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Articles 31 - 60 of 286
Full-Text Articles in Biochemistry
Single-Fibril Förster Resonance Energy Transfer Imaging And Deep Learning Reveal Concentration Dependence Of Amyloid Β 42 Aggregation Pathways, Sara Sohail, J. Yoo, H. S. Chung
Single-Fibril Förster Resonance Energy Transfer Imaging And Deep Learning Reveal Concentration Dependence Of Amyloid Β 42 Aggregation Pathways, Sara Sohail, J. Yoo, H. S. Chung
Chemistry & Biochemistry Faculty Works
Amyloid fibril formation is a highly heterogeneous process as evidenced by polymorphism in fibril structure. It has been suggested that different polymorphs are associated with different diseases or disease subtypes. Detailed characterization of this heterogeneity is a key to understanding the aggregation mechanism and, possibly, the disease mechanism. In this work, we develop Förster resonance energy transfer (FRET) imaging of amyloid fibril formation in real time and investigate the concentration-dependent heterogeneous fibril formation of amyloid β 42 (Aβ42). We incubated a mixture of unlabeled and labeled (5% donor and 5% acceptor) Aβ42, followed aggregation, and characterized individual fibrils in terms …
Analysis Of Mct-1 Expression In Mouse Neural Retina In Response To Chronic Inflammation, Ian W. Ronson
Analysis Of Mct-1 Expression In Mouse Neural Retina In Response To Chronic Inflammation, Ian W. Ronson
PANDION: The Osprey Journal of Research and Ideas
Chronic inflammation is a current public health concern as it is linked to the etiology and symptoms of numerous diseases, for example diabetic retinopathy (DR). In the case of DR, inflammation leads to dysregulation of the blood retina barrier causing retinal hemorrhage and macular edema leading ultimately to irreversible vision loss. MCT-1 is critical for the survival of photoreceptor cells because MCT-1 forms protein complexes with Basigin, a cell-cell adhesion protein, that enables Müller glial cells to efficiently provide lactate as a high energy fuel source. Previous studies have shown chronic inflammation reduces Basigin expression in the retina and that …
Comparative Analysis Of Citrate Synthase Activity In Skeletal Muscle, Liver, And Adipose Tissue In Beef Cattle, Abigail Webb
Comparative Analysis Of Citrate Synthase Activity In Skeletal Muscle, Liver, And Adipose Tissue In Beef Cattle, Abigail Webb
Honors Program: Senior Projects (Public)
Mitochondrial efficiency plays a central role in determining how cattle partition nutrients toward muscle growth or adipose deposition, yet little is known about tissue-specific differences in mitochondrial density among tissues or among beef cattle. This study aimed to quantify mitochondrial density in muscle, liver, and adipose tissue samples from beef cattle and evaluate its potential relationship with metabolic efficiency. Tissue samples of semitendinosus muscle (ST), liver, and subcutaneous adipose (SC) were collected, homogenized, and analyzed for citrate synthase (CS) activity using a fluorometric assay as a proxy for mitochondrial density. Preliminary analyses revealed that the semitendinosus muscle displayed the highest …
A New Low-Rate Stable Hydrogel Cathode For Aqueous Zn-Ion Batteries, Roya Rajabi, Shichen Sun, Jamil A. Khan, Morgan Stefik, Kevin Huang
A New Low-Rate Stable Hydrogel Cathode For Aqueous Zn-Ion Batteries, Roya Rajabi, Shichen Sun, Jamil A. Khan, Morgan Stefik, Kevin Huang
Faculty Publications
Aqueous Zn-ion batteries (ZIBs) are attractive candidates for large-scale energy storage owing to the abundance, low cost, and intrinsic safety of Zn metal. However, their practical application is hindered by poor cycle stability, especially at low current densities, due to cathode dissolution and limited electrochemically active sites (EAS). Herein, a hydrogel-based cathode comprising ammonium vanadate, carbon black, and a Zn-ion-conducting carboxymethyl chitosan–acrylamide hydrogel matrix doped with Zn(ClO4)2 is reported. This design establishes a continuous Zn-ion-conducting network, thereby maximizing EAS density throughout the electrode volume. The ZIB with the hydrogel cathode exhibits outstanding cycling stability, with 77% capacity retention after 2000 …
