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Cardiovascular Diseases Commons™

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Full-Text Articles in Cardiovascular Diseases

Hydralazine Inhibits Cysteamine Dioxygenase To Treat Preeclampsia And Senesce Glioblastoma, Kyosuke Shishikura, Jiasong Li, Yiming Chen, Nate R. Mcknight, Thomas P. Keeley, Katelyn A. Bustin, Eric W. Barr, Snehil R. Chilkamari, Mahaa Ayub, Sun Woo Kim, Zongtao Lin, Ren-Ming Hu, Kelly Hicks, Xie Wang, Donald M. O'Rourke, J. Martin Bollinger, Zev A. Binder, William H. Parsons, Kirill A. Martemyanov, Aimin Liu, Megan L. Matthews Oct 2025

Hydralazine Inhibits Cysteamine Dioxygenase To Treat Preeclampsia And Senesce Glioblastoma, Kyosuke Shishikura, Jiasong Li, Yiming Chen, Nate R. Mcknight, Thomas P. Keeley, Katelyn A. Bustin, Eric W. Barr, Snehil R. Chilkamari, Mahaa Ayub, Sun Woo Kim, Zongtao Lin, Ren-Ming Hu, Kelly Hicks, Xie Wang, Donald M. O'Rourke, J. Martin Bollinger, Zev A. Binder, William H. Parsons, Kirill A. Martemyanov, Aimin Liu, Megan L. Matthews

SKMC Student Presentations and Publications

Hydralazine (HYZ), a treatment for preeclampsia and hypertensive crisis, is listed by the World Health Organization as an essential medicine. Its mode of action has remained unknown through its seven decades of clinical use. Here, we identify 2-aminoethanethiol dioxygenase (ADO), a key mediator of targeted protein degradation, as a selective HYZ target. The drug chelates ADO's metallocofactor and can alkylate one of its ligands. The resultant inactivation stabilizes regulators of G protein signaling (RGS4 and RGS5) that ADO normally marks for proteolysis, explaining the drug's vasodilatory activity and comporting with observations of diminished RGS levels in both clinical preeclampsia and …


Mbnl Overexpression Rescues Cardiac Phenotypes In A Myotonic Dystrophy Type 1 Heart Mouse Model, Rong-Chi Hu, Yi Zhang, Larissa Nitschke, Sara J Johnson, Ayrea E Hurley, William R Lagor, Zheng Xia, Thomas A Cooper Feb 2025

Mbnl Overexpression Rescues Cardiac Phenotypes In A Myotonic Dystrophy Type 1 Heart Mouse Model, Rong-Chi Hu, Yi Zhang, Larissa Nitschke, Sara J Johnson, Ayrea E Hurley, William R Lagor, Zheng Xia, Thomas A Cooper

Faculty, Staff and Students Publications

Myotonic dystrophy type 1 (DM1) is an autosomal dominant disease caused by a CTG repeat expansion in the dystrophia myotonica protein kinase (DMPK) gene. The expanded CUG repeat RNA (CUGexp RNA) transcribed from the mutant allele sequesters the muscleblind-like (MBNL) family of RNA-binding proteins, causing their loss of function and disrupting regulated pre-mRNA processing. We used a DM1 heart mouse model that inducibly expresses CUGexp RNA to test the contribution of MBNL loss to DM1 cardiac abnormalities and explored MBNL restoration as a potential therapy. AAV9-mediated overexpression of MBNL1 and/or MBNL2 significantly rescued DM1 cardiac phenotypes including conduction delays, contractile …


Repair Of Thoracic Aortic Aneurysm With Bilateral Aberrant Subclavian Artery, Yuki Ikeno, Akiko Tanaka, Francesco Brandini, Anthony L Estrera Aug 2024

Repair Of Thoracic Aortic Aneurysm With Bilateral Aberrant Subclavian Artery, Yuki Ikeno, Akiko Tanaka, Francesco Brandini, Anthony L Estrera

Faculty, Staff and Student Publications

We present a rare anatomical configuration of a 19-year-old woman, characterized by descending thoracic aortic aneurysm with right aberrant subclavian arteries with a Kommerell's diverticulum in a left aortic arch. The complexity of this vascular anomaly was accompanied by an anomalous origin of left subclavian artery. The patient underwent a single-stage open surgical repair via left thoracotomy under deep hypothermic circulatory arrest. The bilateral aberrant subclavian arteries were separately reconstructed in situ using hand-sewn branched grafts.


Mitochondria Regulate Proliferation In Adult Cardiac Myocytes, Gregory B Waypa, Kimberly A Smith, Paul T Mungai, Vincent J Dudley, Kathryn A Helmin, Benjamin D Singer, Clara Bien Peek, Joseph Bass, Lauren Nelson, Sanjiv J Shah, Gaston Ofman, J Andrew Wasserstrom, William A Muller, Alexander V Misharin, G R Scott Budinger, Hiam Abdala-Valencia, Navdeep S Chandel, Danijela Dokic, Elizabeth Bartom, Shuang Zhang, Yuki Tatekoshi, Amir Mahmoodzadeh, Hossein Ardehali, Edward B Thorp, Paul T Schumacker May 2024

Mitochondria Regulate Proliferation In Adult Cardiac Myocytes, Gregory B Waypa, Kimberly A Smith, Paul T Mungai, Vincent J Dudley, Kathryn A Helmin, Benjamin D Singer, Clara Bien Peek, Joseph Bass, Lauren Nelson, Sanjiv J Shah, Gaston Ofman, J Andrew Wasserstrom, William A Muller, Alexander V Misharin, G R Scott Budinger, Hiam Abdala-Valencia, Navdeep S Chandel, Danijela Dokic, Elizabeth Bartom, Shuang Zhang, Yuki Tatekoshi, Amir Mahmoodzadeh, Hossein Ardehali, Edward B Thorp, Paul T Schumacker

