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Articles 1051 - 1080 of 7166
Full-Text Articles in Entire DC Network
Intestinal Epithelial Serotonin As A Novel Target For Treating Disorders Of Gut-Brain Interaction And Mood, Lin Y Hung, Nuno D Alves, Andrew Del Colle, Ardesheer Talati, Sarah A Najjar, Virginie Bouchard, Virginie Gillet, Yan Tong, Zixing Huang, Kirsteen N Browning, Jialiang Hua, Ying Liu, James O Woodruff, Daniel Juarez, Melissa Medina, Jonathan Posner, Raquel Tonello, Nazli Yalcinkaya, Narek Israelyan, Roey Ringel, Letao Yang, Kam W Leong, Mu Yang, Ji Ying Sze, Tor Savidge, Jay Gingrich, Robert J Shulman, Michael D Gershon, Annie Ouellet, Larissa Takser, Mark S Ansorge, Kara Gross Margolis
Intestinal Epithelial Serotonin As A Novel Target For Treating Disorders Of Gut-Brain Interaction And Mood, Lin Y Hung, Nuno D Alves, Andrew Del Colle, Ardesheer Talati, Sarah A Najjar, Virginie Bouchard, Virginie Gillet, Yan Tong, Zixing Huang, Kirsteen N Browning, Jialiang Hua, Ying Liu, James O Woodruff, Daniel Juarez, Melissa Medina, Jonathan Posner, Raquel Tonello, Nazli Yalcinkaya, Narek Israelyan, Roey Ringel, Letao Yang, Kam W Leong, Mu Yang, Ji Ying Sze, Tor Savidge, Jay Gingrich, Robert J Shulman, Michael D Gershon, Annie Ouellet, Larissa Takser, Mark S Ansorge, Kara Gross Margolis
Faculty, Staff and Students Publications
Background & aims: Mood disorders and disorders of gut-brain interaction (DGBI) are highly prevalent, commonly comorbid, and lack fully effective therapies. Although selective serotonin reuptake inhibitors (SSRIs) are first-line pharmacological treatments for these disorders, they may impart adverse effects, including anxiety, anhedonia, dysmotility, and, in children exposed in utero, an increased risk of cognitive, mood, and gastrointestinal disorders. SSRIs act systemically to block the serotonin reuptake transporter and enhance serotonergic signaling in the brain, intestinal epithelium, and enteric neurons. Yet, the compartments that mediate the therapeutic and adverse effects of SSRIs are unknown, as is whether gestational SSRI exposure directly …
Klf4 Enhances Transplantation-Induced Hematopoiesis By Inhibiting Tlrs And Noncanonical Nfκb Signaling At A Steady State, Chun Shik Park, Cory S Bridges, Andrew H Lewis, Taylor J Chen, Saptarsi Shai, Wa Du, Monica Puppi, Barry Zorman, Sumazin Pavel, H Daniel Lacorazza
Klf4 Enhances Transplantation-Induced Hematopoiesis By Inhibiting Tlrs And Noncanonical Nfκb Signaling At A Steady State, Chun Shik Park, Cory S Bridges, Andrew H Lewis, Taylor J Chen, Saptarsi Shai, Wa Du, Monica Puppi, Barry Zorman, Sumazin Pavel, H Daniel Lacorazza
Faculty, Staff and Students Publications
The transcription factor Krüppel-like factor 4 (KLF4) acts as a transcriptional activator and repressor. KLF4 plays a role in various cellular processes, including the dedifferentiation of somatic cells into induced pluripotent stem cells. Although it has been shown to enhance self-renewal in embryonic and leukemia stem cells, its role in adult hematopoietic stem cells (HSCs) remains underexplored. We demonstrate that conditional deletion of the Klf4 gene in hematopoietic cells led to an increased frequency of immunophenotypic HSCs in the bone marrow, along with a normal distribution of lymphoid and myeloid progenitor cells. Noncompetitive bone marrow transplants showed normal engraftment and …
Functional Connectomics Reveals General Wiring Rule In Mouse Visual Cortex, Zhuokun Ding, Paul G Fahey, Stelios Papadopoulos, Eric Y Wang, Brendan Celii, Christos Papadopoulos, Andersen Chang, Alexander B Kunin, Dat Tran, Jiakun Fu, Zhiwei Ding, Saumil Patel, Lydia Ntanavara, Rachel Froebe, Kayla Ponder, Taliah Muhammad, J Alexander Bae, Agnes L Bodor, Derrick Brittain, Joann Buchanan, Daniel J Bumbarger, Manuel A Castro, Erick Cobos, Sven Dorkenwald, Leila Elabbady, Akhilesh Halageri, Zhen Jia, Chris Jordan, Dan Kapner, Nico Kemnitz, Sam Kinn, Kisuk Lee, Kai Li, Ran Lu, Thomas Macrina, Gayathri Mahalingam, Eric Mitchell, Shanka Subhra Mondal, Shang Mu, Barak Nehoran, Sergiy Popovych, Casey M Schneider-Mizell, William Silversmith, Marc Takeno, Russel Torres, Nicholas L Turner, William Wong, Jingpeng Wu, Wenjing Yin, Szi-Chieh Yu, Dimitri Yatsenko, Emmanouil Froudarakis, Fabian Sinz, Krešimir Josić, Robert Rosenbaum, H Sebastian Seung, Forrest Collman, Nuno Maçarico Da Costa, R Clay Reid, Edgar Y Walker, Xaq Pitkow, Jacob Reimer, Andreas S Tolias
Functional Connectomics Reveals General Wiring Rule In Mouse Visual Cortex, Zhuokun Ding, Paul G Fahey, Stelios Papadopoulos, Eric Y Wang, Brendan Celii, Christos Papadopoulos, Andersen Chang, Alexander B Kunin, Dat Tran, Jiakun Fu, Zhiwei Ding, Saumil Patel, Lydia Ntanavara, Rachel Froebe, Kayla Ponder, Taliah Muhammad, J Alexander Bae, Agnes L Bodor, Derrick Brittain, Joann Buchanan, Daniel J Bumbarger, Manuel A Castro, Erick Cobos, Sven Dorkenwald, Leila Elabbady, Akhilesh Halageri, Zhen Jia, Chris Jordan, Dan Kapner, Nico Kemnitz, Sam Kinn, Kisuk Lee, Kai Li, Ran Lu, Thomas Macrina, Gayathri Mahalingam, Eric Mitchell, Shanka Subhra Mondal, Shang Mu, Barak Nehoran, Sergiy Popovych, Casey M Schneider-Mizell, William Silversmith, Marc Takeno, Russel Torres, Nicholas L Turner, William Wong, Jingpeng Wu, Wenjing Yin, Szi-Chieh Yu, Dimitri Yatsenko, Emmanouil Froudarakis, Fabian Sinz, Krešimir Josić, Robert Rosenbaum, H Sebastian Seung, Forrest Collman, Nuno Maçarico Da Costa, R Clay Reid, Edgar Y Walker, Xaq Pitkow, Jacob Reimer, Andreas S Tolias
