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Articles 901 - 930 of 3209
Full-Text Articles in Biochemistry, Biophysics, and Structural Biology
Monkeypox: A Contemporary Review For Healthcare Professionals, Boghuma K Titanji, Bryan Tegomoh, Saman Nematollahi, Michael Konomos, Prathit A Kulkarni
Monkeypox: A Contemporary Review For Healthcare Professionals, Boghuma K Titanji, Bryan Tegomoh, Saman Nematollahi, Michael Konomos, Prathit A Kulkarni
Faculty, Staff and Students Publications
The ongoing 2022 multicountry outbreak of monkeypox is the largest in history to occur outside of Africa. Monkeypox is an emerging zoonotic disease that for decades has been viewed as an infectious disease with significant epidemic potential because of the increasing occurrence of human outbreaks in recent years. As public health entities work to contain the current outbreak, healthcare professionals globally are aiming to become familiar with the various clinical presentations and management of this infection. We present in this review an updated overview of monkeypox for healthcare professionals in the context of the ongoing outbreaks around the world.
Spatial Analysis Of Drug Absorption, Distribution, Metabolism, And Toxicology Using Mass Spectrometry Imaging, Michelle L Spruill, Mirjana Maletic-Savatic, Howard Martin, Feng Li, Xinli Liu
Spatial Analysis Of Drug Absorption, Distribution, Metabolism, And Toxicology Using Mass Spectrometry Imaging, Michelle L Spruill, Mirjana Maletic-Savatic, Howard Martin, Feng Li, Xinli Liu
Faculty, Staff and Students Publications
Mass spectrometry imaging (MSI) is emerging as a powerful analytical tool for detection, quantification, and simultaneous spatial molecular imaging of endogenous and exogenous molecules via in situ mass spectrometry analysis of thin tissue sections without the requirement of chemical labeling. The MSI generates chemically specific and spatially resolved ion distribution information for administered drugs and metabolites, which allows numerous applications for studies involving various stages of drug absorption, distribution, metabolism, excretion, and toxicity (ADMET). MSI-based pharmacokinetic imaging analysis provides a histological context and cellular environment regarding dynamic drug distribution and metabolism processes, and facilitates the understanding of the spatial pharmacokinetics …
Activating Connexin43 Gap Junctions Primes Adipose Tissue For Therapeutic Intervention, Yi Zhu, Na Li, Mingyang Huang, Xi Chen, Yu A An, Jianping Li, Shangang Zhao, Jan-Bernd Funcke, Jianhong Cao, Zhenyan He, Qingzhang Zhu, Zhuzhen Zhang, Zhao V Wang, Lin Xu, Kevin W Williams, Chien Li, Kevin Grove, Philipp E Scherer
Activating Connexin43 Gap Junctions Primes Adipose Tissue For Therapeutic Intervention, Yi Zhu, Na Li, Mingyang Huang, Xi Chen, Yu A An, Jianping Li, Shangang Zhao, Jan-Bernd Funcke, Jianhong Cao, Zhenyan He, Qingzhang Zhu, Zhuzhen Zhang, Zhao V Wang, Lin Xu, Kevin W Williams, Chien Li, Kevin Grove, Philipp E Scherer
Faculty, Staff and Students Publications
Adipose tissue is a promising target for treating obesity and metabolic diseases. However, pharmacological agents usually fail to effectively engage adipocytes due to their extraordinarily large size and insufficient vascularization, especially in obese subjects. We have previously shown that during cold exposure, connexin43 (Cx43) gap junctions are induced and activated to connect neighboring adipocytes to share limited sympathetic neuronal input amongst multiple cells. We reason the same mechanism may be leveraged to improve the efficacy of various pharmacological agents that target adipose tissue. Using an adipose tissue-specific Cx43 overexpression mouse model, we demonstrate effectiveness in connecting adipocytes to augment metabolic …
