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Articles 1 - 30 of 79
Full-Text Articles in Pharmacy and Pharmaceutical Sciences
The Role Of Nanotechnology In Improving The Physical And Mechanical Properties Of Denture Base Material, Rasha Mehdi, Intisar J. Ismail, Ahmed Ali Mohammed
The Role Of Nanotechnology In Improving The Physical And Mechanical Properties Of Denture Base Material, Rasha Mehdi, Intisar J. Ismail, Ahmed Ali Mohammed
Al-Esraa University College Journal for Medical Sciences
Background: Polymethyl methacrylate (PMMA) is still the most common material used for denture bases but its mechanical and physical properties. The aim of this systematic review was to assess the application of nanotechnology for enhancing physical and mechanical properties of denture base materials. Methods: A systematic search of PubMed/MEDLINE, Scopus, and Web of Science was performed to identify in vitro experimental studies from 2020 through 2025. The review was conducted according to the PRISMA 2020 statement. Included studies that characterised the mechanical or physical properties of nanoparticle-reinforced denture base materials. Results: Fourteen in vitro experimental studies were eligible for the …
Development Of Aqueous Dispersions Of Zein–Inulin Nanoparticles: Influence Of Formulation Variables On Physical Properties, Wanarat Sayamol, Supakarn Chamni, Jittima Chatchawalsaisin
Development Of Aqueous Dispersions Of Zein–Inulin Nanoparticles: Influence Of Formulation Variables On Physical Properties, Wanarat Sayamol, Supakarn Chamni, Jittima Chatchawalsaisin
The Thai Journal of Pharmaceutical Sciences
Background: Zein-based nanoparticles exhibit considerable potential for pharmaceutical and food applications. Incorporating inulin, a prebiotic polysaccharide, can improve their functional performance. Owing to the distinct solubilities of zein and inulin in aqueous ethanol, zein– inulin nanoparticles can be prepared through precipitation using their respective anti-solvents.
Objectives: This study aimed to systematically develop zein–inulin nanoparticles using the antisolvent precipitation method, with a focus on investigating the effects of formulation variables on particle characteristics and dispersion properties.
Materials and Methods: Zein–inulin nanoparticles were prepared using an anti-solvent precipitation method. Zein and inulin were separately dissolved in aqueous ethanol and water, respectively. The …
Nanocomposite Mediated Delivery Of 5-Fluorouracil Using Silver Nanoparticles To Promote Wound Healing, Kamal Nath Kasi
Nanocomposite Mediated Delivery Of 5-Fluorouracil Using Silver Nanoparticles To Promote Wound Healing, Kamal Nath Kasi
Theses, Dissertations and Capstones
Chronic wounds, particularly in diabetic patients, remain a significant clinical challenge due to the complex interaction of persistent infection, chronic inflammation, and impaired cellular regeneration. Conventional drug therapies often fail to achieve effective treatment due to rapid drug degradation, poor targeting, and localized toxicity. This study explores a nanotechnology-based approach by developing and evaluating 5-FU loaded AgNP (AgNP–5FU) as a controlled drug delivery system. AgNP (AgNP) were synthesized and characterized using scanning electron microscopy (SEM), energy dispersive X-ray (EDX) analysis, particle size, and zeta potential analysis, while Fourier Transform Infrared Spectroscopy (FTIR) analysis suggested possible interaction between 5-FU and the …
Development Of Tunable Rose Bengal Based-Nanogumbos As Potential Selective Chemotherapeutic Agents, William J.A. Russell
Development Of Tunable Rose Bengal Based-Nanogumbos As Potential Selective Chemotherapeutic Agents, William J.A. Russell
Honors College Theses
As cancer remains one of the greatest threats to the global population, the development of chemotherapeutic agents that are selective and tunable is of critical importance. Herein, a series of Rose Bengal (RB)-based GUMBOS, a group of uniform materials based on organic salts, were synthesized via counterion exchange between [Na]2[RB] and three organic cations: tetrabutylphosphonium bromide [TBP][Br], tetraphenylphosphonium chloride [TPP][Cl], and 1-dodecyl-3-methylimidazolium chloride [C12MIm][Cl]. The resulting GUMBOS were characterized through FT-IR, ESI-MS, NMR, and UV-Vis Spectroscopy. Partition coefficient studies indicated all GUMBOS exhibited hydrophobic physiochemical characteristics. These hydrophobic RB-based GUMBOS …
