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Full-Text Articles in Nanotechnology

Artificial Photosynthesis To Overcome Oxygen Deprivation During Respiratory Disease Crisis-A Mini Review, Devadass Jessy Mercy Ms, Harini Rm Ms, Agnishwar Girigoswami Prof, Koyeli Girigoswami Prof May 2026

Artificial Photosynthesis To Overcome Oxygen Deprivation During Respiratory Disease Crisis-A Mini Review, Devadass Jessy Mercy Ms, Harini Rm Ms, Agnishwar Girigoswami Prof, Koyeli Girigoswami Prof

Chulalongkorn Medical Journal

Respiratory diseases are mainly treated using several symptomatic treatments, supported by oxygen for the patients. During the Coronavirus disease 2019 (COVID-19) pandemic, oxygen concentrators were in high demand, and even after that, many patients lost their lives to this pandemic due to a shortage of oxygen cylinders. This crisis instigated many entrepreneurs to open oxygen plants, which needed a large scale set up. The articles were searched using Google Scholar, Scopus, and Web of Science using appropriate keywords to write this review article. In this review, we have summarized the need for oxygen that can be overcome using artificial photosynthesis. …


Mxene-Enabled Wearable Biosensors: A Design Framework For Autonomous Biosensing, Jegan Rajendran, Gymama Slaughter Jan 2026

Mxene-Enabled Wearable Biosensors: A Design Framework For Autonomous Biosensing, Jegan Rajendran, Gymama Slaughter

Center for Bioelectronics Publications

MXenes, a rapidly expanding family of two-dimensional transition metal carbides and nitrides, have emerged as leading materials for wearable bioelectronics due to their metallic conductivity, termination-rich surfaces, mechanical compliance, and tunable interlayer structures. However, wearable biosensor performance does not arise from conductivity alone, but from coupled interactions among surface termination chemistry, heterointerface engineering, hierarchical architecture, and device integration under dynamic physiological conditions. This review establishes a predictive structure-interface-device framework linking MXene chemistry to system-level performance across electrochemical, mechanical, gas, optical, and energy-storage modalities. We analyze how termination-controlled adsorption governs charge transfer and selectivity, how heterojunction formation modulates carrier density and …


Isotropic Shrinkage Of Patterned Vacancies Enables Three-Dimensional Nanoprecise Metastructures For Visible Light Applications, Quansan Yang, Gaojie Yang, Takahiro Nambara, Hiroyuki Kusaka, Yuichiro Kunai, Alex C. Matlock, Corban Swain, Brett Pryor, Yannick Salamin, Daniel Oran, Hasindu Kariyawasam, Ramith Hettiarachchi, Dushan Wadduwage, Marin Soljačić, Peter T. C. Soflaei, Edward S. Boyden Jan 2026

Isotropic Shrinkage Of Patterned Vacancies Enables Three-Dimensional Nanoprecise Metastructures For Visible Light Applications, Quansan Yang, Gaojie Yang, Takahiro Nambara, Hiroyuki Kusaka, Yuichiro Kunai, Alex C. Matlock, Corban Swain, Brett Pryor, Yannick Salamin, Daniel Oran, Hasindu Kariyawasam, Ramith Hettiarachchi, Dushan Wadduwage, Marin Soljačić, Peter T. C. Soflaei, Edward S. Boyden

Computer Science Faculty Publications

Three-dimensional metastructures with nanoscale feature sizes exhibit unique properties compared with structures with larger feature sizes, but are difficult to fabricate. Here we introduce implosion carving (ImpCarv), a method for photopatterning vacancies of complex geometry throughout materials, followed by isotropic shrinkage (>10-fold). ImpCarv works by photoactivating sensitizers to generate reactive oxygen species that cleave a swollen hydrogel at defined points, followed by controlled shrinkage via dehydration. ImpCarv creates three-dimensional metastructures where the refractive index of each point throughout a material can be specified with nanoscale precision via material presence or absence. By leveraging refractive index programmability for precise phase …


