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Articles 3961 - 3990 of 7774

Full-Text Articles in Medicine and Health Sciences

Prematurity Blunts Protein Synthesis In Skeletal Muscle Independently Of Body Weight In Neonatal Pigs, Marko Rudar, Jane K Naberhuis, Agus Suryawan, Hanh V Nguyen, Marta L Fiorotto, Teresa A Davis Jul 2023

Prematurity Blunts Protein Synthesis In Skeletal Muscle Independently Of Body Weight In Neonatal Pigs, Marko Rudar, Jane K Naberhuis, Agus Suryawan, Hanh V Nguyen, Marta L Fiorotto, Teresa A Davis

Faculty, Staff and Students Publications

Background

Postnatal growth failure in premature infants is associated with reduced lean mass accretion. Prematurity impairs the feeding-induced stimulation of translation initiation and protein synthesis in the skeletal muscle of neonatal pigs. The objective was to determine whether body weight independently contributes to the blunted postprandial protein synthesis.

Methods

Preterm and term pigs that were either fasted or fed were stratified into quartiles according to birth weight to yield preterm and term groups of similar body weight; first and second quartiles of preterm pigs and third and fourth quartiles of term pigs were compared (preterm-fasted, n = 23; preterm-fed, n …


Ywhae Loss Of Function Causes A Rare Neurodevelopmental Disease With Brain Abnormalities In Human And Mouse, Anne-Sophie Denommé-Pichon, Stephan C Collins, Ange-Line Bruel, Anna Mikhaleva, Christel Wagner, Valerie E Vancollie, Quentin Thomas, Martin Chevarin, Mathys Weber, Carlos E Prada, Alexis Overs, María Palomares-Bralo, Fernando Santos-Simarro, Marta Pacio-Míguez, Tiffany Busa, Eric Legius, Carlos A Bacino, Jill A Rosenfeld, Gwenaël Le Guyader, Matthieu Egloff, Xavier Le Guillou, Maria Antonietta Mencarelli, Alessandra Renieri, Salvatore Grosso, Jonathan Levy, Blandine Dozières, Isabelle Desguerre, Antonio Vitobello, Yannis Duffourd, Christopher J Lelliott, Christel Thauvin-Robinet, Christophe Philippe, Laurence Faivre, Binnaz Yalcin Jul 2023

Ywhae Loss Of Function Causes A Rare Neurodevelopmental Disease With Brain Abnormalities In Human And Mouse, Anne-Sophie Denommé-Pichon, Stephan C Collins, Ange-Line Bruel, Anna Mikhaleva, Christel Wagner, Valerie E Vancollie, Quentin Thomas, Martin Chevarin, Mathys Weber, Carlos E Prada, Alexis Overs, María Palomares-Bralo, Fernando Santos-Simarro, Marta Pacio-Míguez, Tiffany Busa, Eric Legius, Carlos A Bacino, Jill A Rosenfeld, Gwenaël Le Guyader, Matthieu Egloff, Xavier Le Guillou, Maria Antonietta Mencarelli, Alessandra Renieri, Salvatore Grosso, Jonathan Levy, Blandine Dozières, Isabelle Desguerre, Antonio Vitobello, Yannis Duffourd, Christopher J Lelliott, Christel Thauvin-Robinet, Christophe Philippe, Laurence Faivre, Binnaz Yalcin

Faculty, Staff and Students Publications

Purpose: Miller-Dieker syndrome is caused by a multiple gene deletion, including PAFAH1B1 and YWHAE. Although deletion of PAFAH1B1 causes lissencephaly unambiguously, deletion of YWHAE alone has not clearly been linked to a human disorder.

Methods: Cases with YWHAE variants were collected through international data sharing networks. To address the specific impact of YWHAE loss of function, we phenotyped a mouse knockout of Ywhae.

Results: We report a series of 10 individuals with heterozygous loss-of-function YWHAE variants (3 single-nucleotide variants and 7 deletions < 1 Mb encompassing YWHAE but not PAFAH1B1), including 8 new cases and 2 follow-ups, added with 5 cases (copy number variants) from literature review. Although, until now, only 1 intragenic deletion has been described in YWHAE, we report 4 new variants specifically in YWHAE (3 splice variants and 1 intragenic deletion). The most frequent manifestations are developmental delay, delayed speech, seizures, and brain malformations, including corpus callosum hypoplasia, delayed myelination, and ventricular dilatation. Individuals with variants affecting YWHAE alone have milder features than those with larger deletions. Neuroanatomical studies in Ywhae-/- mice revealed brain structural defects, including thin cerebral cortex, corpus callosum dysgenesis, and hydrocephalus paralleling those seen in humans.

Conclusion: This study further demonstrates that YWHAE loss-of-function variants cause a neurodevelopmental disease with brain abnormalities.


A Crispr/Cas9-Engineered Mouse Carrying A Conditional Knockout Allele For The Early Growth Response-1 Transcription Factor, Vineet K Maurya, Yan Ying, Denise G Lanza, Jason D Heaney, John P Lydon Jul 2023

A Crispr/Cas9-Engineered Mouse Carrying A Conditional Knockout Allele For The Early Growth Response-1 Transcription Factor, Vineet K Maurya, Yan Ying, Denise G Lanza, Jason D Heaney, John P Lydon

Faculty, Staff and Students Publications

Early growth response 1 (EGR1) mediates transcriptional programs that are indispensable for cell division, differentiation and apoptosis in numerous physiologies and pathophysiologies. Whole-body EGR1 knockouts in mice (Egr1KO) have advanced our understanding of EGR1 function in an in vivo context. To extend the utility of the mouse to investigate EGR1 responses in a tissue- and/or cell-type-specific manner, we generated a mouse model in which exon 2 of the mouse Egr1 gene is floxed by CRISPR/Cas9 engineering. The floxed Egr1 alleles (Egr1f/f) are designed to enable spatiotemporal control of Cre-mediated EGR1 ablation in the …


