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Articles 2161 - 2190 of 3893
Full-Text Articles in Entire DC Network
Mir-146a Inhibits Ovarian Tumor Growth In Vivo Via Targeting Immunosuppressive Neutrophils And Enhancing Cd8+ T Cell Infiltration, Rui Chen, Elaina Coleborn, Chintan Bhavsar, Yue Wang, Louisa Alim, Andrew N Wilkinson, Michelle A Tran, Gowri Irgam, Sharat Atluri, Kiefer Wong, Jae-Jun Shim, Siddharth Adityan, Ju-Seog Lee, Willem W Overwijk, Raymond Steptoe, Da Yang, Sherry Y Wu
Mir-146a Inhibits Ovarian Tumor Growth In Vivo Via Targeting Immunosuppressive Neutrophils And Enhancing Cd8+ T Cell Infiltration, Rui Chen, Elaina Coleborn, Chintan Bhavsar, Yue Wang, Louisa Alim, Andrew N Wilkinson, Michelle A Tran, Gowri Irgam, Sharat Atluri, Kiefer Wong, Jae-Jun Shim, Siddharth Adityan, Ju-Seog Lee, Willem W Overwijk, Raymond Steptoe, Da Yang, Sherry Y Wu
Faculty, Staff and Student Publications
Immunotherapies have emerged as promising strategies for cancer treatment. However, existing immunotherapies have poor activity in high-grade serous ovarian cancer (HGSC) due to the immunosuppressive tumor microenvironment and the associated low tumoral CD8+ T cell (CTL) infiltration. Through multiple lines of evidence, including integrative analyses of human HGSC tumors, we have identified miR-146a as a master regulator of CTL infiltration in HGSC. Tumoral miR-146a expression is positively correlated with anti-cancer immune signatures in human HGSC tumors, and delivery of miR-146a to tumors resulted in significant reduction in tumor growth in both ID8-p53−/− and IG10 murine HGSC models. Increasing miR-146a expression …
Aspergillus Flavus And Fusarium Verticillioides And Their Main Mycotoxins: Global Distribution And Scenarios Of Interactions In Maize, Xiangrong Chen, Mohamed F Abdallah, Sofie Landschoot, Kris Audenaert, Sarah De Saeger, Xiangfeng Chen, Andreja Rajkovic
Aspergillus Flavus And Fusarium Verticillioides And Their Main Mycotoxins: Global Distribution And Scenarios Of Interactions In Maize, Xiangrong Chen, Mohamed F Abdallah, Sofie Landschoot, Kris Audenaert, Sarah De Saeger, Xiangfeng Chen, Andreja Rajkovic
Faculty, Staff and Student Publications
Maize is frequently contaminated with multiple mycotoxins, especially those produced by Aspergillus flavus and Fusarium verticillioides. As mycotoxin contamination is a critical factor that destabilizes global food safety, the current review provides an updated overview of the (co-)occurrence of A. flavus and F. verticillioides and (co-)contamination of aflatoxin B1 (AFB1) and fumonisin B1 (FB1) in maize. Furthermore, it summarizes their interactions in maize. The gathered data predict the (co-)occurrence and virulence of A. flavus and F. verticillioides would increase worldwide, especially in European cold climate countries. Studies on the interaction of both fungi regarding their growth mainly showed antagonistic …
Narrative Review Of The Role Of Technology In Pediatric Diabetes: From Testing Blood Glucose To Subcutaneous Automated Therapy And Hope For Cure, Michael Yafi, Avni Shah, Katherine Velez
Narrative Review Of The Role Of Technology In Pediatric Diabetes: From Testing Blood Glucose To Subcutaneous Automated Therapy And Hope For Cure, Michael Yafi, Avni Shah, Katherine Velez
Faculty, Staff and Student Publications
BACKGROUND AND OBJECTIVE: Type 1 diabetes, the most common cause of diabetes in pediatrics, is defined by the hyperglycemia that results from the permanent autoimmune damage to the pancreas. The Diabetes Control and Complications Trial (DCCT) demonstrated that strict glycemic control targeting lower HbA1c goals can both delay the onset and progression of its complications that include diabetic neuropathy, nephropathy, retinopathy, and increased cardiovascular events. Our primary objective is to review the literature available regarding the technology applied for the treatment of diabetes, not only aiding patients' quality of life but addressing its effects on hypoglycemia and reduced risk of …
Neuroimmune Support Of Neuronal Regeneration And Neuroplasticity Following Cerebral Ischemia In Juvenile Mice, Ricaurte A Marquez-Ortiz, Vesna Tesic, Daniel R Hernandez, Bilkis Akhter, Nibedita Aich, Porter M Boudreaux, Garrett A Clemons, Celeste Yin-Chieh Wu, Hung Wen Lin, Krista M Rodgers
Neuroimmune Support Of Neuronal Regeneration And Neuroplasticity Following Cerebral Ischemia In Juvenile Mice, Ricaurte A Marquez-Ortiz, Vesna Tesic, Daniel R Hernandez, Bilkis Akhter, Nibedita Aich, Porter M Boudreaux, Garrett A Clemons, Celeste Yin-Chieh Wu, Hung Wen Lin, Krista M Rodgers
Faculty, Staff and Student Publications