Faculty, Staff and Students Publications
Understanding the relationship between circuit connectivity and function is crucial for uncovering how the brain computes. In mouse primary visual cortex, excitatory neurons with similar response properties are more likely to be synaptically connected1–8; however, broader connectivity rules remain unknown. Here we leverage the millimetre-scale MICrONS dataset to analyse synaptic connectivity and functional properties of neurons across cortical layers and areas. Our results reveal that neurons with similar response properties are preferentially connected within and across layers and areas—including feedback connections—supporting the universality of ‘like-to-like’ connectivity across the visual hierarchy. Using a validated digital twin model, …
Endothelial Micu1 Protects Against Vascular Inflammation And Atherosclerosis By Inhibiting Mitochondrial Calcium Uptake, Lu Sun, Ruixue Leng, Monan Liu, Meiming Su, Qingze He, Zhidan Zhang, Zhenghong Liu, Zhihua Wang, Hui Jiang, Li Wang, Shuai Guo, Yiming Xu, Yuqing Huo, Clint L Miller, Maciej Banach, Yu Huang, Paul C Evans, Jaroslav Pelisek, Giovanni G Camici, Bradford C Berk, Stefan Offermanns, Junbo Ge, Suowen Xu, Jianping Weng
Endothelial Micu1 Protects Against Vascular Inflammation And Atherosclerosis By Inhibiting Mitochondrial Calcium Uptake, Lu Sun, Ruixue Leng, Monan Liu, Meiming Su, Qingze He, Zhidan Zhang, Zhenghong Liu, Zhihua Wang, Hui Jiang, Li Wang, Shuai Guo, Yiming Xu, Yuqing Huo, Clint L Miller, Maciej Banach, Yu Huang, Paul C Evans, Jaroslav Pelisek, Giovanni G Camici, Bradford C Berk, Stefan Offermanns, Junbo Ge, Suowen Xu, Jianping Weng
Faculty, Staff and Students Publications
Mitochondrial dysfunction fuels vascular inflammation and atherosclerosis. Mitochondrial calcium uptake 1 (MICU1) maintains mitochondrial Ca2+ homeostasis. However, the role of MICU1 in vascular inflammation and atherosclerosis remains unknown. Here, we report that endothelial MICU1 prevents vascular inflammation and atherosclerosis by maintaining mitochondrial homeostasis. We observed that vascular inflammation was aggravated in endothelial cell–specific Micu1 knockout mice (Micu1ECKO) and attenuated in endothelial cell–specific Micu1 transgenic mice (Micu1ECTg). Furthermore, hypercholesterolemic Micu1ECKO mice also showed accelerated development of atherosclerosis, while Micu1ECTg mice were protected against atherosclerosis. Mechanistically, MICU1 depletion increased mitochondrial Ca2+ influx, thereby decreasing the expression …
Foraging Animals Use Dynamic Bayesian Updating To Model Meta-Uncertainty In Environment Representations, James Webb, Paul Steffan, Benjamin Y Hayden, Daeyeol Lee, Caleb Kemere, Matthew Mcginley
Foraging Animals Use Dynamic Bayesian Updating To Model Meta-Uncertainty In Environment Representations, James Webb, Paul Steffan, Benjamin Y Hayden, Daeyeol Lee, Caleb Kemere, Matthew Mcginley
Faculty, Staff and Students Publications
Foraging theory predicts animal behavior in many contexts. In patch-based foraging behaviors, the marginal value theorem (MVT) gives the optimal strategy for deterministic environments whose parameters are fully known to the forager. In natural settings, environmental parameters exhibit variability and are only partially known to the animal based on its experience, creating uncertainty. Models of uncertainty in foraging are well established. However, natural environments also exhibit unpredicted changes in their statistics. As a result, animals must ascertain whether the currently observed quality of the environment is consistent with their internal models, or whether something has changed, creating meta-uncertainty. Behavioral strategies …
Bcl-Xl Protects Ass1-Deficient Cancers From Arginine Starvation-Induced Apoptosis, Prashanta Kumar Panda, Ana Carolina Paschoalini Mafra, Alliny C S Bastos, Li Cao, Maria Serra Bonet, Caitlyn B Brashears, Ethan Yang Chen, Heather M Benedict-Hamilton, William Ehrhardt, John Bomalaski, Carina Dehner, Leonard C Rogers, Toshinao Oyama, Brian A Van Tine
Bcl-Xl Protects Ass1-Deficient Cancers From Arginine Starvation-Induced Apoptosis, Prashanta Kumar Panda, Ana Carolina Paschoalini Mafra, Alliny C S Bastos, Li Cao, Maria Serra Bonet, Caitlyn B Brashears, Ethan Yang Chen, Heather M Benedict-Hamilton, William Ehrhardt, John Bomalaski, Carina Dehner, Leonard C Rogers, Toshinao Oyama, Brian A Van Tine
2020-Current year OA Pubs
PURPOSE: Argininosuccinate synthetase 1 (ASS1) silencing in carcinomas and sarcomas leads to a dependence on extracellular arginine for survival. Arginine deprivation therapies, such as PEGylated arginine deiminase (ADI-PEG20), have shown limited effectiveness, which may be due to underlying mechanisms that inhibit apoptosis.
