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Full-Text Articles in Medical Sciences

Neutrophil Extracellular Traps Promote Pre-Metastatic Niche Formation In The Omentum By Expanding Innate-Like B Cells That Express Il-10, Wonjae Lee, Song Yi Ko, Hironari Akasaka, Melanie Weigert, Ernst Lengyel, Honami Naora Jan 2025

Neutrophil Extracellular Traps Promote Pre-Metastatic Niche Formation In The Omentum By Expanding Innate-Like B Cells That Express Il-10, Wonjae Lee, Song Yi Ko, Hironari Akasaka, Melanie Weigert, Ernst Lengyel, Honami Naora

Faculty, Staff and Student Publications

Disseminated cancer cells in the peritoneal fluid often colonize omental fat-associated lymphoid clusters but the mechanisms are unclear. Here, we identify that innate-like B cells accumulate in the omentum of mice and women with early-stage ovarian cancer concomitantly with the extrusion of chromatin fibers by neutrophils called neutrophil extracellular traps (NETs). Studies using genetically modified NET-deficient mice, pharmacologic inhibition of NETs, and adoptive B cell transfer show that NETs induce expression of the chemoattractant CXCL13 in the pre-metastatic omentum, stimulating recruitment of peritoneal innate-like B cells that in turn promote expansion of regulatory T cells and omental metastasis through producing …


Tamm-Horsfall Protein Augments Neutrophil Netosis During Urinary Tract Infection, Vicki Mercado-Evans, Holly Branthoover, Claude Chew, Camille Serchejian, Alexander B Saltzman, Marlyd E Mejia, Jacob J Zulk, Ingrid Cornax, Victor Nizet, Kathryn A Patras Jan 2025

Tamm-Horsfall Protein Augments Neutrophil Netosis During Urinary Tract Infection, Vicki Mercado-Evans, Holly Branthoover, Claude Chew, Camille Serchejian, Alexander B Saltzman, Marlyd E Mejia, Jacob J Zulk, Ingrid Cornax, Victor Nizet, Kathryn A Patras

Faculty, Staff and Students Publications

Urinary neutrophils are a hallmark of urinary tract infection (UTI), yet the mechanisms governing their activation, function, and efficacy in controlling infection remain incompletely understood. Tamm-Horsfall glycoprotein (THP), the most abundant protein in urine, uses terminal sialic acids to bind an inhibitory receptor and dampen neutrophil inflammatory responses. We hypothesized that neutrophil modulation is an integral part of THP-mediated host protection. In a UTI model, THP-deficient mice showed elevated urinary tract bacterial burdens, increased neutrophil recruitment, and more severe tissue histopathological changes compared with WT mice. Furthermore, THP-deficient mice displayed impaired urinary NETosis during UTI. To investigate the effect of …


A Β-Hydroxybutyrate Shunt Pathway Generates Anti-Obesity Ketone Metabolites, Maria Dolores Moya-Garzon, Mengjie Wang, Veronica L Li, Xuchao Lyu, Wei Wei, Alan Sheng-Hwa Tung, Steffen H Raun, Meng Zhao, Laetitia Coassolo, Hashim Islam, Barbara Oliveira, Yuqin Dai, Jan Spaas, Antonio Delgado-Gonzalez, Kenyi Donoso, Aurora Alvarez-Buylla, Francisco Franco-Montalban, Anudari Letian, Catherine P Ward, Lichao Liu, Katrin J Svensson, Emily L Goldberg, Christopher D Gardner, Jonathan P Little, Steven M Banik, Yong Xu, Jonathan Z Long Jan 2025

A Β-Hydroxybutyrate Shunt Pathway Generates Anti-Obesity Ketone Metabolites, Maria Dolores Moya-Garzon, Mengjie Wang, Veronica L Li, Xuchao Lyu, Wei Wei, Alan Sheng-Hwa Tung, Steffen H Raun, Meng Zhao, Laetitia Coassolo, Hashim Islam, Barbara Oliveira, Yuqin Dai, Jan Spaas, Antonio Delgado-Gonzalez, Kenyi Donoso, Aurora Alvarez-Buylla, Francisco Franco-Montalban, Anudari Letian, Catherine P Ward, Lichao Liu, Katrin J Svensson, Emily L Goldberg, Christopher D Gardner, Jonathan P Little, Steven M Banik, Yong Xu, Jonathan Z Long

Children’s Nutrition Research Center Staff Publications

β-Hydroxybutyrate (BHB) is an abundant ketone body. To date, all known pathways of BHB metabolism involve the interconversion of BHB and primary energy intermediates. Here, we identify a previously undescribed BHB secondary metabolic pathway via CNDP2-dependent enzymatic conjugation of BHB and free amino acids. This BHB shunt pathway generates a family of anti-obesity ketone metabolites, the BHB-amino acids. Genetic ablation of CNDP2 in mice eliminates tissue amino acid BHB-ylation activity and reduces BHB-amino acid levels. The most abundant BHB-amino acid, BHB-Phe, is a ketosis-inducible congener of Lac-Phe that activates hypothalamic and brainstem neurons and suppresses feeding. Conversely, CNDP2-KO mice exhibit …


Alleviation Of Liver Fibrosis By Inhibiting A Non-Canonical Atf4-Regulated Enhancer Program In Hepatic Stellate Cells, Li-Xian Yang, Chuangye Qi, Si Lu, Xiang-Shi Ye, Parnaz Merikhian, Du-Yu Zhang, Tao Yao, Jiang-Sha Zhao, Ying Wu, Yongshi Jia, Bo Shan, Jinghai Chen, Xiaozhou Mou, Jia You, Wenbo Li, Yu-Xiong Feng Jan 2025

