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The Plastics Collection Reference Packet, Special Collections Research Center
The Plastics Collection Reference Packet, Special Collections Research Center
Special Collections
This reference packet is an informational tool to support further research into the history of plastics—whether interested in companies, individuals within the plastics industry's history, historical plastics materials, essays, and more. All content featured within this packet was previously published on the former plastics.syr.edu website as part of a Syracuse University Libraries and Special Collections Research Center (SCRC) partnership established in 2007 with the Plastics Pioneers Association (PPA)—an association of plastics industry professionals interested in preserving the plastics industry's past.
Engineering Temporal And Spatial Complexity In Biomaterial Scaffolds For Cardiac Disease Modeling And Mechanobiology, Chenyan Wang
Engineering Temporal And Spatial Complexity In Biomaterial Scaffolds For Cardiac Disease Modeling And Mechanobiology, Chenyan Wang
Dissertations - ALL
Temporal and spatial mechanical cues play an important role in heart development, function, and disease manifestation. A deeper understanding of cardiac mechanobiology is especially important for fundamental biology and clinical diagnosis or heart disease treatment. Currently, human induced pluripotent stem cells (hiPSCs) are widely used to build human cell or tissue models, but culturing them in a petri dish fail to recapitulate the mechanical complexity in the native heart. To create a mechanical environment with better pathophysiological relevance, biomaterial scaffolds are usually employed to mimic the mechanical cues originated from extracellular matrix (ECM) remodeling. The goal of this dissertation is …
Targeted Mesenchymal Stem Cell Differentiation From Induced Pluripotent Stem Cells For Therapeutic Application, Tackla Winston
Targeted Mesenchymal Stem Cell Differentiation From Induced Pluripotent Stem Cells For Therapeutic Application, Tackla Winston
Dissertations - ALL
Over the past decade, mesenchymal stem cells have increasingly gained interest as a cell source for the treatment of a variety of diseases. This is because they play several roles in tissue homeostasis and regeneration, such as altering the immune response to limit inflammation, aiding tissue repair through the release of various proteins, cytokines and growth factors, or differentiating into functional cells in specific tissues. The interest in MSCs for biomanufacturing applications has resulted in the development of various protocols to differentiate them from pluripotent sources. These protocols, however, fail to account for the differences that exist between MSCs from …
Design Of Novel Metalloenzymes And Investigation Of Protein-Metal Interactions, Alona Kulesha
Design Of Novel Metalloenzymes And Investigation Of Protein-Metal Interactions, Alona Kulesha
Dissertations - ALL
Metalloproteins are the proteins that utilize metals or metal complexes as cofactors and exhibit a wide range of functions from oxygen transport and regulation of transcription to hydroxylation of alkanes and water splitting, even though they employ a limited set of metals and metal-binding ligands. The investigation of metalloprotein amino acid sequence, structure and function relationships can uncover the principles behind natural metalloprotein design and opens the possibility of their implication as scaffolds for the design of novel catalysts and biomaterials. Protein engineering is a set of techniques that allows to install new functionalities into existing proteins or to design …
Leveraging Isocyanate Chemistry For Low Cost And Highly Functional Hydrogels, Henry Beaman
Leveraging Isocyanate Chemistry For Low Cost And Highly Functional Hydrogels, Henry Beaman
Dissertations - ALL
The development of novel biomaterials is an important step in providing higher quality products for wound healing, drug delivery, and tissue engineering. Progress is consistently being made in the development of new polymers, yet new polymer systems are often expensive and/or involve complex multistep synthesis methods. These limitations could hinder the translation and scalability of functionalized materials. To address the issues of complex synthesis and high cost, we have devised strategies for polymeric modification using isocyanate chemistry. Isocyanates are used in the manufacturing of polyurethanes. Isocyanates are highly reactive with common functional groups, such as amines, hydroxyls, and carboxylic acids. …
Bag3 Mutation Interferes Myofibril Integrity Of Hipsc-Derived Cardiomyocytes On A Dynamic Substrate, Xiangjun Wu
Bag3 Mutation Interferes Myofibril Integrity Of Hipsc-Derived Cardiomyocytes On A Dynamic Substrate, Xiangjun Wu
Theses - ALL
No abstract provided.