Ischemic damage to the brain and loss of neurons contribute to functional disabilities in many stroke survivors. Recovery of neuroplasticity is critical to restoration of function and improved quality of life. Stroke and neurological deficits occur in both adults and children, and yet it is well documented that the developing brain has remarkable plasticity which promotes increased post-ischemic functional recovery compared with adults. However, the mechanisms underlying post-stroke recovery in the young brain have not been fully explored. We observed opposing responses to experimental cerebral ischemia in juvenile and adult mice, with substantial neural regeneration and enhanced neuroplasticity detected in …
A Review Of The Role Of Tendon Stem Cells In Tendon-Bone Regeneration, Junjie Chen, Chuanfeng Jiang, Lu Yin, Yingqi Liu, Yue He, Sen Li, Huarui Shen
A Review Of The Role Of Tendon Stem Cells In Tendon-Bone Regeneration, Junjie Chen, Chuanfeng Jiang, Lu Yin, Yingqi Liu, Yue He, Sen Li, Huarui Shen
Faculty, Staff and Student Publications
Tendon-bone injuries are a prevalent health concern associated with sports and other physically demanding activities. These injuries have a limited innate healing ability, often leading to the formation of scar tissue rather than the regeneration of healthy tendon tissue. This scar tissue results from excessive fibrosis during the early healing process and often leads to reduced tendon function and an increased risk of reinjury. Traditionally, surgical reconstruction has been the primary treatment for tendon-bone injuries. However, restoring the natural structure and mechanical properties of tendons after surgical reconstruction presents a considerable challenge. Recently, the potential of stem cell therapy has …
Classification Of Missense Variants In The N-Methyl-D-Aspartate Receptor Grin Gene Family As Gain- Or Loss-Of-Function, Scott J Myers, Hongjie Yuan, Riley E Perszyk, Jing Zhang, Sukhan Kim, Kelsey A Nocilla, James P Allen, Jennifer M Bain, Johannes R Lemke, Dennis Lal, Timothy A Benke, Stephen F Traynelis
Classification Of Missense Variants In The N-Methyl-D-Aspartate Receptor Grin Gene Family As Gain- Or Loss-Of-Function, Scott J Myers, Hongjie Yuan, Riley E Perszyk, Jing Zhang, Sukhan Kim, Kelsey A Nocilla, James P Allen, Jennifer M Bain, Johannes R Lemke, Dennis Lal, Timothy A Benke, Stephen F Traynelis
Faculty, Staff and Student Publications
Advances in sequencing technology have generated a large amount of genetic data from patients with neurological conditions. These data have provided diagnosis of many rare diseases, including a number of pathogenic de novo missense variants in GRIN genes encoding N-methyl-d-aspartate receptors (NMDARs). To understand the ramifications for neurons and brain circuits affected by rare patient variants, functional analysis of the variant receptor is necessary in model systems. For NMDARs, this functional analysis needs to assess multiple properties in order to understand how variants could impact receptor function in neurons. One can then use these data to determine whether the …
Protocol For Expression Of Murine Milk Using Modified Human Breast Pump Parts, Cydney Meyer, Joseph L Alcorn
Protocol For Expression Of Murine Milk Using Modified Human Breast Pump Parts, Cydney Meyer, Joseph L Alcorn
Faculty, Staff and Student Publications
Understanding the nutritional and immunomodulatory components of breast milk is crucial to developing novel mechanisms to optimize neonatal health. Here, we present a protocol to express and isolate murine milk in sufficient quantities for further analysis of components and bioactivity. We describe steps for separating dams from pups, administering intraperitoneal anesthetic and oxytocin, and expressing milk using a minimally modified and readily available commercial breast pump parts. For complete details on the use and execution of this protocol, please refer to Meyer et al. (2022).
Neurocognitive Outcomes In Adult Survivors Of Neuroblastoma: A Report From The Childhood Cancer Survivor Study, Caroline Hesko, Wei Liu, Deo K Srivastava, Tara M Brinkman, Lisa Diller, Todd M Gibson, Kevin C Oeffinger, Wendy M Leisenring, Rebecca Howell, Gregory T Armstrong, Kevin R Krull, Tara O Henderson
Neurocognitive Outcomes In Adult Survivors Of Neuroblastoma: A Report From The Childhood Cancer Survivor Study, Caroline Hesko, Wei Liu, Deo K Srivastava, Tara M Brinkman, Lisa Diller, Todd M Gibson, Kevin C Oeffinger, Wendy M Leisenring, Rebecca Howell, Gregory T Armstrong, Kevin R Krull, Tara O Henderson
Faculty, Staff and Student Publications
Background: Despite survival improvements, there is a paucity of data on neurocognitive outcomes in neuroblastoma survivors. This study addresses this literature gap.
Methods: Neurocognitive impairments in survivors were compared to sibling controls from the Childhood Cancer Survivor Study (CCSS) using the CCSS Neurocognitive Questionnaire. Impaired emotional regulation, organization, task efficiency, and memory defined as scores ≥90th percentile of sibling norms. Modified Poisson regression models evaluated associations with treatment exposures, era of diagnosis, and chronic conditions. Analyses were stratified by age at diagnosis (≤1 and >1 year) as proxy for lower versus higher risk disease.
