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Articles 331 - 360 of 8322
Full-Text Articles in Entire DC Network
Accurate Interpretation Of Within-Host Dissemination Using Barcoded Bacteria, Rachel T Giorgio, My T Le, Ting Zhang, Caitlyn L Holmes, Karthik Hullahalli
Accurate Interpretation Of Within-Host Dissemination Using Barcoded Bacteria, Rachel T Giorgio, My T Le, Ting Zhang, Caitlyn L Holmes, Karthik Hullahalli
2020-Current year OA Pubs
Bacterial dissemination across tissues is a critically important process influencing infection outcomes. Monitoring within-host dissemination is challenging because conventional measures of bulk bacterial burden cannot distinguish between lineages that are shared between tissues and those that replicate locally. This limitation can be overcome using barcoded bacteria, where deep sequencing of the barcode locus and comparisons of barcodes between tissues define which lineages spread within the host. Numerous studies have used barcoded bacteria to generate high-resolution maps of dissemination. However, since multiple cells in the infectious inoculum can contain identical barcodes, inferences about dissemination can be confounded when distinct lineages from …
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
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
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.
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 …
S6k1 Modulates Stat3 Activation To Promote Resistance To Radiotherapy In Lung Cancer, Ali Calderon-Aparicio, Noelle Francois, Tyler Grenda, Shan Xu, Olugbenga Okusanya, Jun He, Nicole L Simone
S6k1 Modulates Stat3 Activation To Promote Resistance To Radiotherapy In Lung Cancer, Ali Calderon-Aparicio, Noelle Francois, Tyler Grenda, Shan Xu, Olugbenga Okusanya, Jun He, Nicole L Simone
Department of Radiation Oncology Faculty Papers
Radiotherapy is a mainstay in the management of locally advanced lung cancer; however, intrinsic and acquired radioresistance contribute to poor prognosis. S6K1, a serine/threonine kinase, regulates cell growth, protein synthesis, and survival, and is increased in tumors, which is linked to enhanced survival under therapeutic stress, including radiation. The mechanisms, however, are not fully understood. This study investigates the role of S6K1 in lung cancer radioresistance and the mechanisms involved. Intrinsic radioresistance in lung cancer cells was associated with increased S6K1 activation. Pharmacologic inhibition or genetic deletion of S6K1 enhanced radiosensitivity both in vitro and in vivo, highlighting the therapeutic …
Syndecan-1-Targeted Therapeutic Antibody Impairs Macropinocytosis And Elicits Antitumor Immunity In Pancreatic Cancer, Zecheng Yang, Madelaine S Theardy, Shuaitong Chen, Yongkun Wei, Mitsunobu Takeda, Yue Zeng, Xiaofei Wang, Jun Yao, Jennifer Li, Prapassorn Thirasastr, Jangho Park, Yangxi Zheng, Long T Vien, Khalida M Wani, Huamin Wang, Sisi Gao, Tim Heffernan, Lawrence Kwong, Ignacio I Wistuba, Laura Bover, Giulio F Draetta, Haoqiang Ying, Wantong Yao
Syndecan-1-Targeted Therapeutic Antibody Impairs Macropinocytosis And Elicits Antitumor Immunity In Pancreatic Cancer, Zecheng Yang, Madelaine S Theardy, Shuaitong Chen, Yongkun Wei, Mitsunobu Takeda, Yue Zeng, Xiaofei Wang, Jun Yao, Jennifer Li, Prapassorn Thirasastr, Jangho Park, Yangxi Zheng, Long T Vien, Khalida M Wani, Huamin Wang, Sisi Gao, Tim Heffernan, Lawrence Kwong, Ignacio I Wistuba, Laura Bover, Giulio F Draetta, Haoqiang Ying, Wantong Yao
Faculty, Staff and Student Publications
Pancreatic ductal adenocarcinoma (PDAC) remains one of the deadliest malignancies, with a 5-year survival rate of just 13%. While the development and early clinical use of small molecules targeting oncogenic KRAS mutations, key drivers of PDAC, have shown promise, resistance to these targeted therapies remains a significant challenge. We recently identified Syndecan-1 (SDC1), a highly expressed heparan sulfate proteoglycan, as a critical KRAS effector protein that promotes nutrient salvage and tumor growth. Here, we report the development of a human-specific monoclonal antibody (anti-SDC1 mAb) that inhibits PDAC cell proliferation in vitro and suppresses PDAC tumor growth in vivo. Mechanistically, …
Spatiotemporal Histogenesis Of The Developing Human Cerebellum Reveals Dynamic Layering Of Bergmann Glia, Guanyi He, Simon Du, Henry Tan, Sri Yellampally, Anders W Erickson, Virginia Fernandez, Ferechte Encha-Razavi, Kimberley A Phillips, Christine Haberler, Nicole Amberg, Victor Borrell, Paul A Northcott, Michael D Taylor, Kathleen J Millen, Parthiv Haldipur
