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The Zebrafish As A Potential Model For Vaccine And Adjuvant Development, Peter J Hotez, Maria Elena Bottazzi, Nelufa Yesmin Islam, Jungsoon Lee, Jeroen Pollet, Cristina Poveda, Ulrich Strych, Syamala Rani Thimmiraju, Nestor L Uzcategui, Leroy Versteeg, Daniel Gorelick Jan 2024

The Zebrafish As A Potential Model For Vaccine And Adjuvant Development, Peter J Hotez, Maria Elena Bottazzi, Nelufa Yesmin Islam, Jungsoon Lee, Jeroen Pollet, Cristina Poveda, Ulrich Strych, Syamala Rani Thimmiraju, Nestor L Uzcategui, Leroy Versteeg, Daniel Gorelick

Faculty, Staff and Students Publications

Introduction: Zebrafishes represent a proven model for human diseases and systems biology, exhibiting physiological and genetic similarities and having innate and adaptive immune systems. However, they are underexplored for human vaccinology, vaccine development, and testing. Here we summarize gaps and challenges.

Areas covered: Zebrafish models have four potential applications: 1) Vaccine safety: The past successes in using zebrafishes to test xenobiotics could extend to vaccine and adjuvant formulations for general safety or target organs due to the zebrafish embryos' optical transparency. 2) Innate immunity: The zebrafish offers refined ways to examine vaccine effects through signaling via Toll-like or NOD-like receptors …


Liver Directed Adeno-Associated Viral Vectors To Treat Metabolic Disease, Marcel A Chuecos, William R Lagor Jan 2024

Liver Directed Adeno-Associated Viral Vectors To Treat Metabolic Disease, Marcel A Chuecos, William R Lagor

Faculty, Staff and Students Publications

The liver is the metabolic center of the body and an ideal target for gene therapy of inherited metabolic disorders (IMDs). Adeno-associated viral (AAV) vectors can deliver transgenes to the liver with high efficiency and specificity and a favorable safety profile. Recombinant AAV vectors contain only the transgene cassette, and their payload is converted to non-integrating circular double-stranded DNA episomes, which can provide stable expression from months to years. Insights from cellular studies and preclinical animal models have provided valuable information about AAV capsid serotypes with a high liver tropism. These vectors have been applied successfully in the clinic, particularly …


The Mars Complex: A Critical Mediator Of Immune Regulation And Homeostasis, Sharon Bright Amanya, Damilola Oyewole-Said, Keenan J Ernste, Nalini Bisht, Arnav Murthy, Jonathan Vazquez-Perez, Vanaja Konduri, William K Decker Jan 2024

The Mars Complex: A Critical Mediator Of Immune Regulation And Homeostasis, Sharon Bright Amanya, Damilola Oyewole-Said, Keenan J Ernste, Nalini Bisht, Arnav Murthy, Jonathan Vazquez-Perez, Vanaja Konduri, William K Decker

Faculty, Staff and Students Publications

Over the course of evolution, many proteins have undergone adaptive structural changes to meet the increasing homeostatic regulatory demands of multicellularity. Aminoacyl tRNA synthetases (aaRS), enzymes that catalyze the attachment of each amino acid to its cognate tRNA, are such proteins that have acquired new domains and motifs that enable non-canonical functions. Through these new domains and motifs, aaRS can assemble into large, multi-subunit complexes that enhance the efficiency of many biological functions. Moreover, because the complexity of multi-aminoacyl tRNA synthetase (mARS) complexes increases with the corresponding complexity of higher eukaryotes, a contribution to regulation of homeostatic functions in multicellular …


Cutting Edge Of Genetically Modified Pigs Targeting Complement Activation For Xenotransplantation, Qin Sun, Si-Yuan Song, Jiabao Ma, Danni Li, Yiping Wang, Zhengteng Yang, Yi Wang Jan 2024

Cutting Edge Of Genetically Modified Pigs Targeting Complement Activation For Xenotransplantation, Qin Sun, Si-Yuan Song, Jiabao Ma, Danni Li, Yiping Wang, Zhengteng Yang, Yi Wang

Faculty, Staff and Students Publications

In the quest to address the critical shortage of donor organs for transplantation, xenotransplantation stands out as a promising solution, offering a more abundant supply of donor organs. Yet, its widespread clinical adoption remains hindered by significant challenges, chief among them being immunological rejection. Central to this issue is the role of the complement system, an essential component of innate immunity that frequently triggers acute and chronic rejection through hyperacute immune responses. Such responses can rapidly lead to transplant embolism, compromising the function of the transplanted organ and ultimately causing graft failure. This review delves into three key areas of …


Branched-Chain Amino Acid Accumulation Fuels The Senescence-Associated Secretory Phenotype, Yaosi Liang, Christopher Pan, Tao Yin, Lu Wang, Xia Gao, Ergang Wang, Holly Quang, De Huang, Lianmei Tan, Kun Xiang, Yu Wang, Peter B Alexander, Qi-Jing Li, Tso-Pang Yao, Zhao Zhang, Xiao-Fan Wang Jan 2024

Branched-Chain Amino Acid Accumulation Fuels The Senescence-Associated Secretory Phenotype, Yaosi Liang, Christopher Pan, Tao Yin, Lu Wang, Xia Gao, Ergang Wang, Holly Quang, De Huang, Lianmei Tan, Kun Xiang, Yu Wang, Peter B Alexander, Qi-Jing Li, Tso-Pang Yao, Zhao Zhang, Xiao-Fan Wang

Faculty, Staff and Students Publications

The essential branched-chain amino acids (BCAAs) leucine, isoleucine, and valine play critical roles in protein synthesis and energy metabolism. Despite their widespread use as nutritional supplements, BCAAs' full effects on mammalian physiology remain uncertain due to the complexities of BCAA metabolic regulation. Here a novel mechanism linking intrinsic alterations in BCAA metabolism is identified to cellular senescence and the senescence-associated secretory phenotype (SASP), both of which contribute to organismal aging and inflammation-related diseases. Altered BCAA metabolism driving the SASP is mediated by robust activation of the BCAA transporters Solute Carrier Family 6 Members 14 and 15 as well as downregulation …


Optimizing Immunogenicity And Product Presentation Of A Sars-Cov-2 Subunit Vaccine Composition: Effects Of Delivery Route, Heterologous Regimens With Self-Amplifying Rna Vaccines, And Lyophilization, William R Lykins, Jeroen Pollet, Jessica A White, Brian Keegan, Leroy Versteeg, Ulrich Strych, Wen-Hsiang Chen, Raodoh Mohamath, Gabi Ramer-Denisoff, Sierra Reed, Christina Renshaw, Samuel Beaver, Alana Gerhardt, Emily A Voigt, Mark A Tomai, Robert Sitrin, Robert K M Choy, Frederick J Cassels, Peter J Hotez, Maria Elena Bottazzi, Christopher B Fox Jan 2024

Optimizing Immunogenicity And Product Presentation Of A Sars-Cov-2 Subunit Vaccine Composition: Effects Of Delivery Route, Heterologous Regimens With Self-Amplifying Rna Vaccines, And Lyophilization, William R Lykins, Jeroen Pollet, Jessica A White, Brian Keegan, Leroy Versteeg, Ulrich Strych, Wen-Hsiang Chen, Raodoh Mohamath, Gabi Ramer-Denisoff, Sierra Reed, Christina Renshaw, Samuel Beaver, Alana Gerhardt, Emily A Voigt, Mark A Tomai, Robert Sitrin, Robert K M Choy, Frederick J Cassels, Peter J Hotez, Maria Elena Bottazzi, Christopher B Fox

Faculty, Staff and Students Publications

INTRODUCTION: Dozens of vaccines have been approved or authorized internationally in response to the ongoing SARS-CoV-2 pandemic, covering a range of modalities and routes of delivery. For example, mucosal delivery of vaccines via the intranasal (i.n.) route has been shown to improve protective mucosal responses in comparison to intramuscular (i.m.) delivery. As we gain knowledge of the limitations of existing vaccines, it is of interest to understand if changes in product presentation or combinations of multiple vaccine modalities can further improve immunological outcomes.

METHODS: We investigated a commercial-stage SARS-CoV-2 receptor binding domain (RBD) antigen adjuvanted with a clinical-stage TLR-7/8 agonist …


Crystal Structure Of Trichinella Spiralis Calreticulin And The Structural Basis Of Its Complement Evasion Mechanism Involving C1q, Zhihui Jia, Wen Yu, Jingmo Li, Mingming Zhang, Bin Zhan, Liming Yan, Zhenhua Ming, Yuli Cheng, Xiaolin Tian, Shuai Shao, Jingjing Huang, Xinping Zhu Jan 2024

Crystal Structure Of Trichinella Spiralis Calreticulin And The Structural Basis Of Its Complement Evasion Mechanism Involving C1q, Zhihui Jia, Wen Yu, Jingmo Li, Mingming Zhang, Bin Zhan, Liming Yan, Zhenhua Ming, Yuli Cheng, Xiaolin Tian, Shuai Shao, Jingjing Huang, Xinping Zhu

Faculty, Staff and Students Publications

Helminths produce calreticulin (CRT) to immunomodulate the host immune system as a survival strategy. However, the structure of helminth-derived CRT and the structural basis of the immune evasion process remains unclarified. Previous study found that the tissue-dwelling helminth Trichinella spiralis produces calreticulin (TsCRT), which binds C1q to inhibit activation of the complement classical pathway. Here, we used x-ray crystallography to resolve the structure of truncated TsCRT (TsCRTΔ), the first structure of helminth-derived CRT. TsCRTΔ was observed to share the same binding region on C1q with IgG based on the structure and molecular docking, which explains the inhibitory effect of TsCRT …


Green Synthesis Of Zinc Oxide Nanoparticles From Althaea Officinalis Flower Extract Coated With Chitosan For Potential Healing Effects On Diabetic Wounds By Inhibiting Tnf-Α And Il-6/Il-1Β Signaling Pathways, Sammar Fathy Elhabal, Nashwa Abdelaal, Saeed Abdul Kareem Saeed Al-Zuhairy, Mohamed Fathi Mohamed Elrefai, Ahmed Mohsen Elsaid Hamdan, Mohamed Mansour Khalifa, Sandra Hababeh, Mohammad Ahmad Khasawneh, Gehad M Khamis, Jakline Nelson, Passant M Mohie, Rania A Gad, Amira Rizk, Soad L Kabil, Mohamed Kandeel El-Ashery, Bhaskara R Jasti, Nahla A Elzohairy, Tayseer Elnawawy, Fatma E Hassan, Mohamed A El-Nabarawi Jan 2024

Green Synthesis Of Zinc Oxide Nanoparticles From Althaea Officinalis Flower Extract Coated With Chitosan For Potential Healing Effects On Diabetic Wounds By Inhibiting Tnf-Α And Il-6/Il-1Β Signaling Pathways, Sammar Fathy Elhabal, Nashwa Abdelaal, Saeed Abdul Kareem Saeed Al-Zuhairy, Mohamed Fathi Mohamed Elrefai, Ahmed Mohsen Elsaid Hamdan, Mohamed Mansour Khalifa, Sandra Hababeh, Mohammad Ahmad Khasawneh, Gehad M Khamis, Jakline Nelson, Passant M Mohie, Rania A Gad, Amira Rizk, Soad L Kabil, Mohamed Kandeel El-Ashery, Bhaskara R Jasti, Nahla A Elzohairy, Tayseer Elnawawy, Fatma E Hassan, Mohamed A El-Nabarawi

Faculty, Staff and Students Publications

BACKGROUND: Diabetes Mellitus is a multisystem chronic pandemic, wound inflammation, and healing are still major issues for diabetic patients who may suffer from ulcers, gangrene, and other wounds from uncontrolled chronic hyperglycemia.

METHOD AND RESULTS: First, develop eco-friendly green Zinc Oxide Nanoparticles (ZnO-NPs) and incorporate them into a 2% chitosan (CS) gel. In-vitro study performed by UV-visible spectrum analysis showed a sharp peak at 390 nm, and Energy-dispersive X-ray (EDX) spectrometry showed a peak of zinc and oxygen. Besides, Fourier transforms infrared (FTIR) was used to qualitatively validate biosynthesized ZnO-NPs, and transmission electron microscope (TEM) showed spherical nanoparticles with mean …


Self-Rectifying Magnetoelectric Metamaterials For Remote Neural Stimulation And Motor Function Restoration, Joshua C Chen, Gauri Bhave, Fatima Alrashdan, Abdeali Dhuliyawalla, Katie J Hogan, Antonios G Mikos, Jacob T Robinson Jan 2024

Self-Rectifying Magnetoelectric Metamaterials For Remote Neural Stimulation And Motor Function Restoration, Joshua C Chen, Gauri Bhave, Fatima Alrashdan, Abdeali Dhuliyawalla, Katie J Hogan, Antonios G Mikos, Jacob T Robinson

Faculty, Staff and Students Publications

Magnetoelectric materials convert magnetic fields into electric fields. These materials are often used in wireless electronic and biomedical applications. For example, magnetoelectrics could enable the remote stimulation of neural tissue, but the optimal resonance frequencies are typically too high to stimulate neural activity. Here we describe a self-rectifying magnetoelectric metamaterial for a precisely timed neural stimulation. This metamaterial relies on nonlinear charge transport across semiconductor layers that allow the material to generate a steady bias voltage in the presence of an alternating magnetic field. We generate arbitrary pulse sequences with time-averaged voltage biases in excess of 2 V. As a …


Generation And Characterization Of In Vitro Transcribed Mrna, Cristina Poveda, Yi-Lin Chen, Ulrich Strych Jan 2024

Generation And Characterization Of In Vitro Transcribed Mrna, Cristina Poveda, Yi-Lin Chen, Ulrich Strych

Faculty, Staff and Students Publications

Here we describe the in vitro preparation of mRNA from DNA templates, including setting up the transcription reaction, mRNA capping, and mRNA labeling. We then describe methods used for mRNA characterization, including UV and fluorescence spectrophotometry, as well as gel electrophoresis. Moreover, characterization of the in vitro transcribed RNA using the Bioanalyzer instrument is described, allowing a higher resolution analysis of the target molecules. For the in vitro testing of the mRNA molecules, we include protocols for the transfection of various primary cell cultures and the confirmation of translation by intracellular staining and western blotting.


