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Articles 3061 - 3090 of 6307
Full-Text Articles in Entire DC Network
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
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 …
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
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
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
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 …
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
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 …
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
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 …
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
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
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 …
Normal Saline Remodels The Omentum And Stimulates Its Receptivity For Transcoelomic Metastasis, Hironari Akasaka, Wonjae Lee, Song Yi Ko, Ernst Lengyel, Honami Naora
Normal Saline Remodels The Omentum And Stimulates Its Receptivity For Transcoelomic Metastasis, Hironari Akasaka, Wonjae Lee, Song Yi Ko, Ernst Lengyel, Honami Naora
Faculty, Staff and Student Publications
The omentum contains immune cell structures called milky spots that are niches for transcoelomic metastasis. It is difficult to remove the omentum completely, and there are no effective strategies to minimize the risk of colonization of preserved omental tissues by cancer cells that circulate in the peritoneal fluid. Normal saline is commonly administered into the peritoneal cavity for diagnostic and intraoperative lavage. Here we show that normal saline, when administered into the peritoneal cavity of mice, is prominently absorbed by the omentum, exfoliates its mesothelium, and induces expression of CX3CL1, the ligand for CX3CR1, within and surrounding the omental vasculature. …
Nanoparticle-Enhanced Proton Beam Immunoradiotherapy Drives Immune Activation And Durable Tumor Rejection, Yun Hu, Sébastien Paris, Narayan Sahoo, Genevieve Bertolet, Qi Wang, Qianxia Wang, Hampartsoum B Barsoumian, Jordan Da Silva, Ailing Huang, Denaha J Doss, David P Pollock, Ethan Hsu, Nanez Selene, Claudia S Kettlun Leyton, Tiffany A Voss, Fatemeh Masrorpour, Shonik Ganjoo, Carola Leuschner, Jordan T Pietz, Nahum Puebla-Osorio, Saumil Gandhi, Quynh-Nhu Nguyen, Jing Wang, Maria Angelica Cortez, James W Welsh
Nanoparticle-Enhanced Proton Beam Immunoradiotherapy Drives Immune Activation And Durable Tumor Rejection, Yun Hu, Sébastien Paris, Narayan Sahoo, Genevieve Bertolet, Qi Wang, Qianxia Wang, Hampartsoum B Barsoumian, Jordan Da Silva, Ailing Huang, Denaha J Doss, David P Pollock, Ethan Hsu, Nanez Selene, Claudia S Kettlun Leyton, Tiffany A Voss, Fatemeh Masrorpour, Shonik Ganjoo, Carola Leuschner, Jordan T Pietz, Nahum Puebla-Osorio, Saumil Gandhi, Quynh-Nhu Nguyen, Jing Wang, Maria Angelica Cortez, James W Welsh
Faculty, Staff and Student Publications
The combination of radiation therapy (RT) and immunotherapy has emerged as a promising treatment option in oncology. Historically, x-ray radiation (XRT) has been the most commonly used form of RT. However, proton beam therapy (PBT) is gaining recognition as a viable alternative, as it has been shown to produce similar outcomes to XRT while minimizing off-target effects. The effects of PBT on the antitumor immune response have only just begun to be described, and to our knowledge no studies to date have examined the effect of PBT as part of a combinatorial immunoradiotherapeutic strategy. Here, using a 2-tumor model of …
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.