Dual-Mode Tumor Imaging Using Probes That Are Responsive To Hypoxia-Induced Pathological Conditions, S A Amali S Subasinghe, Robia G Pautler, Md Abul Hassan Samee, Jason T Yustein, Matthew J Allen
Dual-Mode Tumor Imaging Using Probes That Are Responsive To Hypoxia-Induced Pathological Conditions, S A Amali S Subasinghe, Robia G Pautler, Md Abul Hassan Samee, Jason T Yustein, Matthew J Allen
Faculty, Staff and Students Publications
Hypoxia in solid tumors is associated with poor prognosis, increased aggressiveness, and strong resistance to therapeutics, making accurate monitoring of hypoxia important. Several imaging modalities have been used to study hypoxia, but each modality has inherent limitations. The use of a second modality can compensate for the limitations and validate the results of any single imaging modality. In this review, we describe dual-mode imaging systems for the detection of hypoxia that have been reported since the start of the 21st century. First, we provide a brief overview of the hallmarks of hypoxia used for imaging and the imaging modalities used …
Gain-Of-Signal Assays For Probing Inhibition Of Sars-Cov-2 Mpro/3clpro In Living Cells, Seyed Arad Moghadasi, Morgan A Esler, Yuka Otsuka, Jordan T Becker, Sofia N Moraes, Constance B Anderson, Srinivas Chamakuri, Christopher Belica, Chloe Wick, Daniel A Harki, Damian W Young, Louis Scampavia, Timothy P Spicer, Ke Shi, Hideki Aihara, William L Brown, Reuben S Harris
Gain-Of-Signal Assays For Probing Inhibition Of Sars-Cov-2 Mpro/3clpro In Living Cells, Seyed Arad Moghadasi, Morgan A Esler, Yuka Otsuka, Jordan T Becker, Sofia N Moraes, Constance B Anderson, Srinivas Chamakuri, Christopher Belica, Chloe Wick, Daniel A Harki, Damian W Young, Louis Scampavia, Timothy P Spicer, Ke Shi, Hideki Aihara, William L Brown, Reuben S Harris
Faculty, Staff and Students Publications
The main protease, Mpro, of SARS-CoV-2 is required to cleave the viral polyprotein into precise functional units for virus replication and pathogenesis. Here, we report quantitative reporters for Mpro function in living cells in which protease inhibition by genetic or chemical methods results in robust signal readouts by fluorescence (enhanced green fluorescent protein [eGFP]) or bioluminescence (firefly luciferase). These gain-of-signal systems are scalable to high-throughput platforms for quantitative discrimination between Mpro mutants and/or inhibitor potencies as evidenced by validation of several reported inhibitors. Additional utility is shown by single Mpro amino acid variants and structural information combining to demonstrate that …
Crispr/Cas13 Effectors Have Differing Extents Of Off-Target Effects That Limit Their Utility In Eukaryotic Cells, Yuxi Ai, Dongming Liang, Jeremy E Wilusz
Crispr/Cas13 Effectors Have Differing Extents Of Off-Target Effects That Limit Their Utility In Eukaryotic Cells, Yuxi Ai, Dongming Liang, Jeremy E Wilusz
Faculty, Staff and Students Publications
CRISPR/Cas13 effectors have garnered increasing attention as easily customizable tools for detecting and depleting RNAs of interest. Near perfect complementarity between a target RNA and the Cas13-associated guide RNA is required for activation of Cas13 ribonuclease activity. Nonetheless, the specificity of Cas13 effectors in eukaryotic cells has been debated as the Cas13 nuclease domains can be exposed on the enzyme surface, providing the potential for promiscuous cleavage of nearby RNAs (so-called collateral damage). Here, using co-transfection assays in Drosophila and human cells, we found that the off-target effects of RxCas13d, a commonly used Cas13 effector, can be as strong as …
17Β-Estradiol Treatment Improves Acetylcholine-Induced Relaxation Of Mesenteric Arteries In Ovariectomized Uc Davis Type 2 Diabetes Mellitus Rats In Prediabetic State, Md Rahatullah Razan, Farjana Akther, Rifat Ara Islam, James L. Graham, Kimber L. Stanhope, Peter J. Havel, Roshanak Rahimian
