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Articles 31 - 60 of 71
Full-Text Articles in Neurosciences
Strategic Stabilization Of Arousal Boosts Sustained Attention, Jan Willem De Gee, Zakir Mridha, Marisa Hudson, Yanchen Shi, Hannah Ramsaywak, Spencer Smith, Nishad Karediya, Matthew Thompson, Kit Jaspe, Hong Jiang, Wenhao Zhang, Matthew J Mcginley
Strategic Stabilization Of Arousal Boosts Sustained Attention, Jan Willem De Gee, Zakir Mridha, Marisa Hudson, Yanchen Shi, Hannah Ramsaywak, Spencer Smith, Nishad Karediya, Matthew Thompson, Kit Jaspe, Hong Jiang, Wenhao Zhang, Matthew J Mcginley
Duncan NRI Faculty and Staff Publications
Arousal and motivation interact to profoundly influence behavior. For example, experience tells us that we have some capacity to control our arousal when appropriately motivated, such as staying awake while driving a motor vehicle. However, little is known about how arousal and motivation jointly influence decision computations, including if and how animals, such as rodents, adapt their arousal state to their needs. Here, we developed and show results from an auditory, feature-based, sustained-attention task with intermittently shifting task utility. We use pupil size to estimate arousal across a wide range of states and apply tailored signal detection theoretic, hazard function …
A Novel Non-Invasive Murine Model Of Neonatal Hypoxic-Ischemic Encephalopathy Demonstrates Developmental Delay And Motor Deficits With Activation Of Inflammatory Pathways In Monocytes, Elise A Lemanski, Bailey A Collins, Andrew T Ebenezer, Sudha Anilkumar, Victoria A Langdon, Qi Zheng, Shanshan Ding, Karl Royden Franke, Jaclyn M Schwarz, Elizabeth Wright-Jin
A Novel Non-Invasive Murine Model Of Neonatal Hypoxic-Ischemic Encephalopathy Demonstrates Developmental Delay And Motor Deficits With Activation Of Inflammatory Pathways In Monocytes, Elise A Lemanski, Bailey A Collins, Andrew T Ebenezer, Sudha Anilkumar, Victoria A Langdon, Qi Zheng, Shanshan Ding, Karl Royden Franke, Jaclyn M Schwarz, Elizabeth Wright-Jin
Department of Medicine Faculty Papers
Neonatal hypoxic-ischemic encephalopathy (HIE) occurs in 1.5 per 1000 live births, leaving affected children with long-term motor and cognitive deficits. Few animal models of HIE incorporate maternal immune activation (MIA) despite the significant risk MIA poses to HIE incidence and diagnosis. Our non-invasive model of HIE pairs late gestation MIA with postnatal hypoxia. HIE pups exhibited a trend toward smaller overall brain size and delays in the ontogeny of several developmental milestones. In adulthood, HIE animals had reduced strength and gait deficits, but no difference in speed. Surprisingly, HIE animals performed better on the rotarod, an assessment of motor coordination. …
Asymmetric Distribution Of Color-Opponent Response Types Across Mouse Visual Cortex Supports Superior Color Vision In The Sky, Katrin Franke, Chenchen Cai, Kayla Ponder, Jiakun Fu, Sacha Sokoloski, Philipp Berens, Andreas Savas Tolias
Asymmetric Distribution Of Color-Opponent Response Types Across Mouse Visual Cortex Supports Superior Color Vision In The Sky, Katrin Franke, Chenchen Cai, Kayla Ponder, Jiakun Fu, Sacha Sokoloski, Philipp Berens, Andreas Savas Tolias
Faculty, Staff and Students Publications
Color is an important visual feature that informs behavior, and the retinal basis for color vision has been studied across various vertebrate species. While many studies have investigated how color information is processed in visual brain areas of primate species, we have limited understanding of how it is organized beyond the retina in other species, including most dichromatic mammals. In this study, we systematically characterized how color is represented in the primary visual cortex (V1) of mice. Using large-scale neuronal recordings and a luminance and color noise stimulus, we found that more than a third of neurons in mouse V1 …
Distinct Basal Forebrain-Originated Neural Circuits Promote Homoeostatic Feeding And Suppress Hedonic Feeding In Male Mice, Hailan Liu, Jonathan C Bean, Yongxiang Li, Meng Yu, Olivia Z Ginnard, Kristine M Conde, Mengjie Wang, Xing Fang, Hesong Liu, Longlong Tu, Na Yin, Junying Han, Yongjie Yang, Qingchun Tong, Benjamin R Arenkiel, Chunmei Wang, Yang He, Yong Xu
Distinct Basal Forebrain-Originated Neural Circuits Promote Homoeostatic Feeding And Suppress Hedonic Feeding In Male Mice, Hailan Liu, Jonathan C Bean, Yongxiang Li, Meng Yu, Olivia Z Ginnard, Kristine M Conde, Mengjie Wang, Xing Fang, Hesong Liu, Longlong Tu, Na Yin, Junying Han, Yongjie Yang, Qingchun Tong, Benjamin R Arenkiel, Chunmei Wang, Yang He, Yong Xu
Faculty, Staff and Students Publications
Feeding behaviour is influenced by two primary factors: homoeostatic needs driven by hunger and hedonic desires for pleasure even in the absence of hunger. While efficient homoeostatic feeding is vital for survival, excessive hedonic feeding can lead to adverse consequences such as obesity and metabolic dysregulations. However, the neurobiological mechanisms that orchestrate homoeostatic versus hedonic food consumption remain largely unknown. Here we show that GABAergic proenkephalin (Penk) neurons in the diagonal band of Broca (DBB) of male mice respond to food presentation. We further demonstrate that a subset of DBBPenk neurons that project to the paraventricular nucleus of the hypothalamus …
