Modification Of An Implant Material,
2017
Duquesne University
Modification Of An Implant Material, Emily Leung, Nina A. Reger, Ashley Blystone, Ellen S. Gawalt Phd
Undergraduate Research and Scholarship Symposium
Titanium metal is a commonly used implant material which can be colonized by bacteria. Biofilms are formed when bacteria colonizes, attaches to a surface, and immobilizes. Bacterial infections or biofilms are hard to treat once formed on the surface of a metal implant. Coating the material may minimize bacteria attachment. Self-assembled monolayers are comprised of molecules that contain both a head and tail group, and can be used to coat metal to prevent biofilm formation and bacteria growth. 12-mercaptododecylphosphonic acid self-assembled monolayers have a phosphonic acid head group and a thiol tail group. A solution of
12-mercaptododecylphosphonic acid in tetrahydrofuran …
Modification Of A Junior-Level Capstone Course To Incorporate Scientific Writing,
2017
Ohio Northern University
Modification Of A Junior-Level Capstone Course To Incorporate Scientific Writing, Bradley M. Wile
Chemistry and Biochemistry Faculty Scholarship
No abstract provided.
Technical Feasibility Of Selectively Separating Rare Earth Elements By Vapor Phase Extraction And Condensation,
2017
Montana Tech
Technical Feasibility Of Selectively Separating Rare Earth Elements By Vapor Phase Extraction And Condensation, Katie Lyons
Graduate Theses & Non-Theses
Experiments were performed to evaluate the technical feasibility of selectively separating selected rare earth halides (bromides and chlorides) using a volatilization and condensation technique. Initially, optimum chloridizing and bromidizing roast parameters were secured in studies performed on reagent grade rare earth oxide samples and subsequently confirmed in tests performed on mineral ore and concentrate samples. The volatilization and condensation experiments were performed by placing the subject rare earth halide samples in an argon-purged multiple-zone tube furnace wherein the temperature profile was controlled to establish separate vaporization and condensation regions. Following each experiment, condensate and solid residue samples were analyzed to …
Characterization Of The Mannose-6-Phosphate/Insulin-Like Growth Factor Ii Receptor Using 1-3mh,
2017
University of Nebraska at Omaha
Characterization Of The Mannose-6-Phosphate/Insulin-Like Growth Factor Ii Receptor Using 1-3mh, Zechariah Craig
UNO Student Research and Creative Activity Fair
The mannose-6-phosphate/insulin-like growth factor 2 receptor (M6P/IGF2R), a recombinant triplet protein receptor for studies involving receptor dimerization, plays a pivotal role in mediating cellular growth. This receptor is comprised of fifteen similar units that fold into five triplet subunits. The goal of this experiment is to investigate how to make the 1-3MH protein more stable at the DNA level and generate a larger yield from DNA extractions for more effective transfections. This was accomplished by minorly changing the protocols for the DNA purification. Instead of using a standard column DNA purification kit, a crude DNA purification was done instead. This …
Catalysis In Real Time Using X-Ray Lasers,
2017
Stockholm University
Catalysis In Real Time Using X-Ray Lasers, A. Nilsson, Jerry L. Larue, H. Öberg, H. Ogasawara, M. Dell’Angela, M. Beye, H. Öström, J. Gladh, J. K. Nørskov, W. Wurth, F. Abild-Pedersen, L. G. M. Pettersson
Biology, Chemistry, and Environmental Sciences Faculty Articles and Research
We describe how the unique temporal and spectral characteristics of X-ray free-electron lasers (XFEL) can be utilized to follow chemical transformations in heterogeneous catalysis in real time. We highlight the systematic study of CO oxidation on Ru(0001), which we initiate either using a femtosecond pulse from an optical laser or by activating only the oxygen atoms using a THz pulse. We find that CO is promoted into an entropy-controlled precursor state prior to desorbing when the surface is heated in the absence of oxygen, whereas in the presence of oxygen, CO desorbs directly into the gas phase. We monitor the …
Design Of Collagen-Mimetic Peptides,
2017
CUNY Graduate Center
Design Of Collagen-Mimetic Peptides, Parminder Jeet Kaur
Dissertations, Theses, and Capstone Projects
