Open Access. Powered by Scholars. Published by Universities.®
Biochemistry, Biophysics, and Structural Biology Commons™
Open Access. Powered by Scholars. Published by Universities.®
- Discipline
-
- Biochemistry (6985)
- Molecular Biology (4530)
- Medicine and Health Sciences (3209)
- Physical Sciences and Mathematics (2757)
- Cell and Developmental Biology (2132)
-
- Chemistry (2100)
- Biology (1788)
- Medical Sciences (1455)
- Cell Biology (1208)
- Genetics and Genomics (1105)
- Microbiology (1031)
- Medical Specialties (1011)
- Biotechnology (902)
- Biophysics (861)
- Other Biochemistry, Biophysics, and Structural Biology (792)
- Immunology and Infectious Disease (778)
- Chemicals and Drugs (603)
- Diseases (583)
- Structural Biology (582)
- Engineering (554)
- Physiology (493)
- Genetics (477)
- Bioinformatics (453)
- Cancer Biology (392)
- Plant Sciences (385)
- Veterinary Medicine (381)
- Molecular Genetics (375)
- Neuroscience and Neurobiology (362)
- Institution
-
- University of Nebraska - Lincoln (1329)
- The Texas Medical Center Library (762)
- University of Kentucky (654)
- Old Dominion University (576)
- City University of New York (CUNY) (423)
-
- University of Arkansas, Fayetteville (421)
- Brigham Young University (348)
- University of South Florida (342)
- Wayne State University (319)
- Virginia Commonwealth University (278)
- Utah State University (251)
- Technological University Dublin (213)
- University of Central Florida (198)
- University at Albany, State University of New York (193)
- Loyola University Chicago (187)
- University of South Carolina (180)
- University of Texas at El Paso (172)
- University of Nevada, Las Vegas (170)
- Purdue University (161)
- University of the Pacific (158)
- Chapman University (155)
- Dartmouth College (150)
- University of Montana (148)
- Aga Khan University (135)
- University of Nebraska Medical Center (133)
- Rowan University (130)
- Himmelfarb Health Sciences Library, The George Washington University (126)
- University of Denver (124)
- California Polytechnic State University, San Luis Obispo (115)
- Wright State University (115)
- Keyword
-
- Humans (499)
- Animals (382)
- Mice (235)
- Biochemistry (229)
- Cancer (217)
-
- RNA (158)
- Apoptosis (146)
- DNA (139)
- Female (137)
- Chemistry (131)
- Biological sciences (130)
- Metabolism (127)
- Male (119)
- Mitochondria (114)
- Bioinformatics (107)
- Genetics (104)
- Protein (99)
- Biology (98)
- Inflammation (96)
- Proteins (95)
- Pure sciences (92)
- Proteomics (88)
- Phosphorylation (83)
- Biological Sciences (82)
- Breast cancer (80)
- College of Natural Science and Mathematics (80)
- Oxidative stress (80)
- Transcription (78)
- Mutation (77)
- Gene expression (76)
- Publication Year
- Publication
-
- Theses and Dissertations (662)
- Department of Biochemistry: Faculty Publications (592)
- Faculty, Staff and Students Publications (543)
- Electronic Theses and Dissertations (487)
- School of Veterinary and Biomedical Sciences: Faculty Publications (330)
-
- USF Tampa Graduate Theses and Dissertations (278)
- Graduate Theses and Dissertations (244)
- Faculty Publications (235)
- Chemistry and Biochemistry Faculty Publications (213)
- Dissertations, Theses, and Capstone Projects (213)
- Wayne State University Dissertations (213)
- Dissertations (207)
- Dissertations and Theses (Open Access) (206)
- Molecular and Cellular Biochemistry Faculty Publications (206)
- Honors Theses (191)
- Legacy Theses & Dissertations (2009 - 2024) (178)
- Chemistry Faculty Publications (176)
- Articles (141)
- Publications and Research (130)
- Open Access Theses & Dissertations (125)
- Department of Biological & Biomedical Sciences (121)
- Chemistry & Biochemistry Theses & Dissertations (119)
- Dartmouth Scholarship (114)
- Theses & Dissertations (112)
- Vadim Gladyshev Publications (110)
- Biology, Chemistry, and Environmental Sciences Faculty Articles and Research (105)