Wettability Assessment Of Room-Temperature Soft Liners Incorporated With Strontium Titanate Nanoparticles, Zakaria Azzam Alabed, Aseel Mohammed Al-Khafaji
Wettability Assessment Of Room-Temperature Soft Liners Incorporated With Strontium Titanate Nanoparticles, Zakaria Azzam Alabed, Aseel Mohammed Al-Khafaji
Al-Esraa University College Journal for Medical Sciences
Background: Soft denture liners are widely used in prosthodontics for their ability to cushion masticatory forces and enhance comfort in patients with compromised oral mucosa. However, conventional liners often exhibit limitations such as poor adhesion to the denture base, microbial colonization, and inadequate mechanical stability. Materials and Methods: Strontium titanate (SrTiO3) nanoparticles were incorporated into a self-cured soft denture liner. Three equal groups of fifteen specimens were created, each of which contained 0%, 1%, and 1.5% SrTiO3 by weight. All procedures were conducted under simulated intraoral temperature, following manufacturer guidelines. Results: The analysis revealed statistically significant differences …
Engineering Lipid–Polymer Nanoparticles For Sirna Delivery To Cancer Cells, Arthur Manda, Abdulelah Alhazza, Hasan Uludağ, Hamidreza Montazeri Aliabadi
Engineering Lipid–Polymer Nanoparticles For Sirna Delivery To Cancer Cells, Arthur Manda, Abdulelah Alhazza, Hasan Uludağ, Hamidreza Montazeri Aliabadi
Pharmacy Faculty Articles and Research
Background: RNA interference (RNAi) is a powerful tool that can target many proteins without the expensive and time-consuming drug development studies. However, due to the challenges in delivering RNA molecules, the potential impact of RNAi approaches is yet to be fully realized in clinical settings. Lipid nanoparticles (LNPs) have been the most successful delivery system for nucleic acids, but targeted delivery to a solid tumor still eludes the developed LNPs. We hypothesized that specially designed low-molecular-weight PEIs can partially or completely replace the ionizable lipids for more accommodating vehicles due to the structural flexibility offered by polymers, which could …
Magnetic And Ph-Sensitive Dual Actuation Of Biohybrid Microswimmer Of Targeted Drug Release Suitable For Cancer Cell Microenvironment, Richa Chaturvedi, Yumin Kang, Yunji Eom, Sri Ramulu Torati, Cheolgi Kim
Magnetic And Ph-Sensitive Dual Actuation Of Biohybrid Microswimmer Of Targeted Drug Release Suitable For Cancer Cell Microenvironment, Richa Chaturvedi, Yumin Kang, Yunji Eom, Sri Ramulu Torati, Cheolgi Kim
Center for Bioelectronics Publications
The chemotherapeutic agents most frequently used in cancer treatment often have limited effectiveness because of their low specificity for tumors and poor therapeutic performance. In addition to the aforementioned therapeutic challenges the drug delivery carriers conjugated with the drug encounter early detection and elimination from the immune system before arriving at the affected area continues to be a significant research focus among researchers. To address this prevalent issue, an effective approach has been developed that leverages the physiological differences between normal and tumor tissue to enhance the efficacy of anticancer drugs. This drug delivery system is designed based on pH-sensitive …
Targeted Drug Delivery: Investigating Protein Corona Behavior, Atharva Markale
Targeted Drug Delivery: Investigating Protein Corona Behavior, Atharva Markale
Theses
Due to high specificity and less toxicity, nanoparticles have become promising for targeted drug delivery against cancer, although they face challenges when they enter the bloodstream, making their behavior unpredictable. The deposition of proteins on nanoparticles, the protein corona, changes their biosignature, affecting their circulation, drug release potency, targeting ability, and immunogenicity. The continuous exchange of protein layers on a nanoscale is complex to analyze.
