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Articles 2881 - 2910 of 13714
Full-Text Articles in Entire DC Network
The Role Of Free Radicals In The Activation Of Epidermal Growth Factor Receptors In Murine Microglial Cells, Eliana John
The Role Of Free Radicals In The Activation Of Epidermal Growth Factor Receptors In Murine Microglial Cells, Eliana John
Honors Theses
Regulation of cellular processes is important for proper functioning. Environmental factors, including stress, can interfere with cellular regulation. One of the diseases caused by cellular regulation disturbance is cancer and mutations in EGF-related genes highly correlate with worse outcomes in cancer. The Epidermal Growth Factor (EGF) pathway is involved in the regulation of cell growth and differentiation. Phosphorylation of the receptors activates this pathway, leading to cell growth and regulation. This study examines the impact of oxidative stress on EGF pathway activation. Previous studies using breast cancer lines have indirectly shown a decrease in Epidermal Growth Factor Receptor (EGFR) activation …
Exploring Indicator Displacement Assays For Phosphate Detection In Seawater, Francis Radics
Exploring Indicator Displacement Assays For Phosphate Detection In Seawater, Francis Radics
Chemistry & Biochemistry Student Scholarship
Francis Radics ’22
Major: Biochemistry
Faculty Mentor: Dr. John Breen, Chemistry and Biochemistry
Indicator displacement assays are based on the optical signal modulation of a noncovalently bound indicator upon dissociation by an analyte species. Our work has focused on exploring the lower detection limits for luminescent displacement assays for inorganic phosphate in seawater using complex ions containing two di(2-picolyl)amine ligands (also called DPA or bis(2-pyridylmethyl)amine), each coordinating a zinc cation. Following the work of B.D. Smith and coworkers, we have prepared three ligands by covalently attaching two DPA moieties, 2,6-bis(chloromethyl) benzene, and 2,6-bis(chloromethyl)-4-methylphenol, and 1,2-phenylenedimethylamine, for assays with 6,7-dihydroxy-4-methanesulfonic acid …
Investigation Of Cotinine Concentration Found In Saliva Of Smokers And Vapers In Demographic Sectors, Seth A. Sims
Investigation Of Cotinine Concentration Found In Saliva Of Smokers And Vapers In Demographic Sectors, Seth A. Sims
Honors Theses
A simple and reproducible method for investigation of cotinine and nicotine levels in saliva was developed by utilizing gas chromatography mass spectrometry (GCMS) and simple extraction techniques. This method allowed for accurate detection of cotinine in saliva samples collected within a 50-mile radius of Searcy, AR. The observed cotinine levels proportionately depict nicotine levels, which were then compared with participants’ demographics, displaying trends among different communities. This research hopes to provide insight into vaping popularity as well as a reproducible method that future research can utilize.
A Patient-Derived Ipsc Model To Study Glutamate Deficiency By Shank-3 Mutation In Autism Spectrum Disorder, Tiffany Berry, Courtney Caccia
A Patient-Derived Ipsc Model To Study Glutamate Deficiency By Shank-3 Mutation In Autism Spectrum Disorder, Tiffany Berry, Courtney Caccia
Biology Student Scholarship
Tiffany Berry ’22, Majors: Biology and Psychology
Courtney Caccia ’22, Majors: Biology and Psychology
Faculty Mentor: Dr. Charles Toth, Biology
The use of human stem cell lines derived from persons with Autism Spectrum Disorder (ASD) provides a unique opportunity to model brain growth and potential to regain brain activity for treatment. Our lab has previously used stem cells to derive 3D cardiomyocytes to examine cardiovascular disease as well as kidney organoids and macrophages to study kidney disease. Using techniques our lab has learned using these stem cell models have prepared us to examine cell communication in mutated neurons. We will …
