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Articles 931 - 960 of 15618
Full-Text Articles in Entire DC Network
Evaluating Molecular And Immune Biomarkers In Predicting Bladder Cancer Recurrence And Survival: A Systematic Review, Saad Masood, Abdullah Shaikh, Yasin Brar
Evaluating Molecular And Immune Biomarkers In Predicting Bladder Cancer Recurrence And Survival: A Systematic Review, Saad Masood, Abdullah Shaikh, Yasin Brar
Faculty, Staff and Students Publications
This systematic review comprehensively evaluates current evidence on molecular and biochemical biomarkers for predicting recurrence and prognosis in bladder cancer. A literature search was conducted across PubMed, Scopus, and Web of Science databases up to September 2025, identifying 347 records. After rigorous screening and eligibility assessment, five studies met the inclusion criteria. The included research encompassed a range of biomarker types, including circulating tumor DNA (ctDNA), immune infiltration markers, methylation signatures, systemic inflammatory indices, and gene expression-based predictive models such as COXEN. Despite heterogeneity in study designs, methodologies, and endpoints, consistent findings indicated that integrated molecular profiling substantially improves the …
Pkr-Driven Isr Signaling Controls Synaptic Translation And Structural Plasticity In An Age-Dependent Manner, Nicolás W Martínez, Felipe Gómez, Ariel Tapia-Godoy, Juan Francisco Roa, Fernanda Moreso-Contreras, Yuwei Liu, Claudia Jara, Cheril Tapia-Rojas, Iván Alfaro, Mauro Costa-Mattioli, Soledad Matus
Pkr-Driven Isr Signaling Controls Synaptic Translation And Structural Plasticity In An Age-Dependent Manner, Nicolás W Martínez, Felipe Gómez, Ariel Tapia-Godoy, Juan Francisco Roa, Fernanda Moreso-Contreras, Yuwei Liu, Claudia Jara, Cheril Tapia-Rojas, Iván Alfaro, Mauro Costa-Mattioli, Soledad Matus
Faculty, Staff and Students Publications
The integrated stress response (ISR) modulates protein homeostasis in response to both intracellular and extracellular signals. The four kinases involved in the ISR all phosphorylate the same target, the alpha subunit of eukaryotic initiation factor 2 (eIF2α), to integrate various stress signals, thereby regulating cell fate. The activation of the ISR reprograms the proteome by inhibiting general protein synthesis while increasing the translation of specific mRNAs. In the brain, the ISR regulates the type of synaptic plasticity necessary for forming long-term memory. More importantly, the activation of the ISR has emerged as a causal mechanism underlying cognitive decline associated with …
Myeloid-Specific Camkk2 Deficiency Protects Against Diet-Induced Obesity And Insulin Resistance By Rewiring Metabolic Gene Expression And Enhancing Energy Expenditure, Andrea R Ortiz, Kevin Nay, Brittany A Stork, Adam M Dean, Sean M Hartig, Cristian Coarfa, Surafel Tegegne, Christopher Rm Asquith, Daniel E Frigo, Brian York, Anthony R Means, Mark A Febbraio, John W Scott
Myeloid-Specific Camkk2 Deficiency Protects Against Diet-Induced Obesity And Insulin Resistance By Rewiring Metabolic Gene Expression And Enhancing Energy Expenditure, Andrea R Ortiz, Kevin Nay, Brittany A Stork, Adam M Dean, Sean M Hartig, Cristian Coarfa, Surafel Tegegne, Christopher Rm Asquith, Daniel E Frigo, Brian York, Anthony R Means, Mark A Febbraio, John W Scott
Faculty, Staff and Students Publications
Objective: Obesity is associated with chronic, low-grade inflammation in metabolic tissues such as liver, adipose tissue and skeletal muscle implicating insulin resistance and type 2 diabetes as inflammatory diseases. This inflammatory response involves the accumulation of pro-inflammatory macrophages in these metabolically relevant organs. The Ca2+-calmodulin-dependent protein kinase kinase-2 (CAMKK2) is a key regulator of cellular and systemic energy metabolism, and a coordinator of macrophage-mediated inflammatory responses. However, its role in obesity-associated metabolic dysfunction is not fully defined. The aim of this study was to determine the contribution of CAMKK2 to the regulation of inflammation and systemic metabolism during diet-induced obesity. …
Sensory-Selective Peripheral And Neuraxial Nerve Blockade With 2',6'-Pipecoloxylidide, Claire A Ostertag-Hill, Shuanglong Chen, Tianrui Xue, Rachelle Shao, Matthew Torre, Bin Feng, Zahra Vahedi, Longtu Chen, Steven J Staffa, Yueqin Zheng, Daniel S Kohane
Sensory-Selective Peripheral And Neuraxial Nerve Blockade With 2',6'-Pipecoloxylidide, Claire A Ostertag-Hill, Shuanglong Chen, Tianrui Xue, Rachelle Shao, Matthew Torre, Bin Feng, Zahra Vahedi, Longtu Chen, Steven J Staffa, Yueqin Zheng, Daniel S Kohane
Duncan NRI Faculty and Staff Publications
Background: Safe sensory-selective local anesthetics would be a major advance in the management of acute and chronic pain. This articles describes the sensory-selective local anesthetic properties and the toxicity profile of a known metabolite of amino-amide local anesthetics, 2',6'-pipecoloxylidide (PPX).
