes enriched within the myocardial proteome, predominantly related to muscle, metal ion, haemostasis, lipid and inflammation processes. A candidate biomarker shortlist of 34 proteins was derived for future study. Conclusion We used a rat anthracycline dosing schedule to recapitulate the development of cardiotoxicity observed in humans. We describe a shortlist of 34 proteins with promise as candidate biomarkers of the earliest stages of anthracycline-related cardiotoxicity and summarise pathway analysis of functionally enriched biological processes within the rat myocardial proteome during anthracycline treatment. Further study is underway to explore these shortlisted proteins in rat plasma, with a human study planned to validate best-performing biomarkers.
Title: SWATH-MS for discovery of early biomarkers of drug-induced cardiotoxicity using an animal doxorubicin model
Description:
Abstract Background Clinical use of anthracyclines is limited by cumulative dose-dependent cardiotoxicity, though the mechanisms responsible for this are complex and incompletely understood.
Existing biomarkers of anthracycline-related cardiotoxicity, such as troponin and NT-proBNP, lack sensitivity for the earliest stages of cardiotoxicity, therefore limiting scope to switch to alternative, safer treatment.
As such, a reliable early biomarker of anthracycline-related cardiotoxicity remains a key unmet research need.
Methods We investigated the rat myocardial proteome to identify novel biomarkers of anthracycline-related cardiotoxicity warranting further investigation for routine clinical application.
Six groups of 8 Han-Wistar rats were dosed weekly for 1-7 doses with either doxorubicin 1.
25mg/kg or saline control, followed by terminal bleeds.
Sequential window acquisition of all theoretical mass spectra (SWATH-MS) was used to compare the rat myocardial proteome at serial timepoints and between doxorubicin- and saline-treated animals.
A shortlist of candidate biomarkers was generated by identifying proteins with significant log 2 fold changes at early/mid timepoint dysregulation, sustained to later timepoints.
Pathway analysis for human ortholog proteins was undertaken using the Uniprot database and STRING.
Results Three proteins were differentially expressed at early, mid- and late timepoints (myosin light chain 3, desmin and cysteine-rich protein 2).
A further 10 proteins were differentially expressed at mid- and late timepoints.
Pathway analysis identified biological processes enriched within the myocardial proteome, predominantly related to muscle, metal ion, haemostasis, lipid and inflammation processes.
A candidate biomarker shortlist of 34 proteins was derived for future study.
Conclusion We used a rat anthracycline dosing schedule to recapitulate the development of cardiotoxicity observed in humans.
We describe a shortlist of 34 proteins with promise as candidate biomarkers of the earliest stages of anthracycline-related cardiotoxicity and summarise pathway analysis of functionally enriched biological processes within the rat myocardial proteome during anthracycline treatment.
Further study is underway to explore these shortlisted proteins in rat plasma, with a human study planned to validate best-performing biomarkers.

Related Results

GW24-e2975 Over-expression of calpastatin aggravates in vitro and in vivo cardiotoxicity induced by doxorubicin
GW24-e2975 Over-expression of calpastatin aggravates in vitro and in vivo cardiotoxicity induced by doxorubicin
Objectives Doxorubicin often causes damage to the heart, which may present as cardiomyopathy. However, the mechanisms by which doxorubicin induces cardiotoxicity ...
The role of angiotensin signalling in anthracycline-induced cardiotoxicity
The role of angiotensin signalling in anthracycline-induced cardiotoxicity
Abstract   Anthracyclines (e.g. epirubicin, doxorubicin, daunorubicin) are widely used for the treatment of adult and paediatric...
Electric Animal An Interview with Akira Mizuta Lippit & (untitled photographs)
Electric Animal An Interview with Akira Mizuta Lippit & (untitled photographs)
Dr. Akira Mizuta Lippit, author of Electric Animal: Toward a Rhetoric of Wildlife, explores, in the context of the development of cinema, how the concept of “the animal” has become...
Cardiotoxicity of Doxorubicin: Effects of Drugs Inhibiting the Release of Vasoactive Substances
Cardiotoxicity of Doxorubicin: Effects of Drugs Inhibiting the Release of Vasoactive Substances
Abstract:The therapeutic usefulness of doxorubicin, an antineoplastic drug, is limited by its cardiotoxicity whose mechanism is as yet unknown. Several hypotheses have been postula...
Potential Roles of Melatonin in Doxorubicin-Induced Cardiotoxicity: From Cellular Mechanisms to Clinical Application
Potential Roles of Melatonin in Doxorubicin-Induced Cardiotoxicity: From Cellular Mechanisms to Clinical Application
Doxorubicin is a potent chemotherapeutic drug; however, its clinical application has been limited due to its cardiotoxicity. One of the major mechanisms of doxorubicin-induced card...
Abstract 10138: Exercise Inhibits Doxorubicin-Induced Cardiotoxicity by Preventing Cardiomyocyte Cellular Senescence
Abstract 10138: Exercise Inhibits Doxorubicin-Induced Cardiotoxicity by Preventing Cardiomyocyte Cellular Senescence
Introduction: Doxorubicin (Dox) induces cardiomyocyte cellular senescence thru proinflammatory mechanisms and by damaging DNA, resulting in Dox-induced cardiotoxicity. ...
The Association between Systemic Immune-Inflammation Index and Cardiotoxicity Related to 5-Fluorouracil in Colorectal Cancer
The Association between Systemic Immune-Inflammation Index and Cardiotoxicity Related to 5-Fluorouracil in Colorectal Cancer
Abstract Background and aims: The cardiotoxicity related to 5-fluorouracil(5-FU) in cancer patients has garnered widespread attention. The systemic immune-inflammation inde...

Back to Top