A comparative study of the effects of Aducanumab and scanning ultrasound on amyloid plaques and behavior in the APP23 mouse model of Alzheimer disease
暂无分享,去创建一个
[1] J. Vukovic,et al. Exercise reverses learning deficits induced by hippocampal injury by promoting neurogenesis , 2020, Scientific Reports.
[2] A. Rezai,et al. β-Amyloid Plaque Reduction in the Hippocampus After Focused Ultrasound-Induced Blood–Brain Barrier Opening in Alzheimer’s Disease , 2020, Frontiers in Human Neuroscience.
[3] J. Cummings,et al. Repurposed agents in the Alzheimer’s disease drug development pipeline , 2020, Alzheimer's Research & Therapy.
[4] A. Idbaih,et al. Blood-brain barrier disruption in humans using an implantable ultrasound device: quantification with MR images and correlation with local acoustic pressure. , 2020, Journal of neurosurgery.
[5] L. Schneider. A resurrection of aducanumab for Alzheimer's disease , 2020, The Lancet Neurology.
[6] F. Heppner,et al. Interleukin‐12/23 deficiency differentially affects pathology in male and female Alzheimer's disease‐like mice , 2020, EMBO reports.
[7] K. Hynynen,et al. Focused ultrasound delivery of a selective TrkA agonist rescues cholinergic function in a mouse model of Alzheimer’s disease , 2020, Science Advances.
[8] R. Howard,et al. Questions EMERGE as Biogen claims aducanumab turnaround , 2019, Nature Reviews Neurology.
[9] J. Götz,et al. The blood-brain barrier: Physiology and strategies for drug delivery. , 2019, Advanced drug delivery reviews.
[10] J. Götz,et al. Scanning ultrasound in the absence of blood-brain barrier opening is not sufficient to clear β-amyloid plaques in the APP23 mouse model of Alzheimer's disease , 2019, Brain Research Bulletin.
[11] D. Holtzman,et al. Alzheimer Disease: An Update on Pathobiology and Treatment Strategies , 2019, Cell.
[12] Laura M. Vecchio,et al. Safety and efficacy of focused ultrasound induced blood-brain barrier opening, an integrative review of animal and human studies. , 2019, Journal of controlled release : official journal of the Controlled Release Society.
[13] E. Konofagou,et al. Unilateral Focused Ultrasound-Induced Blood-Brain Barrier Opening Reduces Phosphorylated Tau from The rTg4510 Mouse Model , 2019, Theranostics.
[14] J. Cummings,et al. Alzheimer's disease drug development pipeline: 2019 , 2019, Alzheimer's & dementia.
[15] J. Götz,et al. Ultrasound-mediated blood-brain barrier opening enhances delivery of therapeutically relevant formats of a tau-specific antibody , 2019, Scientific Reports.
[16] S. Yoo,et al. Localized Blood-Brain Barrier Opening in Ovine Model Using Image-Guided Transcranial Focused Ultrasound. , 2019, Ultrasound in medicine & biology.
[17] J. Götz,et al. Repeated ultrasound treatment of tau transgenic mice clears neuronal tau by autophagy and improves behavioral functions , 2019, Theranostics.
[18] K. Hynynen,et al. Time course of focused ultrasound effects on β-amyloid plaque pathology in the TgCRND8 mouse model of Alzheimer’s disease , 2018, Scientific Reports.
[19] T. Yen,et al. Focused Ultrasound-Induced Blood-Brain Barrier Opening Enhances GSK-3 Inhibitor Delivery for Amyloid-Beta Plaque Reduction , 2018, Scientific Reports.
[20] Nir Lipsman,et al. Blood–brain barrier opening in Alzheimer’s disease using MR-guided focused ultrasound , 2018, Nature Communications.
[21] Vincent P Ferrera,et al. Efficient Blood-Brain Barrier Opening in Primates with Neuronavigation-Guided Ultrasound and Real-Time Acoustic Mapping , 2018, Scientific Reports.
[22] P. Weinreb,et al. Structural and kinetic basis for the selectivity of aducanumab for aggregated forms of amyloid-β , 2018, Scientific Reports.