Spatiotemporal Histogenesis Of The Developing Human Cerebellum Reveals Dynamic Layering Of Bergmann Glia, Guanyi He, Simon Du, Henry Tan, Sri Yellampally, Anders W Erickson, Virginia Fernandez, Ferechte Encha-Razavi, Kimberley A Phillips, Christine Haberler, Nicole Amberg, Victor Borrell, Paul A Northcott, Michael D Taylor, Kathleen J Millen, Parthiv Haldipur
Faculty, Staff and Students Publications
Bergmann glia (BG) are a specialized glial population essential for cerebellar development, yet their developmental timeline and molecular identity in the human cerebellum remain poorly understood. Here, we combined detailed histopathological analysis with spatial transcriptomics and single-nucleus RNA sequencing to generate a developmental atlas of human cerebellar BG. Histology revealed that BG emerge around 11 post-conception weeks (PCW), initially serving as a scaffold for Purkinje cells (PCs) migrating into the PC layer of the cerebellar cortex. Following the establishment of a multilayered PC arrangement, BG form a distinct parallel layer separated from the PCs by the lamina dissecans (LD), with …
Sting-Induced Blood-Brain Barrier Opening Combined With Radiotherapy Potentiates Antitumor Response In A High-Grade Glioma Model, Shashwat Tripathi, Hinda Najem, Lisa Hurley, Ruochen Du, Crismita Dmello, Heba Ali, Kathleen Mccortney, Karl J Habashy, Peng Zhang, Craig M Horbinski, Lara Leoni, Ryan J Avery, Rimas V Lukas, Timothy L Sita, David R Raleigh, Sean Sachdev, Roger Stupp, Maciej S Lesniak, David M Ashley, Daniele Procissi, Michael A Curran, Irina Balyasnikova, Amy B Heimberger
Sting-Induced Blood-Brain Barrier Opening Combined With Radiotherapy Potentiates Antitumor Response In A High-Grade Glioma Model, Shashwat Tripathi, Hinda Najem, Lisa Hurley, Ruochen Du, Crismita Dmello, Heba Ali, Kathleen Mccortney, Karl J Habashy, Peng Zhang, Craig M Horbinski, Lara Leoni, Ryan J Avery, Rimas V Lukas, Timothy L Sita, David R Raleigh, Sean Sachdev, Roger Stupp, Maciej S Lesniak, David M Ashley, Daniele Procissi, Michael A Curran, Irina Balyasnikova, Amy B Heimberger
Faculty, Staff and Student Publications
Radiation therapy (RT) is the standard of care for glioblastoma but is not curative. Triggering the cGAS/stimulator of interferon genes (STING) pathway with potent agonists, such as 8803, exerts activity across high-grade glioma preclinical models. To determine if the combination of 8803 with RT warrants consideration in the up-front treatment setting and to clarify the underlying mechanisms of therapeutic activity, C57BL/6J mice harboring intracerebral CT-2A or QPP8v gliomas were treated with RT, intratumoral 8803, or both. The treatment with the combination resulted in 80% long-term survival in the CT-2A model but not in the radiation-resistant QPP8v model. This therapeutic effect …
Evolving Strategies In Prostate Cancer: Emerging Approaches And Unmet Needs From The Bridging The Gaps In Prostate Cancer Expert Panel, Rana Mckay, Benjamin Maughan, Alicia Morgans, Neal Shore, Evan Yu, Ravi Madan, Jacob Berchuck, Bradley Carthon, Steven Finkelstein, Leonard Gomella, Michael Gorin, Andrew Hahn, Stacy Loeb, Vivek Narayan, Daniel Petrylak, Charles Ryan, Karine Tawagi, Phuoc Tran, Tanya Dorff
Evolving Strategies In Prostate Cancer: Emerging Approaches And Unmet Needs From The Bridging The Gaps In Prostate Cancer Expert Panel, Rana Mckay, Benjamin Maughan, Alicia Morgans, Neal Shore, Evan Yu, Ravi Madan, Jacob Berchuck, Bradley Carthon, Steven Finkelstein, Leonard Gomella, Michael Gorin, Andrew Hahn, Stacy Loeb, Vivek Narayan, Daniel Petrylak, Charles Ryan, Karine Tawagi, Phuoc Tran, Tanya Dorff
Department of Urology Faculty Papers
BACKGROUND: The expansion of treatment options for prostate cancer (PC) has improved disease-specific and overall survival outcomes but has also raised questions about the optimal level of treatment needed for patients based on their individual prognosis and accounting for potential toxicity, incorporating quality of life considerations.
METHODS: A panel of experts met to discuss current controversies in the care of patients with PC across the disease continuum. Multidisciplinary experts review advances and persistent uncertainties in biomarker-guided assessment, imaging, and systemic therapy for prostate cancer. The discussion outlines priority gaps in evidence that must be addressed to optimize individualized patient care. …
Sting Activation Induces Cytotoxic And Immune Responses In Meningiomas Via Inflammatory Cell Death Pathways, Mark W Youngblood, Alexander H Stegh, Et Al.
