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Articles 301 - 330 of 8561

Full-Text Articles in Biomedical Informatics

Cdk2 Inhibitor Blu-222 Synergizes With Cdk4/6 Inhibitors In Drug Resistant Breast Cancers Through P21/P27 Induction, Linjie Luo, Yan Wang, Tuyen Bui, Xiaoting Jiang, Mei-Kuang Chen, Xiayu Rao, Sepideh Mohammadhosseinpour, Mi Li, Serena Kim, Rachel Y Kim, Saba Kamaliasl, Carmen W Ulizio, Spyros Tsavachidis, Juliana Navarro-Yepes, Nicole M Kettner, Hannah Wingate, Funda Meric-Bernstam, Kelly K Hunt, Jing Wang, Kerrie Faia, Khandan Keyomarsi Jan 2026

Cdk2 Inhibitor Blu-222 Synergizes With Cdk4/6 Inhibitors In Drug Resistant Breast Cancers Through P21/P27 Induction, Linjie Luo, Yan Wang, Tuyen Bui, Xiaoting Jiang, Mei-Kuang Chen, Xiayu Rao, Sepideh Mohammadhosseinpour, Mi Li, Serena Kim, Rachel Y Kim, Saba Kamaliasl, Carmen W Ulizio, Spyros Tsavachidis, Juliana Navarro-Yepes, Nicole M Kettner, Hannah Wingate, Funda Meric-Bernstam, Kelly K Hunt, Jing Wang, Kerrie Faia, Khandan Keyomarsi

Faculty, Staff and Student Publications

Cyclin-dependent kinase 4/6 inhibitors (CDK4/6i) combined with endocrine therapy are the standard first-line treatment for hormone receptor-positive, HER2-negative (HR+/HER2-) metastatic breast cancer, but resistance inevitably develops. In triple-negative breast cancer (TNBC), the efficacy of CDK4/6i remains uncertain. Our study shows that the selective CDK2 inhibitor BLU-222, while effective alone, enhances synergistic activity when combined with CDK4/6i in resistant HR+/HER2- and TNBC models, leading to increased apoptosis and cell cycle arrest. In vivo, combining BLU-222 with palbociclib or ribociclib produced significant antitumor activity across eight resistant models, driving durable tumor regression and prolonged survival. Mechanistically, BLU-222, alone or with palbociclib, upregulated …


Qsox1: A Mysterious Golgi-Localized Disulfide Bond Catalyst And An Emerging Cancer Regulator, Shike Wang, Guan-Yu Xiao, Xiaochao Tan Jan 2026

Qsox1: A Mysterious Golgi-Localized Disulfide Bond Catalyst And An Emerging Cancer Regulator, Shike Wang, Guan-Yu Xiao, Xiaochao Tan

Faculty, Staff and Student Publications

Quiescin sulfhydryl oxidase 1 (QSOX1) is a disulfide bond-forming enzyme with both disulfide isomerase and oxidoreductase activities. It plays an important role in protein folding, stability, and secretion. Growing evidence demonstrates that QSOX1 is upregulated in multiple cancer types and influences key behaviors of cancer cells, including proliferation, migration, invasion, and metastasis. Elevated QSOX1 expression is also associated with tumor malignancy and disease relapse. However, the molecular mechanisms by which QSOX1 drives cancer progression remain incompletely understood. In this review, we summarize current knowledge of QSOX1 expression and regulation in cancer, discuss its functional roles, and highlight key unanswered questions …


Low Intensity Vibration With Zoledronate Reduces Musculoskeletal Weakness And Adiposity In Estrogen Deprived Female Mice, Gabriel M Pagnotti, Trupti Trivedi, Laura E Wright, Sutha K John, Sreemala Murthy, Ryan R Pattyn, Monte S Willis, Yun She, Sukanya Suresh, Aji F Touray, William R Thompson, Clinton T Rubin, Khalid S Mohammad, Theresa A Guise Jan 2026

Low Intensity Vibration With Zoledronate Reduces Musculoskeletal Weakness And Adiposity In Estrogen Deprived Female Mice, Gabriel M Pagnotti, Trupti Trivedi, Laura E Wright, Sutha K John, Sreemala Murthy, Ryan R Pattyn, Monte S Willis, Yun She, Sukanya Suresh, Aji F Touray, William R Thompson, Clinton T Rubin, Khalid S Mohammad, Theresa A Guise

Faculty, Staff and Student Publications

Aromatase inhibitors are widely used in the treatment of hormone-sensitive breast cancer, but their suppression of estrogen production accelerates bone loss, increases fracture risk, and negatively impacts muscle and fat metabolism. Here, we demonstrate that daily low intensity vibration, serving as a non-drug mimetic for exercise, protects musculoskeletal health in skeletally immature, female mice under complete estrogen deprivation. Subsequent improvements in vertebral bone density are paralleled by greater and leaner skeletal muscle mass and function alongside reduced fat accretion and circulating metabolites. In mature, estrogen deprived mice, vibration enhances weekly bisphosphonate treatment, improving bone density, cortical thickness, and mechanical resistance …


Simulated Complex Cells Contribute To Object Recognition Through Representational Untangling, Mitchell B Slapik, Harel Z Shouval Jan 2026

Simulated Complex Cells Contribute To Object Recognition Through Representational Untangling, Mitchell B Slapik, Harel Z Shouval

Faculty, Staff and Student Publications

The visual system performs a remarkable feat: it takes complex retinal activation patterns and decodes them for object recognition. This operation, termed "representational untangling," organizes neural representations by clustering similar objects together while separating different categories of objects. While representational untangling is usually associated with higher-order visual areas like the inferior temporal cortex, it remains unclear how the early visual system contributes to this process-whether through highly selective neurons or high-dimensional population codes. This article investigates how a computational model of early vision contributes to representational untangling. Using a computational visual hierarchy and two different data sets consisting of numerals …