- Markey Cancer Center Faculty Publications (103)
- Biochemistry and Molecular Medicine Faculty Publications (102)
- All Graduate Theses and Dissertations, Spring 1920 to Summer 2023 (101)
- Loma Linda University Electronic Theses, Dissertations & Projects (99)
- Publication Type
- File Type
Articles 4531 - 4560 of 13692
Full-Text Articles in Biochemistry, Biophysics, and Structural Biology
Innovative Biological Solutions For Nitrogen Fixation, Mathangi Soundararajan
Innovative Biological Solutions For Nitrogen Fixation, Mathangi Soundararajan
All Graduate Theses and Dissertations, Spring 1920 to Summer 2023
Nitrogen is an important part of biological molecules like proteins and DNA and hence is essential for life as we know it. The most commonly found form of nitrogen is dinitrogen gas (N2) in the atmosphere, which is not accessible to most organisms. Conversion of N2 into a usable form (ammonia), occurs through an energy-demanding reaction called nitrogen fixation. As we think about sending humans to Mars, there is a need to develop technologies for nitrogen fixation to produce fertilizer and other valuable compounds to support life in those harsh conditions.
The Haber-Bosch process is used in …
Focal Adhesion Kinase And Src Mediate Microvascular Hyperpermeability Caused By Fibrinogen- Γc- Terminal Fragments, Richard S. Beard Jr.
Focal Adhesion Kinase And Src Mediate Microvascular Hyperpermeability Caused By Fibrinogen- Γc- Terminal Fragments, Richard S. Beard Jr.
Biomedical Research Institute Publications and Presentations
Objectives
We previously reported microvascular leakage resulting from fibrinogen-γ chain C-terminal products (γC) occurred via a RhoA-dependent mechanism. The objective of this study was to further elucidate the signaling mechanism by which γC induces endothelial hyperpermeability. Since it is known that γC binds and activates endothelial αvβ3, a transmembrane integrin receptor involved in intracellular signaling mediated by the tyrosine kinases FAK and Src, we hypothesized that γC alters endothelial barrier function by activating the FAK-Src pathway leading to junction dissociation and RhoA driven cytoskeletal stress-fiber formation.
Methods and results
Using intravital microscopy of rat mesenteric microvessels, we show increased extravasation …
An Analysis Of Crispr-Cas Gene Editing In Agriculture, Ashley Laliberte
An Analysis Of Crispr-Cas Gene Editing In Agriculture, Ashley Laliberte
Honors Scholar Theses
The CRISPR-Cas system is a promising form of gene editing, especially for the agriculture industry. The ability to make single-nucleotide edits within a gene of interest, without the need to introduce foreign DNA, is a powerful tool for designing healthier and more efficient crops and food animals. This system provides opportunity for increased nutritional value, decreased food waste, and more economically and environmentally sustainable food production. Though this biotechnology is facing mechanistic limitations due to off-target effects and inefficient homology-directed repair, vast improvements have already been made to improve its efficacy. The CRISPR-Cas system is already the most advanced form …
Antimicrobial Activity Of Extracts From The Leaves Of Marrubium Vulgare, Ashley Cravens
Antimicrobial Activity Of Extracts From The Leaves Of Marrubium Vulgare, Ashley Cravens
Undergraduate Theses
Natural products have served as powerful therapeutics against pathogenic bacteria since the golden age of antibiotics of the mid-20th century. In the United States, antibiotics are a key component of modern medicine and are one of the top written prescriptions every year. However, overuse and misuse of antibiotics has led to an increasing frequency of antibiotic-resistant infections. These infections are difficult and expensive to treat, often resulting in increased length of illness, hospital stays, and mortality rates. This demonstrates a clear need for novel antibiotics in for modern medicine. Murrubium vulgare (white horehound) is a shrub found in the Appalachia …
