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Articles 961 - 990 of 7751

Full-Text Articles in Medicine and Health Sciences

The Microrna Mir-30a Blocks Adipose Tissue Fibrosis Accumulation In Obesity, Pradip K Saha, Robert Sharp, Aaron R Cox, Rabie Habib, Michael J Bolt, Jessica B Felix, Claudia E Ramirez Bustamante, Xin Li, Sung Yun Jung, Kang Ho Kim, Kai Sun, Huaizhu Wu, Samuel Klein, Sean M Hartig Aug 2025

The Microrna Mir-30a Blocks Adipose Tissue Fibrosis Accumulation In Obesity, Pradip K Saha, Robert Sharp, Aaron R Cox, Rabie Habib, Michael J Bolt, Jessica B Felix, Claudia E Ramirez Bustamante, Xin Li, Sung Yun Jung, Kang Ho Kim, Kai Sun, Huaizhu Wu, Samuel Klein, Sean M Hartig

Faculty, Staff and Student Publications

White adipose tissue (WAT) fibrosis occurring in obesity contributes to the inflammatory and metabolic comorbidities of insulin resistance and type 2 diabetes, yet the mechanisms involved remain poorly understood. Here, we report a role for the broadly conserved miRNA miR-30a as a regulator of WAT fibrosis and systemic glucose metabolism. Mice modified to express miR-30a at elevated levels in adipose tissues maintain insulin sensitivity coupled with reduced fatty liver disease when fed a high-fat diet. These effects were attributable to cell-autonomous functions of miR-30a that potently increase expression of adipocyte-specific genes. Proteomic screening revealed miR-30a limits profibrotic programs in subcutaneous …


Evolution Of Esophageal Adenocarcinoma From Precursor Lesion Stem Cells, Wa Xian, Shan Wang, Jingzhong Xie, Yusuke Yamamoto, Melina Khorrami, Yanting Zhang, Raul Caballero Montes, Caycel Desales, Melika Khorrami, Zaal Mory, Ashley Hoffman, Amber Su, Crystal Nguyen, Peter J A Davies, Clifford Stephan, Shuang Pan, Wengen Wu, Yuxin Liu, Jeremy Siegelman, Rebecca E Waters, William A Ross, Shumei Song, Mark Metersky, David G Beer, Christopher P Crum, Alexander J Stewart, Matthew Vincent, Richard Russell, Robert A Izard, Khek Yu Ho, Jack Hung-Sen Lai, William W Bachovchin, Jaffer A Ajani, Frank D Mckeon Aug 2025

Evolution Of Esophageal Adenocarcinoma From Precursor Lesion Stem Cells, Wa Xian, Shan Wang, Jingzhong Xie, Yusuke Yamamoto, Melina Khorrami, Yanting Zhang, Raul Caballero Montes, Caycel Desales, Melika Khorrami, Zaal Mory, Ashley Hoffman, Amber Su, Crystal Nguyen, Peter J A Davies, Clifford Stephan, Shuang Pan, Wengen Wu, Yuxin Liu, Jeremy Siegelman, Rebecca E Waters, William A Ross, Shumei Song, Mark Metersky, David G Beer, Christopher P Crum, Alexander J Stewart, Matthew Vincent, Richard Russell, Robert A Izard, Khek Yu Ho, Jack Hung-Sen Lai, William W Bachovchin, Jaffer A Ajani, Frank D Mckeon

Faculty, Staff and Student Publications

Background & aims: Metastatic cancers arise from a decades-long succession of increasingly virulent precursor lesions, each of which represents prospective targets for therapeutic intervention. This evolutionary process has been particularly vivid in esophageal adenocarcinoma (EAC), as this cancer and associated precursor lesions, including Barrett's esophagus (BE), low-grade dysplasia (LGD), and high-grade dysplasia (HGD), coexist in an accessible, 2-dimensional pattern in esophageal mucosa. Given the durability of these precursor lesions, it is likely that they, like EAC, rely on stem cells for their regenerative growth. To assess the role of stem cells in the evolution of EAC, we apply technology that …


Nerve-To-Cancer Transfer Of Mitochondria During Cancer Metastasis, Gregory Hoover, Shila Gilbert, Olivia Curley, Clémence Obellianne, Mike T Lin, William Hixson, Terry W Pierce, Joel F Andrews, Mikhail F Alexeyev, Yi Ding, Ping Bu, Fariba Behbod, Daniel Medina, Jeffrey T Chang, Gustavo Ayala, Simon Grelet Aug 2025

Nerve-To-Cancer Transfer Of Mitochondria During Cancer Metastasis, Gregory Hoover, Shila Gilbert, Olivia Curley, Clémence Obellianne, Mike T Lin, William Hixson, Terry W Pierce, Joel F Andrews, Mikhail F Alexeyev, Yi Ding, Ping Bu, Fariba Behbod, Daniel Medina, Jeffrey T Chang, Gustavo Ayala, Simon Grelet

Faculty, Staff and Students Publications

The nervous system has a pivotal role in cancer biology, and pathological investigations have linked intratumoural nerve density to metastasis1. However, the precise impact of cancer-associated neurons and the communication channels at the nerve–cancer interface remain poorly understood. Previous cancer denervation models in rodents and humans have highlighted robust cancer dependency on nerves, but the underlying mechanisms that drive nerve-mediated cancer aggressivity remain unknown2,3. Here we show that cancer-associated neurons enhance cancer metabolic plasticity by transferring mitochondria to cancer cells. Breast cancer denervation and nerve–cancer coculture models confirmed that neurons significantly improve tumour energetics. …


