Development Of A Scalable Synthesis Of Hp-Β-Cd Pluronic Polyrotaxanes,
2015
Purdue University
Development Of A Scalable Synthesis Of Hp-Β-Cd Pluronic Polyrotaxanes, Joseph L. Skulsky, Elizabeth A. Slepko, Bradley P. Loren, David H. Thompson
The Summer Undergraduate Research Fellowship (SURF) Symposium
Polyrotaxanes are polymers that have macrocycles threaded onto them, analogous to beads threaded onto a string. These materials are used for a variety of different biomedical applications.1-3 The Thompson group has been developing 2-hydroxypropyl-β-cyclodextrin (HP-β-CD) polyrotaxanes as therapeutics for the treatment of Niemann-Pick Type C (NPC) disease. NPC is a debilitating genetic disorder where cholesterol accumulates in the lysosomes of cells.4 Developing a scalable process is crucial for the advancement of these materials as NPC therapeutics. The goal of this project is to optimize the only protocol for the synthesis of HP-β-CD/Pluronic polyrotaxanes in order to develop a …
Synthesis And Flammability Testing Of Epoxy Functionalized Phosphorous-Based Flame Retardants,
2015
University of Dayton
Synthesis And Flammability Testing Of Epoxy Functionalized Phosphorous-Based Flame Retardants, Vladimir Benin, Xuemei Cui, Alexander Morgan, Karl Seiwert
Chemistry Faculty Publications
Several potential new phosphorus-containing flame retardant molecules were evaluated for heat release reduction potential by incorporation of the molecules into a polyurethane, generated from methylene diphenyl diisocyanate and 1,3-propane diol. The heat release reduction potential of these substances was evaluated using the pyrolysis combustion flow calorimeter (PCFC). The polyurethanes were prepared in the presence of the potential flame retardants via solvent mixing and copolymerization methods to qualitatively evaluate their potential reactivity into the polyurethane prior to heat release testing. The functionality of the flame retardants was epoxide based that would potentially react with the diol during polyurethane synthesis. Flammability testing …
A Structurally-Tunable 3-Hydroxyflavone Motif For Visible Light-Induced Carbon Monoxide-Releasing Molecules (Corms),
2015
Utah State Univesity
A Structurally-Tunable 3-Hydroxyflavone Motif For Visible Light-Induced Carbon Monoxide-Releasing Molecules (Corms), Stacey N. Anderson, Jason M. Richards, Hector J. Esquer, Abby D. Benninghoff, Atta M. Arif, Lisa M. Berreau
Chemistry and Biochemistry Faculty Publications
Molecules that can be used to deliver a controlled amount of carbon monoxide (CO) have the potential to facilitate investigations into the roles of this gaseous molecule in biology and advance therapeutic treatments. This has led to the development of light-induced CO-releasing molecules (photoCORMs). A goal in this field of research is the development of molecules that exhibit a combination of controlled CO release, favorable biological properties (e.g., low toxicity and trackability in cells), and structural tunability to affect CO release. Herein, we report a new biologically-inspired organic photoCORM motif that exhibits several features that are desirable in a next-generation …
Characterization, Dna Binding And Cleavage Activities Of New Prodigiosin And Tambjamine Analogues And Their Cu²⁺ And Zn²⁺ Complexes,
2015
Portland State University
Characterization, Dna Binding And Cleavage Activities Of New Prodigiosin And Tambjamine Analogues And Their Cu²⁺ And Zn²⁺ Complexes, Karen Chichetu
Dissertations and Theses
Prodigiosins and tambjamines are natural compounds from bacterial and marine sources belonging to a family containing a common 4-methoxy-2,2'-bipyrrole core. These compounds have received a lot of interest due to their promising biological activities. Studies have suggested DNA as a potential therapeutic target for the natural prodigiosin and tambjamine due to their ability to facilitate oxidative DNA cleavage in the presence of Cu2+. Based on this we sought to study the metal binding activity of new prodigiosin and tambjamine analogues. A new prodigiosin analogue was synthesized and complexed with Cu2+. This revealed 1:1 complex formation between …
Antioxidant Mechanisms Of Glutathione Against Metal-Mediated Oxidative Dna Damage,
2015
Rose-Hulman Institute of Technology
Antioxidant Mechanisms Of Glutathione Against Metal-Mediated Oxidative Dna Damage, Elias Eteshola
