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Articles 2221 - 2250 of 10790
Full-Text Articles in Entire DC Network
3d Genome Topology Distinguishes Molecular Subgroups Of Medulloblastoma, John J Y Lee, Michael J Johnston, Hamza Farooq, Huey-Miin Chen, Subhi Talal Younes, Raul Suarez, Melissa Zwaig, Nikoleta Juretic, William A Weiss, Jiannis Ragoussis, Nada Jabado, Michael D Taylor, Marco Gallo
3d Genome Topology Distinguishes Molecular Subgroups Of Medulloblastoma, John J Y Lee, Michael J Johnston, Hamza Farooq, Huey-Miin Chen, Subhi Talal Younes, Raul Suarez, Melissa Zwaig, Nikoleta Juretic, William A Weiss, Jiannis Ragoussis, Nada Jabado, Michael D Taylor, Marco Gallo
Faculty, Staff and Students Publications
Four main medulloblastoma (MB) molecular subtypes have been identified based on transcriptional, DNA methylation, and genetic profiles. However, it is currently not known whether 3D genome architecture differs between MB subtypes. To address this question, we performed in situ Hi-C to reconstruct the 3D genome architecture of MB subtypes. In total, we generated Hi-C and matching transcriptome data for 28 surgical specimens and Hi-C data for one patient-derived xenograft. The average resolution of the Hi-C maps was 6,833 bp. Using these data, we found that insulation scores of topologically associating domains (TADs) were effective at distinguishing MB molecular subgroups. TAD …
Amniotic Fluid-Derived Stem Cells: Potential Factories Of Natural And Mimetic Strategies For Congenital Malformations, Cristiane S R Fonteles, Julia Enterria-Rosales, Ying Lin, John W Steele, Ramiro A Villarreal-Leal, Jing Xiao, Daniel I Idowu, Beck Burgelin, Bogdan J Wlodarczyk, Richard H Finnell, Bruna Corradetti
Amniotic Fluid-Derived Stem Cells: Potential Factories Of Natural And Mimetic Strategies For Congenital Malformations, Cristiane S R Fonteles, Julia Enterria-Rosales, Ying Lin, John W Steele, Ramiro A Villarreal-Leal, Jing Xiao, Daniel I Idowu, Beck Burgelin, Bogdan J Wlodarczyk, Richard H Finnell, Bruna Corradetti
Faculty, Staff and Students Publications
BACKGROUND: Mesenchymal stem cells (MSCs) derived from gestational tissues offer a promising avenue for prenatal intervention in congenital malformations although their application is hampered by concerns related to cellular plasticity and the need for invasive, high-risk surgical procedures. Here, we present naturally occurring exosomes (EXOs) isolated from amniotic fluid-derived MSCs (AF-MSCs) and their mimetic analogs (MIMs) as viable, reproducible, and stable alternatives. These nanovesicles present a minimally invasive therapeutic option, addressing the limitations of MSC-based treatments while retaining therapeutic efficacy.
METHODS: MIMs were generated from AF-MSCs by combining sequential filtration steps through filter membranes with different porosity and size exclusion …
Spatial Dynamics Of Culex Quinquefasciatus Abundance: Geostatistical Insights From Harris County, Texas, Morgan Jibowu, Melissa S Nolan, Ryan Ramphul, Heather T Essigmann, Abiodun O Oluyomi, Eric L Brown, Maximea Vigilant, Sarah M Gunter
Spatial Dynamics Of Culex Quinquefasciatus Abundance: Geostatistical Insights From Harris County, Texas, Morgan Jibowu, Melissa S Nolan, Ryan Ramphul, Heather T Essigmann, Abiodun O Oluyomi, Eric L Brown, Maximea Vigilant, Sarah M Gunter
Faculty, Staff and Students Publications
Mosquito-borne diseases pose a significant public health threat, prompting the need to pinpoint high-risk areas for targeted interventions and environmental control measures. Culex quinquefasciatus is the primary vector for several mosquito-borne pathogens, including West Nile virus. Using spatial analysis and modeling techniques, we investigated the geospatial distribution of Culex quinquefasciatus abundance in the large metropolis of Harris County, Texas, from 2020 to 2022. Our geospatial analysis revealed clusters of high mosquito abundance, predominantly located in central Houston and the north-northwestern regions of Harris County, with lower mosquito abundance observed in the western and southeastern areas. We identified persistent high mosquito …
Cellular Trafficking And Fate Mapping Of Cells Within The Nervous System After In Utero Hematopoietic Cell Transplantation, Matthew T Grant, Hemanth Ramesh Nelvagal, Maria Tecos, Amal Hamed, Kerry Swanson, Jonathan D Cooper, Jesse D Vrecenak
Cellular Trafficking And Fate Mapping Of Cells Within The Nervous System After In Utero Hematopoietic Cell Transplantation, Matthew T Grant, Hemanth Ramesh Nelvagal, Maria Tecos, Amal Hamed, Kerry Swanson, Jonathan D Cooper, Jesse D Vrecenak
2020-Current year OA Pubs
In utero hematopoietic cell transplantation (IUHCT) utilizes fetal immune tolerance to achieve durable chimerism without conditioning or immunosuppression during a unique window in fetal development. Though donor cells have been observed within the nervous system following in utero injection, the timeline and distribution of cellular trafficking across the blood-brain barrier following IUHCT is not well understood. We injected 20 × 10
Alzheimer's Disease-Linked Risk Alleles Elevate Microglial Cgas-Associated Senescence And Neurodegeneration In A Tauopathy Model, Gillian K Carling, Xiaoying Chen, David M Holtzman, Et Al.