Genomics Define Malignant Transformation In Myeloma Precursor Conditions, Francesco Maura, P Leif Bergsagel, Bachisio Ziccheddu, Shaji Kumar, Kylee Maclachlan, Andriy Derkach, Juan-Jose Garces, Ross Firestone, Esteban Braggio, Yan Asmann, Michael Durante, Benjamin T Diamond, Marios Papadimitriou, Malin Hultcrantz, Alessio Marella, Giancarlo Castellano, Akihiro Maeda, Marta Lionetti, Antonio Matera, Stefania Pioggia, Matteo Claudio Da Vià, Claudio De Magistris, Daniel Leongamornlert, Danny Deavila, Praneeth Reddy Sudalagunta, Rafael Renatino Canevarolo, Erin M Siegel, Phaedra Agius, Jamie Teer, Andrew Mcpherson, Yusuke Yamashita, Ariosto S Silva, Patrick Blaney, Rachid Baz, Krina K Patel, Peter Campbell, Gareth Morgan, Rafael Fonseca, Ola Landgren, Robert Z Orlowski, Kenneth H Shain, Niccolo Bolli, Saad Usmani, S Vincent Rajkumar Jan 2026

Genomics Define Malignant Transformation In Myeloma Precursor Conditions, Francesco Maura, P Leif Bergsagel, Bachisio Ziccheddu, Shaji Kumar, Kylee Maclachlan, Andriy Derkach, Juan-Jose Garces, Ross Firestone, Esteban Braggio, Yan Asmann, Michael Durante, Benjamin T Diamond, Marios Papadimitriou, Malin Hultcrantz, Alessio Marella, Giancarlo Castellano, Akihiro Maeda, Marta Lionetti, Antonio Matera, Stefania Pioggia, Matteo Claudio Da Vià, Claudio De Magistris, Daniel Leongamornlert, Danny Deavila, Praneeth Reddy Sudalagunta, Rafael Renatino Canevarolo, Erin M Siegel, Phaedra Agius, Jamie Teer, Andrew Mcpherson, Yusuke Yamashita, Ariosto S Silva, Patrick Blaney, Rachid Baz, Krina K Patel, Peter Campbell, Gareth Morgan, Rafael Fonseca, Ola Landgren, Robert Z Orlowski, Kenneth H Shain, Niccolo Bolli, Saad Usmani, S Vincent Rajkumar

Faculty, Staff and Student Publications

Multiple myeloma (MM) is consistently preceded by monoclonal gammopathy of undetermined significance (MGUS) and smoldering multiple myeloma (SMM). While these precursor conditions are asymptomatic, they are not entirely benign and carry a lifelong risk of progression to MM. Unlike other cancers defined by pathology, malignant transformation from MGUS or SMM to MM has so far relied on demonstration of clinical end-organ damage as morphology and cytogenetics cannot reliably distinguish them. In this study, using genomic data from 374 patients with MGUS or SMM (277 training, 97 validation), to our knowledge, we demonstrate for the first time the ability to identify …


The Influence Of Bapineuzumab And Semagacestat On Rapid Progressors: A Retrospective Cohort Study, Kristofer Harris, Madison Shyer, Dulin Wang, Elizabeth He, Matias Cattani, Catherine Zhang, Christine M Farrell, Xiaoqian Jiang, Yejin Kim, Paul E Schulz Jan 2026

The Influence Of Bapineuzumab And Semagacestat On Rapid Progressors: A Retrospective Cohort Study, Kristofer Harris, Madison Shyer, Dulin Wang, Elizabeth He, Matias Cattani, Catherine Zhang, Christine M Farrell, Xiaoqian Jiang, Yejin Kim, Paul E Schulz

Faculty, Staff and Student Publications

Background: A subset of Alzheimer's disease patients progresses much more rapidly than average. These rapid progressors exhibit accelerated cognitive and functional decline. Potential differences in Alzheimer's biomarkers for rapid progressors and their responses to disease-modifying treatments remain poorly understood, with previous clinical trials and studies producing limited biomarker data and inconsistent results.

Objectives: Examine differences in rapid progressor versus non-rapid progressor outcomes in two AD treatment trials (bapineuzumab and semagacestat) and investigate cognitive and biomarker progression in the placebo groups.

Design: Retrospective cohort study.

Setting: Four randomized, double-blind, phase 3 clinical trials from the Center for Global Clinical Research Data …


Ionic Mechanisms Of Two-Pore Channel Regulation Of Vesicle Trafficking, Heng Zhang, Michael X Zhu Jan 2026

Ionic Mechanisms Of Two-Pore Channel Regulation Of Vesicle Trafficking, Heng Zhang, Michael X Zhu

Faculty, Staff and Student Publications

The endolysosomal system plays a pivotal role in cellular function. Before reaching lysosomes for degradation, the endocytosed cargoes are sorted at various stages of endosomal trafficking for recycling and/or rerouting. The proper execution of these processes depends on tightly regulated ion fluxes across endolysosomal membranes. Recent studies have demonstrated the importance of two-pore channels (TPCs), including TPC1 and TPC2, in endolysosomal trafficking. These channels are expressed in the membranes of distinct populations of endosomes and lysosomes, where they respond to nicotinic acid adenine dinucleotide phosphate (NAADP) and phosphatidylinositol 3,5-bisphosphate [PI(3,5)P2] to conduct Ca2+ and Na+ release from these acidic organelles. …


