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Articles 1501 - 1530 of 6304
Full-Text Articles in Entire DC Network
Tumor Expression Of Cd83 Reduces Glioma Progression And Is Associated With Reduced Immunosuppression, Malcolm F Mcdonald, Rachel Naomi Curry, Isabella O'Reilly, Brittney Lozzi, Alexis Cervantes, Zhung-Fu Lee, Anna Rosenbaum, Peihao He, Carrie Mohila, Arif O Harmanci, Akdes Serin Harmanci, Benjamin Deneen, Ganesh Rao
Tumor Expression Of Cd83 Reduces Glioma Progression And Is Associated With Reduced Immunosuppression, Malcolm F Mcdonald, Rachel Naomi Curry, Isabella O'Reilly, Brittney Lozzi, Alexis Cervantes, Zhung-Fu Lee, Anna Rosenbaum, Peihao He, Carrie Mohila, Arif O Harmanci, Akdes Serin Harmanci, Benjamin Deneen, Ganesh Rao
Faculty, Staff and Student Publications
Immunosuppression in malignant glioma remains a barrier to therapeutic development. CD83 overexpression in human and mouse glioma increases survival. CD83+ tumor cells promote signatures related to cytotoxic T cells, enhanced activation of CD8+ T cells, and increased proinflammatory cytokines. These findings suggest that tumor-expressed CD83 could mediate tumor-immune communications.
Tyk2 Regulates Tau Levels, Phosphorylation And Aggregation In A Tauopathy Mouse Model, Jiyoen Kim, Bakhos Tadros, Yan Hong Liang, Youngdoo Kim, Cristian Lasagna-Reeves, Jun Young Sonn, Dah-Eun Chloe Chung, Bradley Hyman, David M Holtzman, Huda Yahya Zoghbi
Tyk2 Regulates Tau Levels, Phosphorylation And Aggregation In A Tauopathy Mouse Model, Jiyoen Kim, Bakhos Tadros, Yan Hong Liang, Youngdoo Kim, Cristian Lasagna-Reeves, Jun Young Sonn, Dah-Eun Chloe Chung, Bradley Hyman, David M Holtzman, Huda Yahya Zoghbi
2020-Current year OA Pubs
Alzheimer's disease is one of at least 26 diseases characterized by tau-positive accumulation in neurons, glia or both. However, it is still unclear what modifications cause soluble tau to transform into insoluble aggregates. We previously performed genetic screens that identified tyrosine kinase 2 (TYK2) as a candidate regulator of tau levels. Here we verified this finding and found that TYK2 phosphorylates tau at tyrosine 29 (Tyr29) leading to its stabilization and promoting its aggregation in human cells. We discovered that TYK2-mediated Tyr29 phosphorylation interferes with autophagic clearance of tau. We also show that TYK2-mediated phosphorylation of Tyr29 facilitates pathological tau …
Immunopeptidomic Mhc-I Profiling And Immunogenicity Testing Identifies Tcj2 As A New Chagas Disease Mrna Vaccine Candidate, Leroy Versteeg, Rakesh Adhikari, Gonteria Robinson, Jungsoon Lee, Junfei Wei, Nelufa Islam, Brian Keegan, William K Russell, Cristina Poveda, Maria Jose Villar, Kathryn Jones, Maria Elena Bottazzi, Peter Hotez, Edwin Tijhaar, Jeroen Pollet
Immunopeptidomic Mhc-I Profiling And Immunogenicity Testing Identifies Tcj2 As A New Chagas Disease Mrna Vaccine Candidate, Leroy Versteeg, Rakesh Adhikari, Gonteria Robinson, Jungsoon Lee, Junfei Wei, Nelufa Islam, Brian Keegan, William K Russell, Cristina Poveda, Maria Jose Villar, Kathryn Jones, Maria Elena Bottazzi, Peter Hotez, Edwin Tijhaar, Jeroen Pollet
Faculty, Staff and Students Publications
Trypanosoma cruzi is a protozoan parasite that causes Chagas disease. Globally 6 to 7 million people are infected by this parasite of which 20-30% will progress to develop Chronic Chagasic Cardiomyopathy (CCC). Despite its high disease burden, no clinically approved vaccine exists for the prevention or treatment of CCC. Developing vaccines that can stimulate T. cruzi-specific CD8+ cytotoxic T cells and eliminate infected cells requires targeting parasitic antigens presented on major histocompatibility complex-I (MHC-I) molecules. We utilized mass spectrometry-based immunopeptidomics to investigate which parasitic peptides are displayed on MHC-I of T. cruzi infected cells. Through duplicate experiments, we identified an …
Tyk2 Regulates Tau Levels, Phosphorylation And Aggregation In A Tauopathy Mouse Model, Jiyoen Kim, Bakhos Tadros, Yan Hong Liang, Youngdoo Kim, Cristian Lasagna-Reeves, Jun Young Sonn, Dah-Eun Chloe Chung, Bradley Hyman, David M Holtzman, Huda Yahya Zoghbi
Tyk2 Regulates Tau Levels, Phosphorylation And Aggregation In A Tauopathy Mouse Model, Jiyoen Kim, Bakhos Tadros, Yan Hong Liang, Youngdoo Kim, Cristian Lasagna-Reeves, Jun Young Sonn, Dah-Eun Chloe Chung, Bradley Hyman, David M Holtzman, Huda Yahya Zoghbi
Faculty, Staff and Students Publications
Alzheimer's disease is one of at least 26 diseases characterized by tau-positive accumulation in neurons, glia or both. However, it is still unclear what modifications cause soluble tau to transform into insoluble aggregates. We previously performed genetic screens that identified tyrosine kinase 2 (TYK2) as a candidate regulator of tau levels. Here we verified this finding and found that TYK2 phosphorylates tau at tyrosine 29 (Tyr29) leading to its stabilization and promoting its aggregation in human cells. We discovered that TYK2-mediated Tyr29 phosphorylation interferes with autophagic clearance of tau. We also show that TYK2-mediated phosphorylation of Tyr29 facilitates pathological tau …
The Sodium-Proton Exchangers Snhe And Nhe1 Control Plasma Membrane Hyperpolarization In Mouse Sperm, Analia G Novero, Celia M Santi, Et Al.