Alzheimer's Disease-Linked Risk Alleles Elevate Microglial Cgas-Associated Senescence And Neurodegeneration In A Tauopathy Model, Gillian K Carling, Xiaoying Chen, David M Holtzman, Et Al.
2020-Current year OA Pubs
The strongest risk factors for late-onset sporadic Alzheimer's disease (AD) include the ε4 allele of apolipoprotein E (APOE), the R47H variant of triggering receptor expressed on myeloid cells 2 (TREM2), and female sex. Here, we combine APOE4 and TREM2
Inflammation Mediated By Gut Microbiome Alterations Promotes Lung Cancer Development And An Immunosuppressed Tumor Microenvironment, Zahraa Rahal, Yuejiang Liu, Fuduan Peng, Sujuan Yang, Mohamed A Jamal, Manvi Sharma, Hannah Moreno, Ashish V Damania, Matthew C Wong, Matthew C Ross, Ansam Sinjab, Tieling Zhou, Minyue Chen, Inti Tarifa Reischle, Jiping Feng, Chidera Chukwuocha, Elizabeth Tang, Camille Abaya, Jamie K Lim, Cheuk Hong Leung, Heather Y Lin, Nathaniel Deboever, Jack J Lee, Boris Sepesi, Don L Gibbons, Jennifer A Wargo, Junya Fujimoto, Linghua Wang, Joseph F Petrosino, Nadim J Ajami, Robert R Jenq, Seyed Javad Moghaddam, Tina Cascone, Kristi Hoffman, Humam Kadara
Inflammation Mediated By Gut Microbiome Alterations Promotes Lung Cancer Development And An Immunosuppressed Tumor Microenvironment, Zahraa Rahal, Yuejiang Liu, Fuduan Peng, Sujuan Yang, Mohamed A Jamal, Manvi Sharma, Hannah Moreno, Ashish V Damania, Matthew C Wong, Matthew C Ross, Ansam Sinjab, Tieling Zhou, Minyue Chen, Inti Tarifa Reischle, Jiping Feng, Chidera Chukwuocha, Elizabeth Tang, Camille Abaya, Jamie K Lim, Cheuk Hong Leung, Heather Y Lin, Nathaniel Deboever, Jack J Lee, Boris Sepesi, Don L Gibbons, Jennifer A Wargo, Junya Fujimoto, Linghua Wang, Joseph F Petrosino, Nadim J Ajami, Robert R Jenq, Seyed Javad Moghaddam, Tina Cascone, Kristi Hoffman, Humam Kadara
Center for Medical Ethics and Health Policy Staff Publications
Accumulating evidence indicates that the gut microbiome influences cancer progression and therapy. We recently showed that progressive changes in gut microbial diversity and composition are closely coupled with tobacco-associated lung adenocarcinoma in a human-relevant mouse model. Furthermore, we demonstrated that the loss of the antimicrobial protein Lcn2 in these mice exacerbates protumor inflammatory phenotypes while further reducing microbial diversity. Yet, how gut microbiome alterations impinge on lung adenocarcinoma development remains poorly understood. In this study, we investigated the role of gut microbiome changes in lung adenocarcinoma development using fecal microbiota transfer and delineated a pathway by which gut microbiome alterations …
Arousal Effects On Oscillatory Dynamics In The Non-Human Primate Brain, Shashank A Anand, Fatih Sogukpinar, Ilya E Monosov
Arousal Effects On Oscillatory Dynamics In The Non-Human Primate Brain, Shashank A Anand, Fatih Sogukpinar, Ilya E Monosov
2020-Current year OA Pubs
Arousal states are thought to influence many aspects of cognition and behavior by broadly modulating neural activity. Many studies have observed arousal-related modulations of alpha (~8 to 15 Hz) and gamma (~30 to 50 Hz) power and coherence in local field potentials across relatively small groups of brain regions. However, the global pattern of arousal-related oscillatory modulation in local field potentials is yet to be fully elucidated. We simultaneously recorded local field potentials in numerous cortical and subcortical regions in the primate brain and assessed oscillatory activity and inter-regional coherence associated with arousal state. In high arousal states, we found …
Systemic Administration Of A Site-Targeted Complement Inhibitor Attenuates Chronic Stress-Induced Social Behavior Deficits And Neuroinflammation In Mice, Amit Kumar Madeshiya, Brandi Quintanilla, Carl Whitehead, Stephen Tomlinson, Anilkumar Pillai
Systemic Administration Of A Site-Targeted Complement Inhibitor Attenuates Chronic Stress-Induced Social Behavior Deficits And Neuroinflammation In Mice, Amit Kumar Madeshiya, Brandi Quintanilla, Carl Whitehead, Stephen Tomlinson, Anilkumar Pillai
Faculty, Staff and Student Publications