Radionuclide-Stimulated Dynamic Therapy Induces Complementary Immunogenic Necroptosis And Apoptosis Cancer Cell Death Pathways, Christopher Egbulefu, Kvar Black, Xinming Su, Partha Karmakar, Lemoyne Habimana-Griffin, Gail Sudlow, Julie Prior, Ezugo Onejeme, Alex Zheleznyak, Baogang Xu, Yalin Xu, Alison Esser, Matthew Mixdorf, Evan Moss, Brad Manion, Cody Hongsermeier, Nisha Gamadia, Nicole Blasi, Luke Stallings, Chidube Alagbaoso, Nathan Reed, Matthew M Gubin, Chieh-Yu Lin, Robert Schreiber, Katherine Weilbaecher, Samuel Achilefu Jan 2026

Radionuclide-Stimulated Dynamic Therapy Induces Complementary Immunogenic Necroptosis And Apoptosis Cancer Cell Death Pathways, Christopher Egbulefu, Kvar Black, Xinming Su, Partha Karmakar, Lemoyne Habimana-Griffin, Gail Sudlow, Julie Prior, Ezugo Onejeme, Alex Zheleznyak, Baogang Xu, Yalin Xu, Alison Esser, Matthew Mixdorf, Evan Moss, Brad Manion, Cody Hongsermeier, Nisha Gamadia, Nicole Blasi, Luke Stallings, Chidube Alagbaoso, Nathan Reed, Matthew M Gubin, Chieh-Yu Lin, Robert Schreiber, Katherine Weilbaecher, Samuel Achilefu

Faculty, Staff and Student Publications

Radionuclide-stimulated dynamic therapy (RaST) utilizes Cerenkov-radiating radiopharmaceuticals to activate light-sensitive drugs and materials, generating reactive oxygen species (ROS) that inhibit cancer progression. However, the underlying cell death mechanisms are not fully understood. Using ROS-regenerative nanophotosensitizers coated with a tumor-targeting transferrin-titanocene complex and radiolabeled 2-fluorodeoxyglucose, we found that RaST induced apoptosis and necroptosis, characterized by the activation of RIPK-1, RIPK-3, nuclear factor kappa B, and mixed lineage kinase domain-like pseudokinase, leading to membrane permeabilization, cytokine release, and the expression of immunogenic damage-associated molecular patterns. In immune-deficient breast tumor-bearing mice with adequate stroma and growth factors, RaST did not prevent tumor growth …


Comprehensive Metabolic Profiling Across Five Lifespan Stages In Murine Hippocampus And Cortex Reveals Sex-Related Variation In Age-Related Cognitive Decline, Xi Long, Wuping Liu, Changhan Chen, Qi Guo, Yidan Wang, Fang Yu, Yujin Zhang, Rodney E Kellems, Yang Xia Jan 2026

Comprehensive Metabolic Profiling Across Five Lifespan Stages In Murine Hippocampus And Cortex Reveals Sex-Related Variation In Age-Related Cognitive Decline, Xi Long, Wuping Liu, Changhan Chen, Qi Guo, Yidan Wang, Fang Yu, Yujin Zhang, Rodney E Kellems, Yang Xia

Faculty, Staff and Student Publications

This study employs Barnes maze behavioral assessments, untargeted liquid chromatography-mass spectrometry metabolomics, and 13C6-glucose isotopic tracing to systematically investigate cognitive function and metabolic profiles in hippocampal and cortical tissues of male and female mice across five distinct age-ranges. Behavioral analyses reveal significant cognitive decline in both sexes by 16-months-of-age, with females exhibiting more severe impairment by 23-months, demonstrating a sex-related variation. 13C6-glucose tracing analyses reveals that glucose is rapidly and preferentially metabolized toward the Tricarboxylic acid cycle over glycolysis and the pentose phosphate pathway (PPP), with metabolism rates increasing from juvenility to meet developmental demands and maintaining homeostasis into pre-elderly. …


Successful Bacteriophage Treatment Of A Recalcitrant Intra-Abdominal Infection Caused By Multi-Drug-Resistant Pseudomonas Aeruginosa In A 2-Year-Old Child, Sanchi Malhotra, Keiko C Salazar, Neema Pithia, Ishminder Kaur, Kristina Adachi, Nanda Ramachandar, Austin L Terwilliger, Anthony Maresso, Robert S Venick, Suzanne V Mcdiarmid, John S Bradley Jan 2026

Successful Bacteriophage Treatment Of A Recalcitrant Intra-Abdominal Infection Caused By Multi-Drug-Resistant Pseudomonas Aeruginosa In A 2-Year-Old Child, Sanchi Malhotra, Keiko C Salazar, Neema Pithia, Ishminder Kaur, Kristina Adachi, Nanda Ramachandar, Austin L Terwilliger, Anthony Maresso, Robert S Venick, Suzanne V Mcdiarmid, John S Bradley

Faculty, Staff and Students Publications

Antimicrobial resistance is life-threatening to complex pediatric patients who receive multiple courses of broad-spectrum antibiotics. Bacteriophages offer a safe treatment alternative when our antibiotic armamentarium is no longer sufficient. We describe successful use of bacteriophage therapy on a patient with a recalcitrant Pseudomonas aeruginosa infection after receiving a multi-organ transplant.