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 …
Blm Overexpression As A Predictive Biomarker For Chk1 Inhibitor Response In Parp Inhibitor-Resistant Brca-Mutant Ovarian Cancer, Nitasha Gupta, Tzu-Ting Huang, Jayakumar R Nair, Daniel An, Grant Zurcher, Erika J Lampert, Ann Mccoy, Ashley Cimino-Mathews, Elizabeth M Swisher, Marc R Radke, Christina M Lockwood, Jonathan B Reichel, Chih-Yuan Chiang, Kelli M Wilson, Ken Chih-Chien Cheng, Darryl Nousome, Jung-Min Lee
Blm Overexpression As A Predictive Biomarker For Chk1 Inhibitor Response In Parp Inhibitor-Resistant Brca-Mutant Ovarian Cancer, Nitasha Gupta, Tzu-Ting Huang, Jayakumar R Nair, Daniel An, Grant Zurcher, Erika J Lampert, Ann Mccoy, Ashley Cimino-Mathews, Elizabeth M Swisher, Marc R Radke, Christina M Lockwood, Jonathan B Reichel, Chih-Yuan Chiang, Kelli M Wilson, Ken Chih-Chien Cheng, Darryl Nousome, Jung-Min Lee
Faculty, Staff and Student Publications
Poly(ADP-ribose) polymerase inhibitors (PARPis) have changed the treatment paradigm in breast cancer gene (BRCA)–mutant high-grade serous ovarian carcinoma (HGSC). However, most patients eventually develop resistance to PARPis, highlighting an unmet need for improved therapeutic strategies. Using high-throughput drug screens, we identified ataxia telangiectasia and rad3-related protein/checkpoint kinase 1 (CHK1) pathway inhibitors as cytotoxic and further validated the activity of the CHK1 inhibitor (CHK1i) prexasertib in PARPi-sensitive and -resistant BRCA-mutant HGSC cells and xenograft mouse models. CHK1i monotherapy induced DNA damage, apoptosis, and tumor size reduction. We then conducted a phase 2 study (NCT02203513) of prexasertib …
An Improved Reporter Identifies Ruxolitinib As A Potent And Cardioprotective Camkii Inhibitor, Oscar E Reyes Gaido, Nikoleta Pavlaki, Jonathan M Granger, Olurotimi O Mesubi, Bian Liu, Brian L Lin, Alan Long, David Walker, Joshua Mayourian, Kate L Schole, Chantelle E Terrillion, Lubika J Nkashama, Mohit M Hulsurkar, Lauren E Dorn, Kimberly M Ferrero, Richard L Huganir, Frank U Müller, Xander H T Wehrens, Jun O Liu, Elizabeth D Luczak, Vassilios J Bezzerides, Mark E Anderson
An Improved Reporter Identifies Ruxolitinib As A Potent And Cardioprotective Camkii Inhibitor, Oscar E Reyes Gaido, Nikoleta Pavlaki, Jonathan M Granger, Olurotimi O Mesubi, Bian Liu, Brian L Lin, Alan Long, David Walker, Joshua Mayourian, Kate L Schole, Chantelle E Terrillion, Lubika J Nkashama, Mohit M Hulsurkar, Lauren E Dorn, Kimberly M Ferrero, Richard L Huganir, Frank U Müller, Xander H T Wehrens, Jun O Liu, Elizabeth D Luczak, Vassilios J Bezzerides, Mark E Anderson
Faculty, Staff and Students Publications
Ca2+/calmodulin-dependent protein kinase II (CaMKII) hyperactivity causes cardiac arrhythmias, a major source of morbidity and mortality worldwide. Despite proven benefits of CaMKII inhibition in numerous preclinical models of heart disease, translation of CaMKII antagonists into humans has been stymied by low potency, toxicity, and an enduring concern for adverse effects on cognition due to an established role of CaMKII in learning and memory. To address these challenges, we asked whether any clinically approved drugs, developed for other purposes, were potent CaMKII inhibitors. For this, we engineered an improved fluorescent reporter, CaMKAR (CaMKII activity reporter), which features superior sensitivity, kinetics, and …
Il-11 Induces Nlrp3 Inflammasome Activation In Monocytes And Inflammatory Cell Migration To The Central Nervous System, Maryamsadat Seyedsadr, Yan Wang, Manal Elzoheiry, Sowmya Shree Gopal, Soohwa Jang, Gayel Duran, Inna Chervoneva, Ezgi Kasimoglu, John A. Wrobel, Daniel Hwang, James Garifallou, Xin Zhang, Tabish H. Khan, Ulrike Lorenz, Maureen Su, Jenny P. Ting, Bieke Broux, A M Rostami, Dhanashri Miskin, Silva Markovic-Plese