Development And Optimization Of Moxifloxacin Solid Lipid Nanoparticles Via Double Emulsion Organic Solvent Free Technique Applying Box–Behnken Experimental Design, Esraa M. Elshazly, Mona G. Arafa, Samia A. Nour Dec 2025

Development And Optimization Of Moxifloxacin Solid Lipid Nanoparticles Via Double Emulsion Organic Solvent Free Technique Applying Box–Behnken Experimental Design, Esraa M. Elshazly, Mona G. Arafa, Samia A. Nour

Pharmacy

The current research proposes the preparation of Moxifloxacin-loaded solid lipid nanoparticles through a solvent-free double emulsion technique, to overcome chronic wound healing limitation. The independent variables: stearic acid, Span 80, and Tween 80 were optimized via Box–Behnken design, based on entrapment efficiency (EE%), zeta potential (ZP), and particle size (PS). To statistically optimize the formulation variables, a three-factor, three-level (3³) design involving 15 runs was employed and optimization was carried out to attain maximum EE% and ZP and minimum PS yielding an overall desirability of 0.851. Results indicated that increasing stearic acid enhanced EE%, Span 80 increase PS, and Tween …


Application Of Bioactive Materials Primary Cilia As A Novel Delivery Vehicle, Ayan K. Barui, Farideh Amirrad, Vansh Goel, Sharareh Ohadi, Rajasekharreddy Pala, Ashraf M. Mohieldin, Andromeda M. Nauli, Surya M. Nauli May 2025

Application Of Bioactive Materials Primary Cilia As A Novel Delivery Vehicle, Ayan K. Barui, Farideh Amirrad, Vansh Goel, Sharareh Ohadi, Rajasekharreddy Pala, Ashraf M. Mohieldin, Andromeda M. Nauli, Surya M. Nauli

Pharmacy Faculty Articles and Research

Primary cilia are hair-like structured cell organelles functioning as cellular antennae with chemosensory and mechanosensory roles. Dysfunction of cilia results in ciliopathies, including renovascular diseases (polycystic kidneys, hypertension, aneurysm), mental impedances (Alzheimer's disease, Parkinson's disease, dementia), metabolic diseases (obesity, developmental skeleton defects), blindness, and so on. With a diameter of 150 nm, cilia can be cleaved, released and circulated in the body as injury biomarkers. We here assessed the potential use of isolated cilia as a novel delivery vehicle. Cilia were isolated from renal epithelial cells, and a specific-targeting chemotherapeutic was designed on the cilia. The data show a remarkable …


Fluorescent Labeling And Size-Dependent Uptake Of Mesoporous Silica Nanoparticles In Ovarian Cancer Tumor Spheroids, Kimberly R. Berardis Apr 2025

Fluorescent Labeling And Size-Dependent Uptake Of Mesoporous Silica Nanoparticles In Ovarian Cancer Tumor Spheroids, Kimberly R. Berardis

Honors Scholar Theses

Ovarian cancer is the most lethal gynecologic malignancy, with most patients presenting at an advanced stage. While surgical debulking improves survival, nonresectable tumors (<1 cm) contribute significantly to morbidity and remain difficult to treat. Nanocarrier-based drug delivery systems offer an innovative approach to targeted therapy and palliation. In vivo models have demonstrated that intraperitoneally delivered mesoporous silica nanoparticles (MSNs) preferentially accumulate in tumors with low systemic exposure, enabling targeted chemo- and radiotherapy.

MSNs are particularly suited for radiotherapeutic delivery, as their strong interactions with tumor extracellular matrices drive selective uptake. Additionally, they exhibit excellent stability under neutron flux, allowing for loading with stable isotopes and irradiation immediately prior to administration. High radionuclide retention after dilution further minimizes systemic exposure and toxicity.