Chronic stress, a risk factor for many neuropsychiatric conditions, causes dysregulation in the immune system in both humans and animal models. Additionally, inflammation and synapse loss have been associated with deficits in social behavior. The complement system, a key player of innate immunity, has been linked to social behavior impairments caused by chronic stress. However, it is not known whether complement inhibition can help prevent neuroinflammation and behavioral deficits caused by chronic stress. In this study, we investigated the potential of a site-targeted complement inhibitor to ameliorate chronic stress-induced changes in social behavior and inflammatory markers in the prefrontal cortex …
Myeloid Activation Clears Ascites And Reveals Il27-Dependent Regression Of Metastatic Ovarian Cancer, Brennah Murphy, Taito Miyamoto, Bryan S Manning, Gauri Mirji, Alessio Ugolini, Toshitha Kannan, Kohei Hamada, Yanfang P Zhu, Daniel T Claiborne, Lu Huang, Rugang Zhang, Yulia Nefedova, Andrew Kossenkov, Filippo Veglia, Rahul Shinde, Nan Zhang
Myeloid Activation Clears Ascites And Reveals Il27-Dependent Regression Of Metastatic Ovarian Cancer, Brennah Murphy, Taito Miyamoto, Bryan S Manning, Gauri Mirji, Alessio Ugolini, Toshitha Kannan, Kohei Hamada, Yanfang P Zhu, Daniel T Claiborne, Lu Huang, Rugang Zhang, Yulia Nefedova, Andrew Kossenkov, Filippo Veglia, Rahul Shinde, Nan Zhang
Faculty, Staff and Student Publications
Patients with metastatic ovarian cancer (OvCa) have a 5-year survival rate of < 30% due to the persisting dissemination of chemoresistant cells in the peritoneal fluid and the immunosuppressive microenvironment in the peritoneal cavity. Here, we report that intraperitoneal administration of β-glucan and IFNγ (BI) induced robust tumor regression in clinically relevant models of metastatic OvCa. BI induced tumor regression by controlling fluid tumor burden and activating localized antitumor immunity. β-glucan alone cleared ascites and eliminated fluid tumor cells by inducing intraperitoneal clotting in the fluid and Dectin-1-Syk-dependent NETosis in the omentum. In omentum tumors, BI expanded a novel subset of immunostimulatory IL27+ macrophages and neutralizing IL27 impaired BI efficacy in vivo. Moreover, BI directly induced IL27 secretion in macrophages where single agent treatment did not. Finally, BI extended mouse survival in a chemoresistant model and significantly improved chemotherapy response in a chemo-sensitive model. In summary, we propose a new therapeutic strategy for the treatment of metastatic OvCa.
Rna Shielding Of P65 Is Required To Potentiate Oncogenic Inflammation In Tet2-Mutated Clonal Hematopoiesis, Nana Adjoa Ben-Crentsil, Wazim Mohammed Ismail, Maria E Balasis, Hannah Newman, Ariel Quintana, Moritz Binder, Traci Kruer, Surendra Neupane, Meghan C Ferrall-Fairbanks, Jenna Fernandez, Terra L Lasho, Christy M Finke, Mohammed L Ibrahim, Kathy L Mcgraw, Michael Wysota, Amy L Aldrich, Christopher B Ryder, Christopher T Letson, Joshua Traina, Amy F Mclemore, Nathalie Droin, Aditi Shastri, Seongseok Yun, Eric Solary, David A Sallman, Amer A Beg, Li Ma, Alexandre Gaspar-Maia, Mrinal M Patnaik, Eric Padron
Rna Shielding Of P65 Is Required To Potentiate Oncogenic Inflammation In Tet2-Mutated Clonal Hematopoiesis, Nana Adjoa Ben-Crentsil, Wazim Mohammed Ismail, Maria E Balasis, Hannah Newman, Ariel Quintana, Moritz Binder, Traci Kruer, Surendra Neupane, Meghan C Ferrall-Fairbanks, Jenna Fernandez, Terra L Lasho, Christy M Finke, Mohammed L Ibrahim, Kathy L Mcgraw, Michael Wysota, Amy L Aldrich, Christopher B Ryder, Christopher T Letson, Joshua Traina, Amy F Mclemore, Nathalie Droin, Aditi Shastri, Seongseok Yun, Eric Solary, David A Sallman, Amer A Beg, Li Ma, Alexandre Gaspar-Maia, Mrinal M Patnaik, Eric Padron
Faculty, Staff and Student Publications
This work identifies MALAT1 as a requisite downstream effector of oncogenic feedforward inflammatory circuits necessary for the development of TET2-mutated CH and fulminant myeloid malignancy. We elucidate a novel mechanism by which MALAT1 "shields" p65 from dephosphorylation to potentiate this circuit and nominate MALAT1 inhibition as a future therapeutic strategy.
For The Greater Good, Hannah Craft
For The Greater Good, Hannah Craft
Theses
The body of work included in my thesis exhibition explores how craft mediums can be used to create sculptural work motivated by narrative. Each piece presents a freeze-frame sculptural vignette in the instant before death occurs.