Effects Of Surface Topography On Macrophages And Bacterial Cells, Joseph Carnicelli
Effects Of Surface Topography On Macrophages And Bacterial Cells, Joseph Carnicelli
Theses - ALL
An association has been found between the texture of breast implants and anaplastic large cell lymphoma, which led to some textured implants to be withdrawn from the market in 2019. There is evidence that these cancers are associated with the harboring of bacteria on the surfaces of the textured implants. It is possible that specific topographic features hinder the removal of attached bacteria by inhibiting macrophage phagocytosis or promoting biofilm formation. Here we examine how bacteria and macrophages interact with recessive surface topographies as analogs to the surfaces seen on textured breast implants. Changes in bacteria morphology were observed among …
Advanced In Vitro Models For Studying Bone Physiology, Kairui Zhang
Advanced In Vitro Models For Studying Bone Physiology, Kairui Zhang
Dissertations - ALL
Bone is a highly calcified organic-inorganic composite tissue with complicated hierarchical structure. The presence of complex multi-cellular organization within opaque mineralized matrix makes it challenging to use conventional methods to study in vivo bone physiology even using model animals. To address this challenge, numerous in vitro models have been developed to study bone physiology under well-defined and repeatable experimental conditions although proving their physiological relevance remains a key challenge. This work aims to design and develop new in vitro models that better represent in vivo bone physiology with defined control over chemical and physical microenvironments, at low costs and high …
Fabrication Of Polymeric Microparticles Loaded With Zoledronic Acid To Treat Osteoarthritis, Yohely Maria Espiritusanto
Fabrication Of Polymeric Microparticles Loaded With Zoledronic Acid To Treat Osteoarthritis, Yohely Maria Espiritusanto
Theses - ALL
Osteoarthritis (OA), a disease caused by wearing and tearing of articular cartilage, affectsover 32.5 million Americans. Synovial inflammation is now recognized as a major contributor to OA progression and pain. Activated synovial macrophages in an OA joint are believed to play a major role in low grade inflammation found in OA. Bisphosphonates such as zoledronic acid (ZA) are known to induce apoptosis specifically in macrophages and several of them are being evaluated as a disease-modifying osteoarthritis drug in clinical trials. However, ZA is rapidly cleared from the joint after systemic or localized direct injection into the joint. In this study …
Manipulated Electrochemical Surface Reactions Induced By Oscillatory Electric Potentials On Metal Based Electrodes, Thomas Stone Welles
Manipulated Electrochemical Surface Reactions Induced By Oscillatory Electric Potentials On Metal Based Electrodes, Thomas Stone Welles
Dissertations - ALL
This research effort investigates the manipulation of surface electrochemical reactions induced by oscillating electric potentials on the surface of metal-based electrodes. Specifically, this research presents experimental data identifying modified electrochemical surface reactions caused by low magnitude electric potential oscillations on multilayered catalytic membranes and on implanted biometallic alloys. The scope of this effort consists of four major components: (1) perform an exhaustive literature review and analysis of the current understanding in applied surface electrochemistry and develop potential theoretical frameworks by which to interpret the experimental results; (2) identify the electrochemical manipulation via electrical oscillation while reacting nitric oxide on a …
Atomistic Investigation Of Nucleosomal H3 Histone Tail In Unmodified And Epigenetically Modified States, Kathryn Piston
Atomistic Investigation Of Nucleosomal H3 Histone Tail In Unmodified And Epigenetically Modified States, Kathryn Piston
Dissertations - ALL
Epigenetics is a growing area of research that could potentially unlock the understanding of questions like how and why we develop certain diseases, how we age, how we inherit certain traits and even how our species evolves. Epi is a prefix meaning above, referring to chemical tags that sit above your genetics and dictate gene expression. Although there are many known links between certain epigenetic tags and diseases like cancer, the molecular mechanisms behind these links remains elusive. Gaining a novel understanding of the behavior of key biological targets for cancer like the histone H3 tail motivated this work. Histone …