A key …


Fabricating Silver-Ceria Polymer Nanocomposite Scaffolds For Biomedical Therapeutic Applications, Shreya S. Pawar Jan 2025

Fabricating Silver-Ceria Polymer Nanocomposite Scaffolds For Biomedical Therapeutic Applications, Shreya S. Pawar

Honors Undergraduate Theses

Improper healing of bone fractures and limited regeneration of bone following bone tumor resection remain a prevalent complication worldwide. Long-term effects of this include joint instability, limited movement, and arthritis. Bone infections (osteomyelitis), reactive oxygen species (ROS) generation via excessive inflammation, and underlying conditions such as osteoporosis can contribute to suboptimal bone tissue regeneration. ROS accumulation stimulates osteoblast apoptosis, while promoting osteoclast differentiation. These processes inhibit mineralization and osteogenesis. Conventional therapeutics involve the utilization of drugs and bone grafts. However, these approaches pose limitations and can result in subsequent complications. Microbial infections, ROS accumulation, and excessive inflammations are factors that …


Electrochemical Strategies For Microrna Quantification Leveraging Amplification And Nanomaterials: A Review, Alexander Hunt, Gymama Slaughter Jan 2025

Electrochemical Strategies For Microrna Quantification Leveraging Amplification And Nanomaterials: A Review, Alexander Hunt, Gymama Slaughter

Center for Bioelectronics Publications

MicroRNAs (miRNAs) are small, non-coding RNAs that regulate gene expression and have emerged as critical biomarkers in various diseases, including cancer. Their stability in bodily fluids and role as oncogenes or tumor suppressors make them attractive targets for non-invasive diagnostics. However, conventional detection methods, such as Northern blotting, RT-PCR, and microarrays, are limited by low sensitivity, lengthy protocols, and limited specificity. Electrochemical biosensors offer a promising alternative, providing high sensitivity, rapid response times, portability, and cost-effectiveness. These biosensors translate miRNA hybridization events into quantifiable electrochemical signals, often leveraging redox-active labels, mediators, or intercalators. Recent advancements in nanomaterials and signal amplification …


Studying The Role Of Novel Carbon Nano Tubes As A Therapeutic Agent To Treat Triple Negative Breast Cancer (Tnbc) - An In Vitro And In Vivo Study, Kamal Asadipour, Narendra Banerjee, Jazmine Cuffee, Karrington Perry, Shennel Brown, Anasua Banerjee, Erik Armstrong, Stephen Beebe, Hirendra Banerjee Jan 2024

Studying The Role Of Novel Carbon Nano Tubes As A Therapeutic Agent To Treat Triple Negative Breast Cancer (Tnbc) - An In Vitro And In Vivo Study, Kamal Asadipour, Narendra Banerjee, Jazmine Cuffee, Karrington Perry, Shennel Brown, Anasua Banerjee, Erik Armstrong, Stephen Beebe, Hirendra Banerjee

Bioelectrics Publications

Triple Negative Breast Cancer (TNBC) is a malignant cancer with a very high mortality rate around the world. African American(AA) women are 28% more likely to die from triple-negative breast cancer (TNBC) than white women with the same diagnosis. AA patients are also more likely to be diagnosed at a later stage of the disease and have the lowest survival rates for any stage of diagnosis; There are very few existing anti TNBC drugs with therapeutic efficacy hence newer anti TNBC drug design and investigation is needed. Carbon Nano Tubes(CNT) in recent years have shown effective anti-cancer properties in various …


Flow Electrode Capacitive Deionization Using Mxene Suspension Electrodes For Energy Efficient Water Remediation, Naqsh E. Mansoor Dec 2023

Flow Electrode Capacitive Deionization Using Mxene Suspension Electrodes For Energy Efficient Water Remediation, Naqsh E. Mansoor

Boise State University Theses and Dissertations

The growing global demand for clean water, coupled with increasing concerns around aquatic pollution, necessitate the development of high performing and energy-efficient technologies for wastewater remediation. Capacitive Deionization (CDI) has emerged as a promising electrochemical method for desalination and removal of contaminants from various water sources. Despite its potential, CDI faces a significant bottleneck concerning the selection and optimization of suitable electrode materials. The choice of electrode materials critically influences the performance and efficiency of the CDI system, with the quest for an ideal material remaining a challenging and ongoing research endeavor. This dissertation explores potential of using MXene materials …


Chronic Disease And The Inflammatory Body Burden: Social And Environmental Factors And Implications For Longevity, Catherine L. Zeman, Junu Shrestha, Raihan Khan, Ashley N. Oginz Wilson, Lisa A. Beltz Nov 2023

