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Full-Text Articles in Neurology

Objective Biomarker Development For Parameter Optimization In Neuromodulation Using High-Density Emg Temporal And Spatial Features, Shirin Madarshahian, Nikoo Javadpour, Michael Trakhtorchuck, Tatiana Guerrero-David, Kristin Gustafson, James Harrop, Caio Matias, M. J. Mulcahey, Alessandro Naopli, Alex R. Vaccaro, Mijail Serruya Jun 2026

Objective Biomarker Development For Parameter Optimization In Neuromodulation Using High-Density Emg Temporal And Spatial Features, Shirin Madarshahian, Nikoo Javadpour, Michael Trakhtorchuck, Tatiana Guerrero-David, Kristin Gustafson, James Harrop, Caio Matias, M. J. Mulcahey, Alessandro Naopli, Alex R. Vaccaro, Mijail Serruya

Farber Institute for Neuroscience Faculty Papers

Transcutaneous spinal cord stimulation (tSCS) is a promising neuromodulation approach for motor recovery after spinal cord injury (SCI), yet clinical programming remains largely dependent on subjective parameter selection. This study evaluated high-density surface EMG (HD-sEMG)–derived spatial and temporal features as objective biomarkers for tSCS optimization in three adults with chronic cervical SCI. A 64-channel electrode array recorded stimulation-evoked responses across five cervical stimulation levels, four pulse widths, and graded amplitudes. Features describing activation magnitude, spatial distribution, cluster morphology, and temporal dynamics were extracted from epoch-based activation maps. Of the three enrolled participants, two demonstrated measurable stimulation-evoked responses and contributed to …


Thalamic Organization Differentially Contributes To Clinical Conditions In Epilepsy, Qirui Zhang, Sam S. Javidi, Ankeeta Ankeeta, Michael R. Sperling, Zhiqiang Zhang, Joseph I. Tracy Mar 2026

Thalamic Organization Differentially Contributes To Clinical Conditions In Epilepsy, Qirui Zhang, Sam S. Javidi, Ankeeta Ankeeta, Michael R. Sperling, Zhiqiang Zhang, Joseph I. Tracy

Farber Institute for Neuroscience Faculty Papers

BACKGROUND: The thalamus plays an important role in key clinical conditions of focal temporal lobe epilepsy (TLE), but no investigation has examined whether the same thalamic local and connectome properties shape a patient's status across these different conditions.

METHODS: This retrospective longitudinal MRI study used resting-state fMRI and structural imaging to identify whole-brain focal/regional and connectome-level features associated with six binary clinical conditions of TLE (pre/post-surgery, seizure and neurocognitive outcomes, pathology, seizure subtype, and SOZ lateralization) in 91 patients across two centers (age range: 15-65 years) and 85 matched healthy participants (age range: 18-60 years).

RESULTS: Across conditions, relative to …


High Energy Consumption Characterizes Abnormal Brain State Transitions In Temporal Lobe Epilepsy, Sam S. Javidi, Qirui Zhang, Ankeeta Ankeeta, Michael R. Sperling, Joseph I. Tracy Sep 2025

High Energy Consumption Characterizes Abnormal Brain State Transitions In Temporal Lobe Epilepsy, Sam S. Javidi, Qirui Zhang, Ankeeta Ankeeta, Michael R. Sperling, Joseph I. Tracy

Farber Institute for Neuroscience Faculty Papers

Temporal lobe epilepsy (TLE) patients experience shifts between non-seizing and seizing brain states, but the structural networks underlying these transitions remain undefined and poorly characterized. We detected dynamic brain states in resting-state fMRI and constructed linked structural networks utilizing multi-shell diffusion-weighted MR data. Leveraging network control theory, we interrogated the structural data for all possible brain state transitions, identifying those requiring abnormal levels of transition energy (low or high) in TLE compared to matched healthy participants (n's = 25). Results revealed three transitions requiring significantly higher energy in TLE; no abnormally low-energy transitions were observed. In HPs, transitions relied on …


Enhancing Neuronal Viability: The Protective Role Of 10% Human Cerebrospinal Fluid In Primary Neuronal Cultures, Vineet Arora, Alicia Bernhardt, Alessandro Naopli, Mijail Serruya Jun 2025