EXPERIMENTAL DESIGN: The effects of ADI-PEG20 on cell-cycle regulation, apoptosis, and BCL-XL-mediated survival pathways in ASS1-deficient cancer cells were determined. The mechanism of cell death protection was determined by assessing caspase and PARP cleavage, CDK2 activity, MCL1 expression, and the interactions among BCL-XL, BAX, and BAK. In vitro synergy was determined, and in vivo efficacy was modeled.
RESULTS: …
Mapping The Transcriptional And Epigenetic Landscape Of Organotypic Endothelial Diversity In The Developing And Adult Mouse, Manuel E Cantu Gutierrez, Matthew C Hill, Gabrielle E Largoza, William B Gillespie, James F Martin, Joshua D Wythe
Mapping The Transcriptional And Epigenetic Landscape Of Organotypic Endothelial Diversity In The Developing And Adult Mouse, Manuel E Cantu Gutierrez, Matthew C Hill, Gabrielle E Largoza, William B Gillespie, James F Martin, Joshua D Wythe
Faculty, Staff and Students Publications
The vascular endothelium features unique molecular and functional properties across different vessel types, such as between arteries, veins and capillaries, as well as between different organs, such as the leaky sinusoidal endothelium of the liver versus the impermeable vessels of the brain. However, the transcriptional networks governing endothelial organ specialization remain unclear. Here we profile the accessible chromatin and transcriptional landscapes of the endothelium from the mouse liver, lung, heart, kidney, brain and retina, across developmental time, to identify potential transcriptional regulators of endothelial heterogeneity. We then determine which of these putative regulators are conserved in human brain endothelial cells, …
Atrial Cardiomyocyte-Restricted Cleavage Of Gasdermin D Promotes Atrial Arrhythmogenesis, Yue Yuan, Pascal Martsch, Xiaohui Chen, Enrique Martinez, Luge Li, Jia Song, Theresa Poppenborg, Florian Bruns, Jong Hwan Kim, Markus Kamler, James F Martin, Issam Abu-Taha, Dobromir Dobrev, Na Li
Atrial Cardiomyocyte-Restricted Cleavage Of Gasdermin D Promotes Atrial Arrhythmogenesis, Yue Yuan, Pascal Martsch, Xiaohui Chen, Enrique Martinez, Luge Li, Jia Song, Theresa Poppenborg, Florian Bruns, Jong Hwan Kim, Markus Kamler, James F Martin, Issam Abu-Taha, Dobromir Dobrev, Na Li
Faculty, Staff and Students Publications
Background and aims: Enhanced inflammatory signalling causally contributes to atrial fibrillation (AF) development. Gasdermin D (GSDMD) is an important downstream effector of several inflammasome pathways. However, the role of GSDMD, particularly the cleaved N-terminal (NT)-GSDMD, in non-immune cells remains elusive. This study aimed to elucidate the function of NT-GSDMD in atrial cardiomyocytes (ACMs) and determine its contribution to atrial arrhythmogenesis.
Methods: Human atrial appendages were used to assess the protein levels and localization. A modified adeno-associated virus 9 was employed to establish ACM-restricted overexpression of NT-GSDMD in mice.
Results: The cleavage of GSDMD was enhanced in ACMs of AF patients. …
Suppression Of Hypothalamic Oestrogenic Signal Sustains Hyperprolactinemia And Metabolic Adaptation In Lactating Mice, Meng Yu, Bing Feng, Jonathan C Bean, Qianru Zhao, Yongjie Yang, Hailan Liu, Yongxiang Li, Benjamin P Eappen, Hesong Liu, Longlong Tu, Kristine M Conde, Mengjie Wang, Xi Chen, Na Yin, Darah Ave Threat, Nathan Xu, Junying Han, Peiyu Gao, Yi Zhu, Darryl L Hadsell, Yang He, Pingwen Xu, Yanlin He, Chunmei Wang
Suppression Of Hypothalamic Oestrogenic Signal Sustains Hyperprolactinemia And Metabolic Adaptation In Lactating Mice, Meng Yu, Bing Feng, Jonathan C Bean, Qianru Zhao, Yongjie Yang, Hailan Liu, Yongxiang Li, Benjamin P Eappen, Hesong Liu, Longlong Tu, Kristine M Conde, Mengjie Wang, Xi Chen, Na Yin, Darah Ave Threat, Nathan Xu, Junying Han, Peiyu Gao, Yi Zhu, Darryl L Hadsell, Yang He, Pingwen Xu, Yanlin He, Chunmei Wang
Faculty, Staff and Students Publications
17β-oestradiol (E2) inhibits overeating and promotes brown adipose tissue (BAT) thermogenesis, whereas prolactin (PRL) does the opposite. During lactation, the simultaneous decline in E2 and surge in PRL contribute to maternal metabolic adaptations, including hyperphagia and suppressed BAT thermogenesis. However, the underlying neuroendocrine mechanisms remain unclear. Here, we find that oestrogen receptor alpha (ERα)-expressing neurons in the medial basal hypothalamus (MBH), specifically the arcuate nucleus of the hypothalamus and the ventrolateral subdivision of the ventromedial hypothalamus (vlVMH), are suppressed during lactation. Deletion of ERα from MBH neurons in virgin female mice induces metabolic phenotypes characteristic of lactation, including hyperprolactinemia, hyperphagia …
In Vivo Manipulation Of Human Gut Bacteroides Fitness By Abiotic Oligosaccharides, Darryl A Wesener, Zachary W Beller, Megan F Hill, Han Yuan, David B Belanger, Cheryl Frankfater, Nicolas Terrapon, Bernard Henrissat, Dmitry A Rodionov, Semen A Leyn, Andrei Osterman, Johan E T Van Hylckama Vlieg, Jeffrey I Gordon
In Vivo Manipulation Of Human Gut Bacteroides Fitness By Abiotic Oligosaccharides, Darryl A Wesener, Zachary W Beller, Megan F Hill, Han Yuan, David B Belanger, Cheryl Frankfater, Nicolas Terrapon, Bernard Henrissat, Dmitry A Rodionov, Semen A Leyn, Andrei Osterman, Johan E T Van Hylckama Vlieg, Jeffrey I Gordon
2020-Current year OA Pubs
Synthetic glycans (SGs) containing glycosidic linkages and structures not identified in nature offer a means for deliberately altering microbial community properties. Here pools of SG oligosaccharides were generated via polymerization of monosaccharides and screened for their ability to increase saccharolytic Bacteroides in ex vivo cultures of human fecal samples. A lead SG preparation was orally administered to gnotobiotic mice harboring a consortium of 56 cultured, phylogenetically diverse human gut bacteria and fed a Western diet. The abundances of 3 of 15 Bacteroides strains increased, most prominently B. intestinalis. Underlying mechanisms were characterized by analyzing in vivo expression of the carbohydrate …
Ibuprofen, Flurbiprofen Or Naproxen Sodium Minimally Influences Musculoskeletal Adaptations To Treadmill Exercise In Rats, Brandon Roberts, Alyssa Geddis, Alexandra Ciuciu, Marinaliz Reynoso, Nikhil Mehta, Alyssa Varanoske, Alyssa Kelley, Maximus Leiss, Alexander Kolb, Julie Hughes, Marshall Naimo, Ryan Tomlinson, Jeffery Staab
Ibuprofen, Flurbiprofen Or Naproxen Sodium Minimally Influences Musculoskeletal Adaptations To Treadmill Exercise In Rats, Brandon Roberts, Alyssa Geddis, Alexandra Ciuciu, Marinaliz Reynoso, Nikhil Mehta, Alyssa Varanoske, Alyssa Kelley, Maximus Leiss, Alexander Kolb, Julie Hughes, Marshall Naimo, Ryan Tomlinson, Jeffery Staab
Department of Orthopaedic Surgery Faculty Papers
BACKGROUND: Non-steroidal anti-inflammatory drugs (NSAIDs) may influence musculoskeletal health. The purpose of this study was to compare the effects of three different NSAIDS: naproxen sodium, ibuprofen, flurbiprofen or a placebo on musculoskeletal adaptations in rodents with or without 6 weeks of aerobic exercise.