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 Oxalate Production By Combining Enzyme Inhibition And Proteolysis Activation: A Novel Therapeutic Approach For Primary Hyperoxaluria Type 1, Fabio Arias, Sumati Rohilla, Yudibeth Sixto-López, Koral S E Richard, Sandeep Das, Sumit K Anand, Pilar Maria Luque-Navarro, Guillermo Bañuelos-Sanchez, Juan Luis Pacheco-García, Reethika Gade, M Peyton Mckinney, Dhananjay Kumar, Jemiah Maxie, W Rylan Corr, Nilesh Pandey, Harpreet Kaur, Jibin Ding, Lin Tan, Elisha Scott, Hyung Nam, Eyal Gottlieb, A Wayne Orr, Nirav Dhanesha, Arif Yurdagul, Angel L Pey, Francisco Franco-Montalbán, José A Gómez Vidal, Oren Rom, Mónica Díaz-Gavilán
Targeting Oxalate Production By Combining Enzyme Inhibition And Proteolysis Activation: A Novel Therapeutic Approach For Primary Hyperoxaluria Type 1, Fabio Arias, Sumati Rohilla, Yudibeth Sixto-López, Koral S E Richard, Sandeep Das, Sumit K Anand, Pilar Maria Luque-Navarro, Guillermo Bañuelos-Sanchez, Juan Luis Pacheco-García, Reethika Gade, M Peyton Mckinney, Dhananjay Kumar, Jemiah Maxie, W Rylan Corr, Nilesh Pandey, Harpreet Kaur, Jibin Ding, Lin Tan, Elisha Scott, Hyung Nam, Eyal Gottlieb, A Wayne Orr, Nirav Dhanesha, Arif Yurdagul, Angel L Pey, Francisco Franco-Montalbán, José A Gómez Vidal, Oren Rom, Mónica Díaz-Gavilán
Faculty, Staff and Student Publications
Primary hyperoxaluria type 1 (PH1) is a rare genetic disorder caused by hepatic oxalate overproduction due to alanine-glyoxylate aminotransferase (AGXT) deficiency. Therapeutic strategies targeting glycolate oxidase (GO) and lactate dehydrogenase A (LDHA), key enzymes in glyoxylate metabolism, have shown promise in reducing oxalate burden. However, recently approved siRNA therapies remain limited by high cost, unfavorable pharmacokinetics, and limited global accessibility. We report the development of compound 2, a dual GO/LDHA inhibitor (K i = 390 and 40 nM, respectively) that also promotes hydrophobic tag-mediated autophagic degradation of LDHA. Its efficacy was evaluated in Agxt –/– mice, both in primary …
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
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
Community Participatory Co-Design And Development Of A Digital Diabetes Prevention Education Program For Hispanic Families With Obesity: Mixed Methods Study, Sandra Mihail, Marbelly Partida, Lizette Villanueva, Debbe Thompson, Teresia M O'Connor, Salma M Musaad, Maria J Redondo, Erica G Soltero
Community Participatory Co-Design And Development Of A Digital Diabetes Prevention Education Program For Hispanic Families With Obesity: Mixed Methods Study, Sandra Mihail, Marbelly Partida, Lizette Villanueva, Debbe Thompson, Teresia M O'Connor, Salma M Musaad, Maria J Redondo, Erica G Soltero
Children’s Nutrition Research Center Staff Publications
Background: Digital health interventions (DHIs) can extend the reach of disease prevention interventions; however, few are evidence-based, theoretically grounded, or developed for high-risk youth and families. Co-design approaches engage end users in the design and development of the DHI, which can lead to increased accessibility and engagement.
Objective: This study aimed to describe the adaptation of an evidence-based diabetes prevention program for remote, digital delivery.