17Β-Estradiol Treatment Improves Acetylcholine-Induced Relaxation Of Mesenteric Arteries In Ovariectomized Uc Davis Type 2 Diabetes Mellitus Rats In Prediabetic State, Md Rahatullah Razan, Farjana Akther, Rifat Ara Islam, James L. Graham, Kimber L. Stanhope, Peter J. Havel, Roshanak Rahimian
School of Pharmacy Faculty Articles
We recently reported sex differences in mesenteric arterial function of the UC Davis type-2 diabetes mellitus (UCD-T2DM) rats as early as the prediabetic state. We reported that mesenteric arteries (MA) from prediabetic male rats exhibited a greater impairment compared to that in prediabetic females. However, when females became diabetic, they exhibited a greater vascular dysfunction than males. Thus, the aim of this study was to investigate whether the female sex hormone, estrogen preserves mesenteric arterial vasorelaxation in UCD-T2DM female rats at an early prediabetic state. Age-matched female Sprague Dawley and prediabetic (PD) UCD-T2DM rats were ovariectomized (OVX) and subcutaneously implanted …
Variants In Asph Cause Exertional Heat Illness And Are Associated With Malignant Hyperthermia Susceptibility, Yukari Endo, Linda Groom, Alper Celik, Natalia Kraeva, Chang Seok Lee, Sung Yun Jung, Lois Gardner, Marie-Anne Shaw, Susan L Hamilton, Philip M Hopkins, Robert T Dirksen, Sheila Riazi, James J Dowling
Variants In Asph Cause Exertional Heat Illness And Are Associated With Malignant Hyperthermia Susceptibility, Yukari Endo, Linda Groom, Alper Celik, Natalia Kraeva, Chang Seok Lee, Sung Yun Jung, Lois Gardner, Marie-Anne Shaw, Susan L Hamilton, Philip M Hopkins, Robert T Dirksen, Sheila Riazi, James J Dowling
Faculty, Staff and Students Publications
Exertional heat illness (EHI) and malignant hyperthermia (MH) are life threatening conditions associated with muscle breakdown in the setting of triggering factors including volatile anesthetics, exercise, and high environmental temperature. To identify new genetic variants that predispose to EHI and/or MH, we performed genomic sequencing on a cohort with EHI/MH and/or abnormal caffeine-halothane contracture test. In five individuals, we identified rare, pathogenic heterozygous variants in ASPH, a gene encoding junctin, a regulator of excitation-contraction coupling. We validated the pathogenicity of these variants using orthogonal pre-clinical models, CRISPR-edited C2C12 myotubes and transgenic zebrafish. In total, we demonstrate that ASPH variants represent …
Overexpression Of Foxf2 In Prostate Cancer Cells Causes An Increase In Cancer Cell Apoptosis And A Decrease In Proliferation, Vaughn Poon
Honors Projects
FOXF2 is a transcription factor that plays a crucial role in organ development, and recent studies have shown that it suppresses tumor growth and progression in mouse prostate models by attenuating the cancer-associated fibroblasts (CAF) phenotype and transcriptionally downregulating Cxcl5. However, the effects of FOXF2 overexpression in prostate cancer cells have not been extensively studied. Here, we investigate the impact of FOXF2 overexpression in prostate cancer cells and demonstrate that it leads to a significant increase in cell apoptosis and a decrease in proliferation. These findings suggest that FOXF2 may have potential as an immunotherapy drug target for prostate …
Evolutionary Action Of Mutations Reveals Antimicrobial Resistance Genes In Escherichia Coli, David C Marciano, Chen Wang, Teng-Kuei Hsu, Thomas Bourquard, Benu Atri, Ralf B Nehring, Nicholas S Abel, Elizabeth A Bowling, Taylor J Chen, Pamela D Lurie, Panagiotis Katsonis, Susan M Rosenberg, Christophe Herman, Olivier Lichtarge
Evolutionary Action Of Mutations Reveals Antimicrobial Resistance Genes In Escherichia Coli, David C Marciano, Chen Wang, Teng-Kuei Hsu, Thomas Bourquard, Benu Atri, Ralf B Nehring, Nicholas S Abel, Elizabeth A Bowling, Taylor J Chen, Pamela D Lurie, Panagiotis Katsonis, Susan M Rosenberg, Christophe Herman, Olivier Lichtarge