Chronic Disease And The Inflammatory Body Burden: Social And Environmental Factors And Implications For Longevity, Catherine L. Zeman, Junu Shrestha, Raihan Khan, Ashley N. Oginz Wilson, Lisa A. Beltz

Department of Health Sciences - Faculty Scholarship

Everyday our body’s immune and detoxification systems are working to protect us from pathogens, cancerous cells, foreign substances, and chemical exposures. Declining trends in per capita longevity in the US suggest that these systems are being stressed beyond their natural resiliency. Several of these trends are discussed in light of funding for preventive vs. illness care. The authors then use a systems and interdisciplinary approach to introduce the immunobiological and biotransformation systems, and the concept of the exposome for those unfamiliar. The science of the immune and detoxification systems is explored considering the idea of chronic low-level inflammation. Additionally, new …


Developing A Chlorophyll-Based Near-Infrared Fluorescent Probe For Cancer Cell Imaging, Benilde E. Adriano, Nycol M. Cotto, Neeraj Chauhan, Meena Jaggi, Subhash C. Chauhan, Murali M. Yallapu Oct 2023

Developing A Chlorophyll-Based Near-Infrared Fluorescent Probe For Cancer Cell Imaging, Benilde E. Adriano, Nycol M. Cotto, Neeraj Chauhan, Meena Jaggi, Subhash C. Chauhan, Murali M. Yallapu

Research Colloquium

Introduction: Near-Infrared (NIR) fluorescence-based imaging is a noteworthy and safer strategy for cancer cells/tissues imaging compared to radiological imaging. NIR fluorescence offers deep tissue penetration and have minimal obstruction by autofluorescence and photon scattering [1]. There are several NIR dyes including indocyanine green (ICG) [2] and IR-1061 [3] that allow high-resolution tissue imaging. However, these dyes possess some low-quality characteristics which limit their use, namely photo instability, toxicity, poor water solubility, and short half-lives [4]. Therefore, more efficient and effective alternatives are urgently required to provide the desired clinical outcomes. Chlorophyll (Chl) is a natural dietary NIR fluorescence emitting …


Brief Review: Applications Of Nanocomposite In Electrochemical Sensor And Drugs Delivery, Zia Ul Haq Khan, Taj Malook Khan, Amjad Khan, Noor Samad Shah, Nawshad Muhammad, Kamran Tahir, Jibran Iqbal, Abdur Rahim, Syed Khasim, Iftikhar Ahmad, Khadija Shabbir, Noor Shad Gul, Jianbo Wu Mar 2023

Brief Review: Applications Of Nanocomposite In Electrochemical Sensor And Drugs Delivery, Zia Ul Haq Khan, Taj Malook Khan, Amjad Khan, Noor Samad Shah, Nawshad Muhammad, Kamran Tahir, Jibran Iqbal, Abdur Rahim, Syed Khasim, Iftikhar Ahmad, Khadija Shabbir, Noor Shad Gul, Jianbo Wu

All Works

The recent advancement of nanoparticles (NPs) holds significant potential for treating various ailments. NPs are employed as drug carriers for diseases like cancer because of their small size and increased stability. In addition, they have several desirable properties that make them ideal for treating bone cancer, including high stability, specificity, higher sensitivity, and efficacy. Furthermore, they might be taken into account to permit the precise drug release from the matrix. Drug delivery systems for cancer treatment have progressed to include nanocomposites, metallic NPs, dendrimers, and liposomes. Materials’ mechanical strength, hardness, electrical and thermal conductivity, and electrochemical sensors are significantly improved …


Radiolabeled Nanomaterial For Cancer Diagnostics And Therapeutics: Principles And Concepts, Muskan Goel, Yuri Mackeyev, Sunil Krishnan Jan 2023

Radiolabeled Nanomaterial For Cancer Diagnostics And Therapeutics: Principles And Concepts, Muskan Goel, Yuri Mackeyev, Sunil Krishnan