Genome-Wide Association Analyses Define Pathogenic Signaling Pathways And Prioritize Drug Targets For Iga Nephropathy, Krzysztof Kiryluk, Elena Sanchez-Rodriguez, Xu-Jie Zhou, Francesca Zanoni, Lili Liu, Nikol Mladkova, Atlas Khan, Maddalena Marasa, Jun Y Zhang, Olivia Balderes, Simone Sanna-Cherchi, Andrew S Bomback, Pietro A Canetta, Gerald B Appel, Jai Radhakrishnan, Hernan Trimarchi, Ben Sprangers, Daniel C Cattran, Heather Reich, York Pei, Pietro Ravani, Kresimir Galesic, Dita Maixnerova, Vladimir Tesar, Benedicte Stengel, Marie Metzger, Guillaume Canaud, Nicolas Maillard, Francois Berthoux, Laureline Berthelot, Evangeline Pillebout, Renato Monteiro, Raoul Nelson, Robert J Wyatt, William Smoyer, John Mahan, Al-Akash Samhar, Guillermo Hidalgo, Alejandro Quiroga, Patricia Weng, Raji Sreedharan, David Selewski, Keefe Davis, Mahmoud Kallash, Tetyana L Vasylyeva, Michelle Rheault, Aftab Chishti, Daniel Ranch, Scott E Wenderfer, Dmitry Samsonov, Donna J Claes, Oleh Akchurin, Dimitrios Goumenos, Maria Stangou, Judit Nagy, Tibor Kovacs, Enrico Fiaccadori, Antonio Amoroso, Cristina Barlassina, Daniele Cusi, Lucia Del Vecchio, Giovanni Giorgio Battaglia, Monica Bodria, Emanuela Boer, Luisa Bono, Giuliano Boscutti, Gianluca Caridi, Francesca Lugani, Gianmarco Ghiggeri, Rosanna Coppo, Licia Peruzzi, Vittoria Esposito, Ciro Esposito, Sandro Feriozzi, Rosaria Polci, Giovanni Frasca, Marco Galliani, Maurizio Garozzo, Adele Mitrotti, Loreto Gesualdo, Simona Granata, Gianluigi Zaza, Francesco Londrino, Riccardo Magistroni, Isabella Pisani, Andrea Magnano, Carmelita Marcantoni, Piergiorgio Messa, Renzo Mignani, Antonello Pani, Claudio Ponticelli, Dario Roccatello, Maurizio Salvadori, Erica Salvi, Domenico Santoro, Guido Gembillo, Silvana Savoldi, Donatella Spotti, Pasquale Zamboli, Claudia Izzi, Federico Alberici, Elisa Delbarba, Michał Florczak, Natalia Krata, Krzysztof Mucha, Leszek Pączek, Stanisław Niemczyk, Barbara Moszczuk, Malgorzata Pańczyk-Tomaszewska, Malgorzata Mizerska-Wasiak, Agnieszka Perkowska-Ptasińska, Teresa Bączkowska, Magdalena Durlik, Krzysztof Pawlaczyk, Przemyslaw Sikora, Marcin Zaniew, Dorota Kaminska, Magdalena Krajewska, Izabella Kuzmiuk-Glembin, Zbigniew Heleniak, Barbara Bullo-Piontecka, Tomasz Liberek, Alicja Dębska-Slizien, Tomasz Hryszko, Anna Materna-Kiryluk, Monika Miklaszewska, Maria Szczepańska, Katarzyna Dyga, Edyta Machura, Katarzyna Siniewicz-Luzeńczyk, Monika Pawlak-Bratkowska, Marcin Tkaczyk, Dariusz Runowski, Norbert Kwella, Dorota Drożdż, Ireneusz Habura, Florian Kronenberg, Larisa Prikhodina, David Van Heel, Bertrand Fontaine, Chris Cotsapas, Cisca Wijmenga, Andre Franke, Vito Annese, Peter K Gregersen, Sreeja Parameswaran, Matthew Weirauch, Leah Kottyan, John B Harley, Hitoshi Suzuki, Ichiei Narita, Shin Goto, Hajeong Lee, Dong Ki Kim, Yon Su Kim, Jin-Ho Park, Belong Cho, Murim Choi, Ans Van Wijk, Ana Huerta, Elisabet Ars, Jose Ballarin, Sigrid Lundberg, Bruno Vogt, Laila-Yasmin Mani, Yasar Caliskan, Jonathan Barratt, Thilini Abeygunaratne, Philip A Kalra, Daniel P Gale, Ulf Panzer, Thomas Rauen, Jürgen Floege, Pascal Schlosser, Arif B Ekici, Kai-Uwe Eckardt, Nan Chen, Jingyuan Xie, Richard P Lifton, Ruth J F Loos, Eimear E Kenny, Iuliana Ionita-Laza, Anna Köttgen, Bruce A Julian, Jan Novak, Francesco Scolari, Hong Zhang, Ali G Gharavi Jul 2023

Genome-Wide Association Analyses Define Pathogenic Signaling Pathways And Prioritize Drug Targets For Iga Nephropathy, Krzysztof Kiryluk, Elena Sanchez-Rodriguez, Xu-Jie Zhou, Francesca Zanoni, Lili Liu, Nikol Mladkova, Atlas Khan, Maddalena Marasa, Jun Y Zhang, Olivia Balderes, Simone Sanna-Cherchi, Andrew S Bomback, Pietro A Canetta, Gerald B Appel, Jai Radhakrishnan, Hernan Trimarchi, Ben Sprangers, Daniel C Cattran, Heather Reich, York Pei, Pietro Ravani, Kresimir Galesic, Dita Maixnerova, Vladimir Tesar, Benedicte Stengel, Marie Metzger, Guillaume Canaud, Nicolas Maillard, Francois Berthoux, Laureline Berthelot, Evangeline Pillebout, Renato Monteiro, Raoul Nelson, Robert J Wyatt, William Smoyer, John Mahan, Al-Akash Samhar, Guillermo Hidalgo, Alejandro Quiroga, Patricia Weng, Raji Sreedharan, David Selewski, Keefe Davis, Mahmoud Kallash, Tetyana L Vasylyeva, Michelle Rheault, Aftab Chishti, Daniel Ranch, Scott E Wenderfer, Dmitry Samsonov, Donna J Claes, Oleh Akchurin, Dimitrios Goumenos, Maria Stangou, Judit Nagy, Tibor Kovacs, Enrico Fiaccadori, Antonio Amoroso, Cristina Barlassina, Daniele Cusi, Lucia Del Vecchio, Giovanni Giorgio Battaglia, Monica Bodria, Emanuela Boer, Luisa Bono, Giuliano Boscutti, Gianluca Caridi, Francesca Lugani, Gianmarco Ghiggeri, Rosanna Coppo, Licia Peruzzi, Vittoria Esposito, Ciro Esposito, Sandro Feriozzi, Rosaria Polci, Giovanni Frasca, Marco Galliani, Maurizio Garozzo, Adele Mitrotti, Loreto Gesualdo, Simona Granata, Gianluigi Zaza, Francesco Londrino, Riccardo Magistroni, Isabella Pisani, Andrea Magnano, Carmelita Marcantoni, Piergiorgio Messa, Renzo Mignani, Antonello Pani, Claudio Ponticelli, Dario Roccatello, Maurizio Salvadori, Erica Salvi, Domenico Santoro, Guido Gembillo, Silvana Savoldi, Donatella Spotti, Pasquale Zamboli, Claudia Izzi, Federico Alberici, Elisa Delbarba, Michał Florczak, Natalia Krata, Krzysztof Mucha, Leszek Pączek, Stanisław Niemczyk, Barbara Moszczuk, Malgorzata Pańczyk-Tomaszewska, Malgorzata Mizerska-Wasiak, Agnieszka Perkowska-Ptasińska, Teresa Bączkowska, Magdalena Durlik, Krzysztof Pawlaczyk, Przemyslaw Sikora, Marcin Zaniew, Dorota Kaminska, Magdalena Krajewska, Izabella Kuzmiuk-Glembin, Zbigniew Heleniak, Barbara Bullo-Piontecka, Tomasz Liberek, Alicja Dębska-Slizien, Tomasz Hryszko, Anna Materna-Kiryluk, Monika Miklaszewska, Maria Szczepańska, Katarzyna Dyga, Edyta Machura, Katarzyna Siniewicz-Luzeńczyk, Monika Pawlak-Bratkowska, Marcin Tkaczyk, Dariusz Runowski, Norbert Kwella, Dorota Drożdż, Ireneusz Habura, Florian Kronenberg, Larisa Prikhodina, David Van Heel, Bertrand Fontaine, Chris Cotsapas, Cisca Wijmenga, Andre Franke, Vito Annese, Peter K Gregersen, Sreeja Parameswaran, Matthew Weirauch, Leah Kottyan, John B Harley, Hitoshi Suzuki, Ichiei Narita, Shin Goto, Hajeong Lee, Dong Ki Kim, Yon Su Kim, Jin-Ho Park, Belong Cho, Murim Choi, Ans Van Wijk, Ana Huerta, Elisabet Ars, Jose Ballarin, Sigrid Lundberg, Bruno Vogt, Laila-Yasmin Mani, Yasar Caliskan, Jonathan Barratt, Thilini Abeygunaratne, Philip A Kalra, Daniel P Gale, Ulf Panzer, Thomas Rauen, Jürgen Floege, Pascal Schlosser, Arif B Ekici, Kai-Uwe Eckardt, Nan Chen, Jingyuan Xie, Richard P Lifton, Ruth J F Loos, Eimear E Kenny, Iuliana Ionita-Laza, Anna Köttgen, Bruce A Julian, Jan Novak, Francesco Scolari, Hong Zhang, Ali G Gharavi