Methods: PPX was synthesized and made into its hydrochloride salt. PPX or ropivacaine (ROP) were injected at the sciatic nerve or intrathecally in rats, who then underwent modified hotplate (sensory) testing and weight-bearing (motor) testing. Rats injected with PPX or ROP were assessed for clinical toxicity endpoints. Conduction blockade was studied with single-unit recordings in mice. Biocompatibility was assessed histologically. …
Apol2 Stabilizes Ku80 To Confer Nhej-Mediated Radioresistance In Gastric Cancer, Dan Zu, Qimei Bao, Hanyi He, Yuke Zhong, Mingcong Deng, Yangchan Hu, Chunkai Zhang, Chen Liang, Yixing Huang, Haidong Liu, Xiao Li, Yanhua He, Guoyan Luo, Weixin Wu, Fenghui Guan, Shengfeng Xu, Min Liu, Albino Bacolla, Ji Jing, Yian Du, John A Tainer, Yin Shi, Zu Ye, Xiangdong Cheng
Apol2 Stabilizes Ku80 To Confer Nhej-Mediated Radioresistance In Gastric Cancer, Dan Zu, Qimei Bao, Hanyi He, Yuke Zhong, Mingcong Deng, Yangchan Hu, Chunkai Zhang, Chen Liang, Yixing Huang, Haidong Liu, Xiao Li, Yanhua He, Guoyan Luo, Weixin Wu, Fenghui Guan, Shengfeng Xu, Min Liu, Albino Bacolla, Ji Jing, Yian Du, John A Tainer, Yin Shi, Zu Ye, Xiangdong Cheng
Faculty, Staff and Student Publications
Radiotherapy is one of the most important adjuvant treatment methods for gastric cancer (GC). However, radioresistance remains a major clinical obstacle. In this study, APOL2 is identified as a key player in promoting non-homologous end joining (NHEJ)-mediated double-strand break (DSB) repair and enhancing radioresistance in GC. Bioinformatics and clinical data revealed that high APOL2 expression is correlated with poor prognosis in GC patients. Functional experiments showed that APOL2 overexpression enhances genomic stability by accelerating DSB repair via the NHEJ pathway, while APOL2 knockout impairs repair capacity. Mechanistically, APOL2 binds to and stabilizes Ku80 by enhancing USP7-mediated deubiquitylation, thereby increasing Ku80 …
Multiomic And Electrophysiologic Analyses Reveal That An Inherited Mrc2 Variant Causes Fibroblast Dysfunction And Increased Atrial Fibrillation Susceptibility, Kevin S Ho, Joshua A Keefe, Shuai Zhao, Mohit M Hulsurkar, Sung Yun Jung, Md Abul Hassan Samee, Xander H T Wehrens
Multiomic And Electrophysiologic Analyses Reveal That An Inherited Mrc2 Variant Causes Fibroblast Dysfunction And Increased Atrial Fibrillation Susceptibility, Kevin S Ho, Joshua A Keefe, Shuai Zhao, Mohit M Hulsurkar, Sung Yun Jung, Md Abul Hassan Samee, Xander H T Wehrens
Faculty, Staff and Students Publications
A recent study identified a rare variant in the mannose receptor C type 2 (MRC2) gene in individuals with familial reentrant supraventricular tachycardia, a Wolff-Parkinson-White (WPW) electrocardiogram pattern, and structurally normal hearts. WPW syndrome is associated with atrial fibrillation (AF), and MRC2 was recently proposed as a protective gene for AF. We determined whether the E990G-heterozygous (het) loss-of-function variant in Mrc2 increases AF susceptibility and identified aberrant cellular mechanisms resulting from Mrc2 deficiency in atrial cardiofibroblasts (ACFs) and atrial tissue in mice that may promote AF. Programmed electrical stimulation was performed to determine AF susceptibility in Mrc2 E990G-het …
Molecular Mechanisms In Masld/Mash-Related Hcc, Xiaobo Wang, Liang Zhang, Bingning Dong
Molecular Mechanisms In Masld/Mash-Related Hcc, Xiaobo Wang, Liang Zhang, Bingning Dong
Faculty, Staff and Students Publications
Liver cancer is the third leading cause of cancer-related deaths and ranks as the sixth most prevalent cancer type globally. NAFLD or metabolic dysfunction-associated steatotic liver disease, and its more severe manifestation, NASH or metabolic dysfunction-associated steatohepatitis (MASH), pose a significant global health concern, affecting approximately 20%-25% of the population. The increased prevalence of metabolic dysfunction-associated steatotic liver disease and MASH is parallel to the increasing rates of obesity-associated metabolic diseases, including type 2 diabetes, insulin resistance, and fatty liver diseases. MASH can progress to MASH-related HCC (MASH-HCC) in about 2% of cases each year, influenced by various factors such …
Single-Nucleus Mrna-Sequencing Reveals Dynamics Of Lipogenic And Thermogenic Adipocyte Populations In Murine Brown Adipose Tissue In Response To Cold Exposure, Janina Behrens, Tongtong Wang, Christoph Kilian, Anna Worthmann, Mark A Herman, Joerg Heeren, Lorenz Adlung, Ludger Scheja
Single-Nucleus Mrna-Sequencing Reveals Dynamics Of Lipogenic And Thermogenic Adipocyte Populations In Murine Brown Adipose Tissue In Response To Cold Exposure, Janina Behrens, Tongtong Wang, Christoph Kilian, Anna Worthmann, Mark A Herman, Joerg Heeren, Lorenz Adlung, Ludger Scheja
Faculty, Staff and Students Publications
Objective and methods: Brown adipose tissue (BAT) comprises a heterogeneous population of adipocytes and non-adipocyte cell types. To characterize these cellular subpopulations and their adaptation to cold, we performed single-nucleus mRNA-sequencing (snRNA-seq) on interscapular BAT from mice maintained at room temperature or exposed to acute (24h) or chronic (10 days) cold (6 °C). To investigate the role of the de novo lipogenesis (DNL)-regulating transcription factor carbohydrate response element-binding protein (ChREBP), we analyzed control and brown adipocyte-specific ChREBP knockout mice.