Effect Of Zinc On Microcystis Aeruginosa And Its Toxin Production, Jose L. Perez
Effect Of Zinc On Microcystis Aeruginosa And Its Toxin Production, Jose L. Perez
Seton Hall University Dissertations and Theses (ETDs)
Cyanobacteria harmful algal blooms (CHABs) are globally increasing biomasses of detrimental cyanobacteria due to anthropogenic water phosphorous and nitrogen loading and climate change. CHABs often produce secondary metabolites, cyanotoxins, that cause harmful effects to organisms, most water systems, and socioeconomic infrastructures. Additionally, the presence of heavy metal pollutant runoff in CHAB affected environments may result in CHAB population changes – aggravating toxigenicity. Zinc metal resistance and stress response were studied in microcystin (MC) cyanotoxin-producing Microcystis aeruginosa UTEX LB 2385 (M. aeruginosa UTEX LB 2385) and non-MC producing Microcystis aeruginosa UTEX LB 2386 (M. aeruginosa UTEX LB 2386) cyanobacteria. Molecular analysis …
A Study Of The Antioxidant Versus Pro-Oxidant Nature Of The Amyloid Beta Peptide And An Analysis Of The Natural Products, Isorhamnetin And Narignenin, As Antioxidants, Kaylee Holmes
Honors Theses
Alzheimer’s disease is a neurodegenerative disorder with no cure. Due to the widespread effects of this disease, abundant research efforts have gone towards finding a cure. The amyloid beta (Ab) peptide has been shown to be a potential cause of the disease due to destructive effects on tissues that it can have both by itself and through reactive oxygen species (ROS) generation. This study was performed in order to assess the structural properties of Ab42monomers, fibrils and oligomers, to assess the antioxidant versus pro-oxidant behavior of the Ab peptide, and to assess the antioxidant nature of the natural …
Mutagenesis Of Claudins To Probe In Vivo Interactions And Assemblies, Currey Zalman, Alex J. Vecchio
Mutagenesis Of Claudins To Probe In Vivo Interactions And Assemblies, Currey Zalman, Alex J. Vecchio
UCARE: Research Products
Paracellular transport of solutes and the control of the flow of molecules through the intracellular space in vertebrate epithelia is directed by tight junctions (TJs). Claudins form paracellular barriers and pores that determine tight junction permeability. This investigation attempts to explain the molecular bases for destruction and reconstruction of tight junctions within epithelial cells, occurring via both natural and disease-causing mechanisms. This interdisciplinary research is important in the advancement of our understanding of human biology and health, as different disruptions to epithelial tight junctions are hallmarks of many human diseases. The overall objective was to take previously made Claudin containing …
Meeting Radiation Dosimetry Capacity Requirements Of Population-Scale Exposures By Geostatistical Sampling., Peter K Rogan, Eliseos J Mucaki, Ruipeng Lu, Ben C Shirley, Edward Waller, Joan H M Knoll
Meeting Radiation Dosimetry Capacity Requirements Of Population-Scale Exposures By Geostatistical Sampling., Peter K Rogan, Eliseos J Mucaki, Ruipeng Lu, Ben C Shirley, Edward Waller, Joan H M Knoll
Biochemistry Publications
BACKGROUND: Accurate radiation dose estimates are critical for determining eligibility for therapies by timely triaging of exposed individuals after large-scale radiation events. However, the universal assessment of a large population subjected to a nuclear spill incident or detonation is not feasible. Even with high-throughput dosimetry analysis, test volumes far exceed the capacities of first responders to measure radiation exposures directly, or to acquire and process samples for follow-on biodosimetry testing.
AIM: To significantly reduce data acquisition and processing requirements for triaging of treatment-eligible exposures in population-scale radiation incidents.