The Cerebellum Modulates Thirst, Ila Mishra, Bing Feng, Bijoya Basu, Amanda M Brown, Linda H Kim, Tao Lin, Mir Abbas Raza, Amelia Moore, Abigayle Hahn, Samantha Bailey, Alaina Sharp, Juan C Bournat, Claire Poulton, Brian Kim, Amos Langsner, Aaron Sathyanesan, Roy V Sillitoe, Yanlin He, Atul R Chopra
The Cerebellum Modulates Thirst, Ila Mishra, Bing Feng, Bijoya Basu, Amanda M Brown, Linda H Kim, Tao Lin, Mir Abbas Raza, Amelia Moore, Abigayle Hahn, Samantha Bailey, Alaina Sharp, Juan C Bournat, Claire Poulton, Brian Kim, Amos Langsner, Aaron Sathyanesan, Roy V Sillitoe, Yanlin He, Atul R Chopra
Duncan NRI Faculty and Staff Publications
The cerebellum, a phylogenetically ancient brain region, has long been considered strictly a motor control structure. Recent studies have implicated the cerebellum in cognition, sensation, emotion and autonomic function, making it an important target for further investigation. Here, we show that cerebellar Purkinje neurons in mice are activated by the hormone asprosin, leading to enhanced thirst, and that optogenetic or chemogenetic activation of Purkinje neurons induces rapid manifestation of water drinking. Purkinje neuron-specific asprosin receptor (Ptprd) deletion results in reduced water intake without affecting food intake and abolishes asprosin's dipsogenic effect. Purkinje neuron-mediated motor learning and coordination were unaffected by …
Tfeb Activation Hallmarks Antigenic Experience Of B Lymphocytes And Directs Germinal Center Fate Decisions, Matthias Münchhalfen, Richard Görg, Michael Haberl, Jens Löber, Jakob Willenbrink, Laura Schwarzt, Charlotte Höltermann, Christian Ickes, Leonard Hammermann, Jan Kus, Björn Chapuy, Andrea Ballabio, Sybille D Reichardt, Alexander Flügel, Niklas Engels, Jürgen Wienands
Tfeb Activation Hallmarks Antigenic Experience Of B Lymphocytes And Directs Germinal Center Fate Decisions, Matthias Münchhalfen, Richard Görg, Michael Haberl, Jens Löber, Jakob Willenbrink, Laura Schwarzt, Charlotte Höltermann, Christian Ickes, Leonard Hammermann, Jan Kus, Björn Chapuy, Andrea Ballabio, Sybille D Reichardt, Alexander Flügel, Niklas Engels, Jürgen Wienands
Duncan NRI Faculty and Staff Publications
Ligation of the B cell antigen receptor (BCR) initiates humoral immunity. However, BCR signaling without appropriate co-stimulation commits B cells to death rather than to differentiation into immune effector cells. How BCR activation depletes potentially autoreactive B cells while simultaneously primes for receiving rescue and differentiation signals from cognate T lymphocytes remains unknown. Here, we use a mass spectrometry-based proteomic approach to identify cytosolic/nuclear shuttling elements and uncover transcription factor EB (TFEB) as a central BCR-controlled rheostat that drives activation-induced apoptosis, and concurrently promotes the reception of co-stimulatory rescue signals by supporting B cell migration and antigen presentation. CD40 co-stimulation …
Proximity Analysis Of Native Proteomes Reveals Phenotypic Modifiers In A Mouse Model Of Autism And Related Neurodevelopmental Conditions, Yudong Gao, Daichi Shonai, Matthew Trn, Jieqing Zhao, Erik J Soderblom, S Alexandra Garcia-Moreno, Charles A Gersbach, William C Wetsel, Geraldine Dawson, Dmitry Velmeshev, Yong-Hui Jiang, Laura G Sloofman, Joseph D Buxbaum, Scott H Soderling
Proximity Analysis Of Native Proteomes Reveals Phenotypic Modifiers In A Mouse Model Of Autism And Related Neurodevelopmental Conditions, Yudong Gao, Daichi Shonai, Matthew Trn, Jieqing Zhao, Erik J Soderblom, S Alexandra Garcia-Moreno, Charles A Gersbach, William C Wetsel, Geraldine Dawson, Dmitry Velmeshev, Yong-Hui Jiang, Laura G Sloofman, Joseph D Buxbaum, Scott H Soderling
Faculty, Staff and Students Publications
One of the main drivers of autism spectrum disorder is risk alleles within hundreds of genes, which may interact within shared but unknown protein complexes. Here we develop a scalable genome-editing-mediated approach to target 14 high-confidence autism risk genes within the mouse brain for proximity-based endogenous proteomics, achieving the identification of high-specificity spatial proteomes. The resulting native proximity proteomes are enriched for human genes dysregulated in the brain of autistic individuals, and reveal proximity interactions between proteins from high-confidence risk genes with those of lower-confidence that may provide new avenues to prioritize genetic risk. Importantly, the datasets are enriched for …
Loss Of Transient Receptor Potential Channel 5 Causes Obesity And Postpartum Depression, Yongxiang Li, Tessa M Cacciottolo, Na Yin, Yang He, Hesong Liu, Hailan Liu, Yuxue Yang, Elana Henning, Julia M Keogh, Katherine Lawler, Edson Mendes De Oliveira, Eugene J Gardner, Katherine A Kentistou, Panayiotis Laouris, Rebecca Bounds, Ken K Ong, John R B Perry, Inês Barroso, Longlong Tu, Jonathan C Bean, Meng Yu, Kristine M Conde, Mengjie Wang, Olivia Ginnard, Xing Fang, Lydia Tong, Junying Han, Tia Darwich, Kevin W Williams, Yongjie Yang, Chunmei Wang, Shelagh Joss, Helen V Firth, Yong Xu, I Sadaf Farooqi