The Discovery And Analysis Of Mycobacteriophage “Rita”, Anna Fakhri
The Discovery And Analysis Of Mycobacteriophage “Rita”, Anna Fakhri
Chemistry & Biochemistry Student Scholarship
Anna Fakhri ’24
Major: Biochemistry
Faculty Mentor: Dr. Kathleen Cornely, Chemistry and Biochemistry
Mycobacteriophage “Rita” was isolated on Mycobacterium smegmatis mc2155 from an enriched soil sample from North Easton, Massachusetts. As Rita infects Mycobacterium smegmatis, further study of the phage was completed in order to determine its ability to be utilized in phage therapy for infections caused by pathogenic Mycobacterium, such as Mycobacterium tuberculosis and Mycobacterium abscessus. Once isolated, the phage DNA was analyzed through PCR to determine the phage belonged to cluster F and subcluster F1. The phage DNA was sequenced, and a genome annotation was completed. The annotation …
Evaluating Alternative Ebullition Models For Predicting Peatland Methane Emission And Its Pathways Via Data–Model Fusion, Shuang Ma, Lifen Jiang, Rachel M. Wilson, Jeff P. Chanton, Scott Bridgham, Shuli Niu, Colleen M. Iversen, Avni Malhotra, Jiang Jiang, Xingjie Lu, Jason Keller, Xiaofeng Xu, Daniel M. Ricciuto, Paul J. Hanson, Yiqi Luo
Evaluating Alternative Ebullition Models For Predicting Peatland Methane Emission And Its Pathways Via Data–Model Fusion, Shuang Ma, Lifen Jiang, Rachel M. Wilson, Jeff P. Chanton, Scott Bridgham, Shuli Niu, Colleen M. Iversen, Avni Malhotra, Jiang Jiang, Xingjie Lu, Jason Keller, Xiaofeng Xu, Daniel M. Ricciuto, Paul J. Hanson, Yiqi Luo
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
Understanding the dynamics of peatland methane (CH4) emissions and quantifying sources of uncertainty in estimating peatland CH4 emissions are critical for mitigating climate change. The relative contributions of CH4 emission pathways through ebullition, plant-mediated transport, and diffusion, together with their different transport rates and vulnerability to oxidation, determine the quantity of CH4 to be oxidized before leaving the soil. Notwithstanding their importance, the relative contributions of the emission pathways are highly uncertain. In particular, the ebullition process is more uncertain and can lead to large uncertainties in modeled CH4 emissions. To improve model simulations …
Alzheimer's Disease: A Comprehensive Review Including Personal Experience From Retirement Home Patients, Sydney Fox
Alzheimer's Disease: A Comprehensive Review Including Personal Experience From Retirement Home Patients, Sydney Fox
Honors Theses
Alzheimer’s Disease is a neurodegenerative illness and disease, the most common type of dementia, and the sixth leading cause of death (Sá et al., 2012). The disease was discovered in 1906 and named after Dr. Alois Alzheimer, a psychiatrist and neuropathologist. Over time, a variety of hypotheses have developed regarding the cause behind this multifactorial disease, and these will be disclosed in a later section. Nonetheless, the disease was first observed in changes of the brain tissue of a woman who was said to have die from an unusual mental illness with many abnormal bumps. These bumps are now recognized …
Foldamers Reveal And Validate Therapeutic Targets Associated With Toxic Α-Synuclein Self-Assembly, Jemil Ahmed, Tessa C. Fitch, Courtney M. Donnelly, Johnson A. Joseph, Tyler D. Ball, Mikaela M. Bassil, Ahyun Son, Chen Zhang, Aurélie Ledreux, Scott Horowitz, Yan Qin, Daniel Paredes, Sunil Kumar
Foldamers Reveal And Validate Therapeutic Targets Associated With Toxic Α-Synuclein Self-Assembly, Jemil Ahmed, Tessa C. Fitch, Courtney M. Donnelly, Johnson A. Joseph, Tyler D. Ball, Mikaela M. Bassil, Ahyun Son, Chen Zhang, Aurélie Ledreux, Scott Horowitz, Yan Qin, Daniel Paredes, Sunil Kumar