Results: We identified different cell populations, including seven brown adipocyte subtypes with distinct metabolic profiles. One of them highly expressed ChREBP …
Dysregulated Mitochondrial Energy Metabolism Drives The Progression Of Mucosal Field Effects To Invasive Bladder Cancer, Sangkyou Lee, Sung Yun Jung, Pawel Kuś, Jolanta Bondaruk, June Goo Lee, Roman Jaksik, Nagireddy Putluri, Khanh N Dinh, David Cogdell, Huiqin Chen, Yishan Wang, Jiansong Chen, Neema Navai, Colin Dinney, Cathy Mendelsohn, David Mcconkey, Richard R Behringer, Charles C Guo, Peng Wei, Marek Kimmel, Bogdan Czerniak
Dysregulated Mitochondrial Energy Metabolism Drives The Progression Of Mucosal Field Effects To Invasive Bladder Cancer, Sangkyou Lee, Sung Yun Jung, Pawel Kuś, Jolanta Bondaruk, June Goo Lee, Roman Jaksik, Nagireddy Putluri, Khanh N Dinh, David Cogdell, Huiqin Chen, Yishan Wang, Jiansong Chen, Neema Navai, Colin Dinney, Cathy Mendelsohn, David Mcconkey, Richard R Behringer, Charles C Guo, Peng Wei, Marek Kimmel, Bogdan Czerniak
Faculty, Staff and Students Publications
Multiplatform mutational and gene expression profiling complemented with proteomic and metabolomic spatial mapping were used on the whole-organ scale to identify the molecular profile of bladder cancer evolution from field effects. Analysis of the mutational landscape identified three types of mutations, referred to as α, β, and γ. Time modeling of the mutations revealed that carcinogenesis may span 30 years and can be divided into dormant and progressive phases. The α mutations developed in the dormant phase. The progressive phase lasted 5 years and was signified by expanding β mutations, but it was driven to invasive cancer by γ mutations. …
Centrally Inserted Central Catheter Placement Using A Novel, Handheld, Image-Guided, Robotic Device: Results Of Initial Feasibility Trial In Patients, James P Herlihy, William E Cohn, Adrian Ebner
Centrally Inserted Central Catheter Placement Using A Novel, Handheld, Image-Guided, Robotic Device: Results Of Initial Feasibility Trial In Patients, James P Herlihy, William E Cohn, Adrian Ebner
Faculty, Staff and Students Publications
Background: Central venous access devices (CVADs) are an essential and widely used tool for the treatment of the critically ill, patients undergoing major surgery, and for many patients requiring hemodialysis. Automation of centrally inserted central catheters (CICCs) could potentially make CVAD placement safer, more effective, and more accessible. A new device that uses ultrasound image-guided, robotic needle placement, in addition to traditional Seldinger technique, to place a CICC is described.
Objective: The device was used in a small, first-in-human, trial for placing non-tunneled hemodialysis catheters (NTHDCs), in order to determine feasibility of clinical use.
Methods: Consecutive patients requiring a NTHDC, …
Pathogenic Xpo1 Variants Cause A Dominant Neurodevelopmental Disorder, Amber S E Van Oirsouw, Pavla Nedbalova, Miroslava Hancarova, Jan Prchal, Darina Prchalova, Marketa Vlckova, Sarka Bendova, Kristin G Monaghan, Lisa M Dyer, Yanmin Chen, Deanna Alexis Carere, Emma A M Te Bogt, Heather Fisher, Angela E Scheuerle, Stephanie Riley, Mahim Jain, Weiyi Mu, Joann N Bodurtha, Albertien M Van Eerde, Marijn F Stokman, Nicola Longo, Meena Balasubramanian, Michael Spiller, Gregory Costain, Charlotte Von Der Lippe, Kristian Tveten, Marianne Jortveit, Øystein L Holla, Bertrand Isidor, Benjamin Cogné, Kevin E Glinton, Blake Vuocolo, Roberta Ann Sierra, Brad Angle, Kelly Bontempo, Klaas Koop, Rachel Rabin, John Pappas, David A Staffenberg, Pascal Joset, Peter Miny, Isabel Filges, Abdulrazak Alali, Kara Vitalone, Jill A Rosenfeld, Weimin Bi, Samuel Bradbrook, Renee Perrier, Subhadra Ramanathan, June-Anne Gold, María Palomares Bralo, María Ángeles Gómez-Cano, Ann Haskins Olney, Shelly Nielsen, Alban Ziegler, Dominique Bonneau, Clément Prouteau, Ange-Line Bruel, Charlotte Caille-Benigni, Laëtitia Lambert, Andrea C Yu, Nathaniel H Robin, Dana Goodloe, Jan Fischer, Joseph Porrmann, Yvonne D Hennig, Rami Abou Jamra, Isabella Herman, Ivy R Johnson, Lucas Hérissant, Guillaume Jouret, Koen L I Van Gassen, Ellen Van Binsbergen, Bert Van Der Zwaag, Alwin Kamermans, Renske Oegema, Zdenek Sedlacek, Michaela Fenckova, Richard H Van Jaarsveld
Pathogenic Xpo1 Variants Cause A Dominant Neurodevelopmental Disorder, Amber S E Van Oirsouw, Pavla Nedbalova, Miroslava Hancarova, Jan Prchal, Darina Prchalova, Marketa Vlckova, Sarka Bendova, Kristin G Monaghan, Lisa M Dyer, Yanmin Chen, Deanna Alexis Carere, Emma A M Te Bogt, Heather Fisher, Angela E Scheuerle, Stephanie Riley, Mahim Jain, Weiyi Mu, Joann N Bodurtha, Albertien M Van Eerde, Marijn F Stokman, Nicola Longo, Meena Balasubramanian, Michael Spiller, Gregory Costain, Charlotte Von Der Lippe, Kristian Tveten, Marianne Jortveit, Øystein L Holla, Bertrand Isidor, Benjamin Cogné, Kevin E Glinton, Blake Vuocolo, Roberta Ann Sierra, Brad Angle, Kelly Bontempo, Klaas Koop, Rachel Rabin, John Pappas, David A Staffenberg, Pascal Joset, Peter Miny, Isabel Filges, Abdulrazak Alali, Kara Vitalone, Jill A Rosenfeld, Weimin Bi, Samuel Bradbrook, Renee Perrier, Subhadra Ramanathan, June-Anne Gold, María Palomares Bralo, María Ángeles Gómez-Cano, Ann Haskins Olney, Shelly Nielsen, Alban Ziegler, Dominique Bonneau, Clément Prouteau, Ange-Line Bruel, Charlotte Caille-Benigni, Laëtitia Lambert, Andrea C Yu, Nathaniel H Robin, Dana Goodloe, Jan Fischer, Joseph Porrmann, Yvonne D Hennig, Rami Abou Jamra, Isabella Herman, Ivy R Johnson, Lucas Hérissant, Guillaume Jouret, Koen L I Van Gassen, Ellen Van Binsbergen, Bert Van Der Zwaag, Alwin Kamermans, Renske Oegema, Zdenek Sedlacek, Michaela Fenckova, Richard H Van Jaarsveld
Faculty, Staff and Students Publications
Purpose: XPO1 functions in key cellular processes, including nucleo-cytoplasmic export and mitosis. The gene is deleted in a subset of patients with the 2p15p16.1 microdeletion syndrome; however, no monogenic XPO1-related disorder has been described to date.
