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Variable And Conserved Features Of Copy-Back Viral Genome Populations Generated De Novo During Sendai Virus Infection, Yanling Yang, Yuchen Wang, Carolina B López Feb 2026

Variable And Conserved Features Of Copy-Back Viral Genome Populations Generated De Novo During Sendai Virus Infection, Yanling Yang, Yuchen Wang, Carolina B López

2020-Current year OA Pubs

Copy-back viral genomes (cbVGs) are generated during the replication of negative-sense RNA viruses when the polymerase drops off from the genome and reattaches to the nascent strand. cbVGs have strong immunostimulatory properties and impact infection outcomes. Despite their importance, the composition and mechanisms of


Engineering Chimeric Antigen Receptor Cd4 T Cells For Alzheimer's Disease, Pavle Boskovic, Rotem Shalita, Wenqing Gao, Hailey Vernon, Yu Lin Deng, Marco Colonna, Robbie G Majzner, Ido Amit, Jonathan Kipnis Feb 2026

Engineering Chimeric Antigen Receptor Cd4 T Cells For Alzheimer's Disease, Pavle Boskovic, Rotem Shalita, Wenqing Gao, Hailey Vernon, Yu Lin Deng, Marco Colonna, Robbie G Majzner, Ido Amit, Jonathan Kipnis

2020-Current year OA Pubs

Alzheimer's disease (AD) is the prevailing cause of age-associated dementia worldwide. Current standard of care relies on antibody-based immunotherapy. However, antibody-based approaches carry risks for patients, and their effects on cognition are marginal. Increasing evidence suggests that T cells contribute to AD onset and progression. Unlike the cytotoxic effects of CD8


Larval Zebrafish Minimize Energy Consumption During Hunting Via Adaptive Movement Selection, Thomas Darveniza, Robert Wong, Shuyu I Zhu, Zac Pujic, Biao Sun, Matthew Levendosky, Ramesh Agarwal, Michael H Mccullough, Geoffrey J Goodhill Feb 2026

Larval Zebrafish Minimize Energy Consumption During Hunting Via Adaptive Movement Selection, Thomas Darveniza, Robert Wong, Shuyu I Zhu, Zac Pujic, Biao Sun, Matthew Levendosky, Ramesh Agarwal, Michael H Mccullough, Geoffrey J Goodhill

2020-Current year OA Pubs

Animals must balance behavioral goals with the energetic costs of movement. How such trade-offs are implemented algorithmically during natural behavior, and how they adapt to changing energetic constraints, remains poorly understood. Here we show that larval zebrafish adjust their motor strategies during prey hunting to minimize energy expenditure. Using high-speed video tracking and 3D computational fluid dynamics simulations, we quantified the energy costs (in Joules) of different movement types across three developmental stages. While the structure of discrete movement types ("bouts") remained stable with age, their selection probabilities changed depending on their energetic cost, such that more expensive bouts were …


Long-Acting Interleukin-7 Improves The Efficacy Of Oncolytic Viral Therapy In Glioblastoma, Yuping Derek Li, David A Giles, Yi Huang, Ashwani Kesarwani, Tong Hu, Logan Page, Amanda De Andrade Costa, Jingqin Luo, Mai T Dang, Albert H Kim, John F Dipersio, David T Curiel, Michael S Diamond, Milan G Chheda, Et Al. Feb 2026

Long-Acting Interleukin-7 Improves The Efficacy Of Oncolytic Viral Therapy In Glioblastoma, Yuping Derek Li, David A Giles, Yi Huang, Ashwani Kesarwani, Tong Hu, Logan Page, Amanda De Andrade Costa, Jingqin Luo, Mai T Dang, Albert H Kim, John F Dipersio, David T Curiel, Michael S Diamond, Milan G Chheda, Et Al.

2020-Current year OA Pubs

Despite advances in immunotherapy, the prognosis for patients with glioblastoma (GBM) remains poor. The efficacy of GBM-targeted immunotherapies is limited by the paucity of functional T cells in the tumor microenvironment, a consequence of the local and systemic immunosuppression prevalent in patients with GBM. To overcome these challenges, here we develop a treatment strategy we term "expand and pull," which uses systemic administration of rhIL-7-hyFc, a long-acting recombinant human interleukin-7, to increase peripheral T cell abundance ("expand"), followed by intratumoral oncolytic virus treatment to recruit these cells to the tumor microenvironment ("pull"). We show that rhIL-7-hyFc improves the efficacy of …


Non-Canonical Role Of Dna Mismatch Repair On Sensory Processing In Mice, Sadia N Rahman, Demetrios Neophytou, Siboney Oviedo-Gray, Bao Q Vuong, Hysell V Oviedo Feb 2026

