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The Role Of Top-Down Appetite Self-Regulation In The Development Of Healthy Eating Behaviors Among Children: A Narrative Review And Socialization Framework, David J Bridgett, Sheryl O Hughes, Matthew Broussard, Daniela Mccourt, Christina M Croce, Jennifer O Fisher Mar 2026

The Role Of Top-Down Appetite Self-Regulation In The Development Of Healthy Eating Behaviors Among Children: A Narrative Review And Socialization Framework, David J Bridgett, Sheryl O Hughes, Matthew Broussard, Daniela Mccourt, Christina M Croce, Jennifer O Fisher

Faculty, Staff and Students Publications

Appetite self-regulation (ASR) among children is thought to have a fundamental role in shaping the development of healthy eating behaviors, dietary intake, and growth during childhood. Parallel to developmental frameworks for understanding "general" self-regulation among children, ASR has been described as involving children's use of "top-down" cognitive processes to moderate "bottom-up" biological drives around food approach and avoidance in the interest of achieving desired eating behaviors or outcomes. Whereas bottom-up ASR processes during early childhood are well characterized, particularly in the context of dysregulation and obesity risk, the role of top-down ASR processes in the development of healthy eating behaviors …


The Evolving Therapeutic Landscape Of Pcsk9 Inhibition, Brett S Mansfield, Yakubu Bene-Alhasan, Christie M Ballantyne, Frederick J Raal Mar 2026

The Evolving Therapeutic Landscape Of Pcsk9 Inhibition, Brett S Mansfield, Yakubu Bene-Alhasan, Christie M Ballantyne, Frederick J Raal

Faculty, Staff and Students Publications

Cardiovascular disease remains the leading cause of death worldwide with low density lipoprotein being a major, yet modifiable, risk factor. Proprotein convertase subtilisin/kexin type 9 (PCSK9) plays a central role in regulating low density lipoprotein (LDL) receptor expression. Naturally occurring loss-of-function variants in the PCSK9 gene result in lifelong lower LDL cholesterol (LDL-C) levels and significantly lower risk of atherosclerotic cardiovascular disease (ASCVD), providing strong genetic validation of PCSK9 as a therapeutic target. This insight has driven the development of therapies directed at PCSK9 for the management of hypercholesterolaemia, particularly in patients who fail to meet LDL-C targets despite maximally …


Proteomic Signatures Of Cardiac Dysfunction Among People With Diabetes: The Atherosclerosis Risk In Communities Study, Justin B Echouffo-Tcheugui, Chiadi E Ndumele, Jingsha Chen, Mary R Rooney, Keenan A Walker, Pascal Schlosser, Kuni Matsushita, Morgan E Grams, Christie C Ballantyne, Ron C Hoogeveen, Eric Boerwinkle, Bing Yu, Amil M Shah, Ruth F Dubin, Rajat Deo, Yue Ren, Jerome I Rotter, Kent D Taylor, Wendy S Post, Peter Ganz, Elizabeth Selvin, Josef Coresh Mar 2026

Proteomic Signatures Of Cardiac Dysfunction Among People With Diabetes: The Atherosclerosis Risk In Communities Study, Justin B Echouffo-Tcheugui, Chiadi E Ndumele, Jingsha Chen, Mary R Rooney, Keenan A Walker, Pascal Schlosser, Kuni Matsushita, Morgan E Grams, Christie C Ballantyne, Ron C Hoogeveen, Eric Boerwinkle, Bing Yu, Amil M Shah, Ruth F Dubin, Rajat Deo, Yue Ren, Jerome I Rotter, Kent D Taylor, Wendy S Post, Peter Ganz, Elizabeth Selvin, Josef Coresh

Faculty, Staff and Students Publications

Background: To investigate the proteomic signatures of heart failure (HF) in diabetes. The underlying mechanisms of the elevated risk of HF in diabetes are unknown.

Methods: In 10 189 ARIC study (Atherosclerosis Risk in Communities) participants free of HF (mean age 57±7 years, 56% women, 22% Black adults, 14% with diabetes), we conducted discovery and internal validation for the associations of 4955 plasma proteins with HF by diabetes status. We performed (1) Cox regression to identify proteins associated with HF by diabetes status, (2) external validation in the MESA study (Multi-Ethnic Study of Atherosclerosis, n=5233, 633 with diabetes), and (3) …


Toward Scientific Rigor: Setting Standards For Indirect Calorimetry Analysis And Reporting, Elizabeth L Lieu, Mark A Herman, Sean M Hartig Mar 2026

Toward Scientific Rigor: Setting Standards For Indirect Calorimetry Analysis And Reporting, Elizabeth L Lieu, Mark A Herman, Sean M Hartig

Faculty, Staff and Students Publications

Indirect calorimetry determines energy expenditure by measuring respiratory gas exchange. The approach is based on the principle that nutrient metabolism consumes O2 and produces CO2 and water in predictable ratios that can be compared with heat production. Due to the impracticality and high cost of direct calorimetry, indirect calorimetry is the major approach for modern metabolic studies in preclinical models. Despite the broad adoption of this method in rodent phenotyping, the field has lacked standardized methods for analyzing, representing, and sharing these data, limiting scientific progress. The recent review in Nature Metabolism by the International Indirect Calorimetry Consensus Committee (IICCC) …


Distributed Battery-Free Bioelectronic Implants With Improved Network Power Transfer Efficiency Via Magnetoelectrics, Joshua E Woods, Fatima Alrashdan, Ellie C Chen, Wendy Tan, Mathews John, Lukas Jaworski, Drew Bernard, Allison Post, Angel Moctezuma-Ramirez, Abdelmotagaly Elgalad, Alexander G Steele, Sean M Barber, Philip J Horner, Amir H Faraji, Dimitry G Sayenko, Mehdi Razavi, Jacob T Robinson Mar 2026

Distributed Battery-Free Bioelectronic Implants With Improved Network Power Transfer Efficiency Via Magnetoelectrics, Joshua E Woods, Fatima Alrashdan, Ellie C Chen, Wendy Tan, Mathews John, Lukas Jaworski, Drew Bernard, Allison Post, Angel Moctezuma-Ramirez, Abdelmotagaly Elgalad, Alexander G Steele, Sean M Barber, Philip J Horner, Amir H Faraji, Dimitry G Sayenko, Mehdi Razavi, Jacob T Robinson