Methods: The adaptation of the in-person intervention was guided by a modified Inclusive Digital Health Intervention Design to Promote Health Equity framework and conducted in collaboration with Hispanic adolescents (n=23) with obesity (BMI ≥95th percentile) …
A Framework For Assessing The Trustworthiness Of Scientific Research Findings, Brian A Nosek, David B Allison, Kathleen Hall Jamieson, Marcia Mcnutt, A Beau Nielsen, Susan M Wolf
A Framework For Assessing The Trustworthiness Of Scientific Research Findings, Brian A Nosek, David B Allison, Kathleen Hall Jamieson, Marcia Mcnutt, A Beau Nielsen, Susan M Wolf
Children’s Nutrition Research Center Staff Publications
Vigorous debate has erupted over the trustworthiness of scientific research findings in a number of domains. The question "what makes research findings trustworthy?" elicits different answers depending on whether the emphasis is on research integrity and ethics, research methods, transparency, inclusion, assessment and peer review, or scholarly communication. Each provides partial insight. We offer a systems approach that focuses on whether the research is accountable, evaluable, well-formulated, has been evaluated, controls for bias, reduces error, and whether the claims are warranted by the evidence. We tie each of these components to measurable indicators of trustworthiness for evaluating the research itself, …
Molecular Determinant Of Low-Voltage Dependence Of Human Nav1.7 Inactivation Revealed By Efficacy-Based Nav1.7 Selective Inhibitor, Fang Zhao, Chuchu Xi, Jie Li, Kerui Ren, Qinglian Tang, Huaduan Liang, Shilong Yang, Michael X Zhu, Zhengyu Cao
Molecular Determinant Of Low-Voltage Dependence Of Human Nav1.7 Inactivation Revealed By Efficacy-Based Nav1.7 Selective Inhibitor, Fang Zhao, Chuchu Xi, Jie Li, Kerui Ren, Qinglian Tang, Huaduan Liang, Shilong Yang, Michael X Zhu, Zhengyu Cao
Faculty, Staff and Student Publications
Nav1.7 is a voltage-gated sodium channel (VGSC) subtype predominantly expressed in sensory neurons, amplifying threshold currents. Here, we identify that Uvarigranol D (UGD) suppresses human (h) Nav1.7 with a much greater maximal inhibition than other VGSC subtypes, despite having similar apparent affinities. We demonstrate that Thr1398 determines the greater inhibitory efficacy of UGD, the leftward shift in voltage-dependence and faster inactivation kinetics of hNav1.7. UGD binds to the inactivated state, with Gln360, Ile394, Lys1395, Phe1737, and Tyr1744 being critically involved. Moreover, while UGD suppresses action potentials in both rat dorsal root ganglion neurons and human induced pluripotent stem cell-derived cardiomyocytes, …
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
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.
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
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. …
Ubiquitination-Directed Cytosolic Dna Degradation Governs Cgas-Sting-Mediated Immune Response To Dna Damage, Lei Li, Qi Ye, Jinlu Ma, Zixi Wang, Tianjie Liu, Yuzeshi Lei, Mingming Lu, Jialu Kang, Haohan Xiang, Buyun Li, Shan Xu, Ke Wang, Yule Chen, Jiaqi Chen, Bohan Ma, Wenyue Huang, Mengjiao Cai, Nan Wu, Yanqiang Li, Jiale An, Chongming Jiang, Rui Ye, Jing Liu, Steven H Lin, Yang Gao, Jian Ma, Lei Li
Ubiquitination-Directed Cytosolic Dna Degradation Governs Cgas-Sting-Mediated Immune Response To Dna Damage, Lei Li, Qi Ye, Jinlu Ma, Zixi Wang, Tianjie Liu, Yuzeshi Lei, Mingming Lu, Jialu Kang, Haohan Xiang, Buyun Li, Shan Xu, Ke Wang, Yule Chen, Jiaqi Chen, Bohan Ma, Wenyue Huang, Mengjiao Cai, Nan Wu, Yanqiang Li, Jiale An, Chongming Jiang, Rui Ye, Jing Liu, Steven H Lin, Yang Gao, Jian Ma, Lei Li
Faculty, Staff and Student Publications
Activation of cGAS-STING signaling in cancer cells requires cytosolic DNA produced by intrinsic or treatment-induced DNA damage. However, clinical efforts to exploit this pathway to improve immunotherapy have yielded limited success, highlighting gaps in understanding the link between DNA damage and immunotherapy. Here, we identify ubiquitination-directed cytosolic DNA degradation as a critical determinant for cGAS-STING activation following DNA damage. Mechanistically, the cytosolic DNA exonuclease TREX1 is degraded by the E3 ubiquitin ligase SPOP but is reversely stabilized by the deubiquitinase USP7. Cancer-associated SPOP mutations or USP7 overexpression elevate TREX1 levels, promoting cytosolic DNA degradation and impairing cGAS-STING-mediated immune activation. Notably, …
