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Articles 1771 - 1800 of 5130
Full-Text Articles in Medicine and Health Sciences
Aging- And Alcohol-Associated Spatial Transcriptomic Signature In Mouse Acute Pancreatitis Reveals Heterogeneity Of Inflammation And Potential Pathogenic Factors, Rachel R Tindall, Yuntao Yang, Isabella Hernandez, Amy Qin, Jiajing Li, Yinjie Zhang, Thomas H Gomez, Mamoun Younes, Qiang Shen, Jennifer M Bailey-Lundberg, Zhongming Zhao, Daniel Kraushaar, Patricia Castro, Yanna Cao, W Jim Zheng, Tien C Ko
Aging- And Alcohol-Associated Spatial Transcriptomic Signature In Mouse Acute Pancreatitis Reveals Heterogeneity Of Inflammation And Potential Pathogenic Factors, Rachel R Tindall, Yuntao Yang, Isabella Hernandez, Amy Qin, Jiajing Li, Yinjie Zhang, Thomas H Gomez, Mamoun Younes, Qiang Shen, Jennifer M Bailey-Lundberg, Zhongming Zhao, Daniel Kraushaar, Patricia Castro, Yanna Cao, W Jim Zheng, Tien C Ko
Faculty, Staff and Student Publications
The rapidly aging population is consuming more alcohol, leading to increased alcohol-associated acute pancreatitis (AAP) with high mortality. However, the mechanisms remain undefined, and currently there are no effective therapies available. This study aims to elucidate aging- and alcohol-associated spatial transcriptomic signature by establishing an aging AAP mouse model and applying Visium spatial transcriptomics for understanding of the mechanisms in the context of the pancreatic tissue. Upon alcohol diet feeding and caerulein treatment, aging mice (18 months) developed significantly more severe AAP with 5.0-fold increase of injury score and 2.4-fold increase of amylase compared to young mice (3 months). Via …
Detection Of Early-Stage Nash Using Non-Invasive Hyperpolarized 13c Metabolic Imaging, Cornelius Von Morze, Tyler Blazey, Ashley Shaw, William M Spees, Kooresh I Shoghi, Michael A Ohliger
Detection Of Early-Stage Nash Using Non-Invasive Hyperpolarized 13c Metabolic Imaging, Cornelius Von Morze, Tyler Blazey, Ashley Shaw, William M Spees, Kooresh I Shoghi, Michael A Ohliger
2020-Current year OA Pubs
Non-alcoholic steatohepatitis (NASH) is characterized from its early stages by a profound remodeling of the liver microenvironment, encompassing changes in the composition and activities of multiple cell types and associated gene expression patterns. Hyperpolarized (HP)
Hypoxia Inducible Factor 2Α Promotes Tolerogenic Macrophage Development During Cardiac Transplantation Through Transcriptional Regulation Of Colony Stimulating Factor 1 Receptor, Matthew Deberge, Samantha Schroth, Fanfan Du, Xin Yi Yeap, Jiao-Jing Wang, Zheng Jenny Zhang, Mohammed Javeed Ansari, Evan A Scott, Edward B Thorp
Hypoxia Inducible Factor 2Α Promotes Tolerogenic Macrophage Development During Cardiac Transplantation Through Transcriptional Regulation Of Colony Stimulating Factor 1 Receptor, Matthew Deberge, Samantha Schroth, Fanfan Du, Xin Yi Yeap, Jiao-Jing Wang, Zheng Jenny Zhang, Mohammed Javeed Ansari, Evan A Scott, Edward B Thorp
Faculty, Staff and Student Publications
Solid organ transplantation mobilizes myeloid cells, including monocytes and macrophages, which are central protagonists of allograft rejection. However, myeloid cells can also be functionally reprogrammed by perioperative costimulatory blockade to promote a state of transplantation tolerance. Transplantation tolerance holds promise to reduce complications from chronic immunosuppression and promote long-term survival in transplant recipients. We sought to identify different mediators of transplantation tolerance by performing single-cell RNA sequencing of acute rejecting or tolerized cardiac allografts. This led to the unbiased identification of the transcription factor, hypoxia inducible factor (HIF)-2α, in a subset of tolerogenic monocytes. Using flow cytometric analyses and mice …
Cracd Loss Induces Neuroendocrine Cell Plasticity Of Lung Adenocarcinoma, Bongjun Kim, Shengzhe Zhang, Yuanjian Huang, Kyung-Pil Ko, Youn-Sang Jung, Jinho Jang, Gengyi Zou, Jie Zhang, Sohee Jun, Kee-Beom Kim, Kwon-Sik Park, Jae-Il Park
Cracd Loss Induces Neuroendocrine Cell Plasticity Of Lung Adenocarcinoma, Bongjun Kim, Shengzhe Zhang, Yuanjian Huang, Kyung-Pil Ko, Youn-Sang Jung, Jinho Jang, Gengyi Zou, Jie Zhang, Sohee Jun, Kee-Beom Kim, Kwon-Sik Park, Jae-Il Park
Faculty, Staff and Student Publications
Tumor cell plasticity contributes to intratumoral heterogeneity and therapy resistance. Through cell plasticity, some lung adenocarcinoma (LUAD) cells transform into neuroendocrine (NE) tumor cells. However, the mechanisms of NE cell plasticity remain unclear. CRACD (capping protein inhibiting regulator of actin dynamics), a capping protein inhibitor, is frequently inactivated in cancers. CRACD knockout (KO) is sufficient to de-repress NE-related gene expression in the pulmonary epithelium and LUAD cells. In LUAD mouse models, Cracd KO increases intratumoral heterogeneity with NE gene expression. Single-cell transcriptomic analysis showed that Cracd KO-induced NE cell plasticity is associated with cell de-differentiation and stemness-related pathway activation. The …