Enhancing Neuronal Viability: The Protective Role Of 10% Human Cerebrospinal Fluid In Primary Neuronal Cultures, Vineet Arora, Alicia Bernhardt, Alessandro Naopli, Mijail Serruya

Farber Institute for Neuroscience Faculty Papers

Human cerebrospinal fluid (hCSF) is a physiologically rich medium containing neurotrophic factors, signaling molecules, and essential metabolites that support neuronal development, survival, and function. While its neuroprotective properties have been demonstrated in organotypic brain slices and human iPSC-derived models, its application in primary rodent cortical neuron cultures-a foundational system for studying synaptic development and neurodegeneration-remains underexplored. In this study, we systematically evaluated the effects of hCSF supplementation on neuronal viability in primary cortical cultures derived from embryonic day 18 (E18) rat embryos. To determine the optimal concentration, we tested a range of media:hCSF ratios and identified 90:10 (i.e., 10% hCSF) …


Impaired Dnajb2 Response To Heat Shock In Fibroblasts From A Neuropathy Patient With Dnajb2/Hsj1 Mutation: Cystamine As A Potential Therapeutic Intervention, Raj K. Pradhan, Nikolas G. Kinney, Brigid K. Jensen, Hristelina Ilieva May 2025

Impaired Dnajb2 Response To Heat Shock In Fibroblasts From A Neuropathy Patient With Dnajb2/Hsj1 Mutation: Cystamine As A Potential Therapeutic Intervention, Raj K. Pradhan, Nikolas G. Kinney, Brigid K. Jensen, Hristelina Ilieva

Farber Institute for Neuroscience Faculty Papers

Background and Objectives: Neuropathy is a debilitating disorder characterized by peripheral nerve dysfunction and damage to sensory, motor, and autonomic neurons and their axons. While homozygous mutations in DNAJB2/HSJ1 have been linked to early-onset neuropathy, a heterozygous DNAJB2 c.823+6C>T was discovered in an adult patient with severe sensory–motor polyneuropathy. This mutation is predicted to affect both isoforms of the protein. DNAJB2 (HSP40), a key member of the heat shock protein family, plays a critical role in cellular protection and stress, including response to heat shock. DNAJB2 traffics unfolded proteins to another heat shock protein, HSP70, and activates its ATPase …


Future Applications Of Fluorescence Lifetime Imaging Ophthalmoscopy In Neuro-Ophthalmology, Neurology, And Neurodegenerative Conditions, Daniel M. Markowitz, Elizabeth Affel, György Hajnóczky, Robert C. Sergott Mar 2025

Future Applications Of Fluorescence Lifetime Imaging Ophthalmoscopy In Neuro-Ophthalmology, Neurology, And Neurodegenerative Conditions, Daniel M. Markowitz, Elizabeth Affel, György Hajnóczky, Robert C. Sergott

Farber Institute for Neuroscience Faculty Papers

Fluorescence lifetime imaging ophthalmoscopy (FLIO) has emerged as an innovative advancement in retinal imaging, with the potential to provide in vivo non-invasive insights into the mitochondrial metabolism of the retina. Traditional retinal imaging, such as optical coherence tomography (OCT) and fundus autofluorescence (FAF) intensity imaging, focus solely on structural changes to the retina. In contrast, FLIO provides data that may reflect retinal fluorophore activity, some of which may indicate mitochondrial metabolism. This review builds upon the existing literature to describe the principles of FLIO and established uses in retinal diseases while introducing the potential for FLIO in neurodegenerative conditions.


Recovery After Human Bone Marrow Mesenchymal Stem Cells (Hbm-Mcs)-Derived Extracellular Vesicles (Evs) Treatment In Post-Mcao Rats Requires Repeated Handling, Yolanda Gomez-Galvez, Malvika Gupta, Mandeep Kaur, Salvatore Fusco, Maria Vittoria Podda, Claudio Grassi, Amit K. Srivastava, Lorraine Iacovitti, Elena Blanco-Suarez Oct 2024

Recovery After Human Bone Marrow Mesenchymal Stem Cells (Hbm-Mcs)-Derived Extracellular Vesicles (Evs) Treatment In Post-Mcao Rats Requires Repeated Handling, Yolanda Gomez-Galvez, Malvika Gupta, Mandeep Kaur, Salvatore Fusco, Maria Vittoria Podda, Claudio Grassi, Amit K. Srivastava, Lorraine Iacovitti, Elena Blanco-Suarez