Graduate Theses - Chemistry and Biochemistry
Oxidative damage of DNA strands has been strongly linked with the development of diseases such as certain cancers, cystic fibrosis and Parkinson’s, as well as aging. In intercellular reactions involving hydrogen peroxide endogenous metals have been shown to increase the generation of site-specific base modifications through their formation of reactive oxygen species (ROS). The damage markers measured via HPLC are the 8-hydroxy-2’-deoxyguanosine (8-OHdG) and the dA-N1 oxide markers. The current study deals with the reduced form of the sulfur antioxidant glutathione (GSH) and elucidating its ameliorating effects against ROS formation. Comparative studies with the known radical-scavenging sulfur antioxidant dimethyl sulfoxide …
Why Are The Nitro And Sulfone Groups Poor Hydrogen Bonders?,
2015
University of Nebraska-Lincoln
Why Are The Nitro And Sulfone Groups Poor Hydrogen Bonders?, Charles A. Kingsbury
Department of Chemistry: Faculty Publications
The interactions of water or methanol with nitromethane and dimethyl sulfone vs. comparison molecules, e.g. dimethylsulfoxide (DMSO), are reported. For nitromethane with water, the classical (edgewise) hydrogen bonded configuration is modestly stabilizing. However, the approach of water over the face of the nitro group is preferred in AM1 calculations. Generally, molecules such as sulfones and nitro compounds have lower energy bonding orbitals than sulfoxides. The energy of the n δ σ* interaction (e.g. nitro lone pair to O-H of water) thus is larger for the nitro and sulfone cases, and this interaction is less prevalent than other cases. Since …
Total Synthesis And Derivation Of Humulones And Lupulones As Possible Biologically Active Agents,
2015
University of Idaho
Total Synthesis And Derivation Of Humulones And Lupulones As Possible Biologically Active Agents, Lucas R. Sass, Kristopher V. Waynant (Mentor)
Idaho Conference on Undergraduate Research
Humulones and lupulones have affirmed themselves as key ingredients in the multi-billion dollar brewing industry. Originally exploited for their bacteriostatic properties, these compounds also exhibit high levels of biological activity against a variety of diseases. Although quantifiable, the isolation and separation of specific humulones and lupulones has proven difficult, thus establishing efficient synthetic routes will be of value to those desiring exact bittering qualities and to the pharmaceutical community. Our investigations are towards developing a synthetic route to a library of humulones, lupulones, and their derivatives as possible biologically active agents against myriad diseases. The key step in our efficient …
Asymmetric Synthesis And Transition Metal-Catalyzed Cross-Coupling Arylations Of Selected Organolithiums,
2015
University of Arkansas, Fayetteville
Asymmetric Synthesis And Transition Metal-Catalyzed Cross-Coupling Arylations Of Selected Organolithiums, Barry Kyle Sharp
Graduate Theses and Dissertations
My former boss, Dr. Gawley, always loved to say, “The world is chiral” (à la Pasteur). From DNA and proteins to hands and feet, it is obviously true. Also, a wide variety of chemical products exist as single enantiomers. Advances in chemical technology have greatly accelerated asymmetric synthesis in the past quarter century, and namely, organolithiums, have been shown to provide a versatile route to chiral natural products and biologically active molecules. Versatility arises from the array of methods that produce a chiral organolithium. Dynamic thermodynamic resolution (DTR) is considered one of the most practical methods, but among the others …
Novel Azole-Based Rearrangements,
2015
University of Arkansas, Fayetteville
Novel Azole-Based Rearrangements, Kolawole Folayele Ayinuola
Graduate Theses and Dissertations
This work describes efforts targeted at the development of novel reactivity modes for the Breslow intermediate, which was proposed by Breslow to explain the mechanism of action of thiamine-dependent enzymes. By employing this intermediate as a hydroxy-substituted N,S-ketene acetal, we successfully captured it via Claisen rearrangement towards the preparation of diaryl tertiary alcohol products that are isomers of the hitherto elusive intermediate. This strategy also constitutes an unusual disconnection for a Claisen rearrangement precursor.