The Next-Generation Dna Vaccine Platforms And Delivery Systems: Advances, Challenges And Prospects, Bowen Lu, Jing Ming Lim, Boyue Yu, Siyuan Song, Praveen Neeli, Navid Sobhani, Pavithra K, Srinivasa Reddy Bonam, Rajendra Kurapati, Junnian Zheng, Dafei Chai Jan 2024

The Next-Generation Dna Vaccine Platforms And Delivery Systems: Advances, Challenges And Prospects, Bowen Lu, Jing Ming Lim, Boyue Yu, Siyuan Song, Praveen Neeli, Navid Sobhani, Pavithra K, Srinivasa Reddy Bonam, Rajendra Kurapati, Junnian Zheng, Dafei Chai

Faculty, Staff and Students Publications

Vaccines have proven effective in the treatment and prevention of numerous diseases. However, traditional attenuated and inactivated vaccines suffer from certain drawbacks such as complex preparation, limited efficacy, potential risks and others. These limitations restrict their widespread use, especially in the face of an increasingly diverse range of diseases. With the ongoing advancements in genetic engineering vaccines, DNA vaccines have emerged as a highly promising approach in the treatment of both genetic diseases and acquired diseases. While several DNA vaccines have demonstrated substantial success in animal models of diseases, certain challenges need to be addressed before application in human subjects. …


Select Gut Microbiota Impede Rotavirus Vaccine Efficacy, Vu L Ngo, Yanling Wang, Yadong Wang, Zhenda Shi, Robert Britton, Jun Zou, Sasirekha Ramani, Baoming Jiang, Andrew T Gewirtz Jan 2024

Select Gut Microbiota Impede Rotavirus Vaccine Efficacy, Vu L Ngo, Yanling Wang, Yadong Wang, Zhenda Shi, Robert Britton, Jun Zou, Sasirekha Ramani, Baoming Jiang, Andrew T Gewirtz

Faculty, Staff and Students Publications

BACKGROUND & AIMS: The protection provided by rotavirus (RV) vaccines is highly heterogeneous among individuals. We hypothesized that microbiota composition might influence RV vaccine efficacy.

METHODS: First, we examined the potential of segmented filamentous bacteria (SFB) colonization to influence RV vaccine efficacy in mice. Next, we probed the influence of human microbiomes on RV vaccination via administering mice fecal microbial transplants (FMTs) from children with robust or minimal RV vaccine responsiveness. Post-FMT, mice were subjected to RV vaccination followed by RV challenge.

RESULTS: SFB colonization induced a phenotype that was reminiscent of RV vaccine failure (ie, failure to generate RV …


Siglec15, Negatively Correlated With Pd-L1 In Hcc, Could Induce Cd8+ T Cell Apoptosis To Promote Immune Evasion, Zheng Chen, Mincheng Yu, Bo Zhang, Lei Jin, Qiang Yu, Shuang Liu, Binghai Zhou, Jiuliang Yan, Wentao Zhang, Xiaoqiang Li, Yongfeng Xu, Yongsheng Xiao, Jian Zhou, Jia Fan, Mien-Chie Hung, Qinghai Ye, Hui Li, Lei Guo Jan 2024

Siglec15, Negatively Correlated With Pd-L1 In Hcc, Could Induce Cd8+ T Cell Apoptosis To Promote Immune Evasion, Zheng Chen, Mincheng Yu, Bo Zhang, Lei Jin, Qiang Yu, Shuang Liu, Binghai Zhou, Jiuliang Yan, Wentao Zhang, Xiaoqiang Li, Yongfeng Xu, Yongsheng Xiao, Jian Zhou, Jia Fan, Mien-Chie Hung, Qinghai Ye, Hui Li, Lei Guo

Faculty, Staff and Student Publications

Functional roles of SIGLEC15 in hepatocellular carcinoma (HCC) were not clear, which was recently found to be an immune inhibitor with similar structure of inhibitory B7 family members. SIGLEC15 expression in HCC was explored in public databases and further examined by PCR analysis. SIGLEC15 and PD-L1 expression patterns were examined in HCC samples through immunohistochemistry. SIGLEC15 expression was knocked-down or over-expressed in HCC cell lines, and CCK8 tests were used to examine cell proliferative ability in vitro. Influences of SIGLEC15 expression on tumor growth were examined in immune deficient and immunocompetent mice respectively. Co-culture system of HCC cell lines and …


Β2-Glycoprotein I Promotes The Clearance Of Circulating Mitochondria, Swapan Kumar Dasgupta, Jahnavi Gollamudi, Stefanie Rivera, Ross A Poche, Rolando E Rumbaut, Perumal Thiagarajan Jan 2024

Β2-Glycoprotein I Promotes The Clearance Of Circulating Mitochondria, Swapan Kumar Dasgupta, Jahnavi Gollamudi, Stefanie Rivera, Ross A Poche, Rolando E Rumbaut, Perumal Thiagarajan

Faculty, Staff and Students Publications

β2-glycoprotein I (β2-Gp1) is a cardiolipin-binding plasma glycoprotein. It is evolutionarily conserved from invertebrates, and cardiolipin-bound β2-Gp1 is a major target of antiphospholipid antibodies seen in autoimmune disorders. Cardiolipin is almost exclusively present in mitochondria, and mitochondria are present in circulating blood. We show that β2-Gp1 binds to cell-free mitochondria (CFM) in the circulation and promotes its phagocytosis by macrophages at physiological plasma concentrations. Exogenous CFM had a short circulation time of less than 10 minutes in mice. Following infusion of CFM, β2-Gp1-deficient mice had significantly higher levels of transfused mitochondria at 5 minutes (9.9 ± 6.4 pg/ml versus 4.0 …