Sirt5 Inhibition Impairs Mitochondrial Metabolism And Enhances Venetoclax-Induced Elimination Of Acute Myeloid Leukemia Cells, Moran Wang, Ruiqi Zhu, Donald Small, Lan Lin, Li Li, Shengling Ma, Linghui Xia, Shanshan Luo, Wenjuan He, Jianming Yu, Junying Li, Ruowen Wei, Ao Zhang, Wei Shi, Yu Hu Aug 2025

Sirt5 Inhibition Impairs Mitochondrial Metabolism And Enhances Venetoclax-Induced Elimination Of Acute Myeloid Leukemia Cells, Moran Wang, Ruiqi Zhu, Donald Small, Lan Lin, Li Li, Shengling Ma, Linghui Xia, Shanshan Luo, Wenjuan He, Jianming Yu, Junying Li, Ruowen Wei, Ao Zhang, Wei Shi, Yu Hu

Faculty, Staff and Students Publications

Metabolic reprogramming is a key focus of targeted therapies in acute myeloid leukemia (AML). The mitochondrial sirtuin SIRT5 removes succinyl groups from specific lysines and impacts cell metabolism, but its role in AML tumorigenesis has not been extensively explored. A recent study highlighted that SIRT5 regulates AML cell activity by modulating glutamine metabolism, but its molecular targets in AML remain unclear. This study aims to identify the substrates of SIRT5 in AML. It was found that a total of 83 proteins with 121 lysine (K) residues showed increased succinylation after SIRT5 knockdown, as determined by succinylome analysis of MOLM-13 cells. …


The Microrna Mir-30a Blocks Adipose Tissue Fibrosis Accumulation In Obesity, Pradip K Saha, Robert Sharp, Aaron R. Cox, Rabie Habib, Michael J. Bolt, Jessica B. Felix, Claudia E. Ramirez Bustamante, Xin Li, Sung Yun Jung, Kang Ho Kim, Kai Sun, Huaizhu Wu, Samuel Klein, Sean M. Hartig Aug 2025

The Microrna Mir-30a Blocks Adipose Tissue Fibrosis Accumulation In Obesity, Pradip K Saha, Robert Sharp, Aaron R. Cox, Rabie Habib, Michael J. Bolt, Jessica B. Felix, Claudia E. Ramirez Bustamante, Xin Li, Sung Yun Jung, Kang Ho Kim, Kai Sun, Huaizhu Wu, Samuel Klein, Sean M. Hartig

2020-Current year OA Pubs

White adipose tissue (WAT) fibrosis occurring in obesity contributes to the inflammatory and metabolic comorbidities of insulin resistance and type 2 diabetes, yet the mechanisms involved remain poorly understood. Here, we report a role for the broadly conserved miRNA miR-30a as a regulator of WAT fibrosis and systemic glucose metabolism. Mice modified to express miR-30a at elevated levels in adipose tissues maintain insulin sensitivity coupled with reduced fatty liver disease when fed a high-fat diet. These effects were attributable to cell-autonomous functions of miR-30a that potently increase expression of adipocyte-specific genes. Proteomic screening revealed miR-30a limits profibrotic programs in subcutaneous …


Validation Of The Brugia Test Plus To Detect Igg4 Antibodies In Individuals From Belitung Timur, A Brugia Malayi Endemic Area In Indonesia, Taniawati Supali, Elisa Iskandar, Noviani Sugianto, Yenny Djuardi, Katherine Gass, Jean M. Saunders, Peter U. Fischer, Marco A. Biamonte Aug 2025

Validation Of The Brugia Test Plus To Detect Igg4 Antibodies In Individuals From Belitung Timur, A Brugia Malayi Endemic Area In Indonesia, Taniawati Supali, Elisa Iskandar, Noviani Sugianto, Yenny Djuardi, Katherine Gass, Jean M. Saunders, Peter U. Fischer, Marco A. Biamonte

2020-Current year OA Pubs

The Brugia Test Plus (BT+) is a new rapid diagnostic test for Brugia species which detects human IgG4 antibodies specific for the immunogenic Brugia protein BmR1. The aim of this study was to evaluate the BT+ assay with several types of sample-matrices: whole blood, plasma, and dried blood spots (DBS) from individuals living in Belitung Timur, a Brugia malayi endemic area in Indonesia. Night blood was collected from residents living in four presumed endemic villages, while DBS were collected from schoolchildren living in those four villages. The sensitivity of BT+ was measured by comparing the BT+ results to microscopic examination …


Fold-And-Fuse Neurulation In Zebrafish Requires Vangl2, Jacalyn Macgowan, Mara Cardenas, Margot Kossmann Williams Aug 2025

Fold-And-Fuse Neurulation In Zebrafish Requires Vangl2, Jacalyn Macgowan, Mara Cardenas, Margot Kossmann Williams

Faculty, Staff and Students Publications

Shaping of the future brain and spinal cord during neurulation is an essential component of early vertebrate development. In amniote embryos, primary neurulation occurs through a "fold-and-fuse" mechanism by which the edges of the neural plate fuse into the hollow neural tube. Failure of neural fold fusion results in neural tube defects (NTDs), which are among the most devastating and common congenital anomalies worldwide. Unlike amniotes, the zebrafish neural tube develops largely via formation of a solid neural keel that later cavitates to form a midline lumen. Although many aspects of primary neurulation are conserved in zebrafish, including neural fold …


Mx1-Labeled Pulp Progenitor Cells Are The Main Contributors Of Odontoblast And Dentin Regeneration In Murine Molars, Dongwook Yang, Youngjae Jeong, Laura Ortinau, Jea Giezl Solidum, Dongsu Park Aug 2025