The Sodium-Proton Exchangers Snhe And Nhe1 Control Plasma Membrane Hyperpolarization In Mouse Sperm, Analia G Novero, Celia M Santi, Et Al.
2020-Current year OA Pubs
Sperm capacitation is a complex process that takes place in the female reproductive tract and empowers mammalian sperm with the competence to fertilize an egg. It consists of an intricate cascade of events that can be mimicked in vitro through incubation in a medium containing essential components, such as bicarbonate, albumin, Ca
Molecular Imaging In Experimental Pulmonary Fibrosis Reveals That Nintedanib Unexpectedly Modulates Ccr2 Immune Cell Infiltration, Hasan Farooq, Hannah P Luehmann, Jeffrey R Koenitzer, Gyu Seong Heo, Deborah H Sultan, Devesha H Kulkarni, Sean P Gunsten, Rekha M Sashti, Tao Huang, Amanda R Keller, Kory J Lavine, Jeffrey J Atkinson, Laura M Wingler, Yongjian Liu, Steven L Brody
Molecular Imaging In Experimental Pulmonary Fibrosis Reveals That Nintedanib Unexpectedly Modulates Ccr2 Immune Cell Infiltration, Hasan Farooq, Hannah P Luehmann, Jeffrey R Koenitzer, Gyu Seong Heo, Deborah H Sultan, Devesha H Kulkarni, Sean P Gunsten, Rekha M Sashti, Tao Huang, Amanda R Keller, Kory J Lavine, Jeffrey J Atkinson, Laura M Wingler, Yongjian Liu, Steven L Brody
2020-Current year OA Pubs
BACKGROUND: Pulmonary fibrosis is a challenging clinical problem with lung pathology featuring immune cell infiltrates, fibroblast expansion, and matrix deposition. Molecular analysis of diseased lungs and preclinical models have uncovered C-C chemokine receptor type 2 (CCR2)+ monocyte egress from the bone marrow into the lung, where they acquire profibrotic activities. Current drug treatment is focused on fibroblast activity. Alternatively, therapeutic targeting and monitoring CCR2+ cells may be an effective patient management strategy.
METHODS: Inhibition of CCR2+ cells and, as a benchmark, the clinical antifibrotic agent, nintedanib, were used in mouse lung fibrosis models. Lungs were evaluated directly for CCR2+ cell …
Retinal Ganglion Cell Circuits And Glial Interactions In Humans And Mice, Kang-Chieh Huang, Mohamed Tawfik, Melanie A Samuel
Retinal Ganglion Cell Circuits And Glial Interactions In Humans And Mice, Kang-Chieh Huang, Mohamed Tawfik, Melanie A Samuel
Faculty, Staff and Students Publications
Retinal ganglion cells (RGCs) are the brain's gateway for vision, and their degeneration underlies several blinding diseases. RGCs interact with other neuronal cell types, microglia, and astrocytes in the retina and in the brain. Much knowledge has been gained about RGCs and glia from mice and other model organisms, often with the assumption that certain aspects of their biology may be conserved in humans. However, RGCs vary considerably between species, which could affect how they interact with their neuronal and glial partners. This review details which RGC and glial features are conserved between mice, humans, and primates, and which differ. …
Development And Validation Of A Prechiasmatic Mouse Model Of Subarachnoid Hemorrhage To Measure Long-Term Cognitive Deficits, Deepti Diwan, Jogender Mehla, James W Nelson, James D Quirk, Sheng-Kwei Song, Sarah Cao, Benjamin Meron, Aminah Mostofa, Gregory J Zipfel
Development And Validation Of A Prechiasmatic Mouse Model Of Subarachnoid Hemorrhage To Measure Long-Term Cognitive Deficits, Deepti Diwan, Jogender Mehla, James W Nelson, James D Quirk, Sheng-Kwei Song, Sarah Cao, Benjamin Meron, Aminah Mostofa, Gregory J Zipfel
2020-Current year OA Pubs
Controllable and reproducible animal models of aneurysmal subarachnoid hemorrhage (SAH) are crucial for the systematic study of the pathophysiology and treatment of this debilitating condition. However, current animal models have not been successful in replicating the pathology and disabilities seen in SAH patients, especially the long-term neurocognitive deficits that affect the survivor's quality of life. Therefore, there is an unmet need to develop experimental models that reliably replicate the long-term clinical ramifications of SAH - especially in mice where genetic manipulations are straightforward and readily available. To address this need, a standardized mouse SAH model is developed that reproducibly produced …
Fibrolytic Vaccination Against Adam12 Reduces Desmoplasia In Preclinical Pancreatic Adenocarcinomas, Jing Chen, David Denardo, Et Al.