Foxo1 Inhibition And Fadd Knockdown Have Opposing Effects On Anticancer Drug-Induced Cytotoxicity And P21 Expression In Osteosarcoma Cells, Danielle Walker, Antanay Hall, Alexis Bonwell, Nancy Gordon, Danielle Robinson, Mario G Hollomon Jan 2026

Foxo1 Inhibition And Fadd Knockdown Have Opposing Effects On Anticancer Drug-Induced Cytotoxicity And P21 Expression In Osteosarcoma Cells, Danielle Walker, Antanay Hall, Alexis Bonwell, Nancy Gordon, Danielle Robinson, Mario G Hollomon

Faculty, Staff and Student Publications

Forkhead box class O1 (FOXO1) and fas-associated death domain (FADD) regulate cell death pathways and homeostatic processes such as cell cycle progression and apoptosis. FADD phosphorylation promotes nuclear localization of FOXO1, and FOXO1 regulates FADD expression. Therefore, it is plausible that FOXO1 and FADD have synergistic or antagonistic effects on cell cycle regulation and the response to anticancer drug treatment in cancer cells. In the present study, we report that AS1842856-mediated inhibition of FOXO1 reverses anticancer drug-induced cytotoxicity, while FADD knockdown increases anticancer drug-induced cytotoxicity in osteosarcoma (OS). Reversed anticancer drug-induced cytotoxicity was accompanied by G2/M cell cycle arrest and …


Premature Aging In Serious Mental Illness, Breno S Diniz, Gabriel R Fries, Chia-Ling Kuo, Ming Xu, Eric J Lenze Jan 2026

Premature Aging In Serious Mental Illness, Breno S Diniz, Gabriel R Fries, Chia-Ling Kuo, Ming Xu, Eric J Lenze

Faculty, Staff and Student Publications

Serious mental illnesses (SMIs), including major depressive disorder, bipolar disorder, and schizophrenia, have long been linked to cognitive decline, multiple chronic medical conditions, and premature mortality. These factors significantly contribute to the severe disability seen in SMIs, extending beyond the severity of psychopathology and indicating a premature aging phenotype associated with these conditions. The mechanisms that underlie the relationship between SMIs and the premature aging phenotype are not well understood, but recent evidence suggests that individuals with SMIs may exhibit accelerated biological aging. In this review, we present a comprehensive analysis of the current literature, demonstrating the potential association of …


Glutamatergic Projection Neurons In The Basal Forebrain Underlie Learned Olfactory Associational Valence Assignments, Pey-Shyuan Chin, Zhuokun Ding, Mikhail Kochukov, Snigdha Srivastava, Elizabeth H Moss, Qingchun Tong, Benjamin R Arenkiel Jan 2026

Glutamatergic Projection Neurons In The Basal Forebrain Underlie Learned Olfactory Associational Valence Assignments, Pey-Shyuan Chin, Zhuokun Ding, Mikhail Kochukov, Snigdha Srivastava, Elizabeth H Moss, Qingchun Tong, Benjamin R Arenkiel

Faculty, Staff and Student Publications

Sensory perception is shaped by experience, giving stimuli behavioral significance. Basal forebrain (BF) cholinergic neurons in mice, which are crucial for arousal and motivation, also regulate sensory processing. Within BF nuclei, glutamatergic (vGlut2BF) neurons receive cholinergic input and modulate behaviors, but their roles in encoding sensory significance remain unclear. Using in vivo calcium imaging, we found that vGlut2BF neurons initially poorly encoded odor identity. However, their response to conditioned odors increased following associative learning, and their population activity more distinctly encoded paired stimuli, reflecting emergent value representation. Furthermore, pairing stimulation or inhibition of vGlut2BF neurons with specific odors altered odor …


Loss Of Payload Sensitivity And Other Mechanisms Of Resistance To T-Dxd In Her2-Mutant Nsclc: Implications For Subsequent Responsiveness To Her2 Tkis, Monique B Nilsson, Xiuning Le, Alissa Poteete, Xiaoxing Yu, Junqin He, Qian Huang, Yuji Shibata, Ximeng Liu, Cesar Moran, Ash A Alizadeh, Maximilian Diehn, Heather Wakelee, Diego Almanza, Scott Soltys, Takeshi Sugio, Jurik Mutter, Xiaoman Kang, Rui Wang, Soyeong Jun, Mohammad Shahrokh Esfahani, Hai Tran, Yuanxin Xi, Lingzhi Hong, Xiaofang Huo, Ashwani Kumar, Xiaoyang Ren, Kei Oguchi, Kazuhisa Minamiguchi, Caroline M Weipert, Jing Wang, Ralf Kittler, John V Heymach Jan 2026

Loss Of Payload Sensitivity And Other Mechanisms Of Resistance To T-Dxd In Her2-Mutant Nsclc: Implications For Subsequent Responsiveness To Her2 Tkis, Monique B Nilsson, Xiuning Le, Alissa Poteete, Xiaoxing Yu, Junqin He, Qian Huang, Yuji Shibata, Ximeng Liu, Cesar Moran, Ash A Alizadeh, Maximilian Diehn, Heather Wakelee, Diego Almanza, Scott Soltys, Takeshi Sugio, Jurik Mutter, Xiaoman Kang, Rui Wang, Soyeong Jun, Mohammad Shahrokh Esfahani, Hai Tran, Yuanxin Xi, Lingzhi Hong, Xiaofang Huo, Ashwani Kumar, Xiaoyang Ren, Kei Oguchi, Kazuhisa Minamiguchi, Caroline M Weipert, Jing Wang, Ralf Kittler, John V Heymach

Faculty, Staff and Student Publications

Introduction: Effective therapies are needed for patients with NSCLC with HER2-mutant tumors who progress on the HER2 antibody-drug conjugate trastuzumab deruxtecan (T-DXd), a standard-of-care treatment. A greater understanding of mechanisms mediating acquired T-DXd resistance and whether these tumors could benefit from HER2 tyrosine kinase inhibitors (TKIs) is needed.

Methods: Using preclinical models of acquired T-DXd resistance, LentiMutate scanning mutagenesis, and clinical analyses, we investigated mechanisms mediating acquired resistance to T-DXd and assessed the impact of each of these resistance mechanisms on cross-resistance to alternative HER2-targeting approaches.

