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Full-Text Articles in Medical Sciences

Cardiac Hdac3 Disruption Contributes To Hdac Inhibitor-Induced Qt Prolongation, Jiao Lu, Christopher Ward, Sichong Qian, Lilei Zhang, Jiang Chang, Zheng Sun May 2026

Cardiac Hdac3 Disruption Contributes To Hdac Inhibitor-Induced Qt Prolongation, Jiao Lu, Christopher Ward, Sichong Qian, Lilei Zhang, Jiang Chang, Zheng Sun

Faculty, Staff and Students Publications

Histone deacetylase (HDAC) inhibitors are approved for cancer treatment and are being investigated for a wide range of other diseases. Despite their therapeutic promise, clinical studies have reported cardiac side effects, particularly electrocardiogram (EKG) abnormalities, with QT interval prolongation being one of the most consistently reported findings. The mechanisms underlying these cardiac effects remain unclear. In this study, we investigated the role of HDAC3 in cardiac electrophysiology. We found that postnatal depletion of cardiac HDAC3 in mice caused QT interval prolongation, recapitulating the EKG abnormalities reported with HDAC inhibitor use. Adult-onset inducible depletion of cardiac HDAC3 induced additional EKG abnormalities, …


Selective And Differential Roles Of Pvhcrh Neurotransmitters In Diet-Induced Obesity In Mice, Zhiying Jiang, Yuhan Cao, Michelle He, Cunjin Su, Runzhou Yang, Maojie Yang, Jing Cai, Hongli Li, Yuanzhong Xu, Shi-Bin Li, Hiroshi Yamaguchi, Luis De Lecea, Benjamin R Arenkiel, Qingchun Tong May 2026

Selective And Differential Roles Of Pvhcrh Neurotransmitters In Diet-Induced Obesity In Mice, Zhiying Jiang, Yuhan Cao, Michelle He, Cunjin Su, Runzhou Yang, Maojie Yang, Jing Cai, Hongli Li, Yuanzhong Xu, Shi-Bin Li, Hiroshi Yamaguchi, Luis De Lecea, Benjamin R Arenkiel, Qingchun Tong

The Brown Foundation: Institute of Molecular Medicine

Stress and diet are known to synergistically promote risks of obesity but the underlying neural basis remains elusive. Corticotropin-releasing hormone neurons in the paraventricular hypothalamus (PVHCRH) are stress responsive and release both CRH and glutamate. Here we generated a mouse model with gain or loss of release in CRH or glutamate from PVHCRH neurons. While these models showed no changes in body weight when fed chow, they exhibited contrasting effects when fed high-fat high-caloric diets (HFD). Whereas disrupting glutamate release from PVHCRH neurons led to diet-induced obesity (DIO), that of CRH caused no impact. Conversely, augmented CRH release led to …


Water-Soluble Fullerene Derivatives Mitigate Cranial Radiation-Induced Neuroinflammation And Cognitive Dysfunction, Naren Gundapaneni, Iona Hill, Lydia W T Cheung, Khadijeh Koushki, Alyssa Fausnaught, Phuoc Minh Quan Mai, Arjun Vasan, Prapannajeet Biswal, Ashutosh Tripathi, Anilkumar Pillai, Vijayasree V Giridharan, Tatiana Barichello, Yuri Mackeyev, Sunil Krishnan May 2026

Water-Soluble Fullerene Derivatives Mitigate Cranial Radiation-Induced Neuroinflammation And Cognitive Dysfunction, Naren Gundapaneni, Iona Hill, Lydia W T Cheung, Khadijeh Koushki, Alyssa Fausnaught, Phuoc Minh Quan Mai, Arjun Vasan, Prapannajeet Biswal, Ashutosh Tripathi, Anilkumar Pillai, Vijayasree V Giridharan, Tatiana Barichello, Yuri Mackeyev, Sunil Krishnan

Faculty, Staff and Student Publications

Radiotherapy is widely used to treat malignant and benign brain tumors. A major constraint, however, is the low tolerance of normal brain tissue to radiation. Cranial irradiation-induced injury manifests as inflammatory responses and neurodegeneration, which jointly contribute to progressive cognitive decline. These complications can restrict the delivery of optimal therapeutic doses, cause persistent neurological symptoms, and ultimately compromise quality of life. Thus, neuroprotective agents have emerged as a strategy to safeguard normal tissues from radiation-induced neurotoxicity. This study investigated the efficacy of a highly soluble [60]fullerene (C60) derivative, C60-ser, a carbon-based nanomaterial, to mitigate radiation-induced brain injury. Oral administration of …


Progressive Cardiac Phenotypes And Reduced Reversibility From Long-Term Cugexp Rna Expression In A Dm1 Mouse Model, Rong-Chi Hu, Mohammadreza Tabary, Xander Ht Wehrens, Thomas A Cooper May 2026

Progressive Cardiac Phenotypes And Reduced Reversibility From Long-Term Cugexp Rna Expression In A Dm1 Mouse Model, Rong-Chi Hu, Mohammadreza Tabary, Xander Ht Wehrens, Thomas A Cooper

Faculty, Staff and Students Publications

Myotonic dystrophy type 1 (DM1) is caused by an expanded CTG repeat in the DMPK gene, resulting in mutant transcripts that form expanded CUG (CUGexp) RNA foci and sequester muscleblind-like (MBNL) RNA-binding proteins. DM1 is multisystemic, with progressive worsening of disease manifestations in affected tissues. Disease progression is attributed to somatic expansion of the CTG repeats with age, resulting in production of CUGexp RNA with enhanced intrinsic toxicity due to increased MBNL sequestration. To determine the degree to which cardiac disease progression can occur independently of repeat expansion, we used a transgenic DM1 mouse model with inducible heart-specific expression of …


Purine Metabolic Adaptation Protects The Endothelium From Disturbed Flow-Induced Dna Damage And Atherosclerosis, Qian Ma, Yongfeng Cai, Zhidan Zhang, Dingwei Zhao, Yuan Zhao, Peishan Xu, Tammy Lu, Wendy Zhang, Qiuhua Yang, Yaqi Zhou, Varadarajan Sudhahar, Tohru Fukai, Hanjoong Jo, Yiming Xu, Yuqing Huo May 2026

Purine Metabolic Adaptation Protects The Endothelium From Disturbed Flow-Induced Dna Damage And Atherosclerosis, Qian Ma, Yongfeng Cai, Zhidan Zhang, Dingwei Zhao, Yuan Zhao, Peishan Xu, Tammy Lu, Wendy Zhang, Qiuhua Yang, Yaqi Zhou, Varadarajan Sudhahar, Tohru Fukai, Hanjoong Jo, Yiming Xu, Yuqing Huo