Farber Institute for Neuroscience Faculty Papers

Rehabilitation is the only current intervention that improves sensorimotor function in ischemic stroke patients, similar to task-specific intensive training in animal models of stroke. Bone marrow mesenchymal stem cells (BM-MSCs)-derived extracellular vesicles (EVs) are promising in restoring brain damage and function in stroke models. Additionally, the non-invasive intranasal route allows EVs to reach the brain and target specific ischemic regions. Yet unclear is how handling might enhance recovery or influence other therapies such as EVs after stroke. We used the transient middle cerebral artery occlusion (MCAO) model of stroke in rats to assess how intensive handling alone, in the form …


Edge-Wise Analysis Reveals White Matter Connectivity Associated With Focal To Bilateral Tonic-Clonic Seizures, Sam S. Javidi, Xiaosong He, Ankeeta Ankeeta, Qirui Zhang, Salvatore Citro, Michael R. Sperling, Joseph I. Tracy Mar 2024

Edge-Wise Analysis Reveals White Matter Connectivity Associated With Focal To Bilateral Tonic-Clonic Seizures, Sam S. Javidi, Xiaosong He, Ankeeta Ankeeta, Qirui Zhang, Salvatore Citro, Michael R. Sperling, Joseph I. Tracy

Farber Institute for Neuroscience Faculty Papers

OBJECTIVE: Focal to bilateral tonic-clonic seizures (FBTCS) represent a challenging subtype of focal temporal lobe epilepsy (TLE) in terms of both severity and treatment response. Most studies have focused on regional brain analysis that is agnostic to the distribution of white matter (WM) pathways associated with a node. We implemented a more selective, edge-wise approach that allowed for identification of the individual connections unique to FBTCS.

METHODS: T1-weighted and diffusion-weighted images were obtained from 22 patients with solely focal seizures (FS), 43 FBTCS patients, and 65 age/sex-matched healthy participants (HPs), yielding streamline (STR) connectome matrices. We used diffusion tensor-derived STRs …


Astrocytes In Stroke-Induced Neurodegeneration: A Timeline, Eileen Collyer, Elena Blanco-Suarez Sep 2023

Astrocytes In Stroke-Induced Neurodegeneration: A Timeline, Eileen Collyer, Elena Blanco-Suarez

Farber Institute for Neuroscience Faculty Papers

Stroke is a condition characterized by sudden deprivation of blood flow to a brain region and defined by different post-injury phases, which involve various molecular and cellular cascades. At an early stage during the acute phase, fast initial cell death occurs, followed by inflammation and scarring. This is followed by a sub-acute or recovery phase when endogenous plasticity mechanisms may promote spontaneous recovery, depending on various factors that are yet to be completely understood. At later time points, stroke leads to greater neurodegeneration compared to healthy controls in both clinical and preclinical studies, this is evident during the chronic phase …


C9orf72 Poly(Pr) Mediated Neurodegeneration Is Associated With Nucleolar Stress, M. E. Cicardi, J. H. Hallgren, D. Mawrie, K. Krishnamurthy, S. S. Markandaiah, A. T. Nelson, V. Kankate, E. N. Anderson, P. Pasinelli, U. B. Pandey, C. M. Eischen, D. Trotti Jul 2023

C9orf72 Poly(Pr) Mediated Neurodegeneration Is Associated With Nucleolar Stress, M. E. Cicardi, J. H. Hallgren, D. Mawrie, K. Krishnamurthy, S. S. Markandaiah, A. T. Nelson, V. Kankate, E. N. Anderson, P. Pasinelli, U. B. Pandey, C. M. Eischen, D. Trotti

Farber Institute for Neuroscience Faculty Papers

The ALS/FTD-linked intronic hexanucleotide repeat expansion in the C9orf72 gene is aberrantly translated in the sense and antisense directions into dipeptide repeat proteins, among which poly proline-arginine (PR) displays the most aggressive neurotoxicity in-vitro and in-vivo. PR partitions to the nucleus when heterologously expressed in neurons and other cell types. We show that by lessening the nuclear accumulation of PR, we can drastically reduce its neurotoxicity. PR strongly accumulates in the nucleolus, a nuclear structure critical in regulating the cell stress response. We determined that, in neurons, PR caused nucleolar stress and increased levels of the transcription factor p53. …