Non-Canonical Role Of Dna Mismatch Repair On Sensory Processing In Mice, Sadia N Rahman, Demetrios Neophytou, Siboney Oviedo-Gray, Bao Q Vuong, Hysell V Oviedo

2020-Current year OA Pubs

DNA repair mechanisms are essential for cellular development and function. In post-mitotic neurons, deficiencies in DNA damage response proteins can lead to severe neurodegenerative and neurodevelopmental disorders. One highly conserved factor involved in DNA repair is MutS Homolog 2 (Msh2), which is responsible for correcting base-base mismatches and insertion/deletion loops during cell proliferation. However, its role in mature neurons remains poorly understood. This study investigates the impact of Msh2 loss on sensory processing in mice. Using electrophysiological and molecular assays, we identifiedsignificant deficits in cortical and thalamic sound processing in Msh2


Sting Activation Induces Cytotoxic And Immune Responses In Meningiomas Via Inflammatory Cell Death Pathways, Mark W Youngblood, Alexander H Stegh, Et Al. Feb 2026

Sting Activation Induces Cytotoxic And Immune Responses In Meningiomas Via Inflammatory Cell Death Pathways, Mark W Youngblood, Alexander H Stegh, Et Al.

2020-Current year OA Pubs

Meningiomas are common tumors of the central nervous system that are typically treated with surgery or radiation, but lack established systemic therapies. Activation of the stimulator of interferon genes pathway with an agonist such as 8803 can trigger anti-tumor immune responses. Using integrated molecular approaches, here we show that this pathway is targetable in both neoplastic and immune populations within the meningioma microenvironment. Meningioma tumor cells exhibit promoter hypomethylation and increased chromatin accessibility of the STING genomic locus, associated with robust expression of this gene. Treatment of diverse patient meningiomas ex vivo with 8803 induces direct tumor cytotoxicity through inflammatory …


Targeting The Lung Innate Pathways During Tuberculosis Can Improve Vaccine-Induced Protection Via Th17 Responses In Diversity Outbred Mice, Mushtaq Ahmed, Shibali Das, Bruce A Rosa, Javier Rangel Moreno, Deepak Kaushal, Makedonka Mitreva, Shabaana A Khader Feb 2026

Targeting The Lung Innate Pathways During Tuberculosis Can Improve Vaccine-Induced Protection Via Th17 Responses In Diversity Outbred Mice, Mushtaq Ahmed, Shibali Das, Bruce A Rosa, Javier Rangel Moreno, Deepak Kaushal, Makedonka Mitreva, Shabaana A Khader

2020-Current year OA Pubs

UNLABELLED: Tuberculosis (TB), caused by the bacterium

IMPORTANCE: Bacille Calmette Guerin (BCG) vaccination in genetically diverse outbred (DO) mice provides significant protection against


Bioactive Lipid-Mediated Structural And Functional Regulation Of The Essential Human Potassium Channel Kir7.1, Qingwei Niu, Simon Vu, Yuanjian Xu, Mingxing Qian, Anastasiia Rudenko, Jin Ye, Jianwei Zeng, Wei Huang, Douglas F Covey, Rui Zhang, Ziao Fu, Polina V Lishko Feb 2026

Bioactive Lipid-Mediated Structural And Functional Regulation Of The Essential Human Potassium Channel Kir7.1, Qingwei Niu, Simon Vu, Yuanjian Xu, Mingxing Qian, Anastasiia Rudenko, Jin Ye, Jianwei Zeng, Wei Huang, Douglas F Covey, Rui Zhang, Ziao Fu, Polina V Lishko

2020-Current year OA Pubs

The inwardly rectifying potassium channel Kir7.1 is essential for the physiological function of diverse tissues, including the retinal pigment epithelium and the gestational myometrium. Loss-of-function mutations in KCNJ13, which encodes Kir7.1, or conditional ablation of Kir7.1 in the retinal pigment epithelium, lead to early-onset vision loss. Despite strong genetic evidence supporting Kir7.1 as a therapeutic target, its regulation by endogenous ligands-beyond phosphoinositides-remains poorly understood. Here, we report cryo-electron microscopy structures of human Kir7.1 in multiple functional states at resolutions ranging from 2.8 Å to 4.0 Å. These structures uncover the molecular basis of Kir7.1 modulation by PI


Ex Vivo Microfluidic Model Identifies A Role For Shear Stress During Ovarian Tumor Cell Attachment To Peritoneal Mesothelial Cells, Vasilios A Morikis, Breanna Baker, Jillian A Martin, Angela Schab, Alessandra Dimauro, Gregory D Longmore, Whitney R Grither Feb 2026

Ex Vivo Microfluidic Model Identifies A Role For Shear Stress During Ovarian Tumor Cell Attachment To Peritoneal Mesothelial Cells, Vasilios A Morikis, Breanna Baker, Jillian A Martin, Angela Schab, Alessandra Dimauro, Gregory D Longmore, Whitney R Grither

2020-Current year OA Pubs

Ascites, or a pathologic accumulation of intra-abdominal fluid, is a key feature of intraperitoneally disseminating cancers, such as ovarian cancer. This pathological fluid buildup can influence the adhesive abilities of ovarian cancer cells, as they spread throughout the abdominal cavity to form metastatic implants on organs lined with a specialized monolayer of mesothelial cells. Robust methods for assessing the impact of fluid shear stress on this cell-cell interaction are lacking. Here, we develop and characterize a novel microfluidic device that allows for the determination of the attachment of ovarian tumor cells to mesothelial cells under the influence of fluid flow. …


Phytic Acid (Insp6) Activates Hdac3 Epigenetic Axis To Maintain Intestinal Barrier Function, Sujan Chatterjee, Katherine Huang, Kayci Huff-Hardy, Richard Rood, Anas Gremida, Martin Gregory, Chien-Huan Chen, Parakkal Deepak, Et Al. Feb 2026

Phytic Acid (Insp6) Activates Hdac3 Epigenetic Axis To Maintain Intestinal Barrier Function, Sujan Chatterjee, Katherine Huang, Kayci Huff-Hardy, Richard Rood, Anas Gremida, Martin Gregory, Chien-Huan Chen, Parakkal Deepak, Et Al.

2020-Current year OA Pubs

HDAC inhibition shows promise in cancer treatment but pan-HDAC inhibitors cause gastrointestinal issues in 48% of patients. Understanding HDAC activation mechanisms is crucial to treating diverse diseases beyond cancer. Our study reveals that inositol polyphosphate multikinase (IPMK) and inositol hexakisphosphate (InsP


Ex Vivo Microfluidic Model Identifies A Role For Shear Stress During Ovarian Tumor Cell Attachment To Peritoneal Mesothelial Cells, Vasilios A Morikis, Breanna Baker, Jillian A Martin, Angela Schab, Alessandra Dimauro, Gregory D Longmore, Whitney R Grither Feb 2026

Ex Vivo Microfluidic Model Identifies A Role For Shear Stress During Ovarian Tumor Cell Attachment To Peritoneal Mesothelial Cells, Vasilios A Morikis, Breanna Baker, Jillian A Martin, Angela Schab, Alessandra Dimauro, Gregory D Longmore, Whitney R Grither

2020-Current year OA Pubs

Ascites, or a pathologic accumulation of intra-abdominal fluid, is a key feature of intraperitoneally disseminating cancers, such as ovarian cancer. This pathological fluid buildup can influence the adhesive abilities of ovarian cancer cells, as they spread throughout the abdominal cavity to form metastatic implants on organs lined with a specialized monolayer of mesothelial cells. Robust methods for assessing the impact of fluid shear stress on this cell-cell interaction are lacking. Here, we develop and characterize a novel microfluidic device that allows for the determination of the attachment of ovarian tumor cells to mesothelial cells under the influence of fluid flow. …


Therapeutic Reprogramming Of Tumour-Associated Macrophages In Pancreatic Cancer Using A Cytotoxic Ccr2-Targeted Nanotheranostic, Vikas Kumar Somani, Xiaohui Zhang, Timothy Hung-Po Chen, Ashenafi Bulle, Sapana Bansod, Lin Li, Yutong Geng, Liang-I Kang, Gyu Seong Heo, Hannah Luehmann, Yuena Zhang, Muhammad A Saeed, Kory J Lavine, David G Denardo, Russell K Pachynski, Yongjian Liu, Kian-Huat Lim Feb 2026

Therapeutic Reprogramming Of Tumour-Associated Macrophages In Pancreatic Cancer Using A Cytotoxic Ccr2-Targeted Nanotheranostic, Vikas Kumar Somani, Xiaohui Zhang, Timothy Hung-Po Chen, Ashenafi Bulle, Sapana Bansod, Lin Li, Yutong Geng, Liang-I Kang, Gyu Seong Heo, Hannah Luehmann, Yuena Zhang, Muhammad A Saeed, Kory J Lavine, David G Denardo, Russell K Pachynski, Yongjian Liu, Kian-Huat Lim