Alleviation Of Liver Fibrosis By Inhibiting A Non-Canonical Atf4-Regulated Enhancer Program In Hepatic Stellate Cells, Li-Xian Yang, Chuangye Qi, Si Lu, Xiang-Shi Ye, Parnaz Merikhian, Du-Yu Zhang, Tao Yao, Jiang-Sha Zhao, Ying Wu, Yongshi Jia, Bo Shan, Jinghai Chen, Xiaozhou Mou, Jia You, Wenbo Li, Yu-Xiong Feng

Faculty, Staff and Student Publications

Liver fibrosis is a critical liver disease that can progress to more severe manifestations, such as cirrhosis, yet no effective targeted therapies are available. Here, we identify that ATF4, a master transcription factor in ER stress response, promotes liver fibrosis by facilitating a stress response-independent epigenetic program in hepatic stellate cells (HSCs). Unlike its canonical role in regulating UPR genes during ER stress, ATF4 activates epithelial-mesenchymal transition (EMT) gene transcription under fibrogenic conditions. HSC-specific depletion of ATF4 suppresses liver fibrosis in vivo. Mechanistically, TGFβ resets ATF4 to orchestrate a unique enhancer program for the transcriptional activation of pro-fibrotic EMT genes. …


The Gip Receptor Activates Futile Calcium Cycling In White Adipose Tissue To Increase Energy Expenditure And Drive Weight Loss In Mice, Xinxin Yu, Shiuhwei Chen, Jan-Bernd Funcke, Leon G Straub, Valentina Pirro, Margo P Emont, Brian A Droz, Kyla Ai Collins, Chanmin Joung, Mackenzie J Pearson, Corey M James, Gopal J Babu, Vissarion Efthymiou, Ashley Vernon, Mary Elizabeth Patti, Yu A An, Evan D Rosen, Matthew P Coghlan, Ricardo J Samms, Philipp E Scherer, Christine M Kusminski Jan 2025

The Gip Receptor Activates Futile Calcium Cycling In White Adipose Tissue To Increase Energy Expenditure And Drive Weight Loss In Mice, Xinxin Yu, Shiuhwei Chen, Jan-Bernd Funcke, Leon G Straub, Valentina Pirro, Margo P Emont, Brian A Droz, Kyla Ai Collins, Chanmin Joung, Mackenzie J Pearson, Corey M James, Gopal J Babu, Vissarion Efthymiou, Ashley Vernon, Mary Elizabeth Patti, Yu A An, Evan D Rosen, Matthew P Coghlan, Ricardo J Samms, Philipp E Scherer, Christine M Kusminski

Faculty, Staff and Student Publications

Obesity is a chronic disease that contributes to the development of insulin resistance, type 2 diabetes (T2D), and cardiovascular risk. Glucose-dependent insulinotropic polypeptide (GIP) receptor (GIPR) and glucagon-like peptide-1 (GLP-1) receptor (GLP-1R) co-agonism provide an improved therapeutic profile in individuals with T2D and obesity when compared with selective GLP-1R agonism. Although the metabolic benefits of GLP-1R agonism are established, whether GIPR activation impacts weight loss through peripheral mechanisms is yet to be fully defined. Here, we generated a mouse model of GIPR induction exclusively in the adipocyte. We show that GIPR induction in the fat cell protects mice from diet-induced …


Microtubules Sequester Acetylated Yap In The Cytoplasm And Inhibit Heart Regeneration, Shijie Liu, Vaibhav Deshmukh, Fansen Meng, Yidan Wang, Yuka Morikawa, Jeffrey D Steimle, Rich Gang Li, Jun Wang, James F Martin Jan 2025

Microtubules Sequester Acetylated Yap In The Cytoplasm And Inhibit Heart Regeneration, Shijie Liu, Vaibhav Deshmukh, Fansen Meng, Yidan Wang, Yuka Morikawa, Jeffrey D Steimle, Rich Gang Li, Jun Wang, James F Martin

Faculty, Staff and Students Publications

Background: The Hippo pathway effector YAP (Yes-associated protein) plays an essential role in cardiomyocyte proliferation and heart regeneration. In response to physiological changes, YAP moves in and out of the nucleus. The pathophysiological mechanisms regulating YAP subcellular localization after myocardial infarction remain poorly defined.

Methods: We identified YAP acetylation at site K265 by in vitro acetylation followed by mass spectrometry analysis. We used adeno-associated virus to express YAP-containing mutations that either abolished acetylation (YAP-K265R) or mimicked acetylation (YAP-K265Q) and studied how acetylation regulates YAP subcellular localization in mouse hearts. We generated a cell line with YAP-K265R mutation and investigated the …


Pivotal Roles Of Biglycan And Decorin In Regulating Bone Mass, Water Retention, And Bone Toughness, Rui Hua, Yan Han, Qingwen Ni, Roberto J. Fajardo, Renato V. Iozzo, Rafay Ahmed, Jeffry S. Nyman, Xiaodu Wang, Jean X. Jiang Jan 2025

Pivotal Roles Of Biglycan And Decorin In Regulating Bone Mass, Water Retention, And Bone Toughness, Rui Hua, Yan Han, Qingwen Ni, Roberto J. Fajardo, Renato V. Iozzo, Rafay Ahmed, Jeffry S. Nyman, Xiaodu Wang, Jean X. Jiang

Department of Pathology, Anatomy, and Cell Biology Faculty Papers

Proteoglycans, key components of non-collagenous proteins in the bone matrix, attract water through their negatively charged glycosaminoglycan chains. Among these proteoglycans, biglycan (Bgn) and decorin (Dcn) are major subtypes, yet their distinct roles in bone remain largely elusive. In this study, we utilized single knockout (KO) mouse models and successfully generated double KO (dKO) models despite challenges with low yield. Bgn deficiency, but not Dcn deficiency, decreased trabecular bone mass, with more pronounced bone loss in dKO mice. Low-field nuclear magnetic resonance measurements showed a marked decrease in bound water among all KO groups, especially in Bgn KO and dKO …


Enhanced Motivated Behavior Mediated By Pharmacological Targeting Of The Fgf14/Nav16 Complex In Nucleus Accumbens Neurons, Nolan M Dvorak, Paul A Wadsworth, Guillermo Aquino-Miranda, Pingyuan Wang, Douglas S Engelke, Jingheng Zhou, Nghi Nguyen, Aditya K Singh, Giuseppe Aceto, Zahra Haghighijoo, Isabella I Smith, Nana Goode, Mingxiang Zhou, Yosef Avchalumov, Evan P Troendle, Cynthia M Tapia, Haiying Chen, Reid T Powell, Timothy J Baumgartner, Jully Singh, Leandra Koff, Jessica Di Re, Ann E Wadsworth, Mate Marosi, Marc R Azar, Kristina Elias, Paul Lehmann, Yorkiris M Mármol Contreras, Poonam Shah, Hector Gutierrez, Thomas A Green, Martin B Ulmschneider, Marcello D'Ascenzo, Clifford Stephan, Guohong Cui, Fabricio H Do Monte, Jia Zhou, Fernanda Laezza Jan 2025

Enhanced Motivated Behavior Mediated By Pharmacological Targeting Of The Fgf14/Nav16 Complex In Nucleus Accumbens Neurons, Nolan M Dvorak, Paul A Wadsworth, Guillermo Aquino-Miranda, Pingyuan Wang, Douglas S Engelke, Jingheng Zhou, Nghi Nguyen, Aditya K Singh, Giuseppe Aceto, Zahra Haghighijoo, Isabella I Smith, Nana Goode, Mingxiang Zhou, Yosef Avchalumov, Evan P Troendle, Cynthia M Tapia, Haiying Chen, Reid T Powell, Timothy J Baumgartner, Jully Singh, Leandra Koff, Jessica Di Re, Ann E Wadsworth, Mate Marosi, Marc R Azar, Kristina Elias, Paul Lehmann, Yorkiris M Mármol Contreras, Poonam Shah, Hector Gutierrez, Thomas A Green, Martin B Ulmschneider, Marcello D'Ascenzo, Clifford Stephan, Guohong Cui, Fabricio H Do Monte, Jia Zhou, Fernanda Laezza

Faculty, Staff and Student Publications

Protein/protein interactions (PPI) play crucial roles in neuronal functions. Yet, their potential as drug targets for brain disorders remains underexplored. The fibroblast growth factor 14 (FGF14)/voltage-gated Na+ channel 1.6 (Nav1.6) complex regulates excitability of medium spiny neurons (MSN) of the nucleus accumbens (NAc), a central hub of reward circuitry that controls motivated behaviors. Here, we identified compound 1028 (IUPAC: ethyl 3-(2-(3-(hydroxymethyl)-1H-indol-1-yl)acetamido)benzoate), a brain-permeable small molecule that targets FGF14R117, a critical residue located within a druggable pocket at the FGF14/Nav1.6 PPI interface. We found that 1028 modulates FGF14/Nav1.6 complex assembly and depolarizes the voltage-dependence of Nav1.6 channel inactivation with …


Interferon-Gamma Receptor Signaling Regulates Innate Immunity During Staphylococcus Aureus Craniotomy Infection, Zachary Van Roy, Gunjan Kak, Rachel W. Fallet, Tammy Kielian Jan 2025

Interferon-Gamma Receptor Signaling Regulates Innate Immunity During Staphylococcus Aureus Craniotomy Infection, Zachary Van Roy, Gunjan Kak, Rachel W. Fallet, Tammy Kielian

Journal Articles: Pathology and Microbiology

A craniotomy is a neurosurgical procedure performed to access the intracranial space. In 3-5% of cases, infections can develop, most caused by Staphylococcus aureus biofilm formation on the skull surface. Medical management of this infection is difficult, as biofilm properties confer immune and antimicrobial recalcitrance to the infection and necessitate additional surgical procedures. Furthermore, treatment failure rates can be appreciably high. These factors, compounded with rapidly expanding rates of antimicrobial resistance, highlight the need to develop alternative treatment strategies to target and reverse the immune dysfunction that occurs during biofilm infection. Our recent work has identified CD4+ Th1 and Th17 …


Cd4+ T Cell-Innate Immune Crosstalk Is Critical During Staphylococcus Aureus Craniotomy Infection, Gunjan Kak, Zachary A. Van Roy, Rachel W. Fallet, Lee E. Korshoj, Tammy Kielian Jan 2025

Cd4+ T Cell-Innate Immune Crosstalk Is Critical During Staphylococcus Aureus Craniotomy Infection, Gunjan Kak, Zachary A. Van Roy, Rachel W. Fallet, Lee E. Korshoj, Tammy Kielian

Journal Articles: Pathology and Microbiology

Access to the brain for treating neurological sequalae requires a craniotomy, which can be complicated by infection. Staphylococcus aureus accounts for half of craniotomy infections, increasing morbidity in a medically fragile patient population. T cells preferentially traffic to the brain during craniotomy infection; however, their functional importance is unknown. Using a mouse model of S. aureus craniotomy infection, CD4+ T cells were critical for bacterial containment, as treatment of WT animals with anti-CD4 exacerbated infection that was similar to phenotypes in Rag1-/- mice. Single-cell RNA-Seq (scRNA-Seq) revealed transcriptional heterogeneity in brain CD3+ infiltrates, with CD4+ cells most prominent that displayed …


Microglial Trem2 Promotes Phagocytic Clearance Of Damaged Neurons After Status Epilepticus, Dale B Bosco, Vaclav Kremen, Koichiro Haruwaka, Shunyi Zhao, Lingxiao Wang, Blake A Ebner, Jiaying Zheng, Manling Xie, Aastha Dheer, Jadyn F Perry, Abhijeet Barath, Aivi T Nguyen, Gregory A Worrell, Long-Jun Wu Jan 2025

