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Articles 1 - 30 of 74
Full-Text Articles in Pharmacy and Pharmaceutical Sciences
Iron-Based Nanoparticles As Delivery Tools, Keykavous Parang, Rajesh Vadlapatla, Ajoy Koomer, Victoria Moran, Lanie Jackson, Amir Nasrolahi Shirazi
Iron-Based Nanoparticles As Delivery Tools, Keykavous Parang, Rajesh Vadlapatla, Ajoy Koomer, Victoria Moran, Lanie Jackson, Amir Nasrolahi Shirazi
Pharmacy Faculty Articles and Research
Iron-based nanoparticles, particularly iron oxide nanostructures (IONPs), have emerged as versatile and clinically relevant platforms for drug delivery and theranostic applications. Among these, superparamagnetic iron oxide nanoparticles (SPIONs), including magnetite (Fe3O4) and maghemite (γ-Fe2O3), are the most extensively investigated due to their biocompatibility, magnetic responsiveness, and established safety profiles. Their unique superparamagnetic behavior enables external magnetic-field-guided targeting, magnetic resonance imaging (MRI) contrast enhancement, and magnetically triggered hyperthermia, enabling simultaneous diagnosis and therapy. Surface functionalization with polymers, silica, lipids, peptides, and biomolecules further improves colloidal stability, circulation time, targeting specificity, and controlled drug …
Gadolinium Nanoparticles: Emerging Platforms Beyond Imaging For Drug Delivery And Theranostics, Amir Nasrolahi Shirazi, Rajesh Vadlapatla, Ajoy Koomer, Heyam Zayed, Paris Marabut, Keykavous Parang
Gadolinium Nanoparticles: Emerging Platforms Beyond Imaging For Drug Delivery And Theranostics, Amir Nasrolahi Shirazi, Rajesh Vadlapatla, Ajoy Koomer, Heyam Zayed, Paris Marabut, Keykavous Parang
Pharmacy Faculty Articles and Research
Gadolinium nanoparticles (GdNPs) have gained increasing attention as multifunctional metal-based nanoplatforms that extend far beyond their traditional use as magnetic resonance imaging (MRI) contrast agents. Their specific magnetic properties, tunable physicochemical features, and tunable biocompatibilities with biocompatible coatings give them great potential as drug delivery and theranostic applications. They offer greater stability, lower systemic toxicity, and more surface modification options compared to molecular gadolinium chelates. The functionalized GdNPs not only show excellent properties as drug carriers for their specific indications but also serve as agents in various imaging modalities with superior therapeutic efficacy by means of radio sensitization and magnetically …
Tumor Targeting With Peptide-Drug Conjugates: Showcasing Key Progress And Hurdles, Keykavous Parang, Thuy Do, Clare Dinh, Dorna Davanidavari, Max Foroughi, Troy Khong, Mahsa Moazen, Amir Nasrolahi Shirazi
Tumor Targeting With Peptide-Drug Conjugates: Showcasing Key Progress And Hurdles, Keykavous Parang, Thuy Do, Clare Dinh, Dorna Davanidavari, Max Foroughi, Troy Khong, Mahsa Moazen, Amir Nasrolahi Shirazi
Pharmacy Faculty Articles and Research
Peptide-drug conjugates (PDCs) are modular, targeted therapeutics composed of a homing peptide linked to a cytotoxic or modulating drug payload via a cleavable/non-cleavable linker. PDCs utilize peptide targeting to enhance the delivery of potent drugs to tumors, providing advantages such as superior tissue penetration, reduced immunogenicity, and simpler manufacture compared to antibody-drug conjugates (ADCs). A comparison of PDCs versus ADCs highlights that PDCs’ small size (~1-3 kDa) enables deeper tumor penetration and faster clearance, whereas ADCs (~150 kDa) benefit from prolonged circulation but suffer from limited tissue diffusion. This review surveys recent advances in PDC design and application. We discuss …
Investigating The Immunostimulatory Potential Of Dsrna-Silk Nanoparticle Complexes In Melanoma, Samuel J. Peters
Investigating The Immunostimulatory Potential Of Dsrna-Silk Nanoparticle Complexes In Melanoma, Samuel J. Peters
Theses and Dissertations (Comprehensive)
The rate of resistance to immune checkpoint inhibitor treatment in metastatic melanoma is quite high, with an overall rate of 70%. Melanoma achieves these high rates of resistance by suppressing the immune response in the tumour microenvironment (TME), making them immunologically “cold”. The type 1 interferon response could be leveraged to initiate immune responses in melanoma, making their “cold” TMEs “warm” again. Double-stranded ribonucleic acids (dsRNAs) are potent activators of an innate immune response; however, they are susceptible to degradation by nucleases present in the body and need a carrier. Silk nanoparticles (SNPs) are an ideal drug-delivery platform as they …
A Systematic Review On Niosomes: Composition, Preparation, And Applications, Sanket Gawade Mr., Sunil Attimarad, Vishakha Desai Ms.
A Systematic Review On Niosomes: Composition, Preparation, And Applications, Sanket Gawade Mr., Sunil Attimarad, Vishakha Desai Ms.
Manipal Journal of Medical Sciences
Conventional drug carrier systems are restricted owing to poor bioavailability, weak stability and non-specific localization, which causes systemic toxicities and reduced therapeutic efficacy. Niosomes, one of the nonionic surfactant vesicular systems, have been suggested that value to overcome these constraints. In this review, we give an account of recent progress in niosome research, highlighting their merits, composition, characterization, and applications.