Fibrolytic Vaccination Against Adam12 Reduces Desmoplasia In Preclinical Pancreatic Adenocarcinomas, Jing Chen, David Denardo, Et Al.
2020-Current year OA Pubs
A hallmark feature of pancreatic ductal adenocarcinoma (PDAC) is massive intratumoral fibrosis, designated as desmoplasia. Desmoplasia is characterized by the expansion of cancer-associated fibroblasts (CAFs) and a massive increase in extracellular matrix (ECM). During fibrogenesis, distinct genes become reactivated specifically in fibroblasts, e.g., the disintegrin metalloprotease, ADAM12. Previous studies have shown that immunotherapeutic ablation of ADAM12
Opa1 And Disease-Causing Mutants Perturb Mitochondrial Nucleoid Distribution, J. Macuada, I. Molina-Riquelme, G. Vidal, N. Pérez-Bravo, C. Vásquez-Trincado, G. Aedo, D. Lagos, P. Yu-Wai-Man, R. Horvath, T. J. Rudge, B. Cartes-Saavedra, V. Eisner
Opa1 And Disease-Causing Mutants Perturb Mitochondrial Nucleoid Distribution, J. Macuada, I. Molina-Riquelme, G. Vidal, N. Pérez-Bravo, C. Vásquez-Trincado, G. Aedo, D. Lagos, P. Yu-Wai-Man, R. Horvath, T. J. Rudge, B. Cartes-Saavedra, V. Eisner
Department of Pathology, Anatomy, and Cell Biology Faculty Papers
Optic atrophy protein 1 (OPA1) mediates inner mitochondrial membrane (IMM) fusion and cristae organization. Mutations in OPA1 cause autosomal dominant optic atrophy (ADOA), a leading cause of blindness. Cells from ADOA patients show impaired mitochondrial fusion, cristae structure, bioenergetic function, and mitochondrial DNA (mtDNA) integrity. The mtDNA encodes electron transport chain subunits and is packaged into nucleoids spread within the mitochondrial population. Nucleoids interact with the IMM, and their distribution is tightly linked to mitochondrial fusion and cristae shaping. Yet, little is known about the physio-pathological relevance of nucleoid distribution. We studied the effect of OPA1 and ADOA-associated mutants on …
A Tetramer Of Bcl11a Is Required For Stable Protein Production And Fetal Hemoglobin Silencing, Ge Zheng, Maolu Yin, Stuti Mehta, I-Te Chu, Stacy Wang, Alia Alshaye, Kirstin Drainville, Altantsetseg Buyanbat, Frédérique Bienfait, Karin Tenglin, Qian Zhu, Stuart H Orkin
A Tetramer Of Bcl11a Is Required For Stable Protein Production And Fetal Hemoglobin Silencing, Ge Zheng, Maolu Yin, Stuti Mehta, I-Te Chu, Stacy Wang, Alia Alshaye, Kirstin Drainville, Altantsetseg Buyanbat, Frédérique Bienfait, Karin Tenglin, Qian Zhu, Stuart H Orkin
Faculty, Staff and Students Publications
Down-regulation of BCL11A protein reverses the fetal (HbF, α2γ2) to adult (HbA, α2β2) hemoglobin switch and is exploited in gene-based therapy for hemoglobin disorders. Due to reliance on ex vivo cell manipulation and marrow transplant, such therapies cannot lessen disease burden. To develop novel small molecule approaches, we interrogated the state of BCL11A protein in erythroid cells. We report that tetramer formation mediated by a single zinc-finger (ZnF0) is required for production of steady-state protein. Beyond its role in protein stability, the tetramer state is necessary for γ-globin gene repression, as an engineered monomer fails to engage a critical corepressor …
Hypertonic Saline Induces Host Protective Immune Responses Against, Tran Xuan Ngoc Huy, Trang Thi Nguyen, Said Abdi Salad, Ched Nicole Turbela Aguilar, Alisha Wehdnesday Bernardo Reyes, Lauren Togonon Arayan, Wongi Min, Hu Jang Lee, Huynh Tan Hop, Suk Kim
Hypertonic Saline Induces Host Protective Immune Responses Against, Tran Xuan Ngoc Huy, Trang Thi Nguyen, Said Abdi Salad, Ched Nicole Turbela Aguilar, Alisha Wehdnesday Bernardo Reyes, Lauren Togonon Arayan, Wongi Min, Hu Jang Lee, Huynh Tan Hop, Suk Kim
Faculty Research 2024
Hypertonic saline (HTS) resuscitation can enhance immune responses against various pathogens, however, the effect of HTS on brucellosis is yet to be defined. In this study, we found that HTS inhibited Brucella infection in mice by augmenting Th1 immunity. HTS treatment enhanced the serum cytokines production and the expression of nitric oxide synthase (NOS2) and nuclear factor kappa B (NF-ĸB) p50 and p65, crucial anti-Brucella effectors in splenocytes. In addition, HTS treatment also inhibited the phosphorylation of MAPK signaling, accompanied by the down-regulation of the autophagy marker LC3B-II. Due to directing an appropriate immune response, HTS treatment substantially decreased bacterial …
