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Articles 1261 - 1290 of 13810
Full-Text Articles in Entire DC Network
Inhibition Of Osteosarcoma Lung Metastases By Β-Glucan And Cd40 Agonist Is Mediated By Activation Of Macrophages And Nk Cells, Pradeep Shrestha, Rejeena Shrestha, Eugenie S Kleinerman
Inhibition Of Osteosarcoma Lung Metastases By Β-Glucan And Cd40 Agonist Is Mediated By Activation Of Macrophages And Nk Cells, Pradeep Shrestha, Rejeena Shrestha, Eugenie S Kleinerman
Faculty, Staff and Student Publications
Background: Osteosarcoma (OS) lung metastases remain a significant therapeutic challenge. Innate immune activation is a promising therapeutic approach. Innate immune agonists can modulate the tumor immune microenvironment and improve therapeutic response.
Methods: Using an experimental syngeneic OS lung metastasis BALB/c mouse model with K7M3-luc OS cells, we evaluated the antitumor effects of yeast-derived particulate β-glucan in prevention and therapeutic settings. We then assessed whether the CD40 agonist (CD40a) in combination with β-glucan increased therapeutic response in two different immune-competent mouse models of OS lung tumor burden.
Results: In the pretreatment settings, mice treated with β-glucan prior to OS cell infusion …
Intracranial Neural Biomarkers Of Psychiatric Symptoms And Their Utility For Guiding Neuromodulation Therapy: A Systematic Review, Katherine E Kabotyanski, Nicole R Provenza, Sameer A Sheth
Intracranial Neural Biomarkers Of Psychiatric Symptoms And Their Utility For Guiding Neuromodulation Therapy: A Systematic Review, Katherine E Kabotyanski, Nicole R Provenza, Sameer A Sheth
Faculty, Staff and Students Publications
The quest to develop and improve neuromodulatory therapies for treatment-resistant psychiatric disorders has been fueled by the discovery of intracranial neural biomarkers of symptom dimensions. These neural correlates shed light on the underlying neurophysiology of the disorder and may even be useful in guiding therapy delivery. This systematic review summarizes recent efforts in this field relating neural activity to behavior and symptomatology. For years, the majority of these neurobehavioral relationships had been studied in the hospital or clinic environment. Recent technological advances in implanted neuromodulation devices that permit not only stimulation, but also intracranial neural recording have enabled this research …
Functional Roles Of The Complement Immune System In Cardiac Inflammation And Hypertrophy, Kathryn D Hok, Haydn E Rich, Anthony Shadid, Lavanya Gunamalai, Tingting Weng-Mills, Rajarajan A Thandavarayan, Nirmal K Banda, Marie-Francoise Doursout, Marcos I Restrepo, Pooja Shivshankar
Functional Roles Of The Complement Immune System In Cardiac Inflammation And Hypertrophy, Kathryn D Hok, Haydn E Rich, Anthony Shadid, Lavanya Gunamalai, Tingting Weng-Mills, Rajarajan A Thandavarayan, Nirmal K Banda, Marie-Francoise Doursout, Marcos I Restrepo, Pooja Shivshankar
The Brown Foundation: Institute of Molecular Medicine
Cardiac inflammation and hypertrophy develop as a pathologic response to an array of insults, such as myocardial infarctions, chronic systemic hypertension, and valvular defects. Due to the high prevalence of such conditions, there is an increasing need to prevent and halt cardiac hypertrophy. Because cardiac damage and subsequent remodeling can lead to arrhythmias, heart failure, and even sudden cardiac death, inhibition of cardiac hypertrophy is key to reducing cardiovascular-related mortality. The immune system is the driving force behind inflammatory reactions. All three pathways of complement system activation-classical, lectin, and alternative-are implicated in developing cardiac damage, inflammation, and hypertrophy due to …
Genetic Engineering Of Esophageal Organoids: Crispr-Based Knock-In For Cell Lineage Tracing, Kyung-Pil Ko, Jae-Il Park
Genetic Engineering Of Esophageal Organoids: Crispr-Based Knock-In For Cell Lineage Tracing, Kyung-Pil Ko, Jae-Il Park
Faculty, Staff and Student Publications
Esophageal organoids serve as powerful systems to study epithelial lineage hierarchies and cancer biology. Gene manipulation in these organoids has traditionally involved overexpression or knockout strategies. However, CRISPR-/Cas9-based knock-in (KI) approaches now enable precise cell lineage tracing and live imaging. Here, we describe protocols to generate fluorescent KI organoids from murine esophageal epithelium by tagging Krt13 (BFP) and Sox2 (mNeon). These dual-reporter organoids allow direct monitoring of growth dynamics and differentiation trajectories. We outline CRISPR/Cas9 design, donor construction using homology-independent approaches (CRISPaint), delivery into organoid cells, enrichment and single-clone isolation, and validation by fluorescence. For organoids, homology-directed repair (HDR) can …
Ligand-Receptor Interactions Induce And Mediate Regulatory Functions Of Batf3+ B Cells, Hui Yan, Rui Wang, Suryavathi Viswanadhapalli, Christian Cervantes, Funan He, Shuai Wu, Azad Khosh, Weiwei Luo, Jingwei Wang, Maria J Fernandez, Uday P Pratap, Mustafa Khan, Karli Hinton, Sai Eashan Vankamamidi, Dariela Perez, Carlos E Rivera, Harshita B Gupta, Fushun Zhang, Zhenqing Ye, Yidong Chen, Xiao-Dong Li, Gangadhara R Sareddy, Hong Zan, Yue Li, Exing Wang, Evelien M Bunnik, Guangming Zhong, Christopher A Hunter, Ross M Kedl, Zhinan Yin, Booki Min, Diako Ebrahimi, Siyuan Zheng, Tyler J Curiel, Yan Xiang, Ratna K Vadlamudi, Paolo Casali, Zhenming Xu