Results: We determined that acquired resistance to T-DXd could occur through multiple mechanisms including …


Aberrant Cd25 And Increased Cd123 Expression Are Common In Acute Myeloid Leukemia With Kmt2a Partial Tandem Duplication And Are Associated With Flt3 Internal Tandem Duplication, Qing Wei, Guilin Tang, Shaoying Li, Sa A Wang, Pei Lin, Wei Wang, Sanam Loghavi, Wei J Wang, L Jeffrey Medeiros, Jie Xu Jan 2026

Aberrant Cd25 And Increased Cd123 Expression Are Common In Acute Myeloid Leukemia With Kmt2a Partial Tandem Duplication And Are Associated With Flt3 Internal Tandem Duplication, Qing Wei, Guilin Tang, Shaoying Li, Sa A Wang, Pei Lin, Wei Wang, Sanam Loghavi, Wei J Wang, L Jeffrey Medeiros, Jie Xu

Faculty, Staff and Student Publications

Background: KMT2A partial tandem duplication (PTD) occurs in approximately 5-10% of acute myeloid leukemia (AML) cases and is associated with poor prognosis. While its cytogenetic and molecular features are well described, the immunophenotypic characteristics of AML with KMT2A-PTD remain incompletely defined.

Methods: We identified 47 cases of AML with KMT2A-PTD by optical genome mapping. All cases underwent flow cytometric immunophenotypic analysis and next-generation sequencing using an 81-gene panel.

Results: The cohort included 32 men and 15 women with a median age of 67 years (range, 19-87). Thirty-eight cases were de novo AML, and nine were secondary to myelodysplastic …


Emt-Induced Stem Cell And Mesenchymal Programs Can Be Decoupled Via Cell Division And Esrp1-Dependent Mechanisms, Petra Den Hollander, Maria Castaneda, Suhas V Vasaikar, Joanna Joyce Maddela, Claire Gould, Breanna R Demestichas, Robiya Joseph, Shivangi Agarwal, Abhijeet P Deshmukh, Alvina Zia, Shruti Shah, Tieling Zhou, Geraldine Raja, Paul Allegakoen, Nick A Kuburich, Mika Pietila, Chunxiao Fu, Jeffrey Chang, Chad J Creighton, William F Symmans, Rama Soundararajan, Sendurai A Mani Jan 2026

Emt-Induced Stem Cell And Mesenchymal Programs Can Be Decoupled Via Cell Division And Esrp1-Dependent Mechanisms, Petra Den Hollander, Maria Castaneda, Suhas V Vasaikar, Joanna Joyce Maddela, Claire Gould, Breanna R Demestichas, Robiya Joseph, Shivangi Agarwal, Abhijeet P Deshmukh, Alvina Zia, Shruti Shah, Tieling Zhou, Geraldine Raja, Paul Allegakoen, Nick A Kuburich, Mika Pietila, Chunxiao Fu, Jeffrey Chang, Chad J Creighton, William F Symmans, Rama Soundararajan, Sendurai A Mani

Faculty, Staff and Student Publications

Epithelial-to-mesenchymal transition (EMT) is known to induce both stemness and mesenchymal properties, and our findings reveal that these two programs can be uncoupled. During EMT, epithelial cells transition from symmetric divisions producing differentiated daughter cells to self-renewing daughter cells. When we block cell division and induce EMT, cells gain mesenchymal properties but not stemness, suggesting the importance of cell division for gaining stemness. We identified ESRP1 as a key regulator of EMT-driven stemness, which get downregulated during EMT in a cell division-dependent manner. Overexpression of ESRP1 prevents the gain of stemness without affecting the mesenchymal program. Only the stemness and …


Role Of The Etv5/P38 Signaling Axis In Aggressive Thyroid Cancer Cells, Jerry H Houl, Rozita Bagheri-Yarmand, Muthusamy Kunnimalaiyaan, Paola Miranda Mendez, Joseph L Kidd, Ali Dadbin, Andrea Ruiz-Jurado, Parag A Parekh, Ying C Henderson, Nikhil S Chari, Aatish Thennavan, Reid T Powell, Clifford C Stephan, Xiao Zhao, Anastasios Maniakas, Roza Nurieva, Naifa L Busaidy, Maria E Cabanillas, Ramona Dadu, Mark Zafereo, Jennifer R Wang, Stephen Y Lai, Marie-Claude Hofmann Jan 2026

Role Of The Etv5/P38 Signaling Axis In Aggressive Thyroid Cancer Cells, Jerry H Houl, Rozita Bagheri-Yarmand, Muthusamy Kunnimalaiyaan, Paola Miranda Mendez, Joseph L Kidd, Ali Dadbin, Andrea Ruiz-Jurado, Parag A Parekh, Ying C Henderson, Nikhil S Chari, Aatish Thennavan, Reid T Powell, Clifford C Stephan, Xiao Zhao, Anastasios Maniakas, Roza Nurieva, Naifa L Busaidy, Maria E Cabanillas, Ramona Dadu, Mark Zafereo, Jennifer R Wang, Stephen Y Lai, Marie-Claude Hofmann

Faculty, Staff and Student Publications

Patients with poorly differentiated thyroid cancer (PDTC) and anaplastic thyroid cancer (ATC) face a much poorer prognosis than those with differentiated thyroid cancers. Around 25% of PDTCs and 35% of ATCs carry the BRAFV600E mutation, which constitutively activates the MAPK pathway, a key driver of cell growth. Although combining BRAF and MEK inhibitors can shrink tumors, resistance often develops. The exact cause of this resistance remains unclear. We previously found that in PDTC and ATC cells, the BRAFV600E mutation is strongly linked to the expression of ETV5, a transcription factor downstream of the MAPK pathway. In the current study, we …


Advances In Targeting Her2 Across Cancer Subtypes: A Pan-Tumor Approach, Taiwo Adesoye, Ecaterina E Dumbrava, Kanwal P S Raghav, Aysegul A Sahin, Hui Chen, Sunyoung S Lee, Milind M Javle, Shubham Pant, Omar Alhalabi, Xiuning Le, Vicente Valero, Paula R Pohlmann, Funda Meric-Bernstam Jan 2026