METHODS: Nine-week-old male Wistar rats (n = 80) were randomized to either exercise (EX) or no-exercise control (CON) conditions and treated with naproxen, ibuprofen (IBU), flurbiprofen (FLU) or placebo (PLA). For exercise, rats ran 5 days per week for 6 weeks at a 5% incline on a motorized treadmill for 30 min. Three-point bending (3 PB) and …
Acute Trem2 Inhibition Depletes Mafb-High Microglia And Hinders Remyelination, Jinchao Hou, Roberta Magliozzi, Yun Chen, Junjie Wu, John Wulf Ii, Gregory Strout, Xiangming Fang, Marco Colonna
Acute Trem2 Inhibition Depletes Mafb-High Microglia And Hinders Remyelination, Jinchao Hou, Roberta Magliozzi, Yun Chen, Junjie Wu, John Wulf Ii, Gregory Strout, Xiangming Fang, Marco Colonna
2020-Current year OA Pubs
We investigated the role of Triggering Receptor Expressed on Myeloid cells 2 (TREM2) in myelin regeneration in the brain. TREM2 is a receptor that activates microglia, which are crucial for clearing myelin debris and promoting remyelination. Previous studies in a mouse model of demyelination induced by the copper-chelating agent Cuprizone (CPZ) have shown that stimulation of TREM2 with a monoclonal antibody reduces demyelination, while deleting the
Dynein Light Chains 1 And 2 Are Auxiliary Proteins Of Ph-Sensitive Kir4.1 Channels, Sun-Joo Lee, Jian Gao, Ellen Thompson, Jonathan Mount, Colin G Nichols
Dynein Light Chains 1 And 2 Are Auxiliary Proteins Of Ph-Sensitive Kir4.1 Channels, Sun-Joo Lee, Jian Gao, Ellen Thompson, Jonathan Mount, Colin G Nichols
2020-Current year OA Pubs
Inward rectifier Kir4.1 potassium channels are abundantly expressed in cells that are important for electrolyte homeostasis. Dysregulation of Kir4.1 underlies various neurological disorders. Here, through biochemical and structural studies of full-length Kir4.1, we show that dynein light chain 1 and 2 proteins, also as known as LC8, copurify with Kir4.1 at stoichiometric levels. Direct interaction between Kir4.1 and LC8 is supported by in vitro binding assays and reiterated with native Kir4.1 proteins from mouse brain. Notably, we identify a LC8 binding motif in the unstructured N terminus of Kir4.1. Among Kir subtypes, the motif is unique to Kir4.1 and is …
Galectin-1 Inhibition As A Strategy For Malignant Peripheral Nerve Sheath Tumor Treatment, Hsiao-Chi Wang, Keila E Torres, Roger Xia, Marcio H Malogolowkin, Ssu-Wei Hsu, Ching-Hsien Chen, Tsung-Chieh Shih
Galectin-1 Inhibition As A Strategy For Malignant Peripheral Nerve Sheath Tumor Treatment, Hsiao-Chi Wang, Keila E Torres, Roger Xia, Marcio H Malogolowkin, Ssu-Wei Hsu, Ching-Hsien Chen, Tsung-Chieh Shih
Faculty, Staff and Student Publications
Neurofibromatosis type 1 (NF1) is an inherited disorder that predisposes individuals to malignant peripheral nerve sheath tumors (MPNSTs), a highly aggressive sarcoma with limited treatment options and poor prognosis. This study explores the potential of targeting the interaction between Galectin-1 and Ras as a novel therapeutic strategy for MPNSTs. Through molecular docking, we identified critical residues involved in the Galectin-1 and H-Ras interaction. We developed LLS30, a compound designed to target this Ras-binding pocket on Galectin-1, and tested its efficacy. LLS30 effectively disrupted the Galectin-1/Ras interaction, causing Ras delocalization from the plasma membrane and inhibiting Ras signaling. In vitro experiments …
Progesterone Receptor In Uterine Glands Is Required For Pregnancy Establishment In Mice, Greeshma Sai Bayammagari, Sai Goutham Reddy Yeddula, Sarayut Winuthayanon, Francesco J Demayo, John P Lydon, Thomas E Spencer, Andrew M Kelleher
Progesterone Receptor In Uterine Glands Is Required For Pregnancy Establishment In Mice, Greeshma Sai Bayammagari, Sai Goutham Reddy Yeddula, Sarayut Winuthayanon, Francesco J Demayo, John P Lydon, Thomas E Spencer, Andrew M Kelleher
Faculty, Staff and Students Publications
Embryo implantation is a critical event in the establishment of pregnancy, and implantation failure is a major cause of pregnancy loss in women. Coordinated, cell-type specific responses to the ovarian steroid hormones, estrogen, and progesterone, within the endometrium underlie successful embryo implantation and pregnancy establishment. In this study, we utilized a glandular epithelium (GE) specific Cre recombinase mouse line that is only active in the adult (Prss29-Cre) to determine the biological role of progesterone receptor (PGR) in uterine glands during pregnancy. Conditional ablation of PGR specifically in the GE compromised fertility due to defects in uterine receptivity and embryo implantation. …
Effects Of Prebiotic Phytocompound Administration In Gestational Diabetic Dams And Its Influence On Offspring Cognitive Outcomes, Gayathri Jagadeesan, Tushar K Das, Jennifer M Mendoza, Ghalya Alrousan, Maria P Blasco-Conesa, Parimelazhagan Thangaraj, Bhanu Priya Ganesh