Faculty, Staff and Students Publications

Networks of miniature implants could enable simultaneous sensing and stimulation at different locations in the body, such as the heart and central or peripheral nervous system. This capability would support precise disease tracking and treatment or enable prosthetic technologies with many degrees of freedom. However, wireless power and data transfer are often inefficient through biological tissues, particularly as the number of implanted devices increases. Here we show that magnetoelectric wireless data and power transfer supports a network of millimetre-sized bioelectronic implants in which system efficiency improves with additional devices. We demonstrate wireless, battery-free networks ranging from one to six implants, …


Rab4 Spatially And Functionally Converges With Rab7 In The Degradative Endolysosomal Network, Stephen M Farmer, Shiyu Xu, Yue Yu, Xin Ye, Haoyi Yang, Jing Cai, Beatriz Rios, Wen-Wen Lin, Daniela Covarrubias, Vicky Chuong, Lili Ye, German Zylberberg, Charissa Wang, Erin Furr-Stimming, Qingchun Tong, Oguz Kanca, Hugo J Bellen, Travis I Moore, Sheng Zhang Mar 2026

Rab4 Spatially And Functionally Converges With Rab7 In The Degradative Endolysosomal Network, Stephen M Farmer, Shiyu Xu, Yue Yu, Xin Ye, Haoyi Yang, Jing Cai, Beatriz Rios, Wen-Wen Lin, Daniela Covarrubias, Vicky Chuong, Lili Ye, German Zylberberg, Charissa Wang, Erin Furr-Stimming, Qingchun Tong, Oguz Kanca, Hugo J Bellen, Travis I Moore, Sheng Zhang

Faculty, Staff and Students Publications

Rab GTPases are key regulators of endosomal trafficking in eukaryotes. In mammalian cells, Rab4 and Rab7 were shown to localize to distinct compartments, with Rab4 on early endosomes for fast recycling and Rab7 on late endosomes for degradation. Here, we show that in Drosophila, endogenous Rab4 and Rab7 extensively colocalize across tissues and developmental stages. Recruited to the same compartments through mechanisms that do not require the activity of the other, they have opposing effects on endolysosomal size: Rab4 overexpression or Rab7 impairment leads to enlarged endolysosomes, whereas Rab4 loss or constitutively active Rab7 reduces their sizes. Rab4 deficiency suppresses …


Non-Synaptic Function And Localization Of Syntaxin-Binding Protein 1 In A Mouse Model Of Stxbp1-Related Epileptic Encephalopathy, Tao Yang, Rajat Banerjee, Yamei Deng, Sheetal Jahagirdar, Joo Hyun Kim, Wu Chen, Mingshan Xue, Alexey I Nesvizhskii, Michael D Uhler, Jack M Parent, Yu Wang Mar 2026

Non-Synaptic Function And Localization Of Syntaxin-Binding Protein 1 In A Mouse Model Of Stxbp1-Related Epileptic Encephalopathy, Tao Yang, Rajat Banerjee, Yamei Deng, Sheetal Jahagirdar, Joo Hyun Kim, Wu Chen, Mingshan Xue, Alexey I Nesvizhskii, Michael D Uhler, Jack M Parent, Yu Wang

Duncan NRI Faculty and Staff Publications

Objective: De novo mutations in the syntaxin-binding protein 1 (STXBP1), encoded by STXBP1, are among the most prevalent causes of variable neurodevelopmental disorders, including epileptic encephalopathy, developmental delay, and movement disorders. Although STXBP1 has been proposed as a critical presynaptic protein controlling synaptic vesicle exocytosis, clinical phenotypes also suggest that its biological function could be more diverse.

Methods: The expression pattern of STXBP1 was studied using immunostaining in vitro and in vivo. Synaptosome isolation was performed to investigate the synaptic and non-synaptic localization of STXBP1 in the brain. STXBP1 immunoprecipitation followed by mass spectrometry (MS) was conducted to identify protein …


Prenatal Stress Induces Changes In Behavior, Hpa Axis, Inflammation, And Oxidative Stress In Adult Rats Offspring, Jorge M Aguiar-Geraldo, Jefté Peper-Nascimento, José Henrique Cararo, Taise Possamai-Della, Alexandra I Zugno, Anilkumar Pillai, João Quevedo, Samira S Valvassori Feb 2026

Prenatal Stress Induces Changes In Behavior, Hpa Axis, Inflammation, And Oxidative Stress In Adult Rats Offspring, Jorge M Aguiar-Geraldo, Jefté Peper-Nascimento, José Henrique Cararo, Taise Possamai-Della, Alexandra I Zugno, Anilkumar Pillai, João Quevedo, Samira S Valvassori

Faculty, Staff and Student Publications

Prenatal stress is related to the development of psychiatric disorders involving inflammation, oxidative stress, and hypothalamic-pituitary-adrenal (HPA) axis. Therefore, the aim of the present study was to evaluate the effects of prenatal stress on behavior, inflammation, oxidative stress, and the HPA-axis in the dams and their offspring treated with lithium. Thirteen pregnant Wistar rats were exposed to a prenatal chronic unpredictable stress protocol from the 14th day of gestation until birth. At the 60th postnatal day (PND), a treatment protocol was carried out in the offspring with lithium (intraperitoneally - 47.5 mg/kg) or saline for seven days (twice a day). …


Aggregation Of Gene Regulatory Information And Knowledge On Fair Principles Enables Discovery Of Pathogenic Gene Regulatory Variants, Keyang Yu, Haoquan Zhao, Andrea S Wilderman, Tierra R Farris, Jessie E Arce, David Chen, Andrew R Jackson, Yiran Guo, Qi Li, Bosko Jevtic, Dubravka Jevtic, Vuk Milinovic, Yuankun Zhu, Jeremy Costanza, Eric D Wenger, Christopher Nemarich, Lisa Anderson, Aleksandar Mihajlović, Kristin Ardlie, Shaine A Morris, Matthew E Roth, Deanne M Taylor, Adam C Resnick, Lilei Zhang, Aleksandar Milosavljevic Feb 2026

Aggregation Of Gene Regulatory Information And Knowledge On Fair Principles Enables Discovery Of Pathogenic Gene Regulatory Variants, Keyang Yu, Haoquan Zhao, Andrea S Wilderman, Tierra R Farris, Jessie E Arce, David Chen, Andrew R Jackson, Yiran Guo, Qi Li, Bosko Jevtic, Dubravka Jevtic, Vuk Milinovic, Yuankun Zhu, Jeremy Costanza, Eric D Wenger, Christopher Nemarich, Lisa Anderson, Aleksandar Mihajlović, Kristin Ardlie, Shaine A Morris, Matthew E Roth, Deanne M Taylor, Adam C Resnick, Lilei Zhang, Aleksandar Milosavljevic

Faculty, Staff and Students Publications

Motivation: Methods for sharing gene regulatory information and knowledge on FAIR principles, particularly in the context of tissue-specific gene regulation, remain poorly defined and implemented, hampering discovery and clinical genetic diagnosis.