Blood Matters: The Hematological Signatures Of Coronavirus Infection, Ayelen Toro, Ana P Arévalo, Marianoel Pereira-Gómez, Agustina Sabater, Eric A Zizzi, Paula Perbolianachis, Gaston Pascual, Sofia Lage-Vickers, Jorge L Pórfido, Ines Achinelli, Rocio Seniuk, Juan Bizzotto, Pablo Sanchis, Alvaro Olivera, Alejandro Leyva, Pilar Moreno, Alicia Costábile, Alvaro Fajardo, Federico Carrión, Martín Fló, Natalia Olivero-Deibe, Fernando Rodriguez, Nicolas Nin, Nicolas Anselmino, Estefania Labanca, Elba Vazquez, Javier Cotignola, Daniel F Alonso, Maria P Valacco, Marcelo Marti, Francesco Gentile, Artem Cherkasov, Martina Crispo, Gonzalo Moratorio, Geraldine Gueron
Blood Matters: The Hematological Signatures Of Coronavirus Infection, Ayelen Toro, Ana P Arévalo, Marianoel Pereira-Gómez, Agustina Sabater, Eric A Zizzi, Paula Perbolianachis, Gaston Pascual, Sofia Lage-Vickers, Jorge L Pórfido, Ines Achinelli, Rocio Seniuk, Juan Bizzotto, Pablo Sanchis, Alvaro Olivera, Alejandro Leyva, Pilar Moreno, Alicia Costábile, Alvaro Fajardo, Federico Carrión, Martín Fló, Natalia Olivero-Deibe, Fernando Rodriguez, Nicolas Nin, Nicolas Anselmino, Estefania Labanca, Elba Vazquez, Javier Cotignola, Daniel F Alonso, Maria P Valacco, Marcelo Marti, Francesco Gentile, Artem Cherkasov, Martina Crispo, Gonzalo Moratorio, Geraldine Gueron
Faculty, Staff and Student Publications
Recent developments have broadened our perception of SARS-CoV-2, indicating its capability to affect the body systemically beyond its initial recognition as a mere respiratory pathogen. However, the pathways of its widespread are not well understood. Employing a dual-modality approach, we integrated findings from a Murine Hepatitis Virus (MHV) infection model with corroborative clinical data to investigate the pervasive reach of Coronaviruses. The novel presence of viral particles within red blood cells (RBCs) was demonstrated via high-resolution transmission electron microscopy, with computational modeling elucidating a potential heme-mediated viral entry mechanism via Spike protein affinity. Our data affirm viral localization in RBCs, …
Human Single Cell Rna-Sequencing Reveals A Targetable Cd8+ Exhausted T Cell Population That Maintains Mouse Low-Grade Glioma Growth, Rasha Barakat, Jit Chatterjee, Rui Mu, Xuanhe Qi, Xingxing Gu, Igor Smirnov, Olivia Cobb, Karen Gao, Angelica Barnes, Jonathan Kipnis, David H Gutmann
Human Single Cell Rna-Sequencing Reveals A Targetable Cd8+ Exhausted T Cell Population That Maintains Mouse Low-Grade Glioma Growth, Rasha Barakat, Jit Chatterjee, Rui Mu, Xuanhe Qi, Xingxing Gu, Igor Smirnov, Olivia Cobb, Karen Gao, Angelica Barnes, Jonathan Kipnis, David H Gutmann
2020-Current year OA Pubs
In solid cancers, T cells typically function as cytotoxic effectors to limit tumor growth, prompting therapies that capitalize upon this antineoplastic property (immune checkpoint inhibition; ICI). Unfortunately, ICI treatments have been largely ineffective for high-grade brain tumors (gliomas; HGGs). Leveraging several single-cell RNA sequencing datasets, we report greater CD8
Myt1l Deficiency Impairs Excitatory Neuron Trajectory During Cortical Development, Allen Yen, Simona Sarafinovska, Xuhua Chen, Dominic D Skinner, Fatjon Leti, Marialynn Crosby, Jessica Hoisington-Lopez, Yizhe Wu, Jiayang Chen, Zipeng A Li, Kevin K Noguchi, Robi D Mitra, Joseph D Dougherty
Myt1l Deficiency Impairs Excitatory Neuron Trajectory During Cortical Development, Allen Yen, Simona Sarafinovska, Xuhua Chen, Dominic D Skinner, Fatjon Leti, Marialynn Crosby, Jessica Hoisington-Lopez, Yizhe Wu, Jiayang Chen, Zipeng A Li, Kevin K Noguchi, Robi D Mitra, Joseph D Dougherty
2020-Current year OA Pubs
Mutations reducing the function of MYT1L, a neuron-specific transcription factor, are associated with a syndromic neurodevelopmental disorder. MYT1L is used as a pro-neural factor in fibroblast-to-neuron transdifferentiation and is hypothesized to influence neuronal specification and maturation, but it is not clear which neuron types are most impacted by MYT1L loss. In this study, we profile 412,132 nuclei from the forebrains of wild-type and MYT1L-deficient mice at three developmental stages: E14 at the peak of neurogenesis, P1 when cortical neurons have been born, and P21 when neurons are maturing, to examine the role of MYT1L levels on neuronal development. MYT1L deficiency …