Effects Of Prebiotic Phytocompound Administration In Gestational Diabetic Dams And Its Influence On Offspring Cognitive Outcomes, Gayathri Jagadeesan, Tushar K Das, Jennifer M Mendoza, Ghalya Alrousan, Maria P Blasco-Conesa, Parimelazhagan Thangaraj, Bhanu Priya Ganesh
Faculty, Staff and Student Publications
Gestational diabetes mellitus (GD)-induced gut dysbiosis in pregnant mothers may increase the risk of cognitive impairment and neurological disorders in both the mother and offspring as they age. Restoring gut balance could improve cognitive outcomes for both. Despite advancements in GD treatment, side effects have increased, and long-term neurocognitive impacts on offspring born to GD mothers remain underexplored. This study uses a GD mouse model, inducing pancreatic dysfunction in 3-month-old pregnant C57BL/6J mice with Streptozotocin. The efficacy and mechanism of the prebiotic phytocompound green leaf extract (
Assessing Cancer Therapeutic Efficacy In Vivo Using [2h7]Glucose Deuterium Metabolic Imaging, Mario C Chang, Vinay R Malut, Rohit Mahar, Anna Rushin, Marc A Mcleod, Geraldine L Pierre, Indu R Malut, Stephen J Staklinski, Max E Glanz, Mukundan Ragavan, Gaurav Sharma, Manoj Madheswaran, Arshee Badar, Aparna D Rao, Brian K Law, Michael S Kilberg, James H P Collins, Vikram D Kodibagkar, James A Bankson, Ralph J Deberardinis, Matthew E Merritt
Assessing Cancer Therapeutic Efficacy In Vivo Using [2h7]Glucose Deuterium Metabolic Imaging, Mario C Chang, Vinay R Malut, Rohit Mahar, Anna Rushin, Marc A Mcleod, Geraldine L Pierre, Indu R Malut, Stephen J Staklinski, Max E Glanz, Mukundan Ragavan, Gaurav Sharma, Manoj Madheswaran, Arshee Badar, Aparna D Rao, Brian K Law, Michael S Kilberg, James H P Collins, Vikram D Kodibagkar, James A Bankson, Ralph J Deberardinis, Matthew E Merritt
Faculty, Staff and Student Publications
Metabolic imaging produces powerful visual assessments of organ function in vivo. Current techniques can be improved by safely increasing metabolic contrast. The gold standard, 2-[18F]fluorodeoxyglucose-positron emission tomography (FDG-PET) imaging, is limited by radioactive exposure and sparse assessment of metabolism beyond glucose uptake and retention. Deuterium magnetic resonance imaging (DMRI) with [6,6-2H2]glucose is nonradioactive, achieves tumor metabolic contrast, but can be improved by enriched contrast from deuterated water (HDO) based imaging. Here, we developed a DMRI protocol employing [2H7]glucose. Imaging 2H-signal and measuring HDO production in tumor-bearing mice detected differential glucose utilization across baseline tumors, tumors treated with vehicle control or …
An In Vivo Screen Identifies Nat10 As A Master Regulator Of Brain Metastasis, Jocelyn F Chen, Peng Xu, Wesley L Cai, Huacui Chen, Emily Wingrove, Xiaojian Shi, Wenxue Li, Giulia Biancon, Meiling Zhang, Amer Balabaki, Ethan D Krop, Elianna Asare, Yangyi Zhang, Mingzhu Yin, Toma Tebaldi, Jordan L Meier, Thomas F Westbrook, Stephanie Halene, Yansheng Liu, Hongying Shen, Don X Nguyen, Qin Yan
An In Vivo Screen Identifies Nat10 As A Master Regulator Of Brain Metastasis, Jocelyn F Chen, Peng Xu, Wesley L Cai, Huacui Chen, Emily Wingrove, Xiaojian Shi, Wenxue Li, Giulia Biancon, Meiling Zhang, Amer Balabaki, Ethan D Krop, Elianna Asare, Yangyi Zhang, Mingzhu Yin, Toma Tebaldi, Jordan L Meier, Thomas F Westbrook, Stephanie Halene, Yansheng Liu, Hongying Shen, Don X Nguyen, Qin Yan
Faculty, Staff and Students Publications
Emerging evidence has shown that epigenetic regulation plays a fundamental role in cancer metastasis, the major cause of cancer-related deaths. Here, we conducted an in vivo screen for vulnerabilities of brain metastasis and identified N-acetyltransferase 10 (NAT10) as a driver of brain metastasis. Knockdown of NAT10 restrains cancer cell proliferation and migration in vitro and tumor growth and brain metastasis in vivo. The poorly characterized RNA helicase domain of NAT10 is critical for cell growth in vitro, while both RNA helicase and NAT domains are essential for primary tumor growth and brain metastasis in vivo. Mechanically, NAT10 promotes the …
Characterization Of Hepatic Pathology During Azoxymethane-Induced Acute Liver Failure, Shadikchhya Maya Bhattarai, Ashwin Jhawer, Gabriel Frampton, Eleonora Troyanovskaya, Sharon Demorrow, Matthew Mcmillin
Characterization Of Hepatic Pathology During Azoxymethane-Induced Acute Liver Failure, Shadikchhya Maya Bhattarai, Ashwin Jhawer, Gabriel Frampton, Eleonora Troyanovskaya, Sharon Demorrow, Matthew Mcmillin
Faculty, Staff and Students Publications
Background: Acute liver failure (ALF) is a loss of liver function due to a severe hepatic insult. Studies utilizing the azoxymethane (AOM) mouse model of ALF, which also generates hepatic encephalopathy, have primarily focused on development of neurological deficits. However, the molecular processes that generate liver damage have not been fully characterized. Therefore, a more comprehensive characterization of the hepatic consequences of AOM toxicity is needed to better understand this disease model.