Ligand-Receptor Interactions Induce And Mediate Regulatory Functions Of Batf3+ B Cells, Hui Yan, Rui Wang, Suryavathi Viswanadhapalli, Christian Cervantes, Funan He, Shuai Wu, Azad Khosh, Weiwei Luo, Jingwei Wang, Maria J Fernandez, Uday P Pratap, Mustafa Khan, Karli Hinton, Sai Eashan Vankamamidi, Dariela Perez, Carlos E Rivera, Harshita B Gupta, Fushun Zhang, Zhenqing Ye, Yidong Chen, Xiao-Dong Li, Gangadhara R Sareddy, Hong Zan, Yue Li, Exing Wang, Evelien M Bunnik, Guangming Zhong, Christopher A Hunter, Ross M Kedl, Zhinan Yin, Booki Min, Diako Ebrahimi, Siyuan Zheng, Tyler J Curiel, Yan Xiang, Ratna K Vadlamudi, Paolo Casali, Zhenming Xu
Faculty, Staff and Student Publications
B cells express many protein ligands, yet their regulatory functions are incompletely understood. We profiled ligand expression across murine B sublineage cells, including those activated by defined receptor signals, and assessed their regulatory capacities and specificities through in silico analysis of ligand-receptor interactions. Consequently, we identified a B cell subset that expressed cytokine interleukin-27 (IL-27) and chemokine CXCL10. Through the IL-27–IL-27 receptor interaction, these IL-27/CXCL10-producing B cells targeted CD40-activated B cells in vitro and, upon induction by immunization and viral infection, optimized antibody responses and antiviral immunity in vivo. Also present in breast cancer tumors and retained there through CXCL10-CXCR3 …
Dna Methylation And Machine Learning: Challenges And Perspective Toward Enhanced Clinical Diagnostics, Erfan Aref-Eshghi, Arash B Abadi, Mohammad-Erfan Farhadieh, Amirreza Hooshmand, Fatemeh Ghasemi, Leila Youssefian, Hassan Vahidnezhad, Taylor Martin Kerrins, Xiaonan Zhao, Mahdi Akbarzadeh, Hakon Hakonarson, Amir Hossein Saeidian
Dna Methylation And Machine Learning: Challenges And Perspective Toward Enhanced Clinical Diagnostics, Erfan Aref-Eshghi, Arash B Abadi, Mohammad-Erfan Farhadieh, Amirreza Hooshmand, Fatemeh Ghasemi, Leila Youssefian, Hassan Vahidnezhad, Taylor Martin Kerrins, Xiaonan Zhao, Mahdi Akbarzadeh, Hakon Hakonarson, Amir Hossein Saeidian
Faculty, Staff and Students Publications
DNA methylation is an epigenetic modification that regulates gene expression by adding methyl groups to DNA, affecting cellular function and disease development. Machine learning, a subset of artificial intelligence, analyzes large datasets to identify patterns and make predictions. Over the past two decades, advances in bioinformatics technologies for arrays and sequencing have generated vast amounts of data, leading to the widespread adoption of machine learning methods for analyzing complex biological information for medical problems. This review explores recent advancements in DNA methylation studies that leverage emerging machine learning techniques for more precise, comprehensive, and rapid patient diagnostics based on DNA …
Vaccine And Treatment Evaluation Units: A Historical Perspective, Robert B Belshe, David I Bernstein, Kathryn M Edwards, Sharon E Frey, Wendy A Keitel, Myron M Levine, John J Treanor, Peter F Wright
Vaccine And Treatment Evaluation Units: A Historical Perspective, Robert B Belshe, David I Bernstein, Kathryn M Edwards, Sharon E Frey, Wendy A Keitel, Myron M Levine, John J Treanor, Peter F Wright
Faculty, Staff and Students Publications
On 27 February 1962, Surgeon General Luther Terry announced a new vaccine development program within the National Institute of Allergy and Infectious Diseases (NIAID). Initially, the plan had three components: (1) special laboratories and facilities for development of prototype vaccines; (2) pilot lot production facilities and preliminary vaccine trial sites; and (3) larger lot production capacity and expanded human testing. Respiratory viruses were targeted as the top priority for vaccine development. Over 5 decades, this program has evolved and expanded to include multiple academic vaccine evaluation sites within the network, now labeled as the Vaccine and Treatment Evaluation Units (VTEUs). …
Just-In-Time Adaptive Intervention To Improve Hiv Prevention And Substance Use In Youth Experiencing Homelessness (My-Ride): Protocol For A Randomized Controlled Trial, Diane Santa Maria, Nikhil Padhye, Michael Businelle, Natasha Slesnick, Stefani Ricondo, Marguerita Lightfoot
Just-In-Time Adaptive Intervention To Improve Hiv Prevention And Substance Use In Youth Experiencing Homelessness (My-Ride): Protocol For A Randomized Controlled Trial, Diane Santa Maria, Nikhil Padhye, Michael Businelle, Natasha Slesnick, Stefani Ricondo, Marguerita Lightfoot
Faculty, Staff and Students Publications
Background: Youth who are experiencing homelessness face a higher risk of HIV infection compared to their housed peers, and suicide and overdose remain the leading causes of death among homeless youth. Just-in-Time Adaptive Interventions (JITAIs) are gaining momentum for HIV prevention and substance use research. Yet, most interventions for homeless youth have not addressed modifiable real-time factors.
Objective: This paper describes the development and implementation of a randomized attention-controlled trial to assess the efficacy of motivating youth to reduce infections, disconnections, and emotional dysregulation (MY-RIDE), a JITAI to improve HIV prevention and substance use in homeless youth.
Methods: This study …
The Effect Of Type 2 Diabetes Genetic Predisposition On Non-Cardiovascular Comorbidities, Ana Luiza Arruda, Ozvan Bocher, Henry J Taylor, Davis Cammann, Satoshi Yoshiji, Xianyong Yin, Chi Zhao, Jingchun Chen, Alexis C Wood, Ken Suzuki, Josep M Mercader, Cassandra N Spracklen, James B Meigs, Marijana Vujkovic, George Davey Smith, Jerome I Rotter, Benjamin F Voight, Andrew P Morris, Eleftheria Zeggini
The Effect Of Type 2 Diabetes Genetic Predisposition On Non-Cardiovascular Comorbidities, Ana Luiza Arruda, Ozvan Bocher, Henry J Taylor, Davis Cammann, Satoshi Yoshiji, Xianyong Yin, Chi Zhao, Jingchun Chen, Alexis C Wood, Ken Suzuki, Josep M Mercader, Cassandra N Spracklen, James B Meigs, Marijana Vujkovic, George Davey Smith, Jerome I Rotter, Benjamin F Voight, Andrew P Morris, Eleftheria Zeggini
Faculty, Staff and Students Publications
Type 2 diabetes is associated with a range of non-cardiovascular non-oncologic comorbidities. To move beyond associations and evaluate causal effects between type 2 diabetes genetic predisposition and 21 comorbidities, we apply Mendelian randomization analysis using genome-wide association studies across multiple genetic ancestries. Additionally, leveraging eight mechanistic clusters of type 2 diabetes genetic profiles, each representing distinct biological pathways, we investigate causal links between cluster-stratified type 2 diabetes genetic predisposition and comorbidity risk. We identify causal effects of type 2 diabetes genetic predisposition driven by distinct genetic clusters. For example, the risk-increasing effects of type 2 diabetes genetic predisposition on cataracts …
Germline Determinants Of Toxicity And Efficacy In Patients With Large B-Cell Lymphoma Treated With Car T-Cell Therapy, Paolo Strati, Amanda Brandt, Anath C Lionel, Jared Henderson, Jason R Westin, Sherry Adkins, Elizabeth J Shpall, Partow Kebriaei, Jeremy Ramdial, Neeraj Saini, Sairah Ahmed, Christopher Flowers, Sattva S Neelapu, Michelle A T Hildebrandt
Germline Determinants Of Toxicity And Efficacy In Patients With Large B-Cell Lymphoma Treated With Car T-Cell Therapy, Paolo Strati, Amanda Brandt, Anath C Lionel, Jared Henderson, Jason R Westin, Sherry Adkins, Elizabeth J Shpall, Partow Kebriaei, Jeremy Ramdial, Neeraj Saini, Sairah Ahmed, Christopher Flowers, Sattva S Neelapu, Michelle A T Hildebrandt
Faculty, Staff and Student Publications
Background: Recent data have suggested that germline genetic aberrations can affect outcomes in patients with large B-cell lymphoma (LBCL) treated with chimeric antigen receptor T-cell therapy (CART). However, a comprehensive analysis of germline determinants of response and toxicity after CART has not yet been described.
Methods: Genome-wide genotyping was performed in 170 patients with LBCL treated with standard of care axicabtagene ciloleucel. Polygenic risk score instruments for blood cell traits and inflammatory markers were obtained from the PGS Catalog and analyzed using PRSice-2. Exploratory gene-based and genome-wide association study analyses were performed. Genetic ancestry of the patients with LBCL was …
Sers And Seira Detection Of Polycyclic Aromatic Hydrocarbons And Their Derivatives In Murine Tissues: Bioaccumulation And Clearance, Oara Neumann, Andrés B Sánchez-Alvarado, Weiwu Jiang, Guo Dong Zhou, Sachin B Jorveka, Parmeet Dhindsa, Nagireddy Putluri, Peter Nordlander, Melissa A Suter, Bhagavatula Moorthy, Naomi J Halas
Sers And Seira Detection Of Polycyclic Aromatic Hydrocarbons And Their Derivatives In Murine Tissues: Bioaccumulation And Clearance, Oara Neumann, Andrés B Sánchez-Alvarado, Weiwu Jiang, Guo Dong Zhou, Sachin B Jorveka, Parmeet Dhindsa, Nagireddy Putluri, Peter Nordlander, Melissa A Suter, Bhagavatula Moorthy, Naomi J Halas
Faculty, Staff and Students Publications
The toxicological effects of polycyclic aromatic hydrocarbons (PAHs) and polycyclic aromatic compounds (PACs) have attracted considerable research interest due to their known bioaccumulation. However, time-resolved and longitudinal studies that examine in vivo bioaccumulation and clearance remain limited. Here we use Surface-Enhanced Raman Scattering (SERS) and Surface-Enhanced Infrared Absorption (SEIRA) spectroscopies to detect and track the presence of two PAHs: pyrene, benzo[a]pyrene, and one PAC: 5,12-naphthacenequinone, in murine organ tissues. Mice were exposed to a three-component mixture of these three chemicals, then their organs were collected at 24-, 48-, and 72- hours post-exposure. The accumulation of each of these chemicals in …
Polychlorinated Biphenyls Alter Estrogen Receptor Β-Mediated Epigenetic Regulation, Promoting Endometriosis, Yuri Park, Nuri Sung, Eunsu Kim, Jaeyeong Jeong, Juhee Sim, Mi Jin Park, John P Lydon, Xiaoming Guan, Sang Jun Han