Nanoparticle tracking analysis (NTA) is a method to characterize nanoparticles in blood plasma by combining principles of light scattering microscopy and Brownian motion. In this work, time-dependent experiments with plasma were conducted to analyze the …
The Light Scattering Properties Of Amorphous Nanoparticles Formed By Poorly Soluble Drugs, Sarah Casella
The Light Scattering Properties Of Amorphous Nanoparticles Formed By Poorly Soluble Drugs, Sarah Casella
Honors Scholar Theses
The research of amorphous drug formulations is an emerging field of study, which offers a promising strategy to improve the oral bioavailability of poorly water-soluble drugs. A critical aspect of amorphous solubility is the measurement of particle size and light diffraction, which is measured using dynamic light scattering (DLS). DLS is a technique used to characterize the size of colloidal dispersions, where a laser beam illuminates a suspension of particles or molecules undergoing Brownian motion. In this experiment, a procedure was developed utilizing DLS to investigate the similarities and differences in light diffraction properties of particles among three different poorly …
Synthesis And Characterization Of Polymeric Nanoparticles To Enhance Celleullar Drug Delivery, Rahma Aly
Synthesis And Characterization Of Polymeric Nanoparticles To Enhance Celleullar Drug Delivery, Rahma Aly
Chemistry Theses
Medicines in the form of nanoparticles called nanomedicines, stand at the forefront of revolutionary advancements in healthcare, offering precise drug delivery and diagnostic capabilities. A recent example of nanomedicine in the clinic is the COVID-19 vaccine, which helped prevent death during the pandemic. While the potential benefits are immense, a myriad of challenges complicate their seamless integration into clinical practice. The design and fabrication of nanoparticles demand meticulous attention to biocompatibility and toxicity. Interactions with biological systems are complex, requiring a delicate balance between therapeutic efficacy and safety. The reticuloendothelial system's rapid clearance of nanoparticles, their instability in physiological environments, …
Biodegradable Nanoparticles Targeting Circulating Immune Cells Reduce Central And Peripheral Sensitization To Alleviate Neuropathic Pain Following Spinal Cord Injury., Michael N. Saunders, Kate V. Griffin, Irina Kalashnikova, Daniel Kolpek, Dominique R. Smith, Eiji Saito, Brian J. Cummings, Aileen J. Anderson, Lonnie D. Shea, Jonghyuck Park
Biodegradable Nanoparticles Targeting Circulating Immune Cells Reduce Central And Peripheral Sensitization To Alleviate Neuropathic Pain Following Spinal Cord Injury., Michael N. Saunders, Kate V. Griffin, Irina Kalashnikova, Daniel Kolpek, Dominique R. Smith, Eiji Saito, Brian J. Cummings, Aileen J. Anderson, Lonnie D. Shea, Jonghyuck Park
Pharmaceutical Sciences Faculty Publications
Neuropathic pain is a critical source of comorbidity following spinal cord injury (SCI) that can be exacerbated by immune-mediated pathologies in the central and peripheral nervous systems. In this article, we investigate whether drug-free, biodegradable, poly(lactide- co -glycolide) (PLG) nanoparticle treatment mitigates the development of post-SCI neuropathic pain in female mice. Our results show that acute treatment with PLG nanoparticles following thoracic SCI significantly reduces tactile and cold hypersensitivity scores in a durable fashion. Nanoparticles primarily reduce peripheral immune-mediated mechanisms of neuropathic pain, including neuropathic pain-associated gene transcript frequency, transient receptor potential ankyrin 1 nociceptor expression, and MCP-1 (CCL2) chemokine …