Multimodal Spatial-Omics Reveal Co-Evolution Of Alveolar Progenitors And Proinflammatory Niches In Progression Of Lung Precursor Lesions, Fuduan Peng, Ansam Sinjab, Yibo Dai, Warapen Treekitkarnmongkol, Sujuan Yang, Lorena I Gomez Bolanos, Tieling Zhou, Minyue Chen, Alejandra G Serrano, Avantika Krishna, Nastaran Karimi, Manvi Sharma, Akshay Basi, Guangsheng Pei, Jianlong Liao, Yunhe Liu, Jiping Feng, Zahraa Rahal, Yang Liu, Jiahui Jiang, Kai Yu, Tala Noun, Yuejiang Liu, Khaja Khan, Kyung Serk Cho, Jichao Chen, Luisa M Solis, Sarah Mazzilli, Steven Dubinett, Tina Cascone, Avrum E Spira, Stephen Swisher, Naoe Jimbo, Takuo Hayashi, Satsuki Kishikawa, Kazuya Takamochi, Tomoo Itoh, Takashi Yao, Kenji Suzuki, Neda Kalhor, Ignacio I Wistuba, Mingyao Li, Seyed Javad Moghaddam, Junya Fujimoto, Jared Burks, Jeffrey Myers, Kadir Akdemir, Linghua Wang, Humam Kadara
Multimodal Spatial-Omics Reveal Co-Evolution Of Alveolar Progenitors And Proinflammatory Niches In Progression Of Lung Precursor Lesions, Fuduan Peng, Ansam Sinjab, Yibo Dai, Warapen Treekitkarnmongkol, Sujuan Yang, Lorena I Gomez Bolanos, Tieling Zhou, Minyue Chen, Alejandra G Serrano, Avantika Krishna, Nastaran Karimi, Manvi Sharma, Akshay Basi, Guangsheng Pei, Jianlong Liao, Yunhe Liu, Jiping Feng, Zahraa Rahal, Yang Liu, Jiahui Jiang, Kai Yu, Tala Noun, Yuejiang Liu, Khaja Khan, Kyung Serk Cho, Jichao Chen, Luisa M Solis, Sarah Mazzilli, Steven Dubinett, Tina Cascone, Avrum E Spira, Stephen Swisher, Naoe Jimbo, Takuo Hayashi, Satsuki Kishikawa, Kazuya Takamochi, Tomoo Itoh, Takashi Yao, Kenji Suzuki, Neda Kalhor, Ignacio I Wistuba, Mingyao Li, Seyed Javad Moghaddam, Junya Fujimoto, Jared Burks, Jeffrey Myers, Kadir Akdemir, Linghua Wang, Humam Kadara
Faculty, Staff and Student Publications
The co-evolution of different cell subsets in the progression of precursor lesions to lung adenocarcinoma (LUAD) is incompletely understood. We generated spatial transcriptomic maps of 56 human precursor lesions and LUADs from 25 patients and of an independent cohort of 36 lesions from 19 patients, analyzing a total of 486,519 spots and 5.4 million cells. We identify region-specific programs that distinguish precursors from LUADs. Spatially resolved clonal architectures reveal patient-specific heterogeneity in evolution of precursors to LUADs. We find epithelial alveolar progenitors expressing tumor-associated meta-programs and residing in niches enriched with proinflammatory subsets including IL1B high macrophages. Epithelial-proinflammatory niches are …
Multimodal Spatial-Omics Reveal Co-Evolution Of Alveolar Progenitors And Proinflammatory Niches In Progression Of Lung Precursor Lesions, Fuduan Peng, Ansam Sinjab, Yibo Dai, Warapen Treekitkarnmongkol, Sujuan Yang, Lorena I Gomez Bolanos, Tieling Zhou, Minyue Chen, Alejandra G Serrano, Avantika Krishna, Nastaran Karimi, Manvi Sharma, Akshay Basi, Guangsheng Pei, Jianlong Liao, Yunhe Liu, Jiping Feng, Zahraa Rahal, Yang Liu, Jiahui Jiang, Kai Yu, Tala Noun, Yuejiang Liu, Khaja Khan, Kyung Serk Cho, Jichao Chen, Luisa M Solis, Sarah Mazzilli, Steven Dubinett, Tina Cascone, Avrum E Spira, Stephen Swisher, Naoe Jimbo, Takuo Hayashi, Satsuki Kishikawa, Kazuya Takamochi, Tomoo Itoh, Takashi Yao, Kenji Suzuki, Neda Kalhor, Ignacio I Wistuba, Mingyao Li, Seyed Javad Moghaddam, Junya Fujimoto, Jared Burks, Jeffrey Myers, Kadir Akdemir, Linghua Wang, Humam Kadara
Multimodal Spatial-Omics Reveal Co-Evolution Of Alveolar Progenitors And Proinflammatory Niches In Progression Of Lung Precursor Lesions, Fuduan Peng, Ansam Sinjab, Yibo Dai, Warapen Treekitkarnmongkol, Sujuan Yang, Lorena I Gomez Bolanos, Tieling Zhou, Minyue Chen, Alejandra G Serrano, Avantika Krishna, Nastaran Karimi, Manvi Sharma, Akshay Basi, Guangsheng Pei, Jianlong Liao, Yunhe Liu, Jiping Feng, Zahraa Rahal, Yang Liu, Jiahui Jiang, Kai Yu, Tala Noun, Yuejiang Liu, Khaja Khan, Kyung Serk Cho, Jichao Chen, Luisa M Solis, Sarah Mazzilli, Steven Dubinett, Tina Cascone, Avrum E Spira, Stephen Swisher, Naoe Jimbo, Takuo Hayashi, Satsuki Kishikawa, Kazuya Takamochi, Tomoo Itoh, Takashi Yao, Kenji Suzuki, Neda Kalhor, Ignacio I Wistuba, Mingyao Li, Seyed Javad Moghaddam, Junya Fujimoto, Jared Burks, Jeffrey Myers, Kadir Akdemir, Linghua Wang, Humam Kadara