Loss Of Transient Receptor Potential Channel 5 Causes Obesity And Postpartum Depression, Yongxiang Li, Tessa M Cacciottolo, Na Yin, Yang He, Hesong Liu, Hailan Liu, Yuxue Yang, Elana Henning, Julia M Keogh, Katherine Lawler, Edson Mendes De Oliveira, Eugene J Gardner, Katherine A Kentistou, Panayiotis Laouris, Rebecca Bounds, Ken K Ong, John R B Perry, Inês Barroso, Longlong Tu, Jonathan C Bean, Meng Yu, Kristine M Conde, Mengjie Wang, Olivia Ginnard, Xing Fang, Lydia Tong, Junying Han, Tia Darwich, Kevin W Williams, Yongjie Yang, Chunmei Wang, Shelagh Joss, Helen V Firth, Yong Xu, I Sadaf Farooqi
Duncan NRI Faculty and Staff Publications
Hypothalamic neural circuits regulate instinctive behaviors such as food seeking, the fight/flight response, socialization, and maternal care. Here, we identified microdeletions on chromosome Xq23 disrupting the brain-expressed transient receptor potential (TRP) channel 5 (TRPC5). This family of channels detects sensory stimuli and converts them into electrical signals interpretable by the brain. Male TRPC5 deletion carriers exhibited food seeking, obesity, anxiety, and autism, which were recapitulated in knockin male mice harboring a human loss-of-function TRPC5 mutation. Women carrying TRPC5 deletions had severe postpartum depression. As mothers, female knockin mice exhibited anhedonia and depression-like behavior with impaired care of offspring. Deletion of …
A Light-Responsive Neural Circuit Suppresses Feeding, Hailan Liu, Na Qu, Natalia Valdez Gonzalez, Marco A Palma, Huamin Chen, Jiani Xiong, Abhinav Choubey, Yongxiang Li, Xin Li, Meng Yu, Hesong Liu, Longlong Tu, Nan Zhang, Na Yin, Kristine Marie Conde, Mengjie Wang, Jonathan Carter Bean, Junying Han, Nikolas Anthony Scarcelli, Yongjie Yang, Kenji Saito, Huxing Cui, Qingchun Tong, Zheng Sun, Chunmei Wang, Xing Cai, Li Lu, Yang He, Yong Xu
A Light-Responsive Neural Circuit Suppresses Feeding, Hailan Liu, Na Qu, Natalia Valdez Gonzalez, Marco A Palma, Huamin Chen, Jiani Xiong, Abhinav Choubey, Yongxiang Li, Xin Li, Meng Yu, Hesong Liu, Longlong Tu, Nan Zhang, Na Yin, Kristine Marie Conde, Mengjie Wang, Jonathan Carter Bean, Junying Han, Nikolas Anthony Scarcelli, Yongjie Yang, Kenji Saito, Huxing Cui, Qingchun Tong, Zheng Sun, Chunmei Wang, Xing Cai, Li Lu, Yang He, Yong Xu
Faculty, Staff and Students Publications
Light plays an essential role in a variety of physiological processes, including vision, mood, and glucose homeostasis. However, the intricate relationship between light and an animal's feeding behavior has remained elusive. Here, we found that light exposure suppresses food intake, whereas darkness amplifies it in male mice. Interestingly, this phenomenon extends its reach to diurnal male Nile grass rats and healthy humans. We further show that lateral habenula (LHb) neurons in mice respond to light exposure, which in turn activates 5-HT neurons in the dorsal Raphe nucleus (DRN). Activation of the LHb→5-HTDRN circuit in mice blunts darkness-induced hyperphagia, while inhibition …
Tiam1-Mediated Maladaptive Plasticity Underlying Morphine Tolerance And Hyperalgesia, Changqun Yao, Xing Fang, Qin Ru, Wei Li, Jun Li, Zeinab Mehsein, Kimberley F Tolias, Lingyong Li
Tiam1-Mediated Maladaptive Plasticity Underlying Morphine Tolerance And Hyperalgesia, Changqun Yao, Xing Fang, Qin Ru, Wei Li, Jun Li, Zeinab Mehsein, Kimberley F Tolias, Lingyong Li
Faculty, Staff and Students Publications
Opioid pain medications, such as morphine, remain the mainstay for treating severe and chronic pain. Prolonged morphine use, however, triggers analgesic tolerance and hyperalgesia (OIH), which can last for a long period after morphine withdrawal. How morphine induces these detrimental side effects remains unclear. Here, we show that morphine tolerance and OIH are mediated by Tiam1-coordinated synaptic structural and functional plasticity in the spinal nociceptive network. Tiam1 is a Rac1 GTPase guanine nucleotide exchange factor that promotes excitatory synaptogenesis by modulating actin cytoskeletal dynamics. We found that prolonged morphine treatment activated Tiam1 in the spinal dorsal horn and Tiam1 ablation …
Clinicopathologic Dissociation: Robust Lafora Body Accumulation In Malin Ko Mice Without Observable Changes In Home-Cage Behavior, Vaishnav Krishnan, Jun Wu, Arindam Ghosh Mazumder, Jessica L Kamen, Catharina Schirmer, Nandani Adhyapak, John Samuel Bass, Samuel C Lee, Atul Maheshwari, Gemma Molinaro, Jay R Gibson, Kimberly M Huber, Berge A Minassian
Clinicopathologic Dissociation: Robust Lafora Body Accumulation In Malin Ko Mice Without Observable Changes In Home-Cage Behavior, Vaishnav Krishnan, Jun Wu, Arindam Ghosh Mazumder, Jessica L Kamen, Catharina Schirmer, Nandani Adhyapak, John Samuel Bass, Samuel C Lee, Atul Maheshwari, Gemma Molinaro, Jay R Gibson, Kimberly M Huber, Berge A Minassian
Faculty, Staff and Students Publications