Faculty, Staff and Student Publications

Newborn mammalian cardiomyocytes quickly transition from a fetal to an adult phenotype that utilizes mitochondrial oxidative phosphorylation but loses mitotic capacity. We tested whether forced reversal of adult cardiomyocytes back to a fetal glycolytic phenotype would restore proliferative capacity. We deleted Uqcrfs1 (mitochondrial Rieske iron-sulfur protein, RISP) in hearts of adult mice. As RISP protein decreased, heart mitochondrial function declined, and glucose utilization increased. Simultaneously, the hearts underwent hyperplastic remodeling during which cardiomyocyte number doubled without cellular hypertrophy. Cellular energy supply was preserved, AMPK activation was absent, and mTOR activation was evident. In ischemic hearts with RISP deletion, new cardiomyocytes …


Altered Myocardial Lipid Regulation In Junctophilin-2-Associated Familial Cardiomyopathies, Satadru K Lahiri, Feng Jin, Yue Zhou, Ann P Quick, Carlos F Kramm, Meng C Wang, Xander Ht Wehrens May 2024

Altered Myocardial Lipid Regulation In Junctophilin-2-Associated Familial Cardiomyopathies, Satadru K Lahiri, Feng Jin, Yue Zhou, Ann P Quick, Carlos F Kramm, Meng C Wang, Xander Ht Wehrens

Faculty, Staff and Students Publications

Myocardial lipid metabolism is critical to normal heart function, whereas altered lipid regulation has been linked to cardiac diseases including cardiomyopathies. Genetic variants in the JPH2 gene can cause hypertrophic cardiomyopathy (HCM) and, in some cases, dilated cardiomyopathy (DCM). In this study, we tested the hypothesis that JPH2 variants identified in patients with HCM and DCM, respectively, cause distinct alterations in myocardial lipid profiles. Echocardiography revealed clinically significant cardiac dysfunction in both knock-in mouse models of cardiomyopathy. Unbiased myocardial lipidomic analysis demonstrated significantly reduced levels of total unsaturated fatty acids, ceramides, and various phospholipids in both mice with HCM and …


Head-To-Head Comparison Of Relevant Cell Sources Of Small Extracellular Vesicles For Cardiac Repair: Superiority Of Embryonic Stem Cells, Hernán González-King, Patricia G Rodrigues, Tamsin Albery, Benyapa Tangruksa, Ramya Gurrapu, Andreia M Silva, Gentian Musa, Dominika Kardasz, Kai Liu, Bengt Kull, Karin Åvall, Katarina Rydén-Markinhuhta, Tania Incitti, Nitin Sharma, Cecilia Graneli, Hadi Valadi, Kasparas Petkevicius, Miguel Carracedo, Sandra Tejedor, Alena Ivanova, Sepideh Heydarkhan-Hagvall, Phillipe Menasché, Jane Synnergren, Niek Dekker, Qing-Dong Wang, Karin Jennbacken May 2024

Head-To-Head Comparison Of Relevant Cell Sources Of Small Extracellular Vesicles For Cardiac Repair: Superiority Of Embryonic Stem Cells, Hernán González-King, Patricia G Rodrigues, Tamsin Albery, Benyapa Tangruksa, Ramya Gurrapu, Andreia M Silva, Gentian Musa, Dominika Kardasz, Kai Liu, Bengt Kull, Karin Åvall, Katarina Rydén-Markinhuhta, Tania Incitti, Nitin Sharma, Cecilia Graneli, Hadi Valadi, Kasparas Petkevicius, Miguel Carracedo, Sandra Tejedor, Alena Ivanova, Sepideh Heydarkhan-Hagvall, Phillipe Menasché, Jane Synnergren, Niek Dekker, Qing-Dong Wang, Karin Jennbacken

Faculty, Staff and Student Publications

Small extracellular vesicles (sEV) derived from various cell sources have been demonstrated to enhance cardiac function in preclinical models of myocardial infarction (MI). The aim of this study was to compare different sources of sEV for cardiac repair and determine the most effective one, which nowadays remains limited. We comprehensively assessed the efficacy of sEV obtained from human primary bone marrow mesenchymal stromal cells (BM-MSC), human immortalized MSC (hTERT-MSC), human embryonic stem cells (ESC), ESC-derived cardiac progenitor cells (CPC), human ESC-derived cardiomyocytes (CM), and human primary ventricular cardiac fibroblasts (VCF), in in vitro models of cardiac repair. ESC-derived sEV (ESC-sEV) …


Piezo1 Regulates Meningeal Lymphatic Vessel Drainage And Alleviates Excessive Csf Accumulation, Dongwon Choi, Eunkyung Park, Joshua Choi, Renhao Lu, Jin Suh Yu, Chiyoon Kim, Luping Zhao, James Yu, Brandon Nakashima, Sunju Lee, Dhruv Singhal, Joshua P Scallan, Bin Zhou, Chester J Koh, Esak Lee, Young-Kwon Hong May 2024

Piezo1 Regulates Meningeal Lymphatic Vessel Drainage And Alleviates Excessive Csf Accumulation, Dongwon Choi, Eunkyung Park, Joshua Choi, Renhao Lu, Jin Suh Yu, Chiyoon Kim, Luping Zhao, James Yu, Brandon Nakashima, Sunju Lee, Dhruv Singhal, Joshua P Scallan, Bin Zhou, Chester J Koh, Esak Lee, Young-Kwon Hong

Faculty, Staff and Students Publications

Piezo1 regulates multiple aspects of the vascular system by converting mechanical signals generated by fluid flow into biological processes. Here, we find that Piezo1 is necessary for the proper development and function of meningeal lymphatic vessels and that activating Piezo1 through transgenic overexpression or treatment with the chemical agonist Yoda1 is sufficient to increase cerebrospinal fluid (CSF) outflow by improving lymphatic absorption and transport. The abnormal accumulation of CSF, which often leads to hydrocephalus and ventriculomegaly, currently lacks effective treatments. We discovered that meningeal lymphatics in mouse models of Down syndrome were incompletely developed and abnormally formed. Selective overexpression of …