Airy-Beam Holographic Sonogenetics For Advancing Neuromodulation Precision And Flexibility, Zhongtao Hu, Yaoheng Yang, Leqi Yang, Yan Gong, Chinwendu Chukwu, Dezhuang Ye, Yimei Yue, Jinyun Yuan, Alexxai V Kravitz, Hong Chen
Airy-Beam Holographic Sonogenetics For Advancing Neuromodulation Precision And Flexibility, Zhongtao Hu, Yaoheng Yang, Leqi Yang, Yan Gong, Chinwendu Chukwu, Dezhuang Ye, Yimei Yue, Jinyun Yuan, Alexxai V Kravitz, Hong Chen
2020-Current year OA Pubs
Advancing our understanding of brain function and developing treatments for neurological diseases hinge on the ability to modulate neuronal groups in specific brain areas without invasive techniques. Here, we introduce Airy-beam holographic sonogenetics (AhSonogenetics) as an implant-free, cell type-specific, spatially precise, and flexible neuromodulation approach in freely moving mice. AhSonogenetics utilizes wearable ultrasound devices manufactured using 3D-printed Airy-beam holographic metasurfaces. These devices are designed to manipulate neurons genetically engineered to express ultrasound-sensitive ion channels, enabling precise modulation of specific neuronal populations. By dynamically steering the focus of Airy beams through ultrasound frequency tuning, AhSonogenetics is capable of modulating neuronal populations …
Injury-Induced Foxm1 Expression In The Mouse Kidney Drives Epithelial Proliferation By A Cyclin F-Dependent Mechanism, Megan L. Noonan, Yoshiharu Muto, Yasuhiro Yoshimura, Aidan Leckie-Harre, Haojia Wu, Vladimir V. Kalinichenko, Benjamin D. Humphreys, Monica Chang-Panesso
Injury-Induced Foxm1 Expression In The Mouse Kidney Drives Epithelial Proliferation By A Cyclin F-Dependent Mechanism, Megan L. Noonan, Yoshiharu Muto, Yasuhiro Yoshimura, Aidan Leckie-Harre, Haojia Wu, Vladimir V. Kalinichenko, Benjamin D. Humphreys, Monica Chang-Panesso
2020-Current year OA Pubs
Acute kidney injury (AKI) strongly upregulates the transcription factor Foxm1 in the proximal tubule in vivo, and Foxm1 drives epithelial proliferation in vitro. Here, we report that deletion of Foxm1 either with a nephron-specific Cre driver or by inducible global deletion reduced proximal tubule proliferation after ischemic injury in vivo. Foxm1 deletion led to increased AKI to chronic kidney disease transition, with enhanced fibrosis and ongoing tubule injury 6 weeks after injury. We report ERK mediated FOXM1 induction downstream of the EGFR in primary proximal tubule cells. We defined FOXM1 genomic binding sites by cleavage under targets and release using …
Role Of The Afferent Lymph As An Immunological Conduit To Analyze Tissue Antigenic And Inflammatory Load, Padma P Nanaware, Cheryl F Lichti, Xiaoxiao Wan, Emil R Unanue, Et Al.
Role Of The Afferent Lymph As An Immunological Conduit To Analyze Tissue Antigenic And Inflammatory Load, Padma P Nanaware, Cheryl F Lichti, Xiaoxiao Wan, Emil R Unanue, Et Al.
2020-Current year OA Pubs
The lymphatic fluid is the conduit by which part of the tissue "omics" is transported to the draining lymph node for immunosurveillance. Following cannulation of the pre-nodal cervical and mesenteric afferent lymphatics, herein we investigate the lymph proteomic composition, uncovering that its composition varies according to the tissue of origin. Tissue specificity is also reflected in the dendritic cell-major histocompatibility complex class II-eluted immunopeptidome harvested from the cervical and mesenteric nodes. Following inflammatory disruption of the gut barrier, the lymph antigenic and inflammatory loads are analyzed in both mice and subjects with inflammatory bowel diseases. Gastrointestinal tissue damage reflects the …
Anti-Acetylated-Tau Immunotherapy Is Neuroprotective In Tauopathy And Brain Injury, Celeste Parra Bravo, Karen Krukowski, Sarah Barker, Chao Wang, Yaqiao Li, Li Fan, Edwin Vázquez-Rosa, Min-Kyoo Shin, Man Ying Wong, Louise D Mccullough, Ryan S Kitagawa, H Alex Choi, Angela Cacace, Subhash C Sinha, Andrew A Pieper, Susanna Rosi, Xu Chen, Li Gan
Anti-Acetylated-Tau Immunotherapy Is Neuroprotective In Tauopathy And Brain Injury, Celeste Parra Bravo, Karen Krukowski, Sarah Barker, Chao Wang, Yaqiao Li, Li Fan, Edwin Vázquez-Rosa, Min-Kyoo Shin, Man Ying Wong, Louise D Mccullough, Ryan S Kitagawa, H Alex Choi, Angela Cacace, Subhash C Sinha, Andrew A Pieper, Susanna Rosi, Xu Chen, Li Gan
Faculty, Staff and Student Publications
BACKGROUND: Tau is aberrantly acetylated in various neurodegenerative conditions, including Alzheimer's disease, frontotemporal lobar degeneration (FTLD), and traumatic brain injury (TBI). Previously, we reported that reducing acetylated tau by pharmacologically inhibiting p300-mediated tau acetylation at lysine 174 reduces tau pathology and improves cognitive function in animal models.