Methods: We collected clinical data of individuals with de novo XPO1 variants through online matchmaking. We used Drosophila to study XPO1 function in development and habituation learning.
Results: A total of 22 individuals met the criteria to be included in the main study cohort. Of these, half have putative loss-of-function variants, and half have coding variants (10 missense and 1 in-frame deletion variant). We …
Coco-St Detects Global And Local Biological Structures In Spatial Transcriptomics Datasets, Muhammad Aminu, Bo Zhu, Natalie Vokes, Hong Chen, Lingzhi Hong, Jianrong Li, Junya Fujimoto, Mehdi Chaib, Yuqiu Yang, Bo Wang, Alissa Poteete, Monique B Nilsson, Xiuning Le, Tina Cascone, David Jaffray, Nicholas Navin, Tao Wang, Lauren A Byers, Don L Gibbons, John Heymach, Ken Chen, Chao Cheng, Jianjun Zhang, Jia Wu
Coco-St Detects Global And Local Biological Structures In Spatial Transcriptomics Datasets, Muhammad Aminu, Bo Zhu, Natalie Vokes, Hong Chen, Lingzhi Hong, Jianrong Li, Junya Fujimoto, Mehdi Chaib, Yuqiu Yang, Bo Wang, Alissa Poteete, Monique B Nilsson, Xiuning Le, Tina Cascone, David Jaffray, Nicholas Navin, Tao Wang, Lauren A Byers, Don L Gibbons, John Heymach, Ken Chen, Chao Cheng, Jianjun Zhang, Jia Wu
Faculty, Staff and Students Publications
Spatial domain detection methods often focus on high-variance structures, such as tumour-adjacent regions with sharp gene expression changes, while missing low-variance structures with subtle gene expression shifts, like those between adjacent normal and early adenoma regions. Here, to address this, we introduce ‘compare and contrast spatial transcriptomics’ (CoCo-ST), a graph contrastive feature representation framework. By comparing a target sample with a background sample, CoCo-ST detects both high-variance, broadly shared structures and low-variance, tissue-specific features. It offers technical advantages, including multisample integration, batch-effect correction and scalability across technologies from spot-level Visium data to single-cell Xenium Prime 5K and subcellular Visium HD …
Information Theory Analysis Of Ctx Shows Consistent Clinical Presentation, Jennifer Hanson, Penelope E Bonnen
Information Theory Analysis Of Ctx Shows Consistent Clinical Presentation, Jennifer Hanson, Penelope E Bonnen
Faculty, Staff and Students Publications
Cerebrotendinous xanthomatosis (CTX) is a rare, metabolic disorder caused by pathogenic variants in CYP27A1. The classic clinical presentation includes infantile-onset chronic diarrhea, juvenile-onset bilateral cataracts, with development of tendon xanthomas and progressive neurological dysfunction. These multisystem clinical features typically appear in different decades of life often confounding diagnosis of CTX. Further complicating diagnosis is the generally held belief that the clinical presentation of CTX varies highly between individuals and even within families. We applied information theory analyses to CTX patient data to quantitatively assess clinical variability in CTX. We conducted a systematic review of the literature to identify all CTX …
Chemical Modulation Of Gut Bacterial Metabolism Induces Colanic Acid And Extends The Lifespan Of Nematode And Mammalian Hosts, Guo Hu, Marzia Savini, Matthew Brandon Cooke, Xin Wei, Dinghuan Deng, Shihong M Gao, Ruyue Alps Xia, Youchen Guan, Alice X Wen, Xin Yu, Jin Wang, Chao Jiang, Christophe Herman, Jiefu Li, Meng C Wang
Chemical Modulation Of Gut Bacterial Metabolism Induces Colanic Acid And Extends The Lifespan Of Nematode And Mammalian Hosts, Guo Hu, Marzia Savini, Matthew Brandon Cooke, Xin Wei, Dinghuan Deng, Shihong M Gao, Ruyue Alps Xia, Youchen Guan, Alice X Wen, Xin Yu, Jin Wang, Chao Jiang, Christophe Herman, Jiefu Li, Meng C Wang
Faculty, Staff and Students Publications
Microbiota-derived metabolites have emerged as key regulators of longevity. The metabolic activity of the gut microbiota, influenced by dietary components and ingested chemical compounds, profoundly impacts host fitness. While the benefits of dietary prebiotics are well-known, chemically targeting the gut microbiota to enhance host fitness remains largely unexplored. Here, we report a novel chemical approach to induce a pro-longevity bacterial metabolite in the host gut. We discovered that wild-type Escherichia coli strains overproduce colanic acids (CAs) when exposed to a low dose of cephaloridine, leading to an increased life span in the host organism Caenorhabditis elegans. In the mouse gut, …
Runx2 Cooperates With Srebp1 To Rewire Cancer Metabolism And Promote Aggressiveness, Emanuele Vitale, Mila Gugnoni, Veronica Manicardi, Silvia Muccioli, Federica Torricelli, Benedetta Donati, Simonetta Piana, Gloria Manzotti, Elisa Salviato, Francesca Reggiani, Cristian Ascione, Rebecca Vezzani, Moira Ragazzi, Mattia Forcato, Oriana Romano, Silvio Bicciato, Aaron Goldman, Marco Tigano, Alessia Ciarrocchi
Runx2 Cooperates With Srebp1 To Rewire Cancer Metabolism And Promote Aggressiveness, Emanuele Vitale, Mila Gugnoni, Veronica Manicardi, Silvia Muccioli, Federica Torricelli, Benedetta Donati, Simonetta Piana, Gloria Manzotti, Elisa Salviato, Francesca Reggiani, Cristian Ascione, Rebecca Vezzani, Moira Ragazzi, Mattia Forcato, Oriana Romano, Silvio Bicciato, Aaron Goldman, Marco Tigano, Alessia Ciarrocchi