Microglial Trem2 Promotes Phagocytic Clearance Of Damaged Neurons After Status Epilepticus, Dale B Bosco, Vaclav Kremen, Koichiro Haruwaka, Shunyi Zhao, Lingxiao Wang, Blake A Ebner, Jiaying Zheng, Manling Xie, Aastha Dheer, Jadyn F Perry, Abhijeet Barath, Aivi T Nguyen, Gregory A Worrell, Long-Jun Wu

The Brown Foundation: Institute of Molecular Medicine

In the central nervous system, triggering receptor expressed on myeloid cells 2 (TREM2) is exclusively expressed by microglia and is critical for microglial proliferation, migration, and phagocytosis. Microglial TREM2 plays an important role in neurodegenerative diseases, such as Alzheimer's disease and amyotrophic lateral sclerosis. However, little is known about how TREM2 affects microglial function within epileptogenesis. To investigate this, we utilized male TREM2 knockout (KO) mice within the intra-amygdala kainic acid seizure model. Electroencephalographic analysis, immunocytochemistry, and RNA sequencing revealed that TREM2 deficiency significantly promoted seizure-induced pathology. We found that TREM2 KO increased both the severity of acute status epilepticus …


Folate Receptor Β Performs An Immune Checkpoint Function In Activated Macrophages, Fenghua Zhang, Md Yusuf Al-Amin, Sagar Utturkar, Rina Jiang, Gregory Cresswell, Rami Alfar, Ian Ophaug-Johansen, Gabriel Bachman, Madduri Srinivasarao, Richard Finnell, Amaya Puig-Kröger, Timothy Ratliff, Philip S Low Jan 2025

Folate Receptor Β Performs An Immune Checkpoint Function In Activated Macrophages, Fenghua Zhang, Md Yusuf Al-Amin, Sagar Utturkar, Rina Jiang, Gregory Cresswell, Rami Alfar, Ian Ophaug-Johansen, Gabriel Bachman, Madduri Srinivasarao, Richard Finnell, Amaya Puig-Kröger, Timothy Ratliff, Philip S Low

Faculty, Staff and Students Publications

Monocytes and macrophages are sentinels of the immune system that distinguish themselves from other cells by expressing the beta isoform of the folate receptor (FRβ). Because FRβ does not bind folate until the monocyte/macrophage is exposed to immunosuppressive cytokines, the question naturally arose whether FRβ might also perform an immune-related function. To examine this matter, we compared the properties of wild type (WT) and FRβ knockout mice. We observe that FRβ knockout (KO) mice display autoimmune symptoms that can include alopecia, enlarged spleens, and dermatitis, despite having normal cellular folate levels. We further demonstrate that syngeneic tumors (TRAMP C2, MC38) …


A Natural Small Molecule Isoginkgetin Alleviates Hypercholesterolemia And Atherosclerosis By Targeting Acly, Zhidan Zhang, Meijie Chen, Yitong Xu, Zhihua Wang, Zhenghong Liu, Chenyang He, Fanshun Zhang, Xiaojun Feng, Xiayun Ni, Yuanli Chen, Jixia Wang, Xinmiao Liang, Zhifu Xie, Jingya Li, Maciej Banach, Jaroslav Pelisek, Yuqing Huo, Yunhui Hu, Paul C Evans, Li Wang, Xiao-Yu Tian, Jianbo Xiao, Yuhua Shang, Yijun Zheng, Xunde Xian, Jianping Weng, Suowen Xu Jan 2025

A Natural Small Molecule Isoginkgetin Alleviates Hypercholesterolemia And Atherosclerosis By Targeting Acly, Zhidan Zhang, Meijie Chen, Yitong Xu, Zhihua Wang, Zhenghong Liu, Chenyang He, Fanshun Zhang, Xiaojun Feng, Xiayun Ni, Yuanli Chen, Jixia Wang, Xinmiao Liang, Zhifu Xie, Jingya Li, Maciej Banach, Jaroslav Pelisek, Yuqing Huo, Yunhui Hu, Paul C Evans, Li Wang, Xiao-Yu Tian, Jianbo Xiao, Yuhua Shang, Yijun Zheng, Xunde Xian, Jianping Weng, Suowen Xu

Faculty, Staff and Students Publications

Rationale: Atherosclerotic cardiovascular disease (ASCVD) represents the predominant cause of mortality and morbidity globally. Given the established role of hypercholesterolemia as a significant risk factor for ASCVD, the discovery of new lipid-lowering medications is of paramount importance. ATP citrate lyase (ACLY) is a crucial enzyme in cellular metabolism, providing acetyl-CoA as the building block for the biosynthesis of fatty acids and cholesterol. Consequently, it has emerged as a promising drug target for innovative treatments of lipid metabolic disorders.

Methods: Virtual screening of a natural product library was performed to identify small-molecule ACLY inhibitors, leading to the discovery of isoginkgetin (ISOGK). …


Histone Deacetylase 6 Inhibition Promotes Microtubule Acetylation And Facilitates Autophagosome-Lysosome Fusion In Dystrophin-Deficient Mdx Mice, Akanksha Agrawal, Erin L Clayton, Courtney L Cavazos, Benjamin A Clayton, George G Rodney Jan 2025

Histone Deacetylase 6 Inhibition Promotes Microtubule Acetylation And Facilitates Autophagosome-Lysosome Fusion In Dystrophin-Deficient Mdx Mice, Akanksha Agrawal, Erin L Clayton, Courtney L Cavazos, Benjamin A Clayton, George G Rodney

Faculty, Staff and Students Publications

Aim: Duchenne muscular dystrophy is a progressive muscle-wasting disease caused by mutations in the dystrophin gene. Despite progress in dystrophin-targeted gene therapies, it is still a fatal disease requiring novel therapeutics that can be used synergistically or alternatively to emerging gene therapy. Defective autophagy and disorganized microtubule networks contribute to dystrophic pathogenesis, yet the mechanisms by which microtubule alterations regulate autophagy remain elusive. The present study was designed to uncover possible mechanisms underpinning the role of microtubules in regulating autophagy in dystrophic mice.