Akap12 Upregulation Associates With Pde8a To Accelerate Cardiac Dysfunction, Hanan Qasim, Mehrdad Rajaei, Ying Xu, Arfaxad Reyes-Alcaraz, Hala Y Abdelnasser, M David Stewart, Satadru K Lahiri, Xander H T Wehrens, Bradley K Mcconnell Apr 2024

Akap12 Upregulation Associates With Pde8a To Accelerate Cardiac Dysfunction, Hanan Qasim, Mehrdad Rajaei, Ying Xu, Arfaxad Reyes-Alcaraz, Hala Y Abdelnasser, M David Stewart, Satadru K Lahiri, Xander H T Wehrens, Bradley K Mcconnell

Faculty, Staff and Students Publications

BACKGROUND: In heart failure, signaling downstream the β2-adrenergic receptor is critical. Sympathetic stimulation of β2-adrenergic receptor alters cAMP (cyclic adenosine 3',5'-monophosphate) and triggers PKA (protein kinase A)-dependent phosphorylation of proteins that regulate cardiac function. cAMP levels are regulated in part by PDEs (phosphodiesterases). Several AKAPs (A kinase anchoring proteins) regulate cardiac function and are proposed as targets for precise pharmacology. AKAP12 is expressed in the heart and has been reported to directly bind β2-adrenergic receptor, PKA, and PDE4D. However, its roles in cardiac function are unclear.

METHODS: cAMP accumulation in real time downstream of the β2-adrenergic receptor was detected for …


In Vivo Cardiac Electrophysiology In Mice: Determination Of Atrial And Ventricular Arrhythmic Substrates, Jose Alberto Navarro-Garcia, Florian Bruns, Oliver M Moore, Marcel A Tekook, Dobromir Dobrev, Christina Y Miyake, Xander H T Wehrens Feb 2024

In Vivo Cardiac Electrophysiology In Mice: Determination Of Atrial And Ventricular Arrhythmic Substrates, Jose Alberto Navarro-Garcia, Florian Bruns, Oliver M Moore, Marcel A Tekook, Dobromir Dobrev, Christina Y Miyake, Xander H T Wehrens

Faculty, Staff and Students Publications

Cardiac arrhythmias are a common cardiac condition that might lead to fatal outcomes. A better understanding of the molecular and cellular basis of arrhythmia mechanisms is necessary for the development of better treatment modalities. To aid these efforts, various mouse models have been developed for studying cardiac arrhythmias. Both genetic and surgical mouse models are commonly used to assess the incidence and mechanisms of arrhythmias. Since spontaneous arrhythmias are uncommon in healthy young mice, intracardiac programmed electrical stimulation (PES) can be performed to assess the susceptibility to pacing-induced arrhythmias and uncover the possible presence of a proarrhythmogenic substrate. This procedure …


Endothelial Cells Adopt A Pro-Reparative Immune Responsive Signature During Cardiac Injury, Hali Long, Jeffrey D Steimle, Francisco Jose Grisanti Canozo, Jong Hwan Kim, Xiao Li, Yuka Morikawa, Minjun Park, Diwakar Turaga, Iki Adachi, Joshua D Wythe, Md Abul Hassan Samee, James F Martin Feb 2024

Endothelial Cells Adopt A Pro-Reparative Immune Responsive Signature During Cardiac Injury, Hali Long, Jeffrey D Steimle, Francisco Jose Grisanti Canozo, Jong Hwan Kim, Xiao Li, Yuka Morikawa, Minjun Park, Diwakar Turaga, Iki Adachi, Joshua D Wythe, Md Abul Hassan Samee, James F Martin

Faculty, Staff and Students Publications

Modulation of the heart’s immune microenvironment is crucial for recovery after ischemic events such as myocardial infarction (MI). Endothelial cells (ECs) can have immune regulatory functions; however, interactions between ECs and the immune environment in the heart after MI remain poorly understood. We identified an EC-specific IFN responsive and immune regulatory gene signature in adult and pediatric heart failure (HF) tissues. Single-cell transcriptomic analysis of murine hearts subjected to MI uncovered an EC population (IFN-ECs) with immunologic gene signatures similar to those in human HF. IFN-ECs were enriched in regenerative-stage mouse hearts and expressed genes encoding immune responsive transcription factors …


Novel Pan-Err Agonists Ameliorate Heart Failure Through Enhancing Cardiac Fatty Acid Metabolism And Mitochondrial Function, Weiyi Xu, Cyrielle Billon, Hui Li, Andrea Wilderman, Lei Qi, Andrea Graves, Jernie Rae Dela Cruz Rideb, Yuanbiao Zhao, Matthew Hayes, Keyang Yu, Mckenna Losby, Carissa S Hampton, Christiana M Adeyemi, Seok Jae Hong, Eleni Nasiotis, Chen Fu, Tae Gyu Oh, Weiwei Fan, Michael Downes, Ryan D Welch, Ronald M Evans, Aleksandar Milosavljevic, John K Walker, Brian C Jensen, Liming Pei, Thomas Burris, Lilei Zhang Jan 2024

Novel Pan-Err Agonists Ameliorate Heart Failure Through Enhancing Cardiac Fatty Acid Metabolism And Mitochondrial Function, Weiyi Xu, Cyrielle Billon, Hui Li, Andrea Wilderman, Lei Qi, Andrea Graves, Jernie Rae Dela Cruz Rideb, Yuanbiao Zhao, Matthew Hayes, Keyang Yu, Mckenna Losby, Carissa S Hampton, Christiana M Adeyemi, Seok Jae Hong, Eleni Nasiotis, Chen Fu, Tae Gyu Oh, Weiwei Fan, Michael Downes, Ryan D Welch, Ronald M Evans, Aleksandar Milosavljevic, John K Walker, Brian C Jensen, Liming Pei, Thomas Burris, Lilei Zhang

Faculty, Staff and Students Publications

BACKGROUND: Cardiac metabolic dysfunction is a hallmark of heart failure (HF). Estrogen-related receptors ERRα and ERRγ are essential regulators of cardiac metabolism. Therefore, activation of ERR could be a potential therapeutic intervention for HF. However, in vivo studies demonstrating the potential usefulness of ERR agonist for HF treatment are lacking, because compounds with pharmacokinetics appropriate for in vivo use have not been available.