Interview With Orca Award Winner Donald Weeks; Unl Biochemistry; Biotechnology, Mark Griep, Donald Weeks
Interview With Orca Award Winner Donald Weeks; Unl Biochemistry; Biotechnology, Mark Griep, Donald Weeks
UNL ORCA Interview Series
Emeritus Professor Donald Paul Weeks was awarded the ORCA in 2014, a year before he retired. He grew up in a small farm south of Terre Haute, Indiana. In his youth, he participated in 4-H programs that must have sparked an interest in science because he earned his bachelor's degree from Purdue University in 1963. Purdue is about 90 miles north of Terre Haute. Don's doctoral work was at the University of Illinois in Champaign-Urbana for a project about protein synthesis during maize germination. Next, he did postdoctoral work at the Fox Chase Cancer Center in Philadelphia, where his research …
Pathlength, Altitude And Angle Of Incidence Dependence Of Remote Water Raman Scattering, Whitney E. Schuler, Paige K. Williams, Zechariah B. Kitzhaber, Caitlyn M. English, Tammi L. Richardson, Nikos Vitzilaios, Michael L. Myrick
Pathlength, Altitude And Angle Of Incidence Dependence Of Remote Water Raman Scattering, Whitney E. Schuler, Paige K. Williams, Zechariah B. Kitzhaber, Caitlyn M. English, Tammi L. Richardson, Nikos Vitzilaios, Michael L. Myrick
Faculty Publications
A small remote Raman sensor was used to measure the Raman scattering signal from clear, still water as a function of water depth (12 cm and 396 cm depth), sensor distance above the water surface (20–300 cm), and angle of incidence (0–80°) to the normal of the water surface. Under thick- and thin-sample conditions, the signal depends on either the inverse, or the inverse square, of sensor distance from the water surface, respectively. A model is derived that fits data for different sensor distances, water depths, and angles of incidence. Fits to the measured data are consistent with the known …
Functional Analysis Of R144 In The Flavin Oxidation Mechanism Of A Flavin-Dependent N-Monooxygenase, Reeder Robinson, Korliss Britt, Pablo Sobrado
Functional Analysis Of R144 In The Flavin Oxidation Mechanism Of A Flavin-Dependent N-Monooxygenase, Reeder Robinson, Korliss Britt, Pablo Sobrado
Chemistry Faculty Research & Creative Works
Flavin-dependent N-monooxygenases (NMOs) are key enzymes in the biosynthesis of hydroxamate-containing siderophores, which are critical virulence factors in pathogenic microorganisms. SidA, an NMO from Aspergillus fumigatus, catalyzes the NADPH- and O2-dependent hydroxylation of L-ornithine (Orn) via a stable C4a-hydroperoxyflavin (FADOOH) intermediate. This study investigates the role of Arg144 in the catalytic cycle of SidA. Site-directed mutagenesis of Arg144 to alanine (R144A) significantly impaired both oxygen consumption and Orn hydroxylation, resulting in an approximately 60-fold reduction in kcat and a ~300-fold decrease in kcat/KM. The pH dependence, solvent kinetic isotope effects, and rapid-reaction kinetics reveal that R144 influences protonation events crucial …
Adipose Tissue Estrogen Receptor-Alpha Overexpression Ameliorates High-Fat Diet–Induced Adipose Tissue Inflammation, Marion C. Hope, Christian A. Unger, M. Chase Kettering, Cassidy E. Socia, Ahmed K. Aladhami, Barton C. Rice, Darya S. Niamira, Ben P. Wiznitzer, Diego Altomare Ph.D., William E. Cotham, Reilly T. Enos
Adipose Tissue Estrogen Receptor-Alpha Overexpression Ameliorates High-Fat Diet–Induced Adipose Tissue Inflammation, Marion C. Hope, Christian A. Unger, M. Chase Kettering, Cassidy E. Socia, Ahmed K. Aladhami, Barton C. Rice, Darya S. Niamira, Ben P. Wiznitzer, Diego Altomare Ph.D., William E. Cotham, Reilly T. Enos
Faculty Publications
Context