Mx1-Labeled Pulp Progenitor Cells Are The Main Contributors Of Odontoblast And Dentin Regeneration In Murine Molars, Dongwook Yang, Youngjae Jeong, Laura Ortinau, Jea Giezl Solidum, Dongsu Park

Faculty, Staff and Students Publications

Regeneration of dentin and odontoblasts from dental pulp progenitor cells is essential for the maintenance of permanent tooth. However, the in vivo identity of endogenous pulp progenitor cells and how they contribute to reparative dentinogenesis remain elusive. Here we show that comparative single-cell analysis of pulp cells before and after molar eruption reveal that endogenous pulp progenitor cells are enriched in coronal papilla-like cells with Mx1-Cre and Cxcl12–GFP expression. Further, lineage tracing and fluorescence-activated cell sorting analysis indicated that Mx1-labeled (Mx1+) pulp cells include long-term repopulating progenitor cells with higher expression of stem cell markers. Notably, …


Mechanisms Underlying Atrial Fibrillation In Chronic Kidney Disease, Jose Alberto Navarro-Garcia, Joshua A Keefe, Jia Song, Na Li, Xander H T Wehrens Aug 2025

Mechanisms Underlying Atrial Fibrillation In Chronic Kidney Disease, Jose Alberto Navarro-Garcia, Joshua A Keefe, Jia Song, Na Li, Xander H T Wehrens

Faculty, Staff and Students Publications

Chronic kidney disease (CKD) is a serious and progressive worldwide health problem affecting 15 % of the global population. CKD is associated with higher mortality rates due to secondary complications such as cardiovascular disease. Common cardiovascular complications found in CKD patients include left ventricular hypertrophy, heart failure, and cardiac arrhythmias. The most common type of cardiac arrhythmia in CKD patients is atrial fibrillation (AF). Proper management of AF is important due to its high risk of cardiovascular complications and stroke. The incidence of AF remains higher in CKD patients than in the healthy population, highlighting the need to improve our …


The Synaptic Architecture Of Layer 5 Thick Tufted Excitatory Neurons In Mouse Visual Cortex, Agnes L Bodor, Casey M Schneider-Mizell, Chi Zhang, Leila Elabbady, Alex Mallen, Andi Bergeson, Derrick Brittain, Joann Buchanan, Daniel J Bumbarger, Rachel Dalley, Clare Gamlin, Emily Joyce, Daniel Kapner, Sam Kinn, Gayathri Mahalingam, Sharmishtaa Seshamani, Shelby Suckow, Marc Takeno, Russel Torres, Wenjing Yin, J Alexander Bae, Manuel A Castro, Sven Dorkenwald, Akhilesh Halageri, Zhen Jia, Chris Jordan, Nico Kemnitz, Kisuk Lee, Kai Li, Ran Lu, Thomas Macrina, Eric Mitchell, Shanka Subhra Mondal, Shang Mu, Barak Nehoran, Sergiy Popovych, William Silversmith, Nicholas L Turner, Szi-Chieh Yu, William Wong, Jingpeng Wu, Brendan Celii, Luke Campagnola, Stephanie C Seeman, Tim Jarsky, Naixin Ren, Anton Arkhipov, Jacob Reimer, H Sebastian Seung, R Clay Reid, Forrest Collman, Nuno Maçarico Da Costa Aug 2025

The Synaptic Architecture Of Layer 5 Thick Tufted Excitatory Neurons In Mouse Visual Cortex, Agnes L Bodor, Casey M Schneider-Mizell, Chi Zhang, Leila Elabbady, Alex Mallen, Andi Bergeson, Derrick Brittain, Joann Buchanan, Daniel J Bumbarger, Rachel Dalley, Clare Gamlin, Emily Joyce, Daniel Kapner, Sam Kinn, Gayathri Mahalingam, Sharmishtaa Seshamani, Shelby Suckow, Marc Takeno, Russel Torres, Wenjing Yin, J Alexander Bae, Manuel A Castro, Sven Dorkenwald, Akhilesh Halageri, Zhen Jia, Chris Jordan, Nico Kemnitz, Kisuk Lee, Kai Li, Ran Lu, Thomas Macrina, Eric Mitchell, Shanka Subhra Mondal, Shang Mu, Barak Nehoran, Sergiy Popovych, William Silversmith, Nicholas L Turner, Szi-Chieh Yu, William Wong, Jingpeng Wu, Brendan Celii, Luke Campagnola, Stephanie C Seeman, Tim Jarsky, Naixin Ren, Anton Arkhipov, Jacob Reimer, H Sebastian Seung, R Clay Reid, Forrest Collman, Nuno Maçarico Da Costa

Faculty, Staff and Students Publications

Despite significant progress in characterizing neocortical cell types, a complete understanding of the synaptic connections of individual excitatory cells remains elusive. This study investigates the connectivity of mouse visual cortex thick tufted layer 5 pyramidal cells, also known as extratelencephalic neurons (L5-ETns), using a 1 mm3 publicly available electron microscopy dataset. The analysis reveals that, in their immediate vicinity, L5-ETns primarily establish connections with a group of inhibitory cell types, which, in turn, specifically target the L5-ETns back. The most common excitatory targets of L5-ETns are layer 5 intertelencephalic neurons (L5-ITns) and layer 6 (L6) pyramidal cells, whereas synapses with …


Sugar Functionalized Collagen Material For Local Modulation Of Innate Immunity, Francesca Taraballi, Claudia Corbo, Julia Enterria-Rosales, John Otto Martinez, Silvia Minardi, Laura Pandolfi, Xing Wang, Ennio Tasciotti, Kavindra V Singh, Cesar A Arias, Bruna Corradetti Aug 2025

Sugar Functionalized Collagen Material For Local Modulation Of Innate Immunity, Francesca Taraballi, Claudia Corbo, Julia Enterria-Rosales, John Otto Martinez, Silvia Minardi, Laura Pandolfi, Xing Wang, Ennio Tasciotti, Kavindra V Singh, Cesar A Arias, Bruna Corradetti

Faculty, Staff and Students Publications

Small alterations during the early stages of the innate immune response to an implant can drive large changes in adaptive immunity. Biomaterials for regenerative purposes can be engineered to modulate this immune response in beneficial ways. This study presents an innovative patch designed and functionalized to target the innate immunity at the implant site. Mannose moieties are incorporated into collagen patches, resulting in a technology called Local Immunotuning Patch (LIP), designed to directly interact with antigen presenting cells through their mannose receptor. In vitro, LIP shows anti-inflammatory effects on bone marrow-derived macrophages and inhibitory properties even on methicillin-resistant bacterial strains. …


Semaphorin 3e-Plexin-D1 Pathway Downstream Of The Luteinizing Hormone Surge Regulates Ovulation, Granulosa Cell Luteinization, And Ovarian Angiogenesis In Mice, Hanxue Zhang, Jimmy Dhillon, Paul D Soloway, Bo Shui, Seoyeon Lee, Jennifer K Grenier, Paul R Munn, M Cecilia Ljungberg, Rebecca B Williams, Rainer B Lanz, Yu-Hsiang Liao, Yi A Ren Aug 2025

Semaphorin 3e-Plexin-D1 Pathway Downstream Of The Luteinizing Hormone Surge Regulates Ovulation, Granulosa Cell Luteinization, And Ovarian Angiogenesis In Mice, Hanxue Zhang, Jimmy Dhillon, Paul D Soloway, Bo Shui, Seoyeon Lee, Jennifer K Grenier, Paul R Munn, M Cecilia Ljungberg, Rebecca B Williams, Rainer B Lanz, Yu-Hsiang Liao, Yi A Ren

Faculty, Staff and Students Publications

Ovulation is induced by the luteinizing hormone (LH) surge and accompanied by granulosa cell luteinization and ovarian angiogenesis. Semaphorin 3E (Sema3E)-Plexin-D1 pathway regulates angiogenesis in other tissues, but its role in the ovary is unknown. Evidence indicates that Sema3E-Plexin-D1 pathway plays an important role in the mouse ovary. The expression of Sema3E and its receptor, Plexin-D1, is dynamically regulated in the mouse ovary downstream of the LH surge. This regulation requires the modulation of chromatin accessibility by CCAAT/enhancer-binding proteins α and β. Intraovarian injection of recombinant Sema3E results in reduced ovulation, impaired corpus luteum formation, and aberrant ovarian angiogenesis. These …


Contribution Of Pannexin Channels To Afterimage Signals In The Amphibian Retina, Yufei Liu, Nick Libian, Zheng Jiang, Wen Shen Aug 2025

Contribution Of Pannexin Channels To Afterimage Signals In The Amphibian Retina, Yufei Liu, Nick Libian, Zheng Jiang, Wen Shen

Faculty, Staff and Students Publications

Pannexin 1 (Panx1) forms large-pore, single-membrane channels that connect the intracellular and extracellular environments, permitting the passage of ions and small molecules such as ATP. Panx1 channels are involved in diverse signaling pathways that contribute to various physiological processes, including sensory processing, although their precise mechanisms of action remain incompletely understood. This study reveals a Panx1-mediated mechanism regulating visual signal processing in the amphibian retina. Using immunolabeling and confocal imaging, we localized Panx1 channels in the cone-dominated On-bipolar cells, specifically at both somas and axon terminals. Whole-cell patch-clamp recordings showed that these channels have high permeability to Cl⁻ ions, which …


Active Dna Demethylation Upstream Of Rod-Photoreceptor Fate Determination Is Required For Retinal Development, Ismael Hernández-Núñez, Alaina Urman, Xiaodong Zhang, William Jacobs, Christy Hoffmann, Ellen G. Harding, Shiming Chen, Meelad M. Dawlaty, Philip A. Ruzycki, John R. Edwards, Brian S. Clark Aug 2025

Active Dna Demethylation Upstream Of Rod-Photoreceptor Fate Determination Is Required For Retinal Development, Ismael Hernández-Núñez, Alaina Urman, Xiaodong Zhang, William Jacobs, Christy Hoffmann, Ellen G. Harding, Shiming Chen, Meelad M. Dawlaty, Philip A. Ruzycki, John R. Edwards, Brian S. Clark

2020-Current year OA Pubs

Retinal cell fate specification from multipotent retinal progenitors is governed by dynamic changes in chromatin structure and gene expression. Methylation at cytosines in DNA (5mC) is actively regulated for proper control of gene expression and chromatin architecture. Numerous genes display active DNA demethylation across retinal development; a process that requires oxidation of 5mC to 5-hydroxymethylcytosine (5hmC) and is controlled by the ten-eleven translocation (TET) methylcytosine dioxygenase enzymes. Using an allelic series of conditional TET enzyme mutants in mice, we determine that DNA demethylation is required upstream of NRL and NR2E3 expression for the establishment of rod-photoreceptor fate. Using histological, behavioral, …


The Importance Of Imperfect Pre-Clinical Models In Adolescent Idiopathic Scoliosis, Diane S Sepich, Ryan S Gray, Nadav Ahituv, Christina A Gurnett, Jonathan J Rios, Lila Solnica-Krezel, Carol A Wise Aug 2025

The Importance Of Imperfect Pre-Clinical Models In Adolescent Idiopathic Scoliosis, Diane S Sepich, Ryan S Gray, Nadav Ahituv, Christina A Gurnett, Jonathan J Rios, Lila Solnica-Krezel, Carol A Wise

2020-Current year OA Pubs

Adolescent idiopathic scoliosis (AIS) is a twisting spinal deformity that occurs in otherwise healthy children at the time of rapid pre-pubescent growth. AIS affects ∼3% of children worldwide and is the most common musculoskeletal diagnosis in pediatric populations, posing a significant physiological, psychosocial and financial burden to patients. Genetic predisposition is a clear and major contributor to AIS, and insights from genomic discoveries are inspiring translational studies ultimately aimed at developing novel diagnostics and therapies. Pre-clinical animal models of AIS are now essential to validate human genetic findings, understand gene-by-environment interactions, and speed etiologic and therapeutic discovery. In this Perspective, …


Inter-Organ Communication Is A Critical Machinery To Regulate Metabolism And Aging, Kyohei Tokizane, Shin-Ichiro Imai Aug 2025

Inter-Organ Communication Is A Critical Machinery To Regulate Metabolism And Aging, Kyohei Tokizane, Shin-Ichiro Imai

2020-Current year OA Pubs

Inter-organ communication (IOC) is a complex mechanism involved in maintaining metabolic homeostasis and healthy aging. Dysregulation of distinct forms of IOC is linked to metabolic derangements and age-related pathologies, implicating these processes as a potential target for therapeutic intervention to promote healthy aging. In this review, we delve into IOC mediated by hormonal signaling, circulating factors, organelle signaling, and neuronal networks and examine their roles in regulating metabolism and aging. Given the role of the hypothalamus as a high-order control center for aging and longevity, we particularly emphasize the importance of its communication with peripheral organs and pave the way …


Autophagy Regulates Müller Glial Cell Inflammatory Activation, Teresa A Doggett, Zhenqing Zhou, Sohini Rebba, Jacqueline Unsinger, Philip A Ruzycki, Thomas A Ferguson Aug 2025

Autophagy Regulates Müller Glial Cell Inflammatory Activation, Teresa A Doggett, Zhenqing Zhou, Sohini Rebba, Jacqueline Unsinger, Philip A Ruzycki, Thomas A Ferguson

2020-Current year OA Pubs

PURPOSE: We tested whether Müller cells utilize autophagy to support immune privilege in the eye.

METHODS: The essential autophagy gene Atg5 was deleted in retinal Müller cells. Inflammation was induced by intravitreal injection of lipopolysaccharide (LPS) that was monitored by hematoxylin and eosin (H&E) staining, immunofluorescent confocal microscopy, and flow cytometry. Single-cell RNA sequencing was performed on retinal Müller cells isolated from control and Atg5-deficient mice. Markers of Müller cell gliosis were assessed, and cytokine production in the eye was measured. Small interfering RNA knockdown techniques were used to examine LPS-induced inflammatory pathways in culture.

RESULTS: We observed increased and …


Low-Dose Metformin Requires Brain Rap1 For Its Antidiabetic Action, Hsiao-Yun Lin, Weisheng Lu, Yanlin He, Yukiko Fu, Kentaro Kaneko, Peimeng Huang, Ana B De La Puente-Gomez, Chunmei Wang, Yongjie Yang, Feng Li, Yong Xu, Makoto Fukuda Aug 2025

Low-Dose Metformin Requires Brain Rap1 For Its Antidiabetic Action, Hsiao-Yun Lin, Weisheng Lu, Yanlin He, Yukiko Fu, Kentaro Kaneko, Peimeng Huang, Ana B De La Puente-Gomez, Chunmei Wang, Yongjie Yang, Feng Li, Yong Xu, Makoto Fukuda

Faculty, Staff and Students Publications

Metformin is the most commonly prescribed antidiabetes drug, yet its precise mechanism of action remains controversial. Previous studies have suggested that metformin acts peripherally by reducing hepatic glucose output and altering gut functions. Here, we report a neural mechanism via the small guanosine triphosphatase Ras-related protein 1 (Rap1). Mice with forebrain-specific Rap1 knockout exhibited resistance to the antidiabetic effects of low-dose metformin while remaining sensitive to other antidiabetic agents. Centrally administered metformin inhibited brain Rap1 and reduced hyperglycemia. Conversely, forced activation of brain Rap1 increased glycemia and abolished the glycemic effect of metformin. Metformin activated a specific subset of neurons …


N-Acetylaspartate From Fat Cells Regulates Postprandial Body Temperature, Jessica B Felix, Pradip K Saha, Evelyn L De Groot, Lin Tan, Robert Sharp, Elizabeth S Anaya, Yafang Li, Holly Quang, Nooshin Saidi, Layla Abushamat, Christie M Ballantyne, Christopher I Amos, Philip L Lorenzi, Samuel Klein, Xia Gao, Sean M Hartig Aug 2025

N-Acetylaspartate From Fat Cells Regulates Postprandial Body Temperature, Jessica B Felix, Pradip K Saha, Evelyn L De Groot, Lin Tan, Robert Sharp, Elizabeth S Anaya, Yafang Li, Holly Quang, Nooshin Saidi, Layla Abushamat, Christie M Ballantyne, Christopher I Amos, Philip L Lorenzi, Samuel Klein, Xia Gao, Sean M Hartig