Comparative Exploration Of Mammalian Deafness Gene Homologues In The Drosophila Auditory Organ Shows Genetic Correlation Between Insect And Vertebrate Hearing, Daniel C Sutton, Jonathan C Andrews, Dylan M Dolezal, Ye Jin Park, Hongjie Li, Daniel F Eberl, Shinya Yamamoto, Andrew K Groves Jan 2024

Comparative Exploration Of Mammalian Deafness Gene Homologues In The Drosophila Auditory Organ Shows Genetic Correlation Between Insect And Vertebrate Hearing, Daniel C Sutton, Jonathan C Andrews, Dylan M Dolezal, Ye Jin Park, Hongjie Li, Daniel F Eberl, Shinya Yamamoto, Andrew K Groves

Faculty, Staff and Students Publications

Johnston's organ, the Drosophila auditory organ, is anatomically very different from the mammalian organ of Corti. However, recent evidence indicates significant cellular and molecular similarities exist between vertebrate and invertebrate hearing, suggesting that Drosophila may be a useful platform to determine the function of the many mammalian deafness genes whose underlying biological mechanisms are poorly characterized. Our goal was a comprehensive screen of all known orthologues of mammalian deafness genes in the fruit fly to better understand conservation of hearing mechanisms between the insect and the fly and ultimately gain insight into human hereditary deafness. We used bioinformatic comparisons to …


Inference Of Phylogenetic Trees Directly From Raw Sequencing Reads Using Read2tree, David Dylus, Adrian Altenhoff, Sina Majidian, Fritz J Sedlazeck, Christophe Dessimoz Jan 2024

Inference Of Phylogenetic Trees Directly From Raw Sequencing Reads Using Read2tree, David Dylus, Adrian Altenhoff, Sina Majidian, Fritz J Sedlazeck, Christophe Dessimoz

Faculty, Staff and Students Publications

Current methods for inference of phylogenetic trees require running complex pipelines at substantial computational and labor costs, with additional constraints in sequencing coverage, assembly and annotation quality, especially for large datasets. To overcome these challenges, we present Read2Tree, which directly processes raw sequencing reads into groups of corresponding genes and bypasses traditional steps in phylogeny inference, such as genome assembly, annotation and all-versus-all sequence comparisons, while retaining accuracy. In a benchmark encompassing a broad variety of datasets, Read2Tree is 10-100 times faster than assembly-based approaches and in most cases more accurate-the exception being when sequencing coverage is high and reference …


Neuronal Ablation Of Ghsr Mitigates Diet-Induced Depression And Memory Impairment Via Ampk-Autophagy Signaling-Mediated Inflammation, Hongying Wang, Zheng Shen, Chia-Shan Wu, Pengfei Ji, Ji Yeon Noh, Cédric G Geoffroy, Sunja Kim, David Threadgill, Jianrong Li, Yu Zhou, Xiaoqiu Xiao, Hui Zheng, Yuxiang Sun Jan 2024

Neuronal Ablation Of Ghsr Mitigates Diet-Induced Depression And Memory Impairment Via Ampk-Autophagy Signaling-Mediated Inflammation, Hongying Wang, Zheng Shen, Chia-Shan Wu, Pengfei Ji, Ji Yeon Noh, Cédric G Geoffroy, Sunja Kim, David Threadgill, Jianrong Li, Yu Zhou, Xiaoqiu Xiao, Hui Zheng, Yuxiang Sun

Faculty, Staff and Students Publications

Obesity is associated with chronic inflammation in the central nervous system (CNS), and neuroinflammation has been shown to have detrimental effects on mood and cognition. The growth hormone secretagogue receptor (GHSR), the biologically relevant receptor of the orexigenic hormone ghrelin, is primarily expressed in the brain. Our previous study showed that neuronal GHSR deletion prevents high-fat diet-induced obesity (DIO). Here, we investigated the effect of neuronal GHSR deletion on emotional and cognitive functions in DIO. The neuron-specific GHSR-deficient mice exhibited reduced depression and improved spatial memory compared to littermate controls under DIO. We further examined the cortex and hippocampus, the …


Neurosteroids Mediate And Modulate The Effects Of Pro-Inflammatory Stimulation And Toll-Like Receptors On Hippocampal Plasticity And Learning, Yukitoshi Izumi, Kazuko A. O'Dell, Anil G. Cashikar, Steven M. Paul, Douglas F. Covey, Steven J. Mennerick, Charles F. Zorumski Jan 2024

Neurosteroids Mediate And Modulate The Effects Of Pro-Inflammatory Stimulation And Toll-Like Receptors On Hippocampal Plasticity And Learning, Yukitoshi Izumi, Kazuko A. O'Dell, Anil G. Cashikar, Steven M. Paul, Douglas F. Covey, Steven J. Mennerick, Charles F. Zorumski