2020-Current year OA Pubs

BACKGROUND: Pancreatic ductal adenocarcinoma (PDAC) exhibits a profoundly immunosuppressive tumour microenvironment (TME) dominated by inflammatory monocytes (IMs) and tumour-associated macrophages (TAMs), which restrict adaptive immunity and drive resistance to immune checkpoint blockade (ICB). Recruitment of CCR2⁺ IMs by tumour-derived CCL2 is a central mechanism underlying TAM accumulation. Conventional gemcitabine (GEM) and small-molecule CCR2 inhibitors provide limited benefit due to poor intratumoural delivery, transient target engagement, and compensatory myeloid recruitment. METHODS: We engineered a CCR2-targeted nanotheranostic by conjugating a CCR2-binding peptide (ECL1i) and GEM onto ultrasmall copper nanoclusters (CuNCs-ECL1i-GEM; C-E-G). Therapeutic efficacy and immune remodelling were evaluated using orthotopic subcutaneous and …


Schwannomatosis Tumor Modeling: Progress And Prospects For Translational Research, Mackenzie S Madison, Huazhen Xu, Yarelis Gonzalez-Vargas, Marybeth G Yonk, Charee M Thompson, Hurley Haney, Danielle Babbitt, Yuhong Du, Angela C Hirbe, Nicholas M Boulis, Ren-Yuan Bai, Kecheng Lei Feb 2026

Schwannomatosis Tumor Modeling: Progress And Prospects For Translational Research, Mackenzie S Madison, Huazhen Xu, Yarelis Gonzalez-Vargas, Marybeth G Yonk, Charee M Thompson, Hurley Haney, Danielle Babbitt, Yuhong Du, Angela C Hirbe, Nicholas M Boulis, Ren-Yuan Bai, Kecheng Lei

2020-Current year OA Pubs

BACKGROUND: Schwannomatosis (SWN) is a rare genetic condition characterized by the development of benign schwannomas along peripheral and spinal nerves, and this tumor development often results in chronic peripheral pain and significant neurological deficits. Despite surgical resection being the current standard of care for SWN-related pain, scientists are searching for accurate preclinical models that can be used for drug efficacy testing, but existing models often fail to fully recapitulate the complex genotypic diversity and tumor-nerve interface pathology seen in patients. MAIN TEXT: This review first summarizes the genotypic and phenotypic characteristics of SWN subtypes resulting from key mutations in NF2, …


Targeting Tau In Alzheimer's Disease: Rationale, Approach And Challenges, Aram Aslanyan, Martha S Foiani, Tatiana A Giovannucci, Eric Mcdade, Karen E Duff, Catherine J Mummery, Michael Schöll, Kristin R Wildsmith, Ross W Paterson Feb 2026

Targeting Tau In Alzheimer's Disease: Rationale, Approach And Challenges, Aram Aslanyan, Martha S Foiani, Tatiana A Giovannucci, Eric Mcdade, Karen E Duff, Catherine J Mummery, Michael Schöll, Kristin R Wildsmith, Ross W Paterson

2020-Current year OA Pubs

Alzheimer’s Disease (AD) is the most common neurodegenerative disorder and the leading cause of dementia characterised by the accumulation of beta amyloid (Aβ) plaques and neurofibrillary tangles (NFT). Several monoclonal antibodies against amyloid in early AD have shown the utility of reducing brain amyloid in large phase 3 studies, resulting in modest clinical benefit. To further slow, or even halt disease progression, targeting additional pathobiological pathways is likely to be necessary. In this review, we aim to appraise the scientific rationale for targeting tau in AD. The burden of tau pathology is correlated with disease severity and its role in …


Sclerostin Deficiency Sensitizes White Adipocytes To Thermogenic Signals That Induce Beiging In Mice, Gillian M Choquette, Soohyun P Kim, Kevin J Wilkinson, Belen C Avelar, Sushrut Pathy, Zhu Li, Jasmine Wu, Susan Aja, Daniel L J Thorek, Michael J Wolfgang, Ryan C Riddle Feb 2026

Sclerostin Deficiency Sensitizes White Adipocytes To Thermogenic Signals That Induce Beiging In Mice, Gillian M Choquette, Soohyun P Kim, Kevin J Wilkinson, Belen C Avelar, Sushrut Pathy, Zhu Li, Jasmine Wu, Susan Aja, Daniel L J Thorek, Michael J Wolfgang, Ryan C Riddle