[23] M. Pelekanos,et al. Establishing sheep as an experimental species to validate ultrasound-mediated blood-brain barrier opening for potential therapeutic interventions , 2018, Theranostics.
[24] J. Götz,et al. Safety and Efficacy of Scanning Ultrasound Treatment of Aged APP23 Mice , 2018, Front. Neurosci..
[25] K. Hynynen,et al. Investigation of the Safety of Focused Ultrasound-Induced Blood-Brain Barrier Opening in a Natural Canine Model of Aging , 2017, Theranostics.
[26] A. Van der Jeugd,et al. Combined effects of scanning ultrasound and a tau-specific single chain antibody in a tau transgenic mouse model , 2017, Brain : a journal of neurology.
[27] P. Weinreb,et al. Immunotherapy with Aducanumab Restores Calcium Homeostasis in Tg2576 Mice , 2016, The Journal of Neuroscience.
[28] J. Götz,et al. Scanning Ultrasound (SUS) Causes No Changes to Neuronal Excitability and Prevents Age-Related Reductions in Hippocampal CA1 Dendritic Structure in Wild-Type Mice , 2016, PloS one.
[29] Fraser T. Sparks,et al. Active place avoidance is no more stressful than unreinforced exploration of a familiar environment , 2016, Hippocampus.
[30] K. Rhodes,et al. The antibody aducanumab reduces Aβ plaques in Alzheimer’s disease , 2016, Nature.
[31] Jürgen Götz,et al. Ultrasound treatment of neurological diseases — current and emerging applications , 2016, Nature Reviews Neurology.
[32] Jürgen Götz,et al. Scanning ultrasound removes amyloid-β and restores memory in an Alzheimer’s disease mouse model , 2015, Science Translational Medicine.
[33] Natalia Vykhodtseva,et al. Temporary disruption of the blood-brain barrier by use of ultrasound and microbubbles: safety and efficacy evaluation in rhesus macaques. , 2012, Cancer research.
[34] D. Hansel,et al. Abstract 3652: Pegylated arginine deiminase (ADI-PEG20) as a potential therapeutic agent for rarer variants of bladder cancer that are deficient for argininosuccinate synthetase , 2012 .
[35] Elisa E Konofagou,et al. Noninvasive and localized neuronal delivery using short ultrasonic pulses and microbubbles , 2011, Proceedings of the National Academy of Sciences.
[36] Jürgen Götz,et al. Dendritic Function of Tau Mediates Amyloid-β Toxicity in Alzheimer's Disease Mouse Models , 2010, Cell.
[37] Rajiv Chopra,et al. Antibodies Targeted to the Brain with Image-Guided Focused Ultrasound Reduces Amyloid-β Plaque Load in the TgCRND8 Mouse Model of Alzheimer's Disease , 2010, PloS one.
[38] Fred H. Gage,et al. Exercise Enhances Learning and Hippocampal Neurogenesis in Aged Mice , 2005, The Journal of Neuroscience.
[39] P. Kelly,et al. Progressive age-related impairment of cognitive behavior in APP23 transgenic mice , 2003, Neurobiology of Aging.
[40] Yu-Min Kuo,et al. The Evolution of Aβ Peptide Burden in the APP23 Transgenic Mice: Implications for Aβ Deposition in Alzheimer Disease , 2001, Molecular medicine.
[41] B. Sommer,et al. Two amyloid precursor protein transgenic mouse models with Alzheimer disease-like pathology. , 1997, Proceedings of the National Academy of Sciences of the United States of America.
[42] H. Wiśniewski,et al. Soluble amyloid β-protein in the cerebrospinal fluid from patients with Alzheimer's disease, vascular dementia and controls , 1994, Journal of the Neurological Sciences.
[43] Jürgen Götz,et al. Amyloid-β and tau complexity — towards improved biomarkers and targeted therapies , 2018, Nature Reviews Neurology.
[44] Hilde van der Togt,et al. Publisher's Note , 2003, J. Netw. Comput. Appl..