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Articles 961 - 990 of 1127
Full-Text Articles in Neurosciences
Oxytocin Signaling Is Necessary For Synaptic Maturation Of Adult-Born Neurons, Brandon T Pekarek, Mikhail Kochukov, Brittney Lozzi, Timothy Wu, Patrick J Hunt, Burak Tepe, Elizabeth Hanson Moss, Evelyne K Tantry, Jessica L Swanson, Sean W Dooling, Mayuri Patel, Benjamin D W Belfort, Juan M Romero, Suyang Bao, Matthew C Hill, Benjamin R Arenkiel
Oxytocin Signaling Is Necessary For Synaptic Maturation Of Adult-Born Neurons, Brandon T Pekarek, Mikhail Kochukov, Brittney Lozzi, Timothy Wu, Patrick J Hunt, Burak Tepe, Elizabeth Hanson Moss, Evelyne K Tantry, Jessica L Swanson, Sean W Dooling, Mayuri Patel, Benjamin D W Belfort, Juan M Romero, Suyang Bao, Matthew C Hill, Benjamin R Arenkiel
Duncan NRI Faculty and Staff Publications
Neural circuit plasticity and sensory response dynamics depend on forming new synaptic connections. Despite recent advances toward understanding the consequences of circuit plasticity, the mechanisms driving circuit plasticity are unknown. Adult-born neurons within the olfactory bulb have proven to be a powerful model for studying circuit plasticity, providing a broad and accessible avenue into neuron development, migration, and circuit integration. We and others have shown that efficient adult-born neuron circuit integration hinges on presynaptic activity in the form of diverse signaling peptides. Here, we demonstrate a novel oxytocin-dependent mechanism of adult-born neuron synaptic maturation and circuit integration. We reveal spatial …
Distinct Organization Of Two Cortico-Cortical Feedback Pathways, Shan Shen, Xiaolong Jiang, Federico Scala, Jiakun Fu, Paul Fahey, Dmitry Kobak, Zhenghuan Tan, Na Zhou, Jacob Reimer, Fabian Sinz, Andreas S Tolias
Distinct Organization Of Two Cortico-Cortical Feedback Pathways, Shan Shen, Xiaolong Jiang, Federico Scala, Jiakun Fu, Paul Fahey, Dmitry Kobak, Zhenghuan Tan, Na Zhou, Jacob Reimer, Fabian Sinz, Andreas S Tolias
Duncan NRI Faculty and Staff Publications
Neocortical feedback is critical for attention, prediction, and learning. To mechanically understand its function requires deciphering its cell-type wiring. Recent studies revealed that feedback between primary motor to primary somatosensory areas in mice is disinhibitory, targeting vasoactive intestinal peptide-expressing interneurons, in addition to pyramidal cells. It is unknown whether this circuit motif represents a general cortico-cortical feedback organizing principle. Here we show that in contrast to this wiring rule, feedback between higher-order lateromedial visual area to primary visual cortex preferentially activates somatostatin-expressing interneurons. Functionally, both feedback circuits temporally sharpen feed-forward excitation eliciting a transient increase–followed by a prolonged decrease–in pyramidal …
Cluster Analysis Of Short Sensory Profile Data Reveals Sensory-Based Subgroups In Autism Spectrum Disorder, Ariel M Lyons-Warren, Michael F Wangler, Ying-Wooi Wan
Cluster Analysis Of Short Sensory Profile Data Reveals Sensory-Based Subgroups In Autism Spectrum Disorder, Ariel M Lyons-Warren, Michael F Wangler, Ying-Wooi Wan
Duncan NRI Faculty and Staff Publications
Autism spectrum disorder is a common, heterogeneous neurodevelopmental disorder lacking targeted treatments. Additional features include restricted, repetitive patterns of behaviors and differences in sensory processing. We hypothesized that detailed sensory features including modality specific hyper- and hypo-sensitivity could be used to identify clinically recognizable subgroups with unique underlying gene variants. Participants included 378 individuals with a clinical diagnosis of autism spectrum disorder who contributed Short Sensory Profile data assessing the frequency of sensory behaviors and whole genome sequencing results to the Autism Speaks’ MSSNG database. Sensory phenotypes in this cohort were not randomly distributed with 10 patterns describing 43% (162/378) …
Hdac6 Inhibition Reverses Cisplatin-Induced Mechanical Hypersensitivity Via Tonic Delta Opioid Receptor Signaling, Jixiang Zhang, Jazzmine M Junigan, Ronnie Trinh, Annemieke Kavelaars, Cobi J Heijnen, Peter M Grace
Hdac6 Inhibition Reverses Cisplatin-Induced Mechanical Hypersensitivity Via Tonic Delta Opioid Receptor Signaling, Jixiang Zhang, Jazzmine M Junigan, Ronnie Trinh, Annemieke Kavelaars, Cobi J Heijnen, Peter M Grace
Faculty, Staff and Student Publications
Peripheral neuropathic pain induced by the chemotherapeutic cisplatin can persist for months to years after treatment. Histone deacetylase 6 (HDAC6) inhibitors have therapeutic potential for cisplatin-induced neuropathic pain since they persistently reverse mechanical hypersensitivity and spontaneous pain in rodent models. Here, we investigated the mechanisms underlying reversal of mechanical hypersensitivity in male and female mice by a 2 week treatment with an HDAC6 inhibitor, administered 3 d after the last dose of cisplatin. Mechanical hypersensitivity in animals of both sexes treated with the HDAC6 inhibitor was temporarily reinstated by a single injection of the neutral opioid receptor antagonist 6β-naltrexol or …
Anterior Connectivity Critical For Recovery Of Connected Speech After Stroke, Junhua Ding, Tatiana T Schnur
Anterior Connectivity Critical For Recovery Of Connected Speech After Stroke, Junhua Ding, Tatiana T Schnur