Nonintuitive Immunogenicity And Plasticity Of Alpha-Synuclein Conformers: A Paradigm For Smart Delivery Of Neuro-Immunotherapeutics, Amos O. Abioye, Damilare Akintade, James Mitchell, Simisade Olorode, Adeboye Adejare
Nonintuitive Immunogenicity And Plasticity Of Alpha-Synuclein Conformers: A Paradigm For Smart Delivery Of Neuro-Immunotherapeutics, Amos O. Abioye, Damilare Akintade, James Mitchell, Simisade Olorode, Adeboye Adejare
Funded Scholarship
Despite the extensive research successes and continuous developments in modern medicine in terms of diagnosis, prevention, and treatment, the lack of clinically useful disease-modifying drugs or immunotherapeutic agents that can successfully treat or prevent neurodegenerative diseases is an ongoing challenge. To date, only one of the 244 drugs in clinical trials for the treatment of neurodegenerative diseases has been approved in the past decade, indicating a failure rate of 99.6%. In corollary, the approved monoclonal antibody did not demonstrate significant cognitive benefits. Thus, the prevalence of neurodegenerative diseases is increasing rapidly. Therefore, there is an urgent need for creative approaches …
Solid Lipid Nanoparticles (Sln): Formulation And Fabrication, Gabriella F. Punu, Yahdiana Harahap, Qonita Kurnia Anjani, Pietradewi Hartrianti, Ryan F. Donnelly, Delly Ramadon
Solid Lipid Nanoparticles (Sln): Formulation And Fabrication, Gabriella F. Punu, Yahdiana Harahap, Qonita Kurnia Anjani, Pietradewi Hartrianti, Ryan F. Donnelly, Delly Ramadon
Pharmaceutical Sciences and Research
Solid lipid nanoparticles (SLN) have emerged as a novel drug delivery system and have been utilized for delivering various kinds of drugs since the 1990s. These particles may consist of multiple solid lipids, including glycerides, waxes, and fatty acids, and can be stabilized by a wide range of surfactants. SLN have garnered significant attention from researchers due to its innovative and versatile nature. Moreover, such delivery system has numerous advantages over traditional colloidal carriers, such as liposomes, polymeric nanoparticles, and emulsions. Several research groups have been developing SLN formulations and fabrication techniques based on their intended purpose, and this research …
Effect Of Nanoparticle Weight On The Cellular Uptake And Drug Delivery Potential Of Plga Nanoparticles, Prabhat Kattel, Shoukath Sulthana, JiřÍ Trousil, Dinesh Shrestha, David Pearson, Santosh Aryal
Effect Of Nanoparticle Weight On The Cellular Uptake And Drug Delivery Potential Of Plga Nanoparticles, Prabhat Kattel, Shoukath Sulthana, JiřÍ Trousil, Dinesh Shrestha, David Pearson, Santosh Aryal
Pharmacy Faculty Publications and Presentations
Biodegradable and biocompatible polymeric nanoparticles (NPs) stand out as a key tool for improving drug bioavailability, reducing the inherent toxicity, and targeting the intended site. Most importantly, the ease of polymer synthesis and its derivatization to add functional properties makes them potentially ideal to fulfill the requirements for intended therapeutic applications. Among many polymers, US FDA-approved poly(L-lactic-co-glycolic) acid (PLGA) is a widely used biocompatible and biodegradable co-polymer in drug delivery and in implantable biomaterials. While many studies have been conducted using PLGA NPs as a drug delivery system, less attention has been given to understanding the effect of NP weight …
Nanoparticle Approaches For The Renin-Angiotensin System, Sajini D. Hettiarachchi, Young M. Kwon, Yadollah Omidi, Robert C. Speth