Faculty, Staff and Student Publications
The co-evolution of different cell subsets in the progression of precursor lesions to lung adenocarcinoma (LUAD) is incompletely understood. We generated spatial transcriptomic maps of 56 human precursor lesions and LUADs from 25 patients and of an independent cohort of 36 lesions from 19 patients, analyzing a total of 486,519 spots and 5.4 million cells. We identify region-specific programs that distinguish precursors from LUADs. Spatially resolved clonal architectures reveal patient-specific heterogeneity in evolution of precursors to LUADs. We find epithelial alveolar progenitors expressing tumor-associated meta-programs and residing in niches enriched with proinflammatory subsets including IL1B high macrophages. Epithelial-proinflammatory niches are …
Consensus Paper: Models Of Cerebellar Functions, Shinji Kakei, Andreea C Bostan, Timothy J Ebner, Mohammad Amin Fakharian, Hiroaki Gomi, Xavier Guell, Marie Hemelt, Huu Hoang, Court Hull, Masato Inoue, Takahiro Ishikawa, Masashi Kameda, Mitsuo Kawato, Shigeru Kitazawa, Mario Manto, Javier F Medina, Hiroshi Mitoma, Keiko Ohmae, Shogo Ohmae, Ken-Ichi Okada, Laurentiu S Popa, Jeremy D Schmahmann, Reza Shadmehr, Peter L Strick, Hirokazu Tanaka, Masaki Tanaka, Tadashi Yamazaki
Consensus Paper: Models Of Cerebellar Functions, Shinji Kakei, Andreea C Bostan, Timothy J Ebner, Mohammad Amin Fakharian, Hiroaki Gomi, Xavier Guell, Marie Hemelt, Huu Hoang, Court Hull, Masato Inoue, Takahiro Ishikawa, Masashi Kameda, Mitsuo Kawato, Shigeru Kitazawa, Mario Manto, Javier F Medina, Hiroshi Mitoma, Keiko Ohmae, Shogo Ohmae, Ken-Ichi Okada, Laurentiu S Popa, Jeremy D Schmahmann, Reza Shadmehr, Peter L Strick, Hirokazu Tanaka, Masaki Tanaka, Tadashi Yamazaki
Faculty, Staff and Students Publications
For a long time, from the nineteenth century to most of the twentieth century, the cerebellum was thought to be an organ that regulates movement. Towards the end of the twentieth century, the brain functions associated with the cerebellum began to extend beyond motor control. Now, there is a consensus that the cerebellum is involved not only in motor functions but also in the most basic autonomic functions and the most complex cognitive and emotional functions, with a focus on predictions and internal models. A new functional model of the cerebellum is needed to explain all layers of brain functions …
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
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 …
Diverse Enteric Bacterial, Viral, And Parasitic Pathogen Genes Are Shed In Animal Feces In Indiana, Anna A. Heintzman, Ishi Keenum, Drew Capone
Diverse Enteric Bacterial, Viral, And Parasitic Pathogen Genes Are Shed In Animal Feces In Indiana, Anna A. Heintzman, Ishi Keenum, Drew Capone
Michigan Tech Publications
Southern Indiana has intensive livestock production, yet species-resolved fecal pathogen and pathogen associated gene profiles are limited. At 10 sites in southern Indiana (April-June 2024), we collected 128 fecal specimens from 10 hosts: pigs (n=12), horses (12), cats (12), chickens (12), dogs (22), white-tailed deer (12), sheep (12), goats (12), cows (12), and humans (10). We extracted and assayed total nucleic acids using a custom 43-target TaqMan Array Card (RT-qPCR). Flotation microscopy was performed on pig and dog stools for helminth ova. In-silico specificity checks were conducted for selected targets due to potential for cross reactivity between pathogen species. Most …
Tracking Focal Adhesion Turnover: A Novel Reporter For Fa-Phagy Flux, Kuizhi Qu, Mengjun Dai, Ying Jiang, Sophie Liu, John P Hagan, Louise D Mccullough, Zhen Xu, Yan-Ning Rui
Tracking Focal Adhesion Turnover: A Novel Reporter For Fa-Phagy Flux, Kuizhi Qu, Mengjun Dai, Ying Jiang, Sophie Liu, John P Hagan, Louise D Mccullough, Zhen Xu, Yan-Ning Rui
Faculty, Staff and Student Publications