Methods: Mdx mice were also supplemented with Tubastatin A, a pharmacological inhibitor of histone deacetylase 6, and …


A Murine Model Of Gestational Diabetes Reveals Masld Risk And Alterations In Markers Of Hepatic Mitochondrial Metabolism, Grace E Shryack, Alexa A Krause, Simone Hernandez Ruano, Laura C Schulz, Kathleen A Pennington, R Scott Rector Jan 2025

A Murine Model Of Gestational Diabetes Reveals Masld Risk And Alterations In Markers Of Hepatic Mitochondrial Metabolism, Grace E Shryack, Alexa A Krause, Simone Hernandez Ruano, Laura C Schulz, Kathleen A Pennington, R Scott Rector

Faculty, Staff and Students Publications

Introduction: Gestational Diabetes Mellitus (GDM) impacts roughly 1 in 7 pregnancies and results in metabolic dysfunction-associated steatotic liver disease (MASLD) in 30% of these women. Nonetheless, there exists a dearth of investigation into the relationship between GDM and MASLD. Here, we sought to investigate the potential role of hepatic mitochondrial function in GDM and MASLD.

Methods: One week prior to conception and throughout pregnancy, mice were fed either a low-fat control diet (CD) or a high-fat, high-sucrose (HFHS) diet to induce an established model of GDM. Maternal livers were collected at day 0, 6.5, 13.5 and 17.5 of pregnancy. Hepatic …


Mice With Lymphatic Dysfunction Develop Pathogenic Lung Tertiary Lymphoid Organs That Model An Autoimmune Emphysema Phenotype Of Copd, Barbara Summers, Kihwan Kim, Anjali Trivedi, Tyler M Lu, Sean Houghton, Jade Palmer-Johnson, Joselyn Rojas-Quintero, Juan Cala-Garcia, Tania Pannellini, Francesca Polverino, Raphaël Lis, Hasina Outtz Reed Jan 2025

Mice With Lymphatic Dysfunction Develop Pathogenic Lung Tertiary Lymphoid Organs That Model An Autoimmune Emphysema Phenotype Of Copd, Barbara Summers, Kihwan Kim, Anjali Trivedi, Tyler M Lu, Sean Houghton, Jade Palmer-Johnson, Joselyn Rojas-Quintero, Juan Cala-Garcia, Tania Pannellini, Francesca Polverino, Raphaël Lis, Hasina Outtz Reed

Faculty, Staff and Students Publications

We have previously shown that mice with a loss of C-type lectin-like type II (CLEC2), which have lymphatic dysfunction due to the role of CLEC2 in platelets for maintaining separation between the venous and lymphatic system, develop lung tertiary lymphoid organ (TLO) formation and lung injury that resembles an emphysema phenotype of chronic obstructive pulmonary disease (COPD). We now sought to investigate whether and how TLOs in these mice may play a pathogenic role in lung injury that is relevant to human disease. We found that inhibiting TLO formation using an anti-CD20 antibody in CLEC2-deficient mice partially blocked the development …


Learning-Associated Astrocyte Ensembles Regulate Memory Recall, Michael R Williamson, Wookbong Kwon, Junsung Woo, Yeunjung Ko, Ehson Maleki, Kwanha Yu, Sanjana Murali, Debosmita Sardar, Benjamin Deneen Jan 2025

Learning-Associated Astrocyte Ensembles Regulate Memory Recall, Michael R Williamson, Wookbong Kwon, Junsung Woo, Yeunjung Ko, Ehson Maleki, Kwanha Yu, Sanjana Murali, Debosmita Sardar, Benjamin Deneen

Faculty, Staff and Students Publications

The physical manifestations of memory formation and recall are fundamental questions that remain unresolved1. At the cellular level, ensembles of neurons called engrams are activated by learning events and control memory recall1-5. Astrocytes are in close proximity to neurons and engage in a range of activities that support neurotransmission and circuit plasticity6-10. Moreover, astrocytes exhibit experience-dependent plasticity11-13; however whether specific ensembles of astrocytes participate in memory recall remains obscure. Here we show that learning events induce c-Fos expression in a subset of hippocampal astrocytes, which subsequently …


Different Responses Involving Tfh Cells Delay Parasite-Specific Antibody Production In Trypanosoma Cruzi Acute Experimental Models, Ana Carolina Leão, Maria Jose Villar, Rakesh Adhikari, Cristina Poveda, Leroy Versteeg, Gregório Almeida, Peter J Hotez, Maria Elena Bottazzi, Kathryn M Jones Jan 2025

Different Responses Involving Tfh Cells Delay Parasite-Specific Antibody Production In Trypanosoma Cruzi Acute Experimental Models, Ana Carolina Leão, Maria Jose Villar, Rakesh Adhikari, Cristina Poveda, Leroy Versteeg, Gregório Almeida, Peter J Hotez, Maria Elena Bottazzi, Kathryn M Jones

Center for Medical Ethics and Health Policy Staff Publications

Introduction: Chagas disease (CD), caused by the parasite Trypanosoma cruzi, affects millions globally. Despite treatment options in the acute phase, most infections progress to a chronic indeterminate form or develop severe cardiac/gastrointestinal complications. Understanding the immune response is crucial for the development of vaccines and more efficient drugs for the disease control.