METHODS: Using a structure-based design approach, we designed and synthesized 2 structurally distinct pan-ERR agonists, SLU-PP-332 and SLU-PP-915. We investigated the effect of ERR agonist on cardiac function in a pressure overload-induced HF model in vivo. We …


Genetic Inactivation Of Β-Catenin Is Salubrious, Whereas Its Activation Is Deleterious In Desmoplakin Cardiomyopathy, Melis Olcum, Siyang Fan, Leila Rouhi, Sirisha Cheedipudi, Benjamin Cathcart, Hyun-Hwan Jeong, Zhongming Zhao, Priyatansh Gurha, Ali J Marian Dec 2023

Genetic Inactivation Of Β-Catenin Is Salubrious, Whereas Its Activation Is Deleterious In Desmoplakin Cardiomyopathy, Melis Olcum, Siyang Fan, Leila Rouhi, Sirisha Cheedipudi, Benjamin Cathcart, Hyun-Hwan Jeong, Zhongming Zhao, Priyatansh Gurha, Ali J Marian

Faculty, Staff and Student Publications

AIMS: Mutations in the DSP gene encoding desmoplakin, a constituent of the desmosomes at the intercalated discs (IDs), cause a phenotype that spans arrhythmogenic cardiomyopathy (ACM) and dilated cardiomyopathy. It is typically characterized by biventricular enlargement and dysfunction, myocardial fibrosis, cell death, and arrhythmias. The canonical wingless-related integration (cWNT)/β-catenin pathway is implicated in the pathogenesis of ACM. The β-catenin is an indispensable co-transcriptional regulator of the cWNT pathway and a member of the IDs. We genetically inactivated or activated β-catenin to determine its role in the pathogenesis of desmoplakin cardiomyopathy.

METHODS AND RESULTS: The Dsp gene was conditionally deleted in …


Clinical Exome Sequencing Efficacy And Phenotypic Expansions Involving Anomalous Pulmonary Venous Return, Emily A Huth, Xiaonan Zhao, Nichole Owen, Pamela N Luna, Ida Vogel, Inger L H Dorf, Shelagh Joss, Jill Clayton-Smith, Michael J Parker, Jacoba J Louw, Marc Gewillig, Jeroen Breckpot, Alison Kraus, Erina Sasaki, Usha Kini, Trent Burgess, Tiong Y Tan, Ruth Armstrong, Katherine Neas, Giovanni B Ferrero, Alfredo Brusco, Wihelmina S Kerstjens-Frederikse, Julia Rankin, Lindsey R Helvaty, Benjamin J Landis, Gabrielle C Geddes, Kim L Mcbride, Stephanie M Ware, Chad A Shaw, Seema R Lalani, Jill A Rosenfeld, Daryl A Scott Dec 2023

Clinical Exome Sequencing Efficacy And Phenotypic Expansions Involving Anomalous Pulmonary Venous Return, Emily A Huth, Xiaonan Zhao, Nichole Owen, Pamela N Luna, Ida Vogel, Inger L H Dorf, Shelagh Joss, Jill Clayton-Smith, Michael J Parker, Jacoba J Louw, Marc Gewillig, Jeroen Breckpot, Alison Kraus, Erina Sasaki, Usha Kini, Trent Burgess, Tiong Y Tan, Ruth Armstrong, Katherine Neas, Giovanni B Ferrero, Alfredo Brusco, Wihelmina S Kerstjens-Frederikse, Julia Rankin, Lindsey R Helvaty, Benjamin J Landis, Gabrielle C Geddes, Kim L Mcbride, Stephanie M Ware, Chad A Shaw, Seema R Lalani, Jill A Rosenfeld, Daryl A Scott

Faculty, Staff and Students Publications

Anomalous pulmonary venous return (APVR) frequently occurs with other congenital heart defects (CHDs) or extra-cardiac anomalies. While some genetic causes have been identified, the optimal approach to genetic testing in individuals with APVR remains uncertain, and the etiology of most cases of APVR is unclear. Here, we analyzed molecular data from 49 individuals to determine the diagnostic yield of clinical exome sequencing (ES) for non-isolated APVR. A definitive or probable diagnosis was made for 8 of those individuals yielding a diagnostic efficacy rate of 16.3%. We then analyzed molecular data from 62 individuals with APVR accrued from three databases to …


Nonsense Variant Prdm16-Q187x Causes Impaired Myocardial Development And Tgf-Β Signaling Resulting In Noncompaction Cardiomyopathy In Humans And Mice, Bo Sun, Omid M T Rouzbehani, Ryan J Kramer, Rajeshwary Ghosh, Robin M Perelli, Sage Atkins, Amir Nima Fatahian, Kathryn Davis, Marta W Szulik, Michael A Goodman, Marissa A Hathaway, Ellenor Chi, Tarah A Word, Hari Tunuguntla, Susan W Denfield, Xander H T Wehrens, Kevin J Whitehead, Hala Y Abdelnasser, Junco S Warren, Mingfu Wu, Sarah Franklin, Sihem Boudina, Andrew P Landstrom Dec 2023