Results: We specified FAIR principles for tissue-specific gene regulatory information and knowledge; implemented them by developing a registry of regulatory elements and aggregating FAIR gene regulatory information from several major sources; developed computational tools that utilize these FAIR resources; and demonstrated their utility by associating gene regulatory variants with major subtypes of congenital heart disease.


Bone Marrow Endosteum Houses Hedgehog-Susceptible Dlx5-Expressing Osteoblast Precursor Cells, Keita Kondo, Yuki Matsushita, Shion Orikasa, Yuta Nakai, Aiko Kuroda, Shinsuke Ohba, Wanida Ono, Noriaki Ono Feb 2026

Bone Marrow Endosteum Houses Hedgehog-Susceptible Dlx5-Expressing Osteoblast Precursor Cells, Keita Kondo, Yuki Matsushita, Shion Orikasa, Yuta Nakai, Aiko Kuroda, Shinsuke Ohba, Wanida Ono, Noriaki Ono

Faculty, Staff and Student Publications

The bone marrow endosteum provides a robust source of bone-making osteoblasts by housing various types of osteoblast precursor cells, including endosteal stem cells expressing fibroblast growth factor receptor 3 (Fgfr3) and their downstream progenitor cell populations. In fetal bone development, Dlx5 marks early perichondrial cells that populate the diaphyseal bone and marrow stroma in the postnatal stages. However, the location of Dlx5-expressing cells in the postnatal bone marrow and how they contribute to osteogenesis remain undefined. Here, we show that Dlx5


Impella 5.5 Versus Heartmate 3 In Left Ventricular Unloading, Hannah Frederick, Douglas Tran, Erik Sorenson, H. Todd Massey, Albert Hicks, Manjula Ananthram, Bartley P. Griffith, Aakash Shah Feb 2026

Impella 5.5 Versus Heartmate 3 In Left Ventricular Unloading, Hannah Frederick, Douglas Tran, Erik Sorenson, H. Todd Massey, Albert Hicks, Manjula Ananthram, Bartley P. Griffith, Aakash Shah

The VAD Journal

The Impella 5.5 (Abiomed) is increasingly used as a bridge to durable left ventricular assist device (LVAD) implantation in advanced heart failure, yet most studies focus on survival and transition success rather than left ventricular (LV) unloading or valvular effects. This study addresses this gap by comparing Impella 5.5 and HeartMate 3 (HM3, Abbott) in terms of unloading and cardiac support at similar flow rates. We conducted a retrospective study of nine patients who received Impella 5.5 before HM3 implantation. The primary outcome was the degree of LV unloading, as assessed by changes in left ventricular end-diastolic diameter (LVEDD). There …


Merritt-Putnam Symposium | Tumor-Associated Epilepsy And Epilepsy-Associated Tumors: Exploring The Bidirectional Crosstalk Between Tumors And Seizures, Tracy A Bedrosian, Michael Wong, Erin L Heinzen, Benjamin Deneen, Catherine A Christian-Hinman Feb 2026

Merritt-Putnam Symposium | Tumor-Associated Epilepsy And Epilepsy-Associated Tumors: Exploring The Bidirectional Crosstalk Between Tumors And Seizures, Tracy A Bedrosian, Michael Wong, Erin L Heinzen, Benjamin Deneen, Catherine A Christian-Hinman

Faculty, Staff and Students Publications

Links between cancerous and noncancerous brain tumors and epilepsy have long been recognized. However, recent clinical and preclinical studies emphasize that not only do tumors impinge on surrounding brain tissue in ways that promote hyperexcitability and epileptogenesis, but that neural activity also influences tumor progression. In this review, inspired by the Merritt-Putnam Symposium of the 2025 meeting of the American Epilepsy Society, we present a cross-disciplinary dialog between cancer and epilepsy research, including discussion of tumors and epilepsies that are more prominent in pediatric versus adult populations. First, we discuss the neuropathology, genetics, and surgical outcomes of epileptogenic brain tumors, …


Coordinated Stimulation Of Axon Regenerative And Neurodegenerative Transcriptional Programs By Atf4 Following Optic Nerve Injury, Preethi Somasundaram, Madeline M Farley, Melissa A Rudy, Katya Sigal, Andoni I Asencor, David G Stefanoff, Malay Shah, Puneetha Goli, Jenny Heo, Shufang Wang, Nicholas M Tran, Trent A Watkins Feb 2026

Coordinated Stimulation Of Axon Regenerative And Neurodegenerative Transcriptional Programs By Atf4 Following Optic Nerve Injury, Preethi Somasundaram, Madeline M Farley, Melissa A Rudy, Katya Sigal, Andoni I Asencor, David G Stefanoff, Malay Shah, Puneetha Goli, Jenny Heo, Shufang Wang, Nicholas M Tran, Trent A Watkins

Faculty, Staff and Students Publications

Stress signaling is important for determining the fates of neurons following axonal insults. Previously, we showed that the stress-responsive kinase PERK contributes to injury-induced neurodegeneration (Larhammar et al., 2017). Here, we show that PERK acts primarily through activating transcription factor-4 (ATF4) to stimulate not only pro-apoptotic but also pro-regenerative responses following optic nerve damage. Using conditional knockout mice, we find an extensive PERK/ATF4-dependent transcriptional response that includes canonical ATF4 target genes and modest contributions by C/EBP Homologous Protein (CHOP). Overlap with c-Jun-dependent transcription suggests interplay with a parallel stress pathway that orchestrates regenerative and apoptotic responses. Accordingly, neuronal knockout of …


