Chronic Administration of Statins Alters Multiple Gene Expression Patterns in Mouse Cerebral Cortex

@article{JohnsonAnuna2005ChronicAO,
  title={Chronic Administration of Statins Alters Multiple Gene Expression Patterns in Mouse Cerebral Cortex},
  author={Leslie N. Johnson-Anuna and Gunter P Eckert and Jan-Henning Keller and Urule Igbavboa and Cornelia Franke and Thomas Fechner and Manfred Schubert-Zsilavecz and Michael Karas and Walter E. Müller and Wellington Gibson Wood},
  journal={Journal of Pharmacology and Experimental Therapeutics},
  year={2005},
  volume={312},
  pages={786 - 793}
}
Statins have been reported to lower the risk of developing Alzheimer's disease; however, the mechanism of this potentially important neuroprotective action is not understood. Lowering cholesterol levels does not appear to be the primary mechanism. Statins have pleiotropic effects in addition to lowering cholesterol, and statins may act on several different pathways involving distinct gene expression patterns that would be difficult to determine by focusing on a few genes or their products in a… 

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References

SHOWING 1-10 OF 53 REFERENCES
Differential effects of lovastatin treatment on brain cholesterol levels in normal and ApoE-deficient mice
TLDR
It is demonstrated for the first time that lovastatin represents a valid pharmacological tool to significantly modulate brain cholesterol levels and is associated with decreased pyrene-excimer fluorescence, indicating altered membrane function.
Statin effects on cholesterol micro-domains in brain plasma membranes.
Decreased prevalence of Alzheimer disease associated with 3-hydroxy-3-methyglutaryl coenzyme A reductase inhibitors.
TLDR
There is a lower prevalence of diagnosed probable AD in patients taking 2 different 3-hydroxy-3-methylglutaryl coenzyme A reductase inhibitors-lovastatin and pravastatin, which warrants further study.
Expression of the cytokine leukemia inhibitory factor and pro-apoptotic insulin-like growth factor binding protein-3 in Alzheimer's disease
TLDR
Given its known involvement in both neuronal and immune responses to injury, the cytokine LIF may be a mediator of the inflammatory reaction seen in AD and contribute to neuronal degeneration in AD.
Lovastatin Induces Apoptosis of Spontaneously Immortalized Rat Brain Neuroblasts: Involvement of Nonsterol Isoprenoid Biosynthesis Inhibition
TLDR
The present data suggest that lovastatin induces apoptosis of rat brain neuroblasts by its capacity to decrease the prenylation of specific proteins involved in signal transduction pathways that control growth and survival of neuronal cells.
Blockade of HMG‐CoA reductase activity causes changes in microtubule‐stabilizing protein tau via suppression of geranylgeranylpyrophosphate formation: implications for Alzheimer's disease
TLDR
The data demonstrate that lovastatin concentrations able to suppress not only cholesterol but also geranylgeranylpyrophosphate formation may evoke phosphorylation of tau reminiscent of preclinical early stages of Alzheimer's disease and, when prolonged, apoptosis.
Serum insulin-like growth factor I regulates brain amyloid-beta levels.
TLDR
It is considered that circulating IGF-I is a physiological regulator of brain amyloid levels with therapeutic potential and is antagonized by tumor necrosis factor-alpha, a pro-inflammatory cytokine putatively involved in dementia and aging.
3-Hydroxy-3-Methylglutaryl Coenzyme A Reductase Inhibitors Protect Cortical Neurons from Excitotoxicity
TLDR
The results suggest the possibility that statins have the potential to render cortical neurons more resistant to NMDA-induced excitotoxic death as a result of changes in cell cholesterol homeostasis.
Evidence for a role of human organic anion transporters in the muscular side effects of HMG-CoA reductase inhibitors.
...
1
2
3
4
5
...