Faculty, Staff and Student Publications

In the last three decades, radiopharmaceuticals have proven their effectiveness for cancer diagnosis and therapy. In parallel, the advances in nanotechnology have fueled a plethora of applications in biology and medicine. A convergence of these disciplines has emerged more recently with the advent of nanotechnology-aided radiopharmaceuticals. Capitalizing on the unique physical and functional properties of nanoparticles, radiolabeled nanomaterials or nano-radiopharmaceuticals have the potential to enhance imaging and therapy of human diseases. This article provides an overview of various radionuclides used in diagnostic, therapeutic, and theranostic applications, radionuclide production through different techniques, conventional radionuclide delivery systems, and advancements in the delivery …


Nano-Embedded Medical Devices And Delivery Systems In Interventional Radiology, Erin Marie D San Valentin, Allan John R Barcena, Carleigh Klusman, Benjamin Martin, Marites P Melancon Jan 2023

Nano-Embedded Medical Devices And Delivery Systems In Interventional Radiology, Erin Marie D San Valentin, Allan John R Barcena, Carleigh Klusman, Benjamin Martin, Marites P Melancon

Faculty, Staff and Student Publications

Nanomaterials research has significantly accelerated the development of the field of vascular and interventional radiology. The incorporation of nanoparticles with unique and functional properties in medical devices and delivery systems has paved the way for the creation of novel diagnostic and therapeutic procedures for various clinical disorders. In this review, we discuss the advancements in the field of interventional radiology and the role of nanotechnology in maximizing the benefits and mitigating the disadvantages of interventional radiology theranostic procedures. Several nanomaterials have been studied to improve the efficacy of interventional radiology interventions, reduce the complications associated with medical devices, improve the …


Nanofabrication For Precision Vaccinology, Karen Zagorski Dec 2022

Nanofabrication For Precision Vaccinology, Karen Zagorski

Theses & Dissertations

Vaccines are among the most effective and safe therapeutics known to mankind. Historically the approach to the creation of new vaccines has been dominated by empirical research, trial, and error. This thesis focuses on the more modern, rational approaches to vaccinology based on the current understanding of the inner workings of the immune system. We used nanotechnology for the generation of novel immunogens, addressed several challenges, and characterized the immune responses.

The preparation, characterization, and troubleshooting of several vaccines against dimeric amyloid beta are covered in chapters 4-6. Despite being ultimately unsuccessful, this part provided a deeper understanding of the …


Macromolecular Fluorescent Conjugates For Bioimaging Applications, Paul Lovell May 2022

Macromolecular Fluorescent Conjugates For Bioimaging Applications, Paul Lovell

Theses & Dissertations

Bioimaging tools enable the visualization of small anatomical features as well as structures that may be obscured by other tissue. One such group of tools are fluorescent probes, molecules that emit detectable signals when stimulated by an excitation source. Incorporating fluorescent conjugates for clinical purposes would enable direct usage for the diagnosis, detection, or treatment of diseases. The development of specific targeting agents is feasible due to the number of nanomaterials and biological products that contain fluorophores. Specific targeting agents can target a particular region of interest, such as a cancerous tumor for removal or vital nerve structure for avoidance …


Multifunctional Programmable Self-Assembled Nanoparticles In Nanomedicine, Yoshie Sakamaki Dec 2021

Multifunctional Programmable Self-Assembled Nanoparticles In Nanomedicine, Yoshie Sakamaki

Graduate Theses and Dissertations

Developing methodologies to control the architecture of nanoparticles (NPs) at the atomic level prevents their inhomogeneity and leads to a variety of expected functions. Rationally designed nanoparticles can either be programmed or crystallized structures into pre-determined structures achieving tunable particle pore size and physiochemistry. In this dissertation, two broad classes of multifunctional nanoparticles are developed, metal-organic frameworks and DNA-NP aggregates.