METHODS: We investigated the therapeutic efficacy of two different antibodies that specifically target acetylated lysine 174 on tau (ac-tauK174). We treated PS19 mice, which harbor the P301S tauopathy mutation that causes FTLD, with anti-ac-tauK174 and measured effects on tau pathology, neurodegeneration, and neurobehavioral outcomes. Furthermore, PS19 mice received treatment post-TBI to evaluate the …
A Cocktail Nanovaccine Targeting Key Entry Glycoproteins Elicits High Neutralizing Antibody Levels Against Ebv Infection., Ling Zhong, Wanlin Zhang, Hong Liu, Xinyu Zhang, Zeyu Yang, Zhenfu Wen, Ling Chen, Haolin Chen, Yanran Luo, Yanhong Chen, Qisheng Feng, Mu-Sheng Zeng, Qinjian Zhao, Lixin Liu, Claude Krummenacher, Yi-Xin Zeng, Yongming Chen, Miao Xu, Xiao Zhang
A Cocktail Nanovaccine Targeting Key Entry Glycoproteins Elicits High Neutralizing Antibody Levels Against Ebv Infection., Ling Zhong, Wanlin Zhang, Hong Liu, Xinyu Zhang, Zeyu Yang, Zhenfu Wen, Ling Chen, Haolin Chen, Yanran Luo, Yanhong Chen, Qisheng Feng, Mu-Sheng Zeng, Qinjian Zhao, Lixin Liu, Claude Krummenacher, Yi-Xin Zeng, Yongming Chen, Miao Xu, Xiao Zhang
College of Science & Mathematics Departmental Research
Epstein-Barr virus (EBV) infects more than 95% of adults worldwide and is closely associated with various malignancies. Considering the complex life cycle of EBV, developing vaccines targeting key entry glycoproteins to elicit robust and durable adaptive immune responses may provide better protection. EBV gHgL-, gB- and gp42-specific antibodies in healthy EBV carriers contributed to sera neutralizing abilities in vitro, indicating that they are potential antigen candidates. To enhance the immunogenicity of these antigens, we formulate three nanovaccines by co-delivering molecular adjuvants (CpG and MPLA) and antigens (gHgL, gB or gp42). These nanovaccines induce robust humoral and cellular responses through efficient …
Protocol For Seahorse Analysis Of Ex Vivo Mouse Brown And White Adipose Tissues, Fenfen Wang, Phu M Huynh, Yu A An
Protocol For Seahorse Analysis Of Ex Vivo Mouse Brown And White Adipose Tissues, Fenfen Wang, Phu M Huynh, Yu A An
Faculty, Staff and Student Publications
The mitochondrial stress test is a gold-standard approach for assessing adipose tissue physiological functions and pathological changes. Here, we present a protocol for conducting Seahorse assays using ex vivo mouse brown and white adipose depots. We describe steps for rehydrating the cartridge, preparing freshly harvested fat depots, placing them onto an islet capture plate, and incubating them in a non-CO2 incubator. We then detail procedures for adding mitochondrial stressor solutions and conducting the mitochondrial stress test using the Seahorse XFe24 Analyzer. For complete details on the use and execution of this protocol, please refer to An et al.1.
A Cocktail Nanovaccine Targeting Key Entry Glycoproteins Elicits High Neutralizing Antibody Levels Against Ebv Infection, Ling Zhong, Wanlin Zhang, Hong Liu, Xinyu Zhang, Zeyu Yang, Zhenfu Wen, Ling Chen, Haolin Chen, Yanran Luo, Yanhong Chen, Qisheng Feng, Mu-Sheng Zeng, Qinjian Zhao, Lixin Liu, Claude Krummenacher, Yi-Xin Zeng, Yongming Chen, Miao Xu, Xiao Zhang
A Cocktail Nanovaccine Targeting Key Entry Glycoproteins Elicits High Neutralizing Antibody Levels Against Ebv Infection, Ling Zhong, Wanlin Zhang, Hong Liu, Xinyu Zhang, Zeyu Yang, Zhenfu Wen, Ling Chen, Haolin Chen, Yanran Luo, Yanhong Chen, Qisheng Feng, Mu-Sheng Zeng, Qinjian Zhao, Lixin Liu, Claude Krummenacher, Yi-Xin Zeng, Yongming Chen, Miao Xu, Xiao Zhang
Faculty, Staff and Student Publications
Epstein-Barr virus (EBV) infects more than 95% of adults worldwide and is closely associated with various malignancies. Considering the complex life cycle of EBV, developing vaccines targeting key entry glycoproteins to elicit robust and durable adaptive immune responses may provide better protection. EBV gHgL-, gB- and gp42-specific antibodies in healthy EBV carriers contributed to sera neutralizing abilities in vitro, indicating that they are potential antigen candidates. To enhance the immunogenicity of these antigens, we formulate three nanovaccines by co-delivering molecular adjuvants (CpG and MPLA) and antigens (gHgL, gB or gp42). These nanovaccines induce robust humoral and cellular responses through efficient …
Protocol For Preclinical Evaluation Of Locoregionally Delivered Car T Cells In Patient-Derived Xenograft Models Of Brain Tumors, Benjamin Draper, Chantelle Bowers, Eleni Vassalou, Ailsa Greppi, John Anderson, Nabil Ahmed, Michael D Taylor, Laura K Donovan
Protocol For Preclinical Evaluation Of Locoregionally Delivered Car T Cells In Patient-Derived Xenograft Models Of Brain Tumors, Benjamin Draper, Chantelle Bowers, Eleni Vassalou, Ailsa Greppi, John Anderson, Nabil Ahmed, Michael D Taylor, Laura K Donovan
Faculty, Staff and Students Publications
Here, we present a protocol for preclinical evaluation of locoregionally delivered CAR T cells in patient-derived xenograft models of primary, metastatic, and recurrent brain tumors. We provide instructions for isolating peripheral blood mononuclear cells (PBMCs), producing CAR T cells in conjunction with locoregional delivery, and preclinical trial design and analysis involving CAR T cells. Additionally, we describe comprehensive preclinical readouts and guidelines for critical endpoint sample collections. In line with clinical trial procedures, our protocol broadens available treatment modalities for direct clinical translation. For complete details on the use and execution of this protocol, please refer to Donovan et al …
Alzheimer's Disease Risk Gene Cd2ap Is A Dose-Sensitive Determinant Of Synaptic Structure And Plasticity, Taeyong Ahn, Gabrielle E Largoza, Julia Younis, Mary E Dickinson, Chih-Wei Hsu, Joshua D Wythe
Alzheimer's Disease Risk Gene Cd2ap Is A Dose-Sensitive Determinant Of Synaptic Structure And Plasticity, Taeyong Ahn, Gabrielle E Largoza, Julia Younis, Mary E Dickinson, Chih-Wei Hsu, Joshua D Wythe
Faculty, Staff and Students Publications
Tissue clearing is an essential prerequisite for 3D volumetric imaging of larger tissues or organs. Here, we present a detailed protocol for optical, aqueous-based clearing of adult murine tissues using EZ Clear. We describe steps to ensure successful perfusion and fixation of organs from the adult mouse and supply guidelines for optimal lipid removal, refractive index matching, and tissue clearing. Finally, we provide imaging parameters for visualizing both exogenous perfused fluorescent dyes and endogenous fluorescence reporters in the adult mouse. For complete details on the use and execution of this protocol, please refer to Hsu et al.