2020-Current year OA Pubs

Maintenance of bone mass is coordinated with adipose tissue function through the secretion of hormones and endocrine factors that act on the opposing tissue. Sclerostin, a small glycoprotein produced by osteocytes embedded within the bone matrix, potently suppresses bone formation by antagonizing Wnt/β-catenin signaling while stimulating adipose tissue accumulation via the same mechanism of action. Since sclerostin-deficient mice develop pockets of multilocular adipocytes in subcutaneous adipose, we investigate the influence of sclerostin on thermogenic and β3-adrenergic stimuli-induced white adipose tissue beiging. Here, we report that Sost gene expression in bone and serum sclerostin levels are induced by β3-adrenergic agonists via …


Rev-Erb-Alpha And -Beta Coordinately Regulate Astrocyte Reactivity And Proteostatic Function, Collin J Nadarajah, Michelle Y Li, Elsa I Quillin, Kevin Boyer, Julie M Dimitry, Yining Chen, Melvin W King, Ibrahim O Saliu, Jiyeon Lee, Patrick W Sheehan, Albert A Davis, Mitchell A Lazar, Guoyan Zhao, Erik S Musiek Feb 2026

Rev-Erb-Alpha And -Beta Coordinately Regulate Astrocyte Reactivity And Proteostatic Function, Collin J Nadarajah, Michelle Y Li, Elsa I Quillin, Kevin Boyer, Julie M Dimitry, Yining Chen, Melvin W King, Ibrahim O Saliu, Jiyeon Lee, Patrick W Sheehan, Albert A Davis, Mitchell A Lazar, Guoyan Zhao, Erik S Musiek

2020-Current year OA Pubs

The molecular circadian clock is a ubiquitous transcriptional-translational feedback loop that regulates CNS function, glial responses, and neurodegenerative pathology. The nuclear receptors REV-ERB-α (


Slc7a8 Is Essential For Metabolic Fitness And Function Of Th2 Cells, Santosh K Panda, Do-Hyun Kim, Pritesh Desai, Shitong Wu, Patrick Fernandes Rodrigues, Raki Sudan, Yizhou Liu, Haerin Jung, Intelly Lee, Susan Gilfillan, Marina Cella, Steven J Van Dyken, Marco Colonna Feb 2026

Slc7a8 Is Essential For Metabolic Fitness And Function Of Th2 Cells, Santosh K Panda, Do-Hyun Kim, Pritesh Desai, Shitong Wu, Patrick Fernandes Rodrigues, Raki Sudan, Yizhou Liu, Haerin Jung, Intelly Lee, Susan Gilfillan, Marina Cella, Steven J Van Dyken, Marco Colonna

2020-Current year OA Pubs

Amino acids are essential for the activation and function of CD4 T helper (Th) cells, which differentiate into Th1, Th2, Th17, and Treg subsets to coordinate immune responses. While specific amino acid transporters have been identified for Th1, Th17, and Tregs, a transporter regulating Th2 cells remains unknown. This study identifies SLC7A8 as a Th2-specific amino acid transporter in the Th compartment. We found that Slc7a8 expression is upregulated in Th2 cells compared with other T helper subsets, and Slc7a8 deficiency impairs Th2 cell proliferation and cytokine production. Furthermore, SLC7A8 was found to be crucial for an effective type 2 …


Amyloidosis Of Bridging Veins Is A Pathologic Feature Of Alzheimer's Disease, Leon C D Smyth, Daan Verhaege, Elio Standen-Bloom, Yue Wu, Steffen E Storck, Pavle Boskovic, Benjamin A Plog, Tornike Mamuladze, Jose A Mazzitelli, Zhuoying Wang, Daniel D Lee, Gwendalyn J Randolph, Katherine E Schwetye, Song Hu, Jonathan Kipnis, Et Al. Feb 2026

Amyloidosis Of Bridging Veins Is A Pathologic Feature Of Alzheimer's Disease, Leon C D Smyth, Daan Verhaege, Elio Standen-Bloom, Yue Wu, Steffen E Storck, Pavle Boskovic, Benjamin A Plog, Tornike Mamuladze, Jose A Mazzitelli, Zhuoying Wang, Daniel D Lee, Gwendalyn J Randolph, Katherine E Schwetye, Song Hu, Jonathan Kipnis, Et Al.