Faculty, Staff and Students Publications

IgA nephropathy (IgAN) is a progressive form of kidney disease defined by glomerular deposition of IgA. Here we performed a genome-wide association study of 10,146 kidney-biopsy-diagnosed IgAN cases and 28,751 controls across 17 international cohorts. We defined 30 genome-wide significant risk loci explaining 11% of disease risk. A total of 16 loci were new, including TNFSF4/TNFSF18, REL, CD28, PF4V1, LY86, LYN, ANXA3, TNFSF8/TNFSF15, REEP3, ZMIZ1, OVOL1/RELA, ETS1, IGH, IRF8, TNFRSF13B and FCAR. The risk loci were enriched in gene orthologs causing abnormal IgA levels when genetically manipulated in mice. We also observed a positive genetic correlation between IgAN and serum …


Autologous Humanized Pdx Modeling For Immuno-Oncology Recapitulates Features Of The Human Tumor Microenvironment, Michael Chiorazzi, Bradley Krasnick, Keenan J Robbins, Zachary Skidmore, Jacqueline Mudd, Ye Bi, S Peter Goedegebuure, Malachi Griffith, Obi Griffith, Abimbola Oyedeji, Ryan C Fields, Et Al. Jul 2023

Autologous Humanized Pdx Modeling For Immuno-Oncology Recapitulates Features Of The Human Tumor Microenvironment, Michael Chiorazzi, Bradley Krasnick, Keenan J Robbins, Zachary Skidmore, Jacqueline Mudd, Ye Bi, S Peter Goedegebuure, Malachi Griffith, Obi Griffith, Abimbola Oyedeji, Ryan C Fields, Et Al.

2020-Current year OA Pubs

BACKGROUND: Interactions between immune and tumor cells are critical to determining cancer progression and response. In addition, preclinical prediction of immune-related drug efficacy is limited by interspecies differences between human and mouse, as well as inter-person germline and somatic variation. To address these gaps, we developed an autologous system that models the tumor microenvironment (TME) from individual patients with solid tumors.

METHOD: With patient-derived bone marrow hematopoietic stem and progenitor cells (HSPCs), we engrafted a patient's hematopoietic system in MISTRG6 mice, followed by transfer of patient-derived xenograft (PDX) tissue, providing a fully genetically matched model to recapitulate the individual's TME. …


Glp-1r Agonists Demonstrate Potential To Treat Wolfram Syndrome In Human Preclinical Models, Vyron Gorgogietas, Cris Brown, Fumihiko Urano, Et Al. Jul 2023

Glp-1r Agonists Demonstrate Potential To Treat Wolfram Syndrome In Human Preclinical Models, Vyron Gorgogietas, Cris Brown, Fumihiko Urano, Et Al.

2020-Current year OA Pubs

AIMS/HYPOTHESIS: Wolfram syndrome is a rare autosomal recessive disorder caused by pathogenic variants in the WFS1 gene. It is characterised by insulin-dependent diabetes mellitus, optic nerve atrophy, diabetes insipidus, hearing loss and neurodegeneration. Considering the unmet treatment need for this orphan disease, this study aimed to evaluate the therapeutic potential of glucagon-like peptide 1 receptor (GLP-1R) agonists under wolframin (WFS1) deficiency with a particular focus on human beta cells and neurons.

METHODS: The effect of the GLP-1R agonists dulaglutide and exenatide was examined in Wfs1 knockout mice and in an array of human preclinical models of Wolfram syndrome, including WFS1-deficient …


Atoh1 Drives The Heterogeneity Of The Pontine Nuclei Neurons And Promotes Their Differentiation, Sih-Rong Wu, Jessica C Butts, Matthew S Caudill, Jean-Pierre Revelli, Ryan S Dhindsa, Mark A Durham, Huda Y Zoghbi Jun 2023

Atoh1 Drives The Heterogeneity Of The Pontine Nuclei Neurons And Promotes Their Differentiation, Sih-Rong Wu, Jessica C Butts, Matthew S Caudill, Jean-Pierre Revelli, Ryan S Dhindsa, Mark A Durham, Huda Y Zoghbi

Faculty, Staff and Students Publications

Pontine nuclei (PN) neurons mediate the communication between the cerebral cortex andthe cerebellum to refine skilled motor functions. Prior studies showed that PN neurons fall into two subtypes based on their anatomic location and region-specific connectivity, but the extent of their heterogeneity and its molecular drivers remain unknown. Atoh1 encodes a transcription factor that is expressed in the PN precursors. We previously showed that partial loss of Atoh1 function in mice results in delayed PN development and impaired motor learning. In this study, we performed single-cell RNA sequencing to elucidate the cell state–specific functions of Atoh1 during PN development and …