Methods: This work investigates the immune response to T. cruzi H1 K68 strain infection in female BALB/c and C57BL/6 mice to characterize differences in Tfh and B cell responses that may be involved in the poor parasite-specific antibody production during acute infection. For this, mice were euthanized …


Organ Of Corti Macrophages: A Distinct Group Of Cochlear Macrophages With Potential Roles In Supporting Cell Degeneration And Survival, Mengxiao Ye, Celia Zhang, Dalian Ding, Guang-Di Chen, Henry J Adler, Rania Sharaf, Bo Hua Hu Jan 2025

Organ Of Corti Macrophages: A Distinct Group Of Cochlear Macrophages With Potential Roles In Supporting Cell Degeneration And Survival, Mengxiao Ye, Celia Zhang, Dalian Ding, Guang-Di Chen, Henry J Adler, Rania Sharaf, Bo Hua Hu

Faculty, Staff and Student Publications

Macrophages are the primary immune cells in the cochlea, essential for maintaining cochlear homeostasis and orchestrating inflammatory responses to pathological events. Although these cells have been found in various parts of the cochlea, their presence in the organ of Corti, a critical structure for acoustic sensing, remains poorly understood. The present study was designed to examine macrophage responses to ototoxic drug-induced cochlear damage and age-related cochlear degeneration, with a particular focus on the pathological conditions that trigger macrophage recruitment into the organ of Corti. We used a model of ototoxicity induced by cyclodextrin, a cyclic oligosaccharide known for its ability …


Mechanical Regulation Of Macrophage Metabolism By Allograft Inflammatory Factor 1 Leads To Adverse Remodeling After Cardiac Injury, Matthew Deberge, Kristofor Glinton, Connor Lantz, Zhi-Dong Ge, David P Sullivan, Swapna Patil, Bo Ryung Lee, Minori I Thorp, Adam Mullick, Steve Yeh, Shuling Han, Anja M Van Der Laan, Hans W M Niessen, Xunrong Luo, Nicholas E S Sibinga, Edward B Thorp Jan 2025

Mechanical Regulation Of Macrophage Metabolism By Allograft Inflammatory Factor 1 Leads To Adverse Remodeling After Cardiac Injury, Matthew Deberge, Kristofor Glinton, Connor Lantz, Zhi-Dong Ge, David P Sullivan, Swapna Patil, Bo Ryung Lee, Minori I Thorp, Adam Mullick, Steve Yeh, Shuling Han, Anja M Van Der Laan, Hans W M Niessen, Xunrong Luo, Nicholas E S Sibinga, Edward B Thorp

Faculty, Staff and Student Publications

Myocardial infarction (MI) mobilizes macrophages, the central protagonists of tissue repair in the infarcted heart. Although necessary for repair, macrophages also contribute to adverse remodeling and progression to heart failure. In this context, specific targeting of inflammatory macrophage activation may attenuate maladaptive responses and enhance cardiac repair. Allograft inflammatory factor 1 (AIF1) is a macrophage-specific protein expressed in a variety of inflammatory settings, but its function after MI is unknown. Here we identify a maladaptive role for macrophage AIF1 after MI in mice. Mechanistic studies show that AIF1 increases actin remodeling in macrophages to promote reactive oxygen species-dependent activation of …


Upregulation Of Delta Opioid Receptor By Meningeal Interleukin-10 Prevents Relapsing Pain, Kufreobong E Inyang, Jaewon Sim, Kimberly B Clark, Matan Geron, Karli Monahan, Christine Evans, Patrick O'Connell, Sophie Laumet, Bo Peng, Jiacheng Ma, Cobi J Heijnen, Robert Dantzer, Grégory Scherrer, Annemieke Kavelaars, Matthew Bernard, Yasser A Aldhamen, Joseph K Folger, Alexis Bavencoffe, Geoffroy Laumet Jan 2025

Upregulation Of Delta Opioid Receptor By Meningeal Interleukin-10 Prevents Relapsing Pain, Kufreobong E Inyang, Jaewon Sim, Kimberly B Clark, Matan Geron, Karli Monahan, Christine Evans, Patrick O'Connell, Sophie Laumet, Bo Peng, Jiacheng Ma, Cobi J Heijnen, Robert Dantzer, Grégory Scherrer, Annemieke Kavelaars, Matthew Bernard, Yasser A Aldhamen, Joseph K Folger, Alexis Bavencoffe, Geoffroy Laumet

Faculty, Staff and Student Publications

Chronic pain often includes periods of transient amelioration and even remission that alternate with severe relapsing pain. While most research on chronic pain has focused on pain development and maintenance, there is a critical unmet need to better understand the mechanisms that underlie pain remission and relapse. We found that interleukin (IL)-10, a pain resolving cytokine, is produced by resident macrophages in the spinal meninges during remission from pain and signaled to IL-10 receptor-expressing sensory neurons. Using unbiased RNA-sequencing, we identified that IL-10 upregulated expression and antinociceptive activity of δ-opioid receptor (δOR) in the dorsal root ganglion. Genetic or pharmacological …


Exacerbation Of Paclitaxel-Induced Neuropathic Pain Behaviors In Breast Tumor-Bearing Mice, Hee Kee Kim, Juping Xing, Youn-Sang Jung, Jae-Il Park, Hee Young Kim, Jimin Kim, Salahadin Abdi Jan 2025

Exacerbation Of Paclitaxel-Induced Neuropathic Pain Behaviors In Breast Tumor-Bearing Mice, Hee Kee Kim, Juping Xing, Youn-Sang Jung, Jae-Il Park, Hee Young Kim, Jimin Kim, Salahadin Abdi

Faculty, Staff and Student Publications

Background: Chronic pain and cancer interact bidirectionally, with pain enhancing sensory peptides and potentially promoting tumor growth. Despite this, most chemotherapy-induced neuropathic pain (CIPN) studies overlook the contribution of cancer itself to neuropathy, focusing instead on chemotherapy-induced mechanisms. Animal models of chemotherapy-induced neuropathic pain (CINP) have been developed by injecting chemotherapeutic drugs such as paclitaxel into normal animals without cancer. This study aimed to develop a new model in mouse mammary tumor virus-polyomavirus middle T antigen (MMTV-PyMT) mice, a widely used breast cancer model with normal immune function.