Metal-organic frameworks are a novel class of highly porous crystalline materials built from organic linkers and metal cluster-based secondary building units. However, applications in bioremediation have not been developed very well especially in applications regarding drug delivery systems (DDS). The …


Plga Nanoparticle-Based Formulations To Cross The Blood–Brain Barrier For Drug Delivery: From R&D To Cgmp, Kaining Zhi, Babatunde Raji, Anantha R. Nookala, Mohammad Moshahid Khan, Xuyen H. Nguyen, Swarna Sakshi, Tayebeh Pourmotabbed, Murali M. Yallapu Apr 2021

Plga Nanoparticle-Based Formulations To Cross The Blood–Brain Barrier For Drug Delivery: From R&D To Cgmp, Kaining Zhi, Babatunde Raji, Anantha R. Nookala, Mohammad Moshahid Khan, Xuyen H. Nguyen, Swarna Sakshi, Tayebeh Pourmotabbed, Murali M. Yallapu

School of Medicine Publications

The blood–brain barrier (BBB) is a natural obstacle for drug delivery into the human brain, hindering treatment of central nervous system (CNS) disorders such as acute ischemic stroke, brain tumors, and human immunodeficiency virus (HIV)-1-associated neurocognitive disorders. Poly(lactic-co-glycolic acid) (PLGA) is a biocompatible polymer that is used in Food and Drug Administration (FDA)-approved pharmaceutical products and medical devices. PLGA nanoparticles (NPs) have been reported to improve drug penetration across the BBB both in vitro and in vivo. Poly(ethylene glycol) (PEG), poly(vinyl alcohol) (PVA), and poloxamer (Pluronic) are widely used as excipients to further improve the stability and effectiveness of PLGA …


Copper Sulfide Manganese Nanoparticles For Multimodality Imaging And Therapy, Ali S. Gawi Ermi Jan 2021

Copper Sulfide Manganese Nanoparticles For Multimodality Imaging And Therapy, Ali S. Gawi Ermi

Theses and Dissertations

Abstract

COPPER SULFIDE MANGANESE NANOPARTICLES FOR MULTIMODALITY IMAGING AND THERAPY

By Ali S. Gawi Ermi, MSc

Inorganic nanoparticles (NPs) are compatible with metal-based multi-modality molecular imaging and targeted therapy. Copper sulfide nanoparticles (CuS NPs) are attractive photoacoustic and photothermal agents and are amenable to incorporation of radionuclides and paramagnetic elements to facilitate image-guided therapy. The aim of this work is to develop manganese (Mn)- doped CuS NP, intrinsically radiolabeled with radionuclides such as (Zirconium-89 (89Zr), Copper-64/67 (64/67Cu) and Manganese-52/55 (52/55Mn)). This novel approach combines Photoacoustic (PA), Positron emission tomography (PET), Single-photon emission computed tomography …


Comprehensive Review On Current Interventions, Diagnostic, And Nanotechnology Perspectives Against Sars-Cov-2, Deepak S. Chauhan, Rajendra Prasad, Rohit Srivastava, Meena Jaggi, Subhash C. Chauhan, Murali M. Yallapu Jul 2020

Comprehensive Review On Current Interventions, Diagnostic, And Nanotechnology Perspectives Against Sars-Cov-2, Deepak S. Chauhan, Rajendra Prasad, Rohit Srivastava, Meena Jaggi, Subhash C. Chauhan, Murali M. Yallapu

School of Medicine Publications

COVID-19 has dramatically challenged the healthcare system of almost all countries. The authorities are struggling to minimize the mortality along with ameliorating the economy downturn. Unfortunately, till now, there has been no promising medicine or vaccine available. Herein, we deliver a perspective of nanotechnology for increasing the specificity and sensitivity of current interventional platforms towards the urgent need of quickly deployable solutions. This review summarizes the recent involvement of nanotechnology from the development of biosensor to fabrication of multifunctional nanohybrid system practiced for respiratory and deadly viruses, along with the recent interventions and current understanding about SARS-CoV2.