Microrna-145 And Microrna-486 Are Potential Serum Biomarkers For Vascular Calcification, Sara Fernández-Villabrille, Beatriz Martín-Carro, Julia Martín-Vírgala, Cristina Alonso-Montes, Carmen Palomo-Antequera, Raúl García-Castro, Susana López-Ongil, Adriana S Dusso, José Luis Fernández-Martín, Manuel Naves-Díaz, Jorge B Cannata-Andía, Natalia Carrillo-López, Sara Panizo Jun 2023

Microrna-145 And Microrna-486 Are Potential Serum Biomarkers For Vascular Calcification, Sara Fernández-Villabrille, Beatriz Martín-Carro, Julia Martín-Vírgala, Cristina Alonso-Montes, Carmen Palomo-Antequera, Raúl García-Castro, Susana López-Ongil, Adriana S Dusso, José Luis Fernández-Martín, Manuel Naves-Díaz, Jorge B Cannata-Andía, Natalia Carrillo-López, Sara Panizo

2020-Current year OA Pubs

INTRODUCTION: MicroRNAs (miRs) regulate vascular calcification (VC), and their quantification may contribute to suspicion of the presence of VC.

METHODS: The study was performed in four phases. Phase 1: miRs sequencing of rat calcified and non-calcified aortas. Phase 2: miRs with the highest rate of change, plus miR-145 [the most abundant miR in vascular smooth muscle cells (VSMCs)], were validated in aortas and serum from rats with and without VC. Phase 3: the selected miRs were analyzed in epigastric arteries from kidney donors and recipients, and serum samples from general population. Phase 4: VSMCs were exposed to different phosphorus concentrations, …


Immune Cells Localize To Sites Of Corneal Erosions In C57bl/6 Mice., Phuong M. Le, Sonali Pal-Ghosh, A. Menko, Mary Ann Stepp Jun 2023

Immune Cells Localize To Sites Of Corneal Erosions In C57bl/6 Mice., Phuong M. Le, Sonali Pal-Ghosh, A. Menko, Mary Ann Stepp

Computational Medicine Center Faculty Papers

Recurrent epithelial erosions develop in the cornea due to prior injury or genetic predisposition. Studies of recurrent erosions in animal models allow us to gain insight into how erosions form and are resolved. While slowing corneal epithelial cell migration and reducing their proliferation following treatment with mitomycin C reduce erosion formation in mice after sterile debridement injury, additional factors have been identified related to cytokine expression and immune cell activation. The relationship between recruitment of immune cells to the region of the cornea where erosions form and their potential roles in erosion formation and/or erosion repair remains unexplored in the …


The Highly Conserved Stem-Loop Ii Motif Is Dispensable For Sars-Cov-2, Hongbing Jiang, Astha Joshi, Tianyu Gan, Andrew B Janowski, Chika Fujii, Traci L Bricker, Tamarand L Darling, Houda H Harastani, Kuljeet Seehra, Stephen Tahan, Ana Jung, Binita Febles, Joshua A Blatter, Scott A Handley, Bijal A Parikh, David Wang, Adrianus C M Boon, Et Al. Jun 2023

The Highly Conserved Stem-Loop Ii Motif Is Dispensable For Sars-Cov-2, Hongbing Jiang, Astha Joshi, Tianyu Gan, Andrew B Janowski, Chika Fujii, Traci L Bricker, Tamarand L Darling, Houda H Harastani, Kuljeet Seehra, Stephen Tahan, Ana Jung, Binita Febles, Joshua A Blatter, Scott A Handley, Bijal A Parikh, David Wang, Adrianus C M Boon, Et Al.

2020-Current year OA Pubs

The stem-loop II motif (s2m) is an RNA structural element that is found in the 3' untranslated region (UTR) of many RNA viruses, including severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). Though the motif was discovered over 25 years ago, its functional significance is unknown. In order to understand the importance of s2m, we created viruses with deletions or mutations of the s2m by reverse genetics and also evaluated a clinical isolate harboring a unique s2m deletion. Deletion or mutation of the s2m had no effect on growth


Chronic Social Defeat Alters Brain Vascular-Associated Cell Gene Expression Patterns Leading To Vascular Dysfunction And Immune System Activation, Joshua D Samuels, Madison L Lotstein, Michael L Lehmann, Abdel G Elkahloun, Subhadra Banerjee, Miles Herkenham Jun 2023

Chronic Social Defeat Alters Brain Vascular-Associated Cell Gene Expression Patterns Leading To Vascular Dysfunction And Immune System Activation, Joshua D Samuels, Madison L Lotstein, Michael L Lehmann, Abdel G Elkahloun, Subhadra Banerjee, Miles Herkenham

Faculty, Staff and Student Publications

Brain vascular integrity is critical for brain health, and its disruption is implicated in many brain pathologies, including psychiatric disorders. Brain-vascular barriers are a complex cellular landscape composed of endothelial, glial, mural, and immune cells. Yet currently, little is known about these brain vascular-associated cells (BVACs) in health and disease. Previously, we demonstrated that 14 days of chronic social defeat (CSD), a mouse paradigm that produces anxiety and depressive-like behaviors, causes cerebrovascular damage in the form of scattered microbleeds. Here, we developed a technique to isolate barrier-related cells from the mouse brain and subjected the isolated cells to single-cell RNA …


Increased Glucose Availability Sensitizes Pancreatic Cancer To Chemotherapy, Ali Vaziri-Gohar, Jonathan J. Hue, Ata Abbas, Hallie J. Graor, Omid Hajihassani, Mehrdad Zarei, George Titomihelakis, John Feczko, Moeez Rathore, Sylwia Chelstowska, Alexander W. Loftus, Rui Wang, Mahsa Zarei, Maryam Goudarzi, Renliang Zhang, Belinda Willard, Li Zhang, Adam Kresak, Joseph E. Willis, Gi-Ming Wang, Curtis Tatsuoka, Joseph M. Salvino, Ilya Bederman, Henri Brunengraber, Costas A. Lyssiotis, Jonathan R. Brody, Jordan M. Winter Jun 2023

Increased Glucose Availability Sensitizes Pancreatic Cancer To Chemotherapy, Ali Vaziri-Gohar, Jonathan J. Hue, Ata Abbas, Hallie J. Graor, Omid Hajihassani, Mehrdad Zarei, George Titomihelakis, John Feczko, Moeez Rathore, Sylwia Chelstowska, Alexander W. Loftus, Rui Wang, Mahsa Zarei, Maryam Goudarzi, Renliang Zhang, Belinda Willard, Li Zhang, Adam Kresak, Joseph E. Willis, Gi-Ming Wang, Curtis Tatsuoka, Joseph M. Salvino, Ilya Bederman, Henri Brunengraber, Costas A. Lyssiotis, Jonathan R. Brody, Jordan M. Winter