Results: Survivors (N = 837; median …
Mettl14 Is A Chromatin Regulator Independent Of Its Rna N6-Methyladenosine Methyltransferase Activity, Xiaoyang Dou, Lulu Huang, Yu Xiao, Chang Liu, Yini Li, Xinning Zhang, Lishan Yu, Ran Zhao, Lei Yang, Chuan Chen, Xianbin Yu, Boyang Gao, Meijie Qi, Yawei Gao, Bin Shen, Shuying Sun, Chuan He, Jun Liu
Mettl14 Is A Chromatin Regulator Independent Of Its Rna N6-Methyladenosine Methyltransferase Activity, Xiaoyang Dou, Lulu Huang, Yu Xiao, Chang Liu, Yini Li, Xinning Zhang, Lishan Yu, Ran Zhao, Lei Yang, Chuan Chen, Xianbin Yu, Boyang Gao, Meijie Qi, Yawei Gao, Bin Shen, Shuying Sun, Chuan He, Jun Liu
Faculty, Staff and Student Publications
METTL3 and METTL14 are two components that form the core heterodimer of the main RNA m6A methyltransferase complex (MTC) that installs m6A. Surprisingly, depletion of METTL3 or METTL14 displayed distinct effects on stemness maintenance of mouse embryonic stem cell (mESC). While comparable global hypo-methylation in RNA m6A was observed in Mettl3 or Mettl14 knockout mESCs, respectively. Mettl14 knockout led to a globally decreased nascent RNA synthesis, whereas Mettl3 depletion resulted in transcription upregulation, suggesting that METTL14 might possess an m6A-independent role in gene regulation. We found that METTL14 colocalizes with the repressive H3K27me3 modification. Mechanistically, METTL14, but not METTL3, binds …
N-Terminal Α-Amino Sumoylation Of Cofilin-1 Is Critical For Its Regulation Of Actin Depolymerization, Weiji Weng, Xiaokun Gu, Yang Yang, Qiao Zhang, Qi Deng, Jie Zhou, Jinke Cheng, Michael X Zhu, Junfeng Feng, Ou Huang, Yong Li
N-Terminal Α-Amino Sumoylation Of Cofilin-1 Is Critical For Its Regulation Of Actin Depolymerization, Weiji Weng, Xiaokun Gu, Yang Yang, Qiao Zhang, Qi Deng, Jie Zhou, Jinke Cheng, Michael X Zhu, Junfeng Feng, Ou Huang, Yong Li
Faculty, Staff and Student Publications
Small ubiquitin-like modifier (SUMO) typically conjugates to target proteins through isopeptide linkage to the ε-amino group of lysine residues. This posttranslational modification (PTM) plays pivotal roles in modulating protein function. Cofilins are key regulators of actin cytoskeleton dynamics and are well-known to undergo several different PTMs. Here, we show that cofilin-1 is conjugated by SUMO1 both in vitro and in vivo. Using mass spectrometry and biochemical and genetic approaches, we identify the N-terminal α-amino group as the SUMO-conjugation site of cofilin-1. Common to conventional SUMOylation is that the N-α-SUMOylation of cofilin-1 is also mediated by SUMO activating (E1), conjugating (E2), …
Pathogen-Driven Crispr Screens Identify Trex1as A Regulator Of Dna Self-Sensing During Influenza Virus Infection, Cason R King, Yiping Liu, Katherine A Amato, Grace A Schaack, Clayton Mickelson, Autumn E Sanders, Tony Hu, Srishti Gupta, Ryan A Langlois, Judith A Smith, Andrew Mehle
Pathogen-Driven Crispr Screens Identify Trex1as A Regulator Of Dna Self-Sensing During Influenza Virus Infection, Cason R King, Yiping Liu, Katherine A Amato, Grace A Schaack, Clayton Mickelson, Autumn E Sanders, Tony Hu, Srishti Gupta, Ryan A Langlois, Judith A Smith, Andrew Mehle
Faculty, Staff and Student Publications
Host:pathogen interactions dictate the outcome of infection, yet the limitations of current approaches leave large regions of this interface unexplored. Here, we develop a novel fitness-based screen that queries factors important during the middle to late stages of infection. This is achieved by engineering influenza virus to direct the screen by programming dCas9 to modulate host gene expression. Our genome-wide screen for pro-viral factors identifies the cytoplasmic DNA exonuclease TREX1. TREX1 degrades cytoplasmic DNA to prevent inappropriate innate immune activation by self-DNA. We reveal that this same process aids influenza virus replication. Infection triggers release of mitochondrial DNA into the …
A Real-Time Contouring Feedback Tool For Consensus-Based Contour Training, Christopher L Nelson, Callistus Nguyen, Raymond Fang, Laurence E Court, Carlos E Cardenas, Dong Joo Rhee, Tucker J Netherton, Raymond P Mumme, Skylar Gay, Casey Gay, Barbara Marquez, Mohammad D El Basha, Yao Zhao, Mary Gronberg, Soleil Hernandez, Kelly A Nealon, Mary K Martel, Jinzhong Yang
A Real-Time Contouring Feedback Tool For Consensus-Based Contour Training, Christopher L Nelson, Callistus Nguyen, Raymond Fang, Laurence E Court, Carlos E Cardenas, Dong Joo Rhee, Tucker J Netherton, Raymond P Mumme, Skylar Gay, Casey Gay, Barbara Marquez, Mohammad D El Basha, Yao Zhao, Mary Gronberg, Soleil Hernandez, Kelly A Nealon, Mary K Martel, Jinzhong Yang
Faculty, Staff and Student Publications
PURPOSE: Variability in contouring structures of interest for radiotherapy continues to be challenging. Although training can reduce such variability, having radiation oncologists provide feedback can be impractical. We developed a contour training tool to provide real-time feedback to trainees, thereby reducing variability in contouring.