Collagen is the major component of the extracellular matrix and is involved in a wide range of cellular functions during tissue development and action. At the core of the diverse functions of this versatile protein is its remarkable ability to form supramolecular structures through self-assembly and/or through interactions with other biomolecules. One typical example of such supramolecular structure is the fibrils of collagen types I, II and III of the connective tissues. These fibrils have staggered arrangement of the laterally associated collagen triple helices – the structural unit of collagen – to form long, smooth fibrils with a characteristic 67 …
Iterative Non-Proteinogenic Residue Incorporation Yields Α/Β-Peptides With A Helix-Loop-Helix Tertiary Structure And High Affinity For Vegf,
2017
University of Nebraska-Lincoln
Iterative Non-Proteinogenic Residue Incorporation Yields Α/Β-Peptides With A Helix-Loop-Helix Tertiary Structure And High Affinity For Vegf, James W. Checco, Samuel H. Gellman
Department of Chemistry: Faculty Publications
Inhibition of specific protein-protein interactions is attractive for a range of therapeutic applications, but the large and irregularly shaped contact surfaces involved in many such interactions make it challenging to design synthetic antagonists. Here, we describe the development of backbone-modified peptides containing both α- and β-amino acid residues (“α/β-peptides”) that target the receptor-binding surface of vascular endothelial growth factor (VEGF). Our approach is based on the Z-domain, which adopts a three-helix bundle tertiary structure. We show how a two-helix “mini-Z-domain” can be modified to contain β and other non-proteinogenic residues while retaining the target-binding epitope using iterative non-natural residue incorporation. …
Safer Chemicals Design Diagrams,
2017
Yale University
Safer Chemicals Design Diagrams, Longzhu Shen, Fjodor Melnikov, John Roethle, Aditya Gudibanda, Richard Judson, Julie Zimmerman, Paul Anastas
Yale Day of Data
The NRF2-ARE antioxidant pathway is an important biological sensing and regulating system that responds to chemical insults. At minute level, it protects a living species to go through hard environmental conditions. However, when the external disruption exceeds the inherent resilience, cellular damage can occur, eventually leading to cytotoxicity. Therefore, studying the likelihood of a chemical activating the NRF2-ARE pathway is interesting to discovering therapeutic agents and designing safer chemicals. In this research, we engaged a combination of computational chemistry, statistical learning and mechanistic toxicology to estimate the likelihood of a chemical to perturb this critical toxicological pathway and derive a …
Fluorogenic Protein Labeling Using A Genetically
Encoded Unstrained Alkene,
2017
University of Nebraska-Lincoln
Fluorogenic Protein Labeling Using A Genetically Encoded Unstrained Alkene, Xin Shang, X. Song, C. Faller, R. Lai, H. Li, R. Cerny, Wei Niu, Jiantao Guo
Department of Chemistry: Faculty Publications
We developed a new fluorogenic bioorthogonal reaction that is based on the inverse electron-demand Diels–Alder reaction between styrene (an unstrained alkene) and a simple tetrazine. The reaction forms a new fluorophore with no literature precedent. We have identified an aminoacyl-tRNA synthetase/tRNA pair for the efficient and site-specific incorporation of a styrene-containing amino acid into proteins in response to amber nonsense codon. Fluorogenic labeling of purified proteins and intact proteins in live cells were demonstrated. The fluorogenicity of the styrene–tetrazine reaction can be potentially applied to the study of protein folding and function under physiological conditions with low background fluorescence interference.
Soft Robotic Actuators,
2017
Santa Clara, CA
Soft Robotic Actuators, Filip Ilievski, Xin Chen, Aaron D. Mazzeo, George M. Whitesides, Robert F. Shepherd, Ramses V. Martinez, Won Jae Choi, Sen Wai Kwok, Stephen A. Morin, Adam Stokes, Zhihong Nie
Department of Chemistry: Faculty Publications
A soft robotic device includes a flexible body having a width, a length and a thickness, wherein the thickness is at least 1 mm, the flexible body having at least one channel disposed within the flexible body, the channel defined by upper, lower and side walls, wherein at least one wall is strain limiting; and a pressurizing inlet in fluid communication with the at least one channel, the at least one channel positioned and arranged such that the wall opposite the strain limiting wall preferentially expands when the soft robotic device is pressurized through the inlet.