Nonsense Variant Prdm16-Q187x Causes Impaired Myocardial Development And Tgf-Β Signaling Resulting In Noncompaction Cardiomyopathy In Humans And Mice, Bo Sun, Omid M T Rouzbehani, Ryan J Kramer, Rajeshwary Ghosh, Robin M Perelli, Sage Atkins, Amir Nima Fatahian, Kathryn Davis, Marta W Szulik, Michael A Goodman, Marissa A Hathaway, Ellenor Chi, Tarah A Word, Hari Tunuguntla, Susan W Denfield, Xander H T Wehrens, Kevin J Whitehead, Hala Y Abdelnasser, Junco S Warren, Mingfu Wu, Sarah Franklin, Sihem Boudina, Andrew P Landstrom

Faculty, Staff and Students Publications

BACKGROUND: PRDM16 plays a role in myocardial development through TGF-β (transforming growth factor-beta) signaling. Recent evidence suggests that loss of PRDM16 expression is associated with cardiomyopathy development in mice, although its role in human cardiomyopathy development is unclear. This study aims to determine the impact of PRDM16 loss-of-function variants on cardiomyopathy in humans.

METHODS: Individuals with PRDM16 variants were identified and consented. Induced pluripotent stem cell-derived cardiomyocytes (iPSC-CMs) were generated from a proband hosting a Q187X nonsense variant as an in vitro model and underwent proliferative and transcriptional analyses. CRISPR-mediated knock-in mouse model hosting the Prdm16Q187X allele was generated …


Usp38 Exacerbates Atrial Inflammation, Fibrosis, And Susceptibility To Atrial Fibrillation After Myocardial Infarction In Mice, Yang Gong, Tingting Yu, Wei Shuai, Tao Chen, Jingjing Zhang, He Huang Nov 2023

Usp38 Exacerbates Atrial Inflammation, Fibrosis, And Susceptibility To Atrial Fibrillation After Myocardial Infarction In Mice, Yang Gong, Tingting Yu, Wei Shuai, Tao Chen, Jingjing Zhang, He Huang

Faculty, Staff and Student Publications

BACKGROUND: Inflammation plays an important role in the pathogenesis of atrial fibrillation (AF) after myocardial infarction (MI). The role of USP38, a member of the ubiquitin-specific protease family, on MI-induced atrial inflammation, fibrosis, and associated AF is unclear.

METHODS: In this study, we surgically constructed a mouse MI model using USP38 cardiac conditional knockout (USP38-CKO) and cardiac-specific overexpression (USP38-TG) mice and applied biochemical, histological, electrophysiological characterization and molecular biology to investigate the effects of USP38 on atrial inflammation, fibrosis, and AF and its mechanisms.

RESULTS: Our results revealed that USP38-CKO attenuates atrial inflammation, thereby ameliorating fibrosis, and abnormal electrophysiologic properties, …


Mathematical Modeling Of Radiotherapy: Impact Of Model Selection On Estimating Minimum Radiation Dose For Tumor Control, Achyudhan R Kutuva, Jimmy J Caudell, Kosj Yamoah, Heiko Enderling, Mohammad U Zahid Oct 2023

Mathematical Modeling Of Radiotherapy: Impact Of Model Selection On Estimating Minimum Radiation Dose For Tumor Control, Achyudhan R Kutuva, Jimmy J Caudell, Kosj Yamoah, Heiko Enderling, Mohammad U Zahid

Faculty, Staff and Student Publications

INTRODUCTION: Radiation therapy (RT) is one of the most common anticancer therapies. Yet, current radiation oncology practice does not adapt RT dose for individual patients, despite wide interpatient variability in radiosensitivity and accompanying treatment response. We have previously shown that mechanistic mathematical modeling of tumor volume dynamics can simulate volumetric response to RT for individual patients and estimation personalized RT dose for optimal tumor volume reduction. However, understanding the implications of the choice of the underlying RT response model is critical when calculating personalized RT dose.

METHODS: In this study, we evaluate the mathematical implications and biological effects of 2 …


Sox7-Positive Endothelial Progenitors Establish Coronary Arteries And Govern Ventricular Compaction, Ivy Kn Chiang, David Humphrey, Richard J Mills, Peter Kaltzis, Shikha Pachauri, Matthew Graus, Diptarka Saha, Zhijian Wu, Paul Young, Choon Boon Sim, Tara Davidson, Andres Hernandez-Garcia, Chad A Shaw, Alexander Renwick, Daryl A Scott, Enzo R Porrello, Emily S Wong, James E Hudson, Kristy Red-Horse, Gonzalo Del Monte-Nieto, Mathias Francois Oct 2023

Sox7-Positive Endothelial Progenitors Establish Coronary Arteries And Govern Ventricular Compaction, Ivy Kn Chiang, David Humphrey, Richard J Mills, Peter Kaltzis, Shikha Pachauri, Matthew Graus, Diptarka Saha, Zhijian Wu, Paul Young, Choon Boon Sim, Tara Davidson, Andres Hernandez-Garcia, Chad A Shaw, Alexander Renwick, Daryl A Scott, Enzo R Porrello, Emily S Wong, James E Hudson, Kristy Red-Horse, Gonzalo Del Monte-Nieto, Mathias Francois

Faculty, Staff and Students Publications

The cardiac endothelium influences ventricular chamber development by coordinating trabeculation and compaction. However, the endothelial-specific molecular mechanisms mediating this coordination are not fully understood. Here, we identify the Sox7 transcription factor as a critical cue instructing cardiac endothelium identity during ventricular chamber development. Endothelial-specific loss of Sox7 function in mice results in cardiac ventricular defects similar to non-compaction cardiomyopathy, with a change in the proportions of trabecular and compact cardiomyocytes in the mutant hearts. This phenotype is paralleled by abnormal coronary artery formation. Loss of Sox7 function disrupts the transcriptional regulation of the Notch pathway and connexins 37 and 40, …