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Embryonic Transcription Factors (TFs) are often reactivated in cancer, driving developmental gene programs that support phenotypic plasticity. Metabolic adaptation fuels this plasticity by supplying energy and molecular building blocks for growth. RUNX2, the master regulator of bone morphogenesis, is ectopically expressed in epithelial cancer, promoting metastasis through trans-differentiation processes like Epithelial-to-Mesenchymal Transition (EMT) and osteomimicry. By combining omics data with functional validation, we demonstrated that RUNX2 drives cancer cell metabolic rewiring by repressing mitochondrial respiration while promoting anabolic processes. We showed that RUNX2 upregulates key genes of lipid biosynthesis by regulating and cooperating with SREBP1. In vivo expression analysis in …
Urinary Vitamin D Binding Protein And Kidney Injury Molecule-1 Are Potent Predictors Of Acute Kidney Injury After Left Ventricular Assist Device Implantation, Shiyi Li, Iván Murrieta-Álvarez, Katherine V Nordick, Zachary Gray, Camila Hochman-Mendez, Alexis E Shafii, Kenneth K Liao, Carl P Walther, Nandan K Mondal
Urinary Vitamin D Binding Protein And Kidney Injury Molecule-1 Are Potent Predictors Of Acute Kidney Injury After Left Ventricular Assist Device Implantation, Shiyi Li, Iván Murrieta-Álvarez, Katherine V Nordick, Zachary Gray, Camila Hochman-Mendez, Alexis E Shafii, Kenneth K Liao, Carl P Walther, Nandan K Mondal
Faculty, Staff and Students Publications
Background/Objectives: Acute kidney injury (AKI) is a frequent and serious complication following left ventricular assist device (LVAD) implantation. This study aimed to predict AKI within 90 days post-LVAD by evaluating urinary levels of vitamin D binding protein (VDBP) and kidney injury molecule-1 (KIM-1).
Methods: We prospectively enrolled 29 advanced heart failure patients undergoing LVAD implantation and categorized them into four groups based on pre-LVAD kidney function and hemodynamic stability. Early-morning urine samples were collected 24 h before and 1 week after surgery. Urinary VDBP and KIM-1 levels, normalized to creatinine, were measured.
Results: Thirteen patients developed AKI …
Distinct Molecular Responses Of Human Intestinal Organoids To Proton And Photon Radiation, Victoria Poplaski, Tajhal D Patel, Hoa Nguyen-Phuc, Amal Kambal, Lawrence Bronk, Mary K Estes, Cristian Coarfa, Sarah E Blutt
Distinct Molecular Responses Of Human Intestinal Organoids To Proton And Photon Radiation, Victoria Poplaski, Tajhal D Patel, Hoa Nguyen-Phuc, Amal Kambal, Lawrence Bronk, Mary K Estes, Cristian Coarfa, Sarah E Blutt
Faculty, Staff and Students Publications
Radiation exposure impairs rapidly renewing tissues like the intestinal epithelium, yet translational insights from murine models have been limited by species-specific responses. Here, we use human intestinal organoids (HIOs) derived from jejunal epithelium to evaluate human epithelial responses to low dose proton and photon (gamma) radiation. Gamma irradiation induces a unique developmental and metabolic shift in crypt-like organoids, including enrichment of amino acid metabolism pathways and activation of fetal-associated transcription factors and morphology. Integrated multi-omic profiling reveals serotonin biosynthesis as a central regenerative node. Human intestinal organoids can complement animal models and are emerging as a powerful tool in modeling …
Rebound Bursting Selectively Enables Fast Dynamics In Dopamine Midbrain Neurons Projecting To The Dorsolateral Striatum, Strahinja Stojanovic, Christopher J. Knowlton, Richard Egger-Mackrodt, Johanna Mankel, Josef Shin, Stephan Lammel, Carmen C. Canavier, Jochen Roeper
Rebound Bursting Selectively Enables Fast Dynamics In Dopamine Midbrain Neurons Projecting To The Dorsolateral Striatum, Strahinja Stojanovic, Christopher J. Knowlton, Richard Egger-Mackrodt, Johanna Mankel, Josef Shin, Stephan Lammel, Carmen C. Canavier, Jochen Roeper
School of Graduate Studies Faculty Publications
Dopamine (DA) midbrain neurons are involved in a wide array of key brain functions including movement control and reward-based learning. They are also critical for major brain disorders such as Parkinson's disease or schizophrenia. DA neurons projecting to distinct striatal territories are diverse with regard to their molecular makeup and cellular physiology, which are likely to contribute to the observed differences in temporal DA dynamics. Among these regions, the dorsolateral striatum (DLS) displays the fastest DA dynamics, which might control the moment-to-moment vigor and variability of voluntary movements. However, the underlying mechanisms for these DLS-specific fast DA fluctuations are unresolved. …
Epdevatlas: Mapping Gabaergic Cells And Microglia In The Early Postnatal Mouse Brain, Josephine K. Liwang, Fae N. Kronman, Hyun-Jae Pi, Yuan-Ting Wu, Daniel J. Vanselow, Steffy B. Manjila, Deniz Parmaksiz, Donghui Shin, Yoav Ben-Simon, Michael Taormina, Sharon W. Way, Hongkui Zeng, Bosiljka Tasic, Lydia Ng, Yongsoo Kim
Epdevatlas: Mapping Gabaergic Cells And Microglia In The Early Postnatal Mouse Brain, Josephine K. Liwang, Fae N. Kronman, Hyun-Jae Pi, Yuan-Ting Wu, Daniel J. Vanselow, Steffy B. Manjila, Deniz Parmaksiz, Donghui Shin, Yoav Ben-Simon, Michael Taormina, Sharon W. Way, Hongkui Zeng, Bosiljka Tasic, Lydia Ng, Yongsoo Kim
School of Graduate Studies Faculty Publications