Faculty, Staff and Student Publications
Connected speech recovers to different degrees across people after left hemisphere stroke, but white matter predictors of differential recovery from the acute stage of stroke are unknown. We assessed changes in lexical-syntactic aspects of connected speech in a longitudinal analysis of 40 individuals (18 females) from the acute stage of left hemisphere stroke (within an average of 4 days post-stroke) to subacute (within 2 months) and chronic stages (early: 6 months, late: 1 year) while measuring the extent of acute lesions on white matter tracts to identify tracts predictive of recovery. We found that acute damage to the frontal aslant …
Loss Of Activity-Induced Mitochondrial Atp Production Underlies The Synaptic Defects In A Drosophila Model Of Als, Nicholas E Karagas, Richa Gupta, Elham Rastegari, Kai Li Tan, Ho Hang Leung, Hugo J Bellen, Kartik Venkatachalam, Ching-On Wong
Loss Of Activity-Induced Mitochondrial Atp Production Underlies The Synaptic Defects In A Drosophila Model Of Als, Nicholas E Karagas, Richa Gupta, Elham Rastegari, Kai Li Tan, Ho Hang Leung, Hugo J Bellen, Kartik Venkatachalam, Ching-On Wong
Faculty, Staff and Students Publications
Mutations in the gene encoding vesicle-associated membrane protein B (VAPB) cause a familial form of amyotrophic lateral sclerosis (ALS). Expression of an ALS-related variant of vapb (vapbP58S) in Drosophila motor neurons results in morphologic changes at the larval neuromuscular junction (NMJ) characterized by the appearance of fewer, but larger, presynaptic boutons. Although diminished microtubule stability is known to underlie these morphologic changes, a mechanism for the loss of presynaptic microtubules has been lacking. By studying flies of both sexes, we demonstrate the suppression of vapbP58S-induced changes in NMJ morphology by either a loss of endoplasmic …
Molecular Pathways Of Major Depressive Disorder Converge On The Synapse, Gabriel R Fries, Valeria A Saldana, Johannes Finnstein, Theo Rein
Molecular Pathways Of Major Depressive Disorder Converge On The Synapse, Gabriel R Fries, Valeria A Saldana, Johannes Finnstein, Theo Rein
Faculty, Staff and Student Publications
Major depressive disorder (MDD) is a psychiatric disease of still poorly understood molecular etiology. Extensive studies at different molecular levels point to a high complexity of numerous interrelated pathways as the underpinnings of depression. Major systems under consideration include monoamines, stress, neurotrophins and neurogenesis, excitatory and inhibitory neurotransmission, mitochondrial dysfunction, (epi)genetics, inflammation, the opioid system, myelination, and the gut-brain axis, among others. This review aims at illustrating how these multiple signaling pathways and systems may interact to provide a more comprehensive view of MDD's neurobiology. In particular, considering the pattern of synaptic activity as the closest physical representation of mood, …
The Recurrent De Novo C.2011c>T Missense Variant In Mtss2 Causes Syndromic Intellectual Disability, Yan Huang, Gabrielle Lemire, Lauren C Briere, Fang Liu, Marja W Wessels, Xueqi Wang, Matthew Osmond, Oguz Kanca, Shenzhao Lu, Frances A High, Melissa A Walker, Lance H Rodan, Undiagnosed Diseases Network, Care4rare Canada Consortium, Kristin D Kernohan, David A Sweetser, Kym M Boycott, Hugo J Bellen
The Recurrent De Novo C.2011c>T Missense Variant In Mtss2 Causes Syndromic Intellectual Disability, Yan Huang, Gabrielle Lemire, Lauren C Briere, Fang Liu, Marja W Wessels, Xueqi Wang, Matthew Osmond, Oguz Kanca, Shenzhao Lu, Frances A High, Melissa A Walker, Lance H Rodan, Undiagnosed Diseases Network, Care4rare Canada Consortium, Kristin D Kernohan, David A Sweetser, Kym M Boycott, Hugo J Bellen
Duncan NRI Faculty and Staff Publications
MTSS2, also known as MTSS1L, binds to plasma membranes and modulates their bending. MTSS2 is highly expressed in the central nervous system (CNS) and appears to be involved in activity-dependent synaptic plasticity. Variants in MTSS2 have not yet been associated with a human phenotype in OMIM. Here we report five individuals with the same heterozygous de novo variant in MTSS2 (GenBank: NM_138383.2: c.2011C>T [p.Arg671Trp]) identified by exome sequencing. The individuals present with global developmental delay, mild intellectual disability, ophthalmological anomalies, microcephaly or relative microcephaly, and shared mild facial dysmorphisms. Immunoblots of fibroblasts from two affected individuals revealed that the …
De Novo Variants In Frmd5 Are Associated With Developmental Delay, Intellectual Disability, Ataxia, And Abnormalities Of Eye Movement, Shenzhao Lu, Mengqi Ma, Xiao Mao, Carlos A Bacino, Joseph Jankovic, V Reid Sutton, James A Bartley, Xueying Wang, Jill A Rosenfeld, Ana Beleza-Meireles, Jaynee Chauhan, Xueyang Pan, Megan Li, Pengfei Liu, Katrina Prescott, Sam Amin, George Davies, Michael F Wangler, Yuwei Dai, Hugo J Bellen
De Novo Variants In Frmd5 Are Associated With Developmental Delay, Intellectual Disability, Ataxia, And Abnormalities Of Eye Movement, Shenzhao Lu, Mengqi Ma, Xiao Mao, Carlos A Bacino, Joseph Jankovic, V Reid Sutton, James A Bartley, Xueying Wang, Jill A Rosenfeld, Ana Beleza-Meireles, Jaynee Chauhan, Xueyang Pan, Megan Li, Pengfei Liu, Katrina Prescott, Sam Amin, George Davies, Michael F Wangler, Yuwei Dai, Hugo J Bellen