Lafora disease (LD) is a syndrome of progressive myoclonic epilepsy and cumulative neurocognitive deterioration caused by recessively inherited genetic lesions of EPM2A (laforin) or NHLRC1 (malin). Neuropsychiatric symptomatology in LD is thought to be directly downstream of neuronal and astrocytic polyglucosan aggregates, termed Lafora bodies (LBs), which faithfully accumulate in an age-dependent manner in all mouse models of LD. In this study, we applied home-cage monitoring to examine the extent of neurobehavioral deterioration in a model of malin-deficient LD as a means to identify robust preclinical endpoints that may guide the selection of novel genetic treatments. At 6 weeks, ∼6-7 …
Dlk-Mapk Signaling Coupled With Dna Damage Promotes Intrinsic Neurotoxicity Associated With Non-Mutated Tau, Sanming Li, Ethan R Roy, Yanyu Wang, Trent Watkins, Wei Cao
Dlk-Mapk Signaling Coupled With Dna Damage Promotes Intrinsic Neurotoxicity Associated With Non-Mutated Tau, Sanming Li, Ethan R Roy, Yanyu Wang, Trent Watkins, Wei Cao
Faculty, Staff and Student Publications
Alzheimer's disease (AD) is the most prevalent form of neurodegeneration. Despite the well-established link between tau aggregation and clinical progression, the major pathways driven by this protein to intrinsically damage neurons are incompletely understood. To model AD-relevant neurodegeneration driven by tau, we overexpressed non-mutated human tau in primary mouse neurons and observed substantial axonal degeneration and cell death, a process accompanied by activated caspase 3. Mechanistically, we detected deformation of the nuclear envelope and increased DNA damage response in tau-expressing neurons. Gene profiling analysis further revealed significant alterations in the mitogen-activated protein kinase (MAPK) pathway; moreover, inhibitors of dual leucine …
Piezo1 Regulates Meningeal Lymphatic Vessel Drainage And Alleviates Excessive Csf Accumulation, Dongwon Choi, Eunkyung Park, Joshua Choi, Renhao Lu, Jin Suh Yu, Chiyoon Kim, Luping Zhao, James Yu, Brandon Nakashima, Sunju Lee, Dhruv Singhal, Joshua P Scallan, Bin Zhou, Chester J Koh, Esak Lee, Young-Kwon Hong
Piezo1 Regulates Meningeal Lymphatic Vessel Drainage And Alleviates Excessive Csf Accumulation, Dongwon Choi, Eunkyung Park, Joshua Choi, Renhao Lu, Jin Suh Yu, Chiyoon Kim, Luping Zhao, James Yu, Brandon Nakashima, Sunju Lee, Dhruv Singhal, Joshua P Scallan, Bin Zhou, Chester J Koh, Esak Lee, Young-Kwon Hong
Faculty, Staff and Students Publications
Piezo1 regulates multiple aspects of the vascular system by converting mechanical signals generated by fluid flow into biological processes. Here, we find that Piezo1 is necessary for the proper development and function of meningeal lymphatic vessels and that activating Piezo1 through transgenic overexpression or treatment with the chemical agonist Yoda1 is sufficient to increase cerebrospinal fluid (CSF) outflow by improving lymphatic absorption and transport. The abnormal accumulation of CSF, which often leads to hydrocephalus and ventriculomegaly, currently lacks effective treatments. We discovered that meningeal lymphatics in mouse models of Down syndrome were incompletely developed and abnormally formed. Selective overexpression of …
Interaction Of High-Fat Diet And Brain Trauma Alters Adipose Tissue Macrophages And Brain Microglia Associated With Exacerbated Cognitive Dysfunction, Rebecca J Henry, James P Barrett, Maria Vaida, Niaz Z Khan, Oleg Makarevich, Rodney M Ritzel, Alan I Faden, Bogdan A Stoica
Interaction Of High-Fat Diet And Brain Trauma Alters Adipose Tissue Macrophages And Brain Microglia Associated With Exacerbated Cognitive Dysfunction, Rebecca J Henry, James P Barrett, Maria Vaida, Niaz Z Khan, Oleg Makarevich, Rodney M Ritzel, Alan I Faden, Bogdan A Stoica
Faculty, Staff and Student Publications
Obesity increases the morbidity and mortality of traumatic brain injury (TBI). Detailed analyses of transcriptomic changes in the brain and adipose tissue were performed to elucidate the interactive effects between high-fat diet-induced obesity (DIO) and TBI. Adult male mice were fed a high-fat diet (HFD) for 12 weeks prior to experimental TBI and continuing after injury. High-throughput transcriptomic analysis using Nanostring panels of the total visceral adipose tissue (VAT) and cellular components in the brain, followed by unsupervised clustering, principal component analysis, and IPA pathway analysis were used to determine shifts in gene expression patterns and molecular pathway activity. Cellular …
Dopamine Release Neuroenergetics In Mouse Striatal Slices, Msema Msackyi, Yuanxin Chen, Wangchen Tsering, Ninghan Wang, Hui Zhang
Dopamine Release Neuroenergetics In Mouse Striatal Slices, Msema Msackyi, Yuanxin Chen, Wangchen Tsering, Ninghan Wang, Hui Zhang
Department of Neuroscience Faculty Papers