During development, brain regions follow encoded growth trajectories. Compared to classical brain growth charts, high-definition growth charts could quantify regional volumetric growth and constituent cell types, improving our understanding of typical and pathological brain development. Here, we create high-resolution 3D atlases of the early postnatal mouse brain, using Allen CCFv3 anatomical labels, at postnatal days (P) 4, 6, 8, 10, 12, and 14, and determine the volumetric growth of different brain regions. We utilize 11 different cell type-specific transgenic animals to validate and refine anatomical labels. Moreover, we reveal region-specific density changes in γ-aminobutyric acid-producing (GABAergic) neurons, cortical layer-specific cell …
Translational Framework Linking Perfluoroheptanoic Acid (Pfhpa) Exposure To Metabolic Dysfunction Associated Steatotic Liver Disease In Adolescents, Brittney O Baumert, Ana C Maretti-Mira, Douglas I Walker, Zhenjiang Li, Nikos Stratakis, Hongxu Wang, Yinqi Zhao, Fabian Christoph Fischer, Qiran Jia, Damaskini Valvi, Scott M Bartell, Jiawen Carmen Chen, Thomas Inge, Justin R Ryder, Todd Jenkins, Stephanie Sisley, Stavra Xanthakos, David E Kleiner, Rohit Kohli, Sarah Rock, Sandrah P Eckel, Michele A La Merrill, Max M Aung, Matthew P Salomon, Rob Mcconnell, Jesse Goodrich, David V Conti, Lucy Golden-Mason, Lida Chatzi
Translational Framework Linking Perfluoroheptanoic Acid (Pfhpa) Exposure To Metabolic Dysfunction Associated Steatotic Liver Disease In Adolescents, Brittney O Baumert, Ana C Maretti-Mira, Douglas I Walker, Zhenjiang Li, Nikos Stratakis, Hongxu Wang, Yinqi Zhao, Fabian Christoph Fischer, Qiran Jia, Damaskini Valvi, Scott M Bartell, Jiawen Carmen Chen, Thomas Inge, Justin R Ryder, Todd Jenkins, Stephanie Sisley, Stavra Xanthakos, David E Kleiner, Rohit Kohli, Sarah Rock, Sandrah P Eckel, Michele A La Merrill, Max M Aung, Matthew P Salomon, Rob Mcconnell, Jesse Goodrich, David V Conti, Lucy Golden-Mason, Lida Chatzi
Faculty, Staff and Students Publications
Background: The rising prevalence of metabolic dysfunction-associated steatotic liver disease (MASLD), particularly among pediatric populations, requires identification of modifiable risk factors to control disease progression. Per- and polyfluoroalkyl substances (PFAS) have emerged as potential contributors to liver damage; however, their role in MASLD remains underexplored. This study aimed to develop a translational framework integrating human and in vitro data to elucidate the effect of PFAS on MASLD development.
Methods: We measured PFAS plasma levels in the Teen-LABS cohort (n = 136), comprising adolescents with obesity (mean age = 16.8 years) undergoing bariatric surgery. Plasma samples were also analyzed using proteomic …
Microglia Sensing Of Peripheral Signals That Bridge The Brain And Body, Claire E Young, Melanie A Samuel
Microglia Sensing Of Peripheral Signals That Bridge The Brain And Body, Claire E Young, Melanie A Samuel
Faculty, Staff and Students Publications
Microglia are the resident immune cell of the brain, and alterations in microglia signaling have been implicated in many neurodegenerative disorders. While microglia responses to central cues and other brain cell types are well documented, studies are increasingly investigating the impact of peripherally derived signals on microglia function. A diverse array of peripheral cues, including dietary components, hormones, and bacteria metabolites and components from the microbiome cross the blood brain barrier and directly influence microglia state through ligand-receptor interactions. This review highlights the complexity of brain-body interactions from the perspective of microglia function and proposes the idea that microglia could …
Fastk Post-Transcriptional Regulators – A ‘Fast-Track’ In Mitochondrial Gene Expression, Justin Van Riper, Bridget J Corsaro, Monica C Pillon
Fastk Post-Transcriptional Regulators – A ‘Fast-Track’ In Mitochondrial Gene Expression, Justin Van Riper, Bridget J Corsaro, Monica C Pillon
Faculty, Staff and Students Publications
Fas-activated serine/threonine kinase (FASTK) proteins comprise one of the largest families of mitochondrial post-transcriptional regulators. Members are classified based on their conserved C-terminus, which shows homology with the PD-(D/E)XK superfamily of endoribonucleases. However, it is still uncertain which of these FASTK members are catalytic. The six human FASTK homologs rely on their RNA-binding activity to regulate distinct stages of mitochondrial gene expression, including early processing of nascent RNA, 3'-end messenger RNA (mRNA) maturation, ribosomal RNA (rRNA) modification, mRNA stability, and translation. Genetic and genomic studies have highlighted the crucial role of FASTK proteins in balancing the mitochondrial transcriptome and controlling …
Nasal Microbionts Differentially Colonize And Elicit Cytokines In Human Nasal Epithelial Organoids, Andrea I Boyd, Leah A Kafer, Isabel F Escapa, Amal Kambal, Hira Tariq, Susan G Hilsenbeck, Hoa Nguyen-Phuc, Anubama Rajan, Joshua M Lensmire, Kathryn A Patras, Pedro A Piedra, Sarah E Blutt, Katherine P Lemon
Nasal Microbionts Differentially Colonize And Elicit Cytokines In Human Nasal Epithelial Organoids, Andrea I Boyd, Leah A Kafer, Isabel F Escapa, Amal Kambal, Hira Tariq, Susan G Hilsenbeck, Hoa Nguyen-Phuc, Anubama Rajan, Joshua M Lensmire, Kathryn A Patras, Pedro A Piedra, Sarah E Blutt, Katherine P Lemon
Faculty, Staff and Students Publications
