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A Neuronal and Astrocyte Co-Culture Assay for High Content Analysis of Neurotoxicity
Published on: May 5, 2009
Cytotoxic Effects of Environmental Toxins on Human Glial Cells
Fiona D'Mello1, Nady Braidy2, Helder Marçal1
1School of Biotechnology and Biomolecular Sciences, The University of New South Wales, Sydney, NSW, 2052, Australia.
Abstract:
Toxins produced by cyanobacteria and dinoflagellates have increasingly become a public health concern due to their degenerative effects on mammalian tissue and cells. In particular, emerging evidence has called attention to the neurodegenerative effects of the cyanobacterial toxin β-N-methylamino-L-alanine (BMAA). Other toxins such as the neurotoxins saxitoxin and ciguatoxin, as well as the hepatotoxic microcystin, have been previously shown to have a range of effects upon the nervous system. However, the capacity of these toxins to cause neurodegeneration in human cells has not, to our knowledge, been previously investigated. This study aimed to examine the cytotoxic effects of BMAA, microcystin-LR (MC-LR), saxitoxin (STX) and ciguatoxin (CTX-1B) on primary adult human astrocytes. We also demonstrated that α-lipoate attenuated MC-LR toxicity in primary astrocytes and characterised changes in gene expression which could potentially be caused by these toxins in primary astrocytes. Herein, we are the first to show that all of these toxins are capable of causing physiological changes consistent with neurodegeneration in glial cells, via oxidative stress and excitotoxicity, leading to a reduction in cell proliferation culminating in cell death. In addition, MC-LR toxicity was reduced significantly in astrocytes-treated α-lipoic acid. While there were no significant changes in gene expression, many of the probes that were altered were associated with neurodegenerative disease pathogenesis. Overall, this is important in advancing our current understanding of the mechanism of toxicity of MC-LR on human brain function in vitro, particularly in the context of neurodegeneration.
Insights
Marine and cyanobacterial toxins like BMAA, MC-LR, STX, and CTX-1B cause neurodegeneration in human glial cells. Alpha-lipoic acid reduced microcystin-LR toxicity, highlighting potential therapeutic avenues for toxin-induced neurodegenerative diseases.
Area of Science:
- Neuroscience
- Toxicology
- Cell Biology
Background:
- Marine and cyanobacterial toxins pose increasing public health risks.
- Emerging evidence links beta-N-methylamino-L-alanine (BMAA) to neurodegeneration.
- Saxitoxin, ciguatoxin, and microcystin are known to affect the nervous system.
Purpose of the Study:
- To investigate the neurotoxic potential of BMAA, microcystin-LR (MC-LR), saxitoxin (STX), and ciguatoxin (CTX-1B) on human astrocytes.
- To assess the protective effect of alpha-lipoate against MC-LR toxicity.
- To characterize gene expression changes induced by these toxins in primary astrocytes.
Main Methods:
- Primary adult human astrocytes were exposed to BMAA, MC-LR, STX, and CTX-1B.
- Cellular changes indicative of neurodegeneration, oxidative stress, and excitotoxicity were analyzed.
- Gene expression profiling was performed, and the effect of alpha-lipoate on MC-LR toxicity was evaluated.
Main Results:
- All tested toxins induced physiological changes consistent with neurodegeneration in human astrocytes.
- Oxidative stress and excitotoxicity were identified as mechanisms of toxicity, leading to reduced cell proliferation and death.
- Alpha-lipoic acid significantly attenuated MC-LR-induced toxicity in astrocytes.
Conclusions:
- This study provides the first evidence that BMAA, MC-LR, STX, and CTX-1B cause neurodegeneration in human glial cells.
- Alpha-lipoic acid demonstrates potential as a therapeutic agent against microcystin-LR toxicity.
- While gene expression changes were not significant, altered probes were linked to neurodegenerative disease pathogenesis, warranting further investigation.
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