Duncan NRI Faculty and Staff Publications
Proteins containing the FERM (four-point-one, ezrin, radixin, and moesin) domain link the plasma membrane with cytoskeletal structures at specific cellular locations and have been implicated in the localization of cell-membrane-associated proteins and/or phosphoinositides. FERM domain-containing protein 5 (FRMD5) localizes at cell adherens junctions and stabilizes cell-cell contacts. To date, variants in FRMD5 have not been associated with a Mendelian disease in OMIM. Here, we describe eight probands with rare heterozygous missense variants in FRMD5 who present with developmental delay, intellectual disability, ataxia, seizures, and abnormalities of eye movement. The variants are de novo in all for whom parental testing was …
Covid-19 Pandemic And Infant Neurodevelopmental Impairment: A Systematic Review And Meta-Analysis, Kamran Hessami, Amir Hossein Norooznezhad, Sonia Monteiro, Enrico R Barrozo, Abolfazl Shirdel Abdolmaleki, Sara E Arian, Nikan Zargarzadeh, Lara S Shekerdemian, Kjersti M Aagaard, Alireza A Shamshirsaz
Covid-19 Pandemic And Infant Neurodevelopmental Impairment: A Systematic Review And Meta-Analysis, Kamran Hessami, Amir Hossein Norooznezhad, Sonia Monteiro, Enrico R Barrozo, Abolfazl Shirdel Abdolmaleki, Sara E Arian, Nikan Zargarzadeh, Lara S Shekerdemian, Kjersti M Aagaard, Alireza A Shamshirsaz
Faculty, Staff and Students Publications
IMPORTANCE: Primary studies proposed that aberrant maternal antiviral immunity and/or giving birth in quarantine, such as during the ongoing COVID-19 pandemic, may be associated with the risk of neurodevelopmental impairment (NDI) in offspring.
OBJECTIVES: To evaluate the associations of birth and being raised during the COVID-19 pandemic with risk of NDI among infants and to assess the association of gestational exposure to SARS-CoV-2 with risk of NDI.
DATA SOURCES: PubMed, Web of Science, Scopus, Embase, and preprint servers were systematically searched from inception to March 25, 2022.
STUDY SELECTION: Studies evaluating the neurodevelopment of infants born during the SARS-CoV-2 pandemic …
Preconditioning By Voluntary Wheel Running Attenuates Later Neuropathic Pain Via Nuclear Factor E2-Related Factor 2 Antioxidant Signaling In Rats, Suzanne M Green-Fulgham, Michael E Harland, Jayson B Ball, Jiahe Li, Michael J Lacagnina, Heather D'Angelo, Renee A Dreher, Kendal F Willcox, Sabina A Lorca, Andrew J Kwilasz, Steven F Maier, Linda R Watkins, Peter M Grace
Preconditioning By Voluntary Wheel Running Attenuates Later Neuropathic Pain Via Nuclear Factor E2-Related Factor 2 Antioxidant Signaling In Rats, Suzanne M Green-Fulgham, Michael E Harland, Jayson B Ball, Jiahe Li, Michael J Lacagnina, Heather D'Angelo, Renee A Dreher, Kendal F Willcox, Sabina A Lorca, Andrew J Kwilasz, Steven F Maier, Linda R Watkins, Peter M Grace
Faculty, Staff and Student Publications
Animal and human studies have shown that exercise prior to nerve injury prevents later chronic pain, but the mechanisms of such preconditioning remain elusive. Given that exercise acutely increases the formation of free radicals, triggering antioxidant compensation, we hypothesized that voluntary running preconditioning would attenuate neuropathic pain by supporting redox homeostasis after sciatic nerve injury in male and female rats. We show that 6 weeks of voluntary wheel running suppresses neuropathic pain development induced by chronic constriction injury across both sexes. This attenuation was associated with reduced nitrotyrosine immunoreactivity-a marker for peroxynitrite-at the sciatic nerve injury site. Our data suggest …
Comparison Of Brain Nicotine Uptake From Electronic Cigarettes And Combustible Cigarettes, Yantao Zuo, Alexey G Mukhin, Hannah Berg, Janiece D Morgan, Akiva Mintz, Jed E Rose, Kiran Kumar Solingapuram Sai
Comparison Of Brain Nicotine Uptake From Electronic Cigarettes And Combustible Cigarettes, Yantao Zuo, Alexey G Mukhin, Hannah Berg, Janiece D Morgan, Akiva Mintz, Jed E Rose, Kiran Kumar Solingapuram Sai
Faculty, Staff and Student Publications
Brain accumulation rate and magnitude are critical for the acute reinforcing effects of nicotine. Despite electronic cigarettes’ (E-cigs) appeal as substitutes for traditional combustible cigarettes (C-cigs), brain nicotine accumulation (BNA) from E-cigs has not been compared with that from C-cigs using a within-subjects design. BNA was directly assessed with 16 adult dual users (10 females) of E-cigs (e-liquid pH 9.4) and C-cigs, using 11C-nicotine and positron emission tomography (PET). Participants went through two 15-min head scanning sessions during which they inhaled a single puff of E-cig vapor or C-cig smoke containing 11C-nicotine in a randomized order. A full-body scan was …
Aging After Stroke: How To Define Post-Stroke Sarcopenia And What Are Its Risk Factors?, Sheng Li, Javier Gonzalez-Buonomo, Jaskiran Ghuman, Xinran Huang, Aila Malik, Nuray Yozbatiran, Elaine Magat, Gerard E Francisco, Hulin Wu, Walter R Frontera
Aging After Stroke: How To Define Post-Stroke Sarcopenia And What Are Its Risk Factors?, Sheng Li, Javier Gonzalez-Buonomo, Jaskiran Ghuman, Xinran Huang, Aila Malik, Nuray Yozbatiran, Elaine Magat, Gerard E Francisco, Hulin Wu, Walter R Frontera
Faculty, Staff and Student Publications
BACKGROUND: Sarcopenia, generally described as "aging-related loss of skeletal muscle mass and function", can occur secondary to a systemic disease.