2020-Current year OA Pubs

Alzheimer's disease (AD) is characterized by the accumulation of extracellular aggregated amyloid beta, resulting from impaired waste clearance. We recently identified new cerebrospinal fluid (CSF) efflux structures termed arachnoid cuff exit (ACE) points and speculated that these may be impacted in AD, leading to impaired waste clearance function. Using 5XFAD mice, we found progressive amyloidosis of bridging veins at ACE points. Indeed, in 5XFAD mice, there is impaired CSF efflux to the dura mater, impaired CSF flow along bridging veins, and impaired blood flow through bridging veins. These observations suggest that ACE point amyloidosis plays a role in waste clearance …


Loss Of Beta-Cell Identity And Function As A Mechanism Of Secondary Failure Of Sulfonylurea Therapy In Diabetes, Sumit Patel, Zihan Yan, Maria S Remedi Feb 2026

Loss Of Beta-Cell Identity And Function As A Mechanism Of Secondary Failure Of Sulfonylurea Therapy In Diabetes, Sumit Patel, Zihan Yan, Maria S Remedi

2020-Current year OA Pubs

Sulfonylureas, commonly used to treat type 2 diabetes (T2D), often lose effectiveness over time when used as monotherapy; however, the underlying mechanisms remain unclear. To investigate the mechanisms of sulfonylurea failure, glibenclamide-releasing pellets were implanted in KK mice, a polygenic model that spontaneously develops T2D. KK mice receiving placebo pellets (KK-Placebo) developed hyperglycemia, hyperinsulinemia, glucose intolerance, and insulin resistance. Notably, KK mice implanted with glibenclamide (KK-Glib) showed improved blood glucose levels during the first 7 days, returning to KK-Placebo levels thereafter. KK-Glib mice exhibited reduced plasma insulin levels and insulin secretion in response to a glucose challenge compared with the …


Silent Messengers In The Nano-World: Harnessing Extracellular Vesicles As Theranostic Tools For Neonatal Surgical Conditions, Augusto Zani Feb 2026

Silent Messengers In The Nano-World: Harnessing Extracellular Vesicles As Theranostic Tools For Neonatal Surgical Conditions, Augusto Zani

2020-Current year OA Pubs

Extracellular vesicles (EVs) are lipid bilayer-enclosed nanoparticles secreted by all cells that mediate intercellular communication by transferring proteins, lipids, and nucleic acids. Among their cargo, microRNAs are key post-transcriptional regulators of organogenesis. In fetal lung development, EV-mediated signaling is essential for the coordination of epithelial, mesenchymal, endothelial, and immune cells. In congenital diaphragmatic hernia (CDH), disruption of these interactions leads to pulmonary hypoplasia and pulmonary hypertension, the primary causes of morbidity and mortality. Amniotic fluid stem cell-derived EVs (AFSC-EVs) have emerged as a promising cell-free therapy to restore this impaired communication. In rodent, rabbit, and human models of pulmonary hypoplasia, …


How To Measure, Analyze, And Interpret Age-Related Changes In Caenorhabditis Elegans: Lessons For Mechanistic And Evolutionary Theories Of Aging, Zuzana Kocsisova, Brian M Egan, Andrea Scharf, Xavier Anderson, Franziska Pohl, Aaron Anderson, Kerry Kornfeld Feb 2026

How To Measure, Analyze, And Interpret Age-Related Changes In Caenorhabditis Elegans: Lessons For Mechanistic And Evolutionary Theories Of Aging, Zuzana Kocsisova, Brian M Egan, Andrea Scharf, Xavier Anderson, Franziska Pohl, Aaron Anderson, Kerry Kornfeld

2020-Current year OA Pubs

Aging is characterized by progressive degenerative changes in tissue organization and function, some of which increase the probability of mortality. Major goals of aging research are to elucidate the series of events that cause degenerative changes, and to identify environmental, pharmacological, and genetic factors that influence these changes; this information might lead to new strategies to extend health span and lifespan. Mechanistic studies of aging depend on accurate and precise descriptions of age-related changes, since these descriptions define the aging phenotype. Here, we review studies that describe age-related changes in C. elegans, including measurements of integrated functions such as behavior …


The Death To Onchocerciasis And Lymphatic Filariasis (Dolf) Project: Accomplishments And Ongoing Research, Peter U. Fischer, Christopher L. King, Philip J. Budge, Gary J. Weil, Dolf Consortium Feb 2026

The Death To Onchocerciasis And Lymphatic Filariasis (Dolf) Project: Accomplishments And Ongoing Research, Peter U. Fischer, Christopher L. King, Philip J. Budge, Gary J. Weil, Dolf Consortium

2020-Current year OA Pubs

The Death to Onchocerciasis and Lymphatic Filariasis (DOLF) project conducts clinical and translational research to accelerate the global elimination of lymphatic filariasis (LF) and onchocerciasis (river blindness). Research needs were identified during several meetings of experts and helped study design. Over the last 15 years the project has conducted mass drug administration (MDA) studies and clinical trials with outstanding research teams in 11 countries that have led to many important discoveries. For example, DOLF studies showed that annual MDA was as effective as semiannual MDA for LF elimination and that semiannual MDA with albendazole alone can eliminate LF in areas …