Il-11 Induces Nlrp3 Inflammasome Activation In Monocytes And Inflammatory Cell Migration To The Central Nervous System, Maryamsadat Seyedsadr, Yan Wang, Manal Elzoheiry, Sowmya Shree Gopal, Soohwa Jang, Gayel Duran, Inna Chervoneva, Ezgi Kasimoglu, John A. Wrobel, Daniel Hwang, James Garifallou, Xin Zhang, Tabish H. Khan, Ulrike Lorenz, Maureen Su, Jenny P. Ting, Bieke Broux, A M Rostami, Dhanashri Miskin, Silva Markovic-Plese
Department of Neurology Faculty Papers
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+ monocytes, IL-11+ and IL-11R+ CD4+ lymphocytes, and IL-11R+ neutrophils in comparison to matched healthy controls. IL-11+ and granulocyte-macrophage colony-stimulating factor (GM-CSF)+ monocytes, CD4+ lymphocytes, and neutrophils accumulate in the cerebrospinal fluid (CSF). The effect of IL-11 in-vitro stimulation, examined using single-cell RNA sequencing, revealed the highest number of …
Arginine Depletion Attenuates Renal Cystogenesis In Tuberous Sclerosis Complex Model, Athar Amleh, Hadass Pri Chen, Lana Watad, Ifat Abramovich, Bella Agranovich, Eyal Gottlieb, Iddo Z Ben-Dov, Morris Nechama, Oded Volovelsky
Arginine Depletion Attenuates Renal Cystogenesis In Tuberous Sclerosis Complex Model, Athar Amleh, Hadass Pri Chen, Lana Watad, Ifat Abramovich, Bella Agranovich, Eyal Gottlieb, Iddo Z Ben-Dov, Morris Nechama, Oded Volovelsky
Faculty, Staff and Student Publications
Cystic kidney disease is a leading cause of morbidity in patients with tuberous sclerosis complex (TSC). We characterize the misregulated metabolic pathways using cell lines, a TSC mouse model, and human kidney sections. Our study reveals a substantial perturbation in the arginine biosynthesis pathway in TSC models with overexpression of argininosuccinate synthetase 1 (ASS1). The rise in ASS1 expression is dependent on the mechanistic target of rapamycin complex 1 (mTORC1) activity. Arginine depletion prevents mTORC1 hyperactivation and cell cycle progression and averts cystogenic signaling overexpression of c-Myc and P65. Accordingly, an arginine-depleted diet substantially reduces the TSC cystic load in …
A Novel Specific Aptamer Targets Cerebrovascular Endothelial Cells After Ischemic Stroke, Heng Hu, Silin Wu, Tae Jin Lee, Aaron M Gusdon, Yuxin Liu, Huimahn A Choi, Xuefang Sophie Ren
A Novel Specific Aptamer Targets Cerebrovascular Endothelial Cells After Ischemic Stroke, Heng Hu, Silin Wu, Tae Jin Lee, Aaron M Gusdon, Yuxin Liu, Huimahn A Choi, Xuefang Sophie Ren
Faculty, Staff and Student Publications
Cell specific-targeted therapy (CSTT) for acute ischemic stroke remains underdeveloped. Cerebrovascular endothelial cells (CECs) are key components of the blood-brain barrier and are the first brain cells affected by ischemic stroke. After stroke, CEC injury causes insufficient energy supply to neurons and leads to cytotoxic and vasogenic brain edema. Aptamers are short single-stranded RNA or DNA molecules that can bind to specific ligands for cell specific delivery. The expression of vascular cell adhesion molecule-1 (VCAM-1) is increased on CECs after stroke. Herein, we report that an RNA-based VCAM-1-aptamer can specifically target CECs in stroke brains following transient middle cerebral artery …
Prolylcarboxypeptidase Alleviates Hypertensive Cardiac Remodeling By Regulating Myocardial Tissue Angiotensin Ii, Binh Y Nguyen, Fangchao Zhou, Pablo Binder, Wei Liu, Susanne S Hille, Xiaojing Luo, Min Zi, Hongyuan Zhang, Antony Adamson, Fozia Z Ahmed, Sam Butterworth, Elizabeth J Cartwright, Oliver J Müller, Kaomei Guan, Elizabeth M Fitzgerald, Xin Wang
