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.

Pediatric Research
|August 2, 2024
PubMed

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.
Abstract

Related Concept Videos

Assessment of Respiration01:23

Assessment of Respiration

The respiratory system's basic structures and primary functions lay the foundation for nurses' comprehensive respiratory assessments. This assessment includes subjective and objective data to gauge the patient's respiratory health.
Subjective Assessment: Nurses interview the patient to gather information directly during the subjective assessment. It includes questions about the individual's medical history, medications, and symptoms, focusing on past respiratory conditions like asthma or COPD,...
Pulmonary Cycle: Exhalation01:17

Pulmonary Cycle: Exhalation

In terms of human respiration, the act of expelling air, known as exhalation (or expiration), operates on the principle of pressure gradients. During expiration, the pressure within the lungs exceeds that of the surrounding atmosphere. Under normal conditions, quiet breathing involves passive exhalation and is free of muscular contractions. This is because the exhalation process is driven by the natural elastic recoil of the lungs and chest wall, both of which have an inherent tendency to...
Physical Assessment of the Respiratory Tract II: Inspection01:27

Physical Assessment of the Respiratory Tract II: Inspection

Physical assessment of the respiratory tract through inspection is a crucial step in understanding the patient's respiratory health. It provides insights into the functioning of the respiratory system, the musculoskeletal structure, and even the patient's nutritional status. This comprehensive approach involves observing several vital aspects: chest configuration, breathing patterns, respiratory rates, skin color, and use of accessory muscles.
Chest Configuration
The chest configuration can...
Respiratory System Abnormal Finding I: Inspection and Percussion01:30

Respiratory System Abnormal Finding I: Inspection and Percussion

Respiratory system abnormalities are a significant concern in healthcare due to their potential to indicate underlying severe conditions like Chronic Obstructive Pulmonary Disease (COPD), asthma, and pneumonia. These abnormalities can often be detected through physical examination methods like inspection and percussion.
Inspection Findings
During an inspection, several findings may suggest the presence of respiratory distress or disease. Pursed-lip breathing, where exhalation is slowed by...
Pneumonia II: Pathophysiology01:29

Pneumonia II: Pathophysiology

The pathophysiology of pneumonia involves the following steps:
Atelectasis II: Pathophysiology01:10

Atelectasis II: Pathophysiology

Atelectasis develops when alveoli lose their air and collapse inward. Because lung tissue is naturally elastic, these air sacs shrink rather than remaining open. Collapsed alveoli are no longer ventilated, reducing their role in gas exchange. Blood flow may continue in these regions, creating a ventilation–perfusion mismatch. Clinical findings include decreased breath sounds, dullness to percussion, reduced chest expansion, and decreased tactile fremitus as sound transmission through collapsed...