Shape Memory Polymer Foaming With Tunable Interconnectivity Using Off-The-Shelf Foaming Components, Natalie Marie Petryk
Shape Memory Polymer Foaming With Tunable Interconnectivity Using Off-The-Shelf Foaming Components, Natalie Marie Petryk
Theses - ALL
The ability to tune pore structures of gas-blown polyurethane shape memory polymer (SMP) foams easily and safely could improve their outcomes as hemostatic dressings or tissue engineering scaffolds and overall commercialization efforts. Incorporating physical blowing agents into the polymer mix can be used to tune pore size and interconnectivity without altering foam chemistry. Enovate (HFC-254fa) is a commonly used physical blowing agent in gas-blown foams, but the Environmental Protection Agency (EPA) considers its use unacceptable because it is a hydrofluorocarbon that contributes to global warming. Here, off-the-shelf solvents accepted for use by the EPA, acetone, dimethyoxymethane (methylal), and methyl formate, …
Antimicrobial Susceptibility Of P. Aeruginosa Clinical Isolates, Tian Gao
Antimicrobial Susceptibility Of P. Aeruginosa Clinical Isolates, Tian Gao
Theses - ALL
Long-term infection caused by P. aeruginosa poses a major threat to personal and public health, and causes billions of dollars in medical expenses. To develop more effective controls, it is important to accurately evaluate antibiotic susceptibility of clinical isolates and understand how susceptibility changes during the course of infection. Conventional drug susceptibility tests using nutrient-rich media have been questioned regarding their relevance due to the difference between the model in vivo test conditions and the environment in the patients. Here, we report that 27 clinical strains of P. aeruginosa isolated from cystic fibrosis patients showed higher drug resistance in Artificial …
A Computational Model For Calcium Signaling In Osteocyte Cell Cultures Under Mechanical Stimulation, Courtney Rose Ogando
A Computational Model For Calcium Signaling In Osteocyte Cell Cultures Under Mechanical Stimulation, Courtney Rose Ogando
Theses - ALL
Bone is a highly complex and organized tissue that is composed of an abundance of cells including the osteocyte. While it is known that osteocytes are responsible for the control of the bone remodeling process and the maintenance of calcium (Ca2+) homeostasis using their network of gap junction connections, their complete role is not yet fully understood. It is also known that various bone related diseases as well as cancer demonstrate an alteration of Ca2+ homeostasis during the progression of the disease. Previous researchers have combined computational modeling with experimental studies to gain a better understanding of cell-to-cell Ca2+ signaling …
Use Of Bioelectrochemical Systems For The Domestic Wastewater Treatment And Reuse, Gustavo Holz Bracher
Use Of Bioelectrochemical Systems For The Domestic Wastewater Treatment And Reuse, Gustavo Holz Bracher
International Programs
The goal of this study was to evaluate the potential of bioelectrochemical systems (BES) for domestic wastewater treatment and reuse.BES are systems capable of using microorganisms as catalyst on electrodes for power generation from water contaminants removal.
The BES are a promising sustainable technology that could be used for sewage treatment to allow its reuse, since studies verified the capacity of BES to produce energy, remove organic matter, nutrients and pathogens from sewage, and produce low waste quantities.
Optical Printing Of Multiscale Hydrogel Structures, Zheng Xiong
Optical Printing Of Multiscale Hydrogel Structures, Zheng Xiong
Dissertations - ALL
Hydrogel has been a promising candidate to recapitulate the chemical, physical and mechanical properties of natural extracellular matrix (ECM), and they have been widely used for tissue engineering, lab on a chip and biophotonics applications. A range of optical fabrication technologies such as photolithography, digital projection stereolithography and laser direct writing have been used to shape hydrogels into structurally complex functional devices and constructs. However, it is still greatly challenging for researchers to design and fabricate multiscale hydrogel structures using a single fabrication technology.