Student Papers, Posters & Projects

Pancreatic Ductal Adenocarcinoma (PDAC) is highly resistant to chemotherapy. Effective alternative therapies have yet to emerge, as chemotherapy remains the best available systemic treatment. However, the discovery of safe and available adjuncts to enhance chemotherapeutic efficacy can still improve survival outcomes. We show that a hyperglycemic state substantially enhances the efficacy of conventional single- and multi-agent chemotherapy regimens against PDAC. Molecular analyses of tumors exposed to high glucose levels reveal that the expression of GCLC (glutamate-cysteine ligase catalytic subunit), a key component of glutathione biosynthesis, is diminished, which in turn augments oxidative anti-tumor damage by chemotherapy. Inhibition of GCLC phenocopies …


Cortex-Wide Neural Dynamics Predict Behavioral States And Provide A Neural Basis For Resting-State Dynamic Functional Connectivity, Somayeh Shahsavarani, David N Thibodeaux, Weihao Xu, Sharon H Kim, Fatema Lodgher, Chinwendu Nwokeabia, Morgan Cambareri, Alexis J Yagielski, Hanzhi T Zhao, Daniel A Handwerker, Javier Gonzalez-Castillo, Peter A Bandettini, Elizabeth M C Hillman Jun 2023

Cortex-Wide Neural Dynamics Predict Behavioral States And Provide A Neural Basis For Resting-State Dynamic Functional Connectivity, Somayeh Shahsavarani, David N Thibodeaux, Weihao Xu, Sharon H Kim, Fatema Lodgher, Chinwendu Nwokeabia, Morgan Cambareri, Alexis J Yagielski, Hanzhi T Zhao, Daniel A Handwerker, Javier Gonzalez-Castillo, Peter A Bandettini, Elizabeth M C Hillman

Faculty, Staff and Student Publications

Although resting-state functional magnetic resonance imaging (fMRI) studies have observed dynamically changing brain-wide networks of correlated activity, fMRI's dependence on hemodynamic signals makes results challenging to interpret. Meanwhile, emerging techniques for real-time recording of large populations of neurons have revealed compelling fluctuations in neuronal activity across the brain that are obscured by traditional trial averaging. To reconcile these observations, we use wide-field optical mapping to simultaneously record pan-cortical neuronal and hemodynamic activity in awake, spontaneously behaving mice. Some components of observed neuronal activity clearly represent sensory and motor function. However, particularly during quiet rest, strongly fluctuating patterns of activity across …


Spatial Single-Cell Sequencing Of Meiosis I Arrested Oocytes Indicates Acquisition Of Maternal Transcripts From The Soma, Kenneth A Trimmer, Peisen Zhao, Jacob Seemann, Shin-Yu Chen, Sudip Mondal, Adela Ben-Yakar, Swathi Arur Jun 2023

Spatial Single-Cell Sequencing Of Meiosis I Arrested Oocytes Indicates Acquisition Of Maternal Transcripts From The Soma, Kenneth A Trimmer, Peisen Zhao, Jacob Seemann, Shin-Yu Chen, Sudip Mondal, Adela Ben-Yakar, Swathi Arur

Faculty, Staff and Student Publications

Maternal RNAs are stored from minutes to decades in oocytes throughout meiosis I arrest in a transcriptionally quiescent state. Recent reports, however, propose a role for nascent transcription in arrested oocytes. Whether arrested oocytes launch nascent transcription in response to environmental or hormonal signals while maintaining the meiosis I arrest remains undetermined. We test this by integrating single-cell RNA sequencing, RNA velocity, and RNA fluorescence in situ hybridization on C. elegans meiosis I arrested oocytes. We identify transcripts that increase as the arrested meiosis I oocyte ages, but rule out extracellular signaling through ERK MAPK and nascent transcription as a …


Myo/Nog Cells: The Jekylls And Hydes Of The Lens, Jacquelyn Gerhart, Mindy George-Weinstein Jun 2023

Myo/Nog Cells: The Jekylls And Hydes Of The Lens, Jacquelyn Gerhart, Mindy George-Weinstein

PCOM Scholarly Works

Herein, we review a unique and versatile lineage composed of Myo/Nog cells that may be beneficial or detrimental depending on their environment and nature of the pathological stimuli they are exposed to. While we will focus on the lens, related Myo/Nog cell behaviors and functions in other tissues are integrated into the narrative of our research that spans over three decades, examines multiple species and progresses from early stages of embryonic development to aging adults. Myo/Nog cells were discovered in the embryonic epiblast by their co-expression of the skeletal muscle-specific transcription factor MyoD, the bone morphogenetic protein inhibitor Noggin and …


Neuraminidase Activity Modulates Cellular Coinfection During Influenza A Virus Multicycle Growth, Zijian Guo, Yuanyuan He, Jian Xu, Ananya N. Benegal, Steven L. Brody, Michael D. Vahey Jun 2023

Neuraminidase Activity Modulates Cellular Coinfection During Influenza A Virus Multicycle Growth, Zijian Guo, Yuanyuan He, Jian Xu, Ananya N. Benegal, Steven L. Brody, Michael D. Vahey

2020-Current year OA Pubs

Infection of individual cells by multiple virions plays critical roles in the replication and spread of many viruses, but mechanisms that control cellular coinfection during multicycle viral growth remain unclear. Here, we investigate virus-intrinsic factors that control cellular coinfection by influenza A virus (IAV). Using quantitative fluorescence to track the spread of virions from single infected cells, we identify the IAV surface protein neuraminidase (NA) as a key determinant of cellular coinfection. We map this effect to NA's ability to deplete viral receptors from both infected and neighboring uninfected cells. In cases in which viral infectious potential is low, genetic …


Histidine-Rich Protein Ii Nanoparticle Delivery Of Heme Iron Load Drives Endothelial Inflammation In Cerebral Malaria, Suong T Nguyen, Daniel Du, Daniel Wychrij, Matthew D Cain, Qingping Wu, Robyn S Klein, Ilaria Russo, Daniel E Goldberg Jun 2023

Histidine-Rich Protein Ii Nanoparticle Delivery Of Heme Iron Load Drives Endothelial Inflammation In Cerebral Malaria, Suong T Nguyen, Daniel Du, Daniel Wychrij, Matthew D Cain, Qingping Wu, Robyn S Klein, Ilaria Russo, Daniel E Goldberg

2020-Current year OA Pubs

Histidine-rich protein II (HRPII) is secreted by


Il-11 Induces Nlrp3 Inflammasome Activation In Monocytes And Inflammatory Cell Migration To The Central Nervous System, Maryamsadat Seyedsadr, Tabish H Khan, Ulrike Lorenz, Et Al. Jun 2023

Il-11 Induces Nlrp3 Inflammasome Activation In Monocytes And Inflammatory Cell Migration To The Central Nervous System, Maryamsadat Seyedsadr, Tabish H Khan, Ulrike Lorenz, Et Al.

2020-Current year OA Pubs

The objective of this study is to examine IL-11-induced mechanisms of inflammatory cell migration to the central nervous system (CNS). We report that IL-11 is produced at highest frequency by myeloid cells among the peripheral blood mononuclear cell (PBMC) subsets. Patients with relapsing-remitting multiple sclerosis (RRMS) have an increased frequency of IL-11


Effect Of Ishophloroglucin A Isolated From Ishige Okamurae On In Vitro Osteoclastogenesis And Osteoblastogenesis, Su-Hyeon Cho, Hyun-Soo Kim, Hye-Yeon Jung, Jae-Il Park, You-Jee Jang, Juhee Ahn, Kil-Nam Kim Jun 2023

Effect Of Ishophloroglucin A Isolated From Ishige Okamurae On In Vitro Osteoclastogenesis And Osteoblastogenesis, Su-Hyeon Cho, Hyun-Soo Kim, Hye-Yeon Jung, Jae-Il Park, You-Jee Jang, Juhee Ahn, Kil-Nam Kim

Faculty, Staff and Student Publications

The balance between bone-resorbing osteoclasts and bone-forming osteoblasts is essential for the bone remodeling process. This study aimed to investigate the effect of Ishophloroglucin A (IPA) isolated from Ishige okamurae on the function of osteoclasts and osteoblasts in vitro. First, we demonstrated the effect of IPA on osteoclastogenesis in receptor activator of nuclear factor κB ligand (RANKL)-induced RAW 264.7 cells. IPA inhibited the tartrate-resistant acid phosphatase (TRAP) activity and osteoclast differentiation in RANKL-induced RAW 264.7 cells. Moreover, it inhibited the RANKL-induced osteoclast-related factors, such as TRAP, matrix metalloproteinase-9 (MMP-9), and calcitonin receptor (CTR), and transcription factors, such as nuclear factor …


Detrimental Effects Of Pcsk9 Loss-Of-Function In The Pediatric Host Response To Sepsis Are Mediated Through Independent Influence On Angiopoietin-1., Mihir R. Atreya, Natalie Z. Cvijanovich, Julie C. Fitzgerald, Scott L. Weiss, Michael T. Bigham, Parag N. Jain, Adam J. Schwarz, Riad Lutfi, Jeffrey Nowak, Geoffrey L. Allen, Neal J. Thomas, Jocelyn R. Grunwell, Torrey Baines, Michael Quasney, Bereketeab Haileselassie, Matthew N. Alder, Patrick Lahni, Scarlett Ripberger, Adesuwa Ekunwe, Kyle R. Campbell, Keith R. Walley, Stephen W. Standage Jun 2023

Detrimental Effects Of Pcsk9 Loss-Of-Function In The Pediatric Host Response To Sepsis Are Mediated Through Independent Influence On Angiopoietin-1., Mihir R. Atreya, Natalie Z. Cvijanovich, Julie C. Fitzgerald, Scott L. Weiss, Michael T. Bigham, Parag N. Jain, Adam J. Schwarz, Riad Lutfi, Jeffrey Nowak, Geoffrey L. Allen, Neal J. Thomas, Jocelyn R. Grunwell, Torrey Baines, Michael Quasney, Bereketeab Haileselassie, Matthew N. Alder, Patrick Lahni, Scarlett Ripberger, Adesuwa Ekunwe, Kyle R. Campbell, Keith R. Walley, Stephen W. Standage

Manuscripts, Articles, Book Chapters and Other Papers

BACKGROUND: Sepsis is associated with significant mortality. Yet, there are no efficacious therapies beyond antibiotics. PCSK9 loss-of-function (LOF) and inhibition, through enhanced low-density lipoprotein receptor (LDLR) mediated endotoxin clearance, holds promise as a potential therapeutic approach among adults. In contrast, we have previously demonstrated higher mortality in the juvenile host. Given the potential pleiotropic effects of PCSK9 on the endothelium, beyond canonical effects on serum lipoproteins, both of which may influence sepsis outcomes, we sought to test the influence of PCSK9 LOF genotype on endothelial dysfunction.

METHODS: Secondary analyses of a prospective observational cohort of pediatric septic shock. Genetic variants …


Evaluation Of The Orally Bioavailable 4-Phenylbutyrate-Tethered Trichostatin A Analogue Ar42 In Models Of Spinal Muscular Atrophy, Casey J. Lumpkin, Ashlee W. Harris, Andrew J. Connell, Ryan W. Kirk, Joshua A. Whiting, Luciano Saieva, Livio Pellizzoni, Arthur H.M. Burghes, Matthew E.R. Butchbach Jun 2023

Evaluation Of The Orally Bioavailable 4-Phenylbutyrate-Tethered Trichostatin A Analogue Ar42 In Models Of Spinal Muscular Atrophy, Casey J. Lumpkin, Ashlee W. Harris, Andrew J. Connell, Ryan W. Kirk, Joshua A. Whiting, Luciano Saieva, Livio Pellizzoni, Arthur H.M. Burghes, Matthew E.R. Butchbach

Department of Pediatrics Faculty Papers

Proximal spinal muscular atrophy (SMA) is a leading genetic cause for infant death in the world and results from the selective loss of motor neurons in the spinal cord. SMA is a consequence of low levels of SMN protein and small molecules that can increase SMN expression are of considerable interest as potential therapeutics. Previous studies have shown that both 4-phenylbutyrate (4PBA) and trichostatin A (TSA) increase SMN expression in dermal fibroblasts derived from SMA patients. AR42 is a 4PBA-tethered TSA derivative that is a very potent histone deacetylase inhibitor. SMA patient fibroblasts were treated with either AR42, AR19 (a …


Transcriptome- And Proteome-Wide Association Studies Nominate Determinants Of Kidney Function And Damage, Pascal Schlosser, Jingning Zhang, Hongbo Liu, Aditya L Surapaneni, Eugene P Rhee, Dan E Arking, Bing Yu, Eric Boerwinkle, Paul A Welling, Nilanjan Chatterjee, Katalin Susztak, Josef Coresh, Morgan E Grams Jun 2023

Transcriptome- And Proteome-Wide Association Studies Nominate Determinants Of Kidney Function And Damage, Pascal Schlosser, Jingning Zhang, Hongbo Liu, Aditya L Surapaneni, Eugene P Rhee, Dan E Arking, Bing Yu, Eric Boerwinkle, Paul A Welling, Nilanjan Chatterjee, Katalin Susztak, Josef Coresh, Morgan E Grams

Faculty, Staff and Student Publications

BACKGROUND: The pathophysiological causes of kidney disease are not fully understood. Here we show that the integration of genome-wide genetic, transcriptomic, and proteomic association studies can nominate causal determinants of kidney function and damage.