Speg Interactions That Regulate The Stability Of Excitation-Contraction Coupling Protein Complexes In Triads And Dyads, Chang Seok Lee, Sung Yun Jung, Rachel Sue Zhen Yee, Nadia H Agha, Jin Hong, Ting Chang, Lyle W Babcock, Jorie D Fleischman, Benjamin Clayton, Amy D Hanna, Christopher S Ward, Denise Lanza, Ayrea E Hurley, Pumin Zhang, Xander H T Wehrens, William R Lagor, George G Rodney, Susan L Hamilton Sep 2023

Speg Interactions That Regulate The Stability Of Excitation-Contraction Coupling Protein Complexes In Triads And Dyads, Chang Seok Lee, Sung Yun Jung, Rachel Sue Zhen Yee, Nadia H Agha, Jin Hong, Ting Chang, Lyle W Babcock, Jorie D Fleischman, Benjamin Clayton, Amy D Hanna, Christopher S Ward, Denise Lanza, Ayrea E Hurley, Pumin Zhang, Xander H T Wehrens, William R Lagor, George G Rodney, Susan L Hamilton

Faculty, Staff and Students Publications

Here we show that striated muscle preferentially expressed protein kinase α (Spegα) maintains cardiac function in hearts with Spegβ deficiency. Speg is required for stability of excitation-contraction coupling (ECC) complexes and interacts with esterase D (Esd), Cardiomyopathy-Associated Protein 5 (Cmya5), and Fibronectin Type III and SPRY Domain Containing 2 (Fsd2) in cardiac and skeletal muscle. Mice with a sequence encoding a V5/HA tag inserted into the first exon of the Speg gene (HA-Speg mice) display a >90% decrease in Spegβ but Spegα is expressed at ~50% of normal levels. Mice deficient in both Spegα and Speg β (Speg KO mice) …


Csf1r Regulates Schizophrenia-Related Stress Response And Vascular Association Of Microglia/Macrophages, Ling Yan, Yanli Li, Fengmei Fan, Mengzhuang Gou, Fangling Xuan, Wei Feng, Keerthana Chithanathan, Wei Li, Junchao Huang, Hongna Li, Wenjin Chen, Baopeng Tian, Zhiren Wang, Shuping Tan, Alexander Zharkovsky, L Elliot Hong, Yunlong Tan, Li Tian Aug 2023

Csf1r Regulates Schizophrenia-Related Stress Response And Vascular Association Of Microglia/Macrophages, Ling Yan, Yanli Li, Fengmei Fan, Mengzhuang Gou, Fangling Xuan, Wei Feng, Keerthana Chithanathan, Wei Li, Junchao Huang, Hongna Li, Wenjin Chen, Baopeng Tian, Zhiren Wang, Shuping Tan, Alexander Zharkovsky, L Elliot Hong, Yunlong Tan, Li Tian

Faculty, Staff and Student Publications

BACKGROUND: Microglia are known to regulate stress and anxiety in both humans and animal models. Psychosocial stress is the most common risk factor for the development of schizophrenia. However, how microglia/brain macrophages contribute to schizophrenia is not well established. We hypothesized that effector molecules expressed in microglia/macrophages were involved in schizophrenia via regulating stress susceptibility.

METHODS: We recruited a cohort of first episode schizophrenia (FES) patients (n = 51) and age- and sex-paired healthy controls (HCs) (n = 46) with evaluated stress perception. We performed blood RNA-sequencing (RNA-seq) and brain magnetic resonance imaging, and measured plasma level of colony stimulating …


Mavs Signaling Is Required For Preventing Persistent Chikungunya Heart Infection And Chronic Vascular Tissue Inflammation, Maria G Noval, Sophie N Spector, Eric Bartnicki, Franco Izzo, Navneet Narula, Stephen T Yeung, Payal Damani-Yokota, M Zahidunnabi Dewan, Valeria Mezzano, Bruno A Rodriguez-Rodriguez, Cynthia Loomis, Kamal M Khanna, Kenneth A Stapleford Aug 2023

Mavs Signaling Is Required For Preventing Persistent Chikungunya Heart Infection And Chronic Vascular Tissue Inflammation, Maria G Noval, Sophie N Spector, Eric Bartnicki, Franco Izzo, Navneet Narula, Stephen T Yeung, Payal Damani-Yokota, M Zahidunnabi Dewan, Valeria Mezzano, Bruno A Rodriguez-Rodriguez, Cynthia Loomis, Kamal M Khanna, Kenneth A Stapleford

Faculty, Staff and Student Publications

Chikungunya virus (CHIKV) infection has been associated with severe cardiac manifestations, yet, how CHIKV infection leads to heart disease remains unknown. Here, we leveraged both mouse models and human primary cardiac cells to define the mechanisms of CHIKV heart infection. Using an immunocompetent mouse model of CHIKV infection as well as human primary cardiac cells, we demonstrate that CHIKV directly infects and actively replicates in cardiac fibroblasts. In immunocompetent mice, CHIKV is cleared from cardiac tissue without significant damage through the induction of a local type I interferon response from both infected and non-infected cardiac cells. Using mice deficient in …


Crat Links Cholesterol Metabolism To Innate Immune Responses In The Heart, Hua Mao, Aude Angelini, Shengyu Li, Guangyu Wang, Luge Li, Cam Patterson, Xinchun Pi, Liang Xie Aug 2023

Crat Links Cholesterol Metabolism To Innate Immune Responses In The Heart, Hua Mao, Aude Angelini, Shengyu Li, Guangyu Wang, Luge Li, Cam Patterson, Xinchun Pi, Liang Xie

Faculty, Staff and Students Publications

Chronic inflammation is associated with increased risk and poor prognosis of heart failure; however, the precise mechanism that provokes sustained inflammation in the failing heart remains elusive. Here we report that depletion of carnitine acetyltransferase (CRAT) promotes cholesterol catabolism through bile acid synthesis pathway in cardiomyocytes. Intracellular accumulation of bile acid or intermediate, 7α-hydroxyl-3-oxo-4-cholestenoic acid, induces mitochondrial DNA stress and triggers cGAS-STING-dependent type I interferon responses. Furthermore, type I interferon responses elicited by CRAT deficiency substantially increase AIM2 expression and AIM2-dependent inflammasome activation. Genetic deletion of cardiomyocyte CRAT in mice of both sexes results in myocardial inflammation and dilated cardiomyopathy, …


Recombinant Adamts-13 Improves Survival Of Mice Subjected To Endotoxemia, Daniel Gao, Zhou Zhou, Ruidong Ma, Huaizhu Wu, Trung Nguyen, Li Liu, Jingfei Dong Jul 2023

Recombinant Adamts-13 Improves Survival Of Mice Subjected To Endotoxemia, Daniel Gao, Zhou Zhou, Ruidong Ma, Huaizhu Wu, Trung Nguyen, Li Liu, Jingfei Dong

Faculty, Staff and Students Publications

When stimulated by proinflammatory mediators, endothelial cells release ultra-large von Willebrand factor (ULVWF) multimers that are hyperactive in activating and aggregating platelets. These ULVWF multimers can accumulate in the circulation and on the inflamed endothelium because they are insufficiently cleaved by the metalloprotease ADAMTS-13, which becomes moderately deficient under conditions of systemic inflammation. This moderate ADAMTS-13 deficiency may lead to thrombotic complications that contribute to ischemic tissue injury and organ failure that are associated with severe infections. To test this hypothesis, we investigated whether recombinant ADAMTS-13 improves the pathological course of endotoxemia in lipopolysaccharide (LPS)-treated mice. C57BL/J6 mice received a …


Adenosine Metabolized From Extracellular Atp Ameliorates Organ Injury By Triggering A2br Signaling, Taha Kelestemur, Zoltán H Németh, Pal Pacher, Jennet Beesley, Simon C Robson, Holger K Eltzschig, György Haskó Jul 2023

Adenosine Metabolized From Extracellular Atp Ameliorates Organ Injury By Triggering A2br Signaling, Taha Kelestemur, Zoltán H Németh, Pal Pacher, Jennet Beesley, Simon C Robson, Holger K Eltzschig, György Haskó

Faculty, Staff and Student Publications

BACKGROUND: Trauma and a subsequent hemorrhagic shock (T/HS) result in insufficient oxygen delivery to tissues and multiple organ failure. Extracellular adenosine, which is a product of the extracellular degradation of adenosine 5' triphosphate (ATP) by the membrane-embedded enzymes CD39 and CD73, is organ protective, as it participates in signaling pathways, which promote cell survival and suppress inflammation through adenosine receptors including the A

METHODS: T/HS shock was induced by blood withdrawal from the femoral artery in wild-type, global knockout (CD39, CD73, A

RESULTS: T/HS upregulated the expression of CD39, CD73, and the A

CONCLUSION: In conclusion, the CD39-CD73-A


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 Jun 2023

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 …


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 Jun 2023

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 …


Cardiac Pericytes Mediate The Remodeling Response To Myocardial Infarction, Pearl Quijada, Shuin Park, Peng Zhao, Kamal Ss Kolluri, David Wong, Kevin D Shih, Kai Fang, Arash Pezhouman, Lingjun Wang, Ali Daraei, Matthew D Tran, Elle M Rathbun, Kimberly N Burgos Villar, Maria L Garcia-Hernandez, Thanh Td Pham, Charles J Lowenstein, M Luisa Iruela-Arispe, S Thomas Carmichael, Eric M Small, Reza Ardehali May 2023

Cardiac Pericytes Mediate The Remodeling Response To Myocardial Infarction, Pearl Quijada, Shuin Park, Peng Zhao, Kamal Ss Kolluri, David Wong, Kevin D Shih, Kai Fang, Arash Pezhouman, Lingjun Wang, Ali Daraei, Matthew D Tran, Elle M Rathbun, Kimberly N Burgos Villar, Maria L Garcia-Hernandez, Thanh Td Pham, Charles J Lowenstein, M Luisa Iruela-Arispe, S Thomas Carmichael, Eric M Small, Reza Ardehali

Faculty, Staff and Students Publications

Despite the prevalence of pericytes in the microvasculature of the heart, their role during ischemia-induced remodeling remains unclear. We used multiple lineage-tracing mouse models and found that pericytes migrated to the injury site and expressed profibrotic genes, coinciding with increased vessel leakage after myocardial infarction (MI). Single-cell RNA-Seq of cardiac pericytes at various time points after MI revealed the temporally regulated induction of genes related to vascular permeability, extracellular matrix production, basement membrane degradation, and TGF-β signaling. Deleting TGF-β receptor 1 in chondroitin sulfate proteoglycan 4-expressing (Cspg4-expressing) cells reduced fibrosis following MI, leading to a transient improvement in the cardiac …


Mecp2 Regulates Gdf11, A Dosage-Sensitive Gene Critical For Neurological Function, Sameer S Bajikar, Ashley G Anderson, Jian Zhou, Mark A Durham, Alexander J Trostle, Ying-Wooi Wan, Zhandong Liu, Huda Y Zoghbi Feb 2023

Mecp2 Regulates Gdf11, A Dosage-Sensitive Gene Critical For Neurological Function, Sameer S Bajikar, Ashley G Anderson, Jian Zhou, Mark A Durham, Alexander J Trostle, Ying-Wooi Wan, Zhandong Liu, Huda Y Zoghbi