AIM: This project aimed to study the prevalence of sarcopenia in chronic ambulatory stroke survivors and its associated risk factors using the two most recent diagnostic criteria.
DESIGN: A cross-sectional observational study.
SETTING: A scientific laboratory.
POPULATION: Chronic stroke.
METHODS: Twenty-eight ambulatory chronic stroke survivors (12 females; mean age=57.8±11.8 years; time after stroke=76±45 months), hand-grip strength, gait speed, and appendicular skeletal muscle mass (ASM) were measured to define sarcopenia. Risk factors, including motor impairment and spasticity, were identified using regression …
Aging After Stroke: How To Define Post-Stroke Sarcopenia And What Are Its Risk Factors?, Sheng Li, Javier Gonzalez-Buonomo, Jaskiran Ghuman, Xinran Huang, Aila Malik, Nuray Yozbatiran, Elaine Magat, Gerard E Francisco, Hulin Wu, Walter R Frontera
Aging After Stroke: How To Define Post-Stroke Sarcopenia And What Are Its Risk Factors?, Sheng Li, Javier Gonzalez-Buonomo, Jaskiran Ghuman, Xinran Huang, Aila Malik, Nuray Yozbatiran, Elaine Magat, Gerard E Francisco, Hulin Wu, Walter R Frontera
Faculty, Staff and Student Publications
BACKGROUND: Sarcopenia, generally described as "aging-related loss of skeletal muscle mass and function", can occur secondary to a systemic disease.
AIM: This project aimed to study the prevalence of sarcopenia in chronic ambulatory stroke survivors and its associated risk factors using the two most recent diagnostic criteria.
DESIGN: A cross-sectional observational study.
SETTING: A scientific laboratory.
POPULATION: Chronic stroke.
METHODS: Twenty-eight ambulatory chronic stroke survivors (12 females; mean age=57.8±11.8 years; time after stroke=76±45 months), hand-grip strength, gait speed, and appendicular skeletal muscle mass (ASM) were measured to define sarcopenia. Risk factors, including motor impairment and spasticity, were identified using regression …
Mesenchymal Stromal Cells For The Treatment Of Alzheimer’S Disease: Strategies And Limitations, Shobha Regmi, Daniel Dan Liu, Michelle Shen, Bhavesh D Kevadiya, Abantika Ganguly, Rosita Primavera, Shashank Chetty, Reza Yarani, Avnesh S Thakor
Mesenchymal Stromal Cells For The Treatment Of Alzheimer’S Disease: Strategies And Limitations, Shobha Regmi, Daniel Dan Liu, Michelle Shen, Bhavesh D Kevadiya, Abantika Ganguly, Rosita Primavera, Shashank Chetty, Reza Yarani, Avnesh S Thakor
Faculty, Staff and Student Publications
Alzheimer's disease (AD) is a major cause of age-related dementia and is characterized by progressive brain damage that gradually destroys memory and the ability to learn, which ultimately leads to the decline of a patient's ability to perform daily activities. Although some of the pharmacological treatments of AD are available for symptomatic relief, they are not able to limit the progression of AD and have several side effects. Mesenchymal stem/stromal cells (MSCs) could be a potential therapeutic option for treating AD due to their immunomodulatory, anti-inflammatory, regenerative, antioxidant, anti-apoptotic, and neuroprotective effects. MSCs not only secret neuroprotective and anti-inflammatory factors …
Heterozygous Variants In Myh10 Associated With Neurodevelopmental Disorders And Congenital Anomalies With Evidence For Primary Cilia-Dependent Defects In Hedgehog Signaling, Alexander M Holtz, Rachel Vancoillie, Elizabeth A Vansickle, Deanna Alexis Carere, Kara Withrow, Erin Torti, Jane Juusola, Francisca Millan, Richard Person, Maria J Guillen Sacoto, Yue Si, Ingrid M Wentzensen, Jada Pugh, Georgia Vasileiou, Melissa Rieger, André Reis, Emanuela Argilli, Elliott H Sherr, Kimberly A Aldinger, William B Dobyns, Theresa Brunet, Julia Hoefele, Matias Wagner, Benjamin Haber, Urania Kotzaeridou, Boris Keren, Delphine Heron, Cyril Mignot, Solveig Heide, Thomas Courtin, Julien Buratti, Serini Murugasen, Kirsten A Donald, Emily O'Heir, Shade Moody, Katherine H Kim, Barbara K Burton, Grace Yoon, Miguel Del Campo, Diane Masser-Frye, Mariya Kozenko, Christina Parkinson, Susan L Sell, Patricia L Gordon, Jeremy W Prokop, Amel Karaa, Caleb Bupp, Benjamin A Raby
Heterozygous Variants In Myh10 Associated With Neurodevelopmental Disorders And Congenital Anomalies With Evidence For Primary Cilia-Dependent Defects In Hedgehog Signaling, Alexander M Holtz, Rachel Vancoillie, Elizabeth A Vansickle, Deanna Alexis Carere, Kara Withrow, Erin Torti, Jane Juusola, Francisca Millan, Richard Person, Maria J Guillen Sacoto, Yue Si, Ingrid M Wentzensen, Jada Pugh, Georgia Vasileiou, Melissa Rieger, André Reis, Emanuela Argilli, Elliott H Sherr, Kimberly A Aldinger, William B Dobyns, Theresa Brunet, Julia Hoefele, Matias Wagner, Benjamin Haber, Urania Kotzaeridou, Boris Keren, Delphine Heron, Cyril Mignot, Solveig Heide, Thomas Courtin, Julien Buratti, Serini Murugasen, Kirsten A Donald, Emily O'Heir, Shade Moody, Katherine H Kim, Barbara K Burton, Grace Yoon, Miguel Del Campo, Diane Masser-Frye, Mariya Kozenko, Christina Parkinson, Susan L Sell, Patricia L Gordon, Jeremy W Prokop, Amel Karaa, Caleb Bupp, Benjamin A Raby
Faculty, Staff and Student Publications
PURPOSE: Nonmuscle myosin II complexes are master regulators of actin dynamics that play essential roles during embryogenesis with vertebrates possessing 3 nonmuscle myosin II heavy chain genes, MYH9, MYH10, and MYH14. As opposed to MYH9 and MYH14, no recognizable disorder has been associated with MYH10. We sought to define the clinical characteristics and molecular mechanism of a novel autosomal dominant disorder related to MYH10.