Advances In Targeting Her2 Across Cancer Subtypes: A Pan-Tumor Approach, Taiwo Adesoye, Ecaterina E Dumbrava, Kanwal P S Raghav, Aysegul A Sahin, Hui Chen, Sunyoung S Lee, Milind M Javle, Shubham Pant, Omar Alhalabi, Xiuning Le, Vicente Valero, Paula R Pohlmann, Funda Meric-Bernstam

Faculty, Staff and Student Publications

Human epidermal growth factor receptor 2 (HER2) is an established therapeutic target in multiple solid tumors, particularly breast and gastric cancers. Significant advancements have been made in the development of HER2-targeted therapies, including monoclonal antibodies, tyrosine kinase inhibitors, antibody-drug conjugates (ADC), and novel bispecific antibodies. These agents have revolutionized the treatment landscape for HER2-positive metastatic cancers, resulting in improved progression-free and overall survival, and quality of life for patients. Beyond breast and gastric cancers, HER2 expression/amplification has been observed in other solid tumors, such as colorectal, lung, bladder, ovarian, and biliary tract cancers, offering new opportunities for personalized therapy in …


Integrative Spatial Multi-Omics Reveal Niche-Specific Inflammatory Signaling And Differentiation Hierarchies In Aml, Enes Dasdemir, Ivo Veletic, Christopher P Ly, Andres E Quesada, Christopher D Pacheco, Fatima Z Jelloul, Pamella Borges, Sreyashi Basu, Sonali Jindal, Zhiqiang Wang, Alexander Lazar, Khalida M Wani, Dinler A Antunes, Patrick K Reville, Preethi H Gunaratne, Robert J Tower, Padmanee Sharma, Hussein A Abbas Jan 2026

Integrative Spatial Multi-Omics Reveal Niche-Specific Inflammatory Signaling And Differentiation Hierarchies In Aml, Enes Dasdemir, Ivo Veletic, Christopher P Ly, Andres E Quesada, Christopher D Pacheco, Fatima Z Jelloul, Pamella Borges, Sreyashi Basu, Sonali Jindal, Zhiqiang Wang, Alexander Lazar, Khalida M Wani, Dinler A Antunes, Patrick K Reville, Preethi H Gunaratne, Robert J Tower, Padmanee Sharma, Hussein A Abbas

Faculty, Staff and Student Publications

Acute myeloid leukemia (AML) is a clonal disorder characterized by immature blasts and arrested differentiation that primarily affects the bone marrow (BM) and occasionally presents as extramedullary (EM) disease. EM manifestations highlight AML's adaptability to distinct microenvironments, which we examined using spatial analyses of medullary and EM tissues. We describe a workflow for Visium-based spatial transcriptomics in medullary and EM AML, revealing insights into cell-cell communication and the spatial organization of AML hierarchies. In BM, monocytes and granulocyte-monocyte progenitors colocalized with leukemic populations, sharing molecular signatures with those in EM sample. CXCL12-CXCR4-mediated communication correlated with PI3K/AKT/mTOR signaling in inflammatory niches.


Rnai-Based Screen For Pigmentation In Drosophila Melanogaster Reveals Regulators Of Brain Dopamine And Sleep, Samantha L Deal, Danqing Bei, Shelley B Gibson, Harim Delgado-Seo, Yoko Fujita, Kyla Wilwayco, Elaine S Seto, Amita Sehgal, Shinya Yamamoto Jan 2026

Rnai-Based Screen For Pigmentation In Drosophila Melanogaster Reveals Regulators Of Brain Dopamine And Sleep, Samantha L Deal, Danqing Bei, Shelley B Gibson, Harim Delgado-Seo, Yoko Fujita, Kyla Wilwayco, Elaine S Seto, Amita Sehgal, Shinya Yamamoto

Faculty, Staff and Students Publications

The dopaminergic system has a large role in behavior and neurological disease, and understanding dopamine level regulation in vivo is critical. To identify dopamine regulators, we utilized Drosophila melanogaster cuticle pigmentation, where dopamine is a precursor to melanin. We measured dopamine from known pigmentation mutants (e.g., tan, ebony, black) and performed an RNAi-based screen to identify additional regulators. We found 153 hits, enriched for developmental signaling pathways and mitochondria-associated proteins. From 35 prioritized candidates, 11 affected head dopamine levels. Effects on brain dopamine were mild, even knocking down the rate-limiting synthesis enzyme Tyrosine hydroxylase (TH), suggesting …


Associations Of Arsenic Exposure And Folate In Maternal Leukocyte Dna Methylation: A Case-Control Study Of Mothers With Spina-Bifida Affected Children, Amy M Inkster, Anne K Bozack, Bernardo Lemos, Tabitha Lumour-Mensah, Sudipta Kumar Mukherjee, Shekh Muhammad Ekramullah, D M Arman, Joynul Islam, Xingyan Wang, Liming Liang, Richard H Finnell, Maitreyi Mazumdar, Andres Cardenas Jan 2026

Associations Of Arsenic Exposure And Folate In Maternal Leukocyte Dna Methylation: A Case-Control Study Of Mothers With Spina-Bifida Affected Children, Amy M Inkster, Anne K Bozack, Bernardo Lemos, Tabitha Lumour-Mensah, Sudipta Kumar Mukherjee, Shekh Muhammad Ekramullah, D M Arman, Joynul Islam, Xingyan Wang, Liming Liang, Richard H Finnell, Maitreyi Mazumdar, Andres Cardenas

Faculty, Staff and Students Publications

No abstract provided.