Faculty, Staff and Students Publications
Since antibiotic development lags, we search for potential drug targets through directed evolution experiments. A challenge is that many resistance genes hide in a noisy mutational background as mutator clones emerge in the adaptive population. Here, to overcome this noise, we quantify the impact of mutations through evolutionary action (EA). After sequencing ciprofloxacin or colistin resistance strains grown under different mutational regimes, we find that an elevated sum of the evolutionary action of mutations in a gene identifies known resistance drivers. This EA integration approach also suggests new antibiotic resistance genes which are then shown to provide a fitness advantage …
Decoding The Pitx2-Controlled Genetic Network In Atrial Fibrillation, Jeffrey D Steimle, Francisco J Grisanti Canozo, Minjun Park, Zachary A Kadow, Md Abul Hassan Samee, James F Martin
Decoding The Pitx2-Controlled Genetic Network In Atrial Fibrillation, Jeffrey D Steimle, Francisco J Grisanti Canozo, Minjun Park, Zachary A Kadow, Md Abul Hassan Samee, James F Martin
Faculty, Staff and Students Publications
Atrial fibrillation (AF), the most common sustained cardiac arrhythmia and a major risk factor for stroke, often arises through ectopic electrical impulses derived from the pulmonary veins (PVs). Sequence variants in enhancers controlling expression of the transcription factor PITX2, which is expressed in the cardiomyocytes (CMs) of the PV and left atrium (LA), have been implicated in AF predisposition. Single nuclei multiomic profiling of RNA and analysis of chromatin accessibility combined with spectral clustering uncovered distinct PV- and LA-enriched CM cell states. Pitx2-mutant PV and LA CMs exhibited gene expression changes consistent with cardiac dysfunction through cell type-distinct, PITX2-directed, cis-regulatory …
Expression And Purification Of The Bacterial Protein Curli Csga And Its Cross-Interactions With Amyloid-B, Leah Grace Cantrell
Expression And Purification Of The Bacterial Protein Curli Csga And Its Cross-Interactions With Amyloid-B, Leah Grace Cantrell
Honors Theses
One of the main causes of neurodegenerative diseases is aggregation of amyloid proteins that are toxic to the neurons. Proteins like amyloid-β (Aβ) and α-syneuclein (α-syn) form hallmark aggregate lesions that contribute to pathological processes in the brain in Alzheimer and Parkinson’s patients, respectively. Recent ground-breaking studies have suggested a link between the microbiota of the gut and neurodegenerative diseases, called the “gut-brain axis.” It has been long known that the protein, CsgA found in many enteric bacteria, forms amyloid fibers of its own called Curli. Curli fibrils are a structural component of bacterial colonies and maintain the integrity of …
Syphilis In The Esophagus, Ronan Allencherril, Paul Nicholls, Shilpa Jain, Robert Sealock, Priti Dangayach
Syphilis In The Esophagus, Ronan Allencherril, Paul Nicholls, Shilpa Jain, Robert Sealock, Priti Dangayach
Faculty, Staff and Students Publications
This report documents a unique case of syphilis with esophageal involvement. Such a presentation is exceedingly rare in the modern era, particularly among patients without human immunodeficiency virus. Most instances were documented in the 1900s and earlier. Our patient presented with months of odynophagia and recurrent oral lesions. He was found to have a sizeable esophageal ulcer on endoscopy, with biopsy confirming the diagnosis of syphilis. His symptoms quickly resolved with intramuscular penicillin. This case highlights the importance of keeping a broad differential for odynophagia and suspicious lesions, cutaneous or mucosal.