Fidelity Of Implementation: An
Overlooked Yet Critical Construct To
Establish Effectiveness Of Evidence-Based
Instructional Practices,
2017
University of Nebraska-Lincoln
Fidelity Of Implementation: An Overlooked Yet Critical Construct To Establish Effectiveness Of Evidence-Based Instructional Practices, Marilyne Stains, Trisha Vickrey
Department of Chemistry: Faculty Publications
The discipline-based education research (DBER) community has been invested in the research and development of evidence-based instructional practices (EBIPs) for decades. Unfortunately, investigations of the impact of EBIPs on student outcomes typically do not characterize instructors’ adherence to an EBIP, often assuming that implementation was as intended by developers. The validity of such findings is compromised, since positive or negative outcomes can be incorrectly attributed to an EBIP when other factors impacting implementation are often present. This methodological flaw can be overcome by developing measures to determine the fidelity of implementation (FOI) of an intervention, a construct extensively studied in …
Fluorogenic Protein Labeling Using A Genetically
Encoded Unstrained Alkene,
2017
University of Nebraska-Lincoln
Fluorogenic Protein Labeling Using A Genetically Encoded Unstrained Alkene, X. Shang, X. Song, C. Faller, R. Lai, H. Li, Ronald Cerny, Wei Niu, Jiantao Guo
Department of Chemistry: Faculty Publications
We developed a new fluorogenic bioorthogonal reaction that is based on the inverse electron-demand Diels–Alder reaction between styrene (an unstrained alkene) and a simple tetrazine. The reaction forms a new fluorophore with no literature precedent. We have identified an aminoacyl-tRNA synthetase/tRNA pair for the efficient and site-specific incorporation of a styrene-containing amino acid into proteins in response to amber nonsense codon. Fluorogenic labeling of purified proteins and intact proteins in live cells were demonstrated. The fluorogenicity of the styrene–tetrazine reaction can be potentially applied to the study of protein folding and function under physiological conditions with low background fluorescence interference.
Closing The Science And Achievement Gap: Overlap Of The Next Generation Science Standards And Culturally Relevant Pedagogy,
2017
Hamline University
Closing The Science And Achievement Gap: Overlap Of The Next Generation Science Standards And Culturally Relevant Pedagogy, Brenna G. Bloome
Departmental Honors Projects
The United States is experiencing both a science gap and an achievement gap within science education. To shrink the science gap and prepare American students for the innovative and rigorous STEM career fields ahead, the Next Generation Science Standards (NGSS) were implemented in science education. Additionally, culturally relevant pedagogy was implemented in general education to alleviate the achievement gap. To ensure that all students are prepared to succeed in the competitive global world they are going to be a part of, science education needs to incorporate both NGSS and culturally relevant pedagogy. To examine the overlap of both pedagogies working …
Synthesis, Characterization, And Activity Of Co/Fe Alumina/Silica Supported Ft Catalysts And The Study Of Promoter Effect Of Ruthenium,
2017
Louisiana Tech University
Synthesis, Characterization, And Activity Of Co/Fe Alumina/Silica Supported Ft Catalysts And The Study Of Promoter Effect Of Ruthenium, Sunday Azubike Esumike
Doctoral Dissertations
The alumina and hybrid alumina-silica FT catalyst were prepared by one-step solgel/oil-drop methods using metal-nitrate-solutions (method-I), and nanoparticle-metaloxides (method-2). The nanoparticle-metal-oxides did not participate in solubility equilibria in contrast to metal nitrate in method-1 causing no metal ion seepage; therefore, method-2 yields higher XRF metal loading efficiency than method-1. The thermal analysis confirmed that the metal loading by method-1 and method-2 involved two different pathways. Method-1 involves solubility equilibria in the conversion of metal-nitrate to metal- hydroxide and finally to metal-oxide, while in method-2 nanoparticle-metal-oxide remained intact during sol-gel-oil-drop and calcination steps.