METHODS: We developed a novel metric termed localized signed square distance (LSSD) to provide feedback to the trainee on how their contour compares with a reference contour, which is generated real-time by combining trainee contour and multiple expert radiation oncologist contours. Nine trainees performed contour training by using six randomly assigned training cases that included one …
Dosimetry Of A Novel 111indium-Labeled Anti-P-Cadherin Monoclonal Antibody (Ff-21101) In Non-Human Primates, Gregory Ravizzini, William Erwin, Louis De Palatis, Lucia Martiniova, Vivek Subbiah, Vincenzo Paolillo, Jennifer Mitchell, Asa P Mccoy, Jose Gonzalez, Osama Mawlawi
Dosimetry Of A Novel 111indium-Labeled Anti-P-Cadherin Monoclonal Antibody (Ff-21101) In Non-Human Primates, Gregory Ravizzini, William Erwin, Louis De Palatis, Lucia Martiniova, Vivek Subbiah, Vincenzo Paolillo, Jennifer Mitchell, Asa P Mccoy, Jose Gonzalez, Osama Mawlawi
Faculty, Staff and Student Publications
P-cadherin is associated with a wide range of tumor types, making it an attractive therapeutic target. FF-21101 is a human-mouse chimeric monoclonal antibody (mAb) directed against human P-cadherin, which has been radioconjugated with indium-111 (111In) utilizing a DOTA chelator. We investigated the biodistribution of FF-21101(111In) in cynomolgus macaques and extrapolated the results to estimate internal radiation doses of 111In- and yttrium-90 (90Y)-FF-21101 for targeted radioimmunotherapy in humans. Whole-body planar and SPECT imaging were performed at 0, 2, 24, 48, 72, 96, and 120 h post-injection, using a dual-head gamma camera. Volumes of interest of identifiable source organs of radioactivity were …
The Endosomal Escape Vehicle Platform Enhances Delivery Of Oligonucleotides In Preclinical Models Of Neuromuscular Disorders, Xiang Li, Mahboubeh Kheirabadi, Patrick G Dougherty, Kimberli J Kamer, Xiulong Shen, Nelsa L Estrella, Suresh Peddigari, Anushree Pathak, Sara L Blake, Emmanuelle Sizensky, Carmen Del Genio, Arti B Gaur, Mohanraj Dhanabal, Mahasweta Girgenrath, Natarajan Sethuraman, Ziqing Qian
The Endosomal Escape Vehicle Platform Enhances Delivery Of Oligonucleotides In Preclinical Models Of Neuromuscular Disorders, Xiang Li, Mahboubeh Kheirabadi, Patrick G Dougherty, Kimberli J Kamer, Xiulong Shen, Nelsa L Estrella, Suresh Peddigari, Anushree Pathak, Sara L Blake, Emmanuelle Sizensky, Carmen Del Genio, Arti B Gaur, Mohanraj Dhanabal, Mahasweta Girgenrath, Natarajan Sethuraman, Ziqing Qian
Faculty, Staff and Student Publications
Biological therapeutic agents are highly targeted and potent but limited in their ability to reach intracellular targets. These limitations often necessitate high therapeutic doses and can be associated with less-than-optimal therapeutic activity. One promising solution for therapeutic agent delivery is use of cell-penetrating peptides. Canonical cell-penetrating peptides, however, are limited by low efficiencies of cellular uptake and endosomal escape, minimal proteolytic stability, and toxicity. To overcome these limitations, we designed a family of proprietary cyclic cell-penetrating peptides that form the core of our endosomal escape vehicle technology capable of delivering therapeutic agent-conjugated cargo intracellularly. We demonstrated the therapeutic potential of …
Global Proteomic Identifies Multiple Cancer-Related Signaling Pathways Altered By A Gut Pathobiont Associated With Colorectal Cancer, Ewa Pasquereau-Kotula, Giulia Nigro, Florent Dingli, Damarys Loew, Patrick Poullet, Yi Xu, Scott Kopetz, Jennifer Davis, Lucie Peduto, Catherine Robbe-Masselot, Philippe Sansonetti, Patrick Trieu-Cuot, Shaynoor Dramsi
Global Proteomic Identifies Multiple Cancer-Related Signaling Pathways Altered By A Gut Pathobiont Associated With Colorectal Cancer, Ewa Pasquereau-Kotula, Giulia Nigro, Florent Dingli, Damarys Loew, Patrick Poullet, Yi Xu, Scott Kopetz, Jennifer Davis, Lucie Peduto, Catherine Robbe-Masselot, Philippe Sansonetti, Patrick Trieu-Cuot, Shaynoor Dramsi
Faculty, Staff and Student Publications
In this work, we investigated the oncogenic role of Streptococcus gallolyticus subsp. gallolyticus (SGG), a gut bacterium associated with colorectal cancer (CRC). We showed that SGG UCN34 accelerates colon tumor development in a chemically induced CRC murine model. Full proteome and phosphoproteome analysis of murine colons chronically colonized by SGG UCN34 revealed that 164 proteins and 725 phosphorylation sites were differentially regulated. Ingenuity Pathway Analysis (IPA) indicates a pro-tumoral shift specifically induced by SGG UCN34, as ~ 90% of proteins and phosphoproteins identified were associated with digestive cancer. Comprehensive analysis of the altered phosphoproteins using ROMA software revealed up-regulation of …
Elimination Of Oncogenic Kras In Genetic Mouse Models Eradicates Pancreatic Cancer By Inducing Fas-Dependent Apoptosis By Cd8+ T Cells, Krishnan K Mahadevan, Valerie S Lebleu, Elena V Ramirez, Yang Chen, Bingrui Li, Amari M Sockwell, Mihai Gagea, Hikaru Sugimoto, Lakshmi Kavitha Sthanam, Desiree Tampe, Michael Zeisberg, Haoqiang Ying, Abhinav K Jain, Ronald A Depinho, Anirban Maitra, Kathleen M Mcandrews, Raghu Kalluri
