The goal of this study was to investigate the effect of 1 mM exogenous lactate on cardiac function, and some metabolic parameters, such as glycolysis, glucose oxidation, lactate oxidation, and fatty acid oxidation, in isolated working rat hearts. Hearts from male Sprague-Dawley rats were isolated and perfused with 5 mM glucose, 1.2 mM palmitate, and 100 microU/ml insulin with or without 1 mM lactate. The rates of glycolysis, glucose, lactate, and fatty acid oxidation were determined by supplementing the buffer with radiolabeled substrates. Cardiac function was similar between lactate+ and lactate- hearts. Glycolysis was not affected by 1 mM lactate. The addition of lactate did not alter glucose oxidation rates. Interestingly, palmitate oxidation rates almost doubled when 1 mM lactate was present in the perfusate. This study suggests that subst rate supply to the heart is crucially important when evaluating the data from metabolic studies.
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http://dx.doi.org/10.1007/s11010-006-9305-5 | DOI Listing |
Background: High levels of catecholamines are cardiotoxic and associated with stress-induced cardiomyopathies. Septic patients are routinely exposed to endogenously released and exogenously administered catecholamines, which may alter cardiac function and perfusion causing ischemia. Early during human septic shock, left ventricular ejection fraction (LVEF) decreases but normalizes in survivors over 7-10 days.
View Article and Find Full Text PDFMed J Malaysia
January 2025
Department of Paediatrics, Saveetha Medical College Hospital, SIMATS, Saveetha University, Chennai, India.
Introduction: Neonatal circulatory shock poses a significant challenge in intensive care settings and necessitates early recognition and intervention to prevent adverse outcomes. The perfusion index (PI), derived from pulse oximetry signals, is a potential adjunct tool for assessing peripheral perfusion and predicting shock in neonates. This prospective observational study aimed to evaluate the correlation between PI and circulatory shock in neonates with the goal of establishing PI as an objective parameter for early shock identification.
View Article and Find Full Text PDFBiomedicines
December 2024
Department of Surgery, School of Medicine, University of Missouri Kansas City, Kansas City, MO 64108, USA.
: Exsanguination is a leading cause of preventable death in military and civilian settings due to extensive blood loss and hemorrhagic shock, which trigger systemic effects such as impaired tissue perfusion, hypoxia, inflammation, and multi-organ dysfunction. Standard resuscitation restores blood volume but fails to address critical aspects of hemorrhagic shock, including inflammation, coagulopathy, and reperfusion injury. To address these limitations, novel phospholipid nanoparticle (PNP)-based resuscitative fluids, VBI-S and VBI-1, were developed to modulate nitric oxide (NO) levels, improving hemodynamic stability, tissue oxygenation, and reducing inflammatory injury.
View Article and Find Full Text PDFGenes (Basel)
November 2024
Swiss Federal Institute of Sport Magglingen SFISM, 2532 Magglingen, Switzerland.
Background: This study examines genetic variations in the systemic oxygen transport cascade during exhaustive exercise in physically trained tactical athletes. Research goal: To update the information on the distribution of influence of eleven polymorphisms in ten genes, namely ACE (rs1799752), AGT (rs699), MCT1 (rs1049434), HIF1A (rs11549465), COMT (rs4680), CKM (rs8111989), TNC (rs2104772), PTK2 (rs7460 and rs7843014), ACTN3 (rs1815739), and MSTN (rs1805086)-on the connected steps of oxygen transport during aerobic muscle work.
Methods: 251 young, healthy tactical athletes (including 12 females) with a systematic physical training history underwent exercise tests, including standardized endurance running with a 12.
Indian J Crit Care Med
December 2024
Department of Critical Care Medicine, Ruby Hall Hospital, Pune, Maharashtra, India.
Objectives: Heart rate control using beta-blockers in sepsis has traditionally been avoided because of concerns with worsening cardiac index and organ perfusion. Recent studies has explored the possible beneficial effects of targeted heart rate control in patients with septic shock who have tachycardia despite initial resuscitation. We performed a systematic review and meta-analysis to explore the effects of heart rate control in septic shock patients.
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