Niosomes offer several advantages including increased drug bioavailability, targeted delivery and reduced toxicity. Bilayered niosomes can entrap both hydrophilic and lipophilic drugs, therefore allowing simultaneous delivery of actives components. We provide an overview of various techniques for niosome preparation including …
Selenium Nanoparticles As Versatile Delivery Tools, Amir Nasrolahi Shirazi, Rajesh Vadlapatla, Ajoy Koomer, Kyle Yep, Keykavous Parang
Selenium Nanoparticles As Versatile Delivery Tools, Amir Nasrolahi Shirazi, Rajesh Vadlapatla, Ajoy Koomer, Kyle Yep, Keykavous Parang
Pharmacy Faculty Articles and Research
Selenium nanoparticles (SeNPs) have emerged as promising metal-based nanoparticles for drug delivery due to their unique physicochemical properties, intrinsic bioactivity, and biocompatibility. SeNPs offer a lower toxicity, higher bioavailability, and flexibility to be customized for surface chemistry compared to traditional selenium compounds. Advances in synthetic strategies, including chemical reduction, green biosynthesis, and surface functionalization with polymers, peptides, or ligands, have improved their stability, targeting capability, and circulation time. SeNP-based systems have demonstrated unique anticancer, antimicrobial, and anti-inflammatory activities, as they can function as drug carriers and active therapeutic agents. The surface of SeNPs has been functionalized with ligands such as …
Local Injection Of Particles For Retinoic Acid Drug Delivery Improves Muscle Structure And Modulates Inflammation In Mice Recovering From Cast Immobilization, Candice V. Cheung, Regina A. Searcy, Kidochukwu J. Atube, Nicholas A. Colonna, Kelsey E. Krusen, Kate J. Cappage, Khufu M. Holly, R. Paul Ward Pratz, Jessie H. Fournier, Vitali Sikirzhytski Ph.D.
Local Injection Of Particles For Retinoic Acid Drug Delivery Improves Muscle Structure And Modulates Inflammation In Mice Recovering From Cast Immobilization, Candice V. Cheung, Regina A. Searcy, Kidochukwu J. Atube, Nicholas A. Colonna, Kelsey E. Krusen, Kate J. Cappage, Khufu M. Holly, R. Paul Ward Pratz, Jessie H. Fournier, Vitali Sikirzhytski Ph.D.
Faculty Publications
Disuse muscle atrophy secondary to acute illness or injury prolongs recovery and increases risk of permanent disability as a result of reduced muscle strength and myofiber damage upon reambulation. However, there are no pharmacotherapies to support muscle growth and repair following prolonged immobility. We propose that all-trans retinoic acid (ATRA) may support recovery of atrophied muscle via modulation of satellite cells and macrophages. Clinical application of ATRA is hindered by solubility, stability, and the need for high systemic doses. Therefore, in the current study, we developed poly(lactide-co-glycolide) (PLG) particles for local injection and extended release of ATRA (ATRA-PLG) and investigated …
Engineered Bifidobacterium Strains Colonization At Tumor Sites: A Novel Approach To The Delivery Of Cancer Treatments, Rhea Amonkar, Ashley Ann Uy, Pablo Ramirez, Harina Patel, Jae Jin Jeong, Nicole Oyinade Shoyele, Vidhi Vaghela, Ashakumary Lakshmikuttyamma
Engineered Bifidobacterium Strains Colonization At Tumor Sites: A Novel Approach To The Delivery Of Cancer Treatments, Rhea Amonkar, Ashley Ann Uy, Pablo Ramirez, Harina Patel, Jae Jin Jeong, Nicole Oyinade Shoyele, Vidhi Vaghela, Ashakumary Lakshmikuttyamma
College of Pharmacy Faculty Papers
Bacteria-mediated cancer therapy represents a novel and promising strategy for targeted drug delivery to solid tumors. Multiple studies have demonstrated that various Bifidobacterium species can selectively colonize the hypoxic microenvironments characteristic of solid tumors. Leveraging this property, Bifidobacterium has been explored as a delivery vector for a range of anti-cancer approaches such as immunotherapy, nanoformulated chemothera- peutics, and gene therapy. Notably, anti-angiogenic genes such as endostatin and tumstatin have been successfully delivered to colorectal tumors using Bifidobacterium infantis and Bifidobacterium longum, respectively. Additionally, Bifidobacterium bifidum has been employed to transport doxorubicin and paclitaxel nanoparticles to breast and lung tumor …
Emerging Biomimetic Drug Delivery Nanoparticles Inspired By Extracellular Vesicles, Viswanathan Sundaram, Santosh Aryal
Emerging Biomimetic Drug Delivery Nanoparticles Inspired By Extracellular Vesicles, Viswanathan Sundaram, Santosh Aryal
Pharmacy Faculty Publications and Presentations
Nanoparticles (NPs) made up of cellular components such as extracellular vesicles (EVs) with a biomimetic outlook have emerged as a revolutionary approach in nanomedicine, providing significant benefits for targeted drug administration, immunotherapy, monitoring therapeutic response, and diagnostic applications. Utilizing the distinctive characteristics of natural cell membranes, membrane proteins, and cellular contents, these biomimetic NPs acquire essential biological functions from their source and biogenesis, including immune evasion, extended circulation, and target recognition, rendering them optimal candidates for therapeutic applications. This review offers a comprehensive examination of the methodologies of EVs infused with synthetic.
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
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 …
Exosomes And Encapsulated Exomirs In Breast Cancer: Theragnostic Applications And Clinical Implications, Muhammad Imran Sajid, Shafia Bukhari, Hamid Ilyas, Rubina Malik, Minahil Fatima, Rakesh Kumar Tiwari, Surya M. Nauli, Khawaja Husnain Haider
Exosomