Inactivated Rabies Virus Vectored Sars-Cov-2 Vaccine Prevents Disease In A Syrian Hamster Model.,
2021
Department of Microbiology and Immunology, Thomas Jefferson University, Philadelphia, Pennsylvania, United States of America
Inactivated Rabies Virus Vectored Sars-Cov-2 Vaccine Prevents Disease In A Syrian Hamster Model., Drishya Kurup, Delphine C Malherbe, Christoph Wirblich, Rachael Lambert, Adam J Ronk, Leila Zabihi Diba, Alexander Bukreyev, Matthias J. Schnell
Department of Microbiology and Immunology Faculty Papers
Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is an emergent coronavirus that has caused a worldwide pandemic. Although human disease is often asymptomatic, some develop severe illnesses such as pneumonia, respiratory failure, and death. There is an urgent need for a vaccine to prevent its rapid spread as asymptomatic infections accounting for up to 40% of transmission events. Here we further evaluated an inactivated rabies vectored SARS-CoV-2 S1 vaccine CORAVAX in a Syrian hamster model. CORAVAX adjuvanted with MPLA-AddaVax, a TRL4 agonist, induced high levels of neutralizing antibodies and generated a strong Th1-biased immune response. Vaccinated hamsters were protected from …
Integrative Network Analyses Of Transcriptomics Data Reveal Potential Drug Targets For Acute Radiation Syndrome,
2021
University of Nebraska - Lincoln
Integrative Network Analyses Of Transcriptomics Data Reveal Potential Drug Targets For Acute Radiation Syndrome, Robert Moore, Bhanwar Lal Puniya, Robert Powers, Chittibabu Guda, Kenneth W. Bayles, David B. Berkowitz, Tomáš Helikar
Journal Articles: Pathology and Microbiology
Recent political unrest has highlighted the importance of understanding the short- and long-term effects of gamma-radiation exposure on human health and survivability. In this regard, effective treatment for acute radiation syndrome (ARS) is a necessity in cases of nuclear disasters. Here, we propose 20 therapeutic targets for ARS identified using a systematic approach that integrates gene coexpression networks obtained under radiation treatment in humans and mice, drug databases, disease-gene association, radiation-induced differential gene expression, and literature mining. By selecting gene targets with existing drugs, we identified potential candidates for drug repurposing. Eight of these genes (BRD4, NFKBIA, CDKN1A, TFPI, MMP9, …
The Chromosome-Level Genome Of Dragon Fruit
Reveals Whole-Genome Duplication And
Chromosomal Co-Localization Of Betacyanin
Biosynthetic Genes,
2021
University of Nebraska - Lincoln
The Chromosome-Level Genome Of Dragon Fruit Reveals Whole-Genome Duplication And Chromosomal Co-Localization Of Betacyanin Biosynthetic Genes, Jinfang Zheng, Lyndel W. Meinhardt, Ricardo Goenaga, Dapeng Zhang, Yanbin Yin
Food for Health: Publications
Dragon fruits are tropical fruits economically important for agricultural industries. As members of the family of Cactaceae, they have evolved to adapt to the arid environment. Here we report the draft genome of Hylocereus undatus, commercially known as the white-fleshed dragon fruit. The chromosomal level genome assembly contains 11 longest scaffolds corresponding to the 11 chromosomes of H. undatus. Genome annotation of H. undatus found ~29,000 protein-coding genes, similar to Carnegiea gigantea (saguaro). Whole-genome duplication (WGD) analysis revealed a WGD event in the last common ancestor of Cactaceae followed by extensive genome rearrangements. The divergence …
3d Printing Of Human Microbiome Constituents To Understand Spatial Relationships And Shape Parameters In Bacteriology,
2021
University of Nebraska-Lincoln
3d Printing Of Human Microbiome Constituents To Understand Spatial Relationships And Shape Parameters In Bacteriology, Jacques Izard, Teklu Kuru Gerbaba, Shara R. P. Yumul
Department of Food Science and Technology: Faculty Publications
Effective laboratory and classroom demonstration of microbiome size and shape, diversity, and ecological relationships is hampered by a lack of high-resolution, easy-to-use, readily accessible physical or digital models for use in teaching. Three-dimensional (3D) representations are, overall, more effective in communicating visuospatial information, allowing for a better understanding of concepts not directly observable with the unaided eye. Published morphology descriptions and microscopy images were used as the basis for designing 3D digital models, scaled at 20,000×, using computer-aided design software (CAD) and generating printed models of bacteria on mass-market 3D printers. Sixteen models are presented, including rod-shaped, spiral, flask-like, vibroid, …
In Vivo Transplantation Of Human Intestinal Organoids Enhances Select Tight Junction Gene Expression,
2021
The Texas Medical Center Library
In Vivo Transplantation Of Human Intestinal Organoids Enhances Select Tight Junction Gene Expression, Mariaelena A Boyle, David J Sequeira, Eoin P Mcneill, Zachary K Criss, Noah F Shroyer, Allison L Speer
Faculty, Staff and Student Publications
BACKGROUND: Short bowel syndrome is a potentially fatal condition with inadequate management options. Tissue-engineered small intestine (TESI) is a promising solution, but confirmation of TESI function will be crucial before human application. We sought to define intestinal epithelial barrier function in human intestinal organoid (HIO)-derived TESI.
MATERIALS AND METHODS: HIOs were generated in vitro from human embryonic stem cells. After 1 mo, HIOs were collected for analysis or transplanted into the kidney capsule of immunocompromised mice. Transplanted HIOs (tHIOs) were harvested for analysis at 4 or 8 wk. Reverse transcription quantitative polymerase chain reaction and immunofluorescent staining were performed for …
Dysregulation Of Il-17/Il-22 Effector Functions In Blood And Gut Mucosal Gamma Delta T Cells Correlates With Increase In Circulating Leaky Gut And Inflammatory Markers During Cart-Treated Chronic Siv Infection In Macaques,
2021
Tulane National Primate Research Center
Dysregulation Of Il-17/Il-22 Effector Functions In Blood And Gut Mucosal Gamma Delta T Cells Correlates With Increase In Circulating Leaky Gut And Inflammatory Markers During Cart-Treated Chronic Siv Infection In Macaques, Edith M. Walker, Nadia Slisarenko, Giovanni L. Gerrets, Brooke F. Grasperge, Julie A. Mattison, Patricia J. Kissinger, David A. Welsh, Ronald S. Veazey, S. Michal Jazwinski, Namita Rout
School of Medicine Faculty Publications
HIV-associated inflammation has been implicated in the premature aging and increased risk of age-associated comorbidities in cART-treated individuals. However, the immune mechanisms underlying the chronic inflammatory state of cART-suppressed HIV infection remain unclear. Here, we investigated the role of γδT cells, a group of innate IL-17 producing T lymphocytes, in the development of systemic inflammation and leaky gut phenotype during cART-suppressed SIV infection of macaques. Plasma levels of inflammatory mediators, intestinal epithelial barrier disruption (IEBD) and microbial translocation (MT) biomarkers, and Th1/Th17-type cytokine functions were longitudinally assessed in blood and gut mucosa of SIV-infected, cART-suppressed macaques. Among the various gut …
When The Pandemic Opts For The Lockdown: Secretion System Evolution In The Cholera Bacterium,
2021
CUNY City College
When The Pandemic Opts For The Lockdown: Secretion System Evolution In The Cholera Bacterium, Francis J. Santoriello, Stefan Pukatzki
Publications and Research
Vibrio cholerae, the causative agent of the diarrheal disease cholera, is a microbe capable of inhabiting two different ecosystems: chitinous surfaces in brackish, estuarine waters and the epithelial lining of the human gastrointestinal tract. V. cholerae defends against competitive microorganisms with a contact-dependent, contractile killing machine called the type VI secretion system (T6SS) in each of these niches. The T6SS resembles an inverted T4 bacteriophage tail and is used to deliver toxic effector proteins into neighboring cells. Pandemic strains of V. cholerae encode a unique set of T6SS effector proteins, which may play a role in pathogenesis or pandemic …
Characterization Of Two Zygnema Strains (Zygnema Circumcarinatum Sag 698-1a And Sag 698-1b) And A Rapid Method To Estimate Nuclear Genome Size Of Zygnematophycean
Green Algae,
2021
University of Nebraska-Lincoln
Characterization Of Two Zygnema Strains (Zygnema Circumcarinatum Sag 698-1a And Sag 698-1b) And A Rapid Method To Estimate Nuclear Genome Size Of Zygnematophycean Green Algae, Xuehuan Feng, Andreas Holzinger, Charlotte Permann, Dirk Anderson, Yanbin Yin
Food for Health: Publications
Zygnematophyceae green algae (ZGA) have been shown to be the closest relatives of land plants. Three nuclear genomes (Spirogloea muscicola, Mesotaenium endlicherianum, and Penium margaritaceum) of ZGA have been recently published, and more genomes are underway. Here we analyzed two Zygnema circumcarinatum strains SAG 698-1a (mating +) and SAG 698-1b (mating −) and found distinct cell sizes and other morphological differences. The molecular identities of the two strains were further investigated by sequencing their 18S rRNA, psaA and rbcL genes. These marker genes of SAG 698-1a were surprisingly much more similar to Z. cylindricum (SAG 698-2) than to SAG 698-1b. …
Characterization Of Two Zygnema
Strains (Zygnema Circumcarinatum
Sag 698-1a And Sag 698-1b) And A
Rapid Method To Estimate Nuclear
Genome Size Of Zygnematophycean
Green Algae,
2021
University of Nebraska-Lincoln
Characterization Of Two Zygnema Strains (Zygnema Circumcarinatum Sag 698-1a And Sag 698-1b) And A Rapid Method To Estimate Nuclear Genome Size Of Zygnematophycean Green Algae, Xuehuan Feng, Andreas Holzinger, Charlotte Permann, Dirk Anderson, Yanbin Yin
Food for Health: Publications
Zygnematophyceae green algae (ZGA) have been shown to be the closest relatives of land plants. Three nuclear genomes (Spirogloea muscicola, Mesotaenium endlicherianum, and Penium margaritaceum) of ZGA have been recently published, and more genomes are underway. Here we analyzed two Zygnema circumcarinatum strains SAG 698-1a (mating +) and SAG 698-1b (mating −) and found distinct cell sizes and other morphological differences. The molecular identities of the two strains were further investigated by sequencing their 18S rRNA, psaA and rbcL genes. These marker genes of SAG 698-1a were surprisingly much more similar to Z. cylindricum (SAG 698-2) than to SAG 698-1b. …
Characterization Of Two Zygnema
Strains (Zygnema Circumcarinatum
Sag 698-1a And Sag 698-1b) And A
Rapid Method To Estimate Nuclear
Genome Size Of Zygnematophycean
Green Algae,
2021
University of Nebraska-Lincoln
Characterization Of Two Zygnema Strains (Zygnema Circumcarinatum Sag 698-1a And Sag 698-1b) And A Rapid Method To Estimate Nuclear Genome Size Of Zygnematophycean Green Algae, Xuehuan Feng, Andreas Holzinger, Charlotte Permann, Dirk Anderson, Yanbin Yin
Food for Health: Publications
Zygnematophyceae green algae (ZGA) have been shown to be the closest relatives of land plants. Three nuclear genomes (Spirogloea muscicola, Mesotaenium endlicherianum, and Penium margaritaceum) of ZGA have been recently published, and more genomes are underway. Here we analyzed two Zygnema circumcarinatum strains SAG 698-1a (mating +) and SAG 698-1b (mating −) and found distinct cell sizes and other morphological differences. The molecular identities of the two strains were further investigated by sequencing their 18S rRNA, psaA and rbcL genes. These marker genes of SAG 698-1a were surprisingly much more similar to Z. cylindricum (SAG 698-2) than to SAG 698-1b. …
Piglet Immunization With A Spike Subunit Vaccine Enhances Disease By Porcine Epidemic Diarrhea Virus,
2021
University of Kentucky
Piglet Immunization With A Spike Subunit Vaccine Enhances Disease By Porcine Epidemic Diarrhea Virus, Jieshi Yu, Chithra Sreenivasan, Tirth Uprety, Rongyuan Gao, Chen Huang, Ella J. Lee, Steven Lawson, Julie Nelson, Jane Christopher-Hennings, Radhey S. Kaushik, Eric Nelson, Diego G. Diel, Ben M. Hause, Feng Li, Dan Wang
Maxwell H. Gluck Equine Research Center Faculty Publications
Immunization with an insect cell lysate/baculovirus mixture containing recombinant porcine epidemic diarrhea virus (PEDV) spike protein induced high levels of neutralizing antibodies in both mice and piglets. However, immunization of piglets with this vaccine resulted in enhancement of disease symptoms and virus replication in vaccine recipients exposed to PEDV challenge. Thus, these observations demonstrate a previously unrecognized challenge of PEDV vaccine research, which has important implications for coronavirus vaccine development.
Streptococcus Cristatus – An Oral Bacterium Causing A Case Of Mild Bacteremia And “Possible Endocarditis”,
2021
Wayne State University
Streptococcus Cristatus – An Oral Bacterium Causing A Case Of Mild Bacteremia And “Possible Endocarditis”, Camilo Guzman, Adi Zaclli, John Molinari
Medical Student Research Symposium
Streptococcus cristatus is a member of the Mitis streptococcus group. Like other members of this group, it resides in mucosal surfaces of the oral cavity but rarely causes disease. We present a case of S. cristatus bacteremia and “possible endocarditis” (per the modified Duke criteria) in a 59-year-old male suffering from end- stage cryptogenic cirrhosis. To date, it is the fifth reported case of disease caused by the microbe, and the first adult case in which S. cristatus was the sole microbe identified. Our patient had a history of dental caries and poor dentition, which were likely the source of …
Hematopoietic Cell-Mediated Dissemination Of Murine Cytomegalovirus Is Regulated By Nk Cells And Immune Evasion.,
2021
Department of Microbiology and Immunology, Sidney Kimmel Medical College, Sidney Kimmel Cancer Center, Thomas Jefferson University, Philadelphia, PA, United States
Hematopoietic Cell-Mediated Dissemination Of Murine Cytomegalovirus Is Regulated By Nk Cells And Immune Evasion., Shunchuan Zhang, Lauren E Springer, Han-Zhi Rao, Renee G Espinosa Trethewy, Lindsey M Bishop, Meaghan H Hancock, Finn Grey, Christopher M. Snyder
Department of Microbiology and Immunology Faculty Papers
Cytomegalovirus (CMV) causes clinically important diseases in immune compromised and immune immature individuals. Based largely on work in the mouse model of murine (M)CMV, there is a consensus that myeloid cells are important for disseminating CMV from the site of infection. In theory, such dissemination should expose CMV to cell-mediated immunity and thus necessitate evasion of T cells and NK cells. However, this hypothesis remains untested. We constructed a recombinant MCMV encoding target sites for the hematopoietic specific miRNA miR-142-3p in the essential viral gene IE3. This virus disseminated poorly to the salivary gland following intranasal or footpad infections but …
Dysregulated Anti-Viral Innate Immune Cascade During Aging.,
2021
Department of Microbiology and Immunology, Thomas Jefferson University, Philadelphia, PA 19107, United States
Dysregulated Anti-Viral Innate Immune Cascade During Aging., Colby Stotesbury, Luis J. Sigal
Department of Microbiology and Immunology Faculty Papers
Aging predisposes to increased morbidity and lethality to infectious diseases, which becomes apparent with the high mortality rates suffered by older people when infected with influenza virus or severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). At the root of this increased susceptibility to infections, is the wide-spread deterioration of the immune system.
Onchocerca Volvulus Bivalent Subunit Vaccine Induces Protective Immunity In Genetically Diverse Collaborative Cross Recombinant Inbred Intercross Mice,
2021
Thomas Jefferson University
Onchocerca Volvulus Bivalent Subunit Vaccine Induces Protective Immunity In Genetically Diverse Collaborative Cross Recombinant Inbred Intercross Mice, Nathan M Ryan, Jessica A. Hess Ligas, Fernando Pardo-Manuel De Villena, Benjamin E Leiby, Ayako Shimada, Lei Yu, Amir Yarmahmoodi, Nikolai Petrovsky, Bin Zhan, Maria Elena Bottazzi, Benjamin L Makepeace, Sara Lustigman, David Abraham
Department of Microbiology and Immunology Faculty Papers
This study tests the hypothesis that an Onchocerca volvulus vaccine, consisting of two recombinant antigens (Ov-103 and Ov-RAL-2) formulated with the combination-adjuvant Advax-2, can induce protective immunity in genetically diverse Collaborative Cross recombinant inbred intercross mice (CC-RIX). CC-RIX lines were immunized with the O. volvulus vaccine and challenged with third-stage larvae. Equal and significant reductions in parasite survival were observed in 7 of 8 CC-RIX lines. Innate protective immunity was seen in the single CC-RIX line that did not demonstrate protective adaptive immunity. Analysis of a wide array of immune factors showed that each line of mice have a unique …
Manganese Exposure In Juvenile C57bl/6 Mice Increases Glial Inflammatory Responses In The Substantia Nigra Following Infection With H1n1 Influenza Virus.,
2021
Department of Environmental and Radiological Health Sciences, Colorado State University, Fort Collins, CO, United States
Manganese Exposure In Juvenile C57bl/6 Mice Increases Glial Inflammatory Responses In The Substantia Nigra Following Infection With H1n1 Influenza Virus., Collin M Bantle, C Tenley French, Jason E Cummings, Shankar Sadasivan, Kevin Tran, Richard A Slayden, Richard Jay Smeyne, Ronald B Tjalkens
Farber Institute for Neuroscience Faculty Papers
Infection with Influenza A virus can lead to the development of encephalitis and subsequent neurological deficits ranging from headaches to neurodegeneration. Post-encephalitic parkinsonism has been reported in surviving patients of H1N1 infections, but not all cases of encephalitic H1N1 infection present with these neurological symptoms, suggesting that interactions with an environmental neurotoxin could promote more severe neurological damage. The heavy metal, manganese (Mn), is a potential interacting factor with H1N1 because excessive exposure early in life can induce long-lasting effects on neurological function through inflammatory activation of glial cells. In the current study, we used a two-hit model of neurotoxin-pathogen …
Targeting Parp-1 With Metronomic Therapy Modulates Mdsc Suppressive Function And Enhances Anti-Pd-1 Immunotherapy In Colon Cancer,
2021
LSU Health Sciences Center - New Orleans
Targeting Parp-1 With Metronomic Therapy Modulates Mdsc Suppressive Function And Enhances Anti-Pd-1 Immunotherapy In Colon Cancer, Mohamed A. Ghonim, Salome V. Ibba, Abdelmetalab F. Tarhuni, Youssef Errami, Hanh H. Luu, Matthew J. Dean, Ali H. El-Bahrawy, Dorota Wyczechowska, Ilyes A. Benslimane, Luis Del Valle, Amir A. Al-Khami, Augusto C. Ochoa, A Hamid Boulares
School of Graduate Studies Faculty Publications
BACKGROUND: Poly(ADP-ribose) polymerase (PARP) inhibitors (eg, olaparib) are effective against BRCA-mutated cancers at/near maximum tolerated doses by trapping PARP-1 on damaged chromatin, benefitting only small patient proportions. The benefits of targeting non-DNA repair aspects of PARP with metronomic doses remain unexplored. METHODS: Colon epithelial cells or mouse or human bone marrow (BM)-derived-myeloid-derived suppressor cells (MDSCs) were stimulated to assess the effect of partial PARP-1 inhibition on inflammatory gene expression or immune suppression. Mice treated with azoxymethane/four dextran-sulfate-sodium cycles or mice bred into PARP-1 or treated with olaparib were used to examine the role of PARP-1 in colitis-induced or spontaneous colon …
Genetic Transformation In Cryptococcus Species,
2021
LSU Health Sciences Center - New Orleans
Genetic Transformation In Cryptococcus Species, Ping Wang
School of Medicine Faculty Publications
Genetic transformation plays an imperative role in our understanding of the biology in unicellular yeasts and filamentous fungi, such as Saccharomyces cerevisiae, Aspergillus nidulans, Cryphonectria parasitica, and Magnaporthe oryzae. It also helps to understand the virulence and drug resistance mechanisms of the pathogenic fungus Cryptococcus that causes cryptococcosis in health and immunocompromised individuals. Since the first attempt at DNA transformation in this fungus by Edman in 1992, various methods and techniques have been developed to introduce DNA into this organism and improve the efficiency of homology-mediated gene disruption. There have been many excellent summaries or reviews covering the subject. Here …
Balancing Of The Mitotic Exit Network And Cell Wall Integrity Signaling Governs The Development And Pathogenicity In Magnaporthe Oryzae,
2021
Nanjing Agricultural University
Balancing Of The Mitotic Exit Network And Cell Wall Integrity Signaling Governs The Development And Pathogenicity In Magnaporthe Oryzae, Wanzhen Feng, Ziyi Yin, Haowen Wu, Peng Liu, Xinyu Liu, Muxing Liu, Rui Yu, Chuyun Gao, Haifeng Zhang, Xiaobo Zheng, Ping Wang, Zhengguang Zhang
School of Medicine Faculty Publications
The fungal cell wall plays an essential role in maintaining cell morphology, transmitting external signals, controlling cell growth, and even virulence. Relaxation and irreversible stretching of the cell wall are the prerequisites of cell division and development, but they also inevitably cause cell wall stress. Both Mitotic Exit Network (MEN) and Cell Wall Integrity (CWI) are signaling pathways that govern cell division and cell stress response, respectively, how these pathways cross talk to govern and coordinate cellular growth, development, and pathogenicity remains not fully understood. We have identified MoSep1, MoDbf2, and MoMob1 as the conserved components of MEN from the …
The Evolution And Future Of Targeted Cancer Therapy: From Nanoparticles, Oncolytic Viruses, And Oncolytic Bacteria To The Treatment Of Solid Tumors,
2021
Rocky Vista University
The Evolution And Future Of Targeted Cancer Therapy: From Nanoparticles, Oncolytic Viruses, And Oncolytic Bacteria To The Treatment Of Solid Tumors, Kyle M. Pierce, William R. Miklavcic, Kyle P. Cook, Mikayla Sweitzer Hennen, Kenneth W. Bayles, Michael A. Hollingsworth, Amanda E. Brooks, Jessica E. Pullan, Kaitlin M. Dailey
Journal Articles: Pathology and Microbiology
While many classes of chemotherapeutic agents exist to treat solid tumors, few can generate a lasting response without substantial off-target toxicity despite significant scientific advancements and investments. In this review, the paths of development for nanoparticles, oncolytic viruses, and oncolytic bacteria over the last 20 years of research towards clinical translation and acceptance as novel cancer therapeutics are compared. Novel nanoparticle, oncolytic virus, and oncolytic bacteria therapies all start with a common goal of accomplishing therapeutic drug activity or delivery to a specific site while avoiding off-target effects, with overlapping methodology between all three modalities. Indeed, the degree of overlap …