Prolylcarboxypeptidase Alleviates Hypertensive Cardiac Remodeling By Regulating Myocardial Tissue Angiotensin Ii, Binh Y Nguyen, Fangchao Zhou, Pablo Binder, Wei Liu, Susanne S Hille, Xiaojing Luo, Min Zi, Hongyuan Zhang, Antony Adamson, Fozia Z Ahmed, Sam Butterworth, Elizabeth J Cartwright, Oliver J Müller, Kaomei Guan, Elizabeth M Fitzgerald, Xin Wang
Faculty, Staff and Student Publications
Background Prolonged activation of angiotensin II is the main mediator that contributes to the development of heart diseases, so converting angiotensin II into angiotensin 1-7 has emerged as a new strategy to attenuate detrimental effects of angiotensin II. Prolylcarboxypeptidase is a lysosomal pro-X carboxypeptidase that is able to cleave angiotensin II at a preferential acidic pH optimum. However, insufficient attention has been given to the cardioprotective functions of prolylcarboxylpeptidase. Methods and Results We established a CRISPR/CRISPR-associated protein 9-mediated global prolylcarboxylpeptidase-knockout and adeno-associated virus serotype 9-mediated cardiac prolylcarboxylpeptidase overexpression mouse models, which were challenged with the angiotensin II infusion (2 mg/kg …
Scutellaria Baicalensis Enhances 5-Fluorouracil-Based Chemotherapy Via Inhibition Of Proliferative Signaling Pathways, Haizhou Liu, Hui Liu, Zhiyi Zhou, Jessica Chung, Guojing Zhang, Jin Chang, Robert A Parise, Edward Chu, John C Schmitz
Scutellaria Baicalensis Enhances 5-Fluorouracil-Based Chemotherapy Via Inhibition Of Proliferative Signaling Pathways, Haizhou Liu, Hui Liu, Zhiyi Zhou, Jessica Chung, Guojing Zhang, Jin Chang, Robert A Parise, Edward Chu, John C Schmitz
Abington Jefferson Health Papers
Fluoropyridine-based chemotherapy remains the most widely used treatment for colorectal cancer (CRC). In this study, we investigated the mechanism by which the natural product Scutellaria baicalensis (Huang Qin; HQ) and one of its main components baicalin enhanced 5-fluorouracil (5-FU) antitumor activity against CRC. Cell proliferation assays, cell cycle analysis, reverse-phase protein array (RPPA) analysis, immunoblot analysis, and qRT-PCR were performed to investigate the mechanism(s) of action of HQ and its active components on growth of CRC cells. HQ exhibited in vitro antiproliferative activity against drug resistant human CRC cells, against human and mouse CRC cells with different genetic backgrounds and …
Use Of Novel Structural Features To Identify Urinary Biomarkers During Acute Kidney Injury That Predict Progression To Chronic Kidney Disease, Jennifer R Charlton, Teng Li, Teresa Wu, Kimberly Deronde, Yanzhe Xu, Edwin J Baldelomar, Kevin M Bennett
Use Of Novel Structural Features To Identify Urinary Biomarkers During Acute Kidney Injury That Predict Progression To Chronic Kidney Disease, Jennifer R Charlton, Teng Li, Teresa Wu, Kimberly Deronde, Yanzhe Xu, Edwin J Baldelomar, Kevin M Bennett
2020-Current year OA Pubs
BACKGROUND: A significant barrier to biomarker development in the field of acute kidney injury (AKI) is the use of kidney function to identify candidates. Progress in imaging technology makes it possible to detect early structural changes prior to a decline in kidney function. Early identification of those who will advance to chronic kidney disease (CKD) would allow for the initiation of interventions to halt progression. The goal of this study was to use a structural phenotype defined by magnetic resonance imaging and histology to advance biomarker discovery during the transition from AKI to CKD.