Protocol For Optical, Aqueous-Based Clearing Of Murine Tissues Using Ez Clear, Taeyong Ahn, Gabrielle E Largoza, Julia Younis, Mary E Dickinson, Chih-Wei Hsu, Joshua D Wythe
Protocol For Optical, Aqueous-Based Clearing Of Murine Tissues Using Ez Clear, Taeyong Ahn, Gabrielle E Largoza, Julia Younis, Mary E Dickinson, Chih-Wei Hsu, Joshua D Wythe
Faculty, Staff and Students Publications
Tissue clearing is an essential prerequisite for 3D volumetric imaging of larger tissues or organs. Here, we present a detailed protocol for optical, aqueous-based clearing of adult murine tissues using EZ Clear. We describe steps to ensure successful perfusion and fixation of organs from the adult mouse and supply guidelines for optimal lipid removal, refractive index matching, and tissue clearing. Finally, we provide imaging parameters for visualizing both exogenous perfused fluorescent dyes and endogenous fluorescence reporters in the adult mouse. For complete details on the use and execution of this protocol, please refer to Hsu et al.
Noninvasive Assessment Of The Lung Inflammation-Fibrosis Axis By Targeted Imaging Of Cmklr1, Philip Z Mannes, Taylor S Adams, Samaneh Farsijani, Clayton E Barnes, Joseph D Latoche, Kathryn E Day, Jessie R Nedrow, Farida Ahangari, Naftali Kaminski, Janet S Lee, Sina Tavakoli
Noninvasive Assessment Of The Lung Inflammation-Fibrosis Axis By Targeted Imaging Of Cmklr1, Philip Z Mannes, Taylor S Adams, Samaneh Farsijani, Clayton E Barnes, Joseph D Latoche, Kathryn E Day, Jessie R Nedrow, Farida Ahangari, Naftali Kaminski, Janet S Lee, Sina Tavakoli
2020-Current year OA Pubs
Precision management of fibrotic lung diseases is challenging due to their diverse clinical trajectories and lack of reliable biomarkers for risk stratification and therapeutic monitoring. Here, we validated the accuracy of CMKLR1 as an imaging biomarker of the lung inflammation-fibrosis axis. By analyzing single-cell RNA sequencing datasets, we demonstrated
Harmonized Cross-Species Cell Atlases Of Trigeminal And Dorsal Root Ganglia, Shamsuddin A Bhuiyan, Lite Yang, Lisa A Mcilvried, Bryan A Copits, Zachariah Bertels, John S Del Rosario, Allie J Widman, Richard A Slivicki, Jiwon Yi, Robert W Gereau Iv, Et Al.
Harmonized Cross-Species Cell Atlases Of Trigeminal And Dorsal Root Ganglia, Shamsuddin A Bhuiyan, Lite Yang, Lisa A Mcilvried, Bryan A Copits, Zachariah Bertels, John S Del Rosario, Allie J Widman, Richard A Slivicki, Jiwon Yi, Robert W Gereau Iv, Et Al.