Aim: To identify molecular pathology contributing to hepatic injury during the progression of AOM-induced ALF.
Methods: C57BL/6 mice were injected with AOM to produce ALF and hepatic encephalopathy. …
Lifespan Of Male And Female App/Ps1 And Appnl-F/Nl-F Mouse Models Of Alzheimer's Disease, Hannah Roberts, Yimin Fang, Kathleen Quinn, Tiarra Hill, Mackenzie R Peck, Andrzej Bartke, Kevin N Hascup, Erin R Hascup
Lifespan Of Male And Female App/Ps1 And Appnl-F/Nl-F Mouse Models Of Alzheimer's Disease, Hannah Roberts, Yimin Fang, Kathleen Quinn, Tiarra Hill, Mackenzie R Peck, Andrzej Bartke, Kevin N Hascup, Erin R Hascup
Articles
Alzheimer's disease (AD) disproportionately affects women, yet most preclinical research studies are male-centric. We performed lifespan analyses of male and female AD mouse models (APP/PS1 and APPNL-F/NL-F) and their shared genetic background control (C57BL/6). Survival curves support significant sex differences between genotypes. Minimal longevity revealed increased age in male APP/PS1, and decreased age in male APPNL-F/NL-F mice. Maximal longevity revealed an increased average age in males. Furthermore, median lifespan differed between sex and genotype. This study supports dimorphic survival in two mouse models of AD, emphasizing the need to examine mechanisms and treatments in both sexes.
Combined Targeting Of Glioblastoma Stem Cells Of Different Cellular States Disrupts Malignant Progression, Chenfei Lu, Tao Kang, Junxia Zhang, Kailin Yang, Yang Liu, Kefan Song, Qiankun Lin, Deobrat Dixit, Ryan C Gimple, Qian Zhang, Zhumei Shi, Xiao Fan, Qiulian Wu, Daqi Li, Danyang Shan, Jiancheng Gao, Danling Gu, Hao You, Yangqing Li, Junlei Yang, Linjie Zhao, Zhixin Qiu, Hui Yang, Ningwei Zhao, Wei Gao, Weiwei Tao, Yingmei Lu, Yun Chen, Jing Ji, Zhe Zhu, Chunsheng Kang, Jianghong Man, Sameer Agnihotri, Qianghu Wang, Fan Lin, Xu Qian, Stephen C Mack, Zhibin Hu, Chaojun Li, Michael D Taylor, Ning Liu, Nu Zhang, Ming Lu, Yongping You, Jeremy N Rich, Wei Zhang, Xiuxing Wang
Combined Targeting Of Glioblastoma Stem Cells Of Different Cellular States Disrupts Malignant Progression, Chenfei Lu, Tao Kang, Junxia Zhang, Kailin Yang, Yang Liu, Kefan Song, Qiankun Lin, Deobrat Dixit, Ryan C Gimple, Qian Zhang, Zhumei Shi, Xiao Fan, Qiulian Wu, Daqi Li, Danyang Shan, Jiancheng Gao, Danling Gu, Hao You, Yangqing Li, Junlei Yang, Linjie Zhao, Zhixin Qiu, Hui Yang, Ningwei Zhao, Wei Gao, Weiwei Tao, Yingmei Lu, Yun Chen, Jing Ji, Zhe Zhu, Chunsheng Kang, Jianghong Man, Sameer Agnihotri, Qianghu Wang, Fan Lin, Xu Qian, Stephen C Mack, Zhibin Hu, Chaojun Li, Michael D Taylor, Ning Liu, Nu Zhang, Ming Lu, Yongping You, Jeremy N Rich, Wei Zhang, Xiuxing Wang
Faculty, Staff and Students Publications
Glioblastoma (GBM) is the most lethal primary brain tumor with intra-tumoral hierarchy of glioblastoma stem cells (GSCs). The heterogeneity of GSCs within GBM inevitably leads to treatment resistance and tumor recurrence. Molecular mechanisms of different cellular state GSCs remain unclear. Here, we find that classical (CL) and mesenchymal (MES) GSCs are enriched in reactive immune region and high CL-MES signature informs poor prognosis in GBM. Through integrated analyses of GSCs RNA sequencing and single-cell RNA sequencing datasets, we identify specific GSCs targets, including MEOX2 for the CL GSCs and SRGN for the MES GSCs. MEOX2-NOTCH and SRGN-NFκB axes play important …
Pmp2+ Schwann Cells Maintain The Survival Of Large-Caliber Motor Axons, Mikolaj M Kozlowski, Amy Strickland, Ana Morales Benitez, Robert E Schmidt, A Joseph Bloom, Jeffrey Milbrandt, Aaron Diantonio
Pmp2+ Schwann Cells Maintain The Survival Of Large-Caliber Motor Axons, Mikolaj M Kozlowski, Amy Strickland, Ana Morales Benitez, Robert E Schmidt, A Joseph Bloom, Jeffrey Milbrandt, Aaron Diantonio
2020-Current year OA Pubs
Neurodegenerative diseases of both the central and peripheral nervous system are characterized by selective neuronal vulnerability, i.e., pathology that affects particular types of neurons. While much of this cell type selectivity may be driven by intrinsic differences among the neuron subpopulations, neuron-extrinsic mechanisms such as the selective malfunction of glial support cells may also play a role. Recently, we identified a population of Schwann cells (SCs) expressing
Developmental Differentiation Of Mouse Inner Ear Neuron Subpopulations Resolved With A Peripherin-Promoter Reporter Within The Grm8 Locus, Lily J Pearson, Jeremy L Pinyon, Jennie M E Cederholm, Georg Von Jonquieres, Florence Bartlett, Xabier Vázquez-Campos, Fabien Delerue, Lars M Ittner, Gary D Housley
Developmental Differentiation Of Mouse Inner Ear Neuron Subpopulations Resolved With A Peripherin-Promoter Reporter Within The Grm8 Locus, Lily J Pearson, Jeremy L Pinyon, Jennie M E Cederholm, Georg Von Jonquieres, Florence Bartlett, Xabier Vázquez-Campos, Fabien Delerue, Lars M Ittner, Gary D Housley
Faculty, Staff and Student Publications
Molecular profiling of inner ear neurons has broadened the classification of the primary afferents that support neural coding for hearing and balance. To extend spatiotemporal characterization of auditory and vestibular neuron diversity, we established a transgenic reporter mouse model (Prphp-mCherry), where elements of the peripherin promoter (Prphp) drive expression of the mCherry fluorescent reporter. Type III intermediate filament protein peripherin expression is a marker for type II spiral ganglion neurons (SGN) that innervate the cochlear outer hair cells, and the small diameter 'bouton' vestibular ganglion neurons (VGN) innervating the type II vestibular hair cells. Using Nanopore genome sequencing, the integration …