METHODS: Physical radiation plumes modelled nuclear detonation scenarios of simulated exposures at …
The Role Of Reactive Oxygen Species In The Gut Immune Response Of Cat Fleas (Ctenocephalides Felis), Clark Hall
The Role Of Reactive Oxygen Species In The Gut Immune Response Of Cat Fleas (Ctenocephalides Felis), Clark Hall
Honors College Theses
Fleas transmit numerous deadly and debilitating diseases, including the causative agents of murine typhus and plague. Because initial entry of these infectious agents occurs while blood feeding, the immune response in the flea gut is considered to be the first line of defense against invading microbes. However, relatively few studies have identified the flea immune molecules that effectively resist or limit infection in the gut. In other hematophagous insects, an immediate immune response to imbibed pathogens is the generation of reactive oxygen species (ROS). In this study, we utilized cat fleas (Ctenocephalides felis) to investigate whether natural infections …
Methylation Of Salmonella Typhimurium Flagella Promotes Bacterial Adhesion And Host Cell Invasion, Julia A Horstmann, Michele Lunelli, Hélène Cazzola, Johannes Heidemann, Caroline Kühne, Pascal Steffen, Sandra Szefs, Claire Rossi, Ravi K Lokareddy, Chu Wang, Laurine Lemaire, Kelly T Hughes, Charlotte Uetrecht, Hartmut Schlüter, Guntram A Grassl, Theresia E B Stradal, Yannick Rossez, Michael Kolbe, Marc Erhardt
Methylation Of Salmonella Typhimurium Flagella Promotes Bacterial Adhesion And Host Cell Invasion, Julia A Horstmann, Michele Lunelli, Hélène Cazzola, Johannes Heidemann, Caroline Kühne, Pascal Steffen, Sandra Szefs, Claire Rossi, Ravi K Lokareddy, Chu Wang, Laurine Lemaire, Kelly T Hughes, Charlotte Uetrecht, Hartmut Schlüter, Guntram A Grassl, Theresia E B Stradal, Yannick Rossez, Michael Kolbe, Marc Erhardt
Department of Biochemistry and Molecular Biology Faculty Papers
The long external filament of bacterial flagella is composed of several thousand copies of a single protein, flagellin. Here, we explore the role played by lysine methylation of flagellin in Salmonella, which requires the methylase FliB. We show that both flagellins of Salmonella enterica serovar Typhimurium, FliC and FljB, are methylated at surface-exposed lysine residues by FliB. A Salmonella Typhimurium mutant deficient in flagellin methylation is outcompeted for gut colonization in a gastroenteritis mouse model, and methylation of flagellin promotes bacterial invasion of epithelial cells in vitro. Lysine methylation increases the surface hydrophobicity of flagellin, and enhances flagella-dependent adhesion of …
Methylation Of Salmonella Typhimurium Flagella Promotes Bacterial Adhesion And Host Cell Invasion., Julia A Horstmann, Michele Lunelli, Hélène Cazzola, Johannes Heidemann, Caroline Kühne, Pascal Steffen, Sandra Szefs, Claire Rossi, Ravi K Lokareddy, Chu Wang, Laurine Lemaire, Kelly T Hughes, Charlotte Uetrecht, Hartmut Schlüter, Guntram A Grassl, Theresia E B Stradal, Yannick Rossez, Michael Kolbe, Marc Erhardt
Methylation Of Salmonella Typhimurium Flagella Promotes Bacterial Adhesion And Host Cell Invasion., Julia A Horstmann, Michele Lunelli, Hélène Cazzola, Johannes Heidemann, Caroline Kühne, Pascal Steffen, Sandra Szefs, Claire Rossi, Ravi K Lokareddy, Chu Wang, Laurine Lemaire, Kelly T Hughes, Charlotte Uetrecht, Hartmut Schlüter, Guntram A Grassl, Theresia E B Stradal, Yannick Rossez, Michael Kolbe, Marc Erhardt
Department of Biochemistry and Molecular Biology Faculty Papers
The long external filament of bacterial flagella is composed of several thousand copies of a single protein, flagellin. Here, we explore the role played by lysine methylation of flagellin in Salmonella, which requires the methylase FliB. We show that both flagellins of Salmonella enterica serovar Typhimurium, FliC and FljB, are methylated at surface-exposed lysine residues by FliB. A Salmonella Typhimurium mutant deficient in flagellin methylation is outcompeted for gut colonization in a gastroenteritis mouse model, and methylation of flagellin promotes bacterial invasion of epithelial cells in vitro. Lysine methylation increases the surface hydrophobicity of flagellin, and enhances flagella-dependent adhesion of …