Faculty, Staff and Students Publications

Despite effective lipid-lowering therapies, atherosclerosis continues to be a leading cause of death, with considerable residual cardiovascular risk. Atherosclerotic lesions develop preferentially at arterial regions exposed to disturbed flow (d-flow), which induces genomic stress, endothelial injury, and barrier dysfunction. Hemodynamic forces are known to reprogram endothelial metabolism, but the role of de novo purine synthesis (DNPS), which supplies nucleotides for genome maintenance and whose terminal steps are catalyzed by the bifunctional enzyme ATIC, remains undefined in atherosclerosis. By integrating bulk and single-cell multiomics with in vitro flow systems and in vivo models, we show that d-flow upregulates DNPS and ATIC …


Plasma Constituents Promote Endothelial Thromboinflammatory Dysfunction After Hemorrhagic Shock, Kelly E Sanders, Marissa D Pokharel, Baron K Osborn, Yao-Wei Wang, Charles E Wade, Lucy Z Kornblith, Mitchell J Cohen, Jessica C Cardenas May 2026

Plasma Constituents Promote Endothelial Thromboinflammatory Dysfunction After Hemorrhagic Shock, Kelly E Sanders, Marissa D Pokharel, Baron K Osborn, Yao-Wei Wang, Charles E Wade, Lucy Z Kornblith, Mitchell J Cohen, Jessica C Cardenas

Faculty, Staff and Student Publications

Background: Hemorrhagic shock (HS) following traumatic injury is hallmarked by innate immune activation, hypercoagulability, and thromboinflammatory complications. To date, the direct link between HS, injury severity, and endothelial cell (EC) contributions to thromboinflammation remains poorly understood. The goals of this study were to determine the impact of injury severity and HS on endothelial-mediated thromboinflammation and examine whether these changes increase the propensity for thrombosis.

Methods: Plasma from 89 male trauma patients, stratified by HS and injury severity, and 10 healthy subjects were assessed for inflammatory mediators by BioPlex. Human lung microvascular endothelial cells were exposed to patient plasma for 4 …


Yap Induces A Prorenewal Metabolic State In Cardiomyocytes, Lin Liu, Jeffrey D Steimle, Chang-Ru Tsai, Fansen Meng, Yuka Morikawa, Yi Zhao, Sandra Carmichael, Xiao Li, James F Martin Apr 2026

Yap Induces A Prorenewal Metabolic State In Cardiomyocytes, Lin Liu, Jeffrey D Steimle, Chang-Ru Tsai, Fansen Meng, Yuka Morikawa, Yi Zhao, Sandra Carmichael, Xiao Li, James F Martin

Faculty, Staff and Students Publications

BACKGROUND: Cardiomyocytes, as highly specialized and differentiated somatic cells, possess a limited capacity for renewal. Neonatal rodents possess the ability to regenerate cardiomyocytes after injury; however, this regenerative capacity declines rapidly with cardiomyocyte maturation, suggesting an inhibitory network between cellular maturation and cardiomyocyte proliferation. Maturing cardiomyocytes undergo a metabolic shift from predominantly glycolysis in the neonatal state to increased fatty acid oxidation in the mature state, which poses a barrier to cardiomyocyte proliferation and cardiac regenerative repair. YAP, a transcriptional cofactor regulated by the Hippo signaling pathway, promotes cardiac regenerative repair. We investigated the role of YAP in mediating metabolic …


Sex-Specific Autosomal Susceptibility Loci In Systemic Sclerosis: A Genome-Wide Association Study, Inmaculada Rodriguez-Martin, Martin Kerick, Carlos Rangel-Peláez, Carlos Rosa-Baez, Gonzalo Borrego-Yaniz, Lourdes Ortiz-Fernández, Alfredo Guillen-Del-Castillo, Carmen P Simeón-Aznar, José Luis Callejas, Oliver Distler, Susanna M Proudman, Mandana Nikpour, Nicolas Hunzelmann, Jeska K De Vries-Bouwstra, Ariane L Herrick, Yannick Allanore, Marta E Alarcón-Riquelme, Lorenzo Beretta, Shervin Assassi, Christopher P Denton, Maureen D Mayes, Javier Martin, Marialbert Acosta-Herrera Apr 2026

Sex-Specific Autosomal Susceptibility Loci In Systemic Sclerosis: A Genome-Wide Association Study, Inmaculada Rodriguez-Martin, Martin Kerick, Carlos Rangel-Peláez, Carlos Rosa-Baez, Gonzalo Borrego-Yaniz, Lourdes Ortiz-Fernández, Alfredo Guillen-Del-Castillo, Carmen P Simeón-Aznar, José Luis Callejas, Oliver Distler, Susanna M Proudman, Mandana Nikpour, Nicolas Hunzelmann, Jeska K De Vries-Bouwstra, Ariane L Herrick, Yannick Allanore, Marta E Alarcón-Riquelme, Lorenzo Beretta, Shervin Assassi, Christopher P Denton, Maureen D Mayes, Javier Martin, Marialbert Acosta-Herrera

Faculty, Staff and Student Publications

Background: Systemic sclerosis is an immune-mediated inflammatory disease with marked sex differences in prevalence and severity. Although genome-wide association studies (GWAS) have advanced the understanding of systemic sclerosis genetics, sex-aware approaches remain scarce. We aimed to address this gap by examining autosomal sex-specific genetic factors in systemic sclerosis.

Methods: Based on a chromosomal definition of sex, we conducted a sex-stratified autosomal meta-analysis of GWAS in systemic sclerosis. We retrieved patient-level and control data from a previous GWAS for systemic sclerosis and newly recruited participants from an international multicentre collaboration (data cutoff June 1, 2024). Adult patients (aged ≥18 years) were …


Inflammation- And Resolution-Programmed Myeloid Circuits Govern Therapeutic Resistance In Epithelial And Mesenchymal Triple-Negative Breast Cancer, Liqun Yu, Charlotte Rivas, Fengshuo Liu, Yichao Shen, Ling Wu, Zhan Xu, Yunfeng Ding, Xiaoxin Hao, Weijie Zhang, Hilda L Chan, Jun Liu, Bo Wei, Yang Gao, Luis Becerra-Dominguez, Yi-Hsuan Wu, Siyue Wang, Tobie D Lee, Xuan Li, Xiang Chen, David G Edwards, Xiang H-F Zhang Apr 2026