Vps13b Is Localized At The Interface Between Golgi Cisternae And Is A Functional Partner Of Fam177a1, Berrak Ugur, Florian Schueder, Jimann Shin, Michael G Hanna, Yumei Wu, Marianna Leonzino, Maohan Su, Anthony R Mcadow, Catherine Wilson, John Postlethwait, Lilianna Solnica-Krezel, Joerg Bewersdorf, Pietro De Camilli
Vps13b Is Localized At The Interface Between Golgi Cisternae And Is A Functional Partner Of Fam177a1, Berrak Ugur, Florian Schueder, Jimann Shin, Michael G Hanna, Yumei Wu, Marianna Leonzino, Maohan Su, Anthony R Mcadow, Catherine Wilson, John Postlethwait, Lilianna Solnica-Krezel, Joerg Bewersdorf, Pietro De Camilli
2020-Current year OA Pubs
Mutations in VPS13B, a member of a protein family implicated in bulk lipid transport between adjacent membranes, cause Cohen syndrome. VPS13B is known to be concentrated in the Golgi complex, but its precise location within this organelle and thus the site(s) where it achieves lipid transport remains unclear. Here, we show that VPS13B is localized at the interface between proximal and distal Golgi subcompartments and that Golgi complex reformation after Brefeldin A (BFA)-induced disruption is delayed in VPS13B KO cells. This delay is phenocopied by the loss of FAM177A1, a Golgi complex protein of unknown function reported to be a …
Onset And Progression Of Disease In Nonhuman Primates With Pde6c Cone Disorder, Monica Ardon, Lily Nguyen, Rui Chen, Jeffrey Rogers, Tim Stout, Sara Thomasy, Ala Moshiri
Onset And Progression Of Disease In Nonhuman Primates With Pde6c Cone Disorder, Monica Ardon, Lily Nguyen, Rui Chen, Jeffrey Rogers, Tim Stout, Sara Thomasy, Ala Moshiri
Faculty, Staff and Students Publications
PURPOSE: The California National Primate Research Center contains a colony of rhesus macaques with a homozygous missense mutation in PDE6C (R565Q) which causes a cone disorder similar to PDE6C achromatopsia in humans. The purposes of this study are to characterize the phenotype in PDE6C macaques in detail to determine the onset of the cone phenotype, the degree to which the phenotype progresses, if heterozygote animals have an intermediate phenotype, and if rod photoreceptor function declines over time.
METHODS: We analyzed spectral-domain optical coherence tomography (SD-OCT), fundus autofluorescence (FAF), and electroretinography (ERG) data from 102 eyes of 51 macaques (aged 0.25 …
Functional Role Of Myosin-Binding Protein H In Thick Filaments Of Developing Vertebrate Fast-Twitch Skeletal Muscle, Andrew F Mead, Marilyn J Cipolla, Aaron N Johnson, Christina A Gurnett, Et Al.
Functional Role Of Myosin-Binding Protein H In Thick Filaments Of Developing Vertebrate Fast-Twitch Skeletal Muscle, Andrew F Mead, Marilyn J Cipolla, Aaron N Johnson, Christina A Gurnett, Et Al.
2020-Current year OA Pubs
Myosin-binding protein H (MyBP-H) is a component of the vertebrate skeletal muscle sarcomere with sequence and domain homology to myosin-binding protein C (MyBP-C). Whereas skeletal muscle isoforms of MyBP-C (fMyBP-C, sMyBP-C) modulate muscle contractility via interactions with actin thin filaments and myosin motors within the muscle sarcomere "C-zone," MyBP-H has no known function. This is in part due to MyBP-H having limited expression in adult fast-twitch muscle and no known involvement in muscle disease. Quantitative proteomics reported here reveal that MyBP-H is highly expressed in prenatal rat fast-twitch muscles and larval zebrafish, suggesting a conserved role in muscle development and …
Investigating Impacts Of The Mycothiazole Chemotype As A Chemical Probe For The Study Of Mitochondrial Function And Aging., Naibedya Dutta, Joe A Gerke, Sofia F. Odron, Joseph D. Morris, Adam Hruby, Juri Kim, Toni Castro Torres, Sarah J. Shemtov, Jacqueline G. Clarke, Michelle C. Chang, Hooriya Shaghasi, Marissa N. Ray, Maxim Averbukh, Sally Hoang, Maria Oorloff, Athena Alcala, Matthew Vega, Hemal H Mehta, Max A Thorwald, Phillip Crews, Marc Vermulst, Gilberto Garcia, Tyler A. Johnson, Ryo Higuchi-Sanabria
Investigating Impacts Of The Mycothiazole Chemotype As A Chemical Probe For The Study Of Mitochondrial Function And Aging., Naibedya Dutta, Joe A Gerke, Sofia F. Odron, Joseph D. Morris, Adam Hruby, Juri Kim, Toni Castro Torres, Sarah J. Shemtov, Jacqueline G. Clarke, Michelle C. Chang, Hooriya Shaghasi, Marissa N. Ray, Maxim Averbukh, Sally Hoang, Maria Oorloff, Athena Alcala, Matthew Vega, Hemal H Mehta, Max A Thorwald, Phillip Crews, Marc Vermulst, Gilberto Garcia, Tyler A. Johnson, Ryo Higuchi-Sanabria
Natural Sciences and Mathematics | Faculty Scholarship
Small molecule inhibitors of the mitochondrial electron transport chain (ETC) hold significant promise to provide valuable insights to the field of mitochondrial research and aging biology. In this study, we investigated two molecules: mycothiazole (MTZ) - from the marine sponge C. mycofijiensis and its more stable semisynthetic analog 8-O-acetylmycothiazole (8-OAc) as potent and selective chemical probes based on their high efficiency to inhibit ETC complex I function. Similar to rotenone (Rote), MTZ, a newly employed ETC complex I inhibitor, exhibited higher cytotoxicity against cancer cell lines compared to certain non-cancer cell lines. Interestingly, 8-OAc demonstrated greater selectivity for cancer cells …