To address this challenge, the goal of this work is the design and develop novel multimode …
Computational Investigation Of Biological Membranes, Allyson Karmazyn
Computational Investigation Of Biological Membranes, Allyson Karmazyn
Theses - ALL
Lipids are the building blocks of biological membranes, and the types of lipids that compose these cellular envelopes influence the physicochemical properties of the chemicals that can enter or exit the cell across the membrane. This work focuses on the lipid membrane compositions of eukaryotic (red blood cells) and prokaryotic (Pseudomonas aeruginosa) membranes. By analyzing the lipid-lipid and lipid-protein interactions results of the computational simulations, insights into lipid aggregation, bilayer leaflet behavior, membrane asymmetry, and small molecule transport through protein channels were obtained. The differences between prokaryotic and eukaryotic cell membranes are qualitative known; however, this work provides these concepts …
Computational Algorithms For Predicting Membrane Protein Assembly From Angstrom To Micron Scale, Nandhini Rajagopal
Computational Algorithms For Predicting Membrane Protein Assembly From Angstrom To Micron Scale, Nandhini Rajagopal
Dissertations - ALL
Biological barriers in the human body are one of the most crucial interfaces perfected through evolution for diverse and unique functions. Of the wide range of barriers, the paracellular protein interfaces of epithelial and endothelial cells called tight junctions with high molecular specificities are vital for homeostasis and to maintain proper health. While the breakdown of these barriers is associated with serious pathological consequences, their intact presence also poses a challenge to effective delivery of therapeutic drugs. Complimenting a rigorous combination of in vitro and in vivo approaches to establishing the fundamental biological construct, in addition to elucidating pathological implications …
Computational Algorithms For Predicting Membrane Protein Assembly From Angstrom To Micron Scale, Nandhini Rajagopal
Computational Algorithms For Predicting Membrane Protein Assembly From Angstrom To Micron Scale, Nandhini Rajagopal
Dissertations - ALL
Biological barriers in the human body are one of the most crucial interfaces perfected through evolution for diverse and unique functions. Of the wide range of barriers, the paracellular protein interfaces of epithelial and endothelial cells called tight junctions with high molecular specificities are vital for homeostasis and to maintain proper health. While the breakdown of these barriers is associated with serious pathological consequences, their intact presence also poses a challenge to effective delivery of therapeutic drugs. Complimenting a rigorous combination of in vitro and in vivo approaches to establishing the fundamental biological construct, in addition to elucidating pathological implications …
Predicting Tight Junction Formation Via Claudin Chimeras, Patrick Matthew Marsch
Predicting Tight Junction Formation Via Claudin Chimeras, Patrick Matthew Marsch
Theses - ALL
Tight junctions are vital to epithelial and endothelial barrier functions aiding in ion transport and preventing toxins from crossing into paracellular space. Claudins, made of four transmembrane helices and two extracellular loops, are a major part of the assembly of tight junctions along with other transmembrane proteins. The dimer interactions of two members of the 27-known members of the claudin family—claudin-2 and claudin-4—were analyzed. We created claudin chimera by switching claudin 2’s extracellular loops with claudin 4’s. The chimeras were analyzed using molecular dynamic simulations by comparing them to the natural claudins. This analysis provided new insight into the assembly …
Blood-Material Interactions With Degradable Shape Memory Polymer Foams, Ellen Barlow Shepherd
Blood-Material Interactions With Degradable Shape Memory Polymer Foams, Ellen Barlow Shepherd
Theses - ALL
Shape memory polymer (SMP) foams are a class of smart materials that show promise for managing uncontrolled hemorrhage on the battlefield. The current standard treatments of gauze and tourniquets are not able to effectively control hemorrhage in up to 80% of combat injuries. Most hemostatic devices also require removal within 12 hours of application. Patient transportation to a facility for removal may not be possible within this time frame and the removal process itself can cause further damage to the wound. As an alternative hemostatic device, polyurethane SMP foams have shown to be effective and biocompatible hemostats; however, removal still …
