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Published on: March 8, 2017
Distinct mitochondrial respiration profiles in pediatric patients with febrile illness versus sepsis
Laura F Sartori1,2, Elena Tsemberis3, Tyne Hernandez3
1Department of Emergency Medicine, Children's Hospital of Philadelphia, Philadelphia, PA, USA. sartoril@chop.edu.
Insights
Mitochondrial spare respiratory capacity (SRC) is reduced in children with febrile illness and sepsis. Distinct mitochondrial profiles and demographics influence these findings, requiring further research for differentiation.
Area of Science:
- Pediatric critical care medicine
- Mitochondrial physiology
- Cellular bioenergetics
Background:
- Mitochondrial dysfunction is implicated in sepsis-related organ failure.
- The presence of mitochondrial alterations in febrile illness without sepsis remains uncharacterized.
Purpose of the Study:
- To investigate mitochondrial alterations in children experiencing febrile illness compared to sepsis and non-infected controls.
- To assess mitochondrial spare respiratory capacity (SRC) and content in febrile illness.
Main Methods:
- Prospective study in an Emergency Department (ED) and secondary analysis of Intensive Care Unit (ICU) patients.
- Measured mitochondrial oxygen consumption (SRC) in peripheral blood mononuclear cells via respirometry.
- Assessed mitochondrial content using citrate synthase (CS) and mitochondrial to nuclear DNA ratio (mtDNA:nDNA).
Main Results:
- Reduced SRC observed in febrile illness and sepsis compared to controls (p < 0.05).
- Febrile illness showed increased basal respiration, while sepsis exhibited decreased maximal uncoupled respiration.
- Lower CS activity and mtDNA:nDNA ratio noted in febrile illness compared to controls and sepsis.
Conclusions:
- Mitochondrial SRC is diminished in both febrile illness and sepsis, influenced by distinct mitochondrial profiles and demographics.
- Further investigation is required to determine if mitochondrial profiles can differentiate febrile illness from early sepsis.
Objective:
Mitochondrial dysfunction, linked to sepsis-related organ failure, is unknown in febrile illness.
Methods:
Prospective study of children in an Emergency Department (ED) with febrile illness or without infection (ED controls); secondary analysis of ICU patients with sepsis or without infection (ICU controls). Mitochondrial oxygen consumption measured in peripheral blood mononuclear cells using respirometry, with primary outcome of spare respiratory capacity (SRC). Mitochondrial content measured as citrate synthase (CS: febrile illness and ED controls) and mitochondrial to nuclear DNA ratio (mtDNA:nDNA: all groups).
Results:
SRC was lower in febrile illness (6.7 ± 3.0 pmol/sec/106 cells) and sepsis (5.7 ± 4.7) than ED/PICU controls (8.5 ± 3.7; both p < 0.05), but not different between febrile illness and sepsis (p = 0.26). Low SRC was driven by increased basal respiration in febrile illness and decreased maximal uncoupled respiration in sepsis. Differences were no longer significant after adjustment for patient demographics. Febrile illness demonstrated lower CS activity than ED controls (p = 0.07) and lower mtDNA:nDNA than both ED/PICU controls and sepsis (both p < 0.05).
Conclusion:
Mitochondrial SRC was reduced in both febrile illness and sepsis, but due to distinct mitochondrial profiles and impacted by demographics. Further work is needed to determine if mitochondrial profiles could differentiate febrile illness from early sepsis.
Impact Statement:
Mitochondrial dysfunction has been linked to organ failure in sepsis, but whether mitochondrial alterations are evident in febrile illness without sepsis is unknown. In our study, while mitochondrial spare respiratory capacity (SRC), an index of cellular bioenergetic reserve under stress, was reduced in children with both febrile illness and sepsis compared to children without infections, low SRC was driven by increased basal respiration in febrile illness compared with decreased maximal uncoupled respiration in sepsis. Additional research is needed to understand if distinct mitochondrial profiles could be used to differentiate febrile illness from early sepsis in children.
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