We have also uncovered an unprecedented radical C-N bond scission of a Breslow intermediate when a fluorenyl group is installed on the azolium nitrogen atom. This …
Designing Fret Assays To Study Electrostatic Interactions Pertaining To The Binding Of Intrinsically Disordered Proteins,
2015
University of Arkansas, Fayetteville
Designing Fret Assays To Study Electrostatic Interactions Pertaining To The Binding Of Intrinsically Disordered Proteins, Ashley Ann Howard
Graduate Theses and Dissertations
Fibroblast growth factor receptor plays a major role in several biological processes. Without FGFR, a human cannot live. FGFR is involved in cell differentiation and wound healing. Of course, if FGFR signaling becomes unregulated, it causes severe distress in the body. Several cancers are contributed to high signaling levels, as well as developmental conditions like rickets and Kallmann’s syndrome. FGFR is thought to undergo an auto-inhibition (or self-regulatory) process in order to try to facilitate regulation. The exact method of this inhibition is currently unknown, but is proposed to involve the unstructured acid box region of FGFR. We developed a …
In Vitro Microdialysis Sampling Collection Of Volatile Organic Compounds (Voc's), Dodecafluoropentane (Ddfp) And Isoflurane,
2015
University of Arkansas, Fayetteville
In Vitro Microdialysis Sampling Collection Of Volatile Organic Compounds (Voc's), Dodecafluoropentane (Ddfp) And Isoflurane, Valerie Shannon Mckinney
Graduate Theses and Dissertations
Death by stroke occurs every four minutes to human beings. Strokes cause necrosis within the tissue of the brain due to deprivation of oxygen. Perfluorocarbons have the ability to transport oxygen to tissue and in return decrease cell death. Dodecafluoropentane (DDFP) is a volatile fluorocarbon and collection in vivo can be a challenge since this compound evaporates at room temperature. There is currently not an efficient collection method in vivo for compounds that are volatile. Without a method to collect DDFP it is impossible to be approved for clinical use since exact concentrations of the drug within the body will …
Diol-Mediated Versus Water-Mediated Proton Transfer Reactions,
2015
DePaul University
Diol-Mediated Versus Water-Mediated Proton Transfer Reactions, Angela Moses
DePaul Discoveries
The triple-proton-transfer reactions of 8H-1,8-naphthyridin-2-one (8H-naph) have been investigated by employing different ab initio quantum mechanical methods. The proton transfer reactions studied were facilitated through an adjacent 1,3-propanediol molecule or two adjacent water molecules. Identical proton transfer reactions were studied using a model system of 8H-naph to investigate the validity of computational approaches that use model systems to study more complex systems. The solvent effects on the structures were investigated for comparison to the initial gas phase calculations. The potential energy, reaction force, and work profiles were studied along the intrinsic reaction coordinate to monitor the developing proton transfer reactions.
Investigations Of Thioether Generation For S-D-Ribosyl-L-Homocysteine Synthesis,
2015
The University of San Francisco
Investigations Of Thioether Generation For S-D-Ribosyl-L-Homocysteine Synthesis, Brendan Corcoran
Master's Theses
Creation of the thioether linkage is a fundamental step for the chemical preparation of the bacterial quorum sensing molecule S-D-ribosyl-L-homocysteine (SRH). Although previous preparations of SRH and its analogues have been reported in the literature, they employ assorted methods with varied results. Therefore, a reassessment of the methodology used for synthetic preparation of the thioether bond in SRH-like molecules is here considered. This work examines four methods of thioether generation following two mechanisms, bimolecular nucleophilic substitution (SN2) and radical-initiated thiol-ene coupling, in an attempt to generate SRH in a more efficient and reproducible manner. Both mechanisms address …
The Synthesis And Study Of The Biological And Colloidal Properties Of Bolaamphiphiles,
2015
James Madison University
The Synthesis And Study Of The Biological And Colloidal Properties Of Bolaamphiphiles, Louis M. Damiano
Senior Honors Projects, 2010-2019
Over the past decade, antibiotic resistant bacteria have caused infections in patients throughout the world.[1] The rise in antibiotic resistance is primarily due to the misuse and overuse of antibiotics. [1] To counter the increase in antibiotic resistance, infection control mechanisms have been aggressively researched in recent years. In particular, drug delivery has become a focal point to fight antibiotic resistant infections.[2] Amphiphiles have a wide range of applications in the clinical setting, including the ability to inhibit bacterial transference because of their bactericidal activity. [3] Bolaamphiphiles are a subclass of amphiphiles that possess two or more hydrophilic …
Applications Of Organic Probes For Imaging And Analysis Of Different Cancer Cell Models,
2015
University of South Carolina - Columbia
Applications Of Organic Probes For Imaging And Analysis Of Different Cancer Cell Models, Hong Guan
Theses and Dissertations
Novel techniques for better studying cancer cell behavior and progression are extremely important. Our lab is interested in synthesizing specifically designed organic reagents and applying them in the studies of cancers. In this dissertation, we used organic probes to investigate cancer cells in the following topics: determination of amino acid concentration in different types of cancers, tumor toxicity of organic probes towards HER2 positive breast cancer cells, glycoproteins identification in breast cancer cells and development of enzyme activity assay for colon cancer cells.