Parkinson's disease (PD) is the second most common neurodegenerative disorder. Dopamine (DA) neurons in the substantia nigra pars compacta, which have axonal projections to the dorsal striatum (dSTR), degenerate in PD. In contrast, DA neurons in the ventral tegmental area, with axonal projections to the ventral striatum, including the nucleus accumbens (NAcc) shell, are largely spared. This study aims to uncover the relative contributions of glycolysis and oxidative phosphorylation (OxPhos) to DA release in the striatum. We measured evoked DA release in mouse striatal brain slices using fast-scan cyclic voltammetry applied every two minutes. Blocking OxPhos resulted in a greater …
An Estrogen Receptor Α-Derived Peptide Improves Glucose Homeostasis During Obesity, Wanbao Yang, Wen Jiang, Wang Liao, Hui Yan, Weiqi Ai, Quan Pan, Wesley A Brashear, Yong Xu, Ling He, Shaodong Guo
An Estrogen Receptor Α-Derived Peptide Improves Glucose Homeostasis During Obesity, Wanbao Yang, Wen Jiang, Wang Liao, Hui Yan, Weiqi Ai, Quan Pan, Wesley A Brashear, Yong Xu, Ling He, Shaodong Guo
Faculty, Staff and Students Publications
Estrogen receptor α (ERα) plays a crucial role in regulating glucose and energy homeostasis during type 2 diabetes mellitus (T2DM). However, the underlying mechanisms remain incompletely understood. Here we find a ligand-independent effect of ERα on the regulation of glucose homeostasis. Deficiency of ERα in the liver impairs glucose homeostasis in male, female, and ovariectomized (OVX) female mice. Mechanistic studies reveal that ERα promotes hepatic insulin sensitivity by suppressing ubiquitination-induced IRS1 degradation. The ERα 1-280 domain mediates the ligand-independent effect of ERα on insulin sensitivity. Furthermore, we identify a peptide based on ERα 1-280 domain and find that ERα-derived peptide …
4r-Cembranoid Suppresses Glial Cells Inflammatory Phenotypes And Prevents Hippocampal Neuronal Loss In Lps-Treated Mice, Luis A Rojas-Colón, John B Redell, Pramod K Dash, Pedro E Vegas, Wanda Vélez-Torres
4r-Cembranoid Suppresses Glial Cells Inflammatory Phenotypes And Prevents Hippocampal Neuronal Loss In Lps-Treated Mice, Luis A Rojas-Colón, John B Redell, Pramod K Dash, Pedro E Vegas, Wanda Vélez-Torres
Faculty, Staff and Student Publications
Chronic neuroinflammation has been implicated in neurodegenerative disease pathogenesis. A key feature of neuroinflammation is neuronal loss and glial activation, including microglia and astrocytes. 4R-cembranoid (4R) is a natural compound that inhibits hippocampal pro-inflammatory cytokines and increases memory function in mice. We used the lipopolysaccharide (LPS) injection model to study the effect of 4R on neuronal density and microglia and astrocyte activation. C57BL/6J wild-type mice were injected with LPS (5 mg/kg) and 2 h later received either 4R (6 mg/kg) or vehicle. Mice were sacrificed after 72 h for analysis of brain pathology. Confocal images of brain sections immunostained for …
Longitudinal Single-Cell Transcriptional Dynamics Throughout Neurodegeneration In Sca1, Leon Tejwani, Neal G Ravindra, Changwoo Lee, Yubao Cheng, Billy Nguyen, Kimberly Luttik, Luhan Ni, Shupei Zhang, Logan M Morrison, John Gionco, Yangfei Xiang, Jennifer Yoon, Hannah Ro, Fatema Haidery, Rosalie M Grijalva, Eunwoo Bae, Kristen Kim, Regina T Martuscello, Harry T Orr, Huda Y Zoghbi, Hayley S Mcloughlin, Laura P W Ranum, Vikram G Shakkottai, Phyllis L Faust, Siyuan Wang, David Van Dijk, Janghoo Lim
Longitudinal Single-Cell Transcriptional Dynamics Throughout Neurodegeneration In Sca1, Leon Tejwani, Neal G Ravindra, Changwoo Lee, Yubao Cheng, Billy Nguyen, Kimberly Luttik, Luhan Ni, Shupei Zhang, Logan M Morrison, John Gionco, Yangfei Xiang, Jennifer Yoon, Hannah Ro, Fatema Haidery, Rosalie M Grijalva, Eunwoo Bae, Kristen Kim, Regina T Martuscello, Harry T Orr, Huda Y Zoghbi, Hayley S Mcloughlin, Laura P W Ranum, Vikram G Shakkottai, Phyllis L Faust, Siyuan Wang, David Van Dijk, Janghoo Lim
Duncan NRI Faculty and Staff Publications
Neurodegeneration is a protracted process involving progressive changes in myriad cell types that ultimately results in the death of vulnerable neuronal populations. To dissect how individual cell types within a heterogeneous tissue contribute to the pathogenesis and progression of a neurodegenerative disorder, we performed longitudinal single-nucleus RNA sequencing of mouse and human spinocerebellar ataxia type 1 (SCA1) cerebellar tissue, establishing continuous dynamic trajectories of each cell population. Importantly, we defined the precise transcriptional changes that precede loss of Purkinje cells and, for the first time, identified robust early transcriptional dysregulation in unipolar brush cells and oligodendroglia. Finally, we applied a …
Sarin-Induced Neuroinflammation In Mouse Brain Is Attenuated By The Caspase Inhibitor Q-Vd-Oph, Ekta J. Shah, William C. Grunwald Jr., Teresa L. Garrett, Thomas L. Brown, David R. Cool
Sarin-Induced Neuroinflammation In Mouse Brain Is Attenuated By The Caspase Inhibitor Q-Vd-Oph, Ekta J. Shah, William C. Grunwald Jr., Teresa L. Garrett, Thomas L. Brown, David R. Cool
Neuroscience, Cell Biology & Physiology Faculty Publications