Effectiveness Of Building Systems Strategies For Mitigation Of Airborne Transmission Of Sars-Cov-2, Meng Kong, Jialei Shen, Bing Dong, Jianshun Jensen Zhang
Effectiveness Of Building Systems Strategies For Mitigation Of Airborne Transmission Of Sars-Cov-2, Meng Kong, Jialei Shen, Bing Dong, Jianshun Jensen Zhang
Mechanical and Aerospace Engineering - All Scholarship
Airborne transmission has been recognized as a major transmission pathway for the infectious disease COVID-19. This study investigated the effectiveness of several indoor air quality (IAQ) control strategies on the mitigation of airborne transmission of SARS-CoV-2, the virus that causes COVID-19. The well-known airborne disease infection risk model (Wells-Riley equation) was used to estimate the infection risk of the SARS-CoV-2 in seven (7) different types of spaces including conference center/ballrooms, hotel bistro//cafeteria, hotel lobby, classrooms (lecture), conference room/small classroom, hotel or cruise ship guest rooms and open plan offices. The IAQ control strategies included increased ventilation rate, improved air distribution …
False-Match Symmetry: Data Files And Simulation Code, Cherlyn J. Ng, Bart Farell
False-Match Symmetry: Data Files And Simulation Code, Cherlyn J. Ng, Bart Farell
Biomedical and Chemical Engineering - All Scholarship
This record provides data from random-dot stereograms to use in solving the binocular correspondence problem through false-match symmetry. It also provides an implementation of the algorithm used in the article ‘Solving the stereo correspondence problem with false matches’ [Ng CJ, Farell B (2019) Solving the stereo correspondence problem with false matches. PLoSONE 14(7): e0219052. https://doi.org/10.1371/journal.pone.0219052].
The record consists of two parts, Data and Algorithm Demo. The Data component consists of pre-computed Keplerian arrays of all possible matches between filtered random-dot image pairs containing stereoscopically defined surfaces. The Algorithm Demo allows data files to be computed afresh from supplied pairs of …
Molecular Investigation Of The Intestinal Barrier In Health And Disease, Santita Ebangwese
Molecular Investigation Of The Intestinal Barrier In Health And Disease, Santita Ebangwese
Renée Crown University Honors Thesis Projects - All
The intestinal epithelial barrier contributes to the absorption of nutrients and in maintaining homeostasis. Several intestinal disorders such as Crohn’s disease and Ulcerative Colitis show common pathological features corresponding to a decreased intestinal epithelial barrier function, which makes it imperative to investigate the functional units of the intestinal barriers formed by complex protein interfaces called the tight junctions. Among the diverse set of transmembrane proteins involved in the formation of tight junctions, the mal-distribution of claudin family of proteins show direct correlation to compromised barrier functioning. Interestingly, claudin-3 expression reduces drastically in compromised barriers, while an increased expression of claudin-23 …
Development Of An Inflammatory Joint Fluid Corrosion Assessment Method For Metallic Biomaterials, Kathleen Pieri
Development Of An Inflammatory Joint Fluid Corrosion Assessment Method For Metallic Biomaterials, Kathleen Pieri
Renée Crown University Honors Thesis Projects - All
There is currently no systematic way to analyze the corrosion response of orthopedic alloys in contact with human joint fluid. The goal of this project was to design and test a small device that can successfully run electrochemical tests on retrieved inflamed joint fluids. Methods of fluid testing analysis were also explored. The a small electrochemical cell was created using polypropylene for the body and an electrode cartridge that could be disposed of after each test. In total the device could hold 4 mL of liquid. Testes were preformed using titanium, stainless steel, and CoCrMo alloys as the working electrodes …
Using The Symmetry Of False Matches To Solve The Correspondence Problem, Cherlyn J. Ng, Bart Farell