Elimination Of Oncogenic Kras In Genetic Mouse Models Eradicates Pancreatic Cancer By Inducing Fas-Dependent Apoptosis By Cd8+ T Cells, Krishnan K Mahadevan, Valerie S Lebleu, Elena V Ramirez, Yang Chen, Bingrui Li, Amari M Sockwell, Mihai Gagea, Hikaru Sugimoto, Lakshmi Kavitha Sthanam, Desiree Tampe, Michael Zeisberg, Haoqiang Ying, Abhinav K Jain, Ronald A Depinho, Anirban Maitra, Kathleen M Mcandrews, Raghu Kalluri
Faculty, Staff and Student Publications
Oncogenic KRASG12D (KRAS∗) is critical for the initiation and maintenance of pancreatic ductal adenocarcinoma (PDAC) and is a known repressor of tumor immunity. Conditional elimination of KRAS∗ in genetic mouse models of PDAC leads to the reactivation of FAS, CD8+ T cell-mediated apoptosis, and complete eradication of tumors. KRAS∗ elimination recruits activated CD4+ and CD8+ T cells and promotes the activation of antigen-presenting cells. Mechanistically, KRAS∗-mediated immune evasion involves the epigenetic regulation of Fas death receptor in cancer cells, via methylation of its promoter region. Furthermore, analysis of human RNA sequencing identifies that high KRAS expression in PDAC tumors shows …
Endogenous Fluctuations In Cortical State Selectively Enhance Different Modes Of Sensory Processing In Human Temporal Lobe, Arun Parajuli, Diego Gutnisky, Nitin Tandon, Valentin Dragoi
Endogenous Fluctuations In Cortical State Selectively Enhance Different Modes Of Sensory Processing In Human Temporal Lobe, Arun Parajuli, Diego Gutnisky, Nitin Tandon, Valentin Dragoi
Faculty, Staff and Student Publications
The degree of synchronized fluctuations in neocortical network activity can vary widely during alertness. One influential idea that has emerged over the past few decades is that perceptual decisions are more accurate when the state of population activity is desynchronized. This suggests that optimal task performance may occur during a particular cortical state - the desynchronized state. Here we show that, contrary to this view, cortical state can both facilitate and suppress perceptual performance in a task-dependent manner. We performed electrical recordings from surface-implanted grid electrodes in the temporal lobe while human subjects completed two perceptual tasks. We found that …
Sex Hormone-Binding Globulin (Shbg) Mitigates Er Stress And Improves Viability And Insulin Sensitivity In Adipose-Derived Mesenchymal Stem Cells (Asc) Of Equine Metabolic Syndrome (Ems)-Affected Horses, Nabila Bourebaba, Mateusz Sikora, Badr Qasem, Lynda Bourebaba, Krzysztof Marycz
Sex Hormone-Binding Globulin (Shbg) Mitigates Er Stress And Improves Viability And Insulin Sensitivity In Adipose-Derived Mesenchymal Stem Cells (Asc) Of Equine Metabolic Syndrome (Ems)-Affected Horses, Nabila Bourebaba, Mateusz Sikora, Badr Qasem, Lynda Bourebaba, Krzysztof Marycz
Faculty, Staff and Student Publications
BACKGROUND: Equine metabolic syndrome (EMS), which encompasses insulin resistance, low-grade inflammation and predisposition to laminitis is a critical endocrine disorder among the most prevalent conditions affecting horses from different breeds. According to the most recent research, low human sex hormone-binding globulin (SHBG) serum levels correlate with an increased risk of obesity, insulin resistance and diabetes, and may contribute to overall metabolic dysregulations. This study aimed to test whether exogenous SHBG could protect EMS affected adipose-derived stromal stem cells (EqASC
METHODS: EqASC
RESULTS: Obtained data demonstrated that exogenous SHBG treatment significantly promoted ASCs cells proliferation, cell cycle and survival with reduced …
Krasg12d Inhibition Reprograms The Tumor Microenvironment Of Early And Advanced Pancreatic Cancer To Promote Fas-Mediated Killing By Cd8+ T Cells, Krishnan K Mahadevan, Kathleen M Mcandrews, Valerie S Lebleu, Sujuan Yang, Hengyu Lyu, Bingrui Li, Amari M Sockwell, Michelle L Kirtley, Sami J Morse, Barbara A Moreno Diaz, Michael P Kim, Ningping Feng, Anastasia M Lopez, Paola A Guerrero, Francesca Paradiso, Hikaru Sugimoto, Kent A Arian, Haoqiang Ying, Yasaman Barekatain, Lakshmi Kavitha Sthanam, Patience J Kelly, Anirban Maitra, Timothy P Heffernan, Raghu Kalluri
Krasg12d Inhibition Reprograms The Tumor Microenvironment Of Early And Advanced Pancreatic Cancer To Promote Fas-Mediated Killing By Cd8+ T Cells, Krishnan K Mahadevan, Kathleen M Mcandrews, Valerie S Lebleu, Sujuan Yang, Hengyu Lyu, Bingrui Li, Amari M Sockwell, Michelle L Kirtley, Sami J Morse, Barbara A Moreno Diaz, Michael P Kim, Ningping Feng, Anastasia M Lopez, Paola A Guerrero, Francesca Paradiso, Hikaru Sugimoto, Kent A Arian, Haoqiang Ying, Yasaman Barekatain, Lakshmi Kavitha Sthanam, Patience J Kelly, Anirban Maitra, Timothy P Heffernan, Raghu Kalluri
Faculty, Staff and Student Publications
The KRASG12D mutation is present in nearly half of pancreatic adenocarcinomas (PDAC). We investigated the effects of inhibiting the KRASG12D mutant protein with MRTX1133, a non-covalent small molecule inhibitor of KRASG12D, on early and advanced PDAC and its influence on the tumor microenvironment. Employing 16 different models of KRASG12D-driven PDAC, we demonstrate that MRTX1133 reverses early PDAC growth, increases intratumoral CD8+ effector T cells, decreases myeloid infiltration, and reprograms cancer associated fibroblasts. MRTX1133 leads to regression of both established PanINs and advanced PDAC. Regression of advanced PDAC requires CD8+ T cells and immune checkpoint blockade (ICB) synergizes with MRTX1133 …
