Related Experiment Video
Updated: Jun 19, 2026

Measurement of Heme Synthesis Levels in Mammalian Cells
Published on: July 9, 2015
Heme oxygenase/carbon monoxide in thermoregulation and neuroenergetics
Evelin Capellari Carnio1, Luiz G S Branco2
1Department of General and Specialized Nursing, Ribeirão Preto School of Nursing, University of São Paulo, Ribeirão Preto, SP, Brazil; Nursing Graduate Program in Fundamental Nursing, Ribeirão Preto School of Nursing, University of São Paulo, Ribeirão Preto, SP, Brazil; Program of Physiology, Medical School of Ribeirão Preto, University of São Paulo, Ribeirão Preto, SP, Brazil.
Abstract:
This review explores the heme oxygenase/carbon monoxide (HO/CO) pathway as a central integrator of thermoregulation and neuroenergetics during inflammatory and oxidative stress. Thermoregulation is framed not merely as a homeostatic process, but as a continuous problem of energy allocation where body temperature (Tb) serves as an indicator of an organism's bioenergetic capacity. The core mechanistic thesis identifies the HO/CO system as a state-dependent "coupling pathway" that links inflammatory and redox tone to mitochondrial performance and, through central autonomic hierarchies, to the selection of thermal phenotypes, such as fever, regulated hypothermia, or torpor-like states. While fever supports "resistance" at a high metabolic cost, regulated hypothermia aligns with "tolerance" by conserving energy when resources or oxygen delivery are constrained. Key knowledge gaps remain regarding the precise cell-type-specific roles of HO-1 in the central nervous system (CNS) and the context-dependent nature of CO signaling via soluble guanylyl cyclase (sGC) in vivo. Therapeutically, targeting the HO/CO pathway via inhaled CO, CO-releasing molecules (CORMs), or HO-1 induction offers prospects for modulating neuroinflammation and metabolic resilience. However, translational constraints include timing-dependent effects and the need for precision phenotyping to identify which patients might benefit from interventions. In conclusion, the HO/CO system is discussed as a sophisticated modulator that biases thermoregulatory strategy based on the immediate physiological constraints of oxygen delivery and energetic reserve.
Related Concept Videos
Oxygen Transport in the Blood
Hemoglobin
When all four heme groups are bound to oxygen, the resulting molecule is called oxyhemoglobin. As a result, arterial blood...
Respiration and Gaseous Exchange
Respiration involves the exchange of gases, especially oxygen (O2) and carbon dioxide (CO2), between the alveoli and body cells, a process facilitated by blood circulation. As a result, the cardiovascular system, which involves the...
Physiological Control of Respiration
Breathing, a seemingly passive process, is regulated by the respiratory center in the brainstem. This center coordinates the involuntary control of respirations, which means it occurs without conscious effort, ensuring a smooth and uninterrupted pattern.
Regulation of Ventilation
The body maintains ventilation by monitoring levels of carbon dioxide (CO2), oxygen (O2), and hydrogen ion concentration (pH) in the arterial blood. Among these factors, the level of CO2 plays a crucial...
Hypoxia
Types of Hypoxia
There are four primary types of hypoxia, each resulting from a different cause:
1. Anemic hypoxia: This type occurs due to insufficient oxygen delivery caused by a lack of red blood cells (RBCs) or RBCs with abnormal or...
Chemical Factors Affecting Respiration Centers
CO2 has a potent influence on respiration and is strictly regulated. Under...

