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Updated: May 24, 2026

Experimental Demyelination and Remyelination of Murine Spinal Cord by Focal Injection of Lysolecithin
Published on: March 26, 2015
Impairment of heme synthesis in myelin as potential trigger of multiple sclerosis
Alessandro Morelli1, Silvia Ravera, Daniela Calzia
1Biochemistry Laboratory of DIPTERIS - University of Genoa, C.so Europa 26, 16132 Genova, Italy. morellia@unige.it
Abstract:
The pathogenesis of multiple sclerosis (MS), a disease characterized by demyelination and subsequent axonal degeneration, is as yet unknown. Also, the nature of the disease is as yet not established, since doubts have been cast on its autoimmune origin. Genetic and environmental factors have been implied in MS, leading to the idea of an overall multifactorial origin. An unexpected role in energizing the axon has been reported for myelin, supposed to be the site of consumption of most of oxygen in brain. Myelin would be able to perform oxidative phosphorylation to supply the axons with ATP, thanks to the expression therein of mitochondrial F(o)F(1)-ATP synthase, and respiratory chains. Interestingly, myelin expresses the pathway of heme synthesis, hence of cytochromes, that rely on heme group, in turn depending on Fe availability. Poisoning by these pollutants shares the common characteristic to bring about demyelination both in animal models and in man. Carbon monoxide (CO) and lead poisoning which cause functional imbalance of the heme group, as well as of heme synthesis, cause myelin damage. On the other hand, a lack of essential metals such as iron and copper, produces dramatic myelin decrease. Myelin is a primary target, of iron shortage, indicating that in myelin Fe-dependent processes are more active than in other tissues. The predominant spread of MS in industrialized countries where pollution by heavy metals, and CO poisoning is widespread, suggests a relationship among toxic action of metal pollutants and MS. According to the present hypothesis, MS can be primarily triggered by environmental factors acting on a genetic susceptibility, while the immune response may be a consequence of a primary oxidative damage due to reactive oxygen species produced consequently to an imbalance of cytochromes and respiratory chains in the sheath.
Insights
Multiple sclerosis (MS) may be triggered by environmental toxins like heavy metals and carbon monoxide (CO), impacting myelin's energy production. This suggests a multifactorial origin beyond autoimmune factors, with oxidative damage playing a key role.
Area of Science:
- Neuroscience
- Environmental Toxicology
- Biochemistry
Background:
- Multiple sclerosis (MS) pathogenesis remains unknown, with debated autoimmune origins.
- Both genetic and environmental factors are implicated in MS, suggesting a multifactorial etiology.
- Myelin plays an unexpected role in energizing axons via oxidative phosphorylation.
Purpose of the Study:
- To investigate the role of environmental factors, specifically metal pollutants and CO, in MS pathogenesis.
- To explore the hypothesis that myelin's metabolic functions are vulnerable to toxic insults.
- To propose a novel hypothesis for MS initiation involving environmental triggers and oxidative stress.
Main Methods:
- Review of existing literature on MS, myelin metabolism, and toxicology.
- Analysis of the impact of environmental toxins (e.g., lead, CO) on myelin integrity.
- Examination of the role of essential metals (iron, copper) in myelin health and function.
Main Results:
- Myelin expresses key metabolic machinery, including heme synthesis and ATP synthase, making it susceptible to disruptions.
- Environmental toxins like CO and lead, and deficiencies in iron and copper, cause significant myelin damage.
- MS prevalence in industrialized nations correlates with widespread pollution, suggesting a link to toxic environmental exposures.
Conclusions:
- MS may be primarily triggered by environmental factors acting on genetic susceptibility.
- Toxic insults to myelin's metabolic pathways, particularly those involving heme synthesis and iron, could initiate the disease.
- Immune responses in MS might be secondary to primary oxidative damage caused by environmental factors affecting myelin's respiratory chains.
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