Inflammation- And Resolution-Programmed Myeloid Circuits Govern Therapeutic Resistance In Epithelial And Mesenchymal Triple-Negative Breast Cancer, Liqun Yu, Charlotte Rivas, Fengshuo Liu, Yichao Shen, Ling Wu, Zhan Xu, Yunfeng Ding, Xiaoxin Hao, Weijie Zhang, Hilda L Chan, Jun Liu, Bo Wei, Yang Gao, Luis Becerra-Dominguez, Yi-Hsuan Wu, Siyue Wang, Tobie D Lee, Xuan Li, Xiang Chen, David G Edwards, Xiang H-F Zhang

Faculty, Staff and Students Publications

Single-cell analysis of human triple-negative breast cancer revealed heterogeneous macrophage populations with opposing phenotypes - proinflammatory and proresolution of inflammation. Paradoxically, both subsets accumulated in therapy-refractory residual tumors but showed inverse correlations across patients, suggesting mutually exclusive resistance mechanisms. Inflammatory macrophages localized preferentially to epithelial-like tumors, whereas proresolution macrophages were enriched in mesenchymal-like tumors. Mouse models faithfully recapitulated these patterns. After chemoimmunotherapy, mesenchymal-like tumors expanded proresolution macrophages through phagocytosis/efferocytosis, ω-3 fatty acid uptake, and resolvin production. Macrophage-secreted C1q emerged as a principal antagonist of T cell function by targeting mitochondria and inducing metabolic dysfunction. By contrast, epithelial-like tumors accumulated inflammatory …


Dapk2 Regulates Pkm2 Phosphorylation At Threonine 45 To Facilitate Disturbed Flow-Induced Atherosclerosis, Shuai Guo, Long Xu, Yixin Chen, Yuan Zhao, Yuting Zhang, Runfa Yu, Kaixiang Cao, Litao Wang, Wenjia Ai, Jiang-Yun Luo, Lu Lu, Jun He, Yuan Zhou, Li Wang, Andrew H Baker, Yuqing Huo, Yiming Xu Apr 2026

Dapk2 Regulates Pkm2 Phosphorylation At Threonine 45 To Facilitate Disturbed Flow-Induced Atherosclerosis, Shuai Guo, Long Xu, Yixin Chen, Yuan Zhao, Yuting Zhang, Runfa Yu, Kaixiang Cao, Litao Wang, Wenjia Ai, Jiang-Yun Luo, Lu Lu, Jun He, Yuan Zhou, Li Wang, Andrew H Baker, Yuqing Huo, Yiming Xu

Faculty, Staff and Students Publications

Background: Oscillatory shear stress (OSS), resulting from disturbed blood flow, is implicated in atherosclerotic plaque formation by incompletely understood mechanisms. This study aims to elucidate the involvement of death-associated protein kinase (DAPK) 2 in OSS-induced endothelial cell (EC) activation and atherosclerosis.

Methods: Publicly available resources, including genome-wide microarray, RNA sequencing, and single-cell RNA sequencing, were utilized to identify key OSS-sensitive regulatory factors. Techniques such as mass spectrometry, immunoprecipitation, proximity ligation assay, and RNA sequencing were employed to identify pyruvate kinase M2 (PKM2) as the binding protein of DAPK2 and determine the specific site of PKM2 phosphorylation by DAPK2. To assess …


Loss Of Znrf3/Rnf43 Unleashes Egrfr In Cancer, Fei Yue, Amy T Ku, Payton D Stevens, Megan N Michalski, Weiyu Jiang, Jianghua Tu, Zhongcheng Shi, Yongchao Dou, Yi Wang, Xin-Hua Feng, Galen Hostetter, Xiangwei Wu, Shixia Huang, Noah F Shroyer, Bing Zhang, Bart O Williams, Qingyun Liu, Xia Lin, Yi Li Apr 2026

Loss Of Znrf3/Rnf43 Unleashes Egrfr In Cancer, Fei Yue, Amy T Ku, Payton D Stevens, Megan N Michalski, Weiyu Jiang, Jianghua Tu, Zhongcheng Shi, Yongchao Dou, Yi Wang, Xin-Hua Feng, Galen Hostetter, Xiangwei Wu, Shixia Huang, Noah F Shroyer, Bing Zhang, Bart O Williams, Qingyun Liu, Xia Lin, Yi Li

Faculty, Staff and Students Publications

ZNRF3 and RNF43 are closely related transmembrane E3 ubiquitin ligases with significant roles in development and cancer. Conventionally, their biological functions have been associated with regulating WNT signaling receptor ubiquitination and degradation. However, our proteogenomic studies have revealed EGFR as the protein most negatively correlated with ZNRF3/RNF43 mRNA levels in multiple human cancers. Through biochemical investigations, we demonstrate that ZNRF3/RNF43 interact with EGFR via their extracellular domains, leading to EGFR ubiquitination and subsequent degradation facilitated by the E3 ligase RING domain. Overexpression of ZNRF3 reduces EGFR levels and suppresses cancer cell growth in vitro and in vivo, whereas knockout of …


Constitutive Ampk Activation Prevents Hepatocellular Carcinoma Development Through Inhibition Of Hnf4Α Activity, Zhen Sun, Bernard Linares, Cassidy Urdiales, Fiyad Alsarmi, Boyuan Sang, Nagireddy Putluri, Jeanine L Van Nostrand Apr 2026

Constitutive Ampk Activation Prevents Hepatocellular Carcinoma Development Through Inhibition Of Hnf4Α Activity, Zhen Sun, Bernard Linares, Cassidy Urdiales, Fiyad Alsarmi, Boyuan Sang, Nagireddy Putluri, Jeanine L Van Nostrand

Faculty, Staff and Students Publications

Hepatocellular carcinoma (HCC) is a major cause of cancer-related mortality and is largely driven by metabolic disorders such as obesity and type 2 diabetes. The AMP-activated protein kinase (AMPK) is a master regulator of metabolism, and its activation has been proposed as a therapeutic strategy for treating metabolic disorders. However, although AMPK activity is down-regulated in HCC, the precise role of AMPK in HCC development has not been clearly delineated. Here, we investigated the ability of constitutive AMPK activation to prevent HCC development using a constitutively active AMPK transgenic mouse model and a pharmacological AMPK activator. We observed that AMPK …


A Multidomain Peptide Hydrogel-Liposome Composite For Controlled Release Of A Cyclic Dinucleotide In Oral Cancer, Joseph W R Swain, Andrea H Molina, Gemalene M Sunga, Danielle Chew-Martinez, Neeraja Dharmaraj, Alejandra Cobos Perez, Arghadip Dey, Ephraim J Vázquez-Rosado, Simon Young, Jeffrey D Hartgerink Apr 2026

A Multidomain Peptide Hydrogel-Liposome Composite For Controlled Release Of A Cyclic Dinucleotide In Oral Cancer, Joseph W R Swain, Andrea H Molina, Gemalene M Sunga, Danielle Chew-Martinez, Neeraja Dharmaraj, Alejandra Cobos Perez, Arghadip Dey, Ephraim J Vázquez-Rosado, Simon Young, Jeffrey D Hartgerink