METHODS: Urine was collected and analyzed …
Sox7 Deficiency Causes Ventricular Septal Defects Through Its Effects On Endocardial-To-Mesenchymal Transition And The Expression Of Wnt4 And Bmp2, Andrés Hernández-García, Katherine E Pendleton, Sangbae Kim, Yumei Li, Bum J Kim, Hitisha P Zaveri, Valerie K Jordan, Aliska M Berry, M Cecilia Ljungberg, Rui Chen, Rainer B Lanz, Daryl A Scott
Sox7 Deficiency Causes Ventricular Septal Defects Through Its Effects On Endocardial-To-Mesenchymal Transition And The Expression Of Wnt4 And Bmp2, Andrés Hernández-García, Katherine E Pendleton, Sangbae Kim, Yumei Li, Bum J Kim, Hitisha P Zaveri, Valerie K Jordan, Aliska M Berry, M Cecilia Ljungberg, Rui Chen, Rainer B Lanz, Daryl A Scott
Faculty, Staff and Students Publications
SOX7 is a transcription factor-encoding gene located in a region on chromosome 8p23.1 that is recurrently deleted in individuals with ventricular septal defects (VSDs). We have previously shown that Sox7-/- embryos die of heart failure around E11.5. Here, we demonstrate that these embryos have hypocellular endocardial cushions with severely reduced numbers of mesenchymal cells. Ablation of Sox7 in the endocardium also resulted in hypocellular endocardial cushions, and we observed VSDs in rare E15.5 Sox7flox/-;Tie2-Cre and Sox7flox/flox;Tie2-Cre embryos that survived to E15.5. In atrioventricular explant studies, we showed that SOX7 deficiency leads to a severe reduction in endocardial-to-mesenchymal transition (EndMT). RNA-seq …
Evidence-Based Guide To Using Artificial Introns For Tissue-Specific Knockout In Mice, Elena Mcbeath, Keigi Fujiwara, Marie-Claude Hofmann
Evidence-Based Guide To Using Artificial Introns For Tissue-Specific Knockout In Mice, Elena Mcbeath, Keigi Fujiwara, Marie-Claude Hofmann
Faculty, Staff and Student Publications
Up until recently, methods for generating floxed mice either conventionally or by CRISPR (Clustered Regularly Interspaced Short Palindromic Repeats)-Cas9 (CRISPR-associated protein 9) editing have been technically challenging, expensive and error-prone, or time-consuming. To circumvent these issues, several labs have started successfully using a small artificial intron to conditionally knockout (KO) a gene of interest in mice. However, many other labs are having difficulty getting the technique to work. The key problem appears to be either a failure in achieving correct splicing after the introduction of the artificial intron into the gene or, just as crucial, insufficient functional KO of the …
Identification Of A Humanized Mouse Model For Functional Testing Of Immune-Mediated Biomaterial Foreign Body Response., Joshua C Doloff, Minglin Ma, Atieh Sadraei, Hok Hei Tam, Shady Farah, Jennifer Hollister-Lock, Arturo J Vegas, Omid Veiseh, Victor M Quiroz, Amanda Rakoski, Stephanie Aresta-Dasilva, Andrew R Bader, Marissa Griffin, Gordon C Weir, Michael A Brehm, Leonard D. Shultz, Robert Langer, Dale L Greiner, Daniel G Anderson
Identification Of A Humanized Mouse Model For Functional Testing Of Immune-Mediated Biomaterial Foreign Body Response., Joshua C Doloff, Minglin Ma, Atieh Sadraei, Hok Hei Tam, Shady Farah, Jennifer Hollister-Lock, Arturo J Vegas, Omid Veiseh, Victor M Quiroz, Amanda Rakoski, Stephanie Aresta-Dasilva, Andrew R Bader, Marissa Griffin, Gordon C Weir, Michael A Brehm, Leonard D. Shultz, Robert Langer, Dale L Greiner, Daniel G Anderson
Faculty Research 2023