Response Of Astrocyte Subpopulations Following Spinal Cord Injury., R Vivian Allahyari, Nicolette M Heinsinger, Daniel Hwang, David A Jaffe, Javad Rasouli, Stephanie Shiers, Samantha J Thomas, Theodore J Price, Abdolmohamad Rostami, Angelo C Lepore Feb 2022

Response Of Astrocyte Subpopulations Following Spinal Cord Injury., R Vivian Allahyari, Nicolette M Heinsinger, Daniel Hwang, David A Jaffe, Javad Rasouli, Stephanie Shiers, Samantha J Thomas, Theodore J Price, Abdolmohamad Rostami, Angelo C Lepore

Farber Institute for Neuroscience Faculty Papers

There is growing appreciation for astrocyte heterogeneity both across and within central nervous system (CNS) regions, as well as between intact and diseased states. Recent work identified multiple astrocyte subpopulations in mature brain. Interestingly, one subpopulation (Population C) was shown to possess significantly enhanced synaptogenic properties in vitro, as compared with other astrocyte subpopulations of adult cortex and spinal cord. Following spinal cord injury (SCI), damaged neurons lose synaptic connections with neuronal partners, resulting in persistent functional loss. We determined whether SCI induces an enhanced synaptomodulatory astrocyte phenotype by shifting toward a greater proportion of Population C cells and/or increasing …


Rapid Decline In Telestroke Consults In The Setting Of Covid-19., Syed O. Shah., Robin Dharia, Jaime Stazi, Maureen Deprince, Robert H. Rosenwasswer Feb 2021

Rapid Decline In Telestroke Consults In The Setting Of Covid-19., Syed O. Shah., Robin Dharia, Jaime Stazi, Maureen Deprince, Robert H. Rosenwasswer

Farber Institute for Neuroscience Faculty Papers

Background and Purpose: As coronavirus disease 2019 (COVID-19) continues to be a global pandemic, there is a growing body of evidence suggesting that incidence of diseases that require emergent care, particularly myocardial infarction and ischemic stroke, has declined rapidly. The objective of this study is to quantify our experience of telestroke (TS) consults at a large tertiary comprehensive stroke center during the COVID-19 pandemic.

Methods: We retrospectively reviewed TS consults of patients presenting to our neuroscience network. Those with a confirmed diagnosis of acute ischemic stroke or transient ischemia attack were included. Data were compared from April 1, 2019, to …


Modulation Of Sleep-Courtship Balance By Nutritional Status In Drosophila, José M Duhart, Victoria Baccini, Yanan Zhang, Daniel R Machado, Kyunghee Koh Oct 2020

Modulation Of Sleep-Courtship Balance By Nutritional Status In Drosophila, José M Duhart, Victoria Baccini, Yanan Zhang, Daniel R Machado, Kyunghee Koh

Farber Institute for Neuroscience Faculty Papers

Sleep is essential but incompatible with other behaviors, and thus sleep drive competes with other motivations. We previously showed Drosophila males balance sleep and courtship via octopaminergic neurons that act upstream of courtship-regulating P1 neurons (Machado et al., 2017). Here, we show nutrition modulates the sleep-courtship balance and identify sleep-regulatory neurons downstream of P1 neurons. Yeast-deprived males exhibited attenuated female-induced nighttime sleep loss yet normal daytime courtship, which suggests male flies consider nutritional status in deciding whether the potential benefit of pursuing female partners outweighs the cost of losing sleep. Trans-synaptic tracing and calcium imaging identified dopaminergic neurons projecting to …


Lar Inhibitory Peptide Promotes Recovery Of Diaphragm Function And Multiple Forms Of Respiratory Neural Circuit Plasticity After Cervical Spinal Cord Injury., Lan Cheng, Armin Sami, Biswarup Ghosh, Mark W Urban, Nicolette M Heinsinger, Sophia S Liang, George M Smith, Megan C Wright, Shuxin Li, Angelo C Lepore Oct 2020

Lar Inhibitory Peptide Promotes Recovery Of Diaphragm Function And Multiple Forms Of Respiratory Neural Circuit Plasticity After Cervical Spinal Cord Injury., Lan Cheng, Armin Sami, Biswarup Ghosh, Mark W Urban, Nicolette M Heinsinger, Sophia S Liang, George M Smith, Megan C Wright, Shuxin Li, Angelo C Lepore