Focal adhesions (FAs) are critical multi-protein complexes regulating cell adhesion, migration, and survival, and their dysregulation contributes to cancer metastasis and vascular diseases. Despite extensive research on FA formation, little is known about FA turnover, particularly its regulation by autophagy. This study introduces a novel tandem fluorescence reporter capable of tracking the entire FA-phagy flux, from autophagosome formation to lysosomal degradation. The reporter, based on a red–green fluorescence system with a lysosome-specific cleavage site, integrates seamlessly into endogenous focal adhesion complexes, demonstrating sensitivity and specificity to autophagy stimuli. Validated in multiple cell lines, the tool revealed dynamic FA-phagy responses to …
Extracellular Matrix Mediates Circulating Tumor Cell Clustering In Triple-Negative Breast Cancer Metastasis, Georg Om Bobkov, Khushali J Patel, Bree M Lege, Rong Zheng, Gad Shaulsky, Matthew J Ellis, Chonghui Cheng
Extracellular Matrix Mediates Circulating Tumor Cell Clustering In Triple-Negative Breast Cancer Metastasis, Georg Om Bobkov, Khushali J Patel, Bree M Lege, Rong Zheng, Gad Shaulsky, Matthew J Ellis, Chonghui Cheng
Faculty, Staff and Students Publications
Metastatic tumor cell dissemination is the leading cause of cancer-related deaths. Clustered circulating tumor cells (CTCs) possess higher metastatic potential than single CTCs. Epithelial adherens junction (AJ) proteins typically mediate stable cell-cell interactions; however, these proteins are frequently lost in highly aggressive triple-negative breast cancers (TNBCs), raising the question of how CTCs from such tumors cluster. Here we show that the extracellular matrix (ECM) component hyaluronan (HA) mediates AJ-independent CTC clustering in TNBCs. HA is necessary and sufficient to drive clustering of tumor cells expressing its receptor CD44. Mechanistically, HA initiates contact between neighboring cells through actin-based membrane protrusions. As …
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
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 …
Bi-Allelic Variants In Neuronal Adhesion Molecule Astrotactin 1 Gene Astn1 Cause Diverse Neurodevelopmental Disorders, Jesse M Levine, Daniel G Calame, Riccardo Sangermano, Haowei Du, Ahmed Saad, Jasmin Lisfeld, Tatjana Bierhals, Jonas Denecke, Eyyup Uctepe, Merve Yoldas Celik, Ahmet Yesilyurt, Hilal Yildiz Er, Elif Yilmaz Gulec, Aziza Mushiba, Naif Almontashiri, Pawel Gawlinski, Wojciech Wiszniewski, Ender Karaca, Lama Alabdi, Davut Pehlivan, Dana Marafi, Maha S Zaki, Fowzan S Alkuraya, Joseph G Gleeson, Shalini N Jhangiani, Richard A Gibbs, Jennifer E Posey, Kinga M Bujakowska, James R Lupski
Bi-Allelic Variants In Neuronal Adhesion Molecule Astrotactin 1 Gene Astn1 Cause Diverse Neurodevelopmental Disorders, Jesse M Levine, Daniel G Calame, Riccardo Sangermano, Haowei Du, Ahmed Saad, Jasmin Lisfeld, Tatjana Bierhals, Jonas Denecke, Eyyup Uctepe, Merve Yoldas Celik, Ahmet Yesilyurt, Hilal Yildiz Er, Elif Yilmaz Gulec, Aziza Mushiba, Naif Almontashiri, Pawel Gawlinski, Wojciech Wiszniewski, Ender Karaca, Lama Alabdi, Davut Pehlivan, Dana Marafi, Maha S Zaki, Fowzan S Alkuraya, Joseph G Gleeson, Shalini N Jhangiani, Richard A Gibbs, Jennifer E Posey, Kinga M Bujakowska, James R Lupski
Faculty, Staff and Students Publications
ASTN1 encodes astrotactin 1, a neuronal-glial ligand in the developing brain that promotes neuronal migration along radial glia in brain structures with laminar organization, such as the cerebral cortex, hippocampus, and cerebellum. In mouse models, disruption of Astn1 results in neuronal migration deficits, a mild reduction in cerebellar volume, and balance and coordination deficits. In humans, bi-allelic ASTN1 variants have been identified in nine individuals with neurodevelopmental disorders (NDDs) with or without brain malformations. ASTN1 additionally interacts with astrotactin 2 (ASTN2) to implement neuronal migration; ASTN2 deletions associate with NDDs with reduced penetrance. Here, we describe eighteen individuals with NDDs …
Development Of An Aav-Based Gene Therapy For The Ocular Phenotype Of Friedreich's Ataxia., Heyu Tang, Siddhant Gupte, Emily Xu, Kaitlyn R Calabro, Hannah Friend, Sean M Crosson, Diego Fajardo, Zachary Kostamo, Hangning Zhang, James J Peterson, Fangyu Lin, Zbynek Kozmik, Cathleen Lutz, Sanford L Boye, Shannon E Boye