Celf1 Is A Non-Canonical Eif4e Binding Protein That Promotes Translation Of Epithelial-Mesenchymal Transition Effector Mrnas, Arindam Chaudhury, Natee Kongchan, Shebna A Massey, Rajesh Sharma, Rituraj Pal, Na Zhao, Phoebe Tsoi, Yingmin Zhu, Emuejevoke Olokpa, Sufeng Mao, Sonia Del Rincon, Lucas C Reineke, Richard E Lloyd, Marco Sardiello, Jeffrey M Rosen, Choel Kim, Josephine C Ferreon, Joel R Neilson Feb 2026

Celf1 Is A Non-Canonical Eif4e Binding Protein That Promotes Translation Of Epithelial-Mesenchymal Transition Effector Mrnas, Arindam Chaudhury, Natee Kongchan, Shebna A Massey, Rajesh Sharma, Rituraj Pal, Na Zhao, Phoebe Tsoi, Yingmin Zhu, Emuejevoke Olokpa, Sufeng Mao, Sonia Del Rincon, Lucas C Reineke, Richard E Lloyd, Marco Sardiello, Jeffrey M Rosen, Choel Kim, Josephine C Ferreon, Joel R Neilson

Faculty, Staff and Students Publications

Mounting evidence is revealing an increasing complexity of gene regulation at the level of messenger RNA (mRNA) translation. Within mammalian cells, canonical cap-dependent mRNA translation depends on the eIF4F complex, consisting of the m7G mRNA cap-binding protein eukaryotic initiation factor 4E (eIF4E), the helicase eIF4A (eIF4A), and the eIF4G (eIF4G1) scaffolding protein. eIF4G1 additionally binds poly(A) binding protein (PABPC1) to facilitate mRNA circularization and nucleates pre-translation initiation complex assembly to initiate ribosomal scanning. In breast epithelial cells, the CELF1 RNA-binding protein specifically promotes the translation of select epithelial-to-mesenchymal transition (EMT) effector mRNAs by binding GU-rich elements (GREs) within their 3' …


Innovative Approaches For Lung Cancer Screening And Interception, Jianjun Zhang, Matthew D Park, Tej Pandya, Elaine Shum, Jia Wu, Simon Heeke, Ramin Salehi-Rad, Thomas U Marron, Zhubo Wei, Hui Li, Torsten G Blum, John V Heymach, Steven M Dubinett, Pan-Chyr Yang, Charles Swanton, Miriam Merad Feb 2026

Innovative Approaches For Lung Cancer Screening And Interception, Jianjun Zhang, Matthew D Park, Tej Pandya, Elaine Shum, Jia Wu, Simon Heeke, Ramin Salehi-Rad, Thomas U Marron, Zhubo Wei, Hui Li, Torsten G Blum, John V Heymach, Steven M Dubinett, Pan-Chyr Yang, Charles Swanton, Miriam Merad

Faculty, Staff and Student Publications

Lung cancer remains the leading cause of cancer-related deaths worldwide, partly because many patients are diagnosed at late stages, highlighting the urgent need for effective early detection and intervention strategies. Low-dose computed tomography (LDCT)-based screening reduces lung cancer mortality in high-risk populations defined by age and smoking history; however, the uptake of LDCT remains low among eligible individuals. Compounding this issue, modelling studies estimate that nearly half of lung cancers occur in individuals who do not meet eligibility criteria for LDCT-based lung cancer screening under current guidelines. Moreover, LDCT-based screening has inherent limitations, including a high rate of false-positive results …


Supt16h-Associated Neurodevelopmental Disorder And Neurocristopathy: Genetic And Phenotypic Spectrum, Eunhye Lee, Seungmin Sim, Hee-Jung Choi, Eugene Y Liang, Carolyn Le, Roya Bina, Ryan Cohen, Elizabeth George, Soo Yeon Kim, Gifty Bhat, Erin Falsey, Richard Sidlow, Kristin Clinard, Shay Ben-Shachar, Eleina England, Beatriz Menendez, Isabella Herman, Shelly Nielsen, Jaya Punetha, Priya Bhola, J Austin Hamm, Megan A Keeney, Nike Sitzman, Sara Berger, Lakshmi Mehta, Alison J Conn, Lilian Downie, Myla Ashfaq, Hope Northrup, Ange-Line Bruel, Sylvie Odent, Justin O Szot, Noelia Nunez Martinez, Sunju Park, Julie Refkin, Jean-Marc Good, Fabienne Maurer, Cédric Le Caignec, David J Coman, Erin Anderson, Linda J Richards, Ryan J Dean, Caleb Yang, Chulwon Choi, Byung Joon Hwang, Jin Sook Lee, William B Dobyns, Murim Choi, Elliott H Sherr, Jong-Hee Chae, Yun Kee, Emanuela Argilli Feb 2026

Supt16h-Associated Neurodevelopmental Disorder And Neurocristopathy: Genetic And Phenotypic Spectrum, Eunhye Lee, Seungmin Sim, Hee-Jung Choi, Eugene Y Liang, Carolyn Le, Roya Bina, Ryan Cohen, Elizabeth George, Soo Yeon Kim, Gifty Bhat, Erin Falsey, Richard Sidlow, Kristin Clinard, Shay Ben-Shachar, Eleina England, Beatriz Menendez, Isabella Herman, Shelly Nielsen, Jaya Punetha, Priya Bhola, J Austin Hamm, Megan A Keeney, Nike Sitzman, Sara Berger, Lakshmi Mehta, Alison J Conn, Lilian Downie, Myla Ashfaq, Hope Northrup, Ange-Line Bruel, Sylvie Odent, Justin O Szot, Noelia Nunez Martinez, Sunju Park, Julie Refkin, Jean-Marc Good, Fabienne Maurer, Cédric Le Caignec, David J Coman, Erin Anderson, Linda J Richards, Ryan J Dean, Caleb Yang, Chulwon Choi, Byung Joon Hwang, Jin Sook Lee, William B Dobyns, Murim Choi, Elliott H Sherr, Jong-Hee Chae, Yun Kee, Emanuela Argilli

Faculty, Staff and Student Publications

SUPT16H encodes a subunit of the FACT (FAcilitates Chromatin Transcription) complex, a histone chaperone essential for maintaining chromatin integrity during transcription, replication, and DNA repair. Pathogenic de novo SUPT16H missense variants have previously been linked to neurodevelopmental disorders in eight individuals. Here, we expand the genotypic and phenotypic spectrum by identifying 24 additional individuals harboring ultrarare heterozygous missense or truncating variants, who share overlapping clinical features including intellectual disability, autism spectrum disorder, hypotonia, and characteristic craniofacial dysmorphism. To elucidate the underlying mechanisms, we generated a supt16h knockout zebrafish model using CRISPR/Cas9. The supt16h loss-of-function (LOF) model recapitulated key patient phenotypes …