Nanoparticle Approaches For The Renin-Angiotensin System, Sajini D. Hettiarachchi, Young M. Kwon, Yadollah Omidi, Robert C. Speth
HPD Articles
The renin-angiotensin system (RAS) is a hormonal cascade that contributes to several disorders: systemic hypertension, heart failure, kidney disease, and neurodegenerative disease. Activation of the RAS can promote inflammation and fibrosis. Drugs that target the RAS can be classified into 3 categories, AT1 angiotensin receptor blockers (ARBs), angiotensin-converting enzyme (ACE) inhibitors, and renin inhibitors. The therapeutic efficacy of current RAS-inhibiting drugs is limited by poor penetration across the blood-brain barrier, low bioavailability, and to some extent, short half-lives. Nanoparticle-mediated drug delivery systems (DDSs) are possible emerging alternatives to overcome such limitations. Nanoparticles are ideally 1-100 nm in size and are …
Exploring The Potential Of Nanotechnology In Pediatric Healthcare: Advances, Challenges, And Future Directions., Hossein Omidian, Kwadwo Mfoafo
Exploring The Potential Of Nanotechnology In Pediatric Healthcare: Advances, Challenges, And Future Directions., Hossein Omidian, Kwadwo Mfoafo
HPD Articles
The utilization of nanotechnology has brought about notable advancements in the field of pediatric medicine, providing novel approaches for drug delivery, disease diagnosis, and tissue engineering. Nanotechnology involves the manipulation of materials at the nanoscale, resulting in improved drug effectiveness and decreased toxicity. Numerous nanosystems, including nanoparticles, nanocapsules, and nanotubes, have been explored for their therapeutic potential in addressing pediatric diseases such as HIV, leukemia, and neuroblastoma. Nanotechnology has also shown promise in enhancing disease diagnosis accuracy, drug availability, and overcoming the blood-brain barrier obstacle in treating medulloblastoma. It is important to acknowledge that while nanotechnology offers significant opportunities, there …
Evaluation Of Selenomethionine Entrapped In Nanoparticles For Oral Supplementation Using In Vitro, Ex Vivo And In Vivo Models, Shane Forde, Giuliana Vozza, David J. Brayden, Jesus Maria Frias, Sinead M. Ryan
Evaluation Of Selenomethionine Entrapped In Nanoparticles For Oral Supplementation Using In Vitro, Ex Vivo And In Vivo Models, Shane Forde, Giuliana Vozza, David J. Brayden, Jesus Maria Frias, Sinead M. Ryan
Articles
Selenium methionine (Se Met) is an essential micronutrient required for normal body function and is associated with additional health benefits. However, oral administration of Se Met can be challenging due to its purported narrow therapeutic index, low oral bioavailability, and high susceptibility to oxidation. To address these issues, Se Met was entrapped in z e i n-coated nanoparticles made from chitosan using an ionic gelation formulation. The high stability of both the Se Met and s e l e n o methionine nanoparticles (Se Met-NPs) was established using cultured human intestinal and liver epithelial cells, rat liver homogenates, and rat …
Nanoparticles For Biomedical Applications, Joseph Kim
Nanoparticles For Biomedical Applications, Joseph Kim
Dissertations and Theses (Open Access)
This thesis presents development and evaluation of the potential of three new nanoparticles for biomedical applications. With the rapid growth of the field of nanoscience, researchers have explored developing nanoparticles for various biomedical applications, including imaging, therapy, and drug delivery. This thesis demonstrates the development of two C60 fullerene based nanoparticles and one boron based nanoparticle to answer key questions related to their biological potential.