Faculty, Staff and Students Publications

N-acetylaspartate (NAA), the brain’s second most abundant metabolite, provides essential substrates for myelination through its hydrolysis1. However, the physiological roles of NAA in other tissues remain unknown. Here, we show that aspartoacylase (ASPA) expression in white adipose tissue (WAT) governs blood NAA levels for postprandial body temperature regulation. Genetic ablation of Aspa in mice resulted in systemically elevated NAA levels, and the ensuing accumulation in WAT stimulated pyrimidine production. Stable isotope tracing confirmed higher incorporation of glucose-derived carbon into pyrimidine metabolites in Aspa knockout cells. Additionally, serum NAA levels positively correlated with the abundance of the pyrimidine …


Crispr-Cas9 Engineering Of Human T Regulatory Cells – Design And Optimization Of A Manufacturing Process, Ortal Shimon, Adam M Dean, Shoshana Cohen, Aiden L Moser, Clifford C Dacso, Yosi Gilad, David M Lonard, Bert W O'Malley Aug 2025

Crispr-Cas9 Engineering Of Human T Regulatory Cells – Design And Optimization Of A Manufacturing Process, Ortal Shimon, Adam M Dean, Shoshana Cohen, Aiden L Moser, Clifford C Dacso, Yosi Gilad, David M Lonard, Bert W O'Malley

Faculty, Staff and Students Publications

Regulatory T cells (Tregs) are a subset of CD4 + T cells that comprise 5-10 % of the total CD4 + T cell population. Tregs, which are critically important for the maintenance of immune tolerance and immune homeostasis, are distinguished from other subtypes of CD4 + T cells by the expression of the transcription factor FOXP3. Because of the centrality to immunoregulation, Tregs have gained increasing attention as promising targets for clinical applications in autoimmune diseases, transplant rejection and graft-versus-host disease (GvHD). However, the essential role of Tregs in the complex network of the immune system implies their targeting as …


Formation Control Between Leader And Migratory Follower Tissues Allows Coordinated Growth, Toru Kawanishi, Takamichi Sushida, Tony Y-C Tsai, Hiroyuki Takeda, Sean G Megason Aug 2025

Formation Control Between Leader And Migratory Follower Tissues Allows Coordinated Growth, Toru Kawanishi, Takamichi Sushida, Tony Y-C Tsai, Hiroyuki Takeda, Sean G Megason

2020-Current year OA Pubs

Coordinated growth of multiple tissues is fundamental to shaping our body, but the underlying mechanisms remain underexplored. In zebrafish embryos, midline tissues composed of the notochord, floorplate, and hypochord elongate synchronously with their lengths aligned. We show that floorplate and hypochord cells collectively migrate posteriorly along the nascent notochord extracellular matrix as it extends posteriorly, maintaining the tripartite configuration. Fibroblast growth factor-mediated migration in a spatially graded manner causes cell stretching, which triggers Yap-dependent proliferation and controls floorplate and hypochord growth. Supported by mathematical modeling, we further suggest that their growth is fine-tuned by mechanical tethering to the notochord via …


Left Atrial And Ventricular Remodeling In Chronic Mitral Regurgitation, Jack J Yi, Martha Mcgilvray, Tari-Ann Yates, Samantha Procasky, Jakraphan Yu, Caleb Berberet, Nicholas Banull, Jie Zheng, Jonathan K Zoller, Matthew R Schill, Christian Zemlin, Ralph J Damiano Jr Aug 2025

Left Atrial And Ventricular Remodeling In Chronic Mitral Regurgitation, Jack J Yi, Martha Mcgilvray, Tari-Ann Yates, Samantha Procasky, Jakraphan Yu, Caleb Berberet, Nicholas Banull, Jie Zheng, Jonathan K Zoller, Matthew R Schill, Christian Zemlin, Ralph J Damiano Jr

2020-Current year OA Pubs

OBJECTIVE: This study describes the structural and mechanical changes in the left atrium and left ventricle in a canine model of chronic mitral regurgitation in an attempt to identify markers linked to the onset of atrial tachyarrhythmias or left ventricle dysfunction.

METHODS: Animals underwent baseline and terminal echocardiography and cardiac magnetic resonance imaging. Under echocardiographic guidance, chordae tendinae were avulsed until there was severe mitral regurgitation, defined by regurgitant jet area to left atrium area more than 70%. At terminal surgery, rapid atrial pacing was performed to test inducibility of atrial tachyarrhythmias.

RESULTS: Twelve canines underwent mitral valve chordae avulsion …


Ctnna3 Deficiency Promotes Heart Regeneration By Enhancing Cardiomyocyte Proliferation In Neonatal Mice, Sha Zou, Wuhou Dai, Wufan Tao, Jifen Li, Zeyi Cheng, Hongyan Wang Jul 2025

Ctnna3 Deficiency Promotes Heart Regeneration By Enhancing Cardiomyocyte Proliferation In Neonatal Mice, Sha Zou, Wuhou Dai, Wufan Tao, Jifen Li, Zeyi Cheng, Hongyan Wang

Department of Medicine Faculty Papers

Background: Heart regeneration requires renewal of lost cardiomyocytes. However, the mammalian heart loses its proliferative capacity soon after birth, and the molecular signaling underlying the loss of cardiac proliferation postnatally is not fully understood.

Purpose: This study aimed to investigate the role of Catenin alpha 3 (Ctnna3), coding for alpha T catenin (αT-catenin) protein in regulating cardiomyocyte proliferation and heart regeneration during the neonatal period.

Methods: Here we report that ablation of Ctnna3 and highly expressed in hearts, accelerated heart regeneration following heart apex resection in neonatal mice.

Results: Our results show that Ctnna3 deficiency enhances cardiomyocyte proliferation …


Single-Nuclei Multiomics Analysis Identifies Abnormal Cardiomyocytes In A Murine Model Of Cardiac Development., Riley Leonard, Yi Zhao, Steven Eliason, Kathy Zimmerman, Ariana Batz, Cathy J. Hatcher, Robert M Weiss, Mason Sweat, Xiao Li, Brad A Amendt Jul 2025

Single-Nuclei Multiomics Analysis Identifies Abnormal Cardiomyocytes In A Murine Model Of Cardiac Development., Riley Leonard, Yi Zhao, Steven Eliason, Kathy Zimmerman, Ariana Batz, Cathy J. Hatcher, Robert M Weiss, Mason Sweat, Xiao Li, Brad A Amendt

PCOM Scholarly Works

Transcription factors such as Tbx5, Gata4, Mef2c and Pitx2 are required during cardiac development, and in adult cardiac homeostasis. We demonstrate that the gene dosage and modulation of these factors are mediated in vivo by the miR-200 family. Inhibition of a single miR-200 family member within the cluster results in defects of the left ventricle and cardiomyocyte maturation during development. Inhibition of the entire miR-200 family results in a ventricular septal defect and embryonic lethality by embryonic day (E)16.5. Inhibition of each miR-200 family has distinct heart phenotypes in cell specific differentiation and maturation. snRNA-sequencing reveals an immature cardiomyocyte cell …


Elevated Nr2f1 Underlies The Persistence Of Invasive Disease After Treatment Of Braf-Mutant Melanoma, Manoela Tiago, Timothy J. Purwin, Casey D. Stefanski, Renaira Oliveira Da Silva, Mitchell E. Fane, Yash Chhabra, Jelan I. Haj, Jessica L. F. Teh, Rama Kadamb, Weijia Cai, Sheera Rosenbaum, Vivian Chua, Nir Hacohen, Michael A. Davies, Jessie Villanueva, Inna Chervoneva, Ashani T. Weeraratna, Dan A. Erkes, Claudia Capparelli, Julio A. Aguirre-Ghiso, Andrew E. Aplin Jul 2025

Elevated Nr2f1 Underlies The Persistence Of Invasive Disease After Treatment Of Braf-Mutant Melanoma, Manoela Tiago, Timothy J. Purwin, Casey D. Stefanski, Renaira Oliveira Da Silva, Mitchell E. Fane, Yash Chhabra, Jelan I. Haj, Jessica L. F. Teh, Rama Kadamb, Weijia Cai, Sheera Rosenbaum, Vivian Chua, Nir Hacohen, Michael A. Davies, Jessie Villanueva, Inna Chervoneva, Ashani T. Weeraratna, Dan A. Erkes, Claudia Capparelli, Julio A. Aguirre-Ghiso, Andrew E. Aplin

Department of Pharmacology, Physiology, and Cancer Biology Faculty Papers

Despite the success of targeted inhibitors in cutaneous melanoma, therapeutic responses are limited by the aged tumor microenvironment and drug-tolerant residual cells. Given the similarities between drug tolerance and cellular dormancy, we studied the dormancy marker, nuclear receptor subfamily 2 group F member 1 (NR2F1), in response to BRAF-V600E inhibitors (BRAFi) plus MEK inhibitors (MEKi) in BRAF-mutant melanoma models. Transcriptomic analysis of melanoma patient samples treated with BRAFi + MEKi showed increased NR2F1. NR2F1 was highly expressed in the drug-tolerant invasive cell state of minimal residual disease in patient-derived and mouse-derived xenografts on BRAFi + MEKi. NR2F1 over-expression was sufficient …


Sleep Drive, Not Total Sleep Amount, Increases Seizure Risk, Vishnu Anand Cuddapah, Cynthia T Hsu, Fernanda Valle Sirias, Yongjun Li, Hrishit M Shah, Christopher Saul, Samantha Killiany, Camilo Guevara, Joy Shon, Zhifeng Yue, Gabrielle L Gionet, Mary E Putt, Amita Sehgal Jul 2025

Sleep Drive, Not Total Sleep Amount, Increases Seizure Risk, Vishnu Anand Cuddapah, Cynthia T Hsu, Fernanda Valle Sirias, Yongjun Li, Hrishit M Shah, Christopher Saul, Samantha Killiany, Camilo Guevara, Joy Shon, Zhifeng Yue, Gabrielle L Gionet, Mary E Putt, Amita Sehgal

Duncan NRI Faculty and Staff Publications

Sleep loss has been associated with increased seizure risk since antiquity. Using automated video detection of spontaneous seizures in Drosophila epilepsy models, we show that seizures worsen only when sleep restriction raises homeostatic "sleep drive," not simply when total sleep amount falls. This is supported by the paradoxical finding that acute activation of sleep-promoting circuits worsens seizures, because it increases sleep drive without changing sleep amount. Sleep-promoting circuits become hyperactive after sleep loss and are associated with increased whole-brain activity. During sleep restriction, optogenetic inhibition of sleep-promoting circuits to reduce sleep drive protects against seizures. Downregulation of the 5HT1A serotonin …


Cd45 And Cd148 Are Critically Involved In Neutrophil Recruitment And Function During Inflammatory Arthritis In Mice, Jan-Niklas Heming, Andreas Margraf, Karolina Najder, Giulia Germena, Mathis Richter, Anika Cappenberg, Katharina Henke, Bernadette Bardel, Lena Schemmelmann, Marina Oguama, Pia Lindental, Wida Amini, Jacqueline Sobocik, Georg Schett, Gerhard Krönke, Helena Block, Jan Rossaint, Oliver Soehnlein, Alexander Zarbock Jul 2025