We created an innovative mouse model that enables inducible overexpression of estrogen receptor-alpha (ERα), specifically in adipose tissue (Adipo-ERα↑). Objective
We aimed to investigate how elevated Adipo-ERα↑ influences the development of high-fat diet (HFD)-induced obesity in both male and female mice. Methods
Male and female Adipo-ERα↑ mice and littermate controls were fed a low-fat diet (LFD) or HFD for 13 weeks. Adipo-ERα↑ was induced at the initiation of dietary treatment. Body morphology and composition, hepatic lipid accumulation, glucose tolerance, fasting insulin concentrations, and adipose tissue mRNA profiling were assessed. Liquid chromatography–mass spectrometry was used to determine circulating and adipose …
Pentanary And Hexanary Alkali Lanthanide Germanates Grown From Lanthanide Rich Flux Growth Reactions, Gregory Morrison, K. Pilar Zamorano, Virginia G. Jones, Ethan N. Adams, Hans Conrad Zur Loye
Pentanary And Hexanary Alkali Lanthanide Germanates Grown From Lanthanide Rich Flux Growth Reactions, Gregory Morrison, K. Pilar Zamorano, Virginia G. Jones, Ethan N. Adams, Hans Conrad Zur Loye
Faculty Publications
Single crystals of five compounds of a new structure type, the K3Nd52Ge12O100F7 type, were grown from lanthanide rich reactions using a KF/KCl flux: K3Ln52Ge12O100F7 (Ln = Nd, Eu), K3Ln52Ge12O100+δF7-δ (Ln = Pr, Tb), and K3Ca0.872Nd51.128Ge12O99.128F7.872. The five compounds crystallize in the cubic space group I-43d with lattice parameter 22.0350(2) Å for K3Nd52Ge12O100F7. The structure consists of a 3D checkerboard of LnX8, LnX7, LnX6, and GeO4 polyhedra, where X = O/F, and can be conceptually derived from the fluorite structure. K3Eu52Ge12O100F7 exhibits the fluorescence typical of Eu3+.
Chemistry And Biochemistry Affiliated Publications: Snapshot Of The Research Publications 2019-2024., Jeremy J. Smith, Lutishoor Salisbury
Chemistry And Biochemistry Affiliated Publications: Snapshot Of The Research Publications 2019-2024., Jeremy J. Smith, Lutishoor Salisbury
University Libraries Faculty Publications and Presentations
This report highlights the chemistry and biochemistry faculty publications for the period 2019-2024. It includes tables identifying the types of publications, the characteristics of the authors, inter-departmental and external cooperation, summary of the citations of the publications, and the JCR ranking of the journals in which they published.
Detection Method For Escherichia Coli Using Real-Time Polymerase Chain Reaction Targeting The Yhav Gene, Muktiningsih Nurjayadi, Anisa Fitriyanti, Royna Rahma Musie, Gusti Angieta Putri, Puan Aqila Azizah, Helzi Angelina, Grace Grace, Ananda Indah Putri Sihombing, Agus Setiawan, Jefferson Lynford Declan, Gladys Indira Putri, Dandy Akbar Juliansyah, Siti Fatimah, Ayu Berkahingrum, Irma Ratna Kartika, Fera Kurniadewi, Vira Saamia, Shyi-Tien Chen, Bassam Aboemolak, Hesham Ali El Enshasy
Detection Method For Escherichia Coli Using Real-Time Polymerase Chain Reaction Targeting The Yhav Gene, Muktiningsih Nurjayadi, Anisa Fitriyanti, Royna Rahma Musie, Gusti Angieta Putri, Puan Aqila Azizah, Helzi Angelina, Grace Grace, Ananda Indah Putri Sihombing, Agus Setiawan, Jefferson Lynford Declan, Gladys Indira Putri, Dandy Akbar Juliansyah, Siti Fatimah, Ayu Berkahingrum, Irma Ratna Kartika, Fera Kurniadewi, Vira Saamia, Shyi-Tien Chen, Bassam Aboemolak, Hesham Ali El Enshasy
Makara Journal of Science
Escherichia coli is a foodborne pathogenic bacterium that can cause diarrhea, while yhaV is a virulence-associated gene linked to the toxin–antitoxin system in E. coli. This study was aimed at evaluating the confirmation, specificity, and sensitivity of a yhaV gene primer using real-time polymerase chain reaction. The yhaV-targeting PCR successfully amplified a DNA fragment with an amplicon length of 207 bp (base pairs) under an annealing temperature optimized to a range of 54 °C to 62 °C via gradient PCR. The PCR using the primer pair produced a consistent Ct (cycle threshold) of 14.14 ± 0.05 and showed …