Farber Institute for Neuroscience Faculty Papers

Chondroitin sulfate proteoglycans (CSPGs), up-regulated in and around the lesion after traumatic spinal cord injury (SCI), are key extracellular matrix inhibitory molecules that limit axon growth and consequent recovery of function. CSPG-mediated inhibition occurs via interactions with axonal receptors, including leukocyte common antigen- related (LAR) phosphatase. We tested the effects of a novel LAR inhibitory peptide in rats after hemisection at cervical level 2, a SCI model in which bulbospinal inspiratory neural circuitry originating in the medullary rostral ventral respiratory group (rVRG) becomes disconnected from phrenic motor neuron (PhMN) targets in cervical spinal cord, resulting in persistent partial-to-complete diaphragm paralysis. …


Levels Of Par-1 Kinase Determine The Localization Of Bruchpilot At The Drosophila Neuromuscular Junction Synapses., Kara R. Barber, Martin Hruska, Keegan M. Bush, Jade A. Martinez, Hong Fei, Irwin B. Levitan, Matthew B. Dalva, Yogesh P. Wairkar Dec 2018

Levels Of Par-1 Kinase Determine The Localization Of Bruchpilot At The Drosophila Neuromuscular Junction Synapses., Kara R. Barber, Martin Hruska, Keegan M. Bush, Jade A. Martinez, Hong Fei, Irwin B. Levitan, Matthew B. Dalva, Yogesh P. Wairkar

Farber Institute for Neuroscience Faculty Papers

Functional synaptic networks are compromised in many neurodevelopmental and neurodegenerative diseases. While the mechanisms of axonal transport and localization of synaptic vesicles and mitochondria are relatively well studied, little is known about the mechanisms that regulate the localization of proteins that localize to active zones. Recent finding suggests that mechanisms involved in transporting proteins destined to active zones are distinct from those that transport synaptic vesicles or mitochondria. Here we report that localization of BRP-an essential active zone scaffolding protein in Drosophila, depends on the precise balance of neuronal Par-1 kinase. Disruption of Par-1 levels leads to excess accumulation of …


Managing The Complex Patient With Degenerative Cervical Myelopathy: How To Handle The Aging Spine, The Obese Patient, And Individuals With Medical Comorbidities., Geoffrey Stricsek, John Gillick, George Rymarczuk, James Harrop Jan 2018

Managing The Complex Patient With Degenerative Cervical Myelopathy: How To Handle The Aging Spine, The Obese Patient, And Individuals With Medical Comorbidities., Geoffrey Stricsek, John Gillick, George Rymarczuk, James Harrop

Farber Institute for Neuroscience Faculty Papers

Degenerative cervical myelopathy (DCM) is the most common cause of nontraumatic spinal cord injury worldwide. Even relatively mild impairment in functional scores can significantly impact daily activities. Surgery is an effective treatment for DCM, but outcomes are dependent on more than technique and preoperative neurologic deficits.


Dysregulation Of Kv3.4 Channels In Dorsal Root Ganglia Following Spinal Cord Injury., David Ritter, Benjamin M Zemel, Tamara J Hala, Michael E O'Leary, Angelo C Lepore, Manuel Covarrubias Jan 2015

Dysregulation Of Kv3.4 Channels In Dorsal Root Ganglia Following Spinal Cord Injury., David Ritter, Benjamin M Zemel, Tamara J Hala, Michael E O'Leary, Angelo C Lepore, Manuel Covarrubias

Farber Institute for Neuroscience Faculty Papers

Spinal cord injury (SCI) patients develop chronic pain involving poorly understood central and peripheral mechanisms. Because dysregulation of the voltage-gated Kv3.4 channel has been implicated in the hyperexcitable state of dorsal root ganglion (DRG) neurons following direct injury of sensory nerves, we asked whether such a dysregulation also plays a role in SCI. Kv3.4 channels are expressed in DRG neurons, where they help regulate action potential (AP) repolarization in a manner that depends on the modulation of inactivation by protein kinase C (PKC)-dependent phosphorylation of the channel's inactivation domain. Here, we report that, 2 weeks after cervical hemicontusion SCI, injured …


Tracking Transplanted Bone Marrow Stem Cells And Their Effects In The Rat Mcao Stroke Model., Gregory V Goldmacher, Rena Nasser, Daniel Y Lee, Sargon Yigit, Robert Rosenwasser, Lorraine Iacovitti Jan 2013