Chemistry and Biochemistry: Faculty Scholarship
Parkinson’s disease (PD) is a progressive neurodegenerative disorder for which there is no successful prevention or intervention. The pathological hallmark for PD involves the self-assembly of functional Alpha-Synuclein (αS) into non-functional amyloid structures. One of the potential therapeutic interventions against PD is the effective inhibition of αS aggregation. However, the bottleneck towards achieving this goal is the identification of αS domains/sequences that are essential for aggregation. Using a protein mimetic approach, we have identified αS sequences-based targets that are essential for aggregation and will have significant therapeutic implications. An extensive array of in vitro, ex vivo, and in vivo assays …
Evaluating Alternative Ebullition Models For Predicting Peatland Methane Emission And Its Pathways Via Data–Model Fusion, Shuang Ma, Lifen Jiang, Rachel M. Wilson, Jeff P. Chanton, Scott Bridgham, Shuli Niu, Colleen M. Iversen, Avni Malhotra, Jiang Jiang, Xingjie Lu, Yuanyuan Huang, Jason Keller, Xiaofeng Xu, Daniel M. Ricciuto, Paul J. Hanson, Yiqi Luo
Evaluating Alternative Ebullition Models For Predicting Peatland Methane Emission And Its Pathways Via Data–Model Fusion, Shuang Ma, Lifen Jiang, Rachel M. Wilson, Jeff P. Chanton, Scott Bridgham, Shuli Niu, Colleen M. Iversen, Avni Malhotra, Jiang Jiang, Xingjie Lu, Yuanyuan Huang, Jason Keller, Xiaofeng Xu, Daniel M. Ricciuto, Paul J. Hanson, Yiqi Luo
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
Understanding the dynamics of peatland methane (CH4) emissions and quantifying sources of uncertainty in estimating peatland CH4 emissions are critical for mitigating climate change. The relative contributions of CH4 emission pathways through ebullition, plant-mediated transport, and diffusion, together with their different transport rates and vulnerability to oxidation, determine the quantity of CH4 to be oxidized before leaving the soil. Notwithstanding their importance, the relative contributions of the emission pathways are highly uncertain. In particular, the ebullition process is more uncertain and can lead to large uncertainties in modeled CH4 emissions. To improve model simulations of CH4 emission and its pathways, …
Characterization Of Immunity Systems In A Cluster Phages, Katherine Cleary
Characterization Of Immunity Systems In A Cluster Phages, Katherine Cleary
Chemistry & Biochemistry Student Scholarship
Katherine Cleary ’23
Major: Biochemistry
Faculty Mentor: Dr. Kathleen A. Cornely, Chemistry and Biochemistry
Bacteriophages are viruses that infect bacteria. Bacteriophages may use two different cycles to infect their hosts, which are the lytic cycle and the lysogenic cycle. During the lysogenic cycle, the phage genome integrates into the bacteria chromosome and becomes a part of the host. If a phage remains in the lysogenic cycle, the host is susceptible to infection from other bacteriophages. This process is known as superinfection and it can have a variety of outcomes. Homoimmunity occurs when the phages have similar repressor proteins. Heteroimmunity occurs …
Eukaryotic Initiation Factor 4e (Eif4e) In Complex With Eif4e Binding Protein 1 (4e-Bp1) Binds With Higher Affinity To M7gpppn Cap Of A Subset Of Human Mrnas, Izza F. Nawaz
Theses and Dissertations
Fluorescence anisotropy binding assays were used to analyze the binding of eIF4E in complex with 4E-BP1 onto the 5’ m7G cap of a subset of mRNA that are known to carry cap-independent translation. These studies suggest that 4E-BP1 increases eIF4E binding affinity to 5’cap of both FGF-9 and HIF-1𝝰.