In the first part of the thesis, we describe synthesis and characterization of a pure boron nanoparticle containing asolectin phospholipid-based liposome construct prepared using a water-in-oil emulsion method, as a novel alternative agent for …
Indocyanine-Type Infrared-820 Encapsulated Polymeric Nanoparticle-Assisted Photothermal Therapy Of Cancer, Ramesh Marasini, Santosh Aryal
Indocyanine-Type Infrared-820 Encapsulated Polymeric Nanoparticle-Assisted Photothermal Therapy Of Cancer, Ramesh Marasini, Santosh Aryal
Pharmacy Faculty Publications and Presentations
Organic small-molecule photosensitizers are well-characterized and known for the light-responsive treatment modality including photodynamic therapy. Compared with ultraviolet−visible (UV−vis) light used in conventional photodynamic therapy with organic photosensitizers, near-infrared (NIR) light from 700 to 900 nm is less absorbed and scattered by biological tissue such as hemoglobin, lipids, and water, and thus, the use of NIR excitation can greatly increase the penetration depth and emission. Additionally, NIR light has lower energy than UV−vis that can be beneficial due to less activation of fluorophores present in tissues upon NIR irradiation. However, the low water stability, nonspecific distribution, and short circulation halflife …
Direct Nose To The Brain Nanomedicine Delivery Presents A Formidable Challenge, Robert A. Yokel
Direct Nose To The Brain Nanomedicine Delivery Presents A Formidable Challenge, Robert A. Yokel
Pharmaceutical Sciences Faculty Publications
This advanced review describes the anatomical and physiological barriers and mechanisms impacting nanomedicine translocation from the nasal cavity directly to the brain. There are significant physiological and anatomical differences in the nasal cavity, olfactory area, and airflow reaching the olfactory epithelium between humans and experimentally studied species that should be considered when extrapolating experimental results to humans. Mucus, transporters, and tight junction proteins present barriers to material translocation across the olfactory epithelium. Uptake of nanoparticles through the olfactory mucosa and translocation to the brain can be intracellular via cranial nerves (intraneuronal) or other cells of the olfactory epithelium, or extracellular …
Cd44-Targeted, Indocyanine Green-Paclitaxel-Loaded Human Serum Albumin Nanoparticles For Potential Image-Guided Drug Delivery., Karthik Thangavel, Asha Lakshmikuttyamma, Chellappagounder Thangavel, Sunday A. Shoyele
Cd44-Targeted, Indocyanine Green-Paclitaxel-Loaded Human Serum Albumin Nanoparticles For Potential Image-Guided Drug Delivery., Karthik Thangavel, Asha Lakshmikuttyamma, Chellappagounder Thangavel, Sunday A. Shoyele
College of Pharmacy Faculty Papers
The use of multifunctional nanomedicines for image-guided drug delivery is currently being universally evaluated as a means of efficiently managing cancers and other diseases. In this study we evaluated the potential of an indocyanine green (ICG) and paclitaxel (PTX) loaded human serum albumin (HSA) nanoparticles that was conjugated with hyaluronic acid for use in image-guided drug delivery targeted to CD44-positive non-small cell lung cancer (NSCLC). Series of NSCLC cell lines were evaluated for the expression of CD44 using both western blot analysis and qRT-PCR and compared to a normal lung fibroblast cell line (MRC-5). Using Fluorescence microscopy and photoacoustic imaging …
The Preparation Temperature Influences The Physicochemical Nature And Activity Of Nanoceria, Robert A. Yokel, Wendel Wohlleben, Johannes Georg Keller, Matthew L. Hancock, Jason M. Unrine, D. Allan Butterfield, Eric A. Grulke
The Preparation Temperature Influences The Physicochemical Nature And Activity Of Nanoceria, Robert A. Yokel, Wendel Wohlleben, Johannes Georg Keller, Matthew L. Hancock, Jason M. Unrine, D. Allan Butterfield, Eric A. Grulke
Pharmaceutical Sciences Faculty Publications