2020-Current year OA Pubs
Sensory neurons in the dorsal root ganglion (DRG) and trigeminal ganglion (TG) are specialized to detect and transduce diverse environmental stimuli to the central nervous system. Single-cell RNA sequencing has provided insights into the diversity of sensory ganglia cell types in rodents, nonhuman primates, and humans, but it remains difficult to compare cell types across studies and species. We thus constructed harmonized atlases of the DRG and TG that describe and facilitate comparison of 18 neuronal and 11 non-neuronal cell types across six species and 31 datasets. We then performed single-cell/nucleus RNA sequencing of DRG from both human and the …
Elderly Mice With History Of Acetaminophen Intoxication Display Worsened Cognitive Impairment And Persistent Elevation Of Astrocyte And Microglia Burden, Celso S G Catumbela, Rodrigo Morales
Elderly Mice With History Of Acetaminophen Intoxication Display Worsened Cognitive Impairment And Persistent Elevation Of Astrocyte And Microglia Burden, Celso S G Catumbela, Rodrigo Morales
Faculty, Staff and Student Publications
Acetaminophen (APAP) is a leading cause of acute liver failure. The effect of APAP metabolite's effects in the periphery are well characterized; however, associated consequences in the brain remain poorly understood. Animal studies on this subject are few and reveal that frequent APAP intake can trigger cerebral abnormalities that vary depending on the subject's age. Alarmingly, experimental efforts have yet to examine associated consequences in elderly hosts, who correspond to the highest risk of medication overload, impaired drug clearance, and cognitive deficits. Here, we interrogated the cerebral and peripheral pathology of elderly mice submitted to monthly episodes of APAP intoxication …
Sensory Asic3 Channel Exacerbates Psoriatic Inflammation Via A Neurogenic Pathway In Female Mice, Chen Huang, Pei-Yi Sun, Yiming Jiang, Yuandong Liu, Zhichao Liu, Shao-Ling Han, Bao-Shan Wang, Yong-Xin Huang, An-Ran Ren, Jian-Fei Lu, Qin Jiang, Ying Li, Michael X Zhu, Zhirong Yao, Yang Tian, Xin Qi, Wei-Guang Li, Tian-Le Xu
Sensory Asic3 Channel Exacerbates Psoriatic Inflammation Via A Neurogenic Pathway In Female Mice, Chen Huang, Pei-Yi Sun, Yiming Jiang, Yuandong Liu, Zhichao Liu, Shao-Ling Han, Bao-Shan Wang, Yong-Xin Huang, An-Ran Ren, Jian-Fei Lu, Qin Jiang, Ying Li, Michael X Zhu, Zhirong Yao, Yang Tian, Xin Qi, Wei-Guang Li, Tian-Le Xu
Faculty, Staff and Student Publications
Psoriasis is an immune-mediated skin disease associated with neurogenic inflammation, but the underlying molecular mechanism remains unclear. We demonstrate here that acid-sensing ion channel 3 (ASIC3) exacerbates psoriatic inflammation through a sensory neurogenic pathway. Global or nociceptor-specific Asic3 knockout (KO) in female mice alleviates imiquimod-induced psoriatic acanthosis and type 17 inflammation to the same extent as nociceptor ablation. However, ASIC3 is dispensable for IL-23-induced psoriatic inflammation that bypasses the need for nociceptors. Mechanistically, ASIC3 activation induces the activity-dependent release of calcitonin gene-related peptide (CGRP) from sensory neurons to promote neurogenic inflammation. Botulinum neurotoxin A and CGRP antagonists prevent sensory neuron-mediated …
Integration Of Ζ-Deficient Cars Into The Cd3Ζ Gene Conveys Potent Cytotoxicity In T And Nk Cells, Jonas Kath, Clemens Franke, Vanessa Drosdek, Weijie Du, Viktor Glaser, Carla Fuster-Garcia, Maik Stein, Tatiana Zittel, Sarah Schulenberg, Caroline E Porter, Lena Andersch, Annette Künkele, Joshua Alcaniz, Jens Hoffmann, Hinrich Abken, Mohamed Abou-El-Enein, Axel Pruß, Masataka Suzuki, Toni Cathomen, Renata Stripecke, Hans-Dieter Volk, Petra Reinke, Michael Schmueck-Henneresse, Dimitrios L Wagner
Integration Of Ζ-Deficient Cars Into The Cd3Ζ Gene Conveys Potent Cytotoxicity In T And Nk Cells, Jonas Kath, Clemens Franke, Vanessa Drosdek, Weijie Du, Viktor Glaser, Carla Fuster-Garcia, Maik Stein, Tatiana Zittel, Sarah Schulenberg, Caroline E Porter, Lena Andersch, Annette Künkele, Joshua Alcaniz, Jens Hoffmann, Hinrich Abken, Mohamed Abou-El-Enein, Axel Pruß, Masataka Suzuki, Toni Cathomen, Renata Stripecke, Hans-Dieter Volk, Petra Reinke, Michael Schmueck-Henneresse, Dimitrios L Wagner
Faculty, Staff and Students Publications
Chimeric antigen receptor (CAR)-redirected immune cells hold significant therapeutic potential for oncology, autoimmune diseases, transplant medicine, and infections. All approved CAR-T therapies rely on personalized manufacturing using undirected viral gene transfer, which results in nonphysiological regulation of CAR-signaling and limits their accessibility due to logistical challenges, high costs and biosafety requirements. Random gene transfer modalities pose a risk of malignant transformation by insertional mutagenesis. Here, we propose a novel approach utilizing CRISPR-Cas gene editing to redirect T cells and natural killer (NK) cells with CARs. By transferring shorter, truncated CAR-transgenes lacking a main activation domain into the human CD3ζ (CD247) …
Microglial P2y6 Calcium Signaling Promotes Phagocytosis And Shapes Neuroimmune Responses In Epileptogenesis, Anthony D Umpierre, Bohan Li, Katayoun Ayasoufi, Whitney L Simon, Shunyi Zhao, Manling Xie, Grace Thyen, Benjamin Hur, Jiaying Zheng, Yue Liang, Dale B Bosco, Mark A Maynes, Zhaofa Wu, Xinzhu Yu, Jaeyun Sung, Aaron J Johnson, Yulong Li, Long-Jun Wu
Microglial P2y6 Calcium Signaling Promotes Phagocytosis And Shapes Neuroimmune Responses In Epileptogenesis, Anthony D Umpierre, Bohan Li, Katayoun Ayasoufi, Whitney L Simon, Shunyi Zhao, Manling Xie, Grace Thyen, Benjamin Hur, Jiaying Zheng, Yue Liang, Dale B Bosco, Mark A Maynes, Zhaofa Wu, Xinzhu Yu, Jaeyun Sung, Aaron J Johnson, Yulong Li, Long-Jun Wu
The Brown Foundation: Institute of Molecular Medicine