METHODS: An international collaboration identified the patient cohort. CAS9-mediated knockout cell models were used to explore the mechanism of disease pathogenesis.
RESULTS: We identified a cohort of 16 individuals with heterozygous MYH10 variants presenting with a …
Aging After Stroke: How To Define Post-Stroke Sarcopenia And What Are Its Risk Factors?, Sheng Li, Javier Gonzalez-Buonomo, Jaskiran Ghuman, Xinran Huang, Aila Malik, Nuray Yozbatiran, Elaine Magat, Gerard E Francisco, Hulin Wu, Walter R Frontera
Aging After Stroke: How To Define Post-Stroke Sarcopenia And What Are Its Risk Factors?, Sheng Li, Javier Gonzalez-Buonomo, Jaskiran Ghuman, Xinran Huang, Aila Malik, Nuray Yozbatiran, Elaine Magat, Gerard E Francisco, Hulin Wu, Walter R Frontera
Faculty, Staff and Student Publications
BACKGROUND: Sarcopenia, generally described as "aging-related loss of skeletal muscle mass and function", can occur secondary to a systemic disease.
AIM: This project aimed to study the prevalence of sarcopenia in chronic ambulatory stroke survivors and its associated risk factors using the two most recent diagnostic criteria.
DESIGN: A cross-sectional observational study.
SETTING: A scientific laboratory.
POPULATION: Chronic stroke.
METHODS: Twenty-eight ambulatory chronic stroke survivors (12 females; mean age=57.8±11.8 years; time after stroke=76±45 months), hand-grip strength, gait speed, and appendicular skeletal muscle mass (ASM) were measured to define sarcopenia. Risk factors, including motor impairment and spasticity, were identified using regression …
Loss Of Lamp5 Interneurons Drives Neuronal Network Dysfunction In Alzheimer’S Disease, Yuanyuan Deng, Mian Bi, Fabien Delerue, Shelley L Forrest, Gabriella Chan, Julia Van Der Hoven, Annika Van Hummel, Astrid F Feiten, Seojin Lee, Ivan Martinez-Valbuena, Tim Karl, Gabor G Kovacs, Grant Morahan, Yazi D Ke, Lars M Ittner
Loss Of Lamp5 Interneurons Drives Neuronal Network Dysfunction In Alzheimer’S Disease, Yuanyuan Deng, Mian Bi, Fabien Delerue, Shelley L Forrest, Gabriella Chan, Julia Van Der Hoven, Annika Van Hummel, Astrid F Feiten, Seojin Lee, Ivan Martinez-Valbuena, Tim Karl, Gabor G Kovacs, Grant Morahan, Yazi D Ke, Lars M Ittner
Faculty, Staff and Student Publications
In Alzheimer's disease (AD), where amyloid-β (Aβ) and tau deposits in the brain, hyperexcitation of neuronal networks is an underlying disease mechanism, but its cause remains unclear. Here, we used the Collaborative Cross (CC) forward genetics mouse platform to identify modifier genes of neuronal hyperexcitation. We found LAMP5 as a novel regulator of hyperexcitation in mice, critical for the survival of distinct interneuron populations. Interestingly, synaptic LAMP5 was lost in AD brains and LAMP5 interneurons degenerated in different AD mouse models. Genetic reduction of LAMP5 augmented functional deficits and neuronal network hypersynchronicity in both Aβ- and tau-driven AD mouse models. …
Causal Evidence For A Role Of Cerebellar Lobulus Simplex In Prefrontal-Hippocampal Interaction In Spatial Working Memory Decision-Making, Yu Liu, Samuel S Mcafee, Meike E Van Der Heijden, Mukesh Dhamala, Roy V Sillitoe, Detlef H Heck
Causal Evidence For A Role Of Cerebellar Lobulus Simplex In Prefrontal-Hippocampal Interaction In Spatial Working Memory Decision-Making, Yu Liu, Samuel S Mcafee, Meike E Van Der Heijden, Mukesh Dhamala, Roy V Sillitoe, Detlef H Heck
Duncan NRI Faculty and Staff Publications
Spatial working memory (SWM) is a cerebrocerebellar cognitive skill supporting survival-relevant behaviors, such as optimizing foraging behavior by remembering recent routes and visited sites. It is known that SWM decision-making in rodents requires the medial prefrontal cortex (mPFC) and dorsal hippocampus. The decision process in SWM tasks carries a specific electrophysiological signature of a brief, decision-related increase in neuronal communication in the form of an increase in the coherence of neuronal theta oscillations (4-12 Hz) between the mPFC and dorsal hippocampus, a finding we replicated here during spontaneous exploration of a plus maze in freely moving mice. We further evaluated …
Potential Interactions Between Cerebellar Dysfunction And Sleep Disturbances In Dystonia, Luis E Salazar Leon, Roy V Sillitoe
Potential Interactions Between Cerebellar Dysfunction And Sleep Disturbances In Dystonia, Luis E Salazar Leon, Roy V Sillitoe
Duncan NRI Faculty and Staff Publications