2020-Current year OA Pubs

Pro-inflammatory changes contribute to multiple neuropsychiatric illnesses. Understanding how these changes are involved in illnesses and identifying strategies to alter inflammatory responses offer paths to potentially novel treatments. We previously found that acute pro-inflammatory stimulation with high (μg/ml) lipopolysaccharide (LPS) for 10-15 min dampens long-term potentiation (LTP) in the hippocampus and impairs learning. Effects of LPS involved non-canonical inflammasome signaling but were independent of toll-like receptor 4 (TLR4), a known LPS receptor. Low (ng/ml) LPS also inhibits LTP when administered for 2-4 h, and here we report that this LPS exposure requires TLR4. We also found that effects of low …


Control Of Acute Myeloid Leukemia And Generation Of Immune Memory In Vivo Using Amv564, A Bivalent Bispecific Cd33 X Cd3 T Cell Engager, Linda G. Eissenberg, Julie K. Ritchey, Michael P. Rettig, Dilan A. Patel, Kiran Vij, Feng Gao, Victoria Smith, Tae H Han, John F. Dipersio Jan 2024

Control Of Acute Myeloid Leukemia And Generation Of Immune Memory In Vivo Using Amv564, A Bivalent Bispecific Cd33 X Cd3 T Cell Engager, Linda G. Eissenberg, Julie K. Ritchey, Michael P. Rettig, Dilan A. Patel, Kiran Vij, Feng Gao, Victoria Smith, Tae H Han, John F. Dipersio

2020-Current year OA Pubs

Off-the-shelf immunotherapeutics that suppress tumor growth and provide durable protection against relapse could enhance cancer treatment. We report preclinical studies on a CD33 x CD3 bivalent bispecific diabody, AMV564, that not only suppresses tumor growth, but also facilitates memory responses in a mouse model of acute myelogenous leukemia (AML). Mechanistically, a single 5-day treatment with AMV564 seems to reduce tumor burden by redirection of T cells, providing a time window for allogeneic or other T cells that innately recognize tumor antigens to become activated and proliferate. When the concentration of bispecific becomes negligible, the effector: target ratio has also shifted, …


Translatability Of Findings From Cynomolgus Monkey To Human Suggests A Mechanistic Role For Il-21 In Promoting Immunogenicity To An Anti-Pd-1/Il-21 Mutein Fusion Protein, Mark A Kroenke, Ramaswamy Govindan, Et Al. Jan 2024

Translatability Of Findings From Cynomolgus Monkey To Human Suggests A Mechanistic Role For Il-21 In Promoting Immunogenicity To An Anti-Pd-1/Il-21 Mutein Fusion Protein, Mark A Kroenke, Ramaswamy Govindan, Et Al.

2020-Current year OA Pubs

AMG 256 is a bi-specific, heteroimmunoglobulin molecule with an anti-PD-1 antibody domain and a single IL-21 mutein domain on the C-terminus. Nonclinical studies in cynomolgus monkeys revealed that AMG 256 administration led to the development of immunogenicity-mediated responses and indicated that the IL-21 mutein domain of AMG 256 could enhance the anti-drug antibody response directed toward the monoclonal antibody domain. Anti-AMG 256 IgE were also observed in cynomolgus monkeys. A first-in-human (FIH) study in patients with advanced solid tumors was designed with these risks in mind. AMG 256 elicited ADA in 28 of 33 subjects (84.8%). However, ADA responses were …


Sirtuin3 Ensures The Metabolic Plasticity Of Neurotransmission During Glucose Deprivation, Anupama Tiwari, Arsalan Hashemiaghdam, Marissa A Laramie, Dario Maschi, Tristaan Haddad, Marion I Stunault, Carmen Bergom, Ali Javaheri, Vitaly Klyachko, Ghazaleh Ashrafi Jan 2024

Sirtuin3 Ensures The Metabolic Plasticity Of Neurotransmission During Glucose Deprivation, Anupama Tiwari, Arsalan Hashemiaghdam, Marissa A Laramie, Dario Maschi, Tristaan Haddad, Marion I Stunault, Carmen Bergom, Ali Javaheri, Vitaly Klyachko, Ghazaleh Ashrafi

2020-Current year OA Pubs

Neurotransmission is an energetically expensive process that underlies cognition. During intense electrical activity or dietary restrictions, the glucose level in the brain plummets, forcing neurons to utilize alternative fuels. However, the molecular mechanisms of neuronal metabolic plasticity remain poorly understood. Here, we demonstrate that glucose-deprived neurons activate the CREB and PGC1α transcriptional program, which induces expression of the mitochondrial deacetylase Sirtuin 3 (Sirt3) both in vitro and in vivo. We show that Sirt3 localizes to axonal mitochondria and stimulates mitochondrial oxidative capacity in hippocampal nerve terminals. Sirt3 plays an essential role in sustaining synaptic transmission in the absence of glucose …


The Forkhead Transcription Factor Foxj1 Controls Vertebrate Olfactory Cilia Biogenesis And Sensory Neuron Differentiation, Dheeraj Rayamajhi, Steven L. Brody, Et Al. Jan 2024

The Forkhead Transcription Factor Foxj1 Controls Vertebrate Olfactory Cilia Biogenesis And Sensory Neuron Differentiation, Dheeraj Rayamajhi, Steven L. Brody, Et Al.