Epigenome-Wide Association Study Meta-Analysis Of Bmi In African Americans, Kendra Ferrier, Mariaelisa Graff, Iain R Konigsberg, Maggie Stanislawski, Heather M Highland, Laura M Raffield, April P Carson, Eric Boerwinkle, Jill M Norris, Chris R Gignoux, Audrey E Hendricks, Sridharan Raghavan, Kari E North, Kristin L Young, Anne E Justice, Matthew A Allison, Mathew J Budoff, Silva Kasela, François Aguet, Joshua J Joseph, Charles Kooperberg, Stephen S Rich, Jerome I Rotter, Ethan M Lange, Leslie A Lange Jan 2026

Epigenome-Wide Association Study Meta-Analysis Of Bmi In African Americans, Kendra Ferrier, Mariaelisa Graff, Iain R Konigsberg, Maggie Stanislawski, Heather M Highland, Laura M Raffield, April P Carson, Eric Boerwinkle, Jill M Norris, Chris R Gignoux, Audrey E Hendricks, Sridharan Raghavan, Kari E North, Kristin L Young, Anne E Justice, Matthew A Allison, Mathew J Budoff, Silva Kasela, François Aguet, Joshua J Joseph, Charles Kooperberg, Stephen S Rich, Jerome I Rotter, Ethan M Lange, Leslie A Lange

Faculty, Staff and Student Publications

Despite considerable advances in identifying risk factors for obesity, gaps remain in our understanding about its etiology. Genetic variants explain only a small portion of variation in obesity-related traits such as body mass index (BMI). Epigenetic regulation, which controls gene expression and is influenced by environmental and genetic factors, may account for additional variability in BMI. Epigenetic studies of BMI have largely been conducted in European ancestry populations, despite the disproportionate burden of obesity in African Americans (AAs). We conducted a sex-stratified BMI epigenome-wide association study meta-analysis in AA participants from the Jackson Heart Study (n = 1,604) and …


Dna Methyltransferase Inhibitors In Hematological Malignancies And Solid Tumors, Valentin Wenger, Guillermo Garcia-Manero, Robert Zeiser, Michael Lübbert Jan 2026

Dna Methyltransferase Inhibitors In Hematological Malignancies And Solid Tumors, Valentin Wenger, Guillermo Garcia-Manero, Robert Zeiser, Michael Lübbert

Faculty, Staff and Student Publications

Epigenetic modifications such as DNA methylation play a fundamental role in oncogenesis and the progression of neoplasms neoplasias. DNA methyltransferase inhibitors (DNMTi) constitute a family of therapeutic agents that impede the methylation at the 5-position on cytosine nucleotides, thereby modulating the epigenetic regulation of tumor suppressor genes, oncogenes, and other key regulatory genes. The first-generation DNMTi azacitidine and decitabine have demonstrated substantial efficacy in the treatment of medically non-fit, older patients with acute myeloid leukemia (AML) or myelodysplastic syndrome (MDS) ineligible for intensive chemotherapy (IC), by virtue of their favorable safety profile. Despite these clinical achievements, however, single-agent DNMTi treatment …


C Elegans As A Tractable Infection Model For The Emerging Fungal Pathogen Candida Auris, Melissa Martinez, Melissa R Cruz, Danielle A Garsin, Michael C Lorenz Jan 2026

C Elegans As A Tractable Infection Model For The Emerging Fungal Pathogen Candida Auris, Melissa Martinez, Melissa R Cruz, Danielle A Garsin, Michael C Lorenz

Faculty, Staff and Student Publications

Candida auris is an emerging multidrug-resistant fungal pathogen. The genetic factors contributing to the virulence, drug resistance, and stress-tolerant nature of C. auris are mostly unknown. Additional animal models of virulence are needed, especially those amenable to high-throughput analysis. The nematode Caenorhabditis elegans has been validated as an effective tool for studying multiple fungal and bacterial pathogens. We describe here a C. elegans infection model in which exposure to C. auris is lethal to worms with kinetics similar to killing by Candida albicans; in contrast to C. albicans, C. auris does not form hyphae, indicating distinct virulence mechanisms. …


Bdcd: A Comprehensive Brain Disease Cell-Cell Communication Database, Xinyi Liu, Citu Citu, Gang Qu, Wendao Liu, Nitesh Enduru, Andi Liu, Chia-Hao Tung, Zhongming Zhao Jan 2026

Bdcd: A Comprehensive Brain Disease Cell-Cell Communication Database, Xinyi Liu, Citu Citu, Gang Qu, Wendao Liu, Nitesh Enduru, Andi Liu, Chia-Hao Tung, Zhongming Zhao

Faculty, Staff and Student Publications

Dysregulated cell–cell communication (CCC) is increasingly recognized as a driver of brain disease pathology, contributing to neuroinflammation, synaptic dysfunction, and neurodegeneration. Nevertheless, existing resources remain limited in brain specificity, regional coverage, and functional annotation. To address this gap, we develop the Brain Disease Cell-cell communication Database (BDCD), the first comprehensive resource focused on CCC networks across major brain diseases. BDCD integrates 38 manually curated datasets, comprising 8 519 425 single cells from single-cell RNA-seq studies and 140 744 spots from spatial transcriptomic maps, spanning 14 brain regions and 13 canonical cell types covering Alzheimer’s disease, Parkinson’s disease, schizophrenia, bipolar disorder, …


Bridging Hypoxia And Vision Loss: The Emerging Role Of Connexins In Local And Systemic Eye Diseases, Xianping Zhang, Yalong Cheng, Jean X Jiang, Yuting Li Jan 2026

Bridging Hypoxia And Vision Loss: The Emerging Role Of Connexins In Local And Systemic Eye Diseases, Xianping Zhang, Yalong Cheng, Jean X Jiang, Yuting Li