Cerebral Hypoperfusion Causes Behavioral Changes And Impairs The Rod Photoreceptor Pathway In The Retina Of Aged Mice, Spencer Talmage Barney, Daniela Becerril, Sheelu Monga, Samantha Flores, Audrey Lee, Marlon Fraga Mattos, Ross M Perez, Frank W Blixt, Michael Maniskas, Shuning Huang, Hongyu Wu, Chunfeng Tan, Louise D Mccullough, Elizabeth Zuniga-Sanchez, Jose Felix Moruno-Manchon Feb 2026

Cerebral Hypoperfusion Causes Behavioral Changes And Impairs The Rod Photoreceptor Pathway In The Retina Of Aged Mice, Spencer Talmage Barney, Daniela Becerril, Sheelu Monga, Samantha Flores, Audrey Lee, Marlon Fraga Mattos, Ross M Perez, Frank W Blixt, Michael Maniskas, Shuning Huang, Hongyu Wu, Chunfeng Tan, Louise D Mccullough, Elizabeth Zuniga-Sanchez, Jose Felix Moruno-Manchon

Faculty, Staff and Student Publications

Gradual reduction of cerebral blood flow occurs with aging, and it is a major cause of vascular dementia, a group of dementias with a cerebrovascular component. Interestingly, patients who have suffered a vascular insult may develop retinopathy, which may occur as an early symptom of vascular dementia. Several rodent models using young animals have been generated to mimic retinopathy caused by cerebral hypoperfusion; however, given that aging is an important factor in developing vascular dementia and hypoperfusion retinopathy, we propose to use aged (17-month-old) mice in a model of cerebral hypoperfusion. In this model, we implant two metallic micro-coils (0.16 …


Human Microglia In Brain Assembloids Display Region-Specific Diversity And Respond To Hyperexcitable Neurons Carrying Scn2a Mutation, Jiaxiang Wu, Xiaoling Chen, Jingliang Zhang, Kyle Wettschurack, Morgan Robinson, Weihao Li, Yuanrui Zhao, Ye-Eun Yoo, Brody A Deming, Yue Shu, Akila D Abeyaratna, Zhefu Que, Dongshu Du, Matthew Tegtmeyer, Chongli Yuan, William C Skarnes, Zhong-Yin Zhang, Jean-Christophe Rochet, Long-Jun Wu, Yang Yang Feb 2026

Human Microglia In Brain Assembloids Display Region-Specific Diversity And Respond To Hyperexcitable Neurons Carrying Scn2a Mutation, Jiaxiang Wu, Xiaoling Chen, Jingliang Zhang, Kyle Wettschurack, Morgan Robinson, Weihao Li, Yuanrui Zhao, Ye-Eun Yoo, Brody A Deming, Yue Shu, Akila D Abeyaratna, Zhefu Que, Dongshu Du, Matthew Tegtmeyer, Chongli Yuan, William C Skarnes, Zhong-Yin Zhang, Jean-Christophe Rochet, Long-Jun Wu, Yang Yang

The Brown Foundation: Institute of Molecular Medicine

Microglia critically shape neuronal circuit development and function, yet their region-specific properties and roles in distinct circuits of the human brain remain poorly understood. In this study, we generated region-specific brain organoids (cortical, striatal, and midbrain), each integrated with human microglia, to fill this critical gap. Single-cell RNA sequencing uncovered six distinct microglial subtypes exhibiting unique regional signatures, including a subtype highly enriched for the GABAB receptor gene within striatal organoids. To investigate the contributions of microglia to neural circuitry, we created microglia-incorporated midbrain-striatal assembloids, modeling a core circuit node for many neuropsychiatric disorders, including autism. Using chemogenetics to activate …


Steroid Receptor Coactivators - From Basic Research To Translational Opportunities, Yosef Gilad, Sang Jun Han, David M Lonard Feb 2026

Steroid Receptor Coactivators - From Basic Research To Translational Opportunities, Yosef Gilad, Sang Jun Han, David M Lonard

Faculty, Staff and Students Publications

The concept of nuclear receptor (NR) coregulation was proposed nearly two decades before it was experimentally validated. According to this model, NRs - executors of a vast array of transcriptional programs - do not act independently but are governed by a network of regulatory proteins that either activate or repress their biological function. NRs identify the genes to be regulated. However, coregulators ultimately serve as the true controllers of transcriptional outcomes. They recruit cofactors and coordinate the activity of transcriptional complexes, thereby shaping NR-mediated gene expression beyond NRs' intrinsic functionality. The Steroid Receptor Coactivator (SRC) family is the most extensively …


The Neuroprotective Effects Of Alpha-Tocopherol As An Anti-Inflammatory Agent: Mechanistic Insights And Therapeutic Challenges, Megumi H Seese, Yuanzhong Xu Feb 2026

The Neuroprotective Effects Of Alpha-Tocopherol As An Anti-Inflammatory Agent: Mechanistic Insights And Therapeutic Challenges, Megumi H Seese, Yuanzhong Xu

The Brown Foundation: Institute of Molecular Medicine

Vitamin E (alpha-tocopherol, αToc), an antioxidant fat-soluble vitamin that prevents lipid peroxidation and modulates pro-inflammatory cytokine production, is well-known to be critical for neuroprotection. However, the underlying mechanism remains poorly understood. Accumulating evidence demonstrates that αToc influences neuroinflammatory processes. Here, we review recent research progress on the effects of αToc on neuroinflammation. Preclinical studies included in this narrative review were identified through PubMed searches using the keywords "alpha-tocopherol AND neuroinflammation or alpha-tocopherol AND brain AND inflammation". While many studies support a neuroprotective role of αToc, the magnitude and direction of its effects vary substantially depending on dosage, route of administration, …


Adipocyte-Specific Deletion Of Sine Oculis Homeobox Homolog 1 Inhibits Lipolysis And Reduces Skin Fibrosis, Nancy Wareing, Tingting W Mills, Scott Collum, Minghua Wu, Lucy Revercomb, René Girard, Hui Liu, Alexes Daquinag, Mikhail Kolonin, Marka Lyons, Brian Skaug, Weizhen Bi, Meer A Ali, Haniyeh Koochak, Anthony R Flores, Yuntao Yang, W Jim Zheng, William R Swindell, Shervin Assassi, Harry Karmouty-Quintana Feb 2026