Polychlorinated Biphenyls Alter Estrogen Receptor Β-Mediated Epigenetic Regulation, Promoting Endometriosis, Yuri Park, Nuri Sung, Eunsu Kim, Jaeyeong Jeong, Juhee Sim, Mi Jin Park, John P Lydon, Xiaoming Guan, Sang Jun Han
Faculty, Staff and Students Publications
Endometriosis is a pathological condition characterized by the ectopic growth of endometrial cells, leading to chronic pelvic pain and infertility. Epidemiological studies have associated exposure to dioxin-like polychlorinated biphenyls, particularly PCB126, with an increased risk of endometriosis. However, the underlying mechanisms of this association remain poorly understood. We utilized a surgically induced endometriosis mouse model and human endometrial cell lines to assess the impact of PCB126 on endometriosis progression. Mice were exposed to environmentally relevant doses of PCB126. Endometriotic lesion growth, estrogen receptor signaling, receptor tyrosine kinase activity, and gene expression changes induced by PCB126-mediated elevation of DNA methyltransferase 3A …
Dual Targeting Of Orphan Nuclear Receptors Nr4a1 And Nr4a2 For Nonhormonal Endometriosis Therapy, Wai Ning Tiffany Tsui, Yuri Park, Srijana Upadhyay, Da Mi Kim, Lei Zhang, Gus Wright, Amanuel Hailemariam, Arafat Rahman Oany, Sang Jun Han, Stephen Safe
Dual Targeting Of Orphan Nuclear Receptors Nr4a1 And Nr4a2 For Nonhormonal Endometriosis Therapy, Wai Ning Tiffany Tsui, Yuri Park, Srijana Upadhyay, Da Mi Kim, Lei Zhang, Gus Wright, Amanuel Hailemariam, Arafat Rahman Oany, Sang Jun Han, Stephen Safe
Faculty, Staff and Students Publications
Previous studies show that orphan nuclear receptor 4A1 (NR4A1) regulates endometriotic cell growth, survival, estrogen receptor β (ERβ), mechanistic target of rapamycin signaling and fibrosis. NR4A2 is also expressed in epithelial and stromal derived endometriotic cells, and in this study the effects of 1,1-bis(3'-indolyl)-(3,5-disubstitutedphenyl)methane (DIM-3,5) dual NR4A1/nuclear receptor 4A2 (NR4A2) ligands and knockdown of NR4A1 and NR4A2 were investigated. The dual NR4A1/2 DIM-3,5 analogs inhibited previously identified proendometriotic pathways and gene products, and they also inhibited TWIST1 and multiple markers associated with epithelial-to-mesenchymal transition (EMT). The results show that both NR4A1 and NR4A2 regulate the same pathways, including endometriotic cell …
Synaptic Transmission Promotes Brain Metastatic Outgrowth In Breast Cancer, Jayanta Mondal, Patrick Nylund, Prit Benny Malgulwar, William E Johnson, Jason T Huse
Synaptic Transmission Promotes Brain Metastatic Outgrowth In Breast Cancer, Jayanta Mondal, Patrick Nylund, Prit Benny Malgulwar, William E Johnson, Jason T Huse
Faculty, Staff and Student Publications
This work demonstrates that normal neuron-to-neuron signaling machinery is hijacked by metastasizing cancer cells during their outgrowth in the central nervous system.
Quiescent Oxphos-High Triple-Negative Breast Cancer Cells That Persist After Chemotherapy Depend On Bcl-Xl For Survival, Slawomir Andrzejewski, Marie Winter, Leandro Encarnacao Garcia, Olusiji Akinrinmade, Francisco Madeira Marques, Emmanouil Zacharioudakis, Anna Skwarska, Julio Aguirre-Ghiso, Marina Konopleva, Guangrong Zheng, Susan A Fineberg, Daohong Zhou, Evripidis Gavathiotis, Tao Wang, Eugen Dhimolea
Quiescent Oxphos-High Triple-Negative Breast Cancer Cells That Persist After Chemotherapy Depend On Bcl-Xl For Survival, Slawomir Andrzejewski, Marie Winter, Leandro Encarnacao Garcia, Olusiji Akinrinmade, Francisco Madeira Marques, Emmanouil Zacharioudakis, Anna Skwarska, Julio Aguirre-Ghiso, Marina Konopleva, Guangrong Zheng, Susan A Fineberg, Daohong Zhou, Evripidis Gavathiotis, Tao Wang, Eugen Dhimolea
Faculty, Staff and Student Publications
The persistent residual tumor cells that survive after chemotherapy are a major cause of treatment failure, but their survival mechanisms remain largely elusive. These cancer cells are typically characterized by a quiescent state with suppressed activity of MYC and MTOR. We observed that the MYC-suppressed persistent triple-negative breast cancer (TNBC) cells are metabolically flexible and can upregulate mitochondrial oxidative phosphorylation (OXPHOS) genes and respiratory function ("OXPHOS-high" cell state) in response to DNA-damaging anthracyclines such as doxorubicin, but not to taxanes. The elevated biomass and respiratory function of mitochondria in OXPHOS-high persistent cancer cells were associated with mitochondrial elongation and remodeling, …