Faculty, Staff and Student Publications

Hypoxic eye diseases represent a pivotal yet often underappreciated contributor to the onset and progression of many retinal disorders. When hypoxia persists or exceeds the tissue's compensatory capacity, it triggers pathological retinal neovascularization, blood-retinal barrier disruption, and neuronal apoptosis, ultimately resulting in irreversible visual impairment. Connexins (Cxs) form gap junction channels and hemichannels and regulate retinal cell proliferation, differentiation, and survival, thereby playing a central regulatory role in the pathogenesis of hypoxic ocular diseases. In addition to gap junctions, Cx hemichannels promote transmission of molecules between intra- and extracellular environments, further influencing retinal homeostasis under hypoxic stress. This review synthesizes …


Retention On Buprenorphine For Opioid Use Disorder In Justice-Involved Individuals: A Retrospective Cohort Study, Andrea Yatsco, Francine R Vega, Audrey Sarah Cohen, Marylou Cardenas-Turanzas, James R Langabeer, Tiffany Champagne-Langabeer Jan 2026

Retention On Buprenorphine For Opioid Use Disorder In Justice-Involved Individuals: A Retrospective Cohort Study, Andrea Yatsco, Francine R Vega, Audrey Sarah Cohen, Marylou Cardenas-Turanzas, James R Langabeer, Tiffany Champagne-Langabeer

Faculty, Staff and Student Publications

Criminal justice system (CJS) involvement is common among individuals with opioid use disorder (OUD), yet limited research examines retention in medications for OUD (MOUD) within community settings. This study assessed whether CJS involvement predicted retention on buprenorphine/naloxone and explored related demographic and clinical factors. A retrospective cohort included adults (n = 367) enrolled in a low-barrier outpatient MOUD program in Texas (January 2022–April 2024). CJS involvement was identified from program records. Retention was measured as the number of continuous days with buprenorphine/naloxone prescriptions. Analyses used univariate tests, logistic regression, and nonparametric kernel regression. Nearly one-quarter (24.8%) were CJS-involved. Retention at …


The Impact Of Indigenous American-Like Ancestry On The Risk Of Acute Lymphoblastic Leukemia In Hispanic/Latino Children, Jalen Langie, Tsz Fung Chan, Wenjian Yang, Alice Y Kang, Libby Morimoto, Daniel O Stram, Nicholas Mancuso, Xiaomei Ma, Catherine Metayer, Philip J Lupo, Karen R Rabin, Michael E Scheurer, Joseph L Wiemels, Jun J Yang, Adam J De Smith, Charleston W K Chiang Jan 2026

The Impact Of Indigenous American-Like Ancestry On The Risk Of Acute Lymphoblastic Leukemia In Hispanic/Latino Children, Jalen Langie, Tsz Fung Chan, Wenjian Yang, Alice Y Kang, Libby Morimoto, Daniel O Stram, Nicholas Mancuso, Xiaomei Ma, Catherine Metayer, Philip J Lupo, Karen R Rabin, Michael E Scheurer, Joseph L Wiemels, Jun J Yang, Adam J De Smith, Charleston W K Chiang

Faculty, Staff and Students Publications

Acute lymphoblastic leukemia (ALL) is the most common childhood cancer, with Hispanic/Latino children having a higher incidence of ALL than other racial/ethnic groups. Among the genetic variants previously implicated in ALL risk, a number of them were found to be enriched in Indigenous American (IA)-like ancestries and inherited by many Hispanic/Latino individuals. However, due to potential confounding from environmental factors, the association between IA-like ancestry and risk for ALL has remained unclear. In this study, we characterized the impact of IA-like ancestry on overall ALL risk and on the frequency and effect size of known risk alleles, while accounting for …


Understanding The Compatibility Of Fluoride-Based Radiopharmaceutical Reaction Solutions And Pdms, Mark Mc Veigh, Charles Frech, Mai Lin, Robert Ta, H Charles Manning, Leon M Bellan Jan 2026

Understanding The Compatibility Of Fluoride-Based Radiopharmaceutical Reaction Solutions And Pdms, Mark Mc Veigh, Charles Frech, Mai Lin, Robert Ta, H Charles Manning, Leon M Bellan

Faculty, Staff and Student Publications

Microfluidic devices offer unique and exciting benefits when applied to radiopharmaceutical manufacturing, and these platforms are now starting to be integrated into commercial products. The field has strayed away from the use of polydimethylsiloxane (PDMS), the most common microfluidic device material, due to its suspected incompatibility with 18F, the most commonly used radionuclide. However, existing literature provides conflicting conclusions as to the existence and extent of this incompatibility. In this study, we use several analytical instruments to uncover the underlying interaction between fluoride and PDMS. SEM imaging and profilometry confirm the reactive relationship between the two materials and suggest that …


Autograft Enlargement After The Ross Procedure In Pediatric Patients: Somatic Growth Or Pathologic Dilatation?, Ioannis Zoupas, Alexander C Mills, Scott D Olson, Damien J Lapar Jan 2026

Autograft Enlargement After The Ross Procedure In Pediatric Patients: Somatic Growth Or Pathologic Dilatation?, Ioannis Zoupas, Alexander C Mills, Scott D Olson, Damien J Lapar

Faculty, Staff and Student Publications

Purpose of ReviewPulmonary autograft autotransplantation represents a popular surgical approach for pediatric patients requiring aortic valve replacement due to the potential for autograft enlargement to accommodate somatic growth. Nevertheless, autograft dilatation and the subsequent need for reintervention are quite common. Published data suggest that autograft enlargement may result from pathological passive remodeling rather than active somatic growth and vice versa. The present review serves to comprehensively evaluate available evidence related to the fate of the pulmonary autograft after the Ross procedure as it relates to the etiology, risk factors and patterns of autograft failure.ResultsStudies present conflicting results supporting both pathological …