The first chapter was focused on the determination of cysteine/homocysteine concentrations using turn-on sensors in cancer cells. …
Impact Of Ocean Acidification On Aphotic Biogeochemical Production Of Reactive Oxygen Species,
2015
University of South Carolina - Columbia
Impact Of Ocean Acidification On Aphotic Biogeochemical Production Of Reactive Oxygen Species, Sarah Ann Murphy
Theses and Dissertations
Reactive oxygen species (ROS) are critical to global maintenance of the global organic carbon cycle, sulfur cycle, oxygen cycle, and transition metal cycles. The primary source of ROS is commonly considered to be photolysis or photochemically driven reactions, however ROS also exist in aphotic zones. A geochemical mechanism for the same in dark environments based on the tidally driven, episodic movement of anoxic groundwaters through oxidized, Fe(III) rich sediments is shown. Predictive models were developed based on in vitro experiments and tested using sediment samples collected from a saline tidal creek in the estuary at Murrell’s Inlet, South Carolina. These …
Facile Method For Large Scale Alignment Of One Dimensional Nanoparticles And Its Biomedical Application,
2015
University of South Carolina - Columbia
Facile Method For Large Scale Alignment Of One Dimensional Nanoparticles And Its Biomedical Application, Sheng Feng
Theses and Dissertations
Topographical cues can profoundly affect cellular behaviors. This thesis investigate how to utilize the topographical cues generated by two techniques, flow assembly and electrospinning, to regulate cellular behaviors.
First of all, a facile and robust method to align one-dimensional (1D) nanoparticles (NPs) in large scale has been developed. Using flow assembly, representative rod-like nanoparticles, including tobacco mosaic virus (TMV), gold nanorods and bacteriophage M13, have been aligned inside capillaries by controlling flow rate and substrate surface properties. The properties of 1D NPs, such as stiffness and aspect ratio, play a critical role in the alignment. Furthermore, these hierarchically organized structures …
Tempo-Containing Romp Polymers As A Component For Treatment Of Traumatic Brain Injuries,
2015
Georgia Southern University
Tempo-Containing Romp Polymers As A Component For Treatment Of Traumatic Brain Injuries, Cameron H. Feriante
Honors College Theses
During a traumatic brain injury (TBI) sustained in combination with hemorrhagic shock the brain undergoes anoxic conditions resulting from swelling and blood loss. Traditional intravenous solutions are used to replace blood volume, but are unable to replace the blood’s oxygen carrying capacity. A proposed treatment based on isotonic solutions containing hemoglobin-based oxygen carriers (HBOC’s) which were intended to provide readily available oxygen was developed. However, cell-free hemoglobin was shown to have excessive oxidative potential. Polynitroxylated Pegylated Hemoglobin (PNPH) was developed to address this shortcoming. During PNPH synthesis a combination of polyethylene glycol (PEG) and (2,2,6,6-tetramethylpiperidin-1-yl)oxidanyl (TEMPO), is bound to the …
Fused Arene-Based Molecular Systems As Additives For Organic Photovoltaics,
2015
Western Kentucky University
Fused Arene-Based Molecular Systems As Additives For Organic Photovoltaics, Rachana Neesu
Masters Theses & Specialist Projects
Organic photovoltaics (OPVs) are mainly based on organic semiconducting small molecules, macromolecules, and polymers, which form an active layer in photovoltaics. They act as an active material in absorbing light and causing charge mobility to generate electricity from sunlight. This thesis describes the molecular systems derived from fused arenes such as anthracene, pyrene, carbazole and thiophene for use as either a donor or an acceptor component of the active layer of OPVs. Two novel molecular systems (9- anthracenecarboxy-1-methylpyrene, (1) and Py-bi-TH-ANT, (2) were prepared using Steglich esterification and Grignard metathesis followed by Kumada coupling. The molecular structure of each was …
Methodology Development In Green Chemistry: Oxoammonium Salt Oxidations And Fluoroform Incorporation,
2015
University of Connecticut - Storrs
Methodology Development In Green Chemistry: Oxoammonium Salt Oxidations And Fluoroform Incorporation, Rebecca J. Wiles
University Scholar Projects
Central to the advancement of small molecule synthesis is the ability to develop methodologies that reimagine well known chemistry in a new, environmentally friendly manner. In this thesis two central themes emerge: oxoammonium salt oxidations and trifluoromethyl incorporation using fluoroform gas. Several projects have been developed surrounding oxoammonium salt chemistry, which are featured by their mild conditions, ease of use, and the metal-free, recyclable nature of the oxidant. Trifluoromethylation using fluoroform gas finds its utility in the use of a potent greenhouse gas waste product as a benchtop reagent.