A Graph Theoretical Approach To Experimental Prioritization In Genome-Scale Investigations., Stephen K Grady, Kevin A Peterson, Stephen A Murray, Erich J Baker, Michael A Langston, Elissa J Chesler
A Graph Theoretical Approach To Experimental Prioritization In Genome-Scale Investigations., Stephen K Grady, Kevin A Peterson, Stephen A Murray, Erich J Baker, Michael A Langston, Elissa J Chesler
Faculty Research 2024
The goal of systems biology is to gain a network level understanding of how gene interactions influence biological states, and ultimately inform upon human disease. Given the scale and scope of systems biology studies, resource constraints often limit researchers when validating genome-wide phenomena and potentially lead to an incomplete understanding of the underlying mechanisms. Further, prioritization strategies are often biased towards known entities (e.g. previously studied genes/proteins with commercially available reagents), and other technical issues that limit experimental breadth. Here, heterogeneous biological information is modeled as an association graph to which a high-performance minimum dominating set solver is applied to …
The Mutant Mouse Resource And Research Center (Mmrrc) Consortium: The Us-Based Public Mouse Repository System., Yuksel Agca, James Amos-Landgraf, Renee Araiza, Jennifer Brennan, Charisse Carlson, Dominic Ciavatta, Dave Clary, Craig Franklin, Ian Korf, Cathleen Lutz, Terry Magnuson, Fernando Pardo-Manuel De Villena, Oleg Mirochnitchenko, Samit Patel, Dan Port, Laura G Reinholdt, K C Kent Lloyd
The Mutant Mouse Resource And Research Center (Mmrrc) Consortium: The Us-Based Public Mouse Repository System., Yuksel Agca, James Amos-Landgraf, Renee Araiza, Jennifer Brennan, Charisse Carlson, Dominic Ciavatta, Dave Clary, Craig Franklin, Ian Korf, Cathleen Lutz, Terry Magnuson, Fernando Pardo-Manuel De Villena, Oleg Mirochnitchenko, Samit Patel, Dan Port, Laura G Reinholdt, K C Kent Lloyd
Faculty Research 2024
Now in its 25th year, the Mutant Mouse Resource and Research Center (MMRRC) consortium continues to serve the United States and international biomedical scientific community as a public repository and distribution archive of laboratory mouse models of human disease for research. Supported by the National Institutes of Health (NIH), the MMRRC consists of 4 regionally distributed and dedicated vivaria, offices, and specialized laboratory facilities and an Informatics Coordination and Service Center (ICSC). The overarching purpose of the MMRRC is to facilitate groundbreaking biomedical research by offering an extensive repertoire of mutant mice that are essential for advancing the understanding of …
The Primate Gut Microbiota Contributes To Interspecific Differences In Host Metabolism., Elizabeth K Mallott, Sahana Kuthyar, Won Lee, Derek Reiman, Hongmei Jiang, Sriram Chitta, E Alexandria Waters, Brian T Layden, Ronen Sumagin, Laura D Manzanares, Guan-Yu Yang, Maria Luisa Savo Sardaro, Stanton Gray, Lawrence E Williams, Yang Dai, James P Curley, Chad R Haney, Emma R Liechty, Christopher W Kuzawa, Katherine R Amato
The Primate Gut Microbiota Contributes To Interspecific Differences In Host Metabolism., Elizabeth K Mallott, Sahana Kuthyar, Won Lee, Derek Reiman, Hongmei Jiang, Sriram Chitta, E Alexandria Waters, Brian T Layden, Ronen Sumagin, Laura D Manzanares, Guan-Yu Yang, Maria Luisa Savo Sardaro, Stanton Gray, Lawrence E Williams, Yang Dai, James P Curley, Chad R Haney, Emma R Liechty, Christopher W Kuzawa, Katherine R Amato
Faculty Research 2024
Because large brains are energetically expensive, they are associated with metabolic traits that facilitate energy availability across vertebrates. However, the biological underpinnings driving these traits are not known. Given its role in regulating host metabolism in disease studies, we hypothesized that the gut microbiome contributes to variation in normal cross-vertebrate species differences in metabolism, including those associated with the brain's energetic requirements. By inoculating germ-free mice with the gut microbiota (GM) of three primate species - two with relatively larger brains and one with a smaller brain - we demonstrated that the GM of larger-brained primates shifts host metabolism towards …
Lessons Learned From 20 Years Of Preclinical Testing In Pediatric Cancers., Malcolm A Smith, Peter J Houghton, Richard B Lock, John M Maris, Richard Gorlick, Raushan T Kurmasheva, Xiao-Nan Li, Beverly A Teicher, Jeffrey Chuang, Filemon S Dela Cruz, Michael A Dyer, Andrew L Kung, Michael W Lloyd, Yael P Mossé, Timothy M Stearns, Elizabeth A Stewart, Carol J Bult, Stephen W Erickson
Lessons Learned From 20 Years Of Preclinical Testing In Pediatric Cancers., Malcolm A Smith, Peter J Houghton, Richard B Lock, John M Maris, Richard Gorlick, Raushan T Kurmasheva, Xiao-Nan Li, Beverly A Teicher, Jeffrey Chuang, Filemon S Dela Cruz, Michael A Dyer, Andrew L Kung, Michael W Lloyd, Yael P Mossé, Timothy M Stearns, Elizabeth A Stewart, Carol J Bult, Stephen W Erickson
Faculty Research 2024