Dystonia is the third most common movement disorder. It causes debilitating twisting postures that are accompanied by repetitive and sometimes intermittent co- or over-contractions of agonist and antagonist muscles. Historically diagnosed as a basal ganglia disorder, dystonia is increasingly considered a network disorder involving various brain regions including the cerebellum. In certain etiologies of dystonia, aberrant motor activity is generated in the cerebellum and the abnormal signals then propagate through a "dystonia circuit" that includes the thalamus, basal ganglia, and cerebral cortex. Importantly, it has been reported that non-motor defects can accompany the motor symptoms; while their severity is not …
Identifying Phenotypic Expansions For Congenital Diaphragmatic Hernia Plus (Cdh+) Using Decipher Data, Amy Hardcastle, Aliska M Berry, Ian M Campbell, Xiaonan Zhao, Pengfei Liu, Amanda E Gerard, Jill A Rosenfeld, Saumya D Sisoudiya, Andres Hernandez-Garcia, Sara Loddo, Silvia Di Tommaso, Antonio Novelli, Maria L Dentici, Rossella Capolino, Maria C Digilio, Ludovico Graziani, Cecilie F Rustad, Katherine Neas, Giovanni B Ferrero, Alfredo Brusco, Eleonora Di Gregorio, Diana Wellesley, Claire Beneteau, Madeleine Joubert, Kris Van Den Bogaert, Anneleen Boogaerts, Dominic J Mcmullan, John Dean, Maria G Giuffrida, Laura Bernardini, Vinod Varghese, Nora L Shannon, Rachel E Harrison, Wayne W K Lam, Shane Mckee, Peter D Turnpenny, Trevor Cole, Jenny Morton, Jacqueline Eason, Marilyn C Jones, Rebecca Hall, Michael Wright, Karen Horridge, Chad A Shaw, Wendy K Chung, Daryl A Scott
Identifying Phenotypic Expansions For Congenital Diaphragmatic Hernia Plus (Cdh+) Using Decipher Data, Amy Hardcastle, Aliska M Berry, Ian M Campbell, Xiaonan Zhao, Pengfei Liu, Amanda E Gerard, Jill A Rosenfeld, Saumya D Sisoudiya, Andres Hernandez-Garcia, Sara Loddo, Silvia Di Tommaso, Antonio Novelli, Maria L Dentici, Rossella Capolino, Maria C Digilio, Ludovico Graziani, Cecilie F Rustad, Katherine Neas, Giovanni B Ferrero, Alfredo Brusco, Eleonora Di Gregorio, Diana Wellesley, Claire Beneteau, Madeleine Joubert, Kris Van Den Bogaert, Anneleen Boogaerts, Dominic J Mcmullan, John Dean, Maria G Giuffrida, Laura Bernardini, Vinod Varghese, Nora L Shannon, Rachel E Harrison, Wayne W K Lam, Shane Mckee, Peter D Turnpenny, Trevor Cole, Jenny Morton, Jacqueline Eason, Marilyn C Jones, Rebecca Hall, Michael Wright, Karen Horridge, Chad A Shaw, Wendy K Chung, Daryl A Scott
Duncan NRI Faculty and Staff Publications
Congenital diaphragmatic hernia (CDH) can occur in isolation or in conjunction with other birth defects (CDH+). A molecular etiology can only be identified in a subset of CDH cases. This is due, in part, to an incomplete understanding of the genes that contribute to diaphragm development. Here, we used clinical and molecular data from 36 individuals with CDH+ who are cataloged in the DECIPHER database to identify genes that may play a role in diaphragm development and to discover new phenotypic expansions. Among this group, we identified individuals who carried putatively deleterious sequence or copy number variants affecting CREBBP, SMARCA4, …
Sex-Specific Epigenetic Development In The Mouse Hypothalamic Arcuate Nucleus Pinpoints Human Genomic Regions Associated With Body Mass Index, Harry Mackay, Chathura J Gunasekara, Kit-Yi Yam, Dollada Srisai, Hari Krishna Yalamanchili, Yumei Li, Rui Chen, Cristian Coarfa, Robert A Waterland
Sex-Specific Epigenetic Development In The Mouse Hypothalamic Arcuate Nucleus Pinpoints Human Genomic Regions Associated With Body Mass Index, Harry Mackay, Chathura J Gunasekara, Kit-Yi Yam, Dollada Srisai, Hari Krishna Yalamanchili, Yumei Li, Rui Chen, Cristian Coarfa, Robert A Waterland
Duncan NRI Faculty and Staff Publications
Recent genome-wide association studies corroborate classical research on developmental programming indicating that obesity is primarily a neurodevelopmental disease strongly influenced by nutrition during critical ontogenic windows. Epigenetic mechanisms regulate neurodevelopment; however, little is known about their role in establishing and maintaining the brain's energy balance circuitry. We generated neuron and glia methylomes and transcriptomes from male and female mouse hypothalamic arcuate nucleus, a key site for energy balance regulation, at time points spanning the closure of an established critical window for developmental programming of obesity risk. We find that postnatal epigenetic maturation is markedly cell type and sex specific and …
De Novo Variants In Emc1 Lead To Neurodevelopmental Delay And Cerebellar Degeneration And Affect Glial Function In Drosophila, Hyung-Lok Chung, Patrick Rump, Di Lu, Megan R Glassford, Jung-Wan Mok, Jawid Fatih, Adily Basal, Paul C Marcogliese, Oguz Kanca, Michele Rapp, Johanna M Fock, Erik-Jan Kamsteeg, James R Lupski, Austin Larson, Mark C Haninbal, Hugo Bellen, Tamar Harel