Mechanistic Study Of Pexidartinib-Induced Toxicity In Human Hepatic Cells, Si Chen, Yuxi Li, Xilin Li, Nan Mei, Xiaobo He, Matthew S Bryant, Xuan Qin, Feng Li, Lei Guo
Mechanistic Study Of Pexidartinib-Induced Toxicity In Human Hepatic Cells, Si Chen, Yuxi Li, Xilin Li, Nan Mei, Xiaobo He, Matthew S Bryant, Xuan Qin, Feng Li, Lei Guo
Faculty, Staff and Students Publications
Pexidartinib, a tyrosine kinase inhibitor, was approved by the U.S. Food and Drug Administration in 2019 for treating adult patients with symptomatic tenosynovial giant cell tumors. Because of its hepatotoxicity risks, pexidartinib received a boxed warning; however, mechanistic studies on this hepatotoxicity remain limited. In this study, we demonstrate that pexidartinib decreases cell viability in primary human hepatocytes and hepatic HepG2 cells. A 24-h treatment with pexidartinib led to apoptosis in HepG2 cells, as evidenced by increased caspase 3/7 activity and the induction of cleaved PARP and γ-H2A.X. Pexidartinib-induced endoplasmic reticulum (ER) stress was observed at early time points of …
Biliverdin Reductase A Is A Major Determinant Of Protective Nrf2 Signaling, Chirag Vasavda, Ruchita Kothari, Navneet Ammal Kaidery, Suwarna Chakraborty, Sunil Jamuna Tripathi, Ryan S Dhindsa, Cristina Ricco, Shruthi Shanmukha, Samaneh Saberi, Julia E Lefler, Priyanka Kothari, Kalyani Chaubey, Adele M Snowman, Michael C Ostrowski, Eugenio Barone, Lakshminarayan M Iyer, L Aravind, Sudarshana M Sharma, Andrew A Pieper, Bobby Thomas, Solomon H Snyder, Bindu D Paul
Biliverdin Reductase A Is A Major Determinant Of Protective Nrf2 Signaling, Chirag Vasavda, Ruchita Kothari, Navneet Ammal Kaidery, Suwarna Chakraborty, Sunil Jamuna Tripathi, Ryan S Dhindsa, Cristina Ricco, Shruthi Shanmukha, Samaneh Saberi, Julia E Lefler, Priyanka Kothari, Kalyani Chaubey, Adele M Snowman, Michael C Ostrowski, Eugenio Barone, Lakshminarayan M Iyer, L Aravind, Sudarshana M Sharma, Andrew A Pieper, Bobby Thomas, Solomon H Snyder, Bindu D Paul
Duncan NRI Faculty and Staff Publications
Biliverdin reductase A (BVRA), the terminal enzyme in heme catabolism, generates the neuroprotective and lipophilic antioxidant bilirubin. Here, we identify a nonenzymatic role for BVRA in redox regulation. Through phylogenetic, genetic, biochemical, and enzymatic assays, we found that BVRA exerts critical nonenzymatic antioxidant activity. Transcriptomic analyses further revealed that BVRA physically and genetically interacts with nuclear factor erythroid-derived factor-like 2 (NRF2), a major transcriptional regulator of cellular redox signaling. ChIP-seq and RNA-seq analyses reveal that BVRA and NRF2 coordinate the expression of antioxidant genes, many of which are typically dysregulated in neurodegenerative conditions such as Alzheimer's disease. Thus, this noncanonical …
Enhanced Piezo1 Function Contributes To The Pathogenesis Of Sickle Cell Disease, Luis O Romero, Manisha Bade, Laila Elsherif, Jada D Williams, Xiangmei Kong, Adebowale Adebiyi, Kenneth I Ataga, Shang Ma, Julio F Cordero-Morales, Valeria Vásquez
Enhanced Piezo1 Function Contributes To The Pathogenesis Of Sickle Cell Disease, Luis O Romero, Manisha Bade, Laila Elsherif, Jada D Williams, Xiangmei Kong, Adebowale Adebiyi, Kenneth I Ataga, Shang Ma, Julio F Cordero-Morales, Valeria Vásquez
Faculty, Staff and Student Publications
Sickle cell disease (SCD), an inherited blood disorder caused by a mutation in the β-globin gene, is characterized by sickle erythrocytes that are prone to hemolysis, leading to anemia and vaso-occlusion crises. In sickle erythrocytes, hemoglobin aggregation is followed by altered cation permeability and subsequent dehydration. Interventions that restore cation permeability can decrease hemolysis and ameliorate the symptoms associated with SCD. PIEZO1 is a nonselective mechanosensitive cation channel that regulates erythrocyte volume. Gain-of-function (GOF) mutations in PIEZO1 cause hemolytic anemia by increasing cation permeability, leading to erythrocyte dehydration in humans and mice. Although PIEZO1 plays a key role in erythrocyte …
Advances In Fret Methodologies For Probing Molecular Interactions, Geetika Verma, Vasanthi Jayaraman
Advances In Fret Methodologies For Probing Molecular Interactions, Geetika Verma, Vasanthi Jayaraman
Faculty, Staff and Student Publications
Förster resonance energy transfer (FRET) has evolved into a powerful, quantitative approach for probing biomolecular structure, dynamics, and interactions. This research highlight brings together recent studies in Biophysical Journal that push the boundaries of traditional FRET. These innovations expand the spatial and temporal resolution of FRET, enabling its application to increasingly complex biological systems.