Development Of An Aav-Based Gene Therapy For The Ocular Phenotype Of Friedreich's Ataxia., Heyu Tang, Siddhant Gupte, Emily Xu, Kaitlyn R Calabro, Hannah Friend, Sean M Crosson, Diego Fajardo, Zachary Kostamo, Hangning Zhang, James J Peterson, Fangyu Lin, Zbynek Kozmik, Cathleen Lutz, Sanford L Boye, Shannon E Boye
Faculty Research 2026
Friedreich's ataxia (FA) is a leading form of hereditary ataxia caused by autosomal recessive mutations in frataxin (FXN). GAA triplet repeat expansions lead to lower levels of FXN expression, abnormal influx of iron into mitochondria, and damage to the nervous system. Patients typically present before the second decade with loss of muscular function, speech impediments, and cardiomyopathy. At later stages, vision loss typically manifests. Work is under way to develop gene therapies that address the cardiac and CNS manifestations, but their routes of administration do not lead to efficient transduction of the retina. The purpose of this study was to …
Targeting Pediatric Glioblastomas By Combining Olig2 Inhibitor Ct-179 With Fractionated Radiation In A Panel Of Patient-Derived Orthotopic Xenograft Mouse Models., Holly Lindsay, Yuchen Du, Lin Qi, Huiyuan Zhang, Sibo Zhao, Frank K Braun, Mari Kogiso, Clifford Stephan, Gordon Alton, Gregory Stein, Graham Beaton, Santosh Kesari, Steven Neuhauser, Timothy M Stearns, Jeffrey Chuang, Emily L Jocoy, Carol J Bult, Beverly Teicher, Malcolm A Smith, Xiao-Nan Li
Targeting Pediatric Glioblastomas By Combining Olig2 Inhibitor Ct-179 With Fractionated Radiation In A Panel Of Patient-Derived Orthotopic Xenograft Mouse Models., Holly Lindsay, Yuchen Du, Lin Qi, Huiyuan Zhang, Sibo Zhao, Frank K Braun, Mari Kogiso, Clifford Stephan, Gordon Alton, Gregory Stein, Graham Beaton, Santosh Kesari, Steven Neuhauser, Timothy M Stearns, Jeffrey Chuang, Emily L Jocoy, Carol J Bult, Beverly Teicher, Malcolm A Smith, Xiao-Nan Li
Faculty Research 2026
The poor clinical outcomes of pediatric high-grade glioma (pHGG) highlight the urgent need for new therapies. Oligodendrocyte lineage transcription factor 2 (OLIG2) is a pro-mitotic transcription factor highly expressed in glioma stem cells and may represent a novel therapeutic target. To evaluate the therapeutic efficacy of an OLIG2 inhibitor CT-179 in pHGG, we determined the OLIG2 mRNA expression in 10 patient-derived orthotopic xenograft (PDOX) models. In vitro activities of CT-179 were analyzed in monolayer and neurosphere cells (0–10 µM) with and without radiation (XRT) (0–8 Gy), brain penetration was evaluated in tumor-bearing PDOX mice, and in vivo efficacy was determined …
Targeting Pediatric Glioblastomas By Combining Olig2 Inhibitor Ct-179 With Fractionated Radiation In A Panel Of Patient-Derived Orthotopic Xenograft Mouse Models., Holly Lindsay, Yuchen Du, Lin Qi, Huiyuan Zhang, Sibo Zhao, Frank K Braun, Mari Kogiso, Clifford Stephan, Gordon Alton, Gregory Stein, Graham Beaton, Santosh Kesari, Steven Neuhauser, Timothy M Stearns, Jeffrey Chuang, Emily L Jocoy, Carol J Bult, Beverly Teicher, Malcolm A Smith, Xiao-Nan Li
Targeting Pediatric Glioblastomas By Combining Olig2 Inhibitor Ct-179 With Fractionated Radiation In A Panel Of Patient-Derived Orthotopic Xenograft Mouse Models., Holly Lindsay, Yuchen Du, Lin Qi, Huiyuan Zhang, Sibo Zhao, Frank K Braun, Mari Kogiso, Clifford Stephan, Gordon Alton, Gregory Stein, Graham Beaton, Santosh Kesari, Steven Neuhauser, Timothy M Stearns, Jeffrey Chuang, Emily L Jocoy, Carol J Bult, Beverly Teicher, Malcolm A Smith, Xiao-Nan Li
Faculty Research 2026
The poor clinical outcomes of pediatric high-grade glioma (pHGG) highlight the urgent need for new therapies. Oligodendrocyte lineage transcription factor 2 (OLIG2) is a pro-mitotic transcription factor highly expressed in glioma stem cells and may represent a novel therapeutic target. To evaluate the therapeutic efficacy of an OLIG2 inhibitor CT-179 in pHGG, we determined the OLIG2 mRNA expression in 10 patient-derived orthotopic xenograft (PDOX) models. In vitro activities of CT-179 were analyzed in monolayer and neurosphere cells (0–10 µM) with and without radiation (XRT) (0–8 Gy), brain penetration was evaluated in tumor-bearing PDOX mice, and in vivo efficacy was determined …