Cd45 And Cd148 Are Critically Involved In Neutrophil Recruitment And Function During Inflammatory Arthritis In Mice, Jan-Niklas Heming, Andreas Margraf, Karolina Najder, Giulia Germena, Mathis Richter, Anika Cappenberg, Katharina Henke, Bernadette Bardel, Lena Schemmelmann, Marina Oguama, Pia Lindental, Wida Amini, Jacqueline Sobocik, Georg Schett, Gerhard Krönke, Helena Block, Jan Rossaint, Oliver Soehnlein, Alexander Zarbock

Faculty, Staff and Student Publications

Neutrophils play a key role in autoimmune diseases like rheumatoid arthritis, contributing to tissue damage through rapid recruitment and activation. In this study, we investigated the regulatory properties of two receptor-like tyrosine phosphatases (RPTPs), CD45 and CD148, in inflammatory arthritis. Using an in vivo mouse model of K/BxN serum transfer-induced arthritis, we found that CD45 and CD148 feature distinct regulatory properties during inflammatory arthritis. CD45 is required for neutrophil infiltration, cytokine release, and reactive oxygen species production, whereas CD148 deficiency leads to a delayed onset of arthritis but unaltered overall neutrophil infiltration and reduced ROS production. Furthermore, we could demonstrate …


Glucose Metabolism And Its Direct Action In Cancer And Immune Regulation: Opportunities And Challenges For Metabolic Targeting, Bo-Syong Pan, Che-Chia Hsu, Hsin-En Wu, Yuan-Ru Chen, Xiaobo Zhou, Shu-Chi Wang, Chia-Yang Li, Hui-Kuan Lin Jul 2025

Glucose Metabolism And Its Direct Action In Cancer And Immune Regulation: Opportunities And Challenges For Metabolic Targeting, Bo-Syong Pan, Che-Chia Hsu, Hsin-En Wu, Yuan-Ru Chen, Xiaobo Zhou, Shu-Chi Wang, Chia-Yang Li, Hui-Kuan Lin

Faculty, Staff and Student Publications

Glucose metabolism is a pivotal hub for cellular energy production and the generation of building blocks that support cell growth, survival, and differentiation. Cancer cells undergo metabolic reprogramming to sustain rapid proliferation, survive in harsh microenvironments, and resist therapies. Beyond producing energy and building blocks to meet cancer cell demands, glucose metabolism generates numerous metabolites that serve as signaling molecules, orchestrating signaling pathways and epigenetic modifications that regulate cancer cell phenotypes and immunity. In this review, we discuss how glucose, through its metabolism and direct actions, influences diverse biological processes driving cancer progression and therapeutic resistance, while also exploring metabolic …


Non-Mutated Human Tau Stimulates Alzheimer’S Disease-Relevant Neurodegeneration In A Microglia-Dependent Manner, Ethan R Roy, Qiang Wang, Kexin Huang, Sanming Li, Yuanyuan Fan, Estrella Escobar, Constance L Atkins, Shuning Huang, Juan J Herrera, Wenbo Li, Clare Pridans, Xiaobo Zhou, Cynthia Ju, Wei Cao Jul 2025

Non-Mutated Human Tau Stimulates Alzheimer’S Disease-Relevant Neurodegeneration In A Microglia-Dependent Manner, Ethan R Roy, Qiang Wang, Kexin Huang, Sanming Li, Yuanyuan Fan, Estrella Escobar, Constance L Atkins, Shuning Huang, Juan J Herrera, Wenbo Li, Clare Pridans, Xiaobo Zhou, Cynthia Ju, Wei Cao

Faculty, Staff and Student Publications

The accumulation of abnormal, non-mutated tau protein is a key pathological hallmark of Alzheimer's disease (AD). Despite its strong association with disease progression, the mechanisms by which tau drives neurodegeneration in the brain remain poorly understood. Here, we selectively expressed non-mutated or mutated human microtubule-associated protein tau (hMAPT) in neurons across the mouse brain and observed neurodegeneration in the hippocampus, especially associated with non-mutated human tau. Single-nuclei RNA sequencing confirmed a selective loss of hippocampal excitatory neurons by the wild-type tau and revealed the upregulation of neurodegeneration-related pathways in the affected populations. The accumulation of phosphorylated tau was accompanied by …


Cd206+Il-4rα+ Macrophages Are Drivers Of Adverse Cardiac Remodeling In Ischemic Cardiomyopathy, Qiongxin Wang, Mohamed Ameen Ismahil, Yujie Zhu, Gregg Rokosh, Tariq Hamid, Guihua Zhou, Steven M. Pogwizd, Sumanth D. Prabhu Jul 2025

Cd206+Il-4rα+ Macrophages Are Drivers Of Adverse Cardiac Remodeling In Ischemic Cardiomyopathy, Qiongxin Wang, Mohamed Ameen Ismahil, Yujie Zhu, Gregg Rokosh, Tariq Hamid, Guihua Zhou, Steven M. Pogwizd, Sumanth D. Prabhu

2020-Current year OA Pubs

BACKGROUND: The role of cardiac CD (cluster of differentiation) 206

METHODS: Adult C57BL/6 mice underwent nonreperfused myocardial infarction to induce HF. Macrophages in murine and human hearts were profiled using flow cytometry and immunostaining. In vivo myeloid-specific IL-4Rα deletion and intramyocardial macrophage adoptive transfer defined the functional effects of macrophages polarized by IL-4 (M[IL-4]). Antisense oligonucleotides were used for in vivo IL-4Rα gene silencing in mice.

RESULTS: CD206

CONCLUSIONS: Cardiac CD206