Faculty, Staff and Student Publications

While immunotherapy is a promising treatment strategy for cancer, the majority of head and neck squamous cell carcinoma (HNSCC) patients treated with single-agent immunotherapy do not respond. Therefore, researchers are investigating combination treatments with immunostimulatory molecules that can maximize anti-tumor responses. Cyclic dinucleotides (CDNs) are STING agonists that hold promise in combination approaches, but they require frequent intratumoral administration when used in both preclinical models of HNSCC and clinical trials. To reduce administration frequency, we have created a peptide hydrogel–liposome composite system, K2-Lip(CDN), for local and prolonged availability of CDN. We investigated the loading limits of cationic liposomes in both …


Co-Occurrence Of Transcriptionally Distinct Persister Cell States Underpins Neoadjuvant Therapy Resistance In Triple-Negative Breast Cancer, Yu Zhang, Fatemeh Ahmadi Moughari, Ioanna Mavrommati, Nora J Doleschall, Kate Moore, Gareth Muirhead, Ram Rajaram Srinivasan, Ping Gong, Jonathan T Lei, Amy Fleming, Hwei Minn Khoo, Naomi Guppy, Gabrielle Elshtein, Mohammed Inayatullah, Vijay K Tiwari, Lacey E Dobrolecki, Michael T Lewis, Syed Haider, Rachael Natrajan Apr 2026

Co-Occurrence Of Transcriptionally Distinct Persister Cell States Underpins Neoadjuvant Therapy Resistance In Triple-Negative Breast Cancer, Yu Zhang, Fatemeh Ahmadi Moughari, Ioanna Mavrommati, Nora J Doleschall, Kate Moore, Gareth Muirhead, Ram Rajaram Srinivasan, Ping Gong, Jonathan T Lei, Amy Fleming, Hwei Minn Khoo, Naomi Guppy, Gabrielle Elshtein, Mohammed Inayatullah, Vijay K Tiwari, Lacey E Dobrolecki, Michael T Lewis, Syed Haider, Rachael Natrajan

Faculty, Staff and Students Publications

Background

Although the addition of neoadjuvant immune checkpoint blockade to chemotherapy has improved patient outcome in early triple‑negative breast cancer (TNBC), some patients continue to have poor disease outcomes.

Methods

To characterise neoadjuvant chemotherapy (NAC) resistant cell populations that persist post-NAC, we created a high-resolution single-cell atlas of 129,433 cells from fourteen TNBC patient-derived xenograft (PDX) models with residual disease post-NAC. We identified transcriptionally distinct cancer subpopulations or cell states using unsupervised clustering and characterised‑ their regulatory network as well as clinical associations with treatment response, metastatic progression and survival. Findings were validated using multiple independent TNBC cohorts.

Results

Four …


Versatile Smad2 And Smad3 Epitope-Tagged Mouse Models For Genomic Profiling Of Tgfβ Signaling: Uncovering Gdf9-Smad2/3 Targets, Zian Liao, Qian Zhang, Keisuke Shimada, Kaori Nozawa, Suni Tang, Masahito Ikawa, Diana Monsivais, Martin M Matzuk Apr 2026

Versatile Smad2 And Smad3 Epitope-Tagged Mouse Models For Genomic Profiling Of Tgfβ Signaling: Uncovering Gdf9-Smad2/3 Targets, Zian Liao, Qian Zhang, Keisuke Shimada, Kaori Nozawa, Suni Tang, Masahito Ikawa, Diana Monsivais, Martin M Matzuk

Faculty, Staff and Students Publications

Transforming growth factor β (TGFβ) signaling pathways are integral for a plethora of biological processes. SMAD2 and SMAD3 are the principal transcriptional effectors of TGFβ superfamily ligands, yet quantitative, genome-wide mapping of their DNA-associated complexes under physiological contexts has remained limited due to the lack of specific, robust models. Here, we generated two versatile epitope-tagged mouse models in which endogenous SMAD2 and SMAD3 proteins are globally tagged with hemagglutinin (HA) and podoplanin (PA) sequences, respectively, enabling high-fidelity profiling of SMAD2 and SMAD3 binding across tissues. To demonstrate the broad application of our models, we exemplified the usage of our lines …


Claudins Interact With Lilrb Immune Inhibitory Receptors To Promote Myeloid Immunosuppression In Cancer, Xiaoye Liu, Ryan Huang, Zhiqiang Ku, Jingjing Xie, Heyu Chen, Yubo He, Qi Lou, Chengcheng Zhang, Xing Yang, Cheryl Lewis, Jade Homsi, Ankit Gupta, Lei Dong, Kenian Chen, Annabel Tu, Liming Du, Hailong Yu, Qing Hu, Meng Fang, Bufan Li, A E M Adan Khan, Caroline Simith, Samuel John, Lin Xu, Ningyan Zhang, Zhiqiang An, Cheng Cheng Zhang Apr 2026

Claudins Interact With Lilrb Immune Inhibitory Receptors To Promote Myeloid Immunosuppression In Cancer, Xiaoye Liu, Ryan Huang, Zhiqiang Ku, Jingjing Xie, Heyu Chen, Yubo He, Qi Lou, Chengcheng Zhang, Xing Yang, Cheryl Lewis, Jade Homsi, Ankit Gupta, Lei Dong, Kenian Chen, Annabel Tu, Liming Du, Hailong Yu, Qing Hu, Meng Fang, Bufan Li, A E M Adan Khan, Caroline Simith, Samuel John, Lin Xu, Ningyan Zhang, Zhiqiang An, Cheng Cheng Zhang

The Brown Foundation: Institute of Molecular Medicine

The mechanisms underlying tumor cell-myeloid cell interactions in the tumor microenvironment (TME) remain unclear, and predictive biomarkers for patient response to myeloid checkpoint blockade are lacking. This study identified specific binding between tight junction claudins (CLDNs) and leukocyte immunoglobulin-like receptor subfamily B2 (LILRB2) and LILRB5. In multiple human cancer cohorts, the spatial proximity of LILRB2-positive macrophages to CLDN-expressing cancer cells correlated with clinical outcomes, highlighting this spatial relationship as a potential biomarker. In syngeneic LILRB2-transgenic and humanized mouse models, CLDN18.2-LILRB2 interactions triggered bidirectional signaling, enhanced the immunosuppressive activity of myeloid cells, and accelerated tumor progression. These effects were reversed by …