Adipocyte-Specific Deletion Of Sine Oculis Homeobox Homolog 1 Inhibits Lipolysis And Reduces Skin Fibrosis, Nancy Wareing, Tingting W Mills, Scott Collum, Minghua Wu, Lucy Revercomb, René Girard, Hui Liu, Alexes Daquinag, Mikhail Kolonin, Marka Lyons, Brian Skaug, Weizhen Bi, Meer A Ali, Haniyeh Koochak, Anthony R Flores, Yuntao Yang, W Jim Zheng, William R Swindell, Shervin Assassi, Harry Karmouty-Quintana

Faculty, Staff and Student Publications

Dermal fibrosis is a cardinal feature of systemic sclerosis (SSc) for which there are limited Systemic sclerosis (SSc) is characterized by dermal fibrosis accompanied by loss of dermal white adipose tissue (DWAT), yet the mechanisms linking adipocyte depletion to fibroblast activation remain unclear. Here we identify the transcription factor SIX1 as a central regulator coupling adipogenic repression with profibrotic signaling. SIX1 expression was increased in skin biopsies from two independent SSc cohorts and localized to fibroblast and perivascular stromal cells. In mice, ubiquitous or adipocyte-specific deletion of Six1 preserved DWAT, reduced collagen accumulation, and selectively decreased pro-fibrotic mediators. In cultured …


Sex-Specific Differences In Mediobasal Hypothalamus In Response To Nutritional States, Jonathan C Bean, Jinjing Jian, Tzu-Chiao Lu, Hailan Liu, Kristine Conde, Darah A Threat, Sanika V Jossy, Megan E Burt, Jingjing Cheng, Yue Deng, Xing Fang, Xiaoyu Geng, Junying Han, Yongxiang Li, Hesong Liu, Qingzhuo Liu, Yutian Liu, Yuhan Shi, Longlong Tu, Mengjie Wang, Xu Xu, Yuxue Yang, Meng Yu, Xinming Liu, Meixin Sun, Fuhui Wang, Olivia Z Ginnard, Yongjie Yang, Yang He, Chunmei Wang, Yanyan Qi, Hongjie Li, Yong Xu Feb 2026

Sex-Specific Differences In Mediobasal Hypothalamus In Response To Nutritional States, Jonathan C Bean, Jinjing Jian, Tzu-Chiao Lu, Hailan Liu, Kristine Conde, Darah A Threat, Sanika V Jossy, Megan E Burt, Jingjing Cheng, Yue Deng, Xing Fang, Xiaoyu Geng, Junying Han, Yongxiang Li, Hesong Liu, Qingzhuo Liu, Yutian Liu, Yuhan Shi, Longlong Tu, Mengjie Wang, Xu Xu, Yuxue Yang, Meng Yu, Xinming Liu, Meixin Sun, Fuhui Wang, Olivia Z Ginnard, Yongjie Yang, Yang He, Chunmei Wang, Yanyan Qi, Hongjie Li, Yong Xu

Children’s Nutrition Research Center Staff Publications

The arcuate nucleus of the hypothalamus plays a central role in sensing and integrating nutritional, hormonal, and neural signals that regulate feeding, energy homeostasis, growth, and reproduction, all of which show pronounced sex differences. However, the cellular mechanisms underlying these responses remain poorly understood. We performed snRNA-seq of the mediobasal hypothalamus, focusing on the arcuate nucleus, in female and male mice under different nutritional states. Analysis of 42 cell types revealed that Agrp neurons were most sensitive to nutritional changes, dopaminergic neurons showed strong sex-specific differences, and KNDy neurons were highly responsive to both sex and nutrition. Pomc neurons displayed …


Unbalanced Chromatin Binding Of Polycomb Complexes Drives Neurodevelopmental Disorders, Rodrigo L Borges, Gretter González-Blanco, Harikumar Arigela, Yingyu Huang, Lucas D Caeiro, Nikolai Fattakhov, Stefano Lepore, Liliana Garcia-Martinez, Matea Maurice, Pushti D Mehta, Emily J Park, Kailynn Macgillivray, Jevithen Nehru, Matthew Chau, Maria C Robayo, Clemer Abad, Alicia Bilbao-Martinez, Fabiola Monteiro, Xi Luo, Song Tan, Daniel Bilbao, Simone Sidoli, Bruno Di Stefano, Katherina Walz, Arneet L Saltzman, Ramiro E Verdun, Ramin Shiekhattar, Lluis Morey Feb 2026

Unbalanced Chromatin Binding Of Polycomb Complexes Drives Neurodevelopmental Disorders, Rodrigo L Borges, Gretter González-Blanco, Harikumar Arigela, Yingyu Huang, Lucas D Caeiro, Nikolai Fattakhov, Stefano Lepore, Liliana Garcia-Martinez, Matea Maurice, Pushti D Mehta, Emily J Park, Kailynn Macgillivray, Jevithen Nehru, Matthew Chau, Maria C Robayo, Clemer Abad, Alicia Bilbao-Martinez, Fabiola Monteiro, Xi Luo, Song Tan, Daniel Bilbao, Simone Sidoli, Bruno Di Stefano, Katherina Walz, Arneet L Saltzman, Ramiro E Verdun, Ramin Shiekhattar, Lluis Morey

Faculty, Staff and Students Publications

The prevalence of neurodevelopmental disorders (NDDs) in children is increasing, yet their underlying causes remain largely unknown. We identified heterozygous mutations in the Polycomb repressive complex 1 (PRC1) E3 ligases RING1 and RNF2 in individuals with NDDs and revealed distinct mechanisms by which they compromise PRC1 activity. We developed cellular and mouse models carrying the Ring1b


Syndecan-1-Targeted Therapeutic Antibody Impairs Macropinocytosis And Elicits Antitumor Immunity In Pancreatic Cancer, Zecheng Yang, Madelaine S Theardy, Shuaitong Chen, Yongkun Wei, Mitsunobu Takeda, Yue Zeng, Xiaofei Wang, Jun Yao, Jennifer Li, Prapassorn Thirasastr, Jangho Park, Yangxi Zheng, Long T Vien, Khalida M Wani, Huamin Wang, Sisi Gao, Tim Heffernan, Lawrence Kwong, Ignacio I Wistuba, Laura Bover, Giulio F Draetta, Haoqiang Ying, Wantong Yao Feb 2026