2020-Current year OA Pubs

In vertebrates, olfactory receptors localize on multiple cilia elaborated on dendritic knobs of olfactory sensory neurons (OSNs). Although olfactory cilia dysfunction can cause anosmia, how their differentiation is programmed at the transcriptional level has remained largely unexplored. We discovered in zebrafish and mice that Foxj1, a forkhead domain-containing transcription factor traditionally linked with motile cilia biogenesis, is expressed in OSNs and required for olfactory epithelium (OE) formation. In keeping with the immotile nature of olfactory cilia, we observed that ciliary motility genes are repressed in zebrafish, mouse, and human OSNs. Strikingly, we also found that besides ciliogenesis, Foxj1 controls the …


Hyperbaric Oxygen Augments Susceptibility To C. Difficile Infection By Impairing Gut Microbiota Ability To Stimulate The Hif-1Α-Il-22 Axis In Ilc3, José L Fachi, Laís P Pral, Helder C Assis, Sarah Oliveira, Vinícius R Rodovalho, Jefferson A C Dos Santos, Mariane F Fernandes, Valquíria A Matheus, Renata Sesti-Costa, Paulo J Basso, Marina Flóro E Silva, Niels O S Câmara, Selma Giorgio, Marco Colonna, Marco A R Vinolo Jan 2024

Hyperbaric Oxygen Augments Susceptibility To C. Difficile Infection By Impairing Gut Microbiota Ability To Stimulate The Hif-1Α-Il-22 Axis In Ilc3, José L Fachi, Laís P Pral, Helder C Assis, Sarah Oliveira, Vinícius R Rodovalho, Jefferson A C Dos Santos, Mariane F Fernandes, Valquíria A Matheus, Renata Sesti-Costa, Paulo J Basso, Marina Flóro E Silva, Niels O S Câmara, Selma Giorgio, Marco Colonna, Marco A R Vinolo

2020-Current year OA Pubs

Hyperbaric oxygen (HBO) therapy is a well-established method for improving tissue oxygenation and is typically used for the treatment of various inflammatory conditions, including infectious diseases. However, its effect on the intestinal mucosa, a microenvironment known to be physiologically hypoxic, remains unclear. Here, we demonstrated that daily treatment with hyperbaric oxygen affects gut microbiome composition, worsening antibiotic-induced dysbiosis. Accordingly, HBO-treated mice were more susceptible to


The Cousa Objective: A Long-Working Distance Air Objective For Multiphoton Imaging In Vivo, Che-Hang Yu, Jinkyung Kim, Et Al. Jan 2024

The Cousa Objective: A Long-Working Distance Air Objective For Multiphoton Imaging In Vivo, Che-Hang Yu, Jinkyung Kim, Et Al.

2020-Current year OA Pubs

Multiphoton microscopy can resolve fluorescent structures and dynamics deep in scattering tissue and has transformed neural imaging, but applying this technique in vivo can be limited by the mechanical and optical constraints of conventional objectives. Short working distance objectives can collide with compact surgical windows or other instrumentation and preclude imaging. Here we present an ultra-long working distance (20 mm) air objective called the Cousa objective. It is optimized for performance across multiphoton imaging wavelengths, offers a more than 4 mm


Dendritic Cell Subsets And Implications For Cancer Immunotherapy, Michael Y Chen, Felicia Zhang, Simon Peter Goedegebuure, William E Gillanders Jan 2024

Dendritic Cell Subsets And Implications For Cancer Immunotherapy, Michael Y Chen, Felicia Zhang, Simon Peter Goedegebuure, William E Gillanders

2020-Current year OA Pubs

Dendritic cells (DCs) play a central role in the orchestration of effective T cell responses against tumors. However, their functional behavior is context-dependent. DC type, transcriptional program, location, intratumoral factors, and inflammatory milieu all impact DCs with regard to promoting or inhibiting tumor immunity. The following review introduces important facets of DC function, and how subset and phenotype can affect the interplay of DCs with other factors in the tumor microenvironment. It will also discuss how current cancer treatment relies on DC function, and survey the myriad ways with which immune therapy can more directly harness DCs to enact antitumor …


Pd-L1 Has A Heterogeneous And Dynamic Expression In Gastric Cancer With Implications For Immunopet, Dina Ibrahim, Cristina Simó, Emma L Brown, Shayla Shmuel, Sandeep Surendra Panikar, Alex Benton, Rachel Deweerd, Farrokh Dehdashti, Haeseong Park, Patrícia M R Pereira Jan 2024

Pd-L1 Has A Heterogeneous And Dynamic Expression In Gastric Cancer With Implications For Immunopet, Dina Ibrahim, Cristina Simó, Emma L Brown, Shayla Shmuel, Sandeep Surendra Panikar, Alex Benton, Rachel Deweerd, Farrokh Dehdashti, Haeseong Park, Patrícia M R Pereira

2020-Current year OA Pubs

INTRODUCTION: This study aimed to investigate the dynamics of programmed death-ligand 1 (PD-L1) expression, spatial heterogeneity, and binding affinity of FDA-approved anti-PD-L1 antibodies (avelumab and atezolizumab) in gastric cancer. Additionally, we determined how PD-L1 glycosylation impacts antibody accumulation in gastric cancer cells.