Nuclear Receptor Subfamily 4 Group A Member 2 Induces A Warburg-Like Effect And Promotes Phospholipids Synthesis In The Mouse Heart, Sadia Ashraf, Dorcas Odogwu, David D Mcpherson, Romain Harmancey Apr 2026

Nuclear Receptor Subfamily 4 Group A Member 2 Induces A Warburg-Like Effect And Promotes Phospholipids Synthesis In The Mouse Heart, Sadia Ashraf, Dorcas Odogwu, David D Mcpherson, Romain Harmancey

Faculty, Staff and Student Publications

Myocardial metabolic flexibility is critical to ensuring the heart's capacity to maintain contraction and cellular functions under rapidly evolving environmental conditions. Although it is a tightly regulated process, loss of metabolic flexibility is often regarded as a contributing factor to heart failure. This study aims to determine the effects of the early response transcription factor nuclear receptor subfamily 4 group A member 2 (NR4A2) on cardiac metabolism and the resulting impact on left ventricular function. A multiomics approach combining the analysis of global ventricular gene expression, genome-wide NR4A2 binding, and untargeted metabolomics was used to track the molecular effects of …


Neutrophil-Microglia Interaction Drives Motor Dysfunction In A Neuromyelitis Optica Model Induced By Subarachnoid Aqp4-Igg, Fangfang Qi, Vanda A Lennon, Shunyi Zhao, Yong Guo, Husheng Ding, Caiyun Liu, Whitney M Bartley, Tingjun Chen, Claudia F Lucchinetti, Long-Jun Wu Apr 2026

Neutrophil-Microglia Interaction Drives Motor Dysfunction In A Neuromyelitis Optica Model Induced By Subarachnoid Aqp4-Igg, Fangfang Qi, Vanda A Lennon, Shunyi Zhao, Yong Guo, Husheng Ding, Caiyun Liu, Whitney M Bartley, Tingjun Chen, Claudia F Lucchinetti, Long-Jun Wu

Faculty, Staff and Student Publications

Neutrophils and neutrophil extracellular traps (NETs) contribute to early neuromyelitis optica (NMO) histopathology initiated by IgG targeting astrocytic aquaporin-4 (AQP4) water channels. Yet, the mechanisms underlying neutrophil recruitment and their pathogenic roles in disease progression remain unclear. To investigate molecular-cellular events preceding classical complement cascade activation in a mouse NMO model, we continuously infused, via spinal subarachnoid route, a non-complement-activating mouse monoclonal AQP4-IgG. Parenchymal infiltration of netting neutrophils containing C5a ensued with microglial activation and motor impairment but no blood-brain barrier leakage. Motor impairment and neuronal dysfunction both reversed when AQP4-IgG infusion stopped. Two-photon microscopy and electron microscopy-based reconstructions revealed …


Platelets Cause Microvascular Occlusion And Delayed Neurological Deficits After Subarachnoid Hemorrhage In Mice., Ari Dienel, Sung-Ha Hong, Kiara Torres, Kanako Matsumura, Jose Guzman, Peeyush Thankamani Pandit, Bibek Samal, Harveen Kaur, Samitha Nemirajaiah, Angelica Bernal, H Alex Choi, Louise D Mccullough, Spiros L Blackburn, Jaroslaw Aronowski, Devin W Mcbride Apr 2026

Platelets Cause Microvascular Occlusion And Delayed Neurological Deficits After Subarachnoid Hemorrhage In Mice., Ari Dienel, Sung-Ha Hong, Kiara Torres, Kanako Matsumura, Jose Guzman, Peeyush Thankamani Pandit, Bibek Samal, Harveen Kaur, Samitha Nemirajaiah, Angelica Bernal, H Alex Choi, Louise D Mccullough, Spiros L Blackburn, Jaroslaw Aronowski, Devin W Mcbride

Faculty, Staff and Student Publications

After subarachnoid hemorrhage (SAH), some patients develop delayed neurological deficits (DND). Microthrombi are considered a contributing factor to DND, but clinical trials of antiplatelets had mixed results. Existing research suggests that platelets play a role in the etiology of DND, but no comprehensive study has tested causality between platelets and DND after SAH. Here we hypothesize that after SAH, platelet activation promotes microthrombi formation, occlusion of the brain microvasculature and contributes to DND, and that inhibiting platelet aggregation is a therapeutic strategy. Mice experiencing SAH were administered various interventions. The animals were subjected to stimulation of platelets, platelet depletion, or …


The Impact Of Estrogen Replacement During Perimenopause On Lung Function And Airway Inflammation In The Vcd Mouse Model, William P Pederson, Laurie Michelle Ellerman, Riley D Hellinger, Joselyn Joanna Rojas Quintero, Francesca Polverino, John P Konhilas, Julie G Ledford Apr 2026

The Impact Of Estrogen Replacement During Perimenopause On Lung Function And Airway Inflammation In The Vcd Mouse Model, William P Pederson, Laurie Michelle Ellerman, Riley D Hellinger, Joselyn Joanna Rojas Quintero, Francesca Polverino, John P Konhilas, Julie G Ledford

Faculty, Staff and Students Publications

Background:

Menopause associated asthma impacts a subset of women and is less responsive to current treatments. Mechanisms driving this late onset asthma are unknown. We recently developed a mouse model of menopause associated asthma using a combination of 4-Vinylcyclohexene Diepoxide (VCD) and House Dust Mite (HDM) exposures. The goal of this study was to determine how hormone replacement therapy during perimenopause impacts lung function and inflammation.

Methods:

The experimental groups included menopausal mice (VCD) with and without exposure to HDM (to model allergic airways disease) and menopausal mice with and without hormone replacement therapy (HRT; via estrogen pellet implantation). Lung …


Efficient In Vivo Pharmacological Inhibition Of Δfosb, An Ap-1 Transcription Factor, In The Brain, Sean Mcneme, Anil Kumar, Yun Young Yim, Brandon W Hughes, Corey St Romain, Yi Li, Ashwani Kumar, Qichao Bao, Molly Estill, Shanghua Fan, Nadeen Takatka, Earnest P Chen, Matthew Rivera, Haiying Chen, Alfred J Robison, Mischa Machius, Stephen J Haggarty, Jeannie Chin, Eric J Nestler, Jia Zhou, Gabby Rudenko Apr 2026

Efficient In Vivo Pharmacological Inhibition Of Δfosb, An Ap-1 Transcription Factor, In The Brain, Sean Mcneme, Anil Kumar, Yun Young Yim, Brandon W Hughes, Corey St Romain, Yi Li, Ashwani Kumar, Qichao Bao, Molly Estill, Shanghua Fan, Nadeen Takatka, Earnest P Chen, Matthew Rivera, Haiying Chen, Alfred J Robison, Mischa Machius, Stephen J Haggarty, Jeannie Chin, Eric J Nestler, Jia Zhou, Gabby Rudenko

Faculty, Staff and Students Publications

ΔFOSB, an unusually stable member of the AP-1 family of transcription factors, mediates long-term maladaptations that play a key role in the pathogenesis of drug addiction, cognitive decline, dyskinesia, and several other chronic neurological and psychiatric conditions. We have recently identified that 2-phenoxybenzenesulfonic acid-containing compounds disrupt the binding of ΔFOSB to DNA in vitro in cell-based assays, and one such compound, JPC0661, disrupts ΔFOSB binding to genomic DNA in vivo in the mouse brain with partial efficiency. JPC0661 binds to a groove outside of the DNA-binding cleft of the ΔFOSB/JUND bZIP heterodimer in a cocrystal structure. Here, we generated a …


Functional Bipartite Invariance In Mouse Primary Visual Cortex Receptive Fields, Zhiwei Ding, Dat Tran, Kayla Ponder, Zhuokun Ding, Rachel Froebe, Lydia Ntanavara, Paul G Fahey, Erick Cobos, Luca Baroni, Maria Diamantaki, Eric Y Wang, Andersen Chang, Stelios Papadopoulos, Jiakun Fu, Taliah Muhammad, Christos Papadopoulos, Santiago A Cadena, Alexandros Evangelou, Konstantin Willeke, Fabio Anselmi, Sophia Sanborn, Jan Antolik, Emmanouil Froudarakis, Saumil Patel, Edgar Y Walker, Jacob Reimer, Fabian H Sinz, Alexander S Ecker, Katrin Franke, Xaq Pitkow, Andreas S Tolias Apr 2026

Functional Bipartite Invariance In Mouse Primary Visual Cortex Receptive Fields, Zhiwei Ding, Dat Tran, Kayla Ponder, Zhuokun Ding, Rachel Froebe, Lydia Ntanavara, Paul G Fahey, Erick Cobos, Luca Baroni, Maria Diamantaki, Eric Y Wang, Andersen Chang, Stelios Papadopoulos, Jiakun Fu, Taliah Muhammad, Christos Papadopoulos, Santiago A Cadena, Alexandros Evangelou, Konstantin Willeke, Fabio Anselmi, Sophia Sanborn, Jan Antolik, Emmanouil Froudarakis, Saumil Patel, Edgar Y Walker, Jacob Reimer, Fabian H Sinz, Alexander S Ecker, Katrin Franke, Xaq Pitkow, Andreas S Tolias

Faculty, Staff and Students Publications

Sensory systems support generalization by representing features that persist under input variation; however, identifying the neuronal basis of these invariances remains difficult due to high-dimensional and nonlinear neural computations. Here we leverage the inception loop paradigm, iterating between large-scale recordings, predictive models and in silico experiments with in vivo verification, to characterize neuronal invariances in mouse primary visual cortex (V1). We synthesize varied exciting inputs (VEIs), dissimilar images that drive target neurons. These VEIs revealed a new bipartite invariance: one subfield encodes a shift-tolerant high-frequency texture and the other encodes a fixed low-frequency pattern. This division aligns with object boundaries …


Dominant Clones Leverage Developmental Epigenomic States To Drive Ependymoma, Alisha S Kardian, Hua Sun, Siri Ippagunta, Nicholas Laboe, Srinidhi Varadharajan, Kwanha Yu, Hsiao-Chi Chen, Erik Emanus, Tuyu Zheng, Riley M Deneen, Jon P Connelly, Yong-Dong Wang, Jiangshan Zhan, Hengxi Liu, Kimberley Lowe, Taylor Bugbee, Rakesh Pathak, Amanda Bland, Sanya Mehta, Sophie Cochiolo, Amir Arabzade, Blake Holcomb, Kaitlin M Budd, Gabriele Kembuan, Tristen Wright, Emma Caesar, Maxwell Park, Amelia Hancock, David Gee, Joel Murdoch, Yi Xiao, Samuel K Mcbrayer, Thomas E Merchant, Jun Qi, Adam D Durbin, Lindsay A Schwarz, Li Wang, Andrew M Donson, Nicholas K Foreman, Sameer Agnihotri, Alfonso Lavado, Suzanne J Baker, David W Ellison, Hyun Kyoung Lee, Shondra M Pruett-Miller, Kelsey C Bertrand, Benjamin Deneen, Stephen C Mack Apr 2026

Dominant Clones Leverage Developmental Epigenomic States To Drive Ependymoma, Alisha S Kardian, Hua Sun, Siri Ippagunta, Nicholas Laboe, Srinidhi Varadharajan, Kwanha Yu, Hsiao-Chi Chen, Erik Emanus, Tuyu Zheng, Riley M Deneen, Jon P Connelly, Yong-Dong Wang, Jiangshan Zhan, Hengxi Liu, Kimberley Lowe, Taylor Bugbee, Rakesh Pathak, Amanda Bland, Sanya Mehta, Sophie Cochiolo, Amir Arabzade, Blake Holcomb, Kaitlin M Budd, Gabriele Kembuan, Tristen Wright, Emma Caesar, Maxwell Park, Amelia Hancock, David Gee, Joel Murdoch, Yi Xiao, Samuel K Mcbrayer, Thomas E Merchant, Jun Qi, Adam D Durbin, Lindsay A Schwarz, Li Wang, Andrew M Donson, Nicholas K Foreman, Sameer Agnihotri, Alfonso Lavado, Suzanne J Baker, David W Ellison, Hyun Kyoung Lee, Shondra M Pruett-Miller, Kelsey C Bertrand, Benjamin Deneen, Stephen C Mack

Faculty, Staff and Students Publications

ZFTA–RELA is the most recurrent genetic alteration seen in paediatric supratentorial ependymoma (EPN) and is sufficient to initiate tumours in mice1. Despite its oncogenic potential, ZFTA–RELA (ZR) is observed nearly exclusively in childhood EPN, with tumours located distinctly in the supratentorial brain of the central nervous system1. We proposed that specific chromatin modules accessible during brain development would render distinct cell lineage programs at direct risk of transformation by ZR. To test this hypothesis, we performed combined single-nucleus assay for transposase-accessible chromatin and RNA (snMultiome) sequencing of the developing mouse forebrain compared with ZR-driven mouse …


Ins-17 Acts As A Nutrient Deprivation Signal To Mediate Adult Iis-Regulated Associative Behaviors In C. Elegans, Emily J Leptich, Priyadharshini Vijayakumar, Edward W Pietryk, Meredith I Williams, Rachana Rajupalem, Rachel N Arey Apr 2026