Representation Is Power: Traditional, Hybrid, And Digital Recruitment Results From A Non-Randomized Clinical Trial Engaging Adolescents, Taylor B Harrison, Jessica A Sinclair, Lisa J Martin, Kristin Childers-Buschle, Holly Elder, Sunyang Fu, Hongfang Liu, William B Brinkman, Melanie F Myers, Michelle L Mcgowan
Representation Is Power: Traditional, Hybrid, And Digital Recruitment Results From A Non-Randomized Clinical Trial Engaging Adolescents, Taylor B Harrison, Jessica A Sinclair, Lisa J Martin, Kristin Childers-Buschle, Holly Elder, Sunyang Fu, Hongfang Liu, William B Brinkman, Melanie F Myers, Michelle L Mcgowan
Faculty, Staff and Student Publications
Clinical trials support the iterative advancement of modern medicine. However, challenges in achieving population-representativeness or participant sampling commensurate with the burden of disease can limit the generalizability and reproducibility of trial results. Here, we present the recruitment strategies and cohort profile of the Engaging Adolescents in Decisions about Return of Genomic Research Results non-randomized clinical trial (NCT0448106), where traditional, targeted hybrid, and digital recruitment methods were implemented with quota sampling to enroll diverse adolescents (ages 13-17) and young adults (ages 18-21). The largest proportion of participants enrolled through digital strategies (39.1%), followed by traditional (34.2%), and targeted hybrid strategies (23.2%). …
The Latest In Resuscitation Research: Highlights From The 2024 American Heart Association's Resuscitation Science Symposium, Gabriela M Galli, Aarthi Kaviyarasu, Sachin Agarwal, Catherine R Counts, Tommaso Scquizzato, Betty Yang, Clark G Owyang, Ryan Coute, Simon Orlob, Lindsay Shepard, Saleem Halablab, James Horowitz, Sarah Perman, Ryan Morgan, Anne Grossestreuer, Jacob Vine, Nicholas Johnson, Luke Andrea, Ari Moskowitz, Benjamin Abella, Cameron Dezfulian, Walid H Farooqi, Felipe Teran
The Latest In Resuscitation Research: Highlights From The 2024 American Heart Association's Resuscitation Science Symposium, Gabriela M Galli, Aarthi Kaviyarasu, Sachin Agarwal, Catherine R Counts, Tommaso Scquizzato, Betty Yang, Clark G Owyang, Ryan Coute, Simon Orlob, Lindsay Shepard, Saleem Halablab, James Horowitz, Sarah Perman, Ryan Morgan, Anne Grossestreuer, Jacob Vine, Nicholas Johnson, Luke Andrea, Ari Moskowitz, Benjamin Abella, Cameron Dezfulian, Walid H Farooqi, Felipe Teran
Faculty, Staff and Students Publications
No abstract provided.
Functional Diversity In Gii.4 Norovirus Entry: Hbga Binding And Capsid Clustering Dynamics, B Vijayalakshmi Ayyar, Carmen V Apostol, Janam Jitendra Dave, Soni Kaundal, Joseph A Kendra, Frederick H Neill, Khalil Ettayebi, Sarah Maher, Ramakrishnan Anish, Gabriel I Parra, Göran Larson, Robert L Atmar, Sue E Crawford, B V Venkataram Prasad, Mary K Estes
Functional Diversity In Gii.4 Norovirus Entry: Hbga Binding And Capsid Clustering Dynamics, B Vijayalakshmi Ayyar, Carmen V Apostol, Janam Jitendra Dave, Soni Kaundal, Joseph A Kendra, Frederick H Neill, Khalil Ettayebi, Sarah Maher, Ramakrishnan Anish, Gabriel I Parra, Göran Larson, Robert L Atmar, Sue E Crawford, B V Venkataram Prasad, Mary K Estes
Faculty, Staff and Students Publications
Human noroviruses (HuNoVs), especially GII.4 strains, are the leading cause of acute viral gastroenteritis worldwide, yet no approved vaccines or antivirals exist. The pandemic GII.4 Sydney 2012 strain enters cells via membrane wounding and clathrin-independent carrier-mediated endocytosis, but it is unclear whether this entry mechanism is conserved across GII.4 variants. We compared early binding and entry of multiple GII.4 variants using wild-type and mutant GII.4 virus-like particles (VLPs) and modified human intestinal enteroid cultures. Only a subset of GII.4 variants, including GII.4 Sydney, form distinct, histo-blood group antigen (HBGA)-dependent capsid clusters on the cell surface. Clustering strains display significantly enhanced …
Phosphorylation Of Ryr1 At Ser2902 Decreases Ca2+ Leak In Skeletal Muscle And Susceptibility To Malignant Hyperthermia And Heat Stroke, Rachel Sue Zhen Yee, Chang Seok Lee, Ting Chang, Sung Yun Jung, Omar Yousif, Courtney Cavazos, John Colyer, Filip Van Petegem, George G Rodney, Susan L Hamilton
Phosphorylation Of Ryr1 At Ser2902 Decreases Ca2+ Leak In Skeletal Muscle And Susceptibility To Malignant Hyperthermia And Heat Stroke, Rachel Sue Zhen Yee, Chang Seok Lee, Ting Chang, Sung Yun Jung, Omar Yousif, Courtney Cavazos, John Colyer, Filip Van Petegem, George G Rodney, Susan L Hamilton
Faculty, Staff and Students Publications
The ryanodine receptor 1 (RYR1) is the sarcoplasmic reticulum (SR) Ca2+ release channel required for both skeletal muscle contraction and Ca2+ leak. Mutations in RYR1 cause malignant hyperthermia susceptibility (MHS) and enhanced sensitivity to heat stroke (ESHS), which can result in death due to excessive skeletal muscle thermogenesis upon exposure to volatile anesthetics or heat. Here, we investigated the molecular and physiological functions of phosphorylation of RYR1 at Ser2902 by the kinase SPEG (striated muscle preferentially expressed protein). Muscle from SPEG-deficient mice expressing RYR1 with a Ser2902 →Asp2902 (S2902D) point mutation to mimic phosphorylation by SPEG showed decreased SR Ca2+ …