Mycobacteriophage Morphology As A Diagnostic For Cluster Assignment, Ethan Dionne
Mycobacteriophage Morphology As A Diagnostic For Cluster Assignment, Ethan Dionne
Chemistry & Biochemistry Student Scholarship
Major: Biochemistry
Faculty Mentor: Dr. Kathleen A. Cornely, Chemistry and Biochemistry
Phages are viral bodies that infect bacterial hosts, and have shown promising applications as alternatives to antibiotics for the treatment of bacterial infections. This project examines the morphology of siphoviridae mycobacteriophage, which have long, flexible, non-contractile tails as well as the characteristic head, called a capsid. Using electron microscopy photos of sequenced phages, tail length and capsid diameter were measured and compared to further characterize morphological relationships between genetically distinct phages. The data presented has the potential to work as a diagnostic tool to classify unsequenced phages to genetically …
Surface Mutations Promote Metal Ion Affinity In Haemophilus Influenzae Carbonic Anhydrase, Ella Sheehan
Surface Mutations Promote Metal Ion Affinity In Haemophilus Influenzae Carbonic Anhydrase, Ella Sheehan
Chemistry & Biochemistry Student Scholarship
Major: Biochemistry
Faculty Mentor: Dr. Kathleen Cornely, Chemistry and Biochemistry
αβ-Carbonic anhydrases are metalloenzymes that are essential to the growth of bacteria, making them a target for antibiotic research in the drug industry. These enzymes contain zinc ions that catalyze the hydration of carbon dioxide to bicarbonate for homeostatic balance. To enhance isolation, surface mutations were completed to introduce histidine residues because they demonstrate affinity for Ni-NTA resin in a column chromatography procedure. After generation and isolation of these mutants, the mutant HICA proteins can be used in a kinetic assay to observe the effect of mutation on the rate …
Towards The Development Of Low-Cost And Easily-Deployable Sensing Platforms For Phosphate, Maureen Pontarelli, Thomas Koch
Towards The Development Of Low-Cost And Easily-Deployable Sensing Platforms For Phosphate, Maureen Pontarelli, Thomas Koch
Chemistry & Biochemistry Student Scholarship
Maureen Pontarelli ’20
Major: Chemistry
Thomas Koch '20
Major: Biochemistry
Faculty Mentor: Dr. John Breen, Chemistry and Biochemistry
Exploration Of K2 Mycobacteriophages With Bred, Colby Agostino, Olivia Schmitt
Exploration Of K2 Mycobacteriophages With Bred, Colby Agostino, Olivia Schmitt
Chemistry & Biochemistry Student Scholarship
Colby Agostino ’22
Major: Biochemistry and Computer Science
Olivia Schmitt ’22
Major: Biochemistry
Faculty Mentor: Dr. Kathleen A. Cornely, Chemistry and Biochemistry
ZoeJ and Marcoliusprime are mycobacteriophage capable of infecting tuberculosis causing bacteria via the lytic and lysogenic cycles. The lytic cycle is the form of viral replication that results in cell death. Lysogeny involves phage DNA being integrated with the DNA of the host cell and preserved through binary fission. However, the bacteria causing tuberculosis do not die in the lysogenic phase. This research project will involve creating mutants of ZoeJ and Marcoliusprime that will not contain the genes …
Development Of New Methodology Towards Accessing 2-Imidazoline Scaffolds For Combatting Tuberculosis And Multiple Myeloma By Proteasome Modulation, Karen Saldarriaga, Victoria Rasmussen
Development Of New Methodology Towards Accessing 2-Imidazoline Scaffolds For Combatting Tuberculosis And Multiple Myeloma By Proteasome Modulation, Karen Saldarriaga, Victoria Rasmussen
Chemistry & Biochemistry Student Scholarship
Karen Saldarriaga ’20
Major: Biochemistry
Victoria Rasmussen '20
Major: Biology and Psychology
Faculty Mentor: Dr. Travis K. Bethel, Chemistry and Biochemistry
Multiple Myeloma (MM) is a disorder of differentiated B cells in which the inhibition of the proteasome is standard care. The current drug, bortezomib, used to treat MM is ineffective against drug tolerance where 97% of all patients become intolerant within a few years. Imidazoline scaffolds are capable of overcoming that resistance and delaying MM tumor growth. We believe we will be able to effectively yield imidazolines. Synthesis will occur with commercially available starting materials, making the process less …