Elimination Of Oncogenic Kras In Genetic Mouse Models Eradicates Pancreatic Cancer By Inducing Fas-Dependent Apoptosis By Cd8+ T Cells, Krishnan K Mahadevan, Valerie S Lebleu, Elena V Ramirez, Yang Chen, Bingrui Li, Amari M Sockwell, Mihai Gagea, Hikaru Sugimoto, Lakshmi Kavitha Sthanam, Desiree Tampe, Michael Zeisberg, Haoqiang Ying, Abhinav K Jain, Ronald A Depinho, Anirban Maitra, Kathleen M Mcandrews, Raghu Kalluri
Elimination Of Oncogenic Kras In Genetic Mouse Models Eradicates Pancreatic Cancer By Inducing Fas-Dependent Apoptosis By Cd8+ T Cells, Krishnan K Mahadevan, Valerie S Lebleu, Elena V Ramirez, Yang Chen, Bingrui Li, Amari M Sockwell, Mihai Gagea, Hikaru Sugimoto, Lakshmi Kavitha Sthanam, Desiree Tampe, Michael Zeisberg, Haoqiang Ying, Abhinav K Jain, Ronald A Depinho, Anirban Maitra, Kathleen M Mcandrews, Raghu Kalluri
Faculty, Staff and Student Publications
Oncogenic KrasG12D (Kras*) is critical for the initiation and maintenance of pancreatic ductal adenocarcinoma (PDAC), and a known repressor of tumor immunity. Conditional elimination of Kras* in genetic mouse models of PDAC leads to reactivation of Fas, CD8+ T cell mediated apoptosis, and complete eradication of tumors. Kras* elimination recruits activated CD4+ and CD8+ T cells and promotes the activation of antigen presenting cells. Mechanistically, Kras* mediated immune evasion involves epigenetic regulation of the Fas death receptor in cancer cells, via methylation of its promoter region. Further, analysis of human RNA sequencing identifies that high KRAS expressing PDAC tumors show …
The Spatiotemporal Dynamics Of Semantic Integration In The Human Brain, Evan S Schaffer, Neeli Mishra, Matthew R Whiteway, Wenze Li, Michelle B Vancura, Jason Freedman, Kripa B Patel, Venkatakaushik Voleti, Liam Paninski, Elizabeth M C Hillman, L F Abbott, Richard Axel
The Spatiotemporal Dynamics Of Semantic Integration In The Human Brain, Evan S Schaffer, Neeli Mishra, Matthew R Whiteway, Wenze Li, Michelle B Vancura, Jason Freedman, Kripa B Patel, Venkatakaushik Voleti, Liam Paninski, Elizabeth M C Hillman, L F Abbott, Richard Axel
Faculty, Staff and Student Publications
What are the spatial and temporal scales of brainwide neuronal activity? We used swept, confocally-aligned planar excitation (SCAPE) microscopy to image all cells in a large volume of the brain of adult Drosophila with high spatiotemporal resolution while flies engaged in a variety of spontaneous behaviors. This revealed neural representations of behavior on multiple spatial and temporal scales. The activity of most neurons correlated (or anticorrelated) with running and flailing over timescales that ranged from seconds to a minute. Grooming elicited a weaker global response. Significant residual activity not directly correlated with behavior was high dimensional and reflected the activity …
The Classification Of Obesity Based On Metabolic Status Redefines The Readmission Of Non-Hodgkin’S Lymphoma—An Observational Study, Eunju Kim, Kazuaki Mawatari, Seung-Hee Yoo, Zheng Chen
The Classification Of Obesity Based On Metabolic Status Redefines The Readmission Of Non-Hodgkin’S Lymphoma—An Observational Study, Eunju Kim, Kazuaki Mawatari, Seung-Hee Yoo, Zheng Chen
Faculty, Staff and Student Publications
Obesity is a known risk factor for metabolic diseases and is often associated with chronic inflammation in adipose tissue. We previously identified the polyethoxylated flavonoid Nobiletin (NOB) as a circadian clock modulator that directly binds to and activates the ROR receptors in the core oscillator, markedly improving metabolic fitness in obese mice. Here, we show that NOB enhanced the oscillation of core clock genes in differentiated 3T3-L1 adipocytes, including ROR target genes such as Bmal1, Cry1, Dec1, and Dec2. NOB inhibited lipid accumulation in 3T3-L1 and SVF cells, concomitant with the dysregulated circadian expression of adipogenic …
Structures Of Ctcf-Dna Complexes Including All 11 Zinc Fingers, Jie Yang, John R Horton, Bin Liu, Victor G Corces, Robert M Blumenthal, Xing Zhang, Xiaodong Cheng
Structures Of Ctcf-Dna Complexes Including All 11 Zinc Fingers, Jie Yang, John R Horton, Bin Liu, Victor G Corces, Robert M Blumenthal, Xing Zhang, Xiaodong Cheng
Faculty, Staff and Student Publications
The CCCTC-binding factor (CTCF) binds tens of thousands of enhancers and promoters on mammalian chromosomes by means of its 11 tandem zinc finger (ZF) DNA-binding domain. In addition to the 12-15-bp CORE sequence, some of the CTCF binding sites contain 5' upstream and/or 3' downstream motifs. Here, we describe two structures for overlapping portions of human CTCF, respectively, including ZF1-ZF7 and ZF3-ZF11 in complex with DNA that incorporates the CORE sequence together with either 3' downstream or 5' upstream motifs. Like conventional tandem ZF array proteins, ZF1-ZF7 follow the right-handed twist of the DNA, with each finger occupying and recognizing …