A Novel Crosstalk Between Autophagosomes And Phagosomes That Facilitates The Clearance Of Apoptotic Cells, Zheng Zhou, Omar Peña-Ramos
A Novel Crosstalk Between Autophagosomes And Phagosomes That Facilitates The Clearance Of Apoptotic Cells, Zheng Zhou, Omar Peña-Ramos
Faculty, Staff and Students Publications
During an animal's life, many cells undergo apoptosis, a form of genetically programmed cell death. These cells are swiftly engulfed by other cells through phagocytosis and subsequently degraded inside phagosomes. Phagocytosis and macroautophagy/autophagy are two different cellular events: whereas phagocytosis is a cell-eat-cell event, autophagy, or "self-eating", occurs within one cell, resulting in the enveloping of protein aggregates or damaged organelles within double-membrane autophagosomes. Despite this critical difference, these two events share common features: (1) both are means of safe garbage disposal; (2) both phagosomes and autophagosomes fuse to lysosomes, which drive the degradation of their contents; and (3) both …
A Concise Synthetic Method For Constructing 3-Substituted Piperazine-2-Acetic Acid Esters From 1,2-Diamines, Srinivas Chamakuri, Sunny Ann Tang, Kevin A Tran, Shiva Krishna Reddy Guduru, Peter K Bolin, Kevin R Mackenzie, Damian W Young
A Concise Synthetic Method For Constructing 3-Substituted Piperazine-2-Acetic Acid Esters From 1,2-Diamines, Srinivas Chamakuri, Sunny Ann Tang, Kevin A Tran, Shiva Krishna Reddy Guduru, Peter K Bolin, Kevin R Mackenzie, Damian W Young
Faculty, Staff and Students Publications
We report a short synthetic route for synthesizing 2,3-substituted piperazine acetic acid esters. Optically pure amino acids were efficiently converted into 1,2-diamines that could be utilized to deliver the title 2,3-substituted piperazines in five steps with a high enantiomeric purity. The novel route facilitated, for the first time, the synthesis of 3-phenyl substituted-2-piperazine acetic acid esters that were difficult to achieve using other methods; however, in this case, the products underwent racemization.
Maf1, A Repressor Of Rna Polymerase Iii-Dependent Transcription, Regulates Bone Mass, Ellen Phillips, Naseer Ahmad, Li Sun, James Iben, Christopher J Walkey, Aleksandra Rusin, Tony Yuen, Clifford J Rosen, Ian M Willis, Mone Zaidi, Deborah L Johnson
Maf1, A Repressor Of Rna Polymerase Iii-Dependent Transcription, Regulates Bone Mass, Ellen Phillips, Naseer Ahmad, Li Sun, James Iben, Christopher J Walkey, Aleksandra Rusin, Tony Yuen, Clifford J Rosen, Ian M Willis, Mone Zaidi, Deborah L Johnson
Faculty, Staff and Students Publications
MAF1, a key repressor of RNA polymerase (pol) III-mediated transcription, has been shown to promote mesoderm formation in vitro. Here, we show that MAF1 plays a critical role in regulating osteoblast differentiation and bone mass. Global deletion of MAF1 (Maf1-/- mice) produced a high bone mass phenotype. However, osteoblasts isolated from Maf1-/- mice showed reduced osteoblastogenesis ex vivo. Therefore, we determined the phenotype of mice overexpressing MAF1 in cells from the mesenchymal lineage (Prx1-Cre;LSL-MAF1 mice). These mice showed increased bone mass. Ex vivo, cells from these mice showed enhanced osteoblastogenesis concordant with their high …
Targeting Aberrant Replication And Dna Repair Events For Treating Breast Cancers, Subapriya Rajamanickam, Jun Hyoung Park, Panneerdoss Subbarayalu, Santosh Timilsina, Kaitlyn Bates, Pooja Yadav, Saif S R Nirzhor, Vijay Eedunuri, Tabrez A Mohammad, Kwang Hwa Jung, Benjamin Onyeagucha, Nourhan Abdelfattah, Raymond Benevides, Grace Lee, Yidong Chen, Ratna Vadlamudi, Andrew Brenner, Virginia Kaklamani, Ismail Jatoi, John Kuhn, Robert Hromas, Yogesh K Gupta, Benny A Kaipparettu, Jack L Arbiser, Manjeet K Rao