Mechanisms Of Memory-Supporting Neuronal Dynamics In Hippocampal Area Ca3, Yiding Li, John J Briguglio, Sandro Romani, Jeffrey C Magee
Mechanisms Of Memory-Supporting Neuronal Dynamics In Hippocampal Area Ca3, Yiding Li, John J Briguglio, Sandro Romani, Jeffrey C Magee
Faculty, Staff and Students Publications
Hippocampal CA3 is central to memory formation and retrieval. Although various network mechanisms have been proposed, direct evidence is lacking. Using intracellular Vm recordings and optogenetic manipulations in behaving mice, we found that CA3 place-field activity is produced by a symmetric form of behavioral timescale synaptic plasticity (BTSP) at recurrent synapses among CA3 pyramidal neurons but not at synapses from the dentate gyrus (DG). Additional manipulations revealed that excitatory input from the entorhinal cortex (EC) but not the DG was required to update place cell activity based on the animal’s movement. These data were captured by a computational model that …
Instrumented Swim Test For Quantifying Motor Impairment In Rodents., Natasha C Hughes, Dale C Roberts, Basile Tarchini, Kathleen E Cullen
Instrumented Swim Test For Quantifying Motor Impairment In Rodents., Natasha C Hughes, Dale C Roberts, Basile Tarchini, Kathleen E Cullen
Faculty Research 2024
Swim tests are highly effective for identifying vestibular deficits in rodents by offering significant vestibular motor challenges with reduced proprioceptive input, unlike rotarod and balance beam tests. Traditional swim tests rely on subjective assessments, limiting objective quantification and reproducibility. We present a novel instrumented swim test using a miniature motion sensor with a 3D accelerometer and 3D gyroscope affixed to the rodent’s head. This setup robustly quantifies six-dimensional motion—three translational and three rotational axes—during swimming with high temporal resolution. We demonstrate the test’s capabilities by comparing head movements of Gpr156-/- mutant mice, which have impaired otolith organ development, to …
Protective Effect And Molecular Mechanisms Of Human Non-Neutralizing Cross-Reactive Spike Antibodies Elicited By Sars-Cov-2 Mrna Vaccination, Jordan J Clark, Ali H Ellebedy, Et Al.
Protective Effect And Molecular Mechanisms Of Human Non-Neutralizing Cross-Reactive Spike Antibodies Elicited By Sars-Cov-2 Mrna Vaccination, Jordan J Clark, Ali H Ellebedy, Et Al.
2020-Current year OA Pubs
Neutralizing antibodies correlate with protection against severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). Recent studies, however, show that binding antibody titers, in the absence of robust neutralizing activity, also correlate with protection against disease progression. Non-neutralizing antibodies cannot directly protect against infection but may recruit effector cells and thus contribute to the clearance of infected cells. Additionally, they often bind conserved epitopes across multiple variants. Here, we characterize 42 human monoclonal antibodies (mAbs) from coronavirus disease 2019 (COVID-19)-vaccinated individuals. Most of these antibodies exhibit no neutralizing activity in vitro, but several non-neutralizing antibodies provide protection against lethal challenge with SARS-CoV-2 …
Antithrombotic Efficacy And Bleeding Risks Of Vaccine-Induced Immune Thrombotic Thrombocytopenia Treatments, Halina H.L. Leung, Zohra Ahmadi, Brendan Lee, John Casey, Sumita Ratnasingam, Steven E. Mckenzie, Jose Perdomo, Beng H. Chong
Antithrombotic Efficacy And Bleeding Risks Of Vaccine-Induced Immune Thrombotic Thrombocytopenia Treatments, Halina H.L. Leung, Zohra Ahmadi, Brendan Lee, John Casey, Sumita Ratnasingam, Steven E. Mckenzie, Jose Perdomo, Beng H. Chong
Cardeza Foundation for Hematologic Research