Sensors And Wearables In Oncology: A Study Of The Barriers And Facilitators To Adoption, Sam Hanna May 2020

Sensors And Wearables In Oncology: A Study Of The Barriers And Facilitators To Adoption, Sam Hanna

Doctor of Philosophy in Translational Health Sciences Dissertations

Innovation, although a subject of considerable debate (e.g., Baregheh et al., 2009; Christensen, 1997), can be defined as the introduction and dissemination of a new or a different idea into use or practice that drives impact (Solis and Sinfield, 2014). Many studies and editorials have highlighted the complexity of the United States health system and detailed the slow speed by which innovative ideas materialize into impactful innovations (Continuing America’s leadership (2017); England & Stewart (2007); Kannampallil, Schauer, Cohen & Patel (2011)). While there are many advances in sensor and wearable technologies in this instance, the adoption rate by oncologists has …


Investigation On Nanoparticle Based Combination Therapy For Targeted Cancer Treatment, Muhammad Raisul Abedin Jan 2020

Investigation On Nanoparticle Based Combination Therapy For Targeted Cancer Treatment, Muhammad Raisul Abedin

Doctoral Dissertations

“The current treatment methods in cancer are associated with toxicity in healthy tissues, partial therapeutic response, drug resistance and finally recurrence of the disease. The cancer drugs are challenged by non-specific binding, undesired toxicity in healthy cells, low therapeutic index and finally poor therapeutic outcome. In this work, a targeted nanoscale therapeutic system Antibody Drug Nanoparticle (ADN) was engineered to selectively inhibit the breast cancer cell growth with reduced toxicity in healthy cells. The ADNs were designed by synthesizing rod shaped anoparticles using pure chemotherapeutic drug and covalently conjugating a therapeutic monoclonal antibody (mAb) on the surface of the drug …


Nutritional Transporter Mediated Drug Delivery For Cancer, Siddharth S. Kesharwani Jan 2019

Nutritional Transporter Mediated Drug Delivery For Cancer, Siddharth S. Kesharwani

Electronic Theses and Dissertations

Recent advancements in nanotechnology have unfolded novel opportunities in medicine, especially in targeted therapeutics and imaging for cancer. However, the majority of the existing nanotechnologies for cancer suffer from shortcomings such as (i) rapid elimination from the systemic circulation before reaching the cancer tissue. (ii) poor tumor accumulation, targeting, and penetration due to inadequate vasculature and extensive extracellular matrix in the tumor. Thus, overcoming these two limitations of nanotechnology is of considerable interests for cancer researchers. In this dissertation, we demonstrate the feasibility of glucose-modified nanoparticles (GLU-NPs) as an efficient cancer targeted-delivery system for enhancing the systemic circulation time and …


Combination Strategies For Targeted Delivery Of Nanoparticles For Cancer Therapy, Zhonglie He, Kangze Liu, Hugh Byrne, Patrick J. Cullen, Furong Tian, James Curtin Jan 2019

Combination Strategies For Targeted Delivery Of Nanoparticles For Cancer Therapy, Zhonglie He, Kangze Liu, Hugh Byrne, Patrick J. Cullen, Furong Tian, James Curtin

Books / book chapters

Pharmaceuticals, and more recently biopharmaceuticals, have become the mainstay for antineoplastic treatments in combination with surgical interventions and radiation therapy. In recent years, advances have been made in the development of nano-technological interventions for the treatment of cancer alone or in combination with existing therapeutic modalities. Nanotechnology used for therapeutic drug delivery and sensitization of photodynamic, sonodynamic and radiotherapy are now being tested in preclinical and clinical trials for the treatment of cancer. This article will review the current state of the art for nanotechnology therapies with an emphasis on targeted drug delivery and the observed and likely benefits when …


Multifunctional Nanocomposites In Coating Technology: Synthesis, Characterization, Formulation, Evaluation And Application, Sudeshna Chakraborty Jan 2018

Multifunctional Nanocomposites In Coating Technology: Synthesis, Characterization, Formulation, Evaluation And Application, Sudeshna Chakraborty

Graduate Research Theses & Dissertations

Application of Nanomaterials using nanotechnology has gained significant

attention in the coating industry in recent years. Their application has had a great

impact, particularly in the 3C industries (computer, communication, and construction).

Incorporation of nanomaterials into polymer carriers through a systematic approach to

coating processes can enhance various physical properties, such as mechanical,

optical, electrical and thermal properties. The current dissertation focused on the

synthesis and characterization of new nanomaterials like mesoporous silica or

nanocomposites like copper-doped zinc oxide that can be used in the coating to study

thermal cooling performance and enhancement of thermal conductivity. New thermal

devices will …


Development Of Diverse Size And Shape Rna Nanoparticles And Investigation Of Their Physicochemical Properties For Optimized Drug Delivery, Daniel L. Jasinski Jan 2017

Development Of Diverse Size And Shape Rna Nanoparticles And Investigation Of Their Physicochemical Properties For Optimized Drug Delivery, Daniel L. Jasinski

Theses and Dissertations--Pharmacy

RNA nanotechnology is an emerging field that holds great promise for advancing drug delivery and materials science. Recently, RNA nanoparticles have seen increased use as an in vivo delivery system. RNA was once thought to have little potential for in vivo use due to biological and thermodynamic stability issues. However, these issues have been solved by: (1) Finding of a thermodynamically stable three-way junction (3WJ) motif; (2) Chemical modifications to RNA confer enzymatic stability in vivo; and (3) the finding that RNA nanoparticles exhibit low immunogenicity in vivo.

In vivo biodistribution and pharmacokinetics are affected by the physicochemical …


Antimicrobial Activity Of Fractionated Borohydride-Capped And Electrochemical Colloidal Silver, Marjorie M. Markopoulos Jan 2017

Antimicrobial Activity Of Fractionated Borohydride-Capped And Electrochemical Colloidal Silver, Marjorie M. Markopoulos

Browse all Theses and Dissertations

Silver nanoparticles (AgNPs) and ionic silver (Ag+) are known to be broad-spectrum antimicrobial agents. Recent studies show these agents may be an alternative to the most widely used drinking water disinfectant, chlorine. Chlorine is a toxic industrial chemical with a lethal concentration of 430 ppm after 30 minutes. Additionally, chlorine can react with naturally occurring materials to produce a number of disinfection byproducts such as chloroform and trihalomethanes. Some of these byproducts pose cancer risks in addition to other negative impacts to human health. These would be eliminated with the use of Ag+ or AgNPs. The main goal of this …


Calcium Phosphate As A Key Material For Socially Responsible Tissue Engineering, Vuk Uskoković, Victoria M. Wu Jun 2016

Calcium Phosphate As A Key Material For Socially Responsible Tissue Engineering, Vuk Uskoković, Victoria M. Wu

Pharmacy Faculty Articles and Research

Socially responsible technologies are designed while taking into consideration the socioeconomic, geopolitical and environmental limitations of regions in which they will be implemented. In the medical context, this involves making therapeutic platforms more accessible and affordable to patients in poor regions of the world wherein a given disease is endemic. This often necessitates going against the reigning trend of making therapeutic nanoparticles ever more structurally complex and expensive. However, studies aimed at simplifying materials and formulations while maintaining the functionality and therapeutic response of their more complex counterparts seldom provoke a significant interest in the scientific community. In this review …


Nanoparticles Composed Of Zn And Zno Inhibit Peronospora Tabacina Spore Germination In Vitro And P. Tabacina Infectivity On Tobacco Leaves, George Wagner, Victor Korenkov, Jonathan D. Judy, Paul M. Bertsch Mar 2016

Nanoparticles Composed Of Zn And Zno Inhibit Peronospora Tabacina Spore Germination In Vitro And P. Tabacina Infectivity On Tobacco Leaves, George Wagner, Victor Korenkov, Jonathan D. Judy, Paul M. Bertsch

Plant and Soil Sciences Faculty Publications

Manufactured nanoparticles (NPs) are increasingly being used for commercial purposes and certain NP types have been shown to have broad spectrum antibacterial activity. In contrast, their activities against fungi and fungi-like oomycetes are less studied. Here, we examined the potential of two types of commercially available Zn NPs (Zn NPs and ZnO NPs) to inhibit spore germination and infectivity on tobacco leaves resulting from exposure to the fungi-like oomycete pathogen Peronospora tabacina (P. tabacina). Both types of NPs, as well as ZnCl2 and bulk ZnO control treatments, inhibited spore germination compared to a blank control. ZnO ENMs …