Genetics-Nutrition Interactions Control Diurnal Enhancer-Promoter Dynamics And Liver Lipid Metabolism, Dishu Zhou, Ying Chen, Panpan Liu, Kun Zhu, Juliet Holder-Haynes, S Julie-Ann Lloyd, Cam Mong La, Inna I Astapova, Seunghee Choa, Ying Xiong, Hosung Bae, Marlene Aguilar, Hongyuan Yang, Yu A An, Zheng Sun, Mark A Herman, Xia Gao, Liming Pei, Cholsoon Jang, Joshua D Rabinowitz, Samer G Mattar, Yongyou Zhang, Dongyin Guan
Genetics-Nutrition Interactions Control Diurnal Enhancer-Promoter Dynamics And Liver Lipid Metabolism, Dishu Zhou, Ying Chen, Panpan Liu, Kun Zhu, Juliet Holder-Haynes, S Julie-Ann Lloyd, Cam Mong La, Inna I Astapova, Seunghee Choa, Ying Xiong, Hosung Bae, Marlene Aguilar, Hongyuan Yang, Yu A An, Zheng Sun, Mark A Herman, Xia Gao, Liming Pei, Cholsoon Jang, Joshua D Rabinowitz, Samer G Mattar, Yongyou Zhang, Dongyin Guan
Faculty, Staff and Student Publications
The circadian clock controls 24-h rhythmic processes. However, how genetic variations outside clock genes impact peripheral diurnal rhythms remains largely unknown. Here, we find that genetic variation contributes to different diurnal patterns of hepatic gene expression in both humans and mice. Nutritional challenges alter the rhythmicity of gene expression in mouse liver in a strain-specific manner. Remarkably, genetics and nutrition interdependently control more than 80% of rhythmic gene and enhancer-promoter interactions (E-PIs), with a noncanonical clock regulator, estrogen-related receptor gamma (ESRRγ), emerging as a top transcription factor during motif mining. Knockout of Esrrγ abolishes strain-specific metabolic processes in response to …
Atg Conjugation-Dependent/Independent Mechanisms Underlie Lysosomal Stress-Induced Tfeb Regulation, Shiori Akayama, Takayuki Shima, Tatsuya Kaminishi, Mengying Cui, Jlenia Monfregola, Kohei Nishino, Andrea Ballabio, Hidetaka Kosako, Tamotsu Yoshimori, Shuhei Nakamura
Atg Conjugation-Dependent/Independent Mechanisms Underlie Lysosomal Stress-Induced Tfeb Regulation, Shiori Akayama, Takayuki Shima, Tatsuya Kaminishi, Mengying Cui, Jlenia Monfregola, Kohei Nishino, Andrea Ballabio, Hidetaka Kosako, Tamotsu Yoshimori, Shuhei Nakamura
Duncan NRI Faculty and Staff Publications
TFEB, a master regulator of autophagy and lysosomal biogenesis, is activated by several cellular stresses including lysosomal damage, but its underlying mechanism is unclear. TFEB activation during lysosomal damage depends on the ATG conjugation system, which mediates lipidation of ATG8 proteins. Here, we newly identify ATG conjugation-independent TFEB regulation that precedes ATG conjugation-dependent regulation, designated Modes I and II, respectively. We reveal unique regulators of TFEB in each mode: APEX1 in Mode I and CCT7 and/or TRIP6 in Mode II. APEX1 interacts with TFEB independently of the ATG conjugation system, and is required for TFEB stability, while both CCT7 and …
Atg16l1 Controls Mammalian Vacuolar Proton Atpase, Thabata L A Duque, Masroor Paddar, Einar Trosdal, Ruheena Javed, Lee Allers, Michal H Mudd, Prithvi Akepati, Soumya R Mishra, Michelle Salemi, Brett Phinney, Shawn B Bratton, Thomas Wileman, Vojo Deretic
Atg16l1 Controls Mammalian Vacuolar Proton Atpase, Thabata L A Duque, Masroor Paddar, Einar Trosdal, Ruheena Javed, Lee Allers, Michal H Mudd, Prithvi Akepati, Soumya R Mishra, Michelle Salemi, Brett Phinney, Shawn B Bratton, Thomas Wileman, Vojo Deretic
Faculty, Staff and Student Publications
The mechanisms governing mammalian proton pump V-ATPase function are of fundamental and medical interest. The assembly and disassembly of cytoplasmic V1 domain with the membrane-embedded V0 domain of V-ATPase is a key aspect of V-ATPase localization and function. Here, we show that the mammalian protein ATG16L1, primarily appreciated for its role in canonical autophagy and in noncanonical membrane atg8ylation processes, controls V-ATPase. ATG16L1 knockout elevated V-ATPase activity, increased V1 presence on endomembranes, and increased the number of acidified intracellular compartments. ATG16L1's ability to efficiently bind V-ATPase was required for its inhibitory role in endolysosomal acidification and for control of Mycobacterium …
Strain-Specific Variability In Viral Kinetics, Cytokine Response, And Cellular Damage In Air-Liquid Cultures Of Human Nasal Organoids After Infection With Sars-Cov-2, Gina M Aloisio, Trevor J Mcbride, Letisha Aideyan, Emily M Schultz, Ashley M Murray, Anubama Rajan, Erin G Nicholson, David Henke, Laura Ferlic-Stark, Amal Kambal, Hannah L Johnson, Elina A Mosa, Fabio Stossi, Sarah E Blutt, Pedro A Piedra, Vasanthi Avadhanula
Strain-Specific Variability In Viral Kinetics, Cytokine Response, And Cellular Damage In Air-Liquid Cultures Of Human Nasal Organoids After Infection With Sars-Cov-2, Gina M Aloisio, Trevor J Mcbride, Letisha Aideyan, Emily M Schultz, Ashley M Murray, Anubama Rajan, Erin G Nicholson, David Henke, Laura Ferlic-Stark, Amal Kambal, Hannah L Johnson, Elina A Mosa, Fabio Stossi, Sarah E Blutt, Pedro A Piedra, Vasanthi Avadhanula
Faculty, Staff and Students Publications