Beyond The Symptom: The Biology Of Fatigue, David M Raizen, Janet Mullington, Christelle Anaclet, Gerard Clarke, Hugo Critchley, Robert Dantzer, Ronald Davis, Kelly L Drew, Josh Fessel, Patrick M Fuller, Erin M Gibson, Mary Harrington, W Ian Lipkin, Elizabeth B Klerman, Nancy Klimas, Anthony L Komaroff, Walter Koroshetz, Lauren Krupp, Anna Kuppuswamy, Julie Lasselin, Laura D Lewis, Pierre J Magistretti, Heidi Y Matos, Christine Miaskowski, Andrew H Miller, Avindra Nath, Maiken Nedergaard, Mark R Opp, Marylyn D Ritchie, Dragana Rogulja, Asya Rolls, John D Salamone, Clifford Saper, Vicky Whittemore, Glenn Wylie, Jarred Younger, Phyllis C Zee, H Craig Heller
Beyond The Symptom: The Biology Of Fatigue, David M Raizen, Janet Mullington, Christelle Anaclet, Gerard Clarke, Hugo Critchley, Robert Dantzer, Ronald Davis, Kelly L Drew, Josh Fessel, Patrick M Fuller, Erin M Gibson, Mary Harrington, W Ian Lipkin, Elizabeth B Klerman, Nancy Klimas, Anthony L Komaroff, Walter Koroshetz, Lauren Krupp, Anna Kuppuswamy, Julie Lasselin, Laura D Lewis, Pierre J Magistretti, Heidi Y Matos, Christine Miaskowski, Andrew H Miller, Avindra Nath, Maiken Nedergaard, Mark R Opp, Marylyn D Ritchie, Dragana Rogulja, Asya Rolls, John D Salamone, Clifford Saper, Vicky Whittemore, Glenn Wylie, Jarred Younger, Phyllis C Zee, H Craig Heller
Faculty, Staff and Student Publications
A workshop titled "Beyond the Symptom: The Biology of Fatigue" was held virtually September 27-28, 2021. It was jointly organized by the Sleep Research Society and the Neurobiology of Fatigue Working Group of the NIH Blueprint Neuroscience Research Program. For access to the presentations and video recordings, see: https://neuroscienceblueprint.nih.gov/about/event/beyond-symptom-biology-fatigue. The goals of this workshop were to bring together clinicians and scientists who use a variety of research approaches to understand fatigue in multiple conditions and to identify key gaps in our understanding of the biology of fatigue. This workshop summary distills key issues discussed in this workshop and provides a …
Argininosuccinate Lyase Deficiency Causes Blood-Brain Barrier Disruption Via Nitric Oxide-Mediated Dysregulation Of Claudin Expression, Jordan Kho, Urszula Polak, Ming-Ming Jiang, John D Odom, Jill V Hunter, Saima M Ali, Lindsay C Burrage, Sandesh Cs Nagamani, Robia G Pautler, Hannah P Thompson, Akihiko Urayama, Zixue Jin, Brendan Lee
Argininosuccinate Lyase Deficiency Causes Blood-Brain Barrier Disruption Via Nitric Oxide-Mediated Dysregulation Of Claudin Expression, Jordan Kho, Urszula Polak, Ming-Ming Jiang, John D Odom, Jill V Hunter, Saima M Ali, Lindsay C Burrage, Sandesh Cs Nagamani, Robia G Pautler, Hannah P Thompson, Akihiko Urayama, Zixue Jin, Brendan Lee
Faculty, Staff and Student Publications
Nitric oxide (NO) is a critical signaling molecule that has been implicated in the pathogenesis of neurocognitive diseases. Both excessive and insufficient NO production have been linked to pathology. Previously, we have shown that argininosuccinate lyase deficiency (ASLD) is a novel model system to investigate cell-autonomous, nitric oxide synthase-dependent NO deficiency. Humans with ASLD are at increased risk for developing hyperammonemia due to a block in ureagenesis. However, natural history studies have shown that individuals with ASLD have multisystem disease including neurocognitive deficits that can be independent of ammonia. Here, using ASLD as a model of NO deficiency, we investigated …
Modulation Of The Proteostasis Network Promotes Tumor Resistance To Oncogenic Kras Inhibitors, Xiangdong Lv, Xuan Lu, Jin Cao, Qin Luo, Yao Ding, Fanglue Peng, Apar Pataer, Dong Lu, Dong Han, Eric Malmberg, Doug W Chan, Xiaoran Wang, Sara R Savage, Sufeng Mao, Jingjing Yu, Fei Peng, Liang Yan, Huan Meng, Laure Maneix, Yumin Han, Yiwen Chen, Wantong Yao, Eric C Chang, Andre Catic, Xia Lin, George Miles, Pengxiang Huang, Zheng Sun, Bryan Burt, Huamin Wang, Jin Wang, Qizhi Cathy Yao, Bing Zhang, Jack A Roth, Bert W O'Malley, Matthew J Ellis, Mothaffar F Rimawi, Haoqiang Ying, Xi Chen
Modulation Of The Proteostasis Network Promotes Tumor Resistance To Oncogenic Kras Inhibitors, Xiangdong Lv, Xuan Lu, Jin Cao, Qin Luo, Yao Ding, Fanglue Peng, Apar Pataer, Dong Lu, Dong Han, Eric Malmberg, Doug W Chan, Xiaoran Wang, Sara R Savage, Sufeng Mao, Jingjing Yu, Fei Peng, Liang Yan, Huan Meng, Laure Maneix, Yumin Han, Yiwen Chen, Wantong Yao, Eric C Chang, Andre Catic, Xia Lin, George Miles, Pengxiang Huang, Zheng Sun, Bryan Burt, Huamin Wang, Jin Wang, Qizhi Cathy Yao, Bing Zhang, Jack A Roth, Bert W O'Malley, Matthew J Ellis, Mothaffar F Rimawi, Haoqiang Ying, Xi Chen
Faculty, Staff and Student Publications
Despite substantial advances in targeting mutant KRAS, tumor resistance to KRAS inhibitors (KRASi) remains a major barrier to progress. Here, we report proteostasis reprogramming as a key convergence point of multiple KRASi-resistance mechanisms. Inactivation of oncogenic KRAS down-regulated both the heat shock response and the inositol-requiring enzyme 1α (IRE1α) branch of the unfolded protein response, causing severe proteostasis disturbances. However, IRE1α was selectively reactivated in an ER stress-independent manner in acquired KRASi-resistant tumors, restoring proteostasis. Oncogenic KRAS promoted IRE1α protein stability through extracellular signal-regulated kinase (ERK)-dependent phosphorylation of IRE1α, leading to IRE1α disassociation from 3-hydroxy-3-methylglutaryl reductase degradation (HRD1) E3-ligase. In …