Interleukin-6 (Il-6) Mediated Pathways In Nonalcoholic Fatty Liver Disease (Nafld) And Its Implications On Magnesium And Zinc Mineral Deficiencies: A Scoping Review, Marianne Koleng, Leann Nguyen
Interleukin-6 (Il-6) Mediated Pathways In Nonalcoholic Fatty Liver Disease (Nafld) And Its Implications On Magnesium And Zinc Mineral Deficiencies: A Scoping Review, Marianne Koleng, Leann Nguyen
Department of Nutrition Student Projects
The prevalence and incidence of Non-Alcoholic Fatty Liver Disease (NAFLD) is rising. In the United States alone, the prevalence of NAFLD is currently 38% and there has been a 50% increase over the last three decades. The present study investigated the role of ultratrace mineral deficiencies, specifically magnesium (Mg) and zinc (Zn), and if so, what nutritional interventions could be made to ameliorate or protect against the development of NAFLD. The role of trace and ultratrace minerals in pro-inflammatory cytokine pathways contributing to NAFLD, specifically Interleukin-6 (IL-6), were investigated. IL-6 is produced by hepatocytes and plays a crucial role in …
Investigating The Role Of Chaperones And Sequestrases In Misfolded Protein Sequestration, Sarah Rose Rolli
Investigating The Role Of Chaperones And Sequestrases In Misfolded Protein Sequestration, Sarah Rose Rolli
Dissertations (1934 -)
Protein homeostasis, or proteostasis, is responsible for a folded and functional proteome and is essential for cell survival. Proteins can misfold during stress or because of mutation. The accumulation of misfolded proteins is observed in many diseases, including Huntington’s disease. Misfolded proteins will clump together into inclusions, which can be sequestered to membrane-less compartments by proteostasis mechanisms. Several proteins, including chaperones, co-chaperones, and other proteins, have been identified as sequestrases that target inclusions and misfolded proteins to different protein quality control (PQC) compartments. The juxtanuclear quality control (JUNQ) compartment forms in the nucleus-vacuole junction in yeast cells, and several soluble …
From Venom To Medicine: Harnessing Animal Toxins For Drug Discovery, Christine Vega, Ying Jia
From Venom To Medicine: Harnessing Animal Toxins For Drug Discovery, Christine Vega, Ying Jia
Research Colloquium
Background: Drug development research has long focused on synthesizing novel therapeutics while overlooking isolation from naturally available sources such as animal venoms. Recently, the discovery of the therapeutic effects of highly bioavailable animal venom caused the field of venom research to soar in popularity. Animal venom serves as a natural, sophisticated tool optimized over millions of years by evolution with the ability to bind to ion channels such as nAChRs, non-specific ligand-gated ion channels distributed throughout the human nervous system. However, purifying individual venom toxins from crude venom is challenging due to its availability. Therefore, synthesizing large quantities of venom …
Structural Analysis Of Pseudomonas Phage Dev Virion-Associated Rna Polymerase (Gp71), James Scherer
Structural Analysis Of Pseudomonas Phage Dev Virion-Associated Rna Polymerase (Gp71), James Scherer
All ETDs from UAB
DEV is a Pseudomonas aeruginosa bacteriophage part of a newly reclassified genus called Schitoviridae. This group of bacteriophages is also referred to as “N4-like” phages, after the prototypical Escherichia coli phage N4, originally isolated from sewage water in 19661. N4, and other phages in the group, contain a large, virion-associated RNA polymerase (vRNAP). This vRNAP is vital to the proliferation of the phage, as it performs the transcription of the early gene products and potentially acts as a motor that helps eject the viral genome into the host bacteria. In DEV, the vRNAP is also known as gene product 71 …
Virulence Factors And Their Binding Partners: A Biochemical Study, Morgan E. Blake