Organophosphates cause hyperstimulation of the central nervous system, leading to extended seizures, convulsions, and brain damage. Sarin is a highly toxic organophosphate nerve agent that has been employed in several terrorist attacks. The prolonged toxicity of sarin may be enhanced by the neuroinflammatory response initiated by the inflammasome, caspase involvement, and generation/release of proinflammatory cytokines. Since neurodegeneration and neuroinflammation are prevalent in sarin-exposed animals, we were interested in evaluating the capacity of quinolyl-valyl-O-methylaspartyl-[-2,6-difluorophenoxy]-methyl ketone (Q-VD-OPh), a pan caspase inhibitor to attenuate neuroinflammation following sarin exposure. To test this hypothesis, sarin-exposed C57BL/6 mice were treated with Q-VD-OPh or negative control quinolyl-valyl-O-methylglutamyl-[-2,6-difluorophenoxy]-methyl …
Novel Murine Glioblastoma Models That Reflect The Immunotherapy Resistance Profile Of A Human Disease, Chao-Hsien Chen, Renee L Chin, Genevieve P Hartley, Spencer T Lea, Brian J Engel, Cheng-En Hsieh, Rishika Prasad, Jason Roszik, Takashi Shingu, Gregory A Lizee, Amy B Heimberger, Steven W Millward, Jian Hu, David S Hong, Michael A Curran
Novel Murine Glioblastoma Models That Reflect The Immunotherapy Resistance Profile Of A Human Disease, Chao-Hsien Chen, Renee L Chin, Genevieve P Hartley, Spencer T Lea, Brian J Engel, Cheng-En Hsieh, Rishika Prasad, Jason Roszik, Takashi Shingu, Gregory A Lizee, Amy B Heimberger, Steven W Millward, Jian Hu, David S Hong, Michael A Curran
Faculty, Staff and Student Publications
BACKGROUND: The lack of murine glioblastoma models that mimic the immunobiology of human disease has impeded basic and translational immunology research. We, therefore, developed murine glioblastoma stem cell lines derived from Nestin-CreERT2QkL/L; Trp53L/L; PtenL/L (QPP) mice driven by clinically relevant genetic mutations common in human glioblastoma. This study aims to determine the immune sensitivities of these QPP lines in immunocompetent hosts and their underlying mechanisms.
METHODS: The differential responsiveness of QPP lines was assessed in the brain and flank in untreated, anti-PD-1, or anti-CTLA-4 treated mice. The impact of genomic landscape on the responsiveness of each tumor was measured through …
The Lysosomal Ragulator Complex Activates Nlrp3 Inflammasome In Vivo Via Hdac6, Kohei Tsujimoto, Tatsunori Jo, Daiki Nagira, Hachiro Konaka, Jeong Hoon Park, Shin-Ichiro Yoshimura, Akinori Ninomiya, Fuminori Sugihara, Takehiro Hirayama, Eri Itotagawa, Yusei Matsuzaki, Yuki Takaichi, Wataru Aoki, Shotaro Saita, Shuhei Nakamura, Andrea Ballabio, Shigeyuki Nada, Masato Okada, Hyota Takamatsu, Atsushi Kumanogoh
The Lysosomal Ragulator Complex Activates Nlrp3 Inflammasome In Vivo Via Hdac6, Kohei Tsujimoto, Tatsunori Jo, Daiki Nagira, Hachiro Konaka, Jeong Hoon Park, Shin-Ichiro Yoshimura, Akinori Ninomiya, Fuminori Sugihara, Takehiro Hirayama, Eri Itotagawa, Yusei Matsuzaki, Yuki Takaichi, Wataru Aoki, Shotaro Saita, Shuhei Nakamura, Andrea Ballabio, Shigeyuki Nada, Masato Okada, Hyota Takamatsu, Atsushi Kumanogoh
Duncan NRI Faculty and Staff Publications
The cellular activation of the NLRP3 inflammasome is spatiotemporally orchestrated by various organelles, but whether lysosomes contribute to this process remains unclear. Here, we show the vital role of the lysosomal membrane-tethered Ragulator complex in NLRP3 inflammasome activation. Deficiency of Lamtor1, an essential component of the Ragulator complex, abrogated NLRP3 inflammasome activation in murine macrophages and human monocytic cells. Myeloid-specific Lamtor1-deficient mice showed marked attenuation of NLRP3-associated inflammatory disease severity, including LPS-induced sepsis, alum-induced peritonitis, and monosodium urate (MSU)-induced arthritis. Mechanistically, Lamtor1 interacted with both NLRP3 and histone deacetylase 6 (HDAC6). HDAC6 enhances the interaction between Lamtor1 and NLRP3, resulting …
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 …
Dysregulated Hypothalamic-Pituitary-Adrenal Axis Is Associated With Increased Inflammation And Worse Outcomes After Ischemic Stroke In Diabetic Mice, Sehee Kim, Eun S Park, Peng R Chen, Eunhee Kim
Dysregulated Hypothalamic-Pituitary-Adrenal Axis Is Associated With Increased Inflammation And Worse Outcomes After Ischemic Stroke In Diabetic Mice, Sehee Kim, Eun S Park, Peng R Chen, Eunhee Kim
Faculty, Staff and Student Publications
Diabetic patients have larger infarcts, worse neurological deficits, and higher mortality rate after an ischemic stroke. Evidence shows that in diabetes, the hypothalamic-pituitary-adrenal (HPA) axis was dysregulated and levels of cortisol increased. Based on the role of the HPA axis in immunity, we hypothesized that diabetes-dysregulated stress response exacerbates stroke outcomes via regulation of inflammation. To test this hypothesis, we assessed the regulation of the HPA axis in diabetic mice before and after stroke and determined its relevance in the regulation of post-stroke injury and inflammation. Diabetes was induced in C57BL/6 mice by feeding a high-fat diet and intraperitoneal injection …
