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Redox states of hemoglobin determine left ventricle pressure recovery and activity of mitochondrial complex IV in hypoxic rat hearts.
Edmondson, Makhosazane; Jana, Sirsendu; Meng, Fantao; Strader, Michael Brad; Baek, Jin Hyen; Gao, Yamei; Buehler, Paul W; Alayash, Abdu I.
Afiliação
  • Edmondson M; Laboratory of Biochemistry and Vascular Biology, Division of Blood Components and Devices, Maryland, USA.
  • Jana S; Laboratory of Biochemistry and Vascular Biology, Division of Blood Components and Devices, Maryland, USA.
  • Meng F; Laboratory of Biochemistry and Vascular Biology, Division of Blood Components and Devices, Maryland, USA.
  • Strader MB; Laboratory of Biochemistry and Vascular Biology, Division of Blood Components and Devices, Maryland, USA.
  • Baek JH; Laboratory of Biochemistry and Vascular Biology, Division of Blood Components and Devices, Maryland, USA.
  • Gao Y; Laboratory of Pediatric and Respiratory Viral Disease, Division of Viral Products, Office of Vaccines Research and Review, Center for Biologics Evaluation and Research, Silver Spring, MD, USA.
  • Buehler PW; Laboratory of Biochemistry and Vascular Biology, Division of Blood Components and Devices, Maryland, USA.
  • Alayash AI; Laboratory of Biochemistry and Vascular Biology, Division of Blood Components and Devices, Maryland, USA. Electronic address: abdu.alayash@fda.hhs.gov.
Free Radic Biol Med ; 141: 348-361, 2019 09.
Article em En | MEDLINE | ID: mdl-31302228
ABSTRACT
Cardiovascular effects were reported to occur in humans and in animal models during transfusion with hemoglobin (Hb)-based oxygen therapeutics. The effects of Hb's iron redox states on cardiac parameters during hypoxia/reoxygenation are however poorly defined. We hypothesize that acute exposures to ferric Hb during hypoxia leads to cardiomyocyte injury and an impaired left ventricular response accompanied by cardiac mitochondrial bioenergetic dysfunction. Recovery of left ventricular functions in an isolated rat heart Langendorff perfusion system was observed following perfusion with ferrous but not with ferric Hb. Ferric Hb induced the development of heart lesions, and impairment of the respiratory chain complex activity. Under normoxia, a sharp decline in cardiac parameters was observed following co-perfusion of low (20 µM) and high (100 µM) ascorbic acid (Asc) with ferrous Hb. This trend continued with ferric Hb co-perfusion, but only at the higher concentration of Asc. These observations suggest that perfusion of the hypoxic heart with ferric Hb increases oxidative stress thereby resulting in cardiac dysfunction. Intervention with Asc to reduce ferric Hb may offer a strategy to control Hb toxicity; however, timing of administration, and dosage of Asc may require individual optimization to target specific redox forms of Hb.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Oxigênio / Oxiemoglobinas / Coração / Miocárdio Idioma: En Ano de publicação: 2019 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Oxigênio / Oxiemoglobinas / Coração / Miocárdio Idioma: En Ano de publicação: 2019 Tipo de documento: Article