Faculty, Staff and Students Publications

Loss- and gain-of-function of MeCP2 causes Rett syndrome (RTT) and MECP2 duplication syndrome (MDS), respectively. MeCP2 binds methyl-cytosines to finely tune gene expression in the brain, but identifying genes robustly regulated by MeCP2 has been difficult. By integrating multiple transcriptomics datasets, we revealed that MeCP2 finely regulates growth differentiation factor 11 (Gdf11). Gdf11 is down-regulated in RTT mouse models and, conversely, up-regulated in MDS mouse models. Strikingly, genetically normalizing Gdf11 dosage levels improved several behavioral deficits in a mouse model of MDS. Next, we discovered that losing one copy of Gdf11 alone was sufficient to cause multiple neurobehavioral …


Control Of Sars-Cov-2 Infection By Mt1-Mmp-Mediated Shedding Of Ace2, Xuanming Guo, Jianli Cao, Jian-Piao Cai, Jiayan Wu, Jiangang Huang, Pallavi Asthana, Sheung Kin Ken Wong, Zi-Wei Ye, Susma Gurung, Yijing Zhang, Sheng Wang, Zening Wang, Xin Ge, Hiu Yee Kwan, Aiping Lyu, Kui Ming Chan, Nathalie Wong, Jiandong Huang, Zhongjun Zhou, Zhao-Xiang Bian, Shuofeng Yuan, Hoi Leong Xavier Wong Dec 2022

Control Of Sars-Cov-2 Infection By Mt1-Mmp-Mediated Shedding Of Ace2, Xuanming Guo, Jianli Cao, Jian-Piao Cai, Jiayan Wu, Jiangang Huang, Pallavi Asthana, Sheung Kin Ken Wong, Zi-Wei Ye, Susma Gurung, Yijing Zhang, Sheng Wang, Zening Wang, Xin Ge, Hiu Yee Kwan, Aiping Lyu, Kui Ming Chan, Nathalie Wong, Jiandong Huang, Zhongjun Zhou, Zhao-Xiang Bian, Shuofeng Yuan, Hoi Leong Xavier Wong

Faculty, Staff and Student Publications

Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) has caused a global pandemic. Angiotensin-converting enzyme 2 (ACE2) is an entry receptor for SARS-CoV-2. The full-length membrane form of ACE2 (memACE2) undergoes ectodomain shedding to generate a shed soluble form (solACE2) that mediates SARS-CoV-2 entry via receptor-mediated endocytosis. Currently, it is not known how the physiological regulation of ACE2 shedding contributes to the etiology of COVID-19 in vivo. The present study identifies Membrane-type 1 Matrix Metalloproteinase (MT1-MMP) as a critical host protease for solACE2-mediated SARS-CoV-2 infection. SARS-CoV-2 infection leads to increased activation of MT1-MMP that is colocalized with ACE2 in human lung …


Genetic Inhibition Of Nuclear Factor Of Activated T-Cell C2 Prevents Atrial Fibrillation In Crem Transgenic Mice, Li Ni, Satadru K Lahiri, Jiali Nie, Xiaolu Pan, Issam Abu-Taha, Julia O Reynolds, Hannah M Campbell, Haihao Wang, Markus Kamler, Wilhelm Schmitz, Frank Ulrich Müller, Na Li, Xiang Wei, Dao Wen Wang, Dobromir Dobrev, Xander H T Wehrens Oct 2022

Genetic Inhibition Of Nuclear Factor Of Activated T-Cell C2 Prevents Atrial Fibrillation In Crem Transgenic Mice, Li Ni, Satadru K Lahiri, Jiali Nie, Xiaolu Pan, Issam Abu-Taha, Julia O Reynolds, Hannah M Campbell, Haihao Wang, Markus Kamler, Wilhelm Schmitz, Frank Ulrich Müller, Na Li, Xiang Wei, Dao Wen Wang, Dobromir Dobrev, Xander H T Wehrens

Faculty, Staff and Students Publications

AIMS: Abnormal intracellular calcium (Ca2+) handling contributes to the progressive nature of atrial fibrillation (AF), the most common sustained cardiac arrhythmia. Evidence in mouse models suggests that activation of the nuclear factor of activated T-cell (NFAT) signalling pathway contributes to atrial remodelling. Our aim was to determine the role of NFATc2 in AF in humans and mouse models.

METHODS AND RESULTS: Expression levels of NFATc1-c4 isoforms were assessed by quantitative reverse transcription-polymerase chain reaction in right atrial appendages from patients with chronic AF (cAF). NFATc1 and NFATc2 mRNA levels were elevated in cAF patients compared with those in normal sinus …


Sirpα Mediates Igf1 Receptor In Cardiomyopathy-Induced By Chronic Kidney Disease, Sandhya S Thomas, Jiao Wu, Giovanni Davogustto, Michael W Holliday, Kristin Eckel-Mahan, Daniela Verzola, Giacomo Garibotto, Zhaoyong Hu, William E Mitch, Heinrich Taegtmeyer Jul 2022

Sirpα Mediates Igf1 Receptor In Cardiomyopathy-Induced By Chronic Kidney Disease, Sandhya S Thomas, Jiao Wu, Giovanni Davogustto, Michael W Holliday, Kristin Eckel-Mahan, Daniela Verzola, Giacomo Garibotto, Zhaoyong Hu, William E Mitch, Heinrich Taegtmeyer

Faculty, Staff and Student Publications

BACKGROUND: Chronic kidney disease (CKD) is characterized by increased myocardial mass despite near-normal blood pressure, suggesting the presence of a separate trigger. A potential driver is SIRPα (signal regulatory protein alpha)-a mediator impairing insulin signaling. The objective of this study is to assess the role of circulating SIRPα in CKD-induced adverse cardiac remodeling.

METHODS: SIRPα expression was evaluated in mouse models and patients with CKD. Specifically, mutant, muscle-specific, or cardiac muscle-specific SIRPα KO (knockout) mice were examined after subtotal nephrectomy. Cardiac function was assessed by echocardiography. Metabolic responses were confirmed in cultured muscle cells or cardiomyocytes.

RESULTS: We demonstrate that …