Biomedical devices comprise a major component of modern medicine, however immune-mediated fibrosis and rejection can limit their function over time. Here, we describe a humanized mouse model that recapitulates fibrosis following biomaterial implantation. Cellular and cytokine responses to multiple biomaterials were evaluated across different implant sites. Human innate immune macrophages were verified as essential to biomaterial rejection in this model and were capable of cross-talk with mouse fibroblasts for collagen matrix deposition. Cytokine and cytokine receptor array analysis confirmed core signaling in the fibrotic cascade. Foreign body giant cell formation, often unobserved in mice, was also prominent. Last, high-resolution microscopy …
Induction Of Astrocytic Slc22a3 Regulates Sensory Processing Through Histone Serotonylation, Debosmita Sardar, Yi-Ting Cheng, Junsung Woo, Dong-Joo Choi, Zhung-Fu Lee, Wookbong Kwon, Hsiao-Chi Chen, Brittney Lozzi, Alexis Cervantes, Kavitha Rajendran, Teng-Wei Huang, Antrix Jain, Benjamin R Arenkiel, Ian Maze, Benjamin Deneen
Induction Of Astrocytic Slc22a3 Regulates Sensory Processing Through Histone Serotonylation, Debosmita Sardar, Yi-Ting Cheng, Junsung Woo, Dong-Joo Choi, Zhung-Fu Lee, Wookbong Kwon, Hsiao-Chi Chen, Brittney Lozzi, Alexis Cervantes, Kavitha Rajendran, Teng-Wei Huang, Antrix Jain, Benjamin R Arenkiel, Ian Maze, Benjamin Deneen
Faculty, Staff and Students Publications
Neuronal activity drives alterations in gene expression within neurons, yet how it directs transcriptional and epigenomic changes in neighboring astrocytes in functioning circuits is unknown. We found that neuronal activity induces widespread transcriptional upregulation and downregulation in astrocytes, highlighted by the identification of a neuromodulator transporter Slc22a3 as an activity-inducible astrocyte gene regulating sensory processing in the olfactory bulb. Loss of astrocytic Slc22a3 reduced serotonin (5HT) levels in astrocytes, leading to alterations in histone serotonylation. Inhibition of histone serotonylation in astrocytes reduced expression of GABA biosynthetic genes and GABA release, culminating in olfactory deficits. Our study revealed that neuronal activity …
Strict Conservation Yet Non-Essential Nature Of Plasmid Gene Bba40 In The Lyme Disease Spirochete Borrelia Burgdorferi, Irene N Kasumba, Kit Tilly, Tao Lin, Steven J Norris, Patricia A Rosa
Strict Conservation Yet Non-Essential Nature Of Plasmid Gene Bba40 In The Lyme Disease Spirochete Borrelia Burgdorferi, Irene N Kasumba, Kit Tilly, Tao Lin, Steven J Norris, Patricia A Rosa
Faculty, Staff and Student Publications
The highly segmented genome of Borrelia burgdorferi, the tick-borne bacterium that causes Lyme disease, is composed of a linear chromosome and more than 20 co-existing endogenous plasmids. Many plasmid-borne genes are unique to B. burgdorferi and some have been shown to provide essential functions at discrete points of the infectious cycle between a tick vector and rodent host. In this study, we investigated the role of
Extracellular Rna Sensing Mediates Inflammation And Organ Injury In A Murine Model Of Polytrauma, Andrew O Suen, Fengqian Chen, Sheng Wang, Ziyi Li, Jing Zhu, Yang Yang, Olivia Conn, Kerri Lopez, Ping Cui, Laurence Wechsler, Alan Cross, Gary Fiskum, Rosemary Kozar, Peter Hu, Catriona Miller, Lin Zou, Brittney Williams, Wei Chao
Extracellular Rna Sensing Mediates Inflammation And Organ Injury In A Murine Model Of Polytrauma, Andrew O Suen, Fengqian Chen, Sheng Wang, Ziyi Li, Jing Zhu, Yang Yang, Olivia Conn, Kerri Lopez, Ping Cui, Laurence Wechsler, Alan Cross, Gary Fiskum, Rosemary Kozar, Peter Hu, Catriona Miller, Lin Zou, Brittney Williams, Wei Chao