SARS-CoV-2 variants have demonstrated distinct epidemiological patterns and clinical presentations throughout the COVID-19 pandemic. Understanding variant-specific differences at the respiratory epithelium is crucial for understanding their pathogenesis. Here, we utilized human nasal organoid air-liquid interface (HNO-ALI) cell cultures to compare the viral replication kinetics, innate immune response, and epithelial damage of six different strains of SARS-CoV-2 (B.1.2, WA, Alpha, Beta, Delta, and Omicron). All variants replicated efficiently in HNO-ALIs, but with distinct replication kinetic patterns. The Delta variant exhibited delayed replication kinetics, achieving a steady state at 6 days post-infection compared to 3 days for other variants. Cytokine analysis revealed …
Practicing With Intent: How To Teach An Old Dogma New Tricks, Matthew C Phillips, Kusha Davar, Sarah Freling, Steven Y C Tong, Todd C Lee, Emily G Mcdonald, Travis B Nielsen, Noah Wald-Dickler, Alfredo J Mena Lora, Rachael A Lee, Fergus Hamilton, Daniel M Musher, Rodrigo P L Costa, Bassam Ghanem, Rachel Baden, Brad Spellberg
Practicing With Intent: How To Teach An Old Dogma New Tricks, Matthew C Phillips, Kusha Davar, Sarah Freling, Steven Y C Tong, Todd C Lee, Emily G Mcdonald, Travis B Nielsen, Noah Wald-Dickler, Alfredo J Mena Lora, Rachael A Lee, Fergus Hamilton, Daniel M Musher, Rodrigo P L Costa, Bassam Ghanem, Rachel Baden, Brad Spellberg
Faculty, Staff and Students Publications
Clinicians are constantly bombarded with an onslaught of newly published data, yet they must make clinical decisions despite a dearth of clinical data. Sometimes, they may fall back on clinical practices entrenched by experience, unaware that they are upheld by dogmatic tradition rather than robust evidence. Ideally, the totality of evidence must be assessed and utilized for clinical decision-making, irrespective of entrenched orthodoxy. Here, we explore the questions, how much evidence is needed to revise established clinical practices and, more fundamentally, can data alone truly catalyze such shifts.
Improved Allele Frequencies In Gnomad Through Local Ancestry Inference, Pragati Kore, Michael W Wilson, Grace Tiao, Katherine Chao, Philip W Darnowsky, Nicholas A Watts, Jessica Honorato Mauer, Samantha M Baxter, Genome Aggregation Database Consortium, Heidi L Rehm, Mark J Daly, Konrad J Karczewski, Elizabeth G Atkinson
Improved Allele Frequencies In Gnomad Through Local Ancestry Inference, Pragati Kore, Michael W Wilson, Grace Tiao, Katherine Chao, Philip W Darnowsky, Nicholas A Watts, Jessica Honorato Mauer, Samantha M Baxter, Genome Aggregation Database Consortium, Heidi L Rehm, Mark J Daly, Konrad J Karczewski, Elizabeth G Atkinson
Faculty, Staff and Students Publications
The Genome Aggregation Database (gnomAD) is a foundational resource for allele frequency data, widely used in genomic research and clinical interpretation. However, traditional estimates rely on individual-level genetic ancestry groupings that may obscure variation in recently admixed populations. To improve resolution, we applied local ancestry inference (LAI) to over 27 million variants in two admixed groups: Admixed American (n = 7612) and African/African American (n = 20,250), deriving ancestry-specific allele frequencies. We show that 78.5% and 85.1% of variants in these groups, respectively, exhibit at least a twofold difference in ancestry-specific frequencies. Moreover, 81.49% of variants with LAI information would …
Causal Ai-Based Clinical And Radiomic Analysis For Optimizing Patient Selection In Combined Immunotherapy And Sabr In Early-Stage Nsclc: A Secondary Analysis Of The Phase Ii I-Sabr Trial, Maliazurina B Saad, Eman Showkatian, Vivek Verma, Qasem Al-Tashi, Muhammad Aminu, Xinyan Xu, Muhamed Qayati Mohamed, Morteza Salehjahromi, Sheeba J Sujit, Yuliya Kitsel, Steven H Lin, Zhongxing Liao, Saumil Gandhi, David Qian, David Jaffray, Caroline Chung, Natalie I Vokes, Jianjun Zhang, J Jack Lee, John V Heymach, Jia Wu, Joe Y Chang
Causal Ai-Based Clinical And Radiomic Analysis For Optimizing Patient Selection In Combined Immunotherapy And Sabr In Early-Stage Nsclc: A Secondary Analysis Of The Phase Ii I-Sabr Trial, Maliazurina B Saad, Eman Showkatian, Vivek Verma, Qasem Al-Tashi, Muhammad Aminu, Xinyan Xu, Muhamed Qayati Mohamed, Morteza Salehjahromi, Sheeba J Sujit, Yuliya Kitsel, Steven H Lin, Zhongxing Liao, Saumil Gandhi, David Qian, David Jaffray, Caroline Chung, Natalie I Vokes, Jianjun Zhang, J Jack Lee, John V Heymach, Jia Wu, Joe Y Chang
Faculty, Staff and Student Publications
Background: The recent phase II randomized stereotactic ablative radiotherapy with and without immunotherapy (I-SABR) trial has shown improved event-free survival (EFS) when adding immunotherapy to stereotactic ablative radiotherapy (SABR) for early-stage inoperable non-small cell lung cancer (NSCLC). However, optimizing patient selection thereof is critical, because not every patient benefits from immunotherapy. Leveraging the powerful use of artificial intelligence, this secondary analysis of the I-SABR trial developed a modeling system (named "I-SABR-SELECT") based on clinical and radiomic factors to address which patients should receive additional immunotherapy.
Methods: The discovery/validation cohorts were from the I-SABR trial, with external validation from the single-arm …