Divergent Humoral Immune Signatures In Response To Klebsiella Pneumoniae Bacteremia, Paeton L Wantuch, Nadia Wattad, David A Rosen Feb 2026

Divergent Humoral Immune Signatures In Response To Klebsiella Pneumoniae Bacteremia, Paeton L Wantuch, Nadia Wattad, David A Rosen

2020-Current year OA Pubs

OBJECTIVES: Klebsiella pneumoniae is an increasingly threatening global pathogen with high rates of antibiotic resistance and no licensed vaccines available. Despite its worldwide importance, little is known about the human adaptive immune response to K. pneumoniae infection.

METHODS: Herein we observed the longitudinal antibody responses of three immunocompetent patients hospitalized with K. pneumoniae bacteremia. We analyzed the human serum for antibody titers and in vitro functionality. Further, serum function was evaluated via an in vivo mouse model.

RESULTS: We found that in each case, anti-K. pneumoniae antibodies against the infecting strain were still detectable a year after the initial infection. …


Ultrasound Applications In The Treatment Of Major Depressive Disorder: A Systematic Review Of Techniques And Therapeutic Potentials In Clinical Trials And Animal Model Studies, Gansheng Tan, Hong Chen, Eric C Leuthardt Feb 2026

Ultrasound Applications In The Treatment Of Major Depressive Disorder: A Systematic Review Of Techniques And Therapeutic Potentials In Clinical Trials And Animal Model Studies, Gansheng Tan, Hong Chen, Eric C Leuthardt

2020-Current year OA Pubs

OBJECTIVE: Major depressive disorder (MDD) is a debilitating condition that inflicts significant personal and economic burdens and affects approximately 8% of the US population. Approximately 30% of patients with MDD do not respond to conventional antidepressant and psychotherapeutic treatments. Current treatment options for refractory MDD include transcranial magnetic stimulation (TMS) and invasive surgical procedures such as surgical ablation, vagus nerve stimulation, and deep brain stimulation. In this context, therapeutic ultrasound emerges as a promising alternative for treating refractory MDD, which has the unique advantage of combining noninvasiveness with selective targeting. Over the past ten years, there has been growth in …


Accelerated Diffusion Basis Spectrum Imaging With Tensor Computations, Kainen L Utt, Jacob S Blum, Donsub Rim, Sheng-Kwei Song Feb 2026

Accelerated Diffusion Basis Spectrum Imaging With Tensor Computations, Kainen L Utt, Jacob S Blum, Donsub Rim, Sheng-Kwei Song

2020-Current year OA Pubs

This paper introduces an advanced framework for accelerated processing of diffusion-weighted imaging (DWI) data that utilizes an entire-image modeling approach to optimize the estimation of diffusion parameters from DWIs by mapping input diffusion data to predicted signals and estimating parameter values via a stochastic gradient descent optimizer (Adam). To validate this approach, we applied this framework to diffusion basis spectrum imaging (DBSI) and analyzed in vivo human brain and ex vivo mouse brain DWIs. Results demonstrate significant improvements to computational speed and signal-to-noise ratio (SNR) in estimated parameter maps compared to standard DBSI. Our approach is applicable to any diffusion …


Nested Ecosystems Theory For Conceptualizing Brain Tumors, Lori A Forster, David H Gutmann Feb 2026

Nested Ecosystems Theory For Conceptualizing Brain Tumors, Lori A Forster, David H Gutmann

2020-Current year OA Pubs

The application of advanced multi-omic methodologies to studying brain tumors has culminated in the appreciation that these cancers function as ecosystems that depend on the interactions of a diverse collection of cell types and signals. This connectivity operates not only at the level of the cancer cell, in which variants create new growth dependencies, but also between tumor cells and the immediate tumor microenvironment, between tumor cells and cell populations residing elsewhere in the brain tissue or body, and in response to extracorporeal factors. The cellular and molecular relationships within these four interrelated strata (intracellular, extracellular, intracorporeal and extracorporeal) act …


Neural Cells Are Susceptible To Historic And Recently Emerged Oropouche Virus Strains, Kaleigh A. Connors, Maris R. Pedlow, Zachary D. Frey, Marjorie Cornejo Pontelli, Sean P. J. Whelan, W. Paul Duprex, Leonardo D'Aiuto, Zachary P. Wills, Amy L. Hartman Feb 2026