The Various Nervous System Drugs Commonly Used For Treatment And The Disparities In Availability Of These Drugs In Minority Groups, Iman Haurami
Honors Scholars Collaborative Projects
The nervous system is a complex network in our body that is responsible for actions, reflexes, and even sensations. With the brain being part of the CNS, many common nervous system disorders are due to a defect in the central nervous system and the functions of this organ. These disorders include mental health problems, degenerative diseases, seizures, infections, and other possible genetic diseases. Many of these diseases are common in society and constantly researched. Even though these diseases are common, treatment accessibility and effects on people of minority groups are overlooked compared to the focus on majority groups. For drug …
Targeting Platelets Using Ionic Liquid Coated Nanoparticles, Karen Mun Wong
Targeting Platelets Using Ionic Liquid Coated Nanoparticles, Karen Mun Wong
Honors Theses
Platelets are key players in our body’s inflammatory processes upon activation, which can create physiological problems. Researchers are actively seeking solutions by targeting platelets with therapeutics. The objective of the research in this thesis was to investigate a new and potentially less invasive drug delivery platform using nanoparticles. The topic of the project was to explore the world of ionic liquids and their abilities, when coated on nanoparticles, to bind to platelets. A library of choline carboxylic acid-based ionic liquids (ILs) was first synthesized via salt metathesis while PLGA-based nanoparticles were simultaneously being synthesized via the nanoprecipitation method. The ionic …
Effects Of Seasonal Variation Of Abiotic Factors On Edna Detection Of Two Groundwater Crayfish Species, Jared Prine Higgs
Effects Of Seasonal Variation Of Abiotic Factors On Edna Detection Of Two Groundwater Crayfish Species, Jared Prine Higgs
Honors Capstone Projects and Theses
No abstract provided.
Using Integrated Rate Equations To Analyze Acid Phosphatase Kinetics, Melissa Gouge
Using Integrated Rate Equations To Analyze Acid Phosphatase Kinetics, Melissa Gouge
ONU Student Research Colloquium
In an academic setting, enzyme kinetics are introduced by analysis of the initial rates using the Michaelis-Menten model. To better understand enzyme kinetics, a complete time course analysis will provide a larger set of data, including information on feedback or product inhibition. With this, the Lambert W function can be used to analyze the integrated rate equations. We have started our analysis with the enzyme, acid phosphatase. Inorganic phosphorus is a known competitive inhibitor of the acid phosphatase catalyzed hydrolysis of p-nitrophenylphosphate. Using the integrated form of the rate equation allows us to determine the relative relationship of the K …
Fast Photochemical Oxidation And Footprinting Of Proteins Via Trifluoromethyl Radical Chemistry, Elaine Morrow
Fast Photochemical Oxidation And Footprinting Of Proteins Via Trifluoromethyl Radical Chemistry, Elaine Morrow
Honors Theses
Fast photochemical oxidation of proteins (FPOP) is a useful tool in proteomics because of the ability for modifications to occur on the scale of microseconds which reduces the modifications to tertiary and quaternary structure allowing for more accurate labeling of the protein. Labels for FPOP are generated from various radicals in our experiments which include hydroxyl radicals and trifluoromethyl radicals. Hydroxyl radicals are easily generated by using an excimer laser (KrF laser, 248 nm) or a UV flash lamp (as a part of the Fox™ System) by the photolysis of hydrogen peroxide. Trifluoromethyl radicals, however, need hydroxyl radicals to be …
Eukaryotic Initiation Factor 4f Promotes A Reorientation Of Eukaryotic Initiation Factor 3 Binding On The 5 And The 3 Utrs Of Barley Yellow Dwarf Virus Mrna, Paul Powell, Usha Bhardwaj, Dixie Goss
Eukaryotic Initiation Factor 4f Promotes A Reorientation Of Eukaryotic Initiation Factor 3 Binding On The 5 And The 3 Utrs Of Barley Yellow Dwarf Virus Mrna, Paul Powell, Usha Bhardwaj, Dixie Goss
Publications and Research
Viral mRNAs that lack a 5 m 7 GTP cap and a 3 poly-A tail rely on structural elements in their untranslated regions (UTRs) to form unique RNA-protein complexes that regulate viral translation. Recent studies of the barley yellow dwarf virus (BYDV) have revealed eukaryotic initiation factor 3 (eIF3) plays a significant role in facilitating communication be- tween its 5 and 3 UTRs by binding both UTRs simultaneously. This report uses in vitro translation assays, fluorescence anisotropy binding assays, and selective 2 -hydroxyl acylation analyzed by primer ex-tension (SHAPE) footprinting to identify secondary structures that are selectively interacting with eIF3. …