RESULTS: Through transcriptome-wide association studies (TWAS) in kidney cortex, kidney tubule, liver, and whole blood and proteome-wide association studies (PWAS) in plasma, we assess for effects of 12,893 genes and 1342 proteins on kidney filtration (glomerular filtration rate (GFR) estimated by creatinine; GFR estimated by cystatin C; and blood urea nitrogen) and kidney damage (albuminuria). We find 1561 associations distributed among 260 genomic regions that are …


A Comprehensive Assay Of Social Motivation Reveals Sex-Specific Roles Of Autism-Associated Genes And Oxytocin, Susan E Maloney, Simona Sarafinovska, Claire Weichselbaum, Katherine B Mccullough, Raylynn G Swift, Yating Liu, Joseph D Dougherty Jun 2023

A Comprehensive Assay Of Social Motivation Reveals Sex-Specific Roles Of Autism-Associated Genes And Oxytocin, Susan E Maloney, Simona Sarafinovska, Claire Weichselbaum, Katherine B Mccullough, Raylynn G Swift, Yating Liu, Joseph D Dougherty

2020-Current year OA Pubs

Social motivation is critical to the development of typical social functioning. Social motivation, specifically one or more of its components (e.g., social reward seeking or social orienting), could be relevant for understanding phenotypes related to autism. We developed a social operant conditioning task to quantify effort to access a social partner and concurrent social orienting in mice. We established that mice will work for access to a social partner, identified sex differences, and observed high test-retest reliability. We then benchmarked the method with two test-case manipulations.


Mdm2/P53 Levels In Bone Marrow Mesenchymal Stromal Cells Are Essential For Maintaining The Hematopoietic Niche In Response To Dna Damage, Rasoul Pourebrahim, Rafael Heinz Montoya, Zoe Alaniz, Lauren Ostermann, Patrick P Lin, Bin Liu, Edward Ayoub, Jared K Burks, Michael Andreeff Jun 2023

Mdm2/P53 Levels In Bone Marrow Mesenchymal Stromal Cells Are Essential For Maintaining The Hematopoietic Niche In Response To Dna Damage, Rasoul Pourebrahim, Rafael Heinz Montoya, Zoe Alaniz, Lauren Ostermann, Patrick P Lin, Bin Liu, Edward Ayoub, Jared K Burks, Michael Andreeff

Faculty, Staff and Student Publications

Mesenchymal stromal cells (MSCs) are a key component of the bone marrow (BM) niche, providing essential support required for the maintenance of hematopoietic stem cells. To advance our understanding of physiological functions of p53 and Mdm2 in BM-MSCs, we developed traceable conditional mouse models targeting Mdm2 and/or Trp53 in vivo. We demonstrate that Mdm2 is essential for the emergence, maintenance, and hematopoietic support of BM-MSCs. Mdm2 haploinsufficiency in BM-MSCs resulted in genotoxic stress-associated thrombocytopenia, suggesting a functional role for Mdm2 in hematopoiesis. In a syngeneic mouse model of acute myeloid leukemia (AML), Trp53 deletion in BM-MSCs improved survival, and protected …


An Erk5-Nrf2 Axis Mediates Senescence-Associated Stemness And Atherosclerosis, Jun-Ichi Abe, Masaki Imanishi, Shengyu Li, Aijun Zhang, Kyung Ae Ko, Venkata S K Samanthapudi, Ling-Ling Lee, Angelica Paniagua Bojorges, Young Jin Gi, Brian P Hobbs, Anita Deswal, Joerg Herrmann, Steven H Lin, Eduardo N Chini, Ying H Shen, Keri L Schadler, Thi-Hong-Minh Nguyen, Anisha A Gupte, Cielito Reyes-Gibby, Sai-Ching J Yeung, Rei J Abe, Elizabeth A Olmsted-Davis, Sunil Krishnan, Robert Dantzer, Nicolas L Palaskas, John P Cooke, Henry J Pownall, Momoko Yoshimoto, Keigi Fujiwara, Dale J Hamilton, Jared K Burks, Guangyu Wang, Nhat-Tu Le, Sivareddy Kotla Jun 2023

An Erk5-Nrf2 Axis Mediates Senescence-Associated Stemness And Atherosclerosis, Jun-Ichi Abe, Masaki Imanishi, Shengyu Li, Aijun Zhang, Kyung Ae Ko, Venkata S K Samanthapudi, Ling-Ling Lee, Angelica Paniagua Bojorges, Young Jin Gi, Brian P Hobbs, Anita Deswal, Joerg Herrmann, Steven H Lin, Eduardo N Chini, Ying H Shen, Keri L Schadler, Thi-Hong-Minh Nguyen, Anisha A Gupte, Cielito Reyes-Gibby, Sai-Ching J Yeung, Rei J Abe, Elizabeth A Olmsted-Davis, Sunil Krishnan, Robert Dantzer, Nicolas L Palaskas, John P Cooke, Henry J Pownall, Momoko Yoshimoto, Keigi Fujiwara, Dale J Hamilton, Jared K Burks, Guangyu Wang, Nhat-Tu Le, Sivareddy Kotla

Faculty, Staff and Student Publications

BACKGROUND: ERK5 (extracellular signal-regulated kinase 5) is a dual kinase transcription factor containing an N-terminal kinase domain and a C-terminal transcriptional activation domain. Many ERK5 kinase inhibitors have been developed and tested to treat cancer and inflammatory diseases. However, recent data have raised questions about the role of the catalytic activity of ERK5 in proliferation and inflammation. We aimed to investigate how ERK5 reprograms myeloid cells to the proinflammatory senescent phenotype, subsequently leading to atherosclerosis.