Ins-17 Acts As A Nutrient Deprivation Signal To Mediate Adult Iis-Regulated Associative Behaviors In C. Elegans, Emily J Leptich, Priyadharshini Vijayakumar, Edward W Pietryk, Meredith I Williams, Rachana Rajupalem, Rachel N Arey

Faculty, Staff and Students Publications

Insulin/Insulin-like growth factor 1 (IGF-1) signaling (IIS) is a pleiotropic signaling pathway that functions across tissues to coordinate phenotypic changes in response to nutrient status. Thus, the ubiquity of the IIS pathway hinders efforts to elucidate the mechanisms driving specific IIS-related phenotypes. Previous research in the nematode worm C. elegans has demonstrated that loss of function of the IIS transmembrane receptor (IR) ortholog, DAF-2, results in a doubled lifespan and enhanced learning and memory behaviors in young and aged animals. However, these findings are the result of reducing DAF-2 receptor function rather than modulating ligand-receptor interactions. In the current study, …


Androgen Activity In The Male Embryonic Hindbrain Drives Lethal Pfa Ependymoma, Jiao Zhang, Winnie Ong, Alexandra Rasnitsyn, Ricardo Daniel Gonzalez, Rodrigo Lopez Gutierrez, Polina Balin, Amr Saadeldin, Xiaochong Wu, Maria C Vladoiu, Vicente Santa-Maria Lopez, Fernando Gonzalez-Salinas, Navneesh Yadav, Dinesh Mohanakrishnan, Kannan Boosi Narayana Rao, Raja Gopal Reddy Mooli, Hinda Najem, Sebastian Pacheco, Kaitlin Kharas, Cory Richman, David Przelicki, Evan Y Wang, Haipeng Su, Rachel Naomi Curry, Runze Yang, Michelle Masayo Kameda-Smith, Bryn Livingston, David Scott, Zaili Luo, Mingyang Xia, Namal Abeysundara, Anders W Erickson, Ncedile Mankahla, Lucas Zhongming Hu, Chu Pan, Raul Suarez, Ning Huang, Yihao Wu, Hao Wang, Tajana Douglas, Jonelle Pallota, Steven Hébert, Karen Ng, Krystin Mantione, Heather Whetstone, Hassaan Maan, Hussein Lakkis, Juyeun Lee, Sadeesh K Ramakrishnan, Yanxin Pei, Yujie Tang, Frank Y Lin, Guillermo Aldave, Marco Gallo, Robert M Friedlander, Faiyaz Notta, Laura K Donovan, Murali Chintagumpala, Bo Wang, Yun Li, Daniel D De Carvalho, Zhaolei Zhang, Ying Mao, Wei Hua, Charles Eberhart, Calixto-Hope G Lucas, Sriram Venneti, Poul H Sorensen, Alberto Delaidelli, Hao Li, Wenhao Zhou, Jason Kirk, Dean G Tang, Tao Jiang, Hailong Liu, Justin D Lathia, Hiromichi Suzuki, Jeremy N Rich, Lincoln D Stein, Nada Jabado, Vijay Ramaswamy, Q Richard Lu, Amy B Heimberger, Craig Daniels, Kulandaimanuvel Antony Michealraj, Claudia L Kleinman, Michael D Taylor Apr 2026

Androgen Activity In The Male Embryonic Hindbrain Drives Lethal Pfa Ependymoma, Jiao Zhang, Winnie Ong, Alexandra Rasnitsyn, Ricardo Daniel Gonzalez, Rodrigo Lopez Gutierrez, Polina Balin, Amr Saadeldin, Xiaochong Wu, Maria C Vladoiu, Vicente Santa-Maria Lopez, Fernando Gonzalez-Salinas, Navneesh Yadav, Dinesh Mohanakrishnan, Kannan Boosi Narayana Rao, Raja Gopal Reddy Mooli, Hinda Najem, Sebastian Pacheco, Kaitlin Kharas, Cory Richman, David Przelicki, Evan Y Wang, Haipeng Su, Rachel Naomi Curry, Runze Yang, Michelle Masayo Kameda-Smith, Bryn Livingston, David Scott, Zaili Luo, Mingyang Xia, Namal Abeysundara, Anders W Erickson, Ncedile Mankahla, Lucas Zhongming Hu, Chu Pan, Raul Suarez, Ning Huang, Yihao Wu, Hao Wang, Tajana Douglas, Jonelle Pallota, Steven Hébert, Karen Ng, Krystin Mantione, Heather Whetstone, Hassaan Maan, Hussein Lakkis, Juyeun Lee, Sadeesh K Ramakrishnan, Yanxin Pei, Yujie Tang, Frank Y Lin, Guillermo Aldave, Marco Gallo, Robert M Friedlander, Faiyaz Notta, Laura K Donovan, Murali Chintagumpala, Bo Wang, Yun Li, Daniel D De Carvalho, Zhaolei Zhang, Ying Mao, Wei Hua, Charles Eberhart, Calixto-Hope G Lucas, Sriram Venneti, Poul H Sorensen, Alberto Delaidelli, Hao Li, Wenhao Zhou, Jason Kirk, Dean G Tang, Tao Jiang, Hailong Liu, Justin D Lathia, Hiromichi Suzuki, Jeremy N Rich, Lincoln D Stein, Nada Jabado, Vijay Ramaswamy, Q Richard Lu, Amy B Heimberger, Craig Daniels, Kulandaimanuvel Antony Michealraj, Claudia L Kleinman, Michael D Taylor

Faculty, Staff and Students Publications

Posterior fossa type A (PFA) ependymoma is an unusual infantile brain tumour with few known somatic mutations, thought to be driven by epigenetic mechanisms1. PFA ependymoma has a markedly higher incidence and worse prognosis in male children than in female children2. The mechanisms that underlie these sex differences are at present unknown. Here we show that the cellular hierarchy of PFA ependymoma is less differentiated in male individuals than it is in female individuals. In the normal developing mouse hindbrain, male gliogenic progenitors are less differentiated than matched female sibling controls. To further parse the effects …


Weaning Drives Microbiome-Mediated Epigenetic Regulation To Shape Immune Memory In Mice, Li Yang, Robert C Peery, Shirui Zhou, Xiaomin Chen, Leah M Farmer, Fabiola Gutierrez, Stephanie Fowler, Lanjing Zhang, Julia M Salamat, Karen Riggins, Jiejun Shi, Lanlan Shen Apr 2026

Weaning Drives Microbiome-Mediated Epigenetic Regulation To Shape Immune Memory In Mice, Li Yang, Robert C Peery, Shirui Zhou, Xiaomin Chen, Leah M Farmer, Fabiola Gutierrez, Stephanie Fowler, Lanjing Zhang, Julia M Salamat, Karen Riggins, Jiejun Shi, Lanlan Shen