De Novo Variants In Emc1 Lead To Neurodevelopmental Delay And Cerebellar Degeneration And Affect Glial Function In Drosophila, Hyung-Lok Chung, Patrick Rump, Di Lu, Megan R Glassford, Jung-Wan Mok, Jawid Fatih, Adily Basal, Paul C Marcogliese, Oguz Kanca, Michele Rapp, Johanna M Fock, Erik-Jan Kamsteeg, James R Lupski, Austin Larson, Mark C Haninbal, Hugo Bellen, Tamar Harel
Duncan NRI Faculty and Staff Publications
Background: The endoplasmic reticulum (ER)-membrane protein complex (EMC) is a multi-protein transmembrane complex composed of 10 subunits that functions as a membrane-protein chaperone. Variants in EMC1 lead to neurodevelopmental delay and cerebellar degeneration. Multiple families with biallelic variants have been published, yet to date, only a single report of a monoallelic variant has been described, and functional evidence is sparse.
Methods: Exome sequencing was used to investigate the genetic cause underlying severe developmental delay in three unrelated children. EMC1 variants were modeled in Drosophila, using loss-of-function (LoF) and overexpression studies. Glial-specific and neuronal-specific assays were used to determine whether the …
Analysis Of The Efficacy Of Autologous Peripheral Blood Stem Cell Transplantation In High-Risk Neuroblastoma, Jin Yan, Li Jie, Yang Jiaxing, Cao Yanna, Li Zhanglin, Li Zhongyuan, Wang Daowei, Zhao Guangzong, Zhong Benfu, Yan Jie, Zhao Qiang
Analysis Of The Efficacy Of Autologous Peripheral Blood Stem Cell Transplantation In High-Risk Neuroblastoma, Jin Yan, Li Jie, Yang Jiaxing, Cao Yanna, Li Zhanglin, Li Zhongyuan, Wang Daowei, Zhao Guangzong, Zhong Benfu, Yan Jie, Zhao Qiang
Faculty, Staff and Student Publications
Objective: This study aimed to analyze the efficacy of autologous peripheral blood stem cell transplantation for high-risk neuroblastoma in China.
Methods: The data of 90 high-risk neuroblastoma patients treated with the CCCG-NB 2015 regimen were reviewed. The baseline clinicopathological characteristics and prognosis were analyzed and compared. In addition, the prognoses of tandem autologous stem cell transplantation and single autologous stem cell transplantation groups were compared.
Results: The results of survival analysis showed that autologous peripheral blood stem cell transplantation based on this pretreatment regimen significantly improved the prognosis of children in the high-risk group. The 3-year event-free survival (EFS) and …
The Complex Relationship Between Integrins And Oncolytic Herpes Simplex Virus 1 In High-Grade Glioma Therapeutics, Kimberly Ann Rivera-Caraballo, Mitra Nair, Tae Jin Lee, Balveen Kaur, Ji Young Yoo
The Complex Relationship Between Integrins And Oncolytic Herpes Simplex Virus 1 In High-Grade Glioma Therapeutics, Kimberly Ann Rivera-Caraballo, Mitra Nair, Tae Jin Lee, Balveen Kaur, Ji Young Yoo
Faculty, Staff and Student Publications
High-grade gliomas (HGGs) are lethal central nervous system tumors that spread quickly through the brain, making treatment challenging. Integrins are transmembrane receptors that mediate cell-extracellular matrix (ECM) interactions, cellular adhesion, migration, growth, and survival. Their upregulation and inverse correlation in HGG malignancy make targeting integrins a viable therapeutic option. Integrins also play a role in herpes simplex virus 1 (HSV-1) entry. Oncolytic HSV-1 (oHSV) is the most clinically advanced oncolytic virotherapy, showing a superior safety and efficacy profile over standard cancer treatment of solid cancers, including HGG. With the FDA-approval of oHSV for melanoma and the recent conditional approval of …
Transcranial Magnetic Stimulation (Tms) Seeded Tractography Provides Superior Prediction Of Eloquence Compared To Anatomic Seeded Tractography, Matthew Muir, Sarah Prinsloo, Hayley Michener, Arya Shetty, Dhiego Chaves De Almeida Bastos, Jeffrey Traylor, Chibawanye Ene, Sudhakar Tummala, Vinodh A Kumar, Sujit S Prabhu
Transcranial Magnetic Stimulation (Tms) Seeded Tractography Provides Superior Prediction Of Eloquence Compared To Anatomic Seeded Tractography, Matthew Muir, Sarah Prinsloo, Hayley Michener, Arya Shetty, Dhiego Chaves De Almeida Bastos, Jeffrey Traylor, Chibawanye Ene, Sudhakar Tummala, Vinodh A Kumar, Sujit S Prabhu
Faculty, Staff and Student Publications
BACKGROUND: For patients with brain tumors, maximizing the extent of resection while minimizing postoperative neurological morbidity requires accurate preoperative identification of eloquent structures. Recent studies have provided evidence that anatomy may not always predict eloquence. In this study, we directly compare transcranial magnetic stimulation (TMS) data combined with tractography to traditional anatomic grading criteria for predicting permanent deficits in patients with motor eloquent gliomas.
