Related Experiment Video
Updated: Jun 17, 2026

Removal of Trace Elements by Cupric Oxide Nanoparticles from Uranium In Situ Recovery Bleed Water and Its Effect on Cell Viability
Published on: June 21, 2015
CNS-Related Effects Caused by Vanadium at Realistic Exposure Levels in Humans: A Comprehensive Overview Supplemented
Agnieszka Ścibior1, Juan Llopis2,3, Paweł Piotr Dobrakowski4
1Laboratory of Oxidative Stress, Department of Biomedicine and Environmental Research, Institute of Biological Sciences, Faculty of Medicine, The John Paul II Catholic University of Lublin, Konstantynów St. 1J, 20-708 Lublin, Poland.
Abstract:
Neurodegenerative disorders, which are currently incurable diseases of the nervous system, are a constantly growing social concern. They are progressive and lead to gradual degeneration and/or death of nerve cells, resulting in cognitive deterioration or impaired motor functions. New therapies that would ensure better treatment results and contribute to a significant slowdown in the progression of neurodegenerative syndromes are constantly being sought. Vanadium (V), which is an element with a wide range of impacts on the mammalian organism, is at the forefront among the different metals studied for their potential therapeutic use. On the other hand, it is a well-known environmental and occupational pollutant and can exert adverse effects on human health. As a strong pro-oxidant, it can generate oxidative stress involved in neurodegeneration. Although the detrimental effects of vanadium on the CNS are relatively well recognized, the role of this metal in the pathophysiology of various neurological disorders, at realistic exposure levels in humans, is not yet well characterized. Hence, the main goal of this review is to summarize data on the neurological side effects/neurobehavioral alterations in humans, in relation to vanadium exposure, with the focus on the levels of this metal in biological fluids/brain tissues of subjects with some neurodegenerative syndromes. Data collected in the present review indicate that vanadium cannot be excluded as a factor playing a pivotal role in the etiopathogenesis of neurodegenerative illnesses, and point to the need for additional extensive epidemiological studies that will provide more evidence supporting the relationship between vanadium exposure and neurodegeneration in humans. Simultaneously, the reviewed data, clearly showing the environmental impact of vanadium on health, suggest that more attention should be paid to chronic diseases related to vanadium and to the assessment of the dose-response relationship.
Insights
Vanadium exposure may play a role in neurodegenerative diseases, potentially contributing to their development. Further research is needed to confirm the link between vanadium and neurodegeneration in humans.
Area of Science:
- Environmental Science
- Neuroscience
- Toxicology
Background:
- Neurodegenerative disorders are progressive nervous system diseases causing cognitive and motor impairments.
- Vanadium (V) is studied for therapeutic potential but is also an environmental pollutant with pro-oxidant effects.
- Vanadium's role in neurodegeneration at realistic human exposure levels is not well understood.
Purpose of the Study:
- To review neurological side effects and neurobehavioral alterations in humans related to vanadium exposure.
- To focus on vanadium levels in biological fluids and brain tissues of individuals with neurodegenerative syndromes.
Main Methods:
- Literature review summarizing existing data on vanadium exposure and neurological effects.
- Analysis of studies focusing on vanadium levels in biological samples from patients with neurodegenerative disorders.
Main Results:
- Vanadium exposure is implicated as a potential factor in the etiopathogenesis of neurodegenerative illnesses.
- Data suggests vanadium's environmental impact on health and its link to chronic diseases.
Conclusions:
- Vanadium's role in neurodegeneration warrants further investigation through extensive epidemiological studies.
- Increased attention is needed for vanadium-related chronic diseases and dose-response assessments.
Related Concept Videos
Biological Effects of Radiation
Toxic Reactions: Overview
Toxicity falls into two primary categories: local and systemic.
Local toxicity appears at the exposure site, such as protein denaturation caused by caustic substances.
In contrast, systemic toxicity requires the toxic agent's absorption and distribution,...
Drug Toxicity: Overview
Drug Toxicity: Risk factors
Drug Toxicity: Dose-Dependent Reactions
Toxicity Testing in Animals