Cerium oxide nanoparticles, so-called nanoceria, are engineered nanomaterials prepared by many methods that result in products with varying physicochemical properties and applications. Those used industrially are often calcined, an example is NM-212. Other nanoceria have beneficial pharmaceutical properties and are often prepared by solvothermal synthesis. Solvothermally synthesized nanoceria dissolve in acidic environments, accelerated by carboxylic acids. NM-212 dissolution has been reported to be minimal. To gain insight into the role of high-temperature exposure on nanoceria dissolution, product susceptibility to carboxylic acid-accelerated dissolution, and its effect on biological and catalytic properties of nanoceria, the dissolution of NM-212, a solvothermally synthesized nanoceria …
Copper Oxide Nanoparticle Diameter Mediates Serum-Sensitive Toxicity In Beas-2b Cells, Angie S. Morris, Brittany E. Givens, Aaron Silva, Aliasger K. Salem
Copper Oxide Nanoparticle Diameter Mediates Serum-Sensitive Toxicity In Beas-2b Cells, Angie S. Morris, Brittany E. Givens, Aaron Silva, Aliasger K. Salem
Chemical and Materials Engineering Faculty Publications
Copper oxide (CuO) nanoparticles (NPs) are abundant in manufacturing processes, but they are an airway irritant. In vitro pulmonary toxicity of CuO NPs has been modeled using cell lines such as human bronchial epithelial cell line BEAS-2B. In 2D in vitro culture, BEAS-2B undergoes squamous differentiation due to the presence of serum. Differentiation is part of the repair process of lung cells in vivo that helps to preserve the epithelial lining of the respiratory tract. Herein, the effects of serum on the hydrodynamic diameter, cellular viability, cellular differentiation, and cellular uptake of 5 and 35 nm CuO NPs are investigated, …
The Antioxidant And Antimicrobial Activities Of Cornsilk Extract Encapsulated In Polysaccharide Nanoparticles, Maryam Mady
The Antioxidant And Antimicrobial Activities Of Cornsilk Extract Encapsulated In Polysaccharide Nanoparticles, Maryam Mady
Theses and Dissertations
Corn silk possess antibacterial and antioxidant activities due to its phenolic compounds but they are of low bioavailability that requires some innovative techniques to develop such active ingredients in a safe and less toxic manner. Accordingly, silk extract SE was encapsulated in chitosan nanoparticles CS NPs, which is a natural and abundant polymer derived from chitin. Among 15 experimental trials via design expert software, the optimum formula of SE x\CS NPs was prepared at 800 rpm, 5hrs. on magnetic stirrer, and by CS: TPP ratio was 2.5:1. Then SEM showed the majority of particles size diameter in the range of …
Exploring Efficacy Of An Anti-Malarial Nanomedicine In Non-Small Cell Lung Cancer Treatment, Vineela Parvathaneni
Exploring Efficacy Of An Anti-Malarial Nanomedicine In Non-Small Cell Lung Cancer Treatment, Vineela Parvathaneni
Theses and Dissertations
New drug and dosage form development faces significant challenges, especially in oncology, due to longer development cycle and associated scale-up complexities. Repurposing of existing drugs with potential anti-cancer activity into new therapeutic regimens provides a feasible alternative. In this project, amodiaquine (AQ), an anti-malarial drug, has been explored for its anti-cancer efficacy through formulating inhalable nanoparticulate systems using high-pressure homogenization (HPH) with scale-up feasibility and high reproducibility. A 32 multifactorial design was employed to better understand critical processes and formulation parameters so as to ensure product quality with improved anticancer efficacy in non-small cell lung cancer (NSCLC). Optimized AQ loaded …
Double-Coated Biodegradable Poly (Butyl Cyanoacrylate) Nanoparticulate Delivery Systems For Brain Targeting Of Doxorubicin Via Oral Administration, Neeraj Kaushal
Theses and Dissertations
