Mahmoud L. Soliman, Ph.D.
Affiliations: | 2012 | Pharmacology, Physiology & Therapeutics | The University of North Dakota, Grand Forks, ND, United States |
Area:
Pharmacology, Neuroscience BiologyGoogle:
"Mahmoud Soliman"Mean distance: 53433
Parents
Sign in to add mentorThad A. Rosenberger | grad student | 2012 | University of North Dakota | |
(Neuroglial mechanisms involved in the anti-inflammatory effect of acetate supplementation.) |
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Publications
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Soliman ML, Geiger JD, Chen X. (2016) Caffeine Blocks HIV-1 Tat-Induced Amyloid Beta Production and Tau Phosphorylation. Journal of Neuroimmune Pharmacology : the Official Journal of the Society On Neuroimmune Pharmacology |
Li S, Geiger NH, Soliman ML, et al. (2015) Caffeine, Through Adenosine A3 Receptor-Mediated Actions, Suppresses Amyloid-β Protein Precursor Internalization and Amyloid-β Generation. Journal of Alzheimer's Disease : Jad. 47: 73-83 |
Soliman ML, Ohm JE, Rosenberger TA. (2013) Acetate reduces PGE2 release and modulates phospholipase and cyclooxygenase levels in neuroglia stimulated with lipopolysaccharide. Lipids. 48: 651-62 |
Soliman ML, Combs CK, Rosenberger TA. (2013) Modulation of inflammatory cytokines and mitogen-activated protein kinases by acetate in primary astrocytes. Journal of Neuroimmune Pharmacology : the Official Journal of the Society On Neuroimmune Pharmacology. 8: 287-300 |
Soliman ML, Rosenberger TA. (2013) Dietary Acetate Supplementation Attenuates Neuroinflammation Advances in Neuroimmune Biology. 4: 125-140 |
Soliman ML, Puig KL, Combs CK, et al. (2012) Acetate reduces microglia inflammatory signaling in vitro. Journal of Neurochemistry. 123: 555-67 |
Soliman ML, Smith MD, Houdek HM, et al. (2012) Acetate supplementation modulates brain histone acetylation and decreases interleukin-1β expression in a rat model of neuroinflammation. Journal of Neuroinflammation. 9: 51 |
Soliman ML, Rosenberger TA. (2011) Acetate supplementation increases brain histone acetylation and inhibits histone deacetylase activity and expression. Molecular and Cellular Biochemistry. 352: 173-80 |