Programs for preclinical testing of targeted cancer agents in murine models of childhood cancers have been supported by the National Cancer Institute (NCI) since 2004. These programs were established to work collaboratively with industry partners to address the paucity of targeted agents for pediatric cancers compared with the large number of agents developed and approved for malignancies primarily affecting adults. The distinctive biology of pediatric cancers and the relatively small numbers of pediatric cancer patients are major challenges for pediatric oncology drug development. These factors are exacerbated by the division of cancers into multiple subtypes that are further sub-classified by …
Interruption Of Glucagon Signaling Augments Islet Non-Alpha Cell Proliferation In Slc7a2- And Mtor-Dependent Manners., Katie C Coate, Chunhua Dai, Ajay Singh, Jade Stanley, Brittney A Covington, Amber Bradley, Favour Oladipupo, Yulong Gong, Scott Wisniewski, Katelyn Sellick, Erick Spears, Greg Poffenberger, Anna Marie R Schornack, Alexandria Bustabad, Tyler Rodgers, Nandita Dey, Leonard D. Shultz, Dale L Greiner, Hai Yan, Alvin C Powers, Wenbiao Chen, E Danielle Dean
Interruption Of Glucagon Signaling Augments Islet Non-Alpha Cell Proliferation In Slc7a2- And Mtor-Dependent Manners., Katie C Coate, Chunhua Dai, Ajay Singh, Jade Stanley, Brittney A Covington, Amber Bradley, Favour Oladipupo, Yulong Gong, Scott Wisniewski, Katelyn Sellick, Erick Spears, Greg Poffenberger, Anna Marie R Schornack, Alexandria Bustabad, Tyler Rodgers, Nandita Dey, Leonard D. Shultz, Dale L Greiner, Hai Yan, Alvin C Powers, Wenbiao Chen, E Danielle Dean
Faculty Research 2024
OBJECTIVE: Dysregulated glucagon secretion and inadequate functional beta cell mass are hallmark features of diabetes. While glucagon receptor (GCGR) antagonism ameliorates hyperglycemia and elicits beta cell regeneration in pre-clinical models of diabetes, it also promotes alpha and delta cell hyperplasia. We sought to investigate the mechanism by which loss of glucagon action impacts pancreatic islet non-alpha cells, and the relevance of these observations in a human islet context.
METHODS: We used zebrafish, rodents, and transplanted human islets comprising six different models of interrupted glucagon signaling to examine their impact on delta and beta cell proliferation and mass. We also used …
Metabolic Shifts In Ratio Of Ucocn To Cocn Toward Bone Resorption Contribute To Age-Dependent Bone Loss In Male Mice, Matthew Bernhard, Obinna Okorie, Wei-Ju Louis Tseng, Mengcun Chen, Julia Danon, Mingshu Cui, Elisabeth Lashbrooks, Yanmei Yang, Bin Wang
Metabolic Shifts In Ratio Of Ucocn To Cocn Toward Bone Resorption Contribute To Age-Dependent Bone Loss In Male Mice, Matthew Bernhard, Obinna Okorie, Wei-Ju Louis Tseng, Mengcun Chen, Julia Danon, Mingshu Cui, Elisabeth Lashbrooks, Yanmei Yang, Bin Wang
Center for Translational Medicine Faculty Papers
The study of the senile osteoporosis in men still lags significantly behind that in women. The changes of protein molecule levels and their relationships with bone loss remain poorly understood. In the present study, we used C57BL/6J male mice at ages from 3 to 24 mo to delineate the mechanisms of aging effects on bone loss. We used the microcomputed tomography, mechanical testing, histomorphometry assays, and detection of serum levels of undercarboxylated osteocalcin (ucOcn) and carboxylated osteocalcin (cOcn) to assess bone mass changes and their relationships with the ratios of ucOcn-to-cOcn in mice from different age groups. The results showed …
Targeting The Glutamine-Arginine-Proline Metabolism Axis In Cancer, Di Wang, Jiang-Jie Duan, Yu-Feng Guo, Jun-Jie Chen, Tian-Qing Chen, Jun Wang, Shi-Cang Yu
Targeting The Glutamine-Arginine-Proline Metabolism Axis In Cancer, Di Wang, Jiang-Jie Duan, Yu-Feng Guo, Jun-Jie Chen, Tian-Qing Chen, Jun Wang, Shi-Cang Yu
Faculty, Staff and Student Publications
Metabolic abnormalities are an important feature of tumours. The glutamine-arginine-proline axis is an important node of cancer metabolism and plays a major role in amino acid metabolism. This axis also acts as a scaffold for the synthesis of other nonessential amino acids and essential metabolites. In this paper, we briefly review (1) the glutamine addiction exhibited by tumour cells with accelerated glutamine transport and metabolism; (2) the methods regulating extracellular glutamine entry, intracellular glutamine synthesis and the fate of intracellular glutamine; (3) the glutamine, proline and arginine metabolic pathways and their interaction; and (4) the research progress in tumour therapy …
Chronic Β3-Ar Stimulation Activates Distinct Thermogenic Mechanisms In Brown And White Adipose Tissue And Improves Systemic Metabolism In Aged Mice, Duraipandy Natarajan, Bhuvana Plakkot, Kritika Tiwari, Shoba Ekambaram, Weidong Wang, Michael Rudolph, Mahmoud A Mohammad, Shaji K Chacko, Madhan Subramanian, Stefano Tarantini, Andriy Yabluchanskiy, Zoltan Ungvari, Anna Csiszar, Priya Balasubramanian