Protein Engineering Of A Spectroscopic Probe Into Malate Dehydrogenase (Mdh), Equoia S. Gibson, Mary E. Ludwig, Olivia H. Thompson, Genevieve M. Woods, Ella M. Young
Protein Engineering Of A Spectroscopic Probe Into Malate Dehydrogenase (Mdh), Equoia S. Gibson, Mary E. Ludwig, Olivia H. Thompson, Genevieve M. Woods, Ella M. Young
Celebrating Scholarship and Creativity Day (2018-)
Malate dehydrogenase (MDH) is an enzyme that has a key role in biological processes, like the Krebs cycle. Specifically, it reversibly catalyzes the interconversion of (S)-malate with NAD+ to oxaloacetate and NADH. Once oxaloacetate is synthesized, MDH dispatches it to citrate synthase, but it is not clear how this happens. One theory is that MDH channels it to citrate synthase by forming a metabolon, a mechanism for direct channeling, preventing diffusion of reaction intermediates into a bulk matrix. There is a lack of research in this area due to the absence of a spectroscopic probe necessary to visualize MDH’s conformational …
Biochemical Analysis Of Biofilm Formation In Response To Changes In Concentrations Of D-Alanine, Jasmin Cruz, Akeisha Belgrave, Erica Ward
Biochemical Analysis Of Biofilm Formation In Response To Changes In Concentrations Of D-Alanine, Jasmin Cruz, Akeisha Belgrave, Erica Ward
Harrisburg University Research Symposium: Highlighting Research, Innovation, & Creativity
This project involves the biochemical analysis of biofilm formation in response to changes in concentration of D-alanine. I hypothesized that an increase in D-alanine concentration increases the ability for cells to make more cross-links, which increases the viability of bacteria allowing them to make more biofilms. The experiment done showed no significant difference in cell density between four treatment conditions. (Independent Research)
Bci Validation: Yfiler Plus Kit Validation, Chloe Koon
Bci Validation: Yfiler Plus Kit Validation, Chloe Koon
Honors Projects
In order to have access and use the Combined DNA Index System (CODIS), it is required by the Federal Bureau of Investigation's Quality Assurance Standards (FBI-QAS) for Forensic DNA Units to complete comprehensive validation studies on all equipment, materials, and methods used in the process of DNA analysis. This study continues validation previous done within the Ohio Bureau of Criminal Investigation (BCI). YFiler Plus is a DNA amplification kit that is used in cases where it is most useful to examine only male DNA profile(s) within a sample by amplifying loci only on the Y-Chromosome. Components of this study include …
Annual Faculty Research Symposium 2022, Oakwood University
Annual Faculty Research Symposium 2022, Oakwood University
Proceedings
No abstract provided.
Investigation Of The Role Of Overexpression Of Psbs Under Stress Inducible And Constitutive Promoters To Improve Water Use Efficiency., Annie Nelson
Honors Program: Senior Projects (Public)
As climate change continues to impact environmental growth conditions, it has become increasingly more important to identify potential mechanisms of crop development to resist these changes. Previous studies have identified the role of PsbS in the non-photochemical quenching (NPQ) mechanism in the plant by identifying its direct effect on the rate in which excitation energy absorbed by photosystem II is dissipated as heat. It was identified also that PsbS via NPQ oxidizes chloroplastic quinone A (QA) which is a signal for stomatal opening in response to light. By identifying this relationship between PsbS and the signal for stomatal opening in …
Synthesis And Characterization Of A Novel Reaction-Based Azaborine Fluorescent Probe Capable Of Selectively Detect Carbon Monoxide Based On Palladium-Mediated Carbonylation Chemistry, Samuel Moore, Carl Jacky Saint-Louis
Synthesis And Characterization Of A Novel Reaction-Based Azaborine Fluorescent Probe Capable Of Selectively Detect Carbon Monoxide Based On Palladium-Mediated Carbonylation Chemistry, Samuel Moore, Carl Jacky Saint-Louis
Symposium of Student Scholars
Azaborines are fascinating compounds because they possess valuable properties such as photochemical stability, have high molar absorption coefficient and high fluorescent quantum yields, as well as large Stokes shifts and tunable absorption/emission spectra. Here, we designed, synthesized, and will examine a novel reaction-based azaborine fluorescent probe capable of selectively detect carbon monoxide (CO) based on palladium-mediated carbonylation chemistry. This novel azaborine fluorescent probe will exhibit high selectivity for CO and display a robust turn-on fluorescent response in the presence of CO in aqueous buffer solution.
