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Full-Text Articles in Animals

Multi-Antigen Intranasal Vaccine Protects Against Challenge With Sarbecoviruses And Prevents Transmission In Hamsters, Ankita Leekha, Arash Saeedi, K M Samiur Rahman Sefat, Monish Kumar, Melisa Martinez-Paniagua, Adrian Damian, Rohan Kulkarni, Kate Reichel, Ali Rezvan, Shalaleh Masoumi, Xinli Liu, Laurence J N Cooper, Manu Sebastian, Courtney M Sands, Vallabh E Das, Nimesh B Patel, Brett Hurst, Navin Varadarajan Jul 2024

Multi-Antigen Intranasal Vaccine Protects Against Challenge With Sarbecoviruses And Prevents Transmission In Hamsters, Ankita Leekha, Arash Saeedi, K M Samiur Rahman Sefat, Monish Kumar, Melisa Martinez-Paniagua, Adrian Damian, Rohan Kulkarni, Kate Reichel, Ali Rezvan, Shalaleh Masoumi, Xinli Liu, Laurence J N Cooper, Manu Sebastian, Courtney M Sands, Vallabh E Das, Nimesh B Patel, Brett Hurst, Navin Varadarajan

Faculty, Staff and Student Publications

Immunization programs against SARS-CoV-2 with commercial intramuscular vaccines prevent disease but are less efficient in preventing infections. Mucosal vaccines can provide improved protection against transmission, ideally for different variants of concern (VOCs) and related sarbecoviruses. Here, we report a multi-antigen, intranasal vaccine, NanoSTING-SN (NanoSTING-Spike-Nucleocapsid), eliminates virus replication in both the lungs and the nostrils upon challenge with the pathogenic SARS-CoV-2 Delta VOC. We further demonstrate that NanoSTING-SN prevents transmission of the SARS-CoV-2 Omicron VOC (BA.5) to vaccine-naïve hamsters. To evaluate protection against other sarbecoviruses, we immunized mice with NanoSTING-SN. We showed that immunization affords protection against SARS-CoV, leading to protection …


Single-Cell Analysis Of Age-Related Changes In Leukocytes Of Diabetic Mouse Hindpaws, James M Nichols, Hoang Vu Pham, Eric F Lee, Rajasekaran Mahalingam, Andrew J Shepherd Mar 2024

Single-Cell Analysis Of Age-Related Changes In Leukocytes Of Diabetic Mouse Hindpaws, James M Nichols, Hoang Vu Pham, Eric F Lee, Rajasekaran Mahalingam, Andrew J Shepherd

Faculty, Staff and Student Publications

Complications associated with Type 1 and Type 2 diabetes, such as diabetic peripheral neuropathy and diabetic foot ulcers, are a growing health-care concern. In addition, this concern increases as diabetic patients age due to their increased susceptibility to complications. To address this growing problem, it is important to understand fluctuations in physiology which lead to pathological changes associated with the metabolic disturbances of diabetes. Our study explores dysregulation of immune cell populations in the hindpaws of healthy and diabetic mice at 12 and 21 weeks of age using single-cell RNA sequencing to provide insight into immune disruptions occurring in the …


Testis-Specific Serine Kinase 3 Is Required For Sperm Morphogenesis And Male Fertility, Kaori Nozawa, Thomas X Garcia, Katarzyna Kent, Mei Leng, Antrix Jain, Anna Malovannaya, Fei Yuan, Zhifeng Yu, Masahito Ikawa, Martin M Matzuk Jul 2023

Testis-Specific Serine Kinase 3 Is Required For Sperm Morphogenesis And Male Fertility, Kaori Nozawa, Thomas X Garcia, Katarzyna Kent, Mei Leng, Antrix Jain, Anna Malovannaya, Fei Yuan, Zhifeng Yu, Masahito Ikawa, Martin M Matzuk

Faculty, Staff and Students Publications

BACKGROUND: The importance of phosphorylation in sperm during spermatogenesis has not been pursued extensively. Testis-specific serine kinase 3 (Tssk3) is a conserved gene, but TSSK3 kinase functions and phosphorylation substrates of TSSK3 are not known.

OBJECTIVE: The goals of our studies were to understand the mechanism of action of TSSK3.

MATERIALS AND METHODS: We analyzed the localization of TSSK3 in sperm, used CRISPR/Cas9 to generate Tssk3 knockout (KO) mice in which nearly all of the Tssk3 open reading frame was deleted (ensuring it is a null mutation), analyzed the fertility of Tssk3 KO mice by breeding mice for 4 months, …


Dpc29 Promotes Post-Initiation Mitochondrial Translation In Saccharomyces Cerevisiae, Kyle A. Hubble, Michael F. Henry Feb 2023

Dpc29 Promotes Post-Initiation Mitochondrial Translation In Saccharomyces Cerevisiae, Kyle A. Hubble, Michael F. Henry

Rowan-Virtua School of Osteopathic Medicine Departmental Research

Mitochondrial ribosomes synthesize essential components of the oxidative phosphorylation (OXPHOS) system in a tightly regulated process. In the yeast Saccharomyces cerevisiae, mitochondrial mRNAs require specific translational activators, which orchestrate protein synthesis by recognition of their target gene's 5'-untranslated region (UTR). Most of these yeast genes lack orthologues in mammals, and only one such gene-specific translational activator has been proposed in humans-TACO1. The mechanism by which TACO1 acts is unclear because mammalian mitochondrial mRNAs do not have significant 5'-UTRs, and therefore must promote translation by alternative mechanisms. In this study, we examined the role of the TACO1 orthologue in yeast. We …