Faculty, Staff and Student Publications
Severe traumatic injury leads to marked systemic inflammation and multiorgan injury. Endogenous drivers such as extracellular nucleic acid may play a role in mediating innate immune response and the downstream pathogenesis. Here, we explored the role of plasma extracellular RNA (exRNA) and its sensing mechanism in inflammation and organ injury in a murine model of polytrauma. We found that severe polytrauma—bone fracture, muscle crush injury, and bowel ischemia—induced a marked increase in plasma exRNA, systemic inflammation, and multiorgan injury in mice. Plasma RNA profiling with RNA sequencing in mice and humans revealed a dominant presence of miRNAs and marked differential …
The Insulin Receptor Regulates The Persistence Of Mechanical Nociceptive Sensitization In Flies And Mice, Yan Wang, Roger Lopez-Bellido, Xiaojiao Huo, Annemieke Kavelaars, Michael J Galko
The Insulin Receptor Regulates The Persistence Of Mechanical Nociceptive Sensitization In Flies And Mice, Yan Wang, Roger Lopez-Bellido, Xiaojiao Huo, Annemieke Kavelaars, Michael J Galko
Faculty, Staff and Student Publications
Early phase diabetes is often accompanied by pain sensitization. In Drosophila, the insulin receptor (InR) regulates the persistence of injury-induced thermal nociceptive sensitization. Whether Drosophila InR also regulates the persistence of mechanical nociceptive sensitization remains unclear. Mice with a sensory neuron deletion of the insulin receptor (Insr) show normal nociceptive baselines; however, it is uncertain whether deletion of Insr in nociceptive sensory neurons leads to persistent nociceptive hypersensitivity. In this study, we used fly and mouse nociceptive sensitization models to address these questions. In flies, InR mutants and larvae with sensory neuron-specific expression of RNAi transgenes targeting InR exhibited persistent …
Cutting Edge: Il-21 And Tissue-Specific Signals Instruct Tbet+Cd11c+ B Cell Development Following Viral Infection, Wenzhi Song, Gina M Sanchez, Daniel P Mayer, Holly N Blackburn, Irene Chernova, Richard A Flavell, Jason S Weinstein, Joe Craft
Cutting Edge: Il-21 And Tissue-Specific Signals Instruct Tbet+Cd11c+ B Cell Development Following Viral Infection, Wenzhi Song, Gina M Sanchez, Daniel P Mayer, Holly N Blackburn, Irene Chernova, Richard A Flavell, Jason S Weinstein, Joe Craft
Faculty, Staff and Student Publications
Tbet+CD11c+ B cells, also known as age-associated B cells (ABCs), are pivotal contributors to humoral immunity following infection and in autoimmunity, yet their in vivo generation is incompletely understood. We used a mouse model of systemic acute lymphocytic choriomeningitis virus infection to examine the developmental requirements of ABCs that emerged in the spleen and liver. IL-21 signaling through STAT3 was indispensable for ABC development. In contrast, IFN-γ signaling through STAT1 was required for B cell activation and proliferation. Mice that underwent splenectomy or were deficient in lymphotoxin α generated hepatic ABCs despite the lack of secondary lymphoid organ contributions, suggesting …
Stroke Survivors' Telemedicine Experiences During The Covid-19 Pandemic: A Phenomenological Investigation, Irene N Kasumba, Kit Tilly, Tao Lin, Steven J Norris, Patricia A Rosa
Stroke Survivors' Telemedicine Experiences During The Covid-19 Pandemic: A Phenomenological Investigation, Irene N Kasumba, Kit Tilly, Tao Lin, Steven J Norris, Patricia A Rosa
