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S. Nutr Rev 2007, 65(12 Pt 2):S152-156. 2. Launer LJ: Next steps in Alzheimer's disease research: interaction between epidemiology and basic science. Curr Alzheimer Res 2007, 4(2):141-143. 3. Wang XP, Ding HL: Alzheimer's disease: epidemiology, genetics, and beyond. Neurosci Bull 2008, 24(2):105-109. 4. de la Monte SM, Neusner A, Chu J, Lawton M: Epidemilogical Trends Strongly Suggest Exposures as
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S. Nutr Rev 2007, 65(12 Pt 2):S152-156. 2. Launer LJ: Next steps in Alzheimer's disease research: interaction between epidemiology and basic science. Curr Alzheimer Res 2007, 4(2):141-143. 3. Wang XP, Ding HL: Alzheimer's disease: epidemiology, genetics, and beyond. Neurosci Bull 2008, 24(2):105-109. 4. de la Monte SM, Neusner A, Chu J, Lawton M: Epidemilogical Trends Strongly Suggest Exposures as
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Ation with impairments in insulin/IGF signaling mechanisms, and deficits in cholinergic and neuronal cytoskeletal gene and protein expression in brain, whereas chronic HFD feeding alone produces more restrictive deficits in insulin/IGF signaling mechanisms with reduced ChAT expression and increased oxidative stress. The combined exposures caused overlapping structural and molecular abnormalities t
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Could serve as biomarkers of insulin-resistance mediated neurodegeneration. Finally, the findings suggest that our insulin resistance disease epidemics are linked to sub-mutagenicTong et al. BMC Endocrine Disorders 2010, 10:4 http://www.biomedcentral.com/1472-6823/10/Page 13 ofexposures to nitrosamines and related compounds, combined with chronic consumption of high fat content foods, indicating t
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E formation of DNA and protein adducts [105-107] that can serve as persistent sources of oxidative stress, and cause further DNA damage and protein dysfunction. Recently, we demonstrated a role for ceramidemediated neurodegeneration in a model of diet-induced obesity with T2DM [45], and showed that in vitro ceramide exposure causes neurodegeneration with impairments in neuronal viability, energy m
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Ingomyelin phosphodiesterase; SPTLC: Serine palmitoyltransferase; STZ: Streptozotocin; T2DM: Type 2 diabetes mellitus; TBS: Tris buffered saline; UGCG: UDP-glucose ceramide glycoysltransferase. Acknowledgements Supported by AA-11431, AA-12908, and K24-AA-16126 from the National Institutes of Health. Author details 1 Department of Pathology (Neuropathology), Rhode Island Hospital, 593 Eddy Street,
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Methylnitrosamine, dimethyl sulphate and methyl methanesulphonate. Biochem J 1968, 110(1):39-47. Espey MG, Miranda KM, Thomas DD, Xavier S, Citrin D, Vitek MP, Wink DA: A chemical perspective on the interplay between NO, reactive oxygen species, and reactive nitrogen oxide species. Ann N Y Acad Sci 2002, 962:195-206. Pasquier F, Boulogne A, Leys D, Fontaine P: Diabetes mellitus and dementia. Diabe
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N Alzheimer's disease. Neurobiol Aging 2006, 27(1):38-41. 42. Reger MA, Craft S: Intranasal insulin administration: a method for dissociating central and peripheral effects of insulin. Drugs Today (Barc) 2006, 42(11):729-739. 43. Reger MA, Watson GS, Frey WH, Baker LD, Cholerton B, Keeling ML, Belongia DA, Fishel MA, Plymate SR, Schellenberg GD, Cherrier MM, Craft S: Effects of intranasal insulin

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