Current guidelines for treating vaccine-induced immune thrombotic thrombocytopenia (VITT) recommend nonheparin anticoagulants and IV immunoglobulin (IVIg). However, the efficacy of these treatments remains uncertain due to case studies involving small patient numbers, confounding factors (eg, concurrent treatments), and a lack of animal studies. A recent study proposed danaparoid and heparin as potential VITT therapies because of their ability to disrupt VITT IgG-platelet factor 4 (PF4) binding. Here, we examined the effects of various anticoagulants (including unfractionated [UF] heparin, danaparoid, bivalirudin, fondaparinux, and argatroban), IVIg, and the FcγRIIa receptor-blocking antibody, IV.3. Our investigation focused on VITT IgG-PF4 binding, platelet activation, thrombocytopenia, …
Comparing Neoantigen Cancer Vaccines And Immune Checkpoint Therapy Unveils An Effective Vaccine And Anti-Trem2 Macrophage-Targeting Dual Therapy, Sunita Keshari, Alexander S Shavkunov, Qi Miao, Akata Saha, Tomoyuki Minowa, Martina Molgora, Charmelle D Williams, Mehdi Chaib, Anna M Highsmith, Josué E Pineda, Sayan Alekseev, Elise Alspach, Kenneth H Hu, Marco Colonna, Kristen E Pauken, Ken Chen, Matthew M Gubin
Comparing Neoantigen Cancer Vaccines And Immune Checkpoint Therapy Unveils An Effective Vaccine And Anti-Trem2 Macrophage-Targeting Dual Therapy, Sunita Keshari, Alexander S Shavkunov, Qi Miao, Akata Saha, Tomoyuki Minowa, Martina Molgora, Charmelle D Williams, Mehdi Chaib, Anna M Highsmith, Josué E Pineda, Sayan Alekseev, Elise Alspach, Kenneth H Hu, Marco Colonna, Kristen E Pauken, Ken Chen, Matthew M Gubin
Faculty, Staff and Student Publications
The goal of therapeutic cancer vaccines and immune checkpoint therapy (ICT) is to promote T cells with anti-tumor capabilities. Here, we compared mutant neoantigen (neoAg) peptide-based vaccines with ICT in preclinical models. NeoAg vaccines induce the most robust expansion of proliferating and stem-like PD-1+TCF-1+ neoAg-specific CD8 T cells in tumors. Anti-CTLA-4 and/or anti-PD-1 ICT promotes intratumoral TCF-1- neoAg-specific CD8 T cells, although their phenotype depends in part on the specific ICT used. Anti-CTLA-4 also prompts substantial changes to CD4 T cells, including induction of ICOS+Bhlhe40+ T helper 1 (Th1)-like cells. Although neoAg vaccines or ICTs expand iNOS+ macrophages, neoAg vaccines …
Rsk1 Dependency In Flt3-Itd Acute Myeloid Leukemia, Tim Kong, Angelo B A Laranjeira, Christopher T Letson, Layow Yu, Fan He, Aarthi Jayanthan, Gerrit Los, Sandra E Dunn, Grant A Challen, Stephen T Oh
Rsk1 Dependency In Flt3-Itd Acute Myeloid Leukemia, Tim Kong, Angelo B A Laranjeira, Christopher T Letson, Layow Yu, Fan He, Aarthi Jayanthan, Gerrit Los, Sandra E Dunn, Grant A Challen, Stephen T Oh
2020-Current year OA Pubs
Internal tandem duplications (ITD) in fms-like tyrosine kinase 3 (FLT3) represent the most common genetic alteration in de novo acute myeloid leukemia (AML). Here, we identify ribosomal protein s6 kinase a1 (RSK1) as a core dependency in FLT3-ITD AML and unveil the existence of crucial bi-directional regulation. RSK1 perturbation resulted in marked apoptosis and abrogated phosphorylation of FLT3 and associated downstream signaling cascades in FLT3-ITD AML cell lines. Using cycloheximide, MG-132, and ubiquitination assays, we further demonstrate mechanistically that RSK1 regulates FLT3-ITD activity, and protein stability through deubiqutinase USP1, which we identify as a second dependency. Importantly, multivariate analysis revealed …
Comparing Neoantigen Cancer Vaccines And Immune Checkpoint Therapy Unveils An Effective Vaccine And Anti-Trem2 Macrophage-Targeting Dual Therapy, Sunita Keshari, Martina Molgora, Marco Colonna, Et Al.
Comparing Neoantigen Cancer Vaccines And Immune Checkpoint Therapy Unveils An Effective Vaccine And Anti-Trem2 Macrophage-Targeting Dual Therapy, Sunita Keshari, Martina Molgora, Marco Colonna, Et Al.
2020-Current year OA Pubs
The goal of therapeutic cancer vaccines and immune checkpoint therapy (ICT) is to promote T cells with anti-tumor capabilities. Here, we compared mutant neoantigen (neoAg) peptide-based vaccines with ICT in preclinical models. NeoAg vaccines induce the most robust expansion of proliferating and stem-like PD-1
Spatial, Transcriptomic, And Epigenomic Analyses Link Dorsal Horn Neurons To Chronic Pain Genetic Predisposition, Cynthia M Arokiaraj, Alexander Chamessian, Et Al.
Spatial, Transcriptomic, And Epigenomic Analyses Link Dorsal Horn Neurons To Chronic Pain Genetic Predisposition, Cynthia M Arokiaraj, Alexander Chamessian, Et Al.