Chronic Β3-Ar Stimulation Activates Distinct Thermogenic Mechanisms In Brown And White Adipose Tissue And Improves Systemic Metabolism In Aged Mice, Duraipandy Natarajan, Bhuvana Plakkot, Kritika Tiwari, Shoba Ekambaram, Weidong Wang, Michael Rudolph, Mahmoud A Mohammad, Shaji K Chacko, Madhan Subramanian, Stefano Tarantini, Andriy Yabluchanskiy, Zoltan Ungvari, Anna Csiszar, Priya Balasubramanian
Faculty, Staff and Students Publications
Adipose thermogenesis has been actively investigated as a therapeutic target for improving metabolic dysfunction in obesity. However, its applicability to middle-aged and older populations, which bear the highest obesity prevalence in the United States (approximately 40%), remains uncertain due to age-related decline in thermogenic responses. In this study, we investigated the effects of chronic thermogenic stimulation using the β3-adrenergic (AR) agonist CL316,243 (CL) on systemic metabolism and adipose function in aged (18-month-old) C57BL/6JN mice. Sustained β3-AR treatment resulted in reduced fat mass, increased energy expenditure, increased fatty acid oxidation and mitochondrial activity in adipose depots, improved glucose homeostasis, and a …
Three Decades Of Rat Genomics: Approaching The Finish(Ed) Line, Theodore S Kalbfleisch, Melissa L Smith, Julia L Ciosek, Kai Li, Peter A Doris
Three Decades Of Rat Genomics: Approaching The Finish(Ed) Line, Theodore S Kalbfleisch, Melissa L Smith, Julia L Ciosek, Kai Li, Peter A Doris
The Brown Foundation: Institute of Molecular Medicine
The rat, Rattus norvegicus, has provided an important model for investigation of a range of characteristics of biomedical importance. Here we survey the origins of this species, its introduction into laboratory research, and the emergence of genetic and genomic methods that utilize this model organism. Genomic studies have yielded important progress and provided new insight into several biologically important traits. However, some studies have been impeded by the lack of a complete and accurate reference genome for this species. New sequencing and genome assembly methods applied to the rat have resulted in a new reference genome assembly, GRCr8, which …
Anxiety-Like Behaviors In Mice Unmasked: Revealing Sex Differences In Anxiety Using A Novel Light-Heat Conflict Test, Sydney E Lee, Sung-Hoon Park, John C Aldrich, Laura K Fonken, Andrew D Gaudet
Anxiety-Like Behaviors In Mice Unmasked: Revealing Sex Differences In Anxiety Using A Novel Light-Heat Conflict Test, Sydney E Lee, Sung-Hoon Park, John C Aldrich, Laura K Fonken, Andrew D Gaudet
The Brown Foundation: Institute of Molecular Medicine
Anxiety and chronic pain afflict hundreds of millions worldwide. Anxiety and pain are more prevalent in females compared to males. Unfortunately, robust sex differences in human anxiety are not recapitulated in rodent tests, and results from rodent pain studies frequently fail to translate clinically. Therefore, there is a need to develop tests that reflect the differential salience of anxiety or pain-related stimuli between the sexes. Accordingly, here we introduce the Thermal Increments Dark-Light (TIDAL) conflict test. The TIDAL test places an anxiety-relevant stimulus (dark vs. illuminated chamber) in conflict with a heat-related stimulus (incrementally heated vs. isothermic chamber); mice freely …
Impact Of The Adenosine Receptor A2br Expressed On Myeloid Cells On Immune Regulation During Pregnancy, Stefanie Dietz, Janine Hebel, Jessica Rühle, Alisha Huff, Holger K Eltzschig, Trim Lajqi, Christian F Poets, Christian Gille, Natascha Köstlin-Gille
Impact Of The Adenosine Receptor A2br Expressed On Myeloid Cells On Immune Regulation During Pregnancy, Stefanie Dietz, Janine Hebel, Jessica Rühle, Alisha Huff, Holger K Eltzschig, Trim Lajqi, Christian F Poets, Christian Gille, Natascha Köstlin-Gille
Faculty, Staff and Student Publications
During pregnancy, the maternal immune system must carefully balance protection against pathogens with tolerance toward the semiallogeneic fetus. Dysfunctions of the immune system can lead to severe complications such as preeclampsia, fetal growth restriction, or pregnancy loss. Adenosine plays a role in physiological processes and plasma‐level increase during pregnancy. The adenosine receptor A2B (A2BR), which is expressed on both, immune and nonimmune cells, is activated by high adenosine concentrations, achieved during pregnancy. We investigated the impact of A2BR expressed on myeloid cells on immune regulation during pregnancy using a mouse model with myeloid deficiency for A2BR. We demonstrate systemic changes …
Cams In Command: Aging Brain Macrophages Fine-Tune Stroke Immune Responses, Rodney M Ritzel, Danye Jiang, Louise D Mccullough
Cams In Command: Aging Brain Macrophages Fine-Tune Stroke Immune Responses, Rodney M Ritzel, Danye Jiang, Louise D Mccullough
Faculty, Staff and Student Publications
Central nervous system-associated macrophages (CAMs) are a unique subset of immune cells located at the interface between the blood and the brain parenchyma. In a recent study in mice, Levard and colleagues found that CAMs regulate immune cell trafficking, endothelial activation, and antigen presentation following stroke exclusively in aged animals, underscoring the importance of using translationally relevant models for studying age-related diseases.