385— Optimizing Nitrogen Concentrations To Maximize Lipid Yields For Biodiesel Production, Wady Jacoby, Daria Zhogina, Pavel Ananev, Lauren Saggese, Max Muller, Barnabas Gikonyo
385— Optimizing Nitrogen Concentrations To Maximize Lipid Yields For Biodiesel Production, Wady Jacoby, Daria Zhogina, Pavel Ananev, Lauren Saggese, Max Muller, Barnabas Gikonyo
GREAT Day Posters
Select subspecies of microalgae are considered to be the most promising candidates for third generation renewable resources of biodiesel. Algae not only ingest excess carbon emissions from the atmosphere, they also convert it into energy-dense lipids which can be harvested, and then transformed into biodiesel. However, before the fuel industry can adopt algae farming as a realistic alternative to fossil fuels, the process of harvesting algal lipids must be optimized further. Our research aims to make algal lipid extraction more realistic by determining the ideal growing conditions of the algae species Chlorella Vulgaris. Our research this semester focused on two …
295— Biomimicry: Investigating The Active Site Model Of Lactate Racemase, Stephanie Podguski, Maisy Ross
295— Biomimicry: Investigating The Active Site Model Of Lactate Racemase, Stephanie Podguski, Maisy Ross
GREAT Day Posters
Because of humans’ heavy impact on nature with industrialization and resource extraction, biomimetics, also known as biomimicry, is a study that has emerged. Biomimetics utilizes observations from nature to comprehend the principles of underlying mechanisms and apply concepts that may benefit science, medicine, engineering and the like. An area of biochemistry we are applying this to is the lactate racemase enzyme.This metalloenzyme is found in many prokaryotic organisms and catalyzes the interconversion between the two optical isomers of lactic acid. The structure of this enzyme consists of a square-planar nickel (II) ion coordinated by a histidine residue and a pincer …
470— Quantifying The Shape Of A Plant (Brassica Rapa) During Growth Under Different Light Intensities Using Fractal Geometry, Matthew Cotroneo
470— Quantifying The Shape Of A Plant (Brassica Rapa) During Growth Under Different Light Intensities Using Fractal Geometry, Matthew Cotroneo
GREAT Day Posters
Over time plants not only increase in size but also change their shape. Quantifying this change in shape, however, is challenging. Fractal dimension, a measure of how these plants fill space, can provide a wholistic understanding of plant shape and how that shape changes as the plants react to their environments. I used a high-resolution, three-dimensional scanner to estimate the shape of Brassica rapa plants during growth under three different light intensities: low (40 Einsteins), medium (75 Einsteins) and high (100 Einsteins). From these data, each plant's above-ground shape was quantified using fractal geometry. The fractal dimension (D) of plants …
206— Binding Of Telomeric Dna G-Quadruplexes By Abietane Diterpene Natural Products, Tarryn Franciosa, Sarah Ostrowski
206— Binding Of Telomeric Dna G-Quadruplexes By Abietane Diterpene Natural Products, Tarryn Franciosa, Sarah Ostrowski
GREAT Day Posters
G-quadruplexes are non-canonical higher order DNA structures formed from guanine rich sequences, made up of stacked G-tetrads stabilized by Hoogsteen base pairing and K+ ions. G-quadruplexes are overrepresented in the promoter regions of oncogenes and the 5’UTR of mRNA1. As a result, G-Quadruplexes have been implicated as targets for possible anti-cancer therapeutic agents to treat previously “undruggable” targets like the c-myc and ras oncogenes1. The human telomeric repeat, [5’G3(T2AG3)3], is a repeating, single stranded DNA sequence that can form G-quadruplexes. Telomerase, an enzyme expressed in ~90% of all cancers, is responsible for extending telomeric repeats, making cancer cells immortal. It …