Exogenous Inter-Α Inhibitor Proteins Prevent Cell Death And Improve Ischemic Stroke Outcomes In Mice, Louise D Mccullough, Meaghan Roy-O'Reilly, Yun-Ju Lai, Anthony Patrizz, Yan Xu, Juneyoung Lee, Aleah Holmes, Daniel C Kraushaar, Anjali Chauhan, Lauren H Sansing, Barbara S Stonestreet, Liang Zhu, Julia Kofler, Yow-Pin Lim, Venugopal Reddy Venna
Exogenous Inter-Α Inhibitor Proteins Prevent Cell Death And Improve Ischemic Stroke Outcomes In Mice, Louise D Mccullough, Meaghan Roy-O'Reilly, Yun-Ju Lai, Anthony Patrizz, Yan Xu, Juneyoung Lee, Aleah Holmes, Daniel C Kraushaar, Anjali Chauhan, Lauren H Sansing, Barbara S Stonestreet, Liang Zhu, Julia Kofler, Yow-Pin Lim, Venugopal Reddy Venna
Faculty, Staff and Students Publications
Inter-α inhibitor proteins (IAIPs) are a family of endogenous plasma and extracellular matrix molecules. IAIPs suppress proinflammatory cytokines, limit excess complement activation, and bind extracellular histones to form IAIP-histone complexes, leading to neutralization of histone-associated cytotoxicity in models of sepsis. Many of these detrimental processes also play critical roles in the pathophysiology of ischemic stroke. In this study, we first assessed the clinical relevance of IAIPs in stroke and then tested the therapeutic efficacy of exogenous IAIPs in several experimental stroke models. IAIP levels were reduced in both ischemic stroke patients and in mice subjected to experimental ischemic stroke when …
Ultrafast Two-Photon Imaging Of A High-Gain Voltage Indicator In Awake Behaving Mice, Vincent Villette, Mariya Chavarha, Ivan K Dimov, Jonathan Bradley, Lagnajeet Pradhan, Benjamin Mathieu, Stephen W Evans, Simon Chamberland, Dongqing Shi, Renzhi Yang, Benjamin B Kim, Annick Ayon, Abdelali Jalil, François St-Pierre, Mark J Schnitzer, Guoqiang Bi, Katalin Toth, Jun Ding, Stéphane Dieudonné, Michael Z Lin
Ultrafast Two-Photon Imaging Of A High-Gain Voltage Indicator In Awake Behaving Mice, Vincent Villette, Mariya Chavarha, Ivan K Dimov, Jonathan Bradley, Lagnajeet Pradhan, Benjamin Mathieu, Stephen W Evans, Simon Chamberland, Dongqing Shi, Renzhi Yang, Benjamin B Kim, Annick Ayon, Abdelali Jalil, François St-Pierre, Mark J Schnitzer, Guoqiang Bi, Katalin Toth, Jun Ding, Stéphane Dieudonné, Michael Z Lin
Faculty, Staff and Students Publications
Optical interrogation of voltage in deep brain locations with cellular resolution would be immensely useful for understanding how neuronal circuits process information. Here, we report ASAP3, a genetically encoded voltage indicator with 51% fluorescence modulation by physiological voltages, submillisecond activation kinetics, and full responsivity under two-photon excitation. We also introduce an ultrafast local volume excitation (ULoVE) method for kilohertz-rate two-photon sampling in vivo with increased stability and sensitivity. Combining a soma-targeted ASAP3 variant and ULoVE, we show single-trial tracking of spikes and subthreshold events for minutes in deep locations, with subcellular resolution and with repeated sampling over days. In the …
Evolution Of Cortical Neurogenesis In Amniotes Controlled By Robo Signaling Levels., Adrián Cárdenas, Ana Villalba, Camino De Juan Romero, Esther Picó, Christina Kyrousi, Athanasia C Tzika, Marc Tessier-Lavigne, Le Ma, Micha Drukker, Silvia Cappello, Víctor Borrell
Evolution Of Cortical Neurogenesis In Amniotes Controlled By Robo Signaling Levels., Adrián Cárdenas, Ana Villalba, Camino De Juan Romero, Esther Picó, Christina Kyrousi, Athanasia C Tzika, Marc Tessier-Lavigne, Le Ma, Micha Drukker, Silvia Cappello, Víctor Borrell
Department of Neuroscience Faculty Papers
Cerebral cortex size differs dramatically between reptiles, birds, and mammals, owing to developmental differences in neuron production. In mammals, signaling pathways regulating neurogenesis have been identified, but genetic differences behind their evolution across amniotes remain unknown. We show that direct neurogenesis from radial glia cells, with limited neuron production, dominates the avian, reptilian, and mammalian paleocortex, whereas in the evolutionarily recent mammalian neocortex, most neurogenesis is indirect via basal progenitors. Gain- and loss-of-function experiments in mouse, chick, and snake embryos and in human cerebral organoids demonstrate that high Slit/Robo and low Dll1 signaling, via Jag1 and Jag2, are necessary and …
Intra-Arterial Nitroglycerin As Directed Acute Treatment In Experimental Ischemic Stroke, Michael E. Maniskas, Jill M. Roberts, Rebecca Trueman, Annastazia E. Learoyd, Amanda A. Gorman, Justin F. Fraser, Gregory J. Bix
Intra-Arterial Nitroglycerin As Directed Acute Treatment In Experimental Ischemic Stroke, Michael E. Maniskas, Jill M. Roberts, Rebecca Trueman, Annastazia E. Learoyd, Amanda A. Gorman, Justin F. Fraser, Gregory J. Bix
Neuroscience Faculty Publications
BACKGROUND: Nitroglycerin (also known as glyceryl trinitrate (GTN)), a vasodilator best known for treatment of ischemic heart disease, has also been investigated for its potential therapeutic benefit in ischemic stroke. The completed Efficacy of Nitric Oxide in Stroke trial suggested that GTN has therapeutic benefit with acute (within 6 hours) transdermal systemic sustained release therapy.
