首页|期刊导航|Acta Biochimica et Biophysica Sinica|Pervasive environmental contaminant acrolein compromises myocardial geometry and function through the induction of cuproptosis

Pervasive environmental contaminant acrolein compromises myocardial geometry and function through the induction of cuproptosisOA

中文摘要

Acrolein,a highly reactiveα,β-unsaturated aldehyde found in cigarette smoke,automobile exhaust,industrial emissions,combustion byproducts,cooking and cyclophosphamide chemotherapy,has raised serious health concerns,although the precise mechanism remains unclear.This study is designed to examine the impact of this pervasive environmental pollutant on myocardial geometry and function alongside the underlying cellular mechanisms.Adult C57BL/6 mice are challenged with acrolein(2.5 mg/kg/day,i.p.,for 20 days)prior to the evaluation of myocardial geometry and function.Acrolein exposure evokes evident cardiac remodeling(interstitial fibrosis),compromised echocardiographic(enlarged LVESD,compromised ejection fraction and fractional shortening),cardiomyocyte contractile and intracellular Ca^(2+)capacities[decreased peak shortening,maximal velocity of shortening and relengthening(±dL/dt),and electrically stimulated rise in Fura-2 fluorescence intensity(ΔFFl),prolonged time-to-90%relengthening(TR_(90))and intracellular Ca^(2+)decay],accompanied by overt mitochondrial damage(ultrastructure,aconitase and mitochondrial protein contents),free radical buildup,apoptosis(Bax,Caspase-3,and Bcl2)and cuproptosis(upregulated SLC31A1,DLAT and FDX1),downregulated the Fe-S cluster proteins ACO_(2) and NDUFS8 alongside unchanged ATP7A and the ferroptosis markers GPX4 and SLC7A11.The levels of copper-sensing protein metal response element binding transcription factor 2(MTF2),but not MTF1,are increased by acrolein insult.CB-DOCK2 analysis predicts an interaction between acrolein and the MTF2 dimer within its DNAbinding regions.In vivo administration of the cuproptosis inhibitor tetrathiomolybdate(TTM),the mitochondrial antioxidant mitoTEMPO or the nonselective MTF2 inhibitor actinomycin D alleviates acrolein-evoked cardiomyocyte dysfunction(decreased PS,±dL/dt,and prolonged TR_(90)).These findings indicate that acrolein evoked cardiac functional anomalies possibly through MTF2-related control of cuproptosis.

Xiaohu Wang;Shuyi Zhu;Yipin Zhao;Xinlong Di;Lingfei Cao;Russel JReiter;Emily YHe;Yuan Zhou;Bonglee Kim;Yong Cheng;Jun Ren

Department of Cardiology,Fuwai Central China Cardiovascular Hospital,Henan Provincial People''s Hospital Heart Center,Zhengzhou 451464,ChinaThe Cardiovascular Medicine Department,The First Affiliated Hospital of Zhengzhou University,Zhengzhou 451162,ChinaDepartment of Cardiology,Zhengzhou University Central China Fuwai Hospital,Zhengzhou 451464,ChinaDepartment of Cardiology,The Second Affiliated Hospital of Zhengzhou University,Zhengzhou 450014,ChinaHenan Key Laboratory of Medical Tissue Regeneration,Henan Medical University,Xinxiang 453003,ChinaDepartment of Cell Systems and Anatomy,UT Health San Antonio,TX,USADepartment of Clinical Immunology,Xijing Hospital,Air Force Medical University,Xi''an 710032,ChinaDepartment of Biomedical Informatics,School of Basic Medical Sciences,Peking University,Beijing 100191,ChinaDepartment of Pathology,College of Korean Medicine,Kyung Hee University,Hoegidong Dongdaemun-gu,Seoul 02447,Republic of KoreaDepartment of Cardiovascular Medicine,The Sixth People''s Hospital of Zhengzhou,Zhengzhou 450052,ChinaDepartment of Cardiology,Zhongshan Hospital Fudan University,Shanghai 200032,China Shanghai Institute of Cardiovascular Diseases,Zhongshan Hospital Fudan University,Shanghai 200032,China National Clinical Research Center for Interventional Medicine,Shanghai 200032,China

医药卫生

acroleinmyocardialremodelingfunctioncuproptosisMTF2

《Acta Biochimica et Biophysica Sinica》 2026 (3)

P.541-550,10

supported in part by the grants from the Henan Provincial Science and Technology Research Project(No.25202310242)the Henan Provincial Science and Technology Research Project(No.222102310487)the Henan Provincial Medical Science and Technology Tackling Program(No.LHGJ20240150).

10.3724/abbs.2025179

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