Microglial calcium signaling is rare in a baseline state but strongly engaged during early epilepsy development. The mechanism(s) governing microglial calcium signaling are not known. By developing an in vivo UDP fluorescent sensor, GRABUDP1.0, we discovered that UDP release is a conserved response to seizures and excitotoxicity across brain regions. UDP can signal through the microglial-enriched P2Y6 receptor to increase calcium activity during epileptogenesis. P2Y6 calcium activity is associated with lysosome biogenesis and enhanced production of NF-κB-related cytokines. In the hippocampus, knockout of the P2Y6 receptor prevents microglia from fully engulfing neurons. Attenuating microglial calcium signaling through Calcium Extruder (“CalEx”) …
Microglial P2y6 Calcium Signaling Promotes Phagocytosis And Shapes Neuroimmune Responses In Epileptogenesis, Anthony D Umpierre, Bohan Li, Katayoun Ayasoufi, Whitney L Simon, Shunyi Zhao, Manling Xie, Grace Thyen, Benjamin Hur, Jiaying Zheng, Yue Liang, Dale B Bosco, Mark A Maynes, Zhaofa Wu, Xinzhu Yu, Jaeyun Sung, Aaron J Johnson, Yulong Li, Long-Jun Wu
Microglial P2y6 Calcium Signaling Promotes Phagocytosis And Shapes Neuroimmune Responses In Epileptogenesis, Anthony D Umpierre, Bohan Li, Katayoun Ayasoufi, Whitney L Simon, Shunyi Zhao, Manling Xie, Grace Thyen, Benjamin Hur, Jiaying Zheng, Yue Liang, Dale B Bosco, Mark A Maynes, Zhaofa Wu, Xinzhu Yu, Jaeyun Sung, Aaron J Johnson, Yulong Li, Long-Jun Wu
Faculty, Staff and Student Publications
Microglial calcium signaling is rare in a baseline state but strongly engaged during early epilepsy development. The mechanism(s) governing microglial calcium signaling are not known. By developing an in vivo uridine diphosphate (UDP) fluorescent sensor, GRABUDP1.0, we discovered that UDP release is a conserved response to seizures and excitotoxicity across brain regions. UDP can signal through the microglial-enriched P2Y6 receptor to increase calcium activity during epileptogenesis. P2Y6 calcium activity is associated with lysosome biogenesis and enhanced production of NF-κB-related cytokines. In the hippocampus, knockout of the P2Y6 receptor prevents microglia from fully engulfing neurons. Attenuating microglial calcium signaling through calcium …
Leveraging Integrated Rna Sequencing To Decipher Adrenomedullin's Protective Mechanisms In Experimental Bronchopulmonary Dysplasia, Subarna Palit, Amrit Kumar Shrestha, Shyam Thapa, Sandra L Grimm, Cristian Coarfa, Fabian Theis, Lukas M Simon, Binoy Shivanna
Leveraging Integrated Rna Sequencing To Decipher Adrenomedullin's Protective Mechanisms In Experimental Bronchopulmonary Dysplasia, Subarna Palit, Amrit Kumar Shrestha, Shyam Thapa, Sandra L Grimm, Cristian Coarfa, Fabian Theis, Lukas M Simon, Binoy Shivanna
Faculty, Staff and Students Publications
Bronchopulmonary dysplasia (BPD) is a chronic lung disease commonly affecting premature infants, with limited therapeutic options and increased long-term consequences. Adrenomedullin (Adm), a proangiogenic peptide hormone, has been found to protect rodents against experimental BPD. This study aims to elucidate the molecular and cellular mechanisms through which Adm influences BPD pathogenesis using a lipopolysaccharide (LPS)-induced model of experimental BPD in mice. Bulk RNA sequencing of Adm-sufficient (wild-type or Adm+/+) and Adm-haplodeficient (Adm+/−) mice lungs, integrated with single-cell RNA sequencing data, revealed distinct gene expression patterns and cell type alterations associated with Adm deficiency …
Targeting Mcl1-Driven Anti-Apoptotic Pathways Overcomes Blast Progression After Hypomethylating Agent Failure In Chronic Myelomonocytic Leukemia, Guillermo Montalban-Bravo, Natthakan Thongon, Juan Jose Rodriguez-Sevilla, Feiyang Ma, Irene Ganan-Gomez, Hui Yang, Yi June Kim, Vera Adema, Bethany Wildeman, Tomoyuki Tanaka, Faezeh Darbaniyan, Gheath Al-Atrash, Karen Dwyer, Sanam Loghavi, Rashmi Kanagal-Shamanna, Xingzhi Song, Jianhua Zhang, Koichi Takahashi, Hagop Kantarjian, Guillermo Garcia-Manero, Simona Colla
Targeting Mcl1-Driven Anti-Apoptotic Pathways Overcomes Blast Progression After Hypomethylating Agent Failure In Chronic Myelomonocytic Leukemia, Guillermo Montalban-Bravo, Natthakan Thongon, Juan Jose Rodriguez-Sevilla, Feiyang Ma, Irene Ganan-Gomez, Hui Yang, Yi June Kim, Vera Adema, Bethany Wildeman, Tomoyuki Tanaka, Faezeh Darbaniyan, Gheath Al-Atrash, Karen Dwyer, Sanam Loghavi, Rashmi Kanagal-Shamanna, Xingzhi Song, Jianhua Zhang, Koichi Takahashi, Hagop Kantarjian, Guillermo Garcia-Manero, Simona Colla
Faculty, Staff and Student Publications
RAS pathway mutations, which are present in 30% of patients with chronic myelomonocytic leukemia (CMML) at diagnosis, confer a high risk of resistance to and progression after hypomethylating agent (HMA) therapy, the current standard of care for the disease. Here, using single-cell, multi-omics technologies, we seek to dissect the biological mechanisms underlying the initiation and progression of RAS pathway-mutated CMML. We identify that RAS pathway mutations induce transcriptional reprogramming of hematopoietic stem and progenitor cells (HSPCs) and downstream monocytic populations in response to cell-intrinsic and -extrinsic inflammatory signaling that also impair the functions of immune cells. HSPCs expand at disease …
Fate-Mapping And Functional Dissection Reveal Perilous Influence Of Type I Interferon Signaling In Mouse Brain Aging, Ethan R Roy, Sanming Li, Sepideh Saroukhani, Yanyu Wang, Wei Cao
Fate-Mapping And Functional Dissection Reveal Perilous Influence Of Type I Interferon Signaling In Mouse Brain Aging, Ethan R Roy, Sanming Li, Sepideh Saroukhani, Yanyu Wang, Wei Cao
Faculty, Staff and Student Publications
Background: Aging significantly elevates the risk of developing neurodegenerative diseases. Neuroinflammation is a universal hallmark of neurodegeneration as well as normal brain aging. Which branches of age-related neuroinflammation, and how they precondition the brain toward pathological progression, remain ill-understood. The presence of elevated type I interferon (IFN-I) has been documented in the aged brain, but its role in promoting degenerative processes, such as the loss of neurons in vulnerable regions, has not been studied in depth.