Primary brain cancer cells grow within the brain or cancer cells can metastasis from different site of the body into brain. The major hurdle in the treatment of brain cancer is the presence of blood-brain barrier (BBB). Additionally, acquired multidrug-resistant (MDR) impedes the success of long-term chemotherapy. Therefore, the objective of this investigation is to evaluate the brain targeting potential of orally administered poly(butyl cyanoacrylate) nanoparticulate delivery systems (PBCA-NPDS), double-coated with Tween 80 and polyethylene glycol (PEG) 20000 for brain delivery of doxorubicin, that does not cross the BBB by itself. And, evaluate the MDR reversal potential of PBCA-NPDS. Doxorubicin-loaded …
The Impact Of Perfectionism On Well-Being: Shame In Perfectionism’S Influence On Emotion Regulation, Vishal Ravindra Rathod
The Impact Of Perfectionism On Well-Being: Shame In Perfectionism’S Influence On Emotion Regulation, Vishal Ravindra Rathod
Selected Full-Text Dissertations 2020-
Combined product development strategy of antisolvent precipitation and spray drying was adopted to create a hybridized redispersible spray dried ritonavir (RTV, BCS Class IV) nanoamorphous micellar dispersion (RTV-rSD-NAMD) to enhance the solubility and masked the bitterness of RTV. Initially, a proof of concept study was designed using DM3 research strategy to develop RTV-NAMD. It was employed in conjunction with the quality-by-design spaces, and quality target product profile to link the critical material attributes and critical process parameters to the quality target product profile’s critical product attributes QbD elements. RTV-NAMD was successfully optimized with Soluplus® as the stabilizer using the response …
Amphiphilic Cell-Penetrating Peptides Containing Natural And Unnatural Amino Acids As Drug Delivery Tools And Antimicrobial Agents, David Salehi
Pharmaceutical Sciences (MS) Theses
Cell-penetrating peptides containing arginine as positively charged residues and tryptophan or diphenylalanine as hydrophobic residues were synthesized. The synthesis was accomplished through the Fmoc solid-phase peptide synthesis in the presence of HBTU and DIPEA. The side-chain protected linear peptides were cleaved from the resin and cyclized in the presence of DIC and HOAt in the solution phase overnight. MALDI-TOF mass spectrometry was used to characterize the peptides.
The cytotoxicity of the synthesized peptides was determined in CCRF-CEM (human, lymphoblast peripheral blood), and HEK-293 (human, embryonic epithelial kidney healthy) cells using the MTS assay. A concentration of 10 µM was found …
Rna Nanoparticles And Method Of Use Thereof, Peixuan Guo, Hui Li, Wei Luo
Rna Nanoparticles And Method Of Use Thereof, Peixuan Guo, Hui Li, Wei Luo
Pharmaceutical Sciences Faculty Patents
The presently-disclosed subject matter relates to an artificial RNA nanostructure and method of use thereof. In particular, the presently-disclosed subject matter relates to RNA nanoparticles and RNA dendrimers, and methods of disease diagnosis and treatments using the RNA nanostructure and RNA dendrimers.
Nanoceria Distribution And Effects Are Mouse-Strain Dependent, Robert A. Yokel, Michael T. Tseng, D. Allan Butterfield, Matthew L. Hancock, Eric A. Grulke, Jason M. Unrine, Arnold J. Stromberg, Alan K. Dozier, Uschi M. Graham
Nanoceria Distribution And Effects Are Mouse-Strain Dependent, Robert A. Yokel, Michael T. Tseng, D. Allan Butterfield, Matthew L. Hancock, Eric A. Grulke, Jason M. Unrine, Arnold J. Stromberg, Alan K. Dozier, Uschi M. Graham
Pharmaceutical Sciences Faculty Publications
Prior studies showed nanoparticle clearance was different in C57BL/6 versus BALB/c mice, strains prone to Th1 and Th2 immune responses, respectively. Objective: Assess nanoceria (cerium oxide, CeO2 nanoparticle) uptake time course and organ distribution, cellular and oxidative stress, and bioprocessing as a function of mouse strain. Methods: C57BL/6 and BALB/c female mice were i.p. injected with 10 mg/kg nanoceria or vehicle and terminated 0.5 to 24 h later. Organs were collected for cerium analysis; light and electron microscopy with elemental mapping; and protein carbonyl, IL-1β, and caspase-1 determination. Results: Peripheral organ cerium significantly increased, generally more …