2020-Current year OA Pubs
Key mechanisms underlying chronic pain occur within the dorsal horn. Genome-wide association studies (GWASs) have identified genetic variants predisposed to chronic pain. However, most of these variants lie within regulatory non-coding regions that have not been linked to spinal cord biology. Here, we take a multi-species approach to determine whether chronic pain variants impact the regulatory genomics of dorsal horn neurons. First, we generate a large rhesus macaque single-nucleus RNA sequencing (snRNA-seq) atlas and integrate it with available human and mouse datasets to produce a single unified, species-conserved atlas of neuron subtypes. Cellular-resolution spatial transcriptomics in mouse shows the precise …
Cd4+ T Cells Drive Corneal Nerve Damage But Not Epitheliopathy In An Acute Aqueous-Deficient Dry Eye Model, Alexia Vereertbrugghen, Manuela Pizzano, Agostina Cernutto, Florencia Sabbione, Irene A Keitelman, Douglas Vera Aguilar, Ariel Podhorzer, Federico Fuentes, Celia Corral-Vázquez, Mauricio Guzmán, Mirta N Giordano, Analía Trevani, Cintia S De Paiva, Jeremías G Galletti
Cd4+ T Cells Drive Corneal Nerve Damage But Not Epitheliopathy In An Acute Aqueous-Deficient Dry Eye Model, Alexia Vereertbrugghen, Manuela Pizzano, Agostina Cernutto, Florencia Sabbione, Irene A Keitelman, Douglas Vera Aguilar, Ariel Podhorzer, Federico Fuentes, Celia Corral-Vázquez, Mauricio Guzmán, Mirta N Giordano, Analía Trevani, Cintia S De Paiva, Jeremías G Galletti
Faculty, Staff and Students Publications
Dry eye disease (DED) is characterized by a dysfunctional tear film in which the corneal epithelium and its abundant nerves are affected by ocular desiccation and inflammation. Although adaptive immunity and specifically CD4+ T cells play a role in DED pathogenesis, the exact contribution of these cells to corneal epithelial and neural damage remains undetermined. To address this, we explored the progression of a surgical DED model in wild-type (WT) and T cell-deficient mice. We observed that adaptive immune-deficient mice developed all aspects of DED comparably to WT mice except for the absence of functional and morphological corneal nerve changes, …
Impact Of Vitamin D On Hyperoxic Acute Lung Injury In Neonatal Mice, Thu T Tran, Jonathan Davies, Richard A Johnston, Harry Karmouty-Quintana, Huiling Li, Caroline E Crocker, Amir M Khan, Joseph L Alcorn
Impact Of Vitamin D On Hyperoxic Acute Lung Injury In Neonatal Mice, Thu T Tran, Jonathan Davies, Richard A Johnston, Harry Karmouty-Quintana, Huiling Li, Caroline E Crocker, Amir M Khan, Joseph L Alcorn
Faculty, Staff and Students Publications
BACKGROUND: Prolonged exposure to hyperoxia can lead to hyperoxic acute lung injury (HALI) in preterm neonates. Vitamin D (VitD) stimulates lung maturation and acts as an anti-inflammatory agent. Our objective was to determine if VitD provides a dose-dependent protective effect against HALI by reducing inflammatory cytokine expression and improving alveolarization and lung function in neonatal mice.
METHODS: C57BL/6 mouse neonates were randomized and placed in room air or hyperoxic (85% O
RESULTS: Neonatal mice treated with VitD in hyperoxic conditions had improved weight gain, reduced pulmonary edema and increased alveolar surface area compared to untreated pups in hyperoxia. No significant …
Identification Of Lrp1+Cd13+ Human Periosteal Stem Cells That Require Lrp1 For Bone Repair, Youngjae Jeong, Lorenzo Deveza, Laura Ortinau, Kevin Lei, John R Dawson, Dongsu Park
Identification Of Lrp1+Cd13+ Human Periosteal Stem Cells That Require Lrp1 For Bone Repair, Youngjae Jeong, Lorenzo Deveza, Laura Ortinau, Kevin Lei, John R Dawson, Dongsu Park
Faculty, Staff and Students Publications
Human periosteal skeletal stem cells (P-SSCs) are critical for cortical bone maintenance and repair. However, their in vivo identity, molecular characteristics, and specific markers remain unknown. Here, single-cell sequencing revealed human periosteum contains SSC clusters expressing known SSC markers, podoplanin (PDPN) and PDGFRA. Notably, human P-SSCs, but not bone marrow SSCs, selectively expressed identified markers low density lipoprotein receptor-related protein 1 (LRP1) and CD13. These LRP1+CD13+ human P-SSCs were perivascular cells with high osteochondrogenic but minimal adipogenic potential. Upon transplantation into bone injuries in mice, they preserved self-renewal capability in vivo. Single-cell analysis of mouse periosteum further supported the preferential …
Neuroprotective Effect Of L-Dopa-Induced Interleukin-13 On Striatonigral Degeneration In Cerebral Ischemia, Eunhae Jeon, Myeong-Seong Seo, Enkhmaa Lkhagva-Yondon, Yu-Ree Lim, Seung-Woo Kim, Yu Jeong Kang, Jun Seok Lee, Byoung Dae Lee, Rayul Wi, So-Yoon Won, Young Cheul Chung, Eun S Park, Eunhee Kim, Byung Kwan Jin, Myung-Shin Jeon