Virulence Factors And Their Binding Partners: A Biochemical Study, Morgan E. Blake
All ETDs from UAB
Virulence factors are an important mechanism by which viruses combat the host immune system, therefore a thorough understanding of the workings of these proteins will be of significant value in prevention of disease associated with viral infections. In this dissertation we investigate the main virulence factors of two viruses, the Influenza A Virus (IAV) and SARS-CoV-2, and their interactions with host proteins, providing critical information for structure-based drug design. In chapter one we studied the nonstructural protein 1 (NS1) of IAV and its interaction with the 30-kda subunit of the cleavage and polyadenylation specificity factor (CPSF30) to inhibit host cell …
Structural And Functional Investigation Of The Influenza Nuclear Export Protein, Andrew James Staup
Structural And Functional Investigation Of The Influenza Nuclear Export Protein, Andrew James Staup
All ETDs from UAB
The influenza A nuclear export protein (NEP) is a multi-functional protein that mediates the export of progeny viral ribonucleoprotein (vRNP) complexes from the host nucleus, regulates the activity of the RNA-dependent RNA polymerase (RdRp), and is implicated in zoonosis. It is therefore critical to understand the mechanisms of NEP’s functions at the molecular level to inform its roles in the viral lifecycle and influenza zoonosis. In this dissertation, we report the structure of NEP in complex with the host nuclear export holo-complex as well as investigate the biophysical effects of the adaptive M16I mutation on NEP. We solved the cryo-electron …
Data From: Nek4 Suppresses Cell Proliferation In Bt20 Triple-Negative Breast Cancer Cells By Diminishing Expression Of Cell Cycle Genes, While Its Depletion Mitigates Proliferation In Other Cell Lines, Amanda Ashley
Chemistry & Biochemistry: Datasets
No abstract provided.
The Next Frontier In The Study Of Noncovalent Bonding: Transition Metals, Steve Scheiner
The Next Frontier In The Study Of Noncovalent Bonding: Transition Metals, Steve Scheiner
Chemistry and Biochemistry Faculty Publications
As work continues unabated in the study of noncovalent bonding, particularly σ-hole bonds, new challenges have emerged as the participation of transition metals in interactions of this sort is fast becoming appreciated. While there are certain similarities with the halogen, chalcogen, etc, bonds, in which the main group elements participate, there are certain unique properties of these metal atoms that must be analyzed before a complete understanding can be attained. As one example, these atoms tend to act simultaneously as both electron donors and acceptors, a synergistic action that amplifies the overall bond strength. Ideas are expressed in this paper …
Analysis Of Antibody Affinity Maturation And Thermal Stability Of Proteins Using Photophysical Approaches, Claire Baxter
Analysis Of Antibody Affinity Maturation And Thermal Stability Of Proteins Using Photophysical Approaches, Claire Baxter
Dissertations
Engineered antibodies (Abs) have found applications in disparate fields such as enzyme catalysis and medicinal therapeutics because of their exquisite binding affinity and specificity. To engineer antibodies for these purposes, a firm understanding of the underlying mechanisms that control Ab affinity and specificity is needed, so these properties can be tightly controlled and adapted to the application at hand. My research characterized the binding site of the anti-fluorescein Ab 4-4-20 using an array of biophysical techniques and gives insight into the binding site interactions that give rise to both affinity and specificity. We utilized Fab fragments of the anti-fluorescein Ab …
Development Of Single Droplet Interface-Specific Sum Frequency Scattering Spectroscopy, Yi Rao
Development Of Single Droplet Interface-Specific Sum Frequency Scattering Spectroscopy, Yi Rao
Funded Research Records
No abstract provided.