METHODS: A ERK5 S496A (dephosphorylation mimic) knock in (KI) mouse model was generated using CRISPR/Cas9 (clustered regularly interspaced short palindromic repeats/clustered regularly interspaced short palindromic …


Dual Functions Of Tet1 In Germ Layer Lineage Bifurcation Distinguished By Genomic Context And Dependence On 5-Methylcytosine Oxidation, Bernard K Van Der Veer, Lehua Chen, Colin Custers, Paraskevi Athanasouli, Mariana Schroiff, Riet Cornelis, Jonathan Sai-Hong Chui, Richard H Finnell, Frederic Lluis, Kian Peng Koh Jun 2023

Dual Functions Of Tet1 In Germ Layer Lineage Bifurcation Distinguished By Genomic Context And Dependence On 5-Methylcytosine Oxidation, Bernard K Van Der Veer, Lehua Chen, Colin Custers, Paraskevi Athanasouli, Mariana Schroiff, Riet Cornelis, Jonathan Sai-Hong Chui, Richard H Finnell, Frederic Lluis, Kian Peng Koh

Faculty, Staff and Students Publications

Gastrulation begins when the epiblast forms the primitive streak or becomes definitive ectoderm. During this lineage bifurcation, the DNA dioxygenase TET1 has bipartite functions in transcriptional activation and repression, but the mechanisms remain unclear. By converting mouse embryonic stem cells (ESCs) into neuroprogenitors, we defined how Tet1-/- cells switch from neuroectoderm fate to form mesoderm and endoderm. We identified the Wnt repressor Tcf7l1 as a TET1 target that suppresses Wnt/β-catenin and Nodal signalling. ESCs expressing catalytic dead TET1 retain neural potential but activate Nodal and subsequently Wnt/β-catenin pathways to generate also mesoderm and endoderm. At CpG-poor distal enhancers, TET1 maintains …


Downregulation Of Fkbp5 Promotes Atrial Arrhythmogenesis, Xiaolei Wang, Jia Song, Yue Yuan, Luge Li, Issam Abu-Taha, Jordi Heijman, Liang Sun, Shokoufeh Dobrev, Markus Kamler, Liang Xie, Xander H T Wehrens, Frank T Horrigan, Dobromir Dobrev, Na Li Jun 2023

Downregulation Of Fkbp5 Promotes Atrial Arrhythmogenesis, Xiaolei Wang, Jia Song, Yue Yuan, Luge Li, Issam Abu-Taha, Jordi Heijman, Liang Sun, Shokoufeh Dobrev, Markus Kamler, Liang Xie, Xander H T Wehrens, Frank T Horrigan, Dobromir Dobrev, Na Li

Faculty, Staff and Students Publications

BACKGROUND: Atrial fibrillation (AF), the most common arrhythmia, is associated with the downregulation of

METHODS: Right atrial samples from patients with AF were used to assess the protein levels of FKBP5. A cardiomyocyte-specific FKBP5 knockdown mouse model was established by crossbreeding

RESULTS: FKBP5 protein levels were lower in the atrial lysates of patients with paroxysmal AF or long-lasting persistent (chronic) AF. Cardiomyocyte-specific knockdown mice exhibited increased AF inducibility and duration compared with control mice. Enhanced AF susceptibility in cardiomyocyte-specific knockdown mice was associated with the development of action potential alternans and spontaneous Ca

CONCLUSIONS: This is the first study to …


Drugging Evolution Of Antibiotic Resistance At A Regulatory Network Hub, Yin Zhai, John P Pribis, Sean W Dooling, Libertad Garcia-Villada, P J Minnick, Jun Xia, Jingjing Liu, Qian Mei, Devon M Fitzgerald, Christophe Herman, P J Hastings, Mauro Costa-Mattioli, Susan M Rosenberg Jun 2023

Drugging Evolution Of Antibiotic Resistance At A Regulatory Network Hub, Yin Zhai, John P Pribis, Sean W Dooling, Libertad Garcia-Villada, P J Minnick, Jun Xia, Jingjing Liu, Qian Mei, Devon M Fitzgerald, Christophe Herman, P J Hastings, Mauro Costa-Mattioli, Susan M Rosenberg

Faculty, Staff and Students Publications

Evolution of antibiotic resistance is a world health crisis, fueled by new mutations. Drugs to slow mutagenesis could, as cotherapies, prolong the shelf-life of antibiotics, yet evolution-slowing drugs and drug targets have been underexplored and ineffective. Here, we used a network-based strategy to identify drugs that block hubs of fluoroquinolone antibiotic-induced mutagenesis. We identify a U.S. Food and Drug Administration- and European Medicines Agency-approved drug, dequalinium chloride (DEQ), that inhibits activation of the


Secretogranin Iii Selectively Promotes Vascular Leakage In The Deep Vascular Plexus Of Diabetic Retinopathy, Liyang Ji, Prabuddha Waduge, Yan Wu, Chengchi Huang, Avinash Kaur, Paola Oliveira, Hong Tian, Jinsong Zhang, J Timothy Stout, Christina Y Weng, Keith A Webster, Wei Li Jun 2023

Secretogranin Iii Selectively Promotes Vascular Leakage In The Deep Vascular Plexus Of Diabetic Retinopathy, Liyang Ji, Prabuddha Waduge, Yan Wu, Chengchi Huang, Avinash Kaur, Paola Oliveira, Hong Tian, Jinsong Zhang, J Timothy Stout, Christina Y Weng, Keith A Webster, Wei Li

Faculty, Staff and Students Publications

Diabetic retinopathy (DR), a leading cause of vision loss in working-age adults, induces mosaic patterns of vasculopathy that may be associated with spatial heterogeneity of intraretinal endothelial cells. We recently reported that secretogranin III (Scg3), a neuron-derived angiogenic and vascular leakage factor, selectively binds retinal vessels of diabetic but not healthy mice. Here, we investigated endothelial heterogeneity of three retinal vascular plexuses in DR pathogenesis and the therapeutic implications. Our unique in vivo ligand binding assay detected a 22.7-fold increase in Scg3 binding to retinal vessels of diabetic mice relative to healthy mice. Functional immunohistochemistry revealed that Scg3 predominantly binds …


Defining Diurnal Fluctuations In Mouse Choroid Plexus And Csf At High Molecular, Spatial, And Temporal Resolution, Ryann M Fame, Yong Zhang, Michael J Holtzman, Et Al. Jun 2023

Defining Diurnal Fluctuations In Mouse Choroid Plexus And Csf At High Molecular, Spatial, And Temporal Resolution, Ryann M Fame, Yong Zhang, Michael J Holtzman, Et Al.

2020-Current year OA Pubs

Transmission and secretion of signals via the choroid plexus (ChP) brain barrier can modulate brain states via regulation of cerebrospinal fluid (CSF) composition. Here, we developed a platform to analyze diurnal variations in male mouse ChP and CSF. Ribosome profiling of ChP epithelial cells revealed diurnal translatome differences in metabolic machinery, secreted proteins, and barrier components. Using ChP and CSF metabolomics and blood-CSF barrier analyses, we observed diurnal changes in metabolites and cellular junctions. We then focused on transthyretin (TTR), a diurnally regulated thyroid hormone chaperone secreted by the ChP. Diurnal variation in ChP TTR depended on Bmal1 clock gene …