Faculty, Staff and Student Publications
The highly segmented genome of Borrelia burgdorferi, the tick-borne bacterium that causes Lyme disease, is composed of a linear chromosome and more than 20 co-existing endogenous plasmids. Many plasmid-borne genes are unique to B. burgdorferi and some have been shown to provide essential functions at discrete points of the infectious cycle between a tick vector and rodent host. In this study, we investigated the role of bba40, a highly conserved and differentially expressed gene on a ubiquitous linear plasmid of B. burgdorferi. In a prior genome-wide analysis, inactivation of bba40 by transposon insertion was linked with a …
Hematopoietic Progenitor Kinase 1 Inhibits The Development And Progression Of Pancreatic Intraepithelial Neoplasia, Hua Wang, Rohan Moniruzzaman, Lei Li, Baoan Ji, Yi Liu, Xiangsheng Zuo, Reza Abbasgholizadeh, Jun Zhao, Guangchao Liu, Ruiqi Wang, Hongli Tang, Ryan Sun, Xiaoping Su, Tse-Hua Tan, Anirban Maitra, Huamin Wang
Hematopoietic Progenitor Kinase 1 Inhibits The Development And Progression Of Pancreatic Intraepithelial Neoplasia, Hua Wang, Rohan Moniruzzaman, Lei Li, Baoan Ji, Yi Liu, Xiangsheng Zuo, Reza Abbasgholizadeh, Jun Zhao, Guangchao Liu, Ruiqi Wang, Hongli Tang, Ryan Sun, Xiaoping Su, Tse-Hua Tan, Anirban Maitra, Huamin Wang
Faculty, Staff and Student Publications
Ras plays an essential role in the development of acinar-to-ductal metaplasia (ADM) and pancreatic ductal adenocarcinoma (PDAC). However, mutant Kras is an inefficient driver for PDAC development. The mechanisms of the switching from low Ras activity to high Ras activity that are required for development and progression of pancreatic intraepithelial neoplasias (PanINs) are unclear. In this study, we found that hematopoietic progenitor kinase 1 (HPK1) was upregulated during pancreatic injury and ADM. HPK1 interacted with the SH3 domain and phosphorylated Ras GTPase-activating protein (RasGAP) and upregulated RasGAP activity. Using transgenic mouse models of HPK1 or M46, a kinase-dead mutant of …
Poly(Adp-Ribose) Polymerase 9 Mediates Early Protection Against Mycobacterium Tuberculosis Infection By Regulating Type I Ifn Production, Shyamala Thirunavukkarasu, Mushtaq Ahmed, Bruce A. Rosa, Mark Boothby, Sung Hoon Cho, Javier Rangel-Moreno, Stanley K. Mbandi, Valérie Schreiber, Ananya Gupta, Joaquin Zuniga, Makedonka Mitreva, Deepak Kaushal, Thomas J. Scriba, Shabaana A. Khader
Poly(Adp-Ribose) Polymerase 9 Mediates Early Protection Against Mycobacterium Tuberculosis Infection By Regulating Type I Ifn Production, Shyamala Thirunavukkarasu, Mushtaq Ahmed, Bruce A. Rosa, Mark Boothby, Sung Hoon Cho, Javier Rangel-Moreno, Stanley K. Mbandi, Valérie Schreiber, Ananya Gupta, Joaquin Zuniga, Makedonka Mitreva, Deepak Kaushal, Thomas J. Scriba, Shabaana A. Khader
2020-Current year OA Pubs
The ADP ribosyltransferases (PARPs 1-17) regulate diverse cellular processes, including DNA damage repair. PARPs are classified on the basis of their ability to catalyze poly-ADP-ribosylation (PARylation) or mono-ADP-ribosylation (MARylation). Although PARP9 mRNA expression is significantly increased in progressive tuberculosis (TB) in humans, its participation in host immunity to TB is unknown. Here, we show that PARP9 mRNA encoding the MARylating PARP9 enzyme was upregulated during TB in humans and mice and provide evidence of a critical modulatory role for PARP9 in DNA damage, cyclic GMP-AMP synthase (cGAS) expression, and type I IFN production during TB. Thus, Parp9-deficient mice were susceptible …