Neural Cells Are Susceptible To Historic And Recently Emerged Oropouche Virus Strains, Kaleigh A. Connors, Maris R. Pedlow, Zachary D. Frey, Marjorie Cornejo Pontelli, Sean P. J. Whelan, W. Paul Duprex, Leonardo D'Aiuto, Zachary P. Wills, Amy L. Hartman

2020-Current year OA Pubs

Oropouche fever is a re-emerging global viral threat caused by infection with Oropouche virus (OROV). While disease is generally self-limiting, historical and recent reports of neurologic involvement highlight the importance of understanding the neuropathogenesis of OROV. In this study, we characterize viral replication kinetics in neurons, microglia, and astrocytes derived from immortalized, primary, and induced pluripotent stem cell-derived cells, which are all permissive to infection with the prototypic OROV BeAn19991. We demonstrate cell-type dependent replication kinetics with both historic and recently emerged viral strains. Further, we show that ex vivo rat brain slice cultures can be infected by all OROV …


Objective Selection Of Bone Mimetic Materials Using Impact Microindentation, Lucas R Budd, Rachana S Vaidya, Babak Jahani, Saideep Nakka, Alexander Proctor, Peter T Burks, Blake K Montgomery, Simon Y Tang Feb 2026

Objective Selection Of Bone Mimetic Materials Using Impact Microindentation, Lucas R Budd, Rachana S Vaidya, Babak Jahani, Saideep Nakka, Alexander Proctor, Peter T Burks, Blake K Montgomery, Simon Y Tang

2020-Current year OA Pubs

BACKGROUND: Research and development for orthopedic medical devices, implants, surgical technique, and surgical education all require the appropriate selection of bone mimetic materials to align with the physiologic conditions. There is a critical need for an objective measure of material strength that can be collected, practically, on both bone mimetic materials and living human bone to improve mimetic material selection.

METHODS: This study stratifies commonly used synthetic materials in orthopedic research, as well as animal and human bone, using impact microindentation. The impact microindentation is performed with the OsteoProbe, an FDA-approved handheld medical device that can quantify material strength via …


A Systemic Selective Modified Mrna Delivery Platform For Preventing Chemotherapy-Induced Cardiotoxicity, Jimeen Yoo, Mengcheng Shen, Et Al. Feb 2026

A Systemic Selective Modified Mrna Delivery Platform For Preventing Chemotherapy-Induced Cardiotoxicity, Jimeen Yoo, Mengcheng Shen, Et Al.

2020-Current year OA Pubs

Doxorubicin (Dox) is a widely employed chemotherapeutic agent, but its use is clinically limited by dose-accumulative cardiotoxicity. More specifically, Dox induces oxidative stress and causes pro-apoptotic ceramide accumulation in cardiomyocytes (CMs). Acid ceramidase (AC) modified mRNA (modRNA) has been shown to reduce ceramide levels and protect the heart following ischemic injury; however, therapeutic modRNA applications have been hindered by the need for invasive delivery. Here, we present a platform for minimally intrusive transmission of modRNA to the heart. This CM-selective modRNA translational system (cmSMRTs) is encapsulated in lipid nanoparticles for intravenous (IV) delivery to enable systemic administration with high cardiac …


Human Chorionic Gonadotropin Decreases Cerebral Cystic Encephalomalacia And Parvalbumin Interneuron Degeneration In A Pro-Inflammatory Model Of Mouse Neonatal Hypoxia-Ischemia, Benjamin Miller, Alexander Crider, Bhooma Aravamuthan, Rafael Galindo Jan 2026

Human Chorionic Gonadotropin Decreases Cerebral Cystic Encephalomalacia And Parvalbumin Interneuron Degeneration In A Pro-Inflammatory Model Of Mouse Neonatal Hypoxia-Ischemia, Benjamin Miller, Alexander Crider, Bhooma Aravamuthan, Rafael Galindo

2020-Current year OA Pubs

Human chorionic gonadotropin (hCG) is an immunoregulatory and neurotrophic glycoprotein of potential clinical utility in the neonate at risk for cerebral injury. However, hCG has not been demonstrated to affect the pro-degenerative actions of inflammation in neonatal brain injury. Here we utilize a neonatal mouse model of mild hypoxia-ischemia (HI) combined with intraperitoneal administration of lipopolysaccharide (LPS) to evaluate the neuroprotective actions of hCG in the setting of systemic inflammation. Intraperitoneal treatment with hCG significantly decreased tissue loss and cystic degeneration in the hippocampus and cerebral cortex of term-equivalent neonatal mice exposed to LPS and HI. Noting that parvalbumin immunoreactive …