ArticleCritical care (London, England)2017
Time course of blood lactate levels, inflammation, and mitochondrial function in experimental sepsis.
Article in Critical care (London, England), 2017. The graph could read no effect estimate from its abstract, so it casts no vote on the map. Cited by 16 papers.
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Who cites it
16 citing papers in PubMed, 29 citations in OpenAlex.
- Lactate kinetics in ICU patients using a bolus ofCritical care (London, England) · 2020Trial
- Activation of the Cerebrospinal Fluid-Contacting Nucleus Mitigates Systemic Inflammation Induced by Sepsis.Shock (Augusta, Ga.) · 2026Article
- Lactate alleviates intestinal barrier injury in weaned piglets via activation of the Wnt/β-catenin pathway and promotion of intestinal epithelial cell proliferation.Journal of animal science and biotechnology · 2025Article
- Soy isoflavone reduces LPS-induced acute lung injury via increasing aquaporin 1 and aquaporin 5 in rats.Open life sciences · 2023Article
- Protein acylation: mechanisms, biological functions and therapeutic targets.Signal transduction and targeted therapy · 2022Review
- The sepsis induced defective aggravation of immune cells: a translational science underling chemico-biological interactions from altered bioenergetics and/or cellular metabolism to organ dysfunction.Molecular and cellular biochemistry · 2021Review
- Porcine models of acute kidney injury.American journal of physiology. Renal physiology · 2021Article
- Prognostic stratification in septic patients with overt and cryptic shock by speckle tracking echocardiography.Internal and emergency medicine · 2021Observational
- Temperature Trajectory Subphenotypes Correlate With Immune Responses in Patients With Sepsis.Critical care medicine · 2020Observational
- Regional venous-arterial COIntensive care medicine experimental · 2020Article
- Article
- Lactate Arterial-Central Venous Gradient among COVID-19 Patients in ICU: A Potential Tool in the Clinical Practice.Critical care research and practice · 2020Article
- Microcirculation vs. Mitochondria-What to Target?Frontiers in medicine · 2020Article
- Feasibility of cellular bioenergetics as a biomarker in porphyria patients.Molecular genetics and metabolism reports · 2019Article
- Brain death-induced cytokine release is not associated with primary graft dysfunction: a cohort study.Revista Brasileira de terapia intensiva · 2019Article
- Bioinformatical Analysis of Organ-Related (Heart, Brain, Liver, and Kidney) and Serum Proteomic Data to Identify Protein Regulation Patterns and Potential Sepsis Biomarkers.BioMed research international · 2018Article
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Authors and funding
7 authors at 1 institution in 2 countries.
Funding
No grant is acknowledged in the PubMed record.
Abstract
backgroundA decrease in blood lactate levels (Lac) >10% during the first hours of resuscitation in sepsis is associated with better outcomes, but the mechanisms are unclear. Our objective was to investigate the relationship between the time course of Lac, inflammatory response, and mitochondrial respiration during experimental sepsis.
methodsOriginal data from two previously published studies were reanalyzed. In cohort 1, pigs were randomized to be resuscitated for 48 h starting at 6, 12, and 24 h, respectively, after fecal peritonitis induction (n = 8 each). Animals were categorized according to the decrease in Lac during the first 6 h of resuscitation (early if ≥10% [Lac ≥10%] or late if <10% or increased [Lac <10%]), and systemic hemodynamics, inflammatory parameters, and mitochondrial function were compared between groups. In a second group of animals with fecal peritonitis and 24 h of resuscitation (n = 16, cohort 2), abdominal regional Lac exchange was measured, and animals were categorized according to the decrease in Lac as in cohort 1.
resultsOverall mortality was 20% (4 of 20) in the Lac ≥10% group and 60% (12 of 20) in the Lac <10% group (p = 0.022). In cohort 1, systemic hemodynamics were similar in the Lac ≥10% (n = 13) and Lac <10% (n = 11) groups. Plasma interleukin-6 levels increased during unresuscitated sepsis and decreased during resusciation in both groups, but they were lower at study end in the Lac ≥10% group (p = 0.047). Complexes I and II maximal (state 3) and resting (state 4) isolated brain mitochondrial respiration at study end was higher in the Lac ≥10% group than in the Lac <10% group, whereas hepatic, myocardial, and skeletal muscle mitochondrial respiration was similar in both groups. In cohort 2, mesenteric, total hepatic, and renal blood flow at study end was higher in the Lac ≥10% group (n = 7) than in the Lac <10% group (n = 9), despite similar cardiac output. Hepatic lactate influx and uptake in the Lac ≥10% group were approximately 1.5 and 3 times higher, respectively, than in the Lac <10% group (p = 0.066 for both).
conclusionsA decrease in Lac >10% during early resuscitation (6 h) after abdominal sepsis is associated with lower levels of plasma interleukin-6 and improved brain but not hepatic or muscle mitochondrial respiration. Blood flow redistribution to abdominal organs in animals with early decrease in Lac concentrations increases the potential to both deliver and extract Lac.
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