Methods: To comprehend the scope of IFN-I activity in the aging brain, we surveyed IFN-I-responsive reporter mice at multiple ages. We also examined 5- …
Remodeling Of Anti-Tumor Immunity With Antibodies Targeting A P53 Mutant, Dafei Chai, Junhao Wang, Chunmei Fan, Jing-Ming Lim, Xu Wang, Praveen Neeli, Xinfang Yu, Ken H Young, Yong Li
Remodeling Of Anti-Tumor Immunity With Antibodies Targeting A P53 Mutant, Dafei Chai, Junhao Wang, Chunmei Fan, Jing-Ming Lim, Xu Wang, Praveen Neeli, Xinfang Yu, Ken H Young, Yong Li
Faculty, Staff and Students Publications
BACKGROUND: p53, the most frequently mutated gene in cancer, lacks effective targeted drugs.
METHODS: We developed monoclonal antibodies (mAbs) that target a p53 hotspot mutation E285K without cross-reactivity with wild-type p53. They were delivered using lipid nanoparticles (LNPs) that encapsulate DNA plasmids. Western blot, BLI, flow cytometry, single-cell sequencing (scRNA-seq), and other methods were employed to assess the function of mAbs in vitro and in vivo.
RESULTS: These LNP-pE285K-mAbs in the IgG1 format exhibited a robust anti-tumor effect, facilitating the infiltration of immune cells, including CD8+ T, B, and NK cells. scRNA-seq revealed that IgG1 reduces immune inhibitory signaling, increases …
Protein Restriction Slows The Development And Progression Of Pathology In A Mouse Model Of Alzheimer's Disease, Reji Babygirija, Natalie M Niemi, Et Al.
Protein Restriction Slows The Development And Progression Of Pathology In A Mouse Model Of Alzheimer's Disease, Reji Babygirija, Natalie M Niemi, Et Al.
2020-Current year OA Pubs
Dietary protein is a critical regulator of metabolic health and aging. Low protein diets are associated with healthy aging in humans, and dietary protein restriction extends the lifespan and healthspan of mice. In this study, we examined the effect of protein restriction (PR) on metabolic health and the development and progression of Alzheimer's disease (AD) in the 3xTg mouse model of AD. Here, we show that PR promotes leanness and glycemic control in 3xTg mice, specifically rescuing the glucose intolerance of 3xTg females. PR induces sex-specific alterations in circulating and brain metabolites, downregulating sphingolipid subclasses in 3xTg females. PR also …
Maldi Imaging Mass Spectrometry Visualizes The Distribution Of Antidepressant Duloxetine And Its Major Metabolites In Mouse Brain, Liver, Kidney, And Spleen Tissues, Saleh M Khalil, Xuan Qin, John M Hakenjos, Jian Wang, Zhaoyong Hu, Xinli Liu, Jin Wang, Mirjana Maletic-Savatic, Kevin R Mackenzie, Martin M Matzuk, Feng Li
Maldi Imaging Mass Spectrometry Visualizes The Distribution Of Antidepressant Duloxetine And Its Major Metabolites In Mouse Brain, Liver, Kidney, And Spleen Tissues, Saleh M Khalil, Xuan Qin, John M Hakenjos, Jian Wang, Zhaoyong Hu, Xinli Liu, Jin Wang, Mirjana Maletic-Savatic, Kevin R Mackenzie, Martin M Matzuk, Feng Li
Faculty, Staff and Student Publications
Imaging mass spectrometry (IMS) is a powerful tool for mapping the spatial distribution of unlabeled drugs and metabolites that may find application in assessing drug delivery, explaining drug efficacy, and identifying potential toxicity. This study focuses on determining the spatial distribution of the antidepressant duloxetine, which is widely prescribed despite common adverse effects (liver injury, constant headaches) whose mechanisms are not fully understood. We used high-resolution IMS with matrix-assisted laser desorption/ionization to examine the distribution of duloxetine and its major metabolites in four mouse organs where it may contribute to efficacy or toxicity: brain, liver, kidney, and spleen. In none …
Sting Agonist 8803 Reprograms The Immune Microenvironment And Increases Survival In Preclinical Models Of Glioblastoma, Hinda Najem, Spencer T Lea, Shashwat Tripathi, Lisa Hurley, Chao-Hsien Chen, Ivana William, Moloud Sooreshjani, Michelle Bowie, Genevieve Hartley, Corey Dussold, Sebastian Pacheco, Crismita Dmello, Catalina Lee-Chang, Kathleen Mccortney, Alicia Steffens, Jordain Walshon, Martina Ott, Jun Wei, Anantha Marisetty, Irina Balyasnikova, Roger Stupp, Rimas V Lukas, Jian Hu, Charles David James, Craig M Horbinski, Maciej S Lesniak, David M Ashley, Waldemar Priebe, Leonidas C Platanias, Michael A Curran, Amy B Heimberger