Root Exudates: The Rhizospheric Frontier For Advancing Sustainable Plant Protection, Muhammad Rahil Afzal, Misbah Naz, Youbo Yu, Lisha Yan, Peiyi Wang, Janaki Mohotti, Gefei Hao, Jing-Jiang Zhou, Zhou Chen, Libo Zhang, Qian Wang
Root Exudates: The Rhizospheric Frontier For Advancing Sustainable Plant Protection, Muhammad Rahil Afzal, Misbah Naz, Youbo Yu, Lisha Yan, Peiyi Wang, Janaki Mohotti, Gefei Hao, Jing-Jiang Zhou, Zhou Chen, Libo Zhang, Qian Wang
Faculty Publications
Root exudates (REs), a diverse array of bioactive metabolites secreted by plant roots in response to environmental stimuli, serve as key mediators of rhizosphere ecology and plant defense responses, offering a promising avenue for sustainable pest management and eco-friendly plant protection. While earlier reviews primarily focus on root exudates in the context of general rhizosphere dynamics and plant-microbial interactions, critical knowledge gaps persist in REs-plant-pest tripartite interactions, the mechanistic basis of REs-mediated plant defense, and their practical integration with integrated pest management (IPM) frameworks. This review provides a synthesis of the latest literature on the biochemical diversity and functions of …
Impact Of Varied Dietary Macronutrient Ratios On The Nutrition Status Of Swiss Albino Mice, Hellen Kinyi, Charles Kato, Gertrude Kiwanuka
Impact Of Varied Dietary Macronutrient Ratios On The Nutrition Status Of Swiss Albino Mice, Hellen Kinyi, Charles Kato, Gertrude Kiwanuka
Biomedical Sciences, East Africa
The nutrition status of an organism depends on the balance between nutrient intake and utilization. Malnutrition results not only from inadequate caloric intake but also from imbalanced macronutrient ratios, which can affect aging, metabolism, and health. While many studies focus on individual nutrients, this study used purified, isocaloric diets with varying macronutrient ratios to assess dietary effects on nutrition markers in Swiss albino mice.
Mice were randomized into 6 dietary groups, each containing 6 males and 6 females housed separately. Each group received an isocaloric diet with different carbohydrate, protein, and lipid ratios for 15 weeks. Animal weight, body mass …
Single Nuclei Transcriptomics Reveals Cellular Diversity In Tsc Subependymal Giant Cell Astrocytomas, Jennie C. Holmberg, Vijay Shankar, Rachel A. Lyman, Trudy F.C. Mackay, David M. Feliciano
Single Nuclei Transcriptomics Reveals Cellular Diversity In Tsc Subependymal Giant Cell Astrocytomas, Jennie C. Holmberg, Vijay Shankar, Rachel A. Lyman, Trudy F.C. Mackay, David M. Feliciano
Publications
Tuberous sclerosis complex (TSC) is a genetic disorder characterized by benign growths called hamartomas that are a significant cause of morbidity and mortality. Hamartomas are found along the neurocutaneous axis including along the brain’s ventricles near the boundaries of the striatum. They can be categorized by size and include small subependymal nodules (SENs) or larger subependymal giant cell astrocytomas (SEGAs). Here, we describe a quantitative analysis of SEGA cell identities based on single nuclei RNA sequencing. SEGAs contain several cell types. In contrast to unaffected samples, SEGAs have pronounced vasculature, more endothelial cells, increased perivascular macrophages, less myelination, and altered …
From Sequence To Allostery: How Amino Acid Differences Rewire Coupled Conformational Heterogeneity In The Ptp Enzyme Family, Shivani Sharma
From Sequence To Allostery: How Amino Acid Differences Rewire Coupled Conformational Heterogeneity In The Ptp Enzyme Family, Shivani Sharma
Dissertations, Theses, and Capstone Projects
Protein Tyrosine Phosphatases (PTPs) are critical regulators of cellular signaling, and their activity is often modulated through allosteric mechanisms. Allostery is defined as a chemical or conformational change in one site of the protein due to a binding event at another site. Although several studies have investigated aspects of allostery in PTPs, the mechanistic foundations underlying allosteric regulation remain poorly understood. Despite a highly conserved catalytic domain across PTPs, regions with low or no conservation suggest potential "rewiring" of allosteric networks. This raises key questions about the universality versus individuality of allosteric mechanisms across the PTP family.