Ketal-Azaborine Versus Ketal-Azaborine With A Spacer: Structural Effects On The Photophysical Properties Of Tunable Heteroaromatic Polycyclic Chromophores, Albert Campbell, Janiyah Riley, Samuel Moore, Albert Campbell
Ketal-Azaborine Versus Ketal-Azaborine With A Spacer: Structural Effects On The Photophysical Properties Of Tunable Heteroaromatic Polycyclic Chromophores, Albert Campbell, Janiyah Riley, Samuel Moore, Albert Campbell
Symposium of Student Scholars
Flat-structured heteroaromatic polycyclic compounds with extended conjugated π-systems such as azaborines are in high demand in the material and imaging technology markets because of their unique features such as simultaneous tunability of fluorescence color and intensity. We have designed, synthesized, and investigated a series of novel conjugated thermally stable ketal-azaborine chromophores that contain a phenyl ring as a spacer between electronic moieties and the ketal-azaborine core as easily tunable high-luminescent organic materials. We investigated the impact of the phenyl spacer on the ketal-azaborine unit. We examined the structural effects on their photophysical properties by incorporating electron –donating and –withdrawing substituents …
Azaborine Versus Azaborine With A Spacer: Structural Effects On The Photophysical Properties Of Tunable Azaborine Chromophores, Kaia Ellis, Janiyah Riley, Lyric Gordon, Janiyah Riley
Azaborine Versus Azaborine With A Spacer: Structural Effects On The Photophysical Properties Of Tunable Azaborine Chromophores, Kaia Ellis, Janiyah Riley, Lyric Gordon, Janiyah Riley
Symposium of Student Scholars
Azaborines are fascinating compounds because of their valuable and interesting optical properties making them suitable to be utilized in many optoelectronic devices. We have designed, synthesized, and investigated a series of novel conjugated thermally stable azaborine chromophores by incorporating a phenyl ring as a spacer linking the chromophore to different electronic moieties as easily tunable high-luminescent organic materials. We investigated the effect of the phenyl spacer on the azaborine unit. The substituent effects of different electronic moieties were investigated by the insertion of electron –withdrawing and –donating moieties to the phenyl spacer. We examined the role of the electron –donating …
Microbial Diversity And Community Structure In Sediments Associated With The Seagrass (Thallassia Testudinum) In Apalachicola Bay, Florida, Rahma Ahmed, Thomas Mcelroy, Troy Mutchler
Microbial Diversity And Community Structure In Sediments Associated With The Seagrass (Thallassia Testudinum) In Apalachicola Bay, Florida, Rahma Ahmed, Thomas Mcelroy, Troy Mutchler
Symposium of Student Scholars
Seagrass is an angiosperm which provides many ecosystem services in coastal areas, such as providing food, shelter and nurseries for many species, and decreasing the impact of waves on shorelines. A global assessment reported that 29% of known seagrass meadows are in a state of decline due to the effects of human activity. Seagrass is commonly found in shallow marine waters where they form meadows containing a microbiome that plays an important role in providing nutrients for seagrass growth, though little is known about the microorganisms within the seagrass meadow sediments. Our project collected sediments from seagrass meadows and adjacent …
Investigating The Efficacy Of Tazemetosttat For In Vitro Treatment Of Human Triple Negative Breast Cancer Cells, Harshita Indukuri
Investigating The Efficacy Of Tazemetosttat For In Vitro Treatment Of Human Triple Negative Breast Cancer Cells, Harshita Indukuri
Honors Scholars Collaborative Projects