Optimization Of Adc Linkers: Design And Evaluation Of A Fret-Based Adc Linker-Library, Jared T. Miller
Optimization Of Adc Linkers: Design And Evaluation Of A Fret-Based Adc Linker-Library, Jared T. Miller
Undergraduate Honors Theses
Success of Antibody-drug conjugates (ADCs) relies on the maintained integrity of a chemical linker fusing a therapeutic payload to a monoclonal antibody. Recent reports have revealed the lead linker ValCitPABC has poor stability in rodent models compared to mammalian counterparts, resulting in many clinical investigations predicting poorer ADC efficacy due to premature payload release in these model systems. Optimization of this chemical linker to be resistant both in mouse and human models would streamline ADC progression into clinical trials. Herein we describe the synthesis and development of a FRET-based assay for evaluating linker stability in vitro. Evaluation of lysosomal release …
Possible Roles For Essential Oils In Chemoprevention And Suppression Of Cancer, Chad Kirk Lillestolen
Possible Roles For Essential Oils In Chemoprevention And Suppression Of Cancer, Chad Kirk Lillestolen
Senior Honors Theses
Cancer represents one of the costliest and most prevalent diseases to afflict the modern world, even though treatments have evolved steadily over the years and produce an increasingly positive outlook with each development and innovation. Essential oils have been used medicinally- among other purposes- for thousands of years and have begun to attract attention for possible applications to the field of oncology. Numerous investigations and publications have shed light on the possible chemopreventative (antioxidant and antimetastatic) uses of these oils, alongside cancer suppressive (apoptosis-inducing and cytotoxic) abilities that they may possess. With the high annual incidence of cancer and the …
Chem 490: Characterization Of Cellular Targets And Derivatization Of A Lipogenic Pt Anticancer Therapeutic, Keira D. Naff, Jonathan D. White
Chem 490: Characterization Of Cellular Targets And Derivatization Of A Lipogenic Pt Anticancer Therapeutic, Keira D. Naff, Jonathan D. White
Virtual 2020 Spring Student Showcase for Research and Creative Inquiry
Platinum-based compounds have been a centerpiece of anticancer chemotherapies since the 1970s. Despite their widespread use, a seemingly endless challenge with these drugs is their toxicity, stemming from non-specific binding of Pt to cellular targets in healthy cells. Within the last few decades only a small number of new platinum-based drugs have demonstrated improved efficacy in any clinical trials, and none have received regulatory approval in the USA. Most of these efforts have focused on either developing improved methods of drug delivery, or on developing non-classical Pt complexes with alternative binding modes. We have begun to explore tethering Pt compounds …
Process Monitoring Of Moisture Content And Mass Transfer Rate In A Fluidised Bed With A Low Cost Inline Mems Nir Sensor, Claudio R Avila, Joan Ferré, Rodrigo Rocha De Oliveira, Anna De Juan, Wayne E Sinclair, Faiz M Mahdi, Ali Hassanpour, Timothy N Hunter, Richard A Bourne, Frans L Muller
Process Monitoring Of Moisture Content And Mass Transfer Rate In A Fluidised Bed With A Low Cost Inline Mems Nir Sensor, Claudio R Avila, Joan Ferré, Rodrigo Rocha De Oliveira, Anna De Juan, Wayne E Sinclair, Faiz M Mahdi, Ali Hassanpour, Timothy N Hunter, Richard A Bourne, Frans L Muller
Faculty, Staff and Students Publications
PURPOSE: The current trend for continuous drug product manufacturing requires new, affordable process analytical techniques (PAT) to ensure control of processing. This work evaluates whether property models based on spectral data from recent Fabry-Pérot Interferometer based NIR sensors can generate a high-resolution moisture signal suitable for process control.
METHODS: Spectral data and offline moisture content were recorded for 14 fluid bed dryer batches of pharmaceutical granules. A PLS moisture model was constructed resulting in a high resolution moisture signal, used to demonstrate (i) endpoint determination and (ii) evaluation of mass transfer performance.