The alumina supported catalysts were dominated by γ-alumina …
Tying The Knot: Applications Of Topology To Chemistry,
2017
Student
Tying The Knot: Applications Of Topology To Chemistry, Tarini S. Hardikar
Honors Theses
Chirality (or handedness) is the property that a structure is “different” from its mirror image. Topology can be used to provide a rigorous framework for the notion of chirality. This project examines various types of chirality and discusses tools to detect chirality in graphs and knots. Notable theorems that are discussed in this work include ones that identify chirality using properties of link polynomials (HOMFLY polynomials), rigid vertex graphs, and knot linking numbers. Various other issues of chirality are explored, and some specially unique structures are discussed. This paper is borne out of reading Dr. Erica Flapan’s book, When Topology …
A Test Of The Principle Of Critical Point Universality In Chemistry,
2017
University of Alabama in Huntsville
A Test Of The Principle Of Critical Point Universality In Chemistry, Khamees Abuqutesh
Summer Community of Scholars Posters (RCEU and HCR Combined Programs)
No abstract provided.
In Silico Identification Of Oropouche Virus Protease Inhibitors,
2017
University of Alabama in Huntsville
In Silico Identification Of Oropouche Virus Protease Inhibitors, Cashmaron Crutcher
Summer Community of Scholars Posters (RCEU and HCR Combined Programs)
No abstract provided.
Computational Optimization And Characterization Of Molecularly Imprinted Polymers,
2017
University at Albany, State University of New York
Computational Optimization And Characterization Of Molecularly Imprinted Polymers, Jacob Jordan Terracina
Legacy Theses & Dissertations (2009 - 2024)
Molecularly imprinted polymers (MIPs) are a class of materials containing sites capable of selectively binding to the imprinted target molecule. Computational chemistry techniques were used to study the effect of different fabrication parameters (the monomer-to-target ratios, pre-polymerization solvent, temperature, and pH) on the formation of the MIP binding sites. Imprinted binding sites were built in silico for the purposes of better characterizing the receptor – ligand interactions. Chiefly, the sites were characterized with respect to their selectivities and the heterogeneity between sites.
Structure And Characterization Of A Class 3b Proline Utilization
A: Ligand-Induced Dimerization And Importance Of The
C-Terminal Domain For Catalysis,
2017
University of Missouri
Structure And Characterization Of A Class 3b Proline Utilization A: Ligand-Induced Dimerization And Importance Of The C-Terminal Domain For Catalysis, David A. Korasick, Thameesha T. Gamage, Shelbi Christgen, Kyle M. Stiers, Lesa J. Beamer, Michael T. Henzl, Donald F. Becker, John J. Tanner
Department of Chemistry: Faculty Publications
The bifunctional flavoenzyme proline utilization A (PutA) catalyzes the two-step oxidation of proline to glutamate using separate proline dehydrogenase (PRODH) and L-glutamate-y-semialdehyde dehydrogenase active sites. Because PutAs catalyze sequential reactions, they are good systems for studying how metabolic enzymes communicate via substrate channeling. Although mechanistically similar, PutAs vary widely in domain architecture, oligomeric state, and quaternary structure, and these variations represent different structural solutions to the problem of sequestering a reactive metabolite. Here, we studied PutA from Corynebacterium freiburgense (CfPutA), which belongs to the uncharacterized 3B class of PutAs.A2.7A˚ resolution crystal structure showed the canonical arrangement of PRODH, L-glutamate-y-semialdehyde dehydrogenase, …
Preventing Gene Expression Through The Interruption Of Dna Binding,
2017
Georgia Southern University
Preventing Gene Expression Through The Interruption Of Dna Binding, Olivia Perdue
Honors College Theses
The interruption of DNA binding is a gateway to the inhibition of unregulated expression of genes which can possibly lead to illnesses such as cancer and epilepsy. The goal of this research is to produce high affinity DNA binding molecules which could act to displace the binding of natural transcription factor thus reducing the over- or under-expression of various proteins. Literature shows that the interruption of DNA binding can be completed using both organic and inorganic means, such as by means of natural transcription factors like the NF-κB protein or with metal-ligand complexes in order to bind DNA. NF-κB, a …