Neuroprotective Effect Of L-Dopa-Induced Interleukin-13 On Striatonigral Degeneration In Cerebral Ischemia, Eunhae Jeon, Myeong-Seong Seo, Enkhmaa Lkhagva-Yondon, Yu-Ree Lim, Seung-Woo Kim, Yu Jeong Kang, Jun Seok Lee, Byoung Dae Lee, Rayul Wi, So-Yoon Won, Young Cheul Chung, Eun S Park, Eunhee Kim, Byung Kwan Jin, Myung-Shin Jeon
Faculty, Staff and Student Publications
Levodopa (L-DOPA) treatment is a clinically effective strategy for improving motor function in patients with ischemic stroke. However, the mechanisms by which modulating the dopamine system relieves the pathology of the ischemic brain remain unclear. Emerging evidence from an experimental mouse model of ischemic stroke, established by middle cerebral artery occlusion (MCAO), suggested that L-DOPA has the potential to modulate the inflammatory and immune response that occurs during a stroke. Here, we aimed to demonstrate the therapeutic effect of L-DOPA in regulating the systemic immune response and improving functional deficits in mice with ischemia. Transient MCAO led to progressive degeneration …
Insights Into Human Norovirus Cultivation In Human Intestinal Enteroids, Khalil Ettayebi, Gurpreet Kaur, Ketki Patil, Janam Dave, B Vijayalakshmi Ayyar, Victoria R Tenge, Frederick H Neill, Xi-Lei Zeng, Allison L Speer, Sara C Di Rienzi, Robert A Britton, Sarah E Blutt, Sue E Crawford, Sasirekha Ramani, Robert L Atmar, Mary K Estes
Insights Into Human Norovirus Cultivation In Human Intestinal Enteroids, Khalil Ettayebi, Gurpreet Kaur, Ketki Patil, Janam Dave, B Vijayalakshmi Ayyar, Victoria R Tenge, Frederick H Neill, Xi-Lei Zeng, Allison L Speer, Sara C Di Rienzi, Robert A Britton, Sarah E Blutt, Sue E Crawford, Sasirekha Ramani, Robert L Atmar, Mary K Estes
Faculty, Staff and Students Publications
Human noroviruses (HuNoVs) are a significant cause of epidemic and sporadic acute gastroenteritis worldwide. The lack of a reproducible culture system hindered the study of HuNoV replication and pathogenesis for almost a half-century. This barrier was overcome with our successful cultivation of multiple HuNoV strains in human intestinal enteroids (HIEs), which has significantly advanced HuNoV research. We optimized culture media conditions and generated genetically modified HIE cultures to enhance HuNoV replication in HIEs. Building upon these achievements, we now present new insights into this culture system, which involve testing different media, unique HIE lines, and additional virus strains. HuNoV infectivity …
Plasmodium Berghei Liver Stage Parasites Exploit Host Gabarap Proteins For Tfeb Activation, Jacqueline Schmuckli-Maurer, Annina F Bindschedler, Rahel Wacker, Oliver M Würgler, Ruth Rehmann, Timothy Lehmberg, Leon O Murphy, Thanh N Nguyen, Michael Lazarou, Jlenia Monfregola, Andrea Ballabio, Volker T Heussler
Plasmodium Berghei Liver Stage Parasites Exploit Host Gabarap Proteins For Tfeb Activation, Jacqueline Schmuckli-Maurer, Annina F Bindschedler, Rahel Wacker, Oliver M Würgler, Ruth Rehmann, Timothy Lehmberg, Leon O Murphy, Thanh N Nguyen, Michael Lazarou, Jlenia Monfregola, Andrea Ballabio, Volker T Heussler
Duncan NRI Faculty and Staff Publications
Plasmodium, the causative agent of malaria, infects hepatocytes prior to establishing a symptomatic blood stage infection. During this liver stage development, parasites reside in a parasitophorous vacuole (PV), whose membrane acts as the critical interface between the parasite and the host cell. It is well-established that host cell autophagy-related processes significantly impact the development of Plasmodium liver stages. Expression of genes related to autophagy and lysosomal biogenesis is orchestrated by transcription factor EB (TFEB). In this study, we explored the activation of host cell TFEB in Plasmodium berghei-infected cells during the liver stage of the parasite. Our results …
Immune Responses Drive Chorioretinitis And Retinal Pathology After Neonatal Cmv Infection, Jessica L. Mccord, John Y.S. Han, Ross E. Staudt, Nancy J. Philp Phd, Christopher M. Snyder
Immune Responses Drive Chorioretinitis And Retinal Pathology After Neonatal Cmv Infection, Jessica L. Mccord, John Y.S. Han, Ross E. Staudt, Nancy J. Philp Phd, Christopher M. Snyder
Department of Microbiology and Immunology Faculty Papers
Human cytomegalovirus (CMV) causes a common congenital infection leading to long-term neurological impairments including brain, cochlear, and ocular pathology. Infection of newborn mice with murine (M)CMV is an established model of neuropathology caused by congenital CMV infection, with recent work suggesting that brain pathology may be driven by immune responses. In the eye, however, CMV retinitis is thought to result from virus-driven necrosis in the absence of T cell responses. We found that MCMV infection of newborn mice recapitulates human eye disease after congenital CMV infection, including focal chorioretinitis, inflamed vasculature, and disrupted blood-retinal barriers. Moreover, infection drove extensive T …