Using The Symmetry Of False Matches To Solve The Correspondence Problem, Cherlyn J. Ng, Bart Farell
Biomedical and Chemical Engineering - All Scholarship
Veridical stereoscopic depth depends on matching corresponding image points. This requires solving the stereo correspondence problem: how are true matches distinguished from false ones? Conventional algorithms select true matches on the basis of feature detection [what do you mean by ‘feature detection’ here? Is there some more specific term?] and adherence to natural statistics. They reject false matches as noise. We propose here an alternative that uses the signals present in false matches to delineate the true solution. When visualized in a Keplerian array, binocular matches are symmetrically reflected about an axis that is a potential solution. Properties such as …
Investigating The Shelf Life Of Benzoyl Peroxide Coated Nozzles For Bone Cement Application, Alysen Leigh Demzik
Investigating The Shelf Life Of Benzoyl Peroxide Coated Nozzles For Bone Cement Application, Alysen Leigh Demzik
Renée Crown University Honors Thesis Projects - All
Two-solution bone cements (TSBC) were developed to address the limitations of current powder-liquid bone cements, however are characterized by a limited shelf life due to spontaneous free radical polymerization. As a solution to pre-polymerization concerns, the initiator benzoyl peroxide (BPO) was removed from the cement solution and incorporated into a thin film coating within the static mixing nozzle, allowing the BPO to integrate with the TSBC as it is mixed for use. Only short-term storage of BPO-coated nozzles and the subsequent effects on bone cement properties is known. The goal of this study was to investigate the effects of time, …
A Study Of Ciliary Beating In Chlamydomonas, Xin Li
A Study Of Ciliary Beating In Chlamydomonas, Xin Li
Renée Crown University Honors Thesis Projects - All
The goal of this research is to understand how a unicellular green alga, Chlamydomonas-reinhardtii, responds to red light (670nm) and sound waves, by monitoring the beating frequency of its two cilia, which control cell motility. Ciliary beating frequency (BF) is proportional to the production of ATP, mainly generated by photosynthesis. A photosynthesis inhibitor, 3-(3-, 4-dichlorophenyl)-1, 1-dimethylurea (DCMU) decreases ATP production by photosynthesis. I used DCMU as a tool to analyze the red light effect on BF.
In the process of studying the effect of red light, I unexpectedly discovered experimental conditions for unstable ciliary beating (as shown in the video). …
Raman Spectroscopic Investigation Of Chondroitinase Abc Treatment After Spinal Cord Injury In An Organotypic Model, Shane Ruberto
Raman Spectroscopic Investigation Of Chondroitinase Abc Treatment After Spinal Cord Injury In An Organotypic Model, Shane Ruberto
Theses - ALL
This study investigated (1) the ability of an organotypic model of spinal cord injury (SCI) to recapitulate significant pathobiological events of in vivo SCI from a Raman spectroscopic perspective, and (2) the Raman spectroscopic effects of chondroitinase ABC (cABC) treatment on said model of SCI. Tissue from mouse spinal cords was excised, sectioned, and placed into culture, before being systematically injured to induce trauma. Cultures with and without cABC treatment were assessed using Raman spectroscopy at varying times post-injury. We demonstrate that Raman spectral phenomena characteristic of SCI can be observed using an organotypic model. By comparing these phenomena with …
Polysaccharide-Based Nanocarriers For Improved Drug Delivery, Nan Zhang
Polysaccharide-Based Nanocarriers For Improved Drug Delivery, Nan Zhang
Dissertations - ALL
The field of drug delivery has provided a solution to the limited efficacy and high toxicity of many drugs. Nano-sized drug carriers are popular because their size allows for selective accumulation in the diseased area. Polysaccharides are non-toxic and biodegradable natural polymers that can serve as the basis for these nano-sized carriers. Polysialic acid (PSA) is such a polysaccharide with strong hydrophilicity that may reduce uptake by the reticuloendothelial system and prolong drug circulation. In this study, we developed PSA-based nanocarriers, specifically micelles and nanoparticles, for improved drug delivery with improved efficacy and minimized toxicity. PSA-based micelle systems were developed …