Evidence Of Neurovascular Water Exchange And Endothelial Vascular Dysfunction In Schizophrenia: An Exploratory Study, Eric L Goldwaser, Danny J J Wang, Bhim M Adhikari, Joshua Chiappelli, Xingfeng Shao, Jiaao Yu, Tong Lu, Shuo Chen, Wyatt Marshall, Alexa Yuen, Mark Kvarta, Yizhou Ma, Xiaoming Du, Si Gao, Osamah Saeedi, Heather Bruce, Patrick Donnelly, Hugh O'Neill, Alan R Shuldiner, Braxton D Mitchell, Peter Kochunov, L Elliot Hong
Evidence Of Neurovascular Water Exchange And Endothelial Vascular Dysfunction In Schizophrenia: An Exploratory Study, Eric L Goldwaser, Danny J J Wang, Bhim M Adhikari, Joshua Chiappelli, Xingfeng Shao, Jiaao Yu, Tong Lu, Shuo Chen, Wyatt Marshall, Alexa Yuen, Mark Kvarta, Yizhou Ma, Xiaoming Du, Si Gao, Osamah Saeedi, Heather Bruce, Patrick Donnelly, Hugh O'Neill, Alan R Shuldiner, Braxton D Mitchell, Peter Kochunov, L Elliot Hong
Faculty, Staff and Student Publications
BACKGROUND AND HYPOTHESIS: Mounting evidence supports cerebrovascular contributions to schizophrenia spectrum disorder (SSD) but with unknown mechanisms. The blood-brain barrier (BBB) is at the nexus of neural-vascular exchanges, tasked with regulating cerebral homeostasis. BBB abnormalities in SSD, if any, are likely more subtle compared to typical neurological insults and imaging measures that assess large molecule BBB leakage in major neurological events may not be sensitive enough to directly examine BBB abnormalities in SSD.
STUDY DESIGN: We tested the hypothesis that neurovascular water exchange (Kw) measured by non-invasive diffusion-prepared arterial spin label MRI (n = 27 healthy controls [HC], n = …
Effects Of In Utero Etoh Exposure On 18s Ribosomal Rna Processing: Contribution To Fetal Alcohol Spectrum Disorder, Nune Darbinian, Gary L Gallia, Armine Darbinyan, Ekaterina Vadachkoria, Nana Merabova, Amos Moore, Laura Goetzl, Shohreh Amini, Michael E Selzer
Effects Of In Utero Etoh Exposure On 18s Ribosomal Rna Processing: Contribution To Fetal Alcohol Spectrum Disorder, Nune Darbinian, Gary L Gallia, Armine Darbinyan, Ekaterina Vadachkoria, Nana Merabova, Amos Moore, Laura Goetzl, Shohreh Amini, Michael E Selzer
Faculty, Staff and Student Publications
Fetal alcohol spectrum disorders (FASD) are leading causes of neurodevelopmental disability. The mechanisms by which alcohol (EtOH) disrupts fetal brain development are incompletely understood, as are the genetic factors that modify individual vulnerability. Because the phenotype abnormalities of FASD are so varied and widespread, we investigated whether fetal exposure to EtOH disrupts ribosome biogenesis and the processing of pre-ribosomal RNAs and ribosome assembly, by determining the effect of exposure to EtOH on the developmental expression of 18S rRNA and its cleaved forms, members of a novel class of short non-coding RNAs (srRNAs). In vitro neuronal cultures and fetal brains (11–22 …
Interoceptive Regulation Of Skeletal Tissue Homeostasis And Repair, Yao Xiao, Changhao Han, Yunhao Wang, Xinshu Zhang, Rong Bao, Yuange Li, Huajiang Chen, Bo Hu, Shen Liu
Interoceptive Regulation Of Skeletal Tissue Homeostasis And Repair, Yao Xiao, Changhao Han, Yunhao Wang, Xinshu Zhang, Rong Bao, Yuange Li, Huajiang Chen, Bo Hu, Shen Liu
Faculty, Staff and Student Publications
Recent studies have determined that the nervous system can sense and respond to signals from skeletal tissue, a process known as skeletal interoception, which is crucial for maintaining bone homeostasis. The hypothalamus, located in the central nervous system (CNS), plays a key role in processing interoceptive signals and regulating bone homeostasis through the autonomic nervous system, neuropeptide release, and neuroendocrine mechanisms. These mechanisms control the differentiation of mesenchymal stem cells into osteoblasts (OBs), the activation of osteoclasts (OCs), and the functional activities of bone cells. Sensory nerves extensively innervate skeletal tissues, facilitating the transmission of interoceptive signals to the CNS. …
A Two-Step Transcriptome Analysis Of The Human Heart Reveals Broad And Disease-Responsive Expression Of Ectopic Olfactory Receptors, Sadia Ashraf, O Howard Frazier, Sylvia Carranza, David D Mcpherson, Heinrich Taegtmeyer, Romain Harmancey
A Two-Step Transcriptome Analysis Of The Human Heart Reveals Broad And Disease-Responsive Expression Of Ectopic Olfactory Receptors, Sadia Ashraf, O Howard Frazier, Sylvia Carranza, David D Mcpherson, Heinrich Taegtmeyer, Romain Harmancey
Faculty, Staff and Student Publications
G-protein-coupled receptors (GPCRs) are critical regulators of cardiac physiology and a key therapeutic target for the treatment of heart disease. Ectopic olfactory receptors (ORs) are GPCRs expressed in extra-nasal tissues which have recently emerged as new mediators in the metabolic control of cardiac function. The goals of this study were to profile OR gene expression in the human heart, to identify ORs dysregulated by heart failure caused by ischemic cardiomyopathy, and to provide evidence suggestive of a role for those altered ORs in the pathogenesis of heart failure. Left ventricular tissue from heart failure patients (