Sting Agonist 8803 Reprograms The Immune Microenvironment And Increases Survival In Preclinical Models Of Glioblastoma, Hinda Najem, Spencer T Lea, Shashwat Tripathi, Lisa Hurley, Chao-Hsien Chen, Ivana William, Moloud Sooreshjani, Michelle Bowie, Genevieve Hartley, Corey Dussold, Sebastian Pacheco, Crismita Dmello, Catalina Lee-Chang, Kathleen Mccortney, Alicia Steffens, Jordain Walshon, Martina Ott, Jun Wei, Anantha Marisetty, Irina Balyasnikova, Roger Stupp, Rimas V Lukas, Jian Hu, Charles David James, Craig M Horbinski, Maciej S Lesniak, David M Ashley, Waldemar Priebe, Leonidas C Platanias, Michael A Curran, Amy B Heimberger
Faculty, Staff and Student Publications
STING agonists can reprogram the tumor microenvironment to induce immunological clearance within the central nervous system. Using multiplexed sequential immunofluorescence (SeqIF) and the Ivy Glioblastoma Atlas, STING expression was found in myeloid populations and in the perivascular space. The STING agonist 8803 increased median survival in multiple preclinical models of glioblastoma, including QPP8, an immune checkpoint blockade-resistant model, where 100% of mice were cured. Ex vivo flow cytometry profiling during the therapeutic window demonstrated increases in myeloid tumor trafficking and activation, alongside enhancement of CD8+ T cell and NK effector responses. Treatment with 8803 reprogrammed microglia to express costimulatory CD80/CD86 …
The Ifitm5 Mutation In Osteogenesis Imperfecta Type V Is Associated With An Erk/Sox9-Dependent Osteoprogenitor Differentiation Defect, Ronit Marom, I-Wen Song, Emily C Busse, Megan E Washington, Ava S Berrier, Vittoria C Rossi, Laura Ortinau, Youngjae Jeong, Ming-Ming Jiang, Brian C Dawson, Mary Adeyeye, Carolina Leynes, Caressa D Lietman, Bridget M Stroup, Dominyka Batkovskyte, Mahim Jain, Yuqing Chen, Racel Cela, Alexis Castellon, Alyssa A Tran, Isabel Lorenzo, D Nicole Meyers, Shixia Huang, Alicia Turner, Vinitha Shenava, Maegen Wallace, Eric Orwoll, Dongsu Park, Catherine G Ambrose, Sandesh Cs Nagamani, Jason D Heaney, Brendan H Lee
The Ifitm5 Mutation In Osteogenesis Imperfecta Type V Is Associated With An Erk/Sox9-Dependent Osteoprogenitor Differentiation Defect, Ronit Marom, I-Wen Song, Emily C Busse, Megan E Washington, Ava S Berrier, Vittoria C Rossi, Laura Ortinau, Youngjae Jeong, Ming-Ming Jiang, Brian C Dawson, Mary Adeyeye, Carolina Leynes, Caressa D Lietman, Bridget M Stroup, Dominyka Batkovskyte, Mahim Jain, Yuqing Chen, Racel Cela, Alexis Castellon, Alyssa A Tran, Isabel Lorenzo, D Nicole Meyers, Shixia Huang, Alicia Turner, Vinitha Shenava, Maegen Wallace, Eric Orwoll, Dongsu Park, Catherine G Ambrose, Sandesh Cs Nagamani, Jason D Heaney, Brendan H Lee
Faculty, Staff and Students Publications
Osteogenesis imperfecta (OI) type V is the second most common form of OI, distinguished by hyperplastic callus formation and calcification of the interosseous membranes, in addition to the bone fragility. It is caused by a recurrent, dominant pathogenic variant (c.-14C>T) in interferon-induced transmembrane protein 5 (IFITM5). Here, we generated a conditional Rosa26-knockin mouse model to study the mechanistic consequences of the recurrent mutation. Expression of the mutant Ifitm5 in osteo-chondroprogenitor or chondrogenic cells resulted in low bone mass and growth retardation. Mutant limbs showed impaired endochondral ossification, cartilage overgrowth, and abnormal growth plate architecture. The cartilage phenotype correlates with …
Structural Characterization Of Ligand Binding And Ph-Specific Enzymatic Activity Of Mouse Acidic Mammalian Chitinase, Roberto Efraín Díaz, Andrew K Ecker, Galen J Correy, Pooja Asthana, Iris D Young, Bryan Faust, Michael C Thompson, Ian B Seiple, Steven Van Dyken, Richard M Locksley, James S Fraser
Structural Characterization Of Ligand Binding And Ph-Specific Enzymatic Activity Of Mouse Acidic Mammalian Chitinase, Roberto Efraín Díaz, Andrew K Ecker, Galen J Correy, Pooja Asthana, Iris D Young, Bryan Faust, Michael C Thompson, Ian B Seiple, Steven Van Dyken, Richard M Locksley, James S Fraser
2020-Current year OA Pubs
Chitin is an abundant biopolymer and pathogen-associated molecular pattern that stimulates a host innate immune response. Mammals express chitin-binding and chitin-degrading proteins to remove chitin from the body. One of these proteins, Acidic Mammalian Chitinase (AMCase), is an enzyme known for its ability to function under acidic conditions in the stomach but is also active in tissues with more neutral pHs, such as the lung. Here, we used a combination of biochemical, structural, and computational modeling approaches to examine how the mouse homolog (mAMCase) can act in both acidic and neutral environments. We measured kinetic properties of mAMCase activity across …