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PMID: 24334905 Published · epublish English Journal Article Research Support, N.I.H., Extramural

Macrophage migration inhibitory factor deficiency augments doxorubicin-induced cardiomyopathy.

Journal of the American Heart Association ·Vol. 2 ·No. 6 ·2013-12-12 ·Pages e000439

Xu X, Bucala R, Ren J

Abstract

Recent evidence has depicted a role of macrophage migration inhibitory factor (MIF) in cardiac homeostasis under pathological conditions. This study was designed to evaluate the role of MIF in doxorubicin-induced cardiomyopathy and the underlying mechanism involved with a focus on autophagy. Wild-type (WT) and MIF knockout (MIF(-/-)) mice were given saline or doxorubicin (20 mg/kg cumulative, i.p.). A cohort of WT and MIF(-/-) mice was given rapamycin (6 mg/kg, i.p.) with or without bafilomycin A1 (BafA1, 3 μmol/kg per day, i.p.) for 1 week prior to doxorubicin challenge. To consolidate a role for MIF in the maintenance of cardiac homeostasis following doxorubicin challenge, recombinant mouse MIF (rmMIF) was given to MIF(-/-) mice challenged with or without doxorubicin. Echocardiographic, cardiomyocyte function, and intracellular Ca(2+) handling were evaluated. Autophagy and apoptosis were examined. Mitochondrial morphology and function were examined using transmission electron microscopy, JC-1 staining, MitoSOX Red fluorescence, and mitochondrial respiration complex assay. DHE staining was used to evaluate reactive oxygen species (ROS) generation. MIF knockout exacerbated doxorubicin-induced mortality and cardiomyopathy (compromised fractional shortening, cardiomyocyte and mitochondrial function, apoptosis, and ROS generation). These detrimental effects of doxorubicin were accompanied by defective autophagolysosome formation, the effect of which was exacerbated by MIF knockout. Rapamycin pretreatment rescued doxorubicin-induced cardiomyopathy in WT and MIF(-/-) mice. Blocking autophagolysosome formation using BafA1 negated the cardioprotective effect of rapamycin and rmMIF. Our data suggest that MIF serves as an indispensable cardioprotective factor against doxorubicin-induced cardiomyopathy with an underlying mechanism through facilitating autophagolysosome formation.

Keywords
MIF autophagolysosome doxorubicin heart failure rapamycin
MeSH Terms
Animals Apoptosis Autophagy Calcium Signaling Cardiomyopathies/chemically induced,genetics,metabolism,pathology,physiopathology,prevention & control Cytoprotection Disease Models, Animal Doxorubicin Electron Transport Chain Complex Proteins/metabolism Intramolecular Oxidoreductases/administration & dosage,deficiency,genetics Lysosomes/metabolism Macrolides/pharmacology Macrophage Migration-Inhibitory Factors/administration & dosage,deficiency,genetics Male Mice Mice, Inbred C57BL Mice, Knockout Mitochondria/metabolism,ultrastructure Myocardial Contraction Myocytes, Cardiac/drug effects,metabolism,ultrastructure Oxidative Stress Reactive Oxygen Species/metabolism Sirolimus/pharmacology Time Factors Ventricular Function, Left Ventricular Remodeling
Chemicals
Electron Transport Chain Complex Proteins Macrolides Macrophage Migration-Inhibitory Factors Reactive Oxygen Species Doxorubicin bafilomycin A1 Intramolecular Oxidoreductases Mif protein, mouse Sirolimus
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Xu Xihui
Center for Cardiovascular Research and Alternative Medicine, University of Wyoming College of Health Sciences, School of Pharmacy, Laramie, WY.
Bucala Richard
Ren Jun
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Article Info
Journal
Journal of the American Heart Association
Abbr.
J Am Heart Assoc
ISSN
2047-9980
Published
2013-12-12
Epub
2013-00-12
Pages
e000439
Language
English
Region
England
NLM ID
101580524
PMCID
PMC3886760
Subset
IM
Grants
NIAID NIH HHS · R01AI042310 · United States
NCRR NIH HHS · P20 RR016474 · United States
NIGMS NIH HHS · 8P20GM103432 · United States
NIGMS NIH HHS · P20 GM103432 · United States
NIAID NIH HHS · R01 AI042310 · United States
NCRR NIH HHS · 5P20RR 016474 · United States
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