Literature DB >> 28679061

Mechanisms That Modulate Peripheral Oxygen Delivery during Exercise in Heart Failure.

Tomohiko Kisaka1,2, William W Stringer1, Akira Koike3, Piergiuseppe Agostoni4,5, Karlman Wasserman1.   

Abstract

Oxygen uptake ([Formula: see text]o2) measured at the mouth, which is equal to the cardiac output (CO) times the arterial-venous oxygen content difference [C(a-v)O2], increases more than 10- to 20-fold in normal subjects during exercise. To achieve this substantial increase in oxygen uptake [[Formula: see text]o2 = CO × C(a-v)O2] both CO and the arterial-venous difference must simultaneously increase. Although this occurs in normal subjects, patients with heart failure cannot achieve significant increases in cardiac output and must rely primarily on changes in the arterial-venous difference to increase [Formula: see text]o2 during exercise. Inadequate oxygen delivery to the tissue during exercise in heart failure results in tissue anaerobiosis, lactic acid accumulation, and reduction in exercise tolerance. H+ is an important regulatory and feedback mechanism to facilitate additional oxygen delivery to the tissue (Bohr effect) and further aerobic production of ATP when tissue anaerobic metabolism increases the production of lactate (anaerobic threshold). This H+ production in the muscle capillary promotes the continued unloading of oxygen (oxyhemoglobin desaturation) while maintaining the muscle capillary Po2 (Fick principle) at a sufficient level to facilitate aerobic metabolism and overcome the diffusion barriers from capillary to mitochondria ("critical capillary Po2," 15-20 mm Hg). This mechanism is especially important during exercise in heart failure where cardiac output increase is severely constrained. Several compensatory mechanisms facilitate peripheral oxygen delivery during exercise in both normal persons and patients with heart failure.

Entities:  

Keywords:  Bohr effect; Fick’s Law of Diffusion; critical capillary Po2; lactate threshold; oxygen dissociation from hemoglobin during exercise

Mesh:

Substances:

Year:  2017        PMID: 28679061     DOI: 10.1513/AnnalsATS.201611-889FR

Source DB:  PubMed          Journal:  Ann Am Thorac Soc        ISSN: 2325-6621


  8 in total

Review 1.  Heart rate during exercise: mechanisms, behavior, and therapeutic and prognostic implications in heart failure patients with reduced ejection fraction.

Authors:  Stefania Paolillo; Piergiuseppe Agostoni; Fabiana De Martino; Francesca Ferrazzano; Fabio Marsico; Paola Gargiulo; Elisabetta Pirozzi; Caterina Marciano; Santo Dellegrottaglie; Pasquale Perrone Filardi
Journal:  Heart Fail Rev       Date:  2018-07       Impact factor: 4.214

2.  A novel human donor cornea preservation cocktail incorporating a thermo-reversible gelation polymer (TGP), enhancing the corneal endothelial cell density maintenance and explant culture of corneal limbal cells.

Authors:  Bhuvaneshwari Namitha; Munusamy Rajendran Chitra; Mathevan Bhavya; Periasamy Parikumar; Shojiro Katoh; Hiroshi Yoshioka; Masaru Iwasaki; Rajappa Senthilkumar; Mathaiyan Rajmohan; Ramalingam Karthick; Senthilkumar Preethy; Samuel J K Abraham
Journal:  Biotechnol Lett       Date:  2021-03-25       Impact factor: 2.461

Review 3.  Exercise as a Therapeutic Strategy for Sarcopenia in Heart Failure: Insights into Underlying Mechanisms.

Authors:  Jinkyung Cho; Youngju Choi; Pavol Sajgalik; Mi-Hyun No; Sang-Hyun Lee; Sujin Kim; Jun-Won Heo; Eun-Jeong Cho; Eunwook Chang; Ju-Hee Kang; Hyo-Bum Kwak; Dong-Ho Park
Journal:  Cells       Date:  2020-10-13       Impact factor: 6.600

4.  A Novel Non-invasive Index of Cardiopulmonary Reserve for the Prediction of Failure of Weaning From Mechanical Ventilation.

Authors:  George T Nikitas; Stylianos Kykalos; Evangelia Ntikoudi; Ioannis Vasileiadis; Antonia Koutsoukou; Nikolaos I Nikiteas
Journal:  Cureus       Date:  2022-07-22

Review 5.  Exercise metabolomics in pulmonary arterial hypertension: Where pulmonary vascular metabolism meets exercise physiology.

Authors:  Michael H Lee; Thaís C F Menezes; Julie A Reisz; Eloara V M Ferreira; Brian B Graham; Rudolf K F Oliveira
Journal:  Front Physiol       Date:  2022-09-12       Impact factor: 4.755

6.  Aerobic Training for Healthy Men and Women: Determining Intensities by Different Equations.

Authors:  Fernando Policarpo Barbosa; Andre M Oliveira; Claudio Hernández-Mosqueira; Gustavo Pavez-Adasme; Pablo Luna-Villouta; Jairo Azocar-Gallardo
Journal:  Int J Environ Res Public Health       Date:  2022-10-08       Impact factor: 4.614

7.  Time-weighted lactate as a predictor of adverse outcome in acute heart failure.

Authors:  Giorgio Bosso; Valentina Mercurio; Nermin Diab; Antonio Pagano; Giovanni Porta; Enrico Allegorico; Claudia Serra; Giovanna Guiotto; Fabio Giuliano Numis; Carlo Gabriele Tocchetti; Fernando Schiraldi
Journal:  ESC Heart Fail       Date:  2020-11-24

8.  Cardiac output changes during exercise in heart failure patients: focus on mid-exercise.

Authors:  Nicoletta Corrieri; Alberico Del Torto; Carlo Vignati; Riccardo Maragna; Fabiana De Martino; Martina Cellamare; Stefania Farina; Elisabetta Salvioni; Alice Bonomi; Piergiuseppe Agostoni
Journal:  ESC Heart Fail       Date:  2020-11-17
  8 in total

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