Nasal colonization by Staphylococcus aureus or Streptococcus pneumoniae is associated with an increased risk of infection by these pathobionts, whereas nasal colonization by Dolosigranulum species is associated with health. Human nasal epithelial organoids (HNOs) differentiated at air-liquid interface (ALI) physiologically recapitulate human nasal respiratory epithelium with a robust mucociliary blanket. Due to their natural stem-like properties, HNO lines are a long-term experimental resource that offers genetic diversity based on the different donors. To develop HNOs as a new model system for bacterial nasal colonization, we reproducibly monocolonized HNOs differentiated at ALI with S. aureus, S. pneumoniae, or Dolosigranulum …
Epac2 Deficiency Compromises Adaptation To Dietary Acidification By Decreasing H+ Transport In The Renal Nephron, Kyrylo Pyrshev, Anna Atamanchuk, Wenli Yang, Mariya Kordysh, Fang Mei, Oleg Zaika, Xiaodong Cheng, Oleh Pochynyuk
Epac2 Deficiency Compromises Adaptation To Dietary Acidification By Decreasing H+ Transport In The Renal Nephron, Kyrylo Pyrshev, Anna Atamanchuk, Wenli Yang, Mariya Kordysh, Fang Mei, Oleg Zaika, Xiaodong Cheng, Oleh Pochynyuk
Faculty, Staff and Student Publications
Kidneys are central in maintaining acid-base homeostasis by recovering filtered bicarbonate (HCO3-) in the proximal tubule and by secreting H+ in the collecting duct. Here, we demonstrate a critical role of the exchange protein directly activated by cAMP (Epac) signaling, and particularly the Epac2, in governing renal adaptation to dietary acid load. RNAseq analysis of the renal cortical area revealed that Epac1&2 deficiency was associated with changes in gene profile seen in acidosis. Renal expression of Epac2 but not Epac1 was enhanced by acid load. Epac2-/- mice developed a pronounced metabolic acidosis due to the inability to acidify urine in …
Cd7 Regulates The Persistence Of Terminally Exhausted Cd8 T Cells During Chronic Infection, Sean Hyslop, Colby J Hofferek, Maria V Stegantseva, Emerald Kan, Kelli A Mccord, Victor M Alvarez, Amanda Y Xia, Jacob P Conarty, Andreas Wieland, William H Hudson
Cd7 Regulates The Persistence Of Terminally Exhausted Cd8 T Cells During Chronic Infection, Sean Hyslop, Colby J Hofferek, Maria V Stegantseva, Emerald Kan, Kelli A Mccord, Victor M Alvarez, Amanda Y Xia, Jacob P Conarty, Andreas Wieland, William H Hudson
Faculty, Staff and Students Publications
CD8+ T cell exhaustion limits immune responses during cancer and chronic infection. We identify CD7 as a tissue-specific regulator of terminally exhausted CD8+ T cells during chronic infection. CD7 expression progressively increases during exhaustion, reaching its highest levels on a subset of CD101+Tim3low terminally exhausted cells that arise in the liver. Transcriptomic analysis revealed that CD7-deficient terminally exhausted cells display altered expression of co-stimulatory, translational, and effector genes, correlating with markedly reduced persistence and increased apoptotic susceptibility. Importantly, CD7 is preferentially upregulated on PD-1+CD39+ tumor-infiltrating lymphocytes (TILs) in human head and neck squamous cell carcinoma (HNSCC), suggesting CD7 may play …
Molecular And Cellular Characterization Of Planarian Stem Cell Microenvironments, Frederick G Mann, Carolyn E Brewster, Dung M Vuu, Mol Mir, Riley Galton, Shao-Fu Nien, Enya R Dewars, Carlos Guerrero-Hernández, Jason A Morrison, Mary C Mckinney, Lucinda E Maddera, Melainia L Mcclain, Kate E Hall, Seth Malloy, Shiyuan Chen, Brian D Slaughter, Sean A Mckinney, Stephanie H Nowotarski, Anoja Perera, Blair W Benham-Pyle, Alejandro Sánchez Alvarado
Molecular And Cellular Characterization Of Planarian Stem Cell Microenvironments, Frederick G Mann, Carolyn E Brewster, Dung M Vuu, Mol Mir, Riley Galton, Shao-Fu Nien, Enya R Dewars, Carlos Guerrero-Hernández, Jason A Morrison, Mary C Mckinney, Lucinda E Maddera, Melainia L Mcclain, Kate E Hall, Seth Malloy, Shiyuan Chen, Brian D Slaughter, Sean A Mckinney, Stephanie H Nowotarski, Anoja Perera, Blair W Benham-Pyle, Alejandro Sánchez Alvarado
Faculty, Staff and Students Publications
Stem cell niches are essential for regulating stem cell self-renewal and differentiation during tissue repair and regeneration. However, the mechanisms supporting stem cell function in highly regenerative organisms, such as the freshwater planarian Schmidtea mediterranea, remain unclear. Using spatial transcriptomics, we identified two cell types associated with planarian stem cells: secretory cells we term "hecatonoblasts" and intestinal cells. Surprisingly, while hecatonoblasts were in close physical proximity to stem cells in the mesenchyme, they were dispensable for regeneration. In contrast, intestinal cells, despite lacking direct contact with stem cells, regulated both their position and function during regeneration. Electron microscopy revealed diverse …
Targeting Gliomas With Beta-Amyloid-Specific Dyes: A Novel Approach For In Vivo Staining And Potential Therapeutic Applications, Lilia Kucheryavykh, Jescelica Ortiz Rivera, Boris Ermolinsky, Vassiliy Tsytsarev, Lynnette Cary, Janaina Alves, Adriana Reyes, Noelis De La Cruz-Rivera, Kevin Rosa Gonzalez, Felix Narvaez Irizarry
Targeting Gliomas With Beta-Amyloid-Specific Dyes: A Novel Approach For In Vivo Staining And Potential Therapeutic Applications, Lilia Kucheryavykh, Jescelica Ortiz Rivera, Boris Ermolinsky, Vassiliy Tsytsarev, Lynnette Cary, Janaina Alves, Adriana Reyes, Noelis De La Cruz-Rivera, Kevin Rosa Gonzalez, Felix Narvaez Irizarry
