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Methamphetamine causes cardiovascular dysfunction via cystathionine gamma lyase and hydrogen sulfide depletion.
Kolluru, Gopi K; Glawe, John D; Pardue, Sibile; Kasabali, Ahmad; Alam, Shafiul; Rajendran, Saranya; Cannon, Allison L; Abdullah, Chowdhury S; Traylor, James G; Shackelford, Rodney E; Woolard, Matthew D; Orr, A Wayne; Goeders, Nicholas E; Dominic, Paari; Bhuiyan, Md Shenuarin S; Kevil, Christopher G.
Afiliação
  • Kolluru GK; Department of Pathology, LSU Health Sciences Center- Shreveport, USA.
  • Glawe JD; Department of Pathology, LSU Health Sciences Center- Shreveport, USA.
  • Pardue S; Department of Pathology, LSU Health Sciences Center- Shreveport, USA.
  • Kasabali A; Department of Pathology, LSU Health Sciences Center- Shreveport, USA.
  • Alam S; Department of Pathology, LSU Health Sciences Center- Shreveport, USA.
  • Rajendran S; Indiana University, Bloomington, USA.
  • Cannon AL; Department of Pathology, LSU Health Sciences Center- Shreveport, USA.
  • Abdullah CS; Department of Pathology, LSU Health Sciences Center- Shreveport, USA.
  • Traylor JG; Department of Pathology, LSU Health Sciences Center- Shreveport, USA.
  • Shackelford RE; Department of Pathology, LSU Health Sciences Center- Shreveport, USA.
  • Woolard MD; Department of Microbiology and Immunology, LSU Health Sciences Center- Shreveport, USA.
  • Orr AW; Department of Pathology, LSU Health Sciences Center- Shreveport, USA; Department of Cellular Biology and Anatomy, LSU Health Sciences Center- Shreveport, USA; Department of Molecular and Cellular Physiology, LSU Health Sciences Center- Shreveport, USA.
  • Goeders NE; Department of Pharmacology, Toxicology & Neuroscience, LSU Health Sciences Center- Shreveport, USA.
  • Dominic P; Division of Cardiology Department of Medicine, LSU Health Sciences Center- Shreveport, USA.
  • Bhuiyan MSS; Department of Pathology, LSU Health Sciences Center- Shreveport, USA.
  • Kevil CG; Department of Pathology, LSU Health Sciences Center- Shreveport, USA; Department of Cellular Biology and Anatomy, LSU Health Sciences Center- Shreveport, USA; Department of Molecular and Cellular Physiology, LSU Health Sciences Center- Shreveport, USA. Electronic address: chris.kevil@lsuhs.edu.
Redox Biol ; 57: 102480, 2022 Nov.
Article em En | MEDLINE | ID: mdl-36167027
ABSTRACT
Methamphetamine (METH) is an addictive illicit drug used worldwide that causes significant damage to blood vessels resulting in cardiovascular dysfunction. Recent studies highlight increased prevalence of cardiovascular disease (CVD) and associated complications including hypertension, vasospasm, left ventricular hypertrophy, and coronary artery disease in younger populations due to METH use. Here we report that METH administration in a mouse model of 'binge and crash' decreases cardiovascular function via cystathionine gamma lyase (CSE), hydrogen sulfide (H2S), nitric oxide (NO) (CSE/H2S/NO) dependent pathway. METH significantly reduced H2S and NO bioavailability in plasma and skeletal muscle tissues co-incident with a significant reduction in flow-mediated vasodilation (FMD) and blood flow velocity revealing endothelial dysfunction. METH administration also reduced cardiac ejection fraction (EF) and fractional shortening (FS) associated with increased tissue and perivascular fibrosis. Importantly, METH treatment selectively decreased CSE expression and sulfide bioavailability along with reduced eNOS phosphorylation and NO levels. Exogenous sulfide therapy or endothelial CSE transgenic overexpression corrected cardiovascular and associated pathological responses due to METH implicating a central molecular regulatory pathway for tissue pathology. These findings reveal that therapeutic intervention targeting CSE/H2S bioavailability may be useful in attenuating METH mediated cardiovascular disease.
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Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2022 Tipo de documento: Article