Cancer is a formidable, genetic disease that affects many people, either directly or indirectly. Breast cancer is the most commonly diagnosed cancer worldwide (31). Triple-negative breast cancer (TNBC) is a type of breast cancer that has a higher lethality compared to other breast cancers and has a poor prognosis due to its highly invasive nature and limited treatment options. Finding safe, effective, and accessible treatment for TNBC is integral to treating TNBC patients. Tazemetostat is an EZH2-inhibitor that has recently been approved for use in epithelioid sarcoma (23). EZH2 is an overexpressed protein in many cancers, including TNBC (11). However, …
A Photography-Based, Social Media Walking Intervention Targeting Autonomous Motivations For Physical Activity: Semistructured Interviews With Older Women, Michael C Robertson, Maria Chang Swartz, Ursela Christopherson, Jason R Bentley, Karen M Basen-Engquist, Debbe Thompson, Elena Volpi, Elizabeth J Lyons
A Photography-Based, Social Media Walking Intervention Targeting Autonomous Motivations For Physical Activity: Semistructured Interviews With Older Women, Michael C Robertson, Maria Chang Swartz, Ursela Christopherson, Jason R Bentley, Karen M Basen-Engquist, Debbe Thompson, Elena Volpi, Elizabeth J Lyons
Faculty, Staff and Students Publications
BACKGROUND: Older adult women are at risk for negative health outcomes that engaging in sustained physical activity can help prevent. However, promoting long-term maintenance of physical activity in this population has proven to be a challenge. Increasing autonomous motivations (ie, intrinsic, integrated, and identified regulations) for physical activity may facilitate enduring behavior change. Digitally delivered games for health that take a celebratory technology approach, that is, using technology to create new ways to experience valued behaviors and express valued beliefs, may be a useful way to target autonomous motivations for physical activity. Formative research with the target population is needed …
Improving Photosynthetic Efficiency In Microalgae Through The Genetic Engineering Of Energy Sensors And Photoreceptors, Taylor L. Britton
Improving Photosynthetic Efficiency In Microalgae Through The Genetic Engineering Of Energy Sensors And Photoreceptors, Taylor L. Britton
Biology ETDs
Through photosynthesis microalgae can convert sunlight, water, and CO2 into chemical energy that can be used to generate carbon neutral biofuels and biomass. With an ever-increasing demand and need for petroleum substitutes it is imperative that we improve the output of industrial-relevant crops such as microalgae. One important way of improving output in algae is by understanding the roles that stress and energy conversion is regulated in these organisms. Photosynthetic organisms fundamentally depend on light- and sugar-driven metabolic and signaling networks, which integrate environmental cues to govern and sustain growth and survival. SnRKs (SNF1-related protein kinases) and the photoreceptor …
Quantification Of Kaempferol Conjugates In Watercress Juice And Methanol Extract: A Study Using Hplc And Protein Binding, Laken Simington
Quantification Of Kaempferol Conjugates In Watercress Juice And Methanol Extract: A Study Using Hplc And Protein Binding, Laken Simington
Undergraduate Research Conference
Flavonoids are a large group of biologically active polyphenolic compounds found in plants, that have gained importance in recent years due to their potential medicinal and therapeutic properties of high potency and low systemic toxicity. Kaempferol (3,4′,5,7- tetrahydroxyflavone) is a polyphenol antioxidant dietary flavonoid found in a variety of fruits and leafy vegetables, specifically vegetables of the Brassica family, which includes our subject vegetable, watercress (WC) which is usually grown in marshy lands. Kaempferol (KMP) has been depicted to have revolutionary attribute in overall human health ranging from anti-cancerous to anti-inflammatory properties. Here we show a novel approach for quantifying …