Targeting Aberrant Replication And Dna Repair Events For Treating Breast Cancers, Subapriya Rajamanickam, Jun Hyoung Park, Panneerdoss Subbarayalu, Santosh Timilsina, Kaitlyn Bates, Pooja Yadav, Saif S R Nirzhor, Vijay Eedunuri, Tabrez A Mohammad, Kwang Hwa Jung, Benjamin Onyeagucha, Nourhan Abdelfattah, Raymond Benevides, Grace Lee, Yidong Chen, Ratna Vadlamudi, Andrew Brenner, Virginia Kaklamani, Ismail Jatoi, John Kuhn, Robert Hromas, Yogesh K Gupta, Benny A Kaipparettu, Jack L Arbiser, Manjeet K Rao
Faculty, Staff and Students Publications
The major limitations of DNA-targeting chemotherapy drugs include life-threatening toxicity, acquired resistance and occurrence of secondary cancers. Here, we report a small molecule, Carbazole Blue (CB), that binds to DNA and inhibits cancer growth and metastasis by targeting DNA-related processes that tumor cells use but not the normal cells. We show that CB inhibits the expression of pro-tumorigenic genes that promote unchecked replication and aberrant DNA repair that cancer cells get addicted to survive. In contrast to chemotherapy drugs, systemic delivery of CB suppressed breast cancer growth and metastasis with no toxicity in pre-clinical mouse models. Using PDX and ex …
Flippase Inhibitors As Antimicrobial Agents, Robert Tancer
Flippase Inhibitors As Antimicrobial Agents, Robert Tancer
Seton Hall University Dissertations and Theses (ETDs)
Drug resistant microbes are a considerable challenge for modern medicine to overcome. The research described in this dissertation involved development of lipid flippase inhibitors and investigating their potential as antimicrobial agents against various drug resistant microbes. The microbes primarily investigated were methicillin resistant Staphylococcus aureus (MRSA) & Cryptococcus neoformans. Chapter 1 reviews the historical perspective and summarizes the current state of the field of research. In Chapter 2, the design space of an antimicrobial peptide known as humimycin was explored and the effects of modifications on its structure were observed against MRSA. Several key observations resulted. Most notably, the …
Alterations Of The Gut Microbial Community Structure And Function With Aging In The Spontaneously Hypertensive Stroke Prone Rat, Huanan Shi, James W Nelson, Sharon Phillips, Joseph F Petrosino, Robert M Bryan, David J Durgan
Alterations Of The Gut Microbial Community Structure And Function With Aging In The Spontaneously Hypertensive Stroke Prone Rat, Huanan Shi, James W Nelson, Sharon Phillips, Joseph F Petrosino, Robert M Bryan, David J Durgan
Faculty, Staff and Students Publications
Gut dysbiosis, a pathological imbalance of bacteria, has been shown to contribute to the development of hypertension (HT), systemic- and neuro-inflammation, and blood-brain barrier (BBB) disruption in spontaneously hypertensive stroke prone rats (SHRSP). However, to date individual species that contribute to HT in the SHRSP model have not been identified. One potential reason, is that nearly all studies of the SHRSP gut microbiota have analyzed samples from rats with established HT. The goal of this study was to examine the SHRSP gut microbiota before, during, and after the onset of hypertension, and in normotensive WKY control rats over the same …
The Use Of Silica Nanoparticles For Controlled Drug Delivery Of Nicotine, Jennifer C. Iwenofu
The Use Of Silica Nanoparticles For Controlled Drug Delivery Of Nicotine, Jennifer C. Iwenofu
Honors College Theses
Drug molecules can be administered in different ways to the human body. Nanotechnology stands out over other alternatives by delivering drugs to specific locations and reducing reactivity time. In this research, the hydrogen bond between silica nanoparticles and the drug molecule, nicotine, were studied to controllably deliver nicotine by varying pH values.