Syndecan-1-Targeted Therapeutic Antibody Impairs Macropinocytosis And Elicits Antitumor Immunity In Pancreatic Cancer, Zecheng Yang, Madelaine S Theardy, Shuaitong Chen, Yongkun Wei, Mitsunobu Takeda, Yue Zeng, Xiaofei Wang, Jun Yao, Jennifer Li, Prapassorn Thirasastr, Jangho Park, Yangxi Zheng, Long T Vien, Khalida M Wani, Huamin Wang, Sisi Gao, Tim Heffernan, Lawrence Kwong, Ignacio I Wistuba, Laura Bover, Giulio F Draetta, Haoqiang Ying, Wantong Yao

Faculty, Staff and Student Publications

Pancreatic ductal adenocarcinoma (PDAC) remains one of the deadliest malignancies, with a 5-year survival rate of just 13%. While the development and early clinical use of small molecules targeting oncogenic KRAS mutations, key drivers of PDAC, have shown promise, resistance to these targeted therapies remains a significant challenge. We recently identified Syndecan-1 (SDC1), a highly expressed heparan sulfate proteoglycan, as a critical KRAS effector protein that promotes nutrient salvage and tumor growth. Here, we report the development of a human-specific monoclonal antibody (anti-SDC1 mAb) that inhibits PDAC cell proliferation in vitro and suppresses PDAC tumor growth in vivo. Mechanistically, …


Spatiotemporal Histogenesis Of The Developing Human Cerebellum Reveals Dynamic Layering Of Bergmann Glia, Guanyi He, Simon Du, Henry Tan, Sri Yellampally, Anders W Erickson, Virginia Fernandez, Ferechte Encha-Razavi, Kimberley A Phillips, Christine Haberler, Nicole Amberg, Victor Borrell, Paul A Northcott, Michael D Taylor, Kathleen J Millen, Parthiv Haldipur Feb 2026

Spatiotemporal Histogenesis Of The Developing Human Cerebellum Reveals Dynamic Layering Of Bergmann Glia, Guanyi He, Simon Du, Henry Tan, Sri Yellampally, Anders W Erickson, Virginia Fernandez, Ferechte Encha-Razavi, Kimberley A Phillips, Christine Haberler, Nicole Amberg, Victor Borrell, Paul A Northcott, Michael D Taylor, Kathleen J Millen, Parthiv Haldipur

Faculty, Staff and Students Publications

Bergmann glia (BG) are a specialized glial population essential for cerebellar development, yet their developmental timeline and molecular identity in the human cerebellum remain poorly understood. Here, we combined detailed histopathological analysis with spatial transcriptomics and single-nucleus RNA sequencing to generate a developmental atlas of human cerebellar BG. Histology revealed that BG emerge around 11 post-conception weeks (PCW), initially serving as a scaffold for Purkinje cells (PCs) migrating into the PC layer of the cerebellar cortex. Following the establishment of a multilayered PC arrangement, BG form a distinct parallel layer separated from the PCs by the lamina dissecans (LD), with …


Sting-Induced Blood-Brain Barrier Opening Combined With Radiotherapy Potentiates Antitumor Response In A High-Grade Glioma Model, Shashwat Tripathi, Hinda Najem, Lisa Hurley, Ruochen Du, Crismita Dmello, Heba Ali, Kathleen Mccortney, Karl J Habashy, Peng Zhang, Craig M Horbinski, Lara Leoni, Ryan J Avery, Rimas V Lukas, Timothy L Sita, David R Raleigh, Sean Sachdev, Roger Stupp, Maciej S Lesniak, David M Ashley, Daniele Procissi, Michael A Curran, Irina Balyasnikova, Amy B Heimberger Feb 2026

Sting-Induced Blood-Brain Barrier Opening Combined With Radiotherapy Potentiates Antitumor Response In A High-Grade Glioma Model, Shashwat Tripathi, Hinda Najem, Lisa Hurley, Ruochen Du, Crismita Dmello, Heba Ali, Kathleen Mccortney, Karl J Habashy, Peng Zhang, Craig M Horbinski, Lara Leoni, Ryan J Avery, Rimas V Lukas, Timothy L Sita, David R Raleigh, Sean Sachdev, Roger Stupp, Maciej S Lesniak, David M Ashley, Daniele Procissi, Michael A Curran, Irina Balyasnikova, Amy B Heimberger

Faculty, Staff and Student Publications

Radiation therapy (RT) is the standard of care for glioblastoma but is not curative. Triggering the cGAS/stimulator of interferon genes (STING) pathway with potent agonists, such as 8803, exerts activity across high-grade glioma preclinical models. To determine if the combination of 8803 with RT warrants consideration in the up-front treatment setting and to clarify the underlying mechanisms of therapeutic activity, C57BL/6J mice harboring intracerebral CT-2A or QPP8v gliomas were treated with RT, intratumoral 8803, or both. The treatment with the combination resulted in 80% long-term survival in the CT-2A model but not in the radiation-resistant QPP8v model. This therapeutic effect …


Mutant Kras In Brain Endothelial Cells Promotes Vascular Inflammation And Impairs Vascular Integrity In Brain Arteriovenous Malformation, Jung-Eun Park, Bridger H Freeman, Hyejin Park, Sehee Kim, Adrian E Bafor, Ohnmar Myint, Song Gao, Zhen Xu, Jakob Körbelin, Jaroslaw Aronowski, Peng Roc Chen, Eunhee Kim, Eun S Park Feb 2026

Mutant Kras In Brain Endothelial Cells Promotes Vascular Inflammation And Impairs Vascular Integrity In Brain Arteriovenous Malformation, Jung-Eun Park, Bridger H Freeman, Hyejin Park, Sehee Kim, Adrian E Bafor, Ohnmar Myint, Song Gao, Zhen Xu, Jakob Körbelin, Jaroslaw Aronowski, Peng Roc Chen, Eunhee Kim, Eun S Park