Results: The percentage of positive response (PPR) of paclitaxel-injected MMTV-PyMT mice increased …


Inhibition Of Nitric Oxide Synthase Transforms Carotid Occlusion-Mediated Benign Oligemia Into De Novo Large Cerebral Infarction, Ha Kim, Jinyong Chung, Jeong Wook Kang, Dawid Schellingerhout, Soo Ji Lee, Hee Jeong Jang, Inyeong Park, Taesu Kim, Dong-Seok Gwak, Ji Sung Lee, Sung-Ha Hong, Kang-Hoon Je, Hee-Joon Bae, Joohon Sung, Eng H Lo, James Faber, Cenk Ayata, Dong-Eog Kim Jan 2025

Inhibition Of Nitric Oxide Synthase Transforms Carotid Occlusion-Mediated Benign Oligemia Into De Novo Large Cerebral Infarction, Ha Kim, Jinyong Chung, Jeong Wook Kang, Dawid Schellingerhout, Soo Ji Lee, Hee Jeong Jang, Inyeong Park, Taesu Kim, Dong-Seok Gwak, Ji Sung Lee, Sung-Ha Hong, Kang-Hoon Je, Hee-Joon Bae, Joohon Sung, Eng H Lo, James Faber, Cenk Ayata, Dong-Eog Kim

Faculty, Staff and Student Publications

No abstract provided.


E2f1 Overexpression Reduces Aging-Associated Dna Damage In Cultured Cerebral Endothelial Cells And Improves Cognitive Performance In Aged Mice, Sheelu Monga, Samantha Flores, Maria Pilar Blasco-Conesa, Syed M Rahman, Brian Noh, Pedram Peesh, Bhanu Priya Ganesh, Sean P Marrelli, Louise D Mccullough, Jose Felix Moruno-Manchon Jan 2025

E2f1 Overexpression Reduces Aging-Associated Dna Damage In Cultured Cerebral Endothelial Cells And Improves Cognitive Performance In Aged Mice, Sheelu Monga, Samantha Flores, Maria Pilar Blasco-Conesa, Syed M Rahman, Brian Noh, Pedram Peesh, Bhanu Priya Ganesh, Sean P Marrelli, Louise D Mccullough, Jose Felix Moruno-Manchon

Faculty, Staff and Student Publications

As we age, cerebral endothelial cells (CECs) are less efficient in maintaining genome integrity and accumulate DNA damage. DNA damage in the brain endothelium can lead to the impairment of the blood–brain barrier (BBB), which is a major factor in brain dysfunction and dementia. Thus, identifying factors that regulate DNA repair in the brain endothelium can prevent brain dysfunction associated with aging. E2F1 is a transcription factor that regulates the expression of genes associated with DNA repair, among other functions. We hypothesize that E2F1 is downregulated in the brain vasculature of mice with aging and that E2F1 upregulation can improve …


Nanoparticle Contrast-Enhanced Computed Tomography Of Sporadic Aortic Aneurysm And Dissection: Effect Of Nanoparticle Size And Contrast Agent Dose, Laxman Devkota, Chen Zhang, Deborah Vela, Poonam Sarkar, Prajwal Bhandari, Zbigniew Starosolski, Renuka Menon, Dianna M Milewicz, Ying H Shen, Scott A Lemaire, Ketan B Ghaghada Jan 2025

Nanoparticle Contrast-Enhanced Computed Tomography Of Sporadic Aortic Aneurysm And Dissection: Effect Of Nanoparticle Size And Contrast Agent Dose, Laxman Devkota, Chen Zhang, Deborah Vela, Poonam Sarkar, Prajwal Bhandari, Zbigniew Starosolski, Renuka Menon, Dianna M Milewicz, Ying H Shen, Scott A Lemaire, Ketan B Ghaghada

Faculty, Staff and Students Publications

Background: Aortopathies, such as aortic aneurysm and dissection (AAD), are associated with enhanced aortic wall permeability and endothelial dysfunction. We previously demonstrated that nanoparticle contrast-enhanced computed tomography (nCECT), which detects enhanced aortic wall permeability, could enable non-invasive detection of early AAD before its progresses to fatal aortic rupture. This study investigated the effect of nanoparticle contrast agent (NPCA) size and dose on detection of aortopathy by nCECT.

Methods: In vivo studies were performed in a mouse model of sporadic AAD induced by challenging animals with high fat diet (5 weeks) and angiotensin II infusion (last one week). The effects …


Age-Dependent Regulation Of Axoglial Interactions And Behavior By Oligodendrocyte Ankyring, Xiaoyun Ding, Yu Wu, Anna Vainshtein, Victoria Rodriguez, Emily Ricco, James T Okoh, Yanhong Liu, Daniel C Kraushaar, Elior Peles, Matthew N Rasband Dec 2024

Age-Dependent Regulation Of Axoglial Interactions And Behavior By Oligodendrocyte Ankyring, Xiaoyun Ding, Yu Wu, Anna Vainshtein, Victoria Rodriguez, Emily Ricco, James T Okoh, Yanhong Liu, Daniel C Kraushaar, Elior Peles, Matthew N Rasband

Faculty, Staff and Students Publications

The bipolar disorder (BD) risk gene ANK3 encodes the scaffolding protein AnkyrinG (AnkG). In neurons, AnkG regulates polarity and ion channel clustering at axon initial segments and nodes of Ranvier. Disruption of neuronal AnkG causes BD-like phenotypes in mice. During development, AnkG is also expressed at comparable levels in oligodendrocytes and facilitates the efficient assembly of paranodal junctions. However, the physiological roles of glial AnkG in the mature nervous system, and its contributions to BD-like phenotypes, remain unexplored. Here, we show that oligodendroglia-specific AnkG conditional knockout results in destabilization of axoglial interactions in aged but not young adult mice. In …


Stem Cell Activity-Coupled Suppression Of Endogenous Retrovirus Governs Adult Tissue Regeneration, Ying Lyu, Soo Jin Kim, Ericka S Humphrey, Richa Nayak, Yinglu Guan, Qingnan Liang, Kun Hee Kim, Yukun Tan, Jinzhuang Dou, Huandong Sun, Xingzhi Song, Priyadharsini Nagarajan, Kamryn N Gerner-Mauro, Kevin Jin, Virginia Liu, Rehman H Hassan, Miranda L Johnson, Lisa P Deliu, Yun You, Anurag Sharma, H Amalia Pasolli, Yue Lu, Jianhua Zhang, Vakul Mohanty, Ken Chen, Youn Joo Yang, Taiping Chen, Yejing Ge Dec 2024

Stem Cell Activity-Coupled Suppression Of Endogenous Retrovirus Governs Adult Tissue Regeneration, Ying Lyu, Soo Jin Kim, Ericka S Humphrey, Richa Nayak, Yinglu Guan, Qingnan Liang, Kun Hee Kim, Yukun Tan, Jinzhuang Dou, Huandong Sun, Xingzhi Song, Priyadharsini Nagarajan, Kamryn N Gerner-Mauro, Kevin Jin, Virginia Liu, Rehman H Hassan, Miranda L Johnson, Lisa P Deliu, Yun You, Anurag Sharma, H Amalia Pasolli, Yue Lu, Jianhua Zhang, Vakul Mohanty, Ken Chen, Youn Joo Yang, Taiping Chen, Yejing Ge

Faculty, Staff and Student Publications

Mammalian retrotransposons constitute 40% of the genome. During tissue regeneration, adult stem cells coordinately repress retrotransposons and activate lineage genes, but how this coordination is controlled is poorly understood. Here, we observed that dynamic expression of histone methyltransferase SETDB1 (a retrotransposon repressor) closely mirrors stem cell activities in murine skin. SETDB1 ablation leads to the reactivation of endogenous retroviruses (ERVs, a type of retrotransposon) and the assembly of viral-like particles, resulting in hair loss and stem cell exhaustion that is reversible by antiviral drugs. Mechanistically, at least two molecularly and spatially distinct pathways are responsible: antiviral defense mediated by hair …


Targeting Corticotropin-Releasing Hormone Receptor Type 1 (Crhr1) Neurons: Validating The Specificity Of A Novel Transgenic Crhr1-Flpo Mouse, Mason Hardy, Yuncai Chen, Tallie Z Baram, Nicholas J Justice Dec 2024

Targeting Corticotropin-Releasing Hormone Receptor Type 1 (Crhr1) Neurons: Validating The Specificity Of A Novel Transgenic Crhr1-Flpo Mouse, Mason Hardy, Yuncai Chen, Tallie Z Baram, Nicholas J Justice

Faculty, Staff and Student Publications

Corticotropin-releasing hormone (CRH) signaling through its cognate receptors, CRHR1 and CRHR2, contributes to diverse stress-related functions in the mammalian brain. Whereas CRHR2 is predominantly expressed in choroid plexus and blood vessels, CRHR1 is abundantly expressed in neurons in discrete brain regions, including the neocortex, hippocampus and nucleus accumbens. Activation of CRHR1 influences motivated behaviors, emotional states, and learning and memory. However, it is unknown whether alterations in CRHR1 signaling contribute to aberrant motivated behaviors observed, for example, in stressful contexts. These questions require tools to manipulate CRHR1 selectively. Here we describe and validate a novel Crhr1-FlpO mouse. Using bacterial artificial …


Development Of A Ripk1 Degrader To Enhance Antitumor Immunity, Xin Yu, Dong Lu, Xiaoli Qi, Rishi Ram Paudel, Hanfeng Lin, Bryan L Holloman, Feng Jin, Longyong Xu, Lang Ding, Weiyi Peng, Meng C Wang, Xi Chen, Jin Wang Dec 2024

Development Of A Ripk1 Degrader To Enhance Antitumor Immunity, Xin Yu, Dong Lu, Xiaoli Qi, Rishi Ram Paudel, Hanfeng Lin, Bryan L Holloman, Feng Jin, Longyong Xu, Lang Ding, Weiyi Peng, Meng C Wang, Xi Chen, Jin Wang

Faculty, Staff and Students Publications

The scaffolding function of receptor interacting protein kinase 1 (RIPK1) confers intrinsic and extrinsic resistance to immune checkpoint blockades (ICBs) and emerges as a promising target for improving cancer immunotherapies. To address the challenge posed by a poorly defined binding pocket within the intermediate domain of RIPK1, here we harness proteolysis targeting chimera (PROTAC) technology to develop a RIPK1 degrader, LD4172. LD4172 exhibits potent and selective RIPK1 degradation both in vitro and in vivo. Degradation of RIPK1 by LD4172 triggers immunogenic cell death, enhances tumor-infiltrating lymphocyte responses, and sensitizes tumors to anti-PD1 therapy in female C57BL/6J mice. This work reports …


Cd47 Signaling Induces Hepatic Cell Death And Microglia Activation During Hepatic Encephalopathy, Ashwin Jhawer, Gabriel Frampton, Shadikchhya Maya Bhattarai, Sharon Demorrow, Matthew Mcmillin Dec 2024

Cd47 Signaling Induces Hepatic Cell Death And Microglia Activation During Hepatic Encephalopathy, Ashwin Jhawer, Gabriel Frampton, Shadikchhya Maya Bhattarai, Sharon Demorrow, Matthew Mcmillin

Faculty and Staff Publications

Acute liver failure results from severe hepatic injury and can lead to neurological dysfunction known as hepatic encephalopathy (HE). Thrombospondin-1 can contribute to HE by increasing cerebral edema and microglia activation in the azoxymethane (AOM) mouse model. CD47 is a receptor for TSP1 and can directly modulate inflammation in numerous disease states. However, the role of CD47 in the progression of HE is currently unknown. Therefore, the aim of this study was to assess the role of CD47 in liver and brain pathology in the AOM mouse model of HE. C57Bl/6 or CD47 knockout (CD47−/−) were administered AOM to induce …