School of Integrative Biological & Chemical Sciences Faculty Publications
Gliomas, the most common primary brain tumors, present significant diagnostic and treatment challenges due to their infiltrative nature and heterogeneity. Our previous research revealed that glioma tumors in both animals and humans accumulate beta-amyloid protein (Aβ), detectable through immunohistochemical methods or staining with amyloid-specific dyes. We hypothesize that beta-amyloid-specific dyes could serve as glioma markers, potentially enabling the delineation of glioma tumors or targeted therapeutics delivery. In this study, the specificity and blood-brain barrier permeability of two fluorescent beta-amyloid-specific dyes, Brilliant Blue G (BBG) and BODIPY-based Amyloid Probe-1 (BAP-1), were evaluated in C57Bl/6 mouse glioma implantation models using GL261 and …
Peritoneal Delivery Of Capsinoids, Nonpungent Trpv1 Agonists, Induces Mild Hypothermia In Conscious Mice Through Trpv1 Activation Of Visceral Vagal Afferents, Alexander P Andersohn, Ting Wu, Andrea N Doan, Charles L Cantrell, Robert L Jarret, Sean P Marrelli
Peritoneal Delivery Of Capsinoids, Nonpungent Trpv1 Agonists, Induces Mild Hypothermia In Conscious Mice Through Trpv1 Activation Of Visceral Vagal Afferents, Alexander P Andersohn, Ting Wu, Andrea N Doan, Charles L Cantrell, Robert L Jarret, Sean P Marrelli
Faculty, Staff and Student Publications
Therapeutic hypothermia (TH) has demonstrated neuroprotection in instances of cardiac arrest and neonatal hypoxia/ischemia but faces different challenges in application to stroke due to the activation of cold defense mechanisms in conscious patients. This study examined the efficacy and specificity of capsinoids (a purified mixture of capsiate and dihydrocapsiate) to induce a sustained fall in core body temperature in conscious mice. Capsinoids function as TRPV1 agonists. However, unlike capsaicin, capsinoids are vulnerable to esterase-mediated breakdown, thus significantly restricting their action to the site of delivery. We showed that capsinoids delivered intraperitoneally (IP) to mice induced a TRPV1-dependent drop in core …
Female Cardioprotection In A Mouse Model Of Alcohol-Associated Cardiomyopathy, Joshua M. Edavettal, Meagan Donovan, Nicholas R. Harris, Xavier R. Chapa-Dubocq, Keishla M. Rodríguez-Graciani, Janos Paloczi, Liz Simon, Bysani Chandrasekar, Jason D. Gardner
Female Cardioprotection In A Mouse Model Of Alcohol-Associated Cardiomyopathy, Joshua M. Edavettal, Meagan Donovan, Nicholas R. Harris, Xavier R. Chapa-Dubocq, Keishla M. Rodríguez-Graciani, Janos Paloczi, Liz Simon, Bysani Chandrasekar, Jason D. Gardner
School of Graduate Studies Faculty Publications
Chronic alcohol misuse is the leading cause of non-ischemic dilated cardiomyopathy, and the molecular mechanisms underlying the development of alcohol-associated cardiomyopathy (ACM), particularly regarding sex-specific susceptibility and mitochondrial contributions, are not fully known. In this study, we utilized a preclinical model of chronic + binge ethanol consumption to investigate sex differences in disease severity and mitochondrial function. Male and female C57BL/6J mice were fed ethanol or control liquid diets for 30 days, with 2 binge episodes on days 10 and 30. Cardiac morphology was assessed via echocardiography and cardiac function via left ventricular pressure-volume catheterization. Mitochondrial function was evaluated ex …
Setdb1 Is Critically Required For Uveal Melanoma Growth And Represents A Promising Therapeutic Target, Imène Krossa, Céline Pisibon, Yann Cheli, Karine Bille, Mélanie Dalmasso, Sabah Hamadat, Chrystel Husser, Marie Irondelle, Julien Cherfils-Vicini, Frédéric Soysouvanh, Sacha Nahon-Esteve, Arnaud Martel, Sandra Lassalle, Jean-Pierre Caujolle, Célia Maschi, Stéphanie Baillif, Dan Hasson, Saul Carcamo, Andrerw E. Aplin, Irwin Davidson, Emily Bernstein, Valeria Naim, Robert Ballotti, Corine Bertolotto, Thomas Strub
Setdb1 Is Critically Required For Uveal Melanoma Growth And Represents A Promising Therapeutic Target, Imène Krossa, Céline Pisibon, Yann Cheli, Karine Bille, Mélanie Dalmasso, Sabah Hamadat, Chrystel Husser, Marie Irondelle, Julien Cherfils-Vicini, Frédéric Soysouvanh, Sacha Nahon-Esteve, Arnaud Martel, Sandra Lassalle, Jean-Pierre Caujolle, Célia Maschi, Stéphanie Baillif, Dan Hasson, Saul Carcamo, Andrerw E. Aplin, Irwin Davidson, Emily Bernstein, Valeria Naim, Robert Ballotti, Corine Bertolotto, Thomas Strub
Department of Pharmacology, Physiology, and Cancer Biology Faculty Papers
Metastatic uveal melanomas are highly resistant to all existing treatments. To identify actionable vulnerabilities, we conducted a CRISPR-Cas9 knockout screen using a library composed of chromatin regulators. We revealed that the lysine methyltransferase, SETDB1, plays a critical role in metastatic uveal melanoma cell proliferation and survival. Functionally, SETDB1 deficiency induces a DNA damage response, senescence-like state and growth arrest. Knockdown of SETDB1 is associated with a decreased expression of genes related to replication and cell cycle. Moreover, deficiency in CDC6, an essential regulator of DNA replication, phenocopies SETDB1 inhibition. Using a pre-clinical model, we further demonstrated that anti-SETDB1 therapy impairs …