Faculty, Staff and Student Publications

Somatic KRAS (KRASG12V) mutation in endothelial cells (EC) induces brain arteriovenous malformation (bAVM) that could lead to vascular instability and ultimately bleeding. However, the causes of bAVM instability remain unclear. Here we demonstrate that KRASG12V expressing cultured ECs (KRAS-G12V-EC) have increased expression of pro-inflammatory mediators and reduced expression of blood-brain-barrier (BBB) junction constituents. The conditioned medium from KRAS-G12V-EC can activate BV2-microglia (BV2-MG) and conditioned media from this primed BV2-MG can compromise the expression of EC-junction constituents when added to wild-type ECs. In an in vitro BBB model, KRAS-G12V-EC form a dysfunctional EC barrier that is further disrupted, leading to lower …


First Detection Of Xylazine In Texas Wastewater And Its Association With Fentanyl Use, Katherine M Joseph, Xuan Qin, Dhvani Parikh, Feng Li, John Balliew, Kristina D Mena, Fuqing Wu Feb 2026

First Detection Of Xylazine In Texas Wastewater And Its Association With Fentanyl Use, Katherine M Joseph, Xuan Qin, Dhvani Parikh, Feng Li, John Balliew, Kristina D Mena, Fuqing Wu

Faculty, Staff and Students Publications

Xylazine is a veterinary sedative increasingly found in the U.S. illicit drug supply and is a growing public health concern due to its association with overdose events. To investigate its spatial distribution and relationship with fentanyl use, we analyzed 124 wastewater samples from four treatment plants serving the City of El Paso, Texas, over 13 months (June 2023 to July 2024) using liquid chromatography tandem mass spectrometry. Xylazine detections varied across sewersheds, with detection rates of 29.0%, 12.9%, 9.7%, and 0% and peak loads of 110±40 μg/day/1000 people. Norfentanyl (a primary fentanyl metabolite) was detected in all samples (100%), reaching …


Targeting Oxalate Production By Combining Enzyme Inhibition And Proteolysis Activation: A Novel Therapeutic Approach For Primary Hyperoxaluria Type 1, Fabio Arias, Sumati Rohilla, Yudibeth Sixto-López, Koral S E Richard, Sandeep Das, Sumit K Anand, Pilar Maria Luque-Navarro, Guillermo Bañuelos-Sanchez, Juan Luis Pacheco-García, Reethika Gade, M Peyton Mckinney, Dhananjay Kumar, Jemiah Maxie, W Rylan Corr, Nilesh Pandey, Harpreet Kaur, Jibin Ding, Lin Tan, Elisha Scott, Hyung Nam, Eyal Gottlieb, A Wayne Orr, Nirav Dhanesha, Arif Yurdagul, Angel L Pey, Francisco Franco-Montalbán, José A Gómez Vidal, Oren Rom, Mónica Díaz-Gavilán Feb 2026

Targeting Oxalate Production By Combining Enzyme Inhibition And Proteolysis Activation: A Novel Therapeutic Approach For Primary Hyperoxaluria Type 1, Fabio Arias, Sumati Rohilla, Yudibeth Sixto-López, Koral S E Richard, Sandeep Das, Sumit K Anand, Pilar Maria Luque-Navarro, Guillermo Bañuelos-Sanchez, Juan Luis Pacheco-García, Reethika Gade, M Peyton Mckinney, Dhananjay Kumar, Jemiah Maxie, W Rylan Corr, Nilesh Pandey, Harpreet Kaur, Jibin Ding, Lin Tan, Elisha Scott, Hyung Nam, Eyal Gottlieb, A Wayne Orr, Nirav Dhanesha, Arif Yurdagul, Angel L Pey, Francisco Franco-Montalbán, José A Gómez Vidal, Oren Rom, Mónica Díaz-Gavilán

Faculty, Staff and Student Publications

Primary hyperoxaluria type 1 (PH1) is a rare genetic disorder caused by hepatic oxalate overproduction due to alanine-glyoxylate aminotransferase (AGXT) deficiency. Therapeutic strategies targeting glycolate oxidase (GO) and lactate dehydrogenase A (LDHA), key enzymes in glyoxylate metabolism, have shown promise in reducing oxalate burden. However, recently approved siRNA therapies remain limited by high cost, unfavorable pharmacokinetics, and limited global accessibility. We report the development of compound 2, a dual GO/LDHA inhibitor (K i = 390 and 40 nM, respectively) that also promotes hydrophobic tag-mediated autophagic degradation of LDHA. Its efficacy was evaluated in Agxt –/– mice, both in primary …


Tumor-Immune-Neural Circuit Disrupts Energy Homeostasis In Cancer Cachexia, Xiuhui Shi, Alex X Arreola, Zhijun Zhou, Jingxuan Yang, Mingyang Liu, Yang Cai, Yu Ren, Hao Yuan, Qun Chen, Xinjie Chen, Xinyu Yang, Yimei Meng, Jingyi Wang, Wenyi Luo, Michael C Rudolph, Rohan Varshney, Kar-Ming Fung, Chao Xu, Wei R Chen, Michael S Bronze, Lei Zheng, Yi-Ping Li, Courtney W Houchen, Yuqing Zhang, Min Li Feb 2026

Tumor-Immune-Neural Circuit Disrupts Energy Homeostasis In Cancer Cachexia, Xiuhui Shi, Alex X Arreola, Zhijun Zhou, Jingxuan Yang, Mingyang Liu, Yang Cai, Yu Ren, Hao Yuan, Qun Chen, Xinjie Chen, Xinyu Yang, Yimei Meng, Jingyi Wang, Wenyi Luo, Michael C Rudolph, Rohan Varshney, Kar-Ming Fung, Chao Xu, Wei R Chen, Michael S Bronze, Lei Zheng, Yi-Ping Li, Courtney W Houchen, Yuqing Zhang, Min Li

Faculty, Staff and Student Publications

Cancer-induced cachexia and anorexia are debilitating complications across many cancers, yet effective treatments remain limited due to a poor understanding of the underlying mechanisms. Here, we identify an uncharacterized tumor-immune-neural circuit driving these syndromes, centered on growth and differentiation factor 15 (GDF15). Using genetically engineered mouse models, we find that loss of GDF15 protects against appetite loss, muscle wasting, and fat loss in pancreatic, lung, and skin cancers. Single-cell RNA sequencing reveals macrophages as a major source of GDF15, induced by tumor-derived colony-stimulating factor 1 (CSF1). GDF15 acts via the central nervous system to enhance β-adrenergic signaling in the tumor …