Tracking Transplanted Bone Marrow Stem Cells And Their Effects In The Rat Mcao Stroke Model., Gregory V Goldmacher, Rena Nasser, Daniel Y Lee, Sargon Yigit, Robert Rosenwasser, Lorraine Iacovitti

Farber Institute for Neuroscience Faculty Papers

In this study, rat bone marrow stromal stem cells (BMSCs) were tracked after IV administration to rats with experimental stroke caused by middle cerebral artery occlusion (MCAO). In addition, the effects of BMSC treatment on blood cell composition, brain glia and sensorimotor behavior was studied and compared to that which occurred spontaneously during the normal recovery process after stroke. We found that the vast majority of radiolabeled or fluorescently labeled BMSCs traveled to and remained in peripheral organs (lungs, spleen, liver) 3 days after IV injection in the MCAO rat. Once in the circulation, BMSCs also produced rapid alterations in …


Egr-1 Induces Darpp-32 Expression In Striatal Medium Spiny Neurons Via A Conserved Intragenic Element., Serene Keilani, Samira Chandwani, Georgia Dolios, Alexey Bogush, Heike Beck, Antonis K Hatzopoulos, Gadiparthi N Rao, Elizabeth A Thomas, Rong Wang, Michelle E Ehrlich May 2012

Egr-1 Induces Darpp-32 Expression In Striatal Medium Spiny Neurons Via A Conserved Intragenic Element., Serene Keilani, Samira Chandwani, Georgia Dolios, Alexey Bogush, Heike Beck, Antonis K Hatzopoulos, Gadiparthi N Rao, Elizabeth A Thomas, Rong Wang, Michelle E Ehrlich

Farber Institute for Neuroscience Faculty Papers

DARPP-32 (dopamine and adenosine 3', 5'-cyclic monophosphate cAMP-regulated phosphoprotein, 32 kDa) is a striatal-enriched protein that mediates signaling by dopamine and other first messengers in the medium spiny neurons. The transcriptional mechanisms that regulate striatal DARPP-32 expression remain enigmatic and are a subject of much interest in the efforts to induce a striatal phenotype in stem cells. We report the identification and characterization of a conserved region, also known as H10, in intron IV of the gene that codes for DARPP-32 (Ppp1r1b). This DNA sequence forms multiunit complexes with nuclear proteins from adult and embryonic striata of mice and rats. …


Amyloid-Beta/Fyn–Induced Synaptic, Network, And Cognitive Impairments Depend On Tau Levels In Multiple Mouse Models Of Alzheimer’S Disease, Erik D. Roberson, Brian Halabisky, Jong W. Yoo, Jinghua Yao, Jeannie Chin, Fengrong Yan, Tiffany Wu, Patricia Hamto, Nino Devidze, Gui-Qiu Yu, Jorge J. Palop, Jeffrey L. Noebels, Lennart Mucke Jan 2011

Amyloid-Beta/Fyn–Induced Synaptic, Network, And Cognitive Impairments Depend On Tau Levels In Multiple Mouse Models Of Alzheimer’S Disease, Erik D. Roberson, Brian Halabisky, Jong W. Yoo, Jinghua Yao, Jeannie Chin, Fengrong Yan, Tiffany Wu, Patricia Hamto, Nino Devidze, Gui-Qiu Yu, Jorge J. Palop, Jeffrey L. Noebels, Lennart Mucke

Farber Institute for Neuroscience Faculty Papers

Alzheimer's disease (AD), the most common neurodegenerative disorder, is a growing public health problem and still lacks effective treatments. Recent evidence suggests that microtubule-associated protein tau may mediate amyloid-β peptide (Aβ) toxicity by modulating the tyrosine kinase Fyn.Weshowed previously that tau reduction prevents, and Fyn overexpression exacerbates, cognitive deficits in human amyloid precursor protein (hAPP) transgenic mice overexpressing Aβ. However, the mechanisms by which Aβ, tau, and Fyn cooperate in AD-related pathogenesis remain to be fully elucidated. Here we examined the synaptic and network effects of this pathogenic triad. Tau reduction prevented cognitive decline induced by synergistic effects of Aβ …