RESULTS: The sensors appear robust with respect to …
Progress Presentation On The Proposed Function Of Protein 4diu Through Bioinformatics Analyses, Melissa Hoff
Progress Presentation On The Proposed Function Of Protein 4diu Through Bioinformatics Analyses, Melissa Hoff
Biochemistry and Molecular Biology Presentations
The BASIL project is a scientific inquiry project that aims to determine the function of a protein from its structure. Biochemistry students completed wet lab work, while structural biology students worked in silico. The purpose of this study was to determine the function of the protein with PDB ID: 4DIU. Bioinformatics analyses were completed using several databases: BLAST, Dali, Pfam, and Moltimate, and imaging of the protein was completed using PyMOL software. The BLAST database aligned the primary sequence with known protein sequences. The Dali database compared protein structure with known structures through global alignment. The Pfam database matched our …
Modeling The Alkaline Hydrolysis Of Diaryl Sulfate Diesters: A Mechanistic Study, Klaudia Szeler, Nicholas H. Williams, Alvan C. Hengge, Shina C. Kamerlin
Modeling The Alkaline Hydrolysis Of Diaryl Sulfate Diesters: A Mechanistic Study, Klaudia Szeler, Nicholas H. Williams, Alvan C. Hengge, Shina C. Kamerlin
Chemistry and Biochemistry Faculty Publications
Phosphate and sulfate esters have important roles in regulating cellular processes. However, while there has been substantial experimental and computational investigation of the mechanisms and the transition states involved in phosphate ester hydrolysis, there is far less work on sulfate ester hydrolysis. Here, we report a detailed computational study of the alkaline hydrolysis of diaryl sulfate diesters, using different DFT functionals as well as mixed implicit/explicit solvation with varying numbers of explicit water molecules. We consider the impact of the computational model on computed linear free-energy relationships (LFER) and the nature of the transition states (TS) involved. We obtain good …
Examining The Roles Of The Conserved Mrna Deadenylase Complex On Drosophila Neuronal Structures, Megan Mccaughey, Scott Barbee
Examining The Roles Of The Conserved Mrna Deadenylase Complex On Drosophila Neuronal Structures, Megan Mccaughey, Scott Barbee
DU Undergraduate Research Journal Archive
The most common cause of inherited mental deficiency and monogenetic cause of autism is Fragile X Syndrome (FXS). There is little known about the origins of this disease which will be investigated in the present study. The series of experiments conducted examined the potential role of mRNA deadenylation proteins as contributing factors to the pathogenesis of FXS using Drosophila melanogaster as a model organism. One of the main complexes involved in deadenylation is the CNOT complex, which is comprised of many proteins, including POP2, TWIN, and NOT3. Each protein plays a unique role within the CNOT complex. This goal of …
Synthesized Tripodal Amine As Potential Anti-Cancer Therapeutic, Abigail G. Mcnamee
Synthesized Tripodal Amine As Potential Anti-Cancer Therapeutic, Abigail G. Mcnamee
Honors College Theses
Cancer remains a prevalent disease today. This disease may manifest itself in many different ways and affect a variety of tissues with everything from the brain to the blood. With this wide diversity of cancer types, treatment can be complicated since there is not a “one size fits all” treatment for the disease. Surgery, radiation, and chemotherapy are all options that must be weighed with their benefits and side effects. Ultimately though, there are not enough effective treatment options available for every type of cancer. This leaves many with the grim prognosis of never being cured. With this clear need …
Faculty Spotlight—Dr. Phil Danielson, Hannah Stanley, William Moody
Faculty Spotlight—Dr. Phil Danielson, Hannah Stanley, William Moody
DU Undergraduate Research Journal Archive
Interview with Dr. Phil Danielson
Investigating The Toxicology Of Intramuscular Injected Cnt-Ab In Mice Followed By Microwave Hyperthermia., Conner Clark
Investigating The Toxicology Of Intramuscular Injected Cnt-Ab In Mice Followed By Microwave Hyperthermia., Conner Clark
Honors College Theses
The advent of carbon nanotubes (CNTs) has led to a wide range of research in various fields including cancer therapy for targeting specific localized and site-specific treatment. Carbon nanotubes bound to tumor specific antibodies (Ab) offers specific treatment for cancer cells without affecting surrounding tissue. This treatment makes use of infrared absorptive properties of nanotubes to incinerate both the nanotube and its associated tumor in vivo. We seek to affirm the initial results of CNT in cancer therapy by investigating the toxicological effect in mice injected with CNT-Ab followed by microwave hypothermia. After 1-week post-injection, mice were sacrificed followed …