Mtor Maintains Endothelial Cell Integrity To Limit Lung Vascular Injury, Michelle Warren Millar, Rauf A Najar, Spencer A Slavin, Mohammad Shadab, Imran Tahir, Zahra Mahamed, Xin Lin, Jun-Ichi Abe, Terry W Wright, David A Dean, Fabeha Fazal, Arshad Rahman
Mtor Maintains Endothelial Cell Integrity To Limit Lung Vascular Injury, Michelle Warren Millar, Rauf A Najar, Spencer A Slavin, Mohammad Shadab, Imran Tahir, Zahra Mahamed, Xin Lin, Jun-Ichi Abe, Terry W Wright, David A Dean, Fabeha Fazal, Arshad Rahman
Faculty, Staff and Student Publications
The functional and structural integrity of the endothelium is essential for vascular homeostasis. Loss of barrier function in quiescent and migratory capacity in proliferative endothelium causes exuberant vascular permeability, a cardinal feature of many inflammatory diseases including acute lung injury (ALI). However, the signals governing these fundamental endothelial cell (EC) functions are poorly understood. Here, we identify mechanistic target of rapamycin (MTOR) as an important link in preserving the barrier integrity and migratory/angiogenic responses in EC and preventing lung vascular injury and mortality in mice. Knockdown of MTOR in EC altered cell morphology, impaired proliferation and migration, and increased endocytosis …
Radiation-Induced Macrovessel/Microvessel Disease, Jun-Ichi Abe, Bryan G Allen, Andreas M Beyer, David Lewandowski, Kranti A Mapuskar, Vikram Subramanian, Michelle R Tamplin, Isabella M Grumbach
Radiation-Induced Macrovessel/Microvessel Disease, Jun-Ichi Abe, Bryan G Allen, Andreas M Beyer, David Lewandowski, Kranti A Mapuskar, Vikram Subramanian, Michelle R Tamplin, Isabella M Grumbach
Faculty, Staff and Student Publications
Radiation therapy (RT) is a cornerstone in cancer treatment (used in 50% of cases), yet challenges persist because damage to normal tissue through direct impact of radiation or bystander effects is inevitable. Injury of macrovessels by RT manifests as obstructive disease, which is akin to atherosclerotic disease. Historically observed in coronary arteries of patients treated for breast cancer and lymphoma, it also affects patients receiving contemporary therapy for lung and chest cancers. Moreover, radiation at various sites can lead to peripheral vascular disease. An aspect of radiation-induced injury that has received little attention is microvascular injury, which typically results from …
Ras-Mutant Leukaemia Stem Cells Drive Clinical Resistance To Venetoclax, Junya Sango, Saul Carcamo, Maria Sirenko, Abhishek Maiti, Hager Mansour, Gulay Ulukaya, Lewis E Tomalin, Nataly Cruz-Rodriguez, Tiansu Wang, Malgorzata Olszewska, Emmanuel Olivier, Manon Jaud, Bettina Nadorp, Benjamin Kroger, Feng Hu, Lewis Silverman, Stephen S Chung, Elvin Wagenblast, Ronan Chaligne, Ann-Kathrin Eisfeld, Deniz Demircioglu, Dan A Landau, Piro Lito, Elli Papaemmanuil, Courtney D Dinardo, Dan Hasson, Marina Konopleva, Eirini P Papapetrou
Ras-Mutant Leukaemia Stem Cells Drive Clinical Resistance To Venetoclax, Junya Sango, Saul Carcamo, Maria Sirenko, Abhishek Maiti, Hager Mansour, Gulay Ulukaya, Lewis E Tomalin, Nataly Cruz-Rodriguez, Tiansu Wang, Malgorzata Olszewska, Emmanuel Olivier, Manon Jaud, Bettina Nadorp, Benjamin Kroger, Feng Hu, Lewis Silverman, Stephen S Chung, Elvin Wagenblast, Ronan Chaligne, Ann-Kathrin Eisfeld, Deniz Demircioglu, Dan A Landau, Piro Lito, Elli Papaemmanuil, Courtney D Dinardo, Dan Hasson, Marina Konopleva, Eirini P Papapetrou
Faculty, Staff and Student Publications
Cancer driver mutations often show distinct temporal acquisition patterns, but the biological basis for this, if any, remains unknown. RAS mutations occur invariably late in the course of acute myeloid leukaemia, upon progression or relapsed/refractory disease1-6. Here, by using human leukaemogenesis models, we first show that RAS mutations are obligatory late events that need to succeed earlier cooperating mutations. We provide the mechanistic explanation for this in a requirement for mutant RAS to specifically transform committed progenitors of the myelomonocytic lineage (granulocyte-monocyte progenitors) harbouring previously acquired driver mutations, showing that advanced leukaemic clones can originate from a different cell type …