Human Amniotic Fluid Stem Cells Do Not Differentiate Into Dopamine Neurons In Vitro Or After Transplantation In Vivo., Angela E Donaldson, Jingli Cai, Ming Yang, Lorraine Iacovitti Sep 2009

Human Amniotic Fluid Stem Cells Do Not Differentiate Into Dopamine Neurons In Vitro Or After Transplantation In Vivo., Angela E Donaldson, Jingli Cai, Ming Yang, Lorraine Iacovitti

Farber Institute for Neuroscience Faculty Papers

Although embryonic stem (ES) cells can generate dopamine (DA) neurons that are potentially useful as a cell replacement therapy in Parkinson's disease (PD), associated ethical and practical concerns remain major stumbling blocks to their eventual use in humans. In this study, we examined human amniotic fluid stem (hAFS) cells derived from routine amniocenteses for their potential to give rise to DA neurons in vitro and following transplantation into the 6-hydroxydopamine-lesioned rat brain. We show that undifferentiated hAFS cells constitutively expressed mRNAs and proteins typical of stem cells but also cell derivatives of all three germ layers, including neural progenitors/neurons (nestin, …


Evidence Against Roles For Phorbol Binding Protein Munc13-1, Adam Adaptor Eve-1, Or Vesicle Trafficking Phosphoproteins Munc18 Or Nsf As Phospho-State-Sensitive Modulators Of Phorbol/Pkc-Activated Alzheimer App Ectodomain Shedding., Annat F Ikin, Mirsada Causevic, Steve Pedrini, Lyndsey S Benson, Joseph D Buxbaum, Toshiharu Suzuki, Simon Lovestone, Shigeki Higashiyama, Tomas Mustelin, Robert D Burgoyne, Sam Gandy Jan 2007

Evidence Against Roles For Phorbol Binding Protein Munc13-1, Adam Adaptor Eve-1, Or Vesicle Trafficking Phosphoproteins Munc18 Or Nsf As Phospho-State-Sensitive Modulators Of Phorbol/Pkc-Activated Alzheimer App Ectodomain Shedding., Annat F Ikin, Mirsada Causevic, Steve Pedrini, Lyndsey S Benson, Joseph D Buxbaum, Toshiharu Suzuki, Simon Lovestone, Shigeki Higashiyama, Tomas Mustelin, Robert D Burgoyne, Sam Gandy

Farber Institute for Neuroscience Faculty Papers

ABSTRACT: BACKGROUND: Shedding of the Alzheimer amyloid precursor protein (APP) ectodomain can be accelerated by phorbol esters, compounds that act via protein kinase C (PKC) or through unconventional phorbol-binding proteins such as Munc13-1. We have previously demonstrated that application of phorbol esters or purified PKC potentiates budding of APP-bearing secretory vesicles at the trans-Golgi network (TGN) and toward the plasma membrane where APP becomes a substrate for enzymes responsible for shedding, known collectively as alpha-secretase(s). However, molecular identification of the presumptive "phospho-state-sensitive modulators of ectodomain shedding" (PMES) responsible for regulated shedding has been challenging. Here, we examined the effects on …


Similar Promotion Of Abeta1-42 Fibrillogenesis By Native Apolipoprotein E Epsilon3 And Epsilon4 Isoforms., David Sweeney, Ralph Martins, Harry Levine, Jonathan D Smith, Sam Gandy Aug 2004

Similar Promotion Of Abeta1-42 Fibrillogenesis By Native Apolipoprotein E Epsilon3 And Epsilon4 Isoforms., David Sweeney, Ralph Martins, Harry Levine, Jonathan D Smith, Sam Gandy

Farber Institute for Neuroscience Faculty Papers

The apolipoprotein E epsilon4 allele contributes to the genetic susceptibility underlying a large proportion (~40-60%) of typical, sporadic Alzheimer disease. Apolipoprotein E deficient mice made transgenic for human apolipoprotein E epsilon4 accumulate excess cerebral amyloid when compared to similarly prepared mice expressing human apolipoprotein E epsilon3. Therefore, it is important to search for relevant interactions(s) between apolipoprotein E epsilon4 and Abeta in order to clarify the biological role for apolipoprotein E epsilon4 in Alzheimer disease. Using a thioflavine T (ThT)-based assay, we have investigated the effects of native human apolipoprotein E isoforms on the kinetics of Abeta fibrillogenesis. No obvious …