OBJECTIVE: To examine an alternative use of GTN as an acute therapy for ischemic stroke following successful recanalization.
METHODS: We administered GTN IA following transient middle cerebral artery occlusion in mice. Because no standard dose of GTN is available following emergent large vessel occlusion, we …
Epigenetic Suppression Of Hippocampal Calbindin-D28k By Δfosb Drives Seizure-Related Cognitive Deficits., Jason C. You, Kavitha Muralidharan, Jin W. Park, Iraklis Petrof, Mark S. Pyfer, Brian F. Corbett, John J. Lafrancois, Yi Zheng, Xiaohong Zhang, Carrie A. Mohila, Daniel Yoshor, Robert A. Rissman, Eric J. Nestler, Helen E. Scharfman, Jeannie Chin
Epigenetic Suppression Of Hippocampal Calbindin-D28k By Δfosb Drives Seizure-Related Cognitive Deficits., Jason C. You, Kavitha Muralidharan, Jin W. Park, Iraklis Petrof, Mark S. Pyfer, Brian F. Corbett, John J. Lafrancois, Yi Zheng, Xiaohong Zhang, Carrie A. Mohila, Daniel Yoshor, Robert A. Rissman, Eric J. Nestler, Helen E. Scharfman, Jeannie Chin
Department of Neuroscience Faculty Papers
The calcium-binding protein calbindin-D28k is critical for hippocampal function and cognition, but its expression is markedly decreased in various neurological disorders associated with epileptiform activity and seizures. In Alzheimer's disease (AD) and epilepsy, both of which are accompanied by recurrent seizures, the severity of cognitive deficits reflects the degree of calbindin reduction in the hippocampal dentate gyrus (DG). However, despite the importance of calbindin in both neuronal physiology and pathology, the regulatory mechanisms that control its expression in the hippocampus are poorly understood. Here we report an epigenetic mechanism through which seizures chronically suppress hippocampal calbindin expression and impair cognition. …
Rabies Screen Reveals Gpe Control Of Cocaine-Triggered Plasticity., Kevin T. Beier, Christina K. Kim, Paul Hoerbelt, Lin Wai Hung, Boris D. Heifets, Katherine E. Deloach, Timothy J. Mosca, Sophie Neuner, Karl Deisseroth, Liqun Luo, Robert C. Malenka
Rabies Screen Reveals Gpe Control Of Cocaine-Triggered Plasticity., Kevin T. Beier, Christina K. Kim, Paul Hoerbelt, Lin Wai Hung, Boris D. Heifets, Katherine E. Deloach, Timothy J. Mosca, Sophie Neuner, Karl Deisseroth, Liqun Luo, Robert C. Malenka
Department of Neuroscience Faculty Papers
Identification of neural circuit changes that contribute to behavioural plasticity has routinely been conducted on candidate circuits that were preselected on the basis of previous results. Here we present an unbiased method for identifying experience-triggered circuit-level changes in neuronal ensembles in mice. Using rabies virus monosynaptic tracing, we mapped cocaine-induced global changes in inputs onto neurons in the ventral tegmental area. Cocaine increased rabies-labelled inputs from the globus pallidus externus (GPe), a basal ganglia nucleus not previously known to participate in behavioural plasticity triggered by drugs of abuse. We demonstrated that cocaine increased GPe neuron activity, which accounted for the …
Neurovascular Astrocyte Degeneration In The Hyperhomocysteinemia Model Of Vascular Cognitive Impairment And Dementia (Vcid), Tiffany L. Sudduth, Erica M. Weekman, Brittani Rae Price, Jennifer L. Gooch, Abigail E. Woolums, Christopher M. Norris, Donna M. Wilcock
Neurovascular Astrocyte Degeneration In The Hyperhomocysteinemia Model Of Vascular Cognitive Impairment And Dementia (Vcid), Tiffany L. Sudduth, Erica M. Weekman, Brittani Rae Price, Jennifer L. Gooch, Abigail E. Woolums, Christopher M. Norris, Donna M. Wilcock
Sanders-Brown Center on Aging Faculty Publications
Vascular cognitive impairment and dementia (VCID) is the second leading cause of dementia behind Alzheimer’s disease (AD) and is a frequent co-morbidity with AD. Despite its prevalence, little is known about the molecular mechanisms underlying the cognitive dysfunction resulting from cerebrovascular disease. Astrocytic end-feet almost completely surround intraparenchymal blood vessels in the brain and express a variety of channels and markers indicative of their specialized functions in the maintenance of ionic and osmotic homeostasis and gliovascular signaling. These functions are mediated by end-foot enrichment of the aquaporin 4 water channel (AQP4), the inward rectifying potassium channel Kir4.1 and the calcium-dependent …