Isolation And Characterization Of Α-Hcd7 Scfv Expressing Exosomes And Synthesis Of Hybrid Exosome-Liposome For Analyses, Sahil Patel
Biotechnology Theses
The goal of this thesis project is to isolate and characterize exosomes that express anti-human CD7 (α-hCD7) single chain variable fragment (scFv), which will be further utilized for T celltargeted gene editing. To reach this goal, exosomes from HEK 293 cells and Jurkat cells were isolated and characterized with different methodologies. To obtain α-hCD7 scFv-expressing exosomes, the HEK 293 cells were subjected to transfection of custom-plasmid pDisplay-αhCD7 scFv, and the expression of α-hCD7 scFv on the HEK 293-derived exosomes were then confirmed by immunogold staining, western blotting, and flow cytometry. To transfect 293 cells, calcium phosphate transfection was utilized, and …
Eskape Pathogens: The Clinical Prevalence And Molecular Mechanisms Of Antibiotic Resistance, Anusha Attre
Eskape Pathogens: The Clinical Prevalence And Molecular Mechanisms Of Antibiotic Resistance, Anusha Attre
Honors Scholar Theses
The ESKAPE pathogens (Enterococcus faecium, Staphylococcus aureus, Klebsiella pneumoniae, Acinetobacter baumannii, Pseudomonas aeruginosa, and Enterobacter species) are the leading cause of all nosocomial, or healthcare-associated (HAI), infections (Navidinia, 2016). The purpose of this research study is to determine the burden of ESKAPE infections on healthcare and study the antibiotic resistance in these high-risk pathogens to provide direction for researchers to develop new antimicrobial innovations to reduce ESKAPE infectivity and improve patient outcomes. To study the burden of ESKAPE infections, this review analyzes the current statistics explaining the clinical prevalence of each pathogen in causing HAIs. Additionally, each pathogen is …
Lectin-Glycan Complexes: A Comprehensive Analysis Of Docking Calculations, Ashton Custer
Lectin-Glycan Complexes: A Comprehensive Analysis Of Docking Calculations, Ashton Custer
Honors Theses
Lectins are a type of glycan-binding protein that noncovalently bind glycans. Carbohydrates are molecules consisting of sugar units joined together. Glycans are carbohydrates. Hence, glycans are also sugars. Lectins and lectin-glycan complexes have a range of biological roles and can be found in animals (including humans), plants, bacteria, viruses, and yeasts and fungi.1 Many scientists focus on the computational study of these complexes due to their intricate roles in many living organisms. Computational study is important in furthering our knowledge of lectin-glycan complexes and other such protein complexes. However, computational study is not perfect. There are many challenges in …
Isolation Of Sphingolipids From Sphingomonas Echinoides B-3126 And Their Characterization By Ms/Ms Analysis, Edgar David Uribe Sanchez
Isolation Of Sphingolipids From Sphingomonas Echinoides B-3126 And Their Characterization By Ms/Ms Analysis, Edgar David Uribe Sanchez
Honors Theses
EDGAR DAVID URIBE SANCHEZ: Isolation of Sphingolipids from Sphingomonas echinoides B-3126 and their Characterization by MS/MS Analysis
Sphingolipids are important components in human cellular lipid membranes and are differentiated by the incorporation of serine with an amide bond between the amino acid and a lipid tail. Sphingolipids produced by bacteria differ in both headgroups attached to the serine alcohol and the architecture of the lipid backbone. While the synthesis of sphingolipids in mammalian cells is well studied, only a handful of steps in the pathway are described in bacteria.1 The observations that although sphingolipid synthesis is rare in bacteria, …
Determining The Distribution Of Elemental Compounds And Oxidative Potential Across Fine Particulate Matter (Pm2.5) Filters, Allie Michelle Sidwell
Determining The Distribution Of Elemental Compounds And Oxidative Potential Across Fine Particulate Matter (Pm2.5) Filters, Allie Michelle Sidwell
Honors Theses
Fine particulate matter (PM2.5) is a complex mixture of particles and sorbed chemicals that poses serious, adverse effects on human health such as increasing cardiovascular and respiratory morbidity and mortality. There is ongoing research into the impacts of PM2.5 of differing chemical compositions, sampling location, and the mechanisms for the observed health effects. To conduct these analytical and toxicology studies of PM2.5, researchers often split filters into sections. This process allows multiple, often destructive, assays to be performed. Our previous research showed chemical composition differences across PM2.5 filters. The goal of our study was …
The Use Of Nebulizer Medications As A Possible Treatment For Covid-19, Jacob Kaufman