Integration Of Mouse Ovary Morphogenesis With Developmental Dynamics Of The Oviduct, Ovarian Ligaments, And Rete Ovarii, Jennifer Mckey, Dilara N Anbarci, Corey Bunce, Alejandra E Ontiveros, Richard R Behringer, Blanche Capel Sep 2022

Integration Of Mouse Ovary Morphogenesis With Developmental Dynamics Of The Oviduct, Ovarian Ligaments, And Rete Ovarii, Jennifer Mckey, Dilara N Anbarci, Corey Bunce, Alejandra E Ontiveros, Richard R Behringer, Blanche Capel

Faculty, Staff and Student Publications

Morphogenetic events during the development of the fetal ovary are crucial to the establishment of female fertility. However, the effects of structural rearrangements of the ovary and surrounding reproductive tissues on ovary morphogenesis remain largely uncharacterized. Using tissue clearing and lightsheet microscopy, we found that ovary folding correlated with regionalization into cortex and medulla. Relocation of the oviduct to the ventral aspect of the ovary led to ovary encapsulation, and mutual attachment of the ovary and oviduct to the cranial suspensory ligament likely triggered ovary folding. During this process, the rete ovarii (RO) elaborated into a convoluted tubular structure extending …


Glucagon Blockade Restores Functional Β-Cell Mass In Type 1 Diabetic Mice And Enhances Function Of Human Islets, May-Yun Wang, E Danielle Dean, Ezekiel Quittner-Strom, Yi Zhu, Kamrul H Chowdhury, Zhuzhen Zhang, Shangang Zhao, Na Li, Reshing Ye, Young Lee, Yiyi Zhang, Shiuhwei Chen, Xinxin Yu, Derek C Leonard, Greg Poffenberger, Alison Von Deylen, S Kay Mccorkle, Amnon Schlegel, Kyle W Sloop, Alexander M Efanov, Ruth E Gimeno, Philipp E Scherer, Alvin C Powers, Roger H Unger, William L Holland Mar 2021

Glucagon Blockade Restores Functional Β-Cell Mass In Type 1 Diabetic Mice And Enhances Function Of Human Islets, May-Yun Wang, E Danielle Dean, Ezekiel Quittner-Strom, Yi Zhu, Kamrul H Chowdhury, Zhuzhen Zhang, Shangang Zhao, Na Li, Reshing Ye, Young Lee, Yiyi Zhang, Shiuhwei Chen, Xinxin Yu, Derek C Leonard, Greg Poffenberger, Alison Von Deylen, S Kay Mccorkle, Amnon Schlegel, Kyle W Sloop, Alexander M Efanov, Ruth E Gimeno, Philipp E Scherer, Alvin C Powers, Roger H Unger, William L Holland

Faculty, Staff and Students Publications

We evaluated the potential for a monoclonal antibody antagonist of the glucagon receptor (Ab-4) to maintain glucose homeostasis in type 1 diabetic rodents. We noted durable and sustained improvements in glycemia which persist long after treatment withdrawal. Ab-4 promoted β-cell survival and enhanced the recovery of insulin+ islet mass with concomitant increases in circulating insulin and C peptide. In PANIC-ATTAC mice, an inducible model of β-cell apoptosis which allows for robust assessment of β-cell regeneration following caspase-8–induced diabetes, Ab-4 drove a 6.7-fold increase in β-cell mass. Lineage tracing suggests that this restoration of functional insulin-producing cells was at least partially …


Eosinophils Attenuate Hepatic Ischemia-Reperfusion Injury In Mice Through St2-Dependent Il-13 Production, Yaochun Wang, Yang Yang, Meng Wang, Shuhong Wang, Jong-Min Jeong, Long Xu, Yankai Wen, Christoph Emontzpohl, Constance Lynn Atkins, Kevin Duong, Nicolas F Moreno, Xiaoyi Yuan, David R Hall, Wasim Dar, Dechun Feng, Bin Gao, Yong Xu, Zoltan Czigany, Sean P Colgan, J Steve Bynon, Shizuo Akira, Jared M Brown, Holger K Eltzschig, Elizabeth A Jacobsen, Cynthia Ju Feb 2021

Eosinophils Attenuate Hepatic Ischemia-Reperfusion Injury In Mice Through St2-Dependent Il-13 Production, Yaochun Wang, Yang Yang, Meng Wang, Shuhong Wang, Jong-Min Jeong, Long Xu, Yankai Wen, Christoph Emontzpohl, Constance Lynn Atkins, Kevin Duong, Nicolas F Moreno, Xiaoyi Yuan, David R Hall, Wasim Dar, Dechun Feng, Bin Gao, Yong Xu, Zoltan Czigany, Sean P Colgan, J Steve Bynon, Shizuo Akira, Jared M Brown, Holger K Eltzschig, Elizabeth A Jacobsen, Cynthia Ju

Faculty, Staff and Students Publications

Eosinophils are a myeloid cell subpopulation that mediates type 2 T helper cell immune responses. Unexpectedly, we identified a rapid accumulation of eosinophils in 22 human liver grafts after hepatic transplantation. In contrast, no eosinophils were detectable in healthy liver tissues before transplantation. Studies with two genetic mouse models of eosinophil deficiency and a mouse model of antibody-mediated eosinophil depletion revealed exacerbated liver injury after hepatic ischemia and reperfusion. Adoptive transfer of bone marrow-derived eosinophils normalized liver injury of eosinophil-deficient mice and reduced hepatic ischemia and reperfusion injury in wild-type mice. Mechanistic studies combining genetic and adoptive transfer approaches identified …