Haploinsufficiency Of Itsn1 Is Associated With A Substantial Increased Risk Of Parkinson’S Disease, Thomas P Spargo, Chloe F Sands, Isabella R Juan, Jonathan Mitchell, Vida Ravanmehr, Jessica C Butts, Ruth B De-Paula, Youngdoo Kim, Fengyuan Hu, Quanli Wang, Dimitrios Vitsios, Manik Garg, Lawrence Middleton, Michal Tyrlik, Mirko Messa, Guillermo Del Angel, Daniel G Calame, Hiba Saade, Laurie Robak, Ben Hollis, Vishnu A Cuddapah, Huda Y Zoghbi, Joshua M Shulman, Slavé Petrovski, Ismael Al-Ramahi, Ioanna Tachmazidou, Ryan S Dhindsa
Haploinsufficiency Of Itsn1 Is Associated With A Substantial Increased Risk Of Parkinson’S Disease, Thomas P Spargo, Chloe F Sands, Isabella R Juan, Jonathan Mitchell, Vida Ravanmehr, Jessica C Butts, Ruth B De-Paula, Youngdoo Kim, Fengyuan Hu, Quanli Wang, Dimitrios Vitsios, Manik Garg, Lawrence Middleton, Michal Tyrlik, Mirko Messa, Guillermo Del Angel, Daniel G Calame, Hiba Saade, Laurie Robak, Ben Hollis, Vishnu A Cuddapah, Huda Y Zoghbi, Joshua M Shulman, Slavé Petrovski, Ismael Al-Ramahi, Ioanna Tachmazidou, Ryan S Dhindsa
Faculty, Staff and Students Publications
Despite its significant heritability, the genetic basis of Parkinson's disease (PD) remains incompletely understood. Here, in analyzing whole-genome sequence data from 3,809 PD cases and 247,101 controls in the UK Biobank, we discover that protein-truncating variants in ITSN1 confer a substantially increased risk of PD (p = 6.1 × 10
Cell-Matrix Feedback Controls Stretch-Induced Cellular Memory And Fibroblast Activation, Yuan Hong, Xiangjun Peng, Haomin Yu, Delaram Shakiba, Yuxuan Huang, Chengqing Qu, Aliza Mujahid, Yin-Yuan Huang, Jacob A Sandler, Kenneth M Pryse, Justin M Sacks, Elliot L Elson, Guy M Genin, Et Al.
Cell-Matrix Feedback Controls Stretch-Induced Cellular Memory And Fibroblast Activation, Yuan Hong, Xiangjun Peng, Haomin Yu, Delaram Shakiba, Yuxuan Huang, Chengqing Qu, Aliza Mujahid, Yin-Yuan Huang, Jacob A Sandler, Kenneth M Pryse, Justin M Sacks, Elliot L Elson, Guy M Genin, Et Al.
2020-Current year OA Pubs
Mechanical stretch can activate long-lived changes in fibroblasts, increasing their contractility and initiating phenotypic transformations. This activation, critical to wound healing and procedures such as skin grafting, increases with mechanical stimulus for cells cultured in two-dimensional but is highly variable in cells in three-dimensional (3D) tissue. Here, we show that static mechanical stretch of cells in 3D tissues can either increase or decrease fibroblast activation depending upon recursive cell-extracellular matrix (ECM) feedback and demonstrate control of this activation through integrated in vitro and mathematical models. ECM viscoelasticity, signaling dynamics, and cell mechanics combine to yield a predictable, but nonmonotonic, relationship …
Spatial And Seasonal Dynamics Of Mosquito Species In Harris County, Texas, Highlight Risk Of Arbovirus Introduction And Transmission, Morgan Jibowu, Maximea Vigilant, Andre Luis Costa-Da-Silva, Alisa Nelson, Heather T Essigmann, Eric L Brown, Sarah M Gunter
Spatial And Seasonal Dynamics Of Mosquito Species In Harris County, Texas, Highlight Risk Of Arbovirus Introduction And Transmission, Morgan Jibowu, Maximea Vigilant, Andre Luis Costa-Da-Silva, Alisa Nelson, Heather T Essigmann, Eric L Brown, Sarah M Gunter
Faculty, Staff and Student Publications
Mosquito-borne diseases pose a significant public health threat, particularly in densely populated urban areas. Climate change, urbanization, and global connectivity have fueled the expansion of mosquitoes and their associated pathogens, increasing the disease burden. Harris County, Texas, is among the most vulnerable regions in the United States for mosquito-borne disease outbreaks, underscoring the critical need for localized insights into mosquito population dynamics to inform vector surveillance and control strategies. This study provides a comprehensive analysis of the population dynamics of mosquito species in Harris County by exploring their species composition, spatial distribution, and seasonal patterns. Our findings reveal the extensive …
Rapid Laser Ablation-Based Fabrication Of High-Density Polymer Microwell Arrays For High-Throughput Cellular Studies, Desh Deepak Dixit, Kavya L Singampalli, Amit S Niyogi, Amanda Montoya, Alexandre Reuben, Peter B Lillehoj
Rapid Laser Ablation-Based Fabrication Of High-Density Polymer Microwell Arrays For High-Throughput Cellular Studies, Desh Deepak Dixit, Kavya L Singampalli, Amit S Niyogi, Amanda Montoya, Alexandre Reuben, Peter B Lillehoj
Faculty, Staff and Student Publications