The Use Of Nebulizer Medications As A Possible Treatment For Covid-19, Jacob Kaufman
Honors College Theses
For the past few years, the COVID-19 pandemic has been the focal point in healthcare and research. This disease has permanently changed daily life and left a historic impact on the world. Most people have felt the effects of this pandemic either directly, via infection, or indirectly, via change in workflow, financial impact, etc. The main question for this virus still remains today; how do we treat this illness effectively? While many ideas are being tested and suggested, a definite answer has yet to be procured. Vaccine rates are climbing on a daily basis, serving as the first and most …
Finding The Optimal Ionic Liquid To Target White Blood Cell Subpopulations Using Nanoparticles, Meghan Gorniak
Finding The Optimal Ionic Liquid To Target White Blood Cell Subpopulations Using Nanoparticles, Meghan Gorniak
Honors Theses
Disorders and diseases of the immune system have become more prevalent in recent decades and can have life-threatening effects on those afflicted. Granulocyte disorders disproportionately affect infants and children, while chronic lymphocytic leukemia is the most common type of leukemia in adults. Unfortunately, current treatments have many drawbacks such as everyday injection, short-lived efficacy, and unknown levels of safety and effectiveness. It is imperative to find more effective treatment options that could allow for easier drug delivery to specific populations of white blood cells (WBCs). Nanoscale medicine shows promising application, but complications remain in reaching the desired target site and …
Morphine-Induced Hyperactivity Is Attenuated By Intra-Accumbens Administration Of The Highly-Selective Dopamine D3 Receptor Antagonist Vk4-40, Mansi Patel, Desta M. Pulley, Daniel Manvich
Morphine-Induced Hyperactivity Is Attenuated By Intra-Accumbens Administration Of The Highly-Selective Dopamine D3 Receptor Antagonist Vk4-40, Mansi Patel, Desta M. Pulley, Daniel Manvich
Rowan-Virtua Research Day
Opioids exert their abuse-related effects by enhancing dopamine (DA) neurotransmission within the brain’s mesolimbic reward system, a neural projection involving DA neurons in the ventral tegmental area (VTA) that project to medium spiny neurons within the nucleus accumbens (NAc). Mu (MOR) are expressed by several populations of GABAergic neurons that tonically inhibit VTA DA neurons. By inhibiting these GABAergic neurons in a MOR-dependent manner, opioids indirectly enhance DA neurotransmission via disinhibition of DAergic neurons. Accumulating evidence indicates that selective pharmacological antagonism of the dopamine D3 receptor (D3R) attenuates the abuse-related effects of several opioids, but the neurobiological mechanisms mediating this …
Effect Of Uracil Dna Glycosylase Activity On The Efficacy Of Thymidylate Synthase Inhibitor/Hdac Inhibitor Combination Therapies In Colon Cancer, Rashmi Kulkarni, Brian P Weiser
Effect Of Uracil Dna Glycosylase Activity On The Efficacy Of Thymidylate Synthase Inhibitor/Hdac Inhibitor Combination Therapies In Colon Cancer, Rashmi Kulkarni, Brian P Weiser
Rowan-Virtua Research Day
Human uracil DNA glycosylase (UNG2) is responsible for removing uracil bases from DNA and initiates base excision repair pathways. Accumulation of uracil or its fluorinated analogs in DNA is one of the killing mechanisms of thymidylate synthase (TS) inhibitors in cancer cells, and depletion of UNG2 often enhances the toxicity of these anticancer drugs. We tested the effect of UNG2 KO on the efficacy of multiple TS inhibitors (5-fluorouracil, fluorodeoxyuridine, and pemetrexed) and we determined that, except for 5-fluorouracil, all other TS inhibitors were significantly more potent in UNG2 KO cells compared to wild-type HT29 cells. Interestingly, UNG2 protein levels …
Severe Hypoxia Up-Regulates Gluconeogenesis In Daphnia, Morad C. Malek
Severe Hypoxia Up-Regulates Gluconeogenesis In Daphnia, Morad C. Malek
Undergraduate Honors Theses
Hypoxia is a significant low oxygen state that has complex and diverse impacts on organisms. In aerobes, various adaptive responses to hypoxia are observed that vary depending on the level of oxygen depletion and previous adaptation, hence the continued attention to hypoxia as an important abiotic stressor. Adaptive responses to hypoxia are primarily governed by the hypoxia-inducible factors (HIFs), which activate downstream genetic pathways responsible for oxygen transport and metabolic plasticity. In aquatic habitats, oxygen availability can vary greatly over time and space. Therefore, aquatic organisms’ adaptation to hypoxia is likely pervasive, especially in genotypes originating from waterbodies prone to …