Author:
Keerie Amy,Brown-Wright Heledd,Kirkland Isaac,Grierson Andrew,Alix James J. P.,Holscher Christian,Mead Richard J.
Abstract
AbstractGLP-1 receptor agonists used for the treatment of diabetes, have shown some neuroprotective effects in cellular and animal models of Alzheimer’s disease (AD) and Parkinson’s disease (PD). There are currently few studies investigating GLP-1 receptor agonists in the treatment of ALS, where these neuroprotective effects may be beneficial. Here we investigate the effects of liraglutide, a GLP-1 receptor agonist, in two well characterised transgenic mouse models of ALS (SOD1G93A and TDP-43Q331K) to determine if liraglutide could be a potential treatment in ALS patients. Doses of liraglutide previously shown to have efficacy in AD and PD mouse models were used. Behavioural testing was carried out to ascertain the effect of liraglutide on disease progression. Immunohistochemical analysis of tissue was used to determine any neuroprotective effects on the CNS. We found that liraglutide dosed animals showed no significant differences in disease progression when compared to vehicle dosed animals in either the SOD1G93A or TDP-43Q331K mouse models of ALS. We also observed no changes in motor neuron counts or glial activation in lumbar spinal cords of liraglutide treated mice compared to vehicle dosed mice. Overall, we found no evidence to support clinical evaluation of liraglutide as a potential candidate for the treatment of ALS.
Funder
Motor Neurone Disease Association
Publisher
Springer Science and Business Media LLC
Reference37 articles.
1. Hölscher, C. Drugs developed for treatment of diabetes show protective effects in Alzheimer’s and Parkinson’s diseases. Acta Physiol. Sin. 66(5), 497–510 (2014).
2. Cheong, J.L.Y., de Pablo-Fernandez, E., Foltynie, T., Noyce, A.J. The association between type 2 diabetes mellitus and Parkinson’s disease. J. Parkinsons Dis. Preprint(Preprint), 1–15 (2020).
3. Hölscher, C. Novel dual GLP-1/GIP receptor agonists show neuroprotective effects in Alzheimer’s and Parkinson’s disease models. Neuropharmacology 136, 251–259 (2018).
4. Moroo, I. et al. Loss of insulin receptor immunoreactivity from the substantia nigra pars compacta neurons in Parkinson’s disease. Acta Neuropathol. 87(4), 343–348 (1994).
5. Talbot, K. et al. Demonstrated brain insulin resistance in Alzheimer’s disease patients is associated with IGF-1 resistance, IRS-1 dysregulation, and cognitive decline. J. Clin. Invest. 122(4), 1316–1338 (2012).
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