Open Access. Powered by Scholars. Published by Universities.®
Articles 1 - 2 of 2
Full-Text Articles in Medicine and Health Sciences
Alzheimer's Therapeutics Targeting Amyloid Beta 1-42 Oligomers I: Abeta 42 Oligomer Binding To Specific Neuronal Receptors Is Displaced By Drug Candidates That Improve Cognitive Deficits, Nicholas J. Izzo, Agnes Staniszewski, Lillian To, Mauro Fa, Andrew F. Teich, Faisal Saeed, Harrison Wostein, Thomas Walko Iii, Anisha Vaswani, Meghan Wardius, Zanobia Syed, Jessica Ravenscroft, Kelsie Mozzoni, Colleen Silky, Courtney Rehak, Raymond Yurko, Patricia Finn, Gary Look, Gilbert Rishton, Hank Safferstein, Miles Miller, Conrad Johanson, Edward Stopa, Manfred Windisch, Birgit Hutter-Paier, Mehrdad Shamloo, Ottavio Arancio, Harry Levine Iii, Susan M. Catalano
Alzheimer's Therapeutics Targeting Amyloid Beta 1-42 Oligomers I: Abeta 42 Oligomer Binding To Specific Neuronal Receptors Is Displaced By Drug Candidates That Improve Cognitive Deficits, Nicholas J. Izzo, Agnes Staniszewski, Lillian To, Mauro Fa, Andrew F. Teich, Faisal Saeed, Harrison Wostein, Thomas Walko Iii, Anisha Vaswani, Meghan Wardius, Zanobia Syed, Jessica Ravenscroft, Kelsie Mozzoni, Colleen Silky, Courtney Rehak, Raymond Yurko, Patricia Finn, Gary Look, Gilbert Rishton, Hank Safferstein, Miles Miller, Conrad Johanson, Edward Stopa, Manfred Windisch, Birgit Hutter-Paier, Mehrdad Shamloo, Ottavio Arancio, Harry Levine Iii, Susan M. Catalano
Sanders-Brown Center on Aging Faculty Publications
Synaptic dysfunction and loss caused by age-dependent accumulation of synaptotoxic beta amyloid (Abeta) 1-42 oligomers is proposed to underlie cognitive decline in Alzheimer's disease (AD). Alterations in membrane trafficking induced by Abeta oligomers mediates reduction in neuronal surface receptor expression that is the basis for inhibition of electrophysiological measures of synaptic plasticity and thus learning and memory. We have utilized phenotypic screens in mature, in vitro cultures of rat brain cells to identify small molecules which block or prevent the binding and effects of Abeta oligomers. Synthetic Abeta oligomers bind saturably to a single site on neuronal synapses and induce …
Obesity And Diabetes Cause Cognitive Dysfunction In The Absence Of Accelerated Β-Amyloid Deposition In A Novel Murine Model Of Mixed Or Vascular Dementia, Dana M. Niedowicz, Valerie L. Reeves, Thomas L. Platt, Katharina Kohler, Tina L. Beckett, David K. Powell, Tiffany L. Lee, Travis R. Sexton, Eun Suk Song, Lawrence D. Brewer, Caitlin S. Latimer, Susan D. Kraner, Kara L. Larson, Sabire Özcan, Christopher M. Norris, Louis B. Hersh, Nada M. Porter, Donna M. Wilcock, Michael Paul Murphy
Obesity And Diabetes Cause Cognitive Dysfunction In The Absence Of Accelerated Β-Amyloid Deposition In A Novel Murine Model Of Mixed Or Vascular Dementia, Dana M. Niedowicz, Valerie L. Reeves, Thomas L. Platt, Katharina Kohler, Tina L. Beckett, David K. Powell, Tiffany L. Lee, Travis R. Sexton, Eun Suk Song, Lawrence D. Brewer, Caitlin S. Latimer, Susan D. Kraner, Kara L. Larson, Sabire Özcan, Christopher M. Norris, Louis B. Hersh, Nada M. Porter, Donna M. Wilcock, Michael Paul Murphy
Sanders-Brown Center on Aging Faculty Publications
Mid-life obesity and type 2 diabetes mellitus (T2DM) confer a modest, increased risk for Alzheimer's disease (AD), though the underlying mechanisms are unknown. We have created a novel mouse model that recapitulates features of T2DM and AD by crossing morbidly obese and diabetic db/db mice with APPΔNL/ΔNLx PS1P264L/P264L knock-in mice. These mice (db/AD) retain many features of the parental lines (e.g. extreme obesity, diabetes, and parenchymal deposition of β-amyloid (Aβ)). The combination of the two diseases led to additional pathologies-perhaps most striking of which was the presence of severe cerebrovascular pathology, including aneurysms and small …