Polymer-based microwell platforms have garnered much interest due to their usefulness in culturing and analyzing small quantities of biological cells and spheroids. Existing methods for fabricating polymer microwell arrays involve complex fabrication processes and/or are limited in their ability to create dense arrays of very small (< 50 μm in diameter) microwells. Here, we present a simple and rapid technique for fabricating high-density arrays of microwells ranging from 20 to 160 μm in diameter on a variety of polymer substrates. In this approach, a polymer surface is ablated using a CO2 laser that is rastered over a stainless steel mesh, which serves as a shadow mask. A theoretical laser-polymer interaction model was developed for predicting the microwell volume based on the substrate properties and laser settings. Microwell volumes predicted by the model were within 5.4% of fabricated microwell volumes determined experimentally. Cellulose acetate microwell arrays fabricated using this technique were used to culture Lewis lung carcinoma cells expressing ovalbumin (LLC-OVA), which were maintained for up to 72 h with a negligible (< 5%) loss in viability. As a second proof of principle demonstration, LLC-OVA cells grown in microwell arrays were co-cultured with OT-I T cells and measurements of interferon gamma (IFN-γ), a marker for T cell activation, were performed which revealed a positive correlation between LLC-OVA cell-T cell interaction time and T cell activation. These two in vitro demonstrations showcase the capability of this technique in generating polymer microwell arrays for high-throughput cellular studies, including cell growth dynamics studies and cell interaction studies. Furthermore, we envision that these platforms can be used with different cell types and for other biological applications, such as spheroid formation and single cell analysis, …
Ovarian-Specific Cyp17a1 Overexpression In Female Mice: A Novel Model Of Endogenous Testosterone Excess, Serene Joseph, Vaibhave Ubba, Zhiqiang Wang, Mingxiao Feng, Milan K Dsilva, Sofia Suero, Danielle Waheed, Nathaniel W Snyder, Xiaofeng Yang, Hong Wang, Joanne S Richards, Chemyong J Ko, Sheng Wu
Ovarian-Specific Cyp17a1 Overexpression In Female Mice: A Novel Model Of Endogenous Testosterone Excess, Serene Joseph, Vaibhave Ubba, Zhiqiang Wang, Mingxiao Feng, Milan K Dsilva, Sofia Suero, Danielle Waheed, Nathaniel W Snyder, Xiaofeng Yang, Hong Wang, Joanne S Richards, Chemyong J Ko, Sheng Wu
Faculty, Staff and Students Publications
Excessive androgen levels can severely affect female health. However, most existing models of androgen excess rely on exogenous androgen administration, which does not fully capture the effect of elevated local ovarian testosterone on reproductive and metabolic functions. Here, we report the development of a novel hyperandrogenic mouse model, Cyp17TM-625, generated by combining CRISPR-Cas9 and a Tet-On doxycycline system to induce Cyp17A1 overexpression in ovarian theca-interstitial cells. As a result, Cyp17TM-625 mice exhibited significantly elevated Cyp17A1 messenger RNA and protein levels, accompanied by increased testosterone concentrations without alterations in basal levels of estradiol, progesterone, luteinizing hormone, or follicle-stimulating hormone. These mice …
Radial Glia Integrin Avb8 Regulates Cell Autonomous Microglial Tgfβ1 Signaling That Is Necessary For Microglial Identity, Gabriel Mckinsey, Nicolas Santander, Xiaoming Zhang, Kilian Kleemann, Lauren Tran, Aditya Katewa, Kaylynn Conant, Matthew Barraza, Kian Waddell, Carlos Lizama, Marie La Russa, Ji Hyun Koo, Hyunji Lee, Dibyanti Mukherjee, Helena Paidassi, E. S. Anton, Kamran Atabai, Dean Sheppard, Oleg Butovsky, Thomas Arnold
Radial Glia Integrin Avb8 Regulates Cell Autonomous Microglial Tgfβ1 Signaling That Is Necessary For Microglial Identity, Gabriel Mckinsey, Nicolas Santander, Xiaoming Zhang, Kilian Kleemann, Lauren Tran, Aditya Katewa, Kaylynn Conant, Matthew Barraza, Kian Waddell, Carlos Lizama, Marie La Russa, Ji Hyun Koo, Hyunji Lee, Dibyanti Mukherjee, Helena Paidassi, E. S. Anton, Kamran Atabai, Dean Sheppard, Oleg Butovsky, Thomas Arnold
Department of Medicine Faculty Papers
Microglial diversity arises from the interplay between inherent genetic programs and external environmental signals. However, the mechanisms by which these processes develop and interact within the growing brain are not yet fully understood. Here, we show that radial glia-expressed integrin beta 8 (ITGB8) activates microglia-expressed TGFβ1 to drive microglial development. Domain-restricted deletion of Itgb8 in these progenitors results in regionally restricted and developmentally arrested microglia that persist into adulthood. In the absence of autocrine TGFβ1 signaling, microglia adopt a similar phenotype, leading to neuromotor symptoms almost identical to Itgb8 mutant mice. In contrast, microglia lacking the canonical TGFβ signal transducers …
Islet Single-Cell Transcriptomic Profiling During Obesity-Induced Beta Cell Expansion In Female Mice, Peter M Masschelin, Scott A Ochsner, Sean M Hartig, Neil J Mckenna, Aaron R Cox
Islet Single-Cell Transcriptomic Profiling During Obesity-Induced Beta Cell Expansion In Female Mice, Peter M Masschelin, Scott A Ochsner, Sean M Hartig, Neil J Mckenna, Aaron R Cox
Faculty, Staff and Student Publications
Targeting beta cell proliferation is an appealing approach to restore glucose control in type 1 diabetes. However, the underlying mechanisms of beta cell proliferation remain incompletely understood, limiting identification of new therapeutic targets. Obesity is a naturally occurring process that potently induces human and rodent beta cell replication, representing an ideal model to study mechanisms of beta cell proliferation. We showed previously acute whole-body