In this work, …
Mechanistic Insights Into The Neuroprotective Effects Of The Antidepressant Agomelatine In Alzheimer's Disease, Grace Terry
Mechanistic Insights Into The Neuroprotective Effects Of The Antidepressant Agomelatine In Alzheimer's Disease, Grace Terry
Dissertations, Theses, and Capstone Projects
Alzheimer’s Disease (AD) is a complex neurodegenerative disease that has limited treatment options and no cure. AD is characterized by robust pathology including extracellular amyloid beta plaques, intracellular neurofibrillary tangles, neuronal and synaptic loss, neuroinflammation, and brain atrophy. AD presents with cognitive decline and memory loss but only years after neuropathology has started to accumulate. This robust pathology has made AD difficult to treat and highlights the need for therapeutics that modulate multiple pathways. Agomelatine (AGO) was selected by a high-throughput machine learning drug repurposing algorithm by our collaborator Dr. Lie Xie (Hunter College Dept. of Comp. Sci.) as having …
Development And Implementation Of Novel Mass Spectrometric Methods For Metabolism Studies In Drug Discoveries, Huifang Yao
Development And Implementation Of Novel Mass Spectrometric Methods For Metabolism Studies In Drug Discoveries, Huifang Yao
Dissertations
The field of drug discovery has evolved significantly over the past few decades, with a growing emphasis on understanding the metabolic pathways and biotransformation processes that influence the pharmacokinetics and pharmacodynamics of drug candidates. Novel mass spectrometric methods have emerged as powerful tools in this domain, facilitating the comprehensive analysis of metabolic profiles and enabling the identification of metabolites with implications for safety, efficacy, and overall drug development. However, challenges remain in quantifying metabolic flux—an essential aspect of understanding drug action—particularly due to the limitations of traditional isotope kinetic assays, which often involve lengthy sample preparation and the use of …
Role Of Nucleic Acids As Chaperones In Protein Folding, Zijue Huang
Role Of Nucleic Acids As Chaperones In Protein Folding, Zijue Huang
Electronic Theses and Dissertations
Many proteins have slow folding times in vitro that are physiologically untenable. To combat this challenge, ATP-dependent chaperonins are thought to possess the unique ability to catalyze protein folding. Performing quantitative model selection using protein folding and unfolding data, we here show that short nucleic acids containing Gquadruplex (G4) structure can also catalyze protein folding. Performing the experiments as a function of temperature demonstrates that the G4 reshapes the underlying driving forces of protein folding. To understand the structural basis of this catalytic activity, we introduce NMR method to solve the structures, at base-level resolution, of a multiconformer G4 with …
3d Bioprinting On Electrospun Nanofibrous Scaffolds To Fabricate Myocardial Patches, Muthu Parkkavi S
3d Bioprinting On Electrospun Nanofibrous Scaffolds To Fabricate Myocardial Patches, Muthu Parkkavi S
Theses and Dissertations
Tissue-engineered three-dimensional (3D) myocardial patches offer superior and innovative treatment strategy for myocardial infarction (MI). Among the various scaffold fabrication techniques, electrospinning and 3D bioprinting have received great attention due to their ability to recreate native cardiac tissue mimetic characteristics. Despite several advantages, electrospun nanofibers have limitations in cell delivery due to random cell seeding, while bioprinting faces challenges in creating hydrogel constructs with ideal mechanical properties capable of supporting cardiac contraction/relaxation cycle. Hence in this work, hybrid myocardial patches were developed by converging electrospinning and bioprinting techniques.
Electrospinning of PLCL:PEOz (B73, 7:3 blend of poly-L-lactide-co-ε-caprolactone (PLCL) and polyethyl oxazoline …
Empowering Science With The World's First High Accuracy And High Throughput Functional Assay, Christopher Giacoletto
Empowering Science With The World's First High Accuracy And High Throughput Functional Assay, Christopher Giacoletto
UNLV Theses, Dissertations, Professional Papers, and Capstones
Understanding the functional consequences of genetic mutations remains a central challenge in modern biology, with far-reaching implications for human health and disease. While early systematic methods like alanine scanning and phage display provided foundational insights into protein structure and function, the emergence of high-throughput approaches—such as Multiplexed Assays of Variant Effect (MAVEs)—and predictive tools powered by artificial intelligence have vastly expanded our ability to profile mutational landscapes. However, these methods are often constrained by trade-offs between accuracy, scalability, and biological relevance.This dissertation presents the development and application of the GigaAssay, the world’s first high-throughput functional assay capable of delivering both …