Institut scientifique de Santé Publique
Toxicologie génétique
J. Wytsmanstraat 14
B-1050 Bruxelles
Institut scientifique de Santé Publique
Toxicologie génétique
J. Wytsmanstraat 14
B-1050 Bruxelles
L. Verschaeve, A. Maes, R. Anthonissen, M. Ledent
Our investigations on the possible association between exposure to extremely low frequency magnetic fields and an increased risk of Alzheimer’s disease on cells in the lab (in vitro study) was completed with a cytogenetic study using Fluorescence In Situ Hybridisation (FISH) methods. With this study we could not confirm earlier findings and hence did not find arguments in favour of an increased risk for Alzheimer’s disease due to exposure to ELF-magnetic fields.
There is so far no robust evidence of any effect of ELF-magnetic fields on the onset or course of Alzheimer’s disease.
L. Verschaeve, A. Maes, R. Anthonissen
Our investigations on the possible association between exposure to extremely low frequency magnetic fields and an increased risk of Alzheimer’s disease focused on in vitro (cyto)genetic investigations in human cell lines. We found structural chromosome aberrations at exposure levels >100 μT which is in accordance with literature data. However we also found some evidence for genetic damage at ≥ 50 μT exposure levels, presumably cell division disturbances and gene amplification. This may indicate some effect that corresponds with effects seen in AD patients. However this is by now far from sure and at present we are refining the investigation by further in depth studies. Results are not yet available.
Finally, we also found less genetic damage compared to that found in unexposed cells at low exposure levels (<10 μT) which may indicate an ‘adaptive response’. It remains unclear yet whether this at first sight beneficial biological effect remains when cells/organisms are exposed for prolonged periods of time. It seems important to further investigate this.
We also wrote and published a literature review on ‘Genetic damage in humans exposed to extremely low frequency electromagnetic fields’ (see in our literature reviews). Although genetic effects were often reported we conclude that no firm conclusion can be reached yet due to shortcomings of the majority of the published investigations.
We finally participated in a number of national or international working groups on ‘non ionizing radiations’ and attended a number of meetings.
L. Verschaeve, A. Maes, R. Anthonissen, H. Moukhliss
Our studies on the possible association between exposure to extreme low frequency magnetic fields and an increased risk of Alzheimer’s disease focused on in vitro (cyto)genetic investigations in human cell lines. We especially paid attention to possible cooperative genetic effects with environmental mutagens/carcinogens, and induction of defects that are in accordance with genetic damage found in cells from Alzheimer patients. We therefore validated the so-called “cytome test”, performed the bacterial VITOTOX test to investigate cooperative DNA damaging effects with chemical mutagens (different modes of action) and performed the cytome test in human C3A and SH-SY5Y cells exposed to ELF-magnetic fields. IMR-32 cells will also investigated but results are not fully available.
Our results can so far be summarized as follows:
It should be stressed that despite some findings from lab experiments on cells as indicated above there is so far no robust evidence of any effect of ELF-magnetic fields on the onset or course of Alzheimer’s disease.
(1) Verheyen G., Pauwels G., Verschaeve L., & Schoeters G. (2003) The effect of co-exposure of 50 Hz magnetic fields and an aneugen on human lymphocytes, determined by the cytokinesis-block micronucleus assay. Bioelectromagnetics , 24, 160-164.
Maes A., Anthonissen R., Verschaeve L. (2015)
On the alleged association between extreme low frequency magnetic field exposures and an increased risk for Alzheimer’s disease.
In Ristic G., ed., Proc. 3rd International Conference on Radiation and Applications in Various Fields of Research, 8-13 June, Budva, Montenegro, RAD Association, Niš, Serbia, pp. 451-454.
Maes A., & Verschaeve L. (2011).
Can cytogenetics explain the possible association between exposure to extreme low frequency magnetic fields and Alzheimer’s disease? J. Appl. Toxicol., 32(2), 81–87.
>> Abstract in PubMed