Children’s Nutrition Research Center Staff Publications

During weaning, the transition to solid food diversifies the gut microbiome, triggering a programmed immune response critical for long-lasting mucosal immunity. Previous work showed that the gut microbiome mediates epigenetic development in intestinal stem cells (ISCs) during suckling, but what happens during weaning is unclear. Here, genome-wide profiling revealed that weaning-driven microbiome changes shape the DNA methylome and transcriptome of murine ISCs in an IFNγ-dependent manner. Specifically, we observe demethylation of enhancer elements essential for MHC class II genes, which results in a transcriptional memory that persists through differentiation into adulthood. IFNγ blockade, or low-dose penicillin to target Gram-positive bacteria, …


Multiparametric Mri To Predict Response To Irreversible Electroporation Plus Anti-Pd-1 Immunotherapy In Pancreatic Ductal Adenocarcinoma, Qizhen Cao, Mark D Pagel, Charles V Kingsley, Jingfei Ma, James P Long, Xiaoxia Wen, Seth T Gammon, Jorge Delacerda, Sanaz Javadi, Chun Li Apr 2026

Multiparametric Mri To Predict Response To Irreversible Electroporation Plus Anti-Pd-1 Immunotherapy In Pancreatic Ductal Adenocarcinoma, Qizhen Cao, Mark D Pagel, Charles V Kingsley, Jingfei Ma, James P Long, Xiaoxia Wen, Seth T Gammon, Jorge Delacerda, Sanaz Javadi, Chun Li

Faculty, Staff and Student Publications

Purpose: To investigate contrast-enhanced T1-weighted MRI and diffusion-weighted magnetic resonance imaging (DWI) for early prediction of tumor response to combined irreversible electroporation (IRE) and anti-PD-1 immunotherapy.

Methods: Murine pancreatic ductal adenocarcinoma (PDAC) cells KRAS* were inoculated into the pancreas of C57BL/6 mice. IRE was performed when tumors became palpable. After IRE, mice received six intraperitoneal injections of anti-PD-1 over 2 weeks. T2-weighted MRI, T1-weighted MRI with macromolecular contrast agent poly(L-glutamic acid)-conjugated gadolinium (PG-Gd), and DWI were performed before and after IRE. Survival was analyzed using Kaplan-Meier curves. Mice surviving at least 100 days without recurrence after IRE were considered complete …


Gompertz Growth With A Shared Carrying Capacity Optimally Simulates Primary And Metastatic Tumor Growth Dynamics, Pirmin Schlicke, Preethi Korangath, Xiaoxi Pan, Caner Ercan, Kathleen Gabrielson, Lyndsey Werhane, Yinyin Yuan, Sébastien Benzekry, Robert Ivkov, Heiko Enderling Apr 2026

Gompertz Growth With A Shared Carrying Capacity Optimally Simulates Primary And Metastatic Tumor Growth Dynamics, Pirmin Schlicke, Preethi Korangath, Xiaoxi Pan, Caner Ercan, Kathleen Gabrielson, Lyndsey Werhane, Yinyin Yuan, Sébastien Benzekry, Robert Ivkov, Heiko Enderling

Faculty, Staff and Student Publications

Background: Cancer is a systemic disease with most deaths attributed to metastatic burden. Primary and metastatic tumors, albeit at different anatomic locations, are interconnected through multiple biological processes. Pre-clinical and clinical observations of growth acceleration of metastases after surgery, or abscopal effects outside the radiation field are widely reported, yet reliably triggering favorable and avoiding unfavorable systemic responses remains an unmet clinical need. Understanding local and systemic tumor interaction dynamics will help guide future treatments.

Methods: We analyze the data of multiple in vivo tumor models. We formalize the systemic interplay of tumors as mathematical differential equation and calibrate parameters …


Telomerase Knockout In Myeloid Cells Predisposes Mice To Foam Cell Formation, Dyslipidemia, Lung Fibrosis, And Cardiac Dysfunction, Zhanguo Gao, Yongmei Yu, David Wiggins, Eva M Sevick-Muraca, Mikhail G Kolonin Apr 2026

Telomerase Knockout In Myeloid Cells Predisposes Mice To Foam Cell Formation, Dyslipidemia, Lung Fibrosis, And Cardiac Dysfunction, Zhanguo Gao, Yongmei Yu, David Wiggins, Eva M Sevick-Muraca, Mikhail G Kolonin

The Brown Foundation: Institute of Molecular Medicine

Aging-associated changes in myeloid cells are incompletely understood. One of the culprits of aging is the downregulation of the Tert gene coding for the catalytic subunit of telomerase. Studies of mouse models with Tert knockout (KO) in specific cells have revealed the importance of the telomere-independent noncanonical function of TERT in supporting mitochondrial metabolism and protection from cell senescence. To investigate the role of TERT in myeloid cells (MCs), we analyzed mice with Tert KO in the LysM+ lineage, indelibly labeled with membrane green fluorescent protein (mG). Macrophage numbers and properties in various organs were compared. Changes in the vasculature, …


High-Power Dual-Channel Chamber For High-Frequency Magnetic Neuromodulation, Xiaoyang Tian, Hui Wang, Boshuo Wang, Jinshui Zhang, Dong Yan, Jeannette Ingabire, Samantha Coffler, Guillaume Duret, Quoc-Khanh Pham, Gang Bao, Junzhe Wang, Ashok Veeraraghavan, Jacob T Robinson, Stefan M Goetz, Angel V Peterchev Mar 2026

High-Power Dual-Channel Chamber For High-Frequency Magnetic Neuromodulation, Xiaoyang Tian, Hui Wang, Boshuo Wang, Jinshui Zhang, Dong Yan, Jeannette Ingabire, Samantha Coffler, Guillaume Duret, Quoc-Khanh Pham, Gang Bao, Junzhe Wang, Ashok Veeraraghavan, Jacob T Robinson, Stefan M Goetz, Angel V Peterchev

Faculty, Staff and Students Publications

Objective. Several novel methods, including magnetogenetics and magnetoelectric stimulation, use high frequency alternating magnetic fields to precisely manipulate neural activity. To quantify the behavioral effects of such interventions in a freely moving mouse, we developed a dual-channel magnetic chamber, specifically designed for rate-sensitive magnetothermal-genetic stimulation, and adaptable for other uses of alternating magnetic fields.

Approach. Through an optimized coil design, the system allows independent control of two spatially orthogonal uniform magnetic fields delivered at different frequencies within a 10 × 10 × 6 cm3 chamber suitable for mouse studies. The two channels have nominal frequencies of 50 and 550 kHz …