METHODS: We selected a cohort of 42 glioma patients with perirolandic tumors who underwent preoperative TMS mapping with subsequent resection and intraoperative mapping. We collected clinical outcome data from their chart with the primary outcome being …
Identification Of Risk Genes For Alzheimer’S Disease By Gene Embedding, Yashwanth Lagisetty, Thomas Bourquard, Ismael Al-Ramahi, Carl Grant Mangleburg, Samantha Mota, Shirin Soleimani, Joshua M Shulman, Juan Botas, Kwanghyuk Lee, Olivier Lichtarge
Identification Of Risk Genes For Alzheimer’S Disease By Gene Embedding, Yashwanth Lagisetty, Thomas Bourquard, Ismael Al-Ramahi, Carl Grant Mangleburg, Samantha Mota, Shirin Soleimani, Joshua M Shulman, Juan Botas, Kwanghyuk Lee, Olivier Lichtarge
Duncan NRI Faculty and Staff Publications
Most disease-gene association methods do not account for gene-gene interactions, even though these play a crucial role in complex, polygenic diseases like Alzheimer’s disease (AD). To discover new genes whose interactions may contribute to pathology, we introduce GeneEMBED. This approach compares the functional perturbations induced in gene interaction network neighborhoods by coding variants from disease versus healthy subjects. In two independent AD cohorts of 5,169 exomes and 969 genomes, GeneEMBED identified novel candidates. These genes were differentially expressed in post mortem AD brains and modulated neurological phenotypes in mice. Four that were differentially overexpressed and modified neurodegeneration in vivo are …
Fighting For Recovery On Multiple Fronts: The Past, Present, And Future Of Clinical Trials For Spinal Cord Injury, Valerie A Dietz, Nolan Roberts, Katelyn Knox, Sherilynne Moore, Michael Pitonak, Chris Barr, Jesus Centeno, Scott Leininger, Kent C New, Peter Nowell, Matthew Rodreick, Cedric G Geoffroy, Argyrios Stampas, Jennifer N Dulin
Fighting For Recovery On Multiple Fronts: The Past, Present, And Future Of Clinical Trials For Spinal Cord Injury, Valerie A Dietz, Nolan Roberts, Katelyn Knox, Sherilynne Moore, Michael Pitonak, Chris Barr, Jesus Centeno, Scott Leininger, Kent C New, Peter Nowell, Matthew Rodreick, Cedric G Geoffroy, Argyrios Stampas, Jennifer N Dulin
Faculty, Staff and Student Publications
Through many decades of preclinical research, great progress has been achieved in understanding the complex nature of spinal cord injury (SCI). Preclinical research efforts have guided and shaped clinical trials, which are growing in number by the year. Currently, 1,149 clinical trials focused on improving outcomes after SCI are registered in the U.S. National Library of Medicine at ClinicalTrials.gov. We conducted a systematic analysis of these SCI clinical trials, using publicly accessible data downloaded from ClinicalTrials.gov. After extracting all available data for these trials, we categorized each trial according to the types of interventions being tested and the types of …
Why Study Mechanisms Of Brain Stimulation Therapies? To Modulate The Right Neurons, In The Right Way, At The Right Time, Matthew J Mcginley, Steven T Lee
Why Study Mechanisms Of Brain Stimulation Therapies? To Modulate The Right Neurons, In The Right Way, At The Right Time, Matthew J Mcginley, Steven T Lee
Duncan NRI Faculty and Staff Publications
Clinical applications of vagus nerve stimulation (VNS) are burgeoning, but mechanistic work lags behind. In this issue of Neuron, Bowles and colleagues show that VNS timed with positive reinforcement improves motor learning and cortical function by a cholinergic mechanism.
The Tfeb-Tgif1 Axis Regulates Emt In Mouse Epicardial Cells, Elena Astanina, Gabriella Doronzo, Davide Corà, Francesco Neri, Salvatore Oliviero, Tullio Genova, Federico Mussano, Emanuele Middonti, Edoardo Vallariello, Chiara Cencioni, Donatella Valdembri, Guido Serini, Federica Limana, Eleonora Foglio, Andrea Ballabio, Federico Bussolino
The Tfeb-Tgif1 Axis Regulates Emt In Mouse Epicardial Cells, Elena Astanina, Gabriella Doronzo, Davide Corà, Francesco Neri, Salvatore Oliviero, Tullio Genova, Federico Mussano, Emanuele Middonti, Edoardo Vallariello, Chiara Cencioni, Donatella Valdembri, Guido Serini, Federica Limana, Eleonora Foglio, Andrea Ballabio, Federico Bussolino
Duncan NRI Faculty and Staff Publications
Epithelial-mesenchymal transition (EMT) is a complex and pivotal process involved in organogenesis and is related to several pathological processes, including cancer and fibrosis. During heart development, EMT mediates the conversion of epicardial cells into vascular smooth muscle cells and cardiac interstitial fibroblasts. Here, we show that the oncogenic transcription factor EB (TFEB) is a key regulator of EMT in epicardial cells and that its genetic overexpression in mouse epicardium is lethal due to heart defects linked to impaired EMT. TFEB specifically orchestrates the EMT-promoting function of transforming growth factor (TGF) β, and this effect results from activated transcription of thymine-guanine-interacting …