METHODS: Dynamic PD-L1 expression was examined in NCIN87 gastric cancer cells. Comparative binding studies of avelumab and atezolizumab were conducted in gastric cancer models, both

RESULTS: Consistent findings revealed time-dependent PD-L1 induction in NCIN87 gastric cancer cells and spatial heterogeneity in tumors, as shown by PET imaging and immunofluorescence. Avelumab displayed superior binding affinity to NCIN87 cells compared …


Loss Of Β-Cell Identity And Dedifferentiation, Not An Irreversible Process?, Sumit Patel, Maria S Remedi Jan 2024

Loss Of Β-Cell Identity And Dedifferentiation, Not An Irreversible Process?, Sumit Patel, Maria S Remedi

2020-Current year OA Pubs

Type 2 diabetes (T2D) is a polygenic metabolic disorder characterized by insulin resistance in peripheral tissues and impaired insulin secretion by the pancreas. While the decline in insulin production and secretion was previously attributed to apoptosis of insulin-producing β-cells, recent studies indicate that β-cell apoptosis rates are relatively low in diabetes. Instead, β-cells primarily undergo dedifferentiation, a process where they lose their specialized identity and transition into non-functional endocrine progenitor-like cells, ultimately leading to β-cell failure. The underlying mechanisms driving β-cell dedifferentiation remain elusive due to the intricate interplay of genetic factors and cellular stress. Understanding these mechanisms holds the …


Traversing The Bench To Bedside Journey For Inkt Cell Therapies, Julie O'Neal, Melissa Mavers, Reyka G Jayasinghe, John F Dipersio Jan 2024

Traversing The Bench To Bedside Journey For Inkt Cell Therapies, Julie O'Neal, Melissa Mavers, Reyka G Jayasinghe, John F Dipersio

2020-Current year OA Pubs

Invariant natural killer T (iNKT) cells are immune cells that harness properties of both the innate and adaptive immune system and exert multiple functions critical for the control of various diseases. Prevention of graft-versus-host disease (GVHD) by iNKT cells has been demonstrated in mouse models and in correlative human studies in which high iNKT cell content in the donor graft is associated with reduced GVHD in the setting of allogeneic hematopoietic stem cell transplants. This suggests that approaches to increase the number of iNKT cells in the setting of an allogeneic transplant may reduce GVHD. iNKT cells can also induce …


Systematic Computer-Aided Disulfide Design As A General Strategy To Stabilize Prefusion Class I Fusion Proteins, Karen J Gonzalez, Kevin C Yim, Jorge C G Blanco, Marina S Boukhvalova, Eva-Maria Strauch Jan 2024

Systematic Computer-Aided Disulfide Design As A General Strategy To Stabilize Prefusion Class I Fusion Proteins, Karen J Gonzalez, Kevin C Yim, Jorge C G Blanco, Marina S Boukhvalova, Eva-Maria Strauch

2020-Current year OA Pubs

Numerous enveloped viruses, such as coronaviruses, influenza, and respiratory syncytial virus (RSV), utilize class I fusion proteins for cell entry. During this process, the proteins transition from a prefusion to a postfusion state, undergoing substantial and irreversible conformational changes. The prefusion conformation has repeatedly shown significant potential in vaccine development. However, the instability of this state poses challenges for its practical application in vaccines. While non-native disulfides have been effective in maintaining the prefusion structure, identifying stabilizing disulfide bonds remains an intricate task. Here, we present a general computational approach to systematically identify prefusion-stabilizing disulfides. Our method assesses the geometric …


Recarving The Future: Bridging Car T-Cell Therapy Gaps With Synthetic Biology, Engineering, And Economic Insights, Alaa Ali, John F Dipersio Jan 2024

Recarving The Future: Bridging Car T-Cell Therapy Gaps With Synthetic Biology, Engineering, And Economic Insights, Alaa Ali, John F Dipersio

2020-Current year OA Pubs

Chimeric antigen receptor (CAR) T-cell therapy has revolutionized the treatment of hematologic malignancies, offering remarkable remission rates in otherwise refractory conditions. However, its expansion into broader oncological applications faces significant hurdles, including limited efficacy in solid tumors, safety concerns related to toxicity, and logistical challenges in manufacturing and scalability. This review critically examines the latest advancements aimed at overcoming these obstacles, highlighting innovations in CAR T-cell engineering, novel antigen targeting strategies, and improvements in delivery and persistence within the tumor microenvironment. We also discuss the development of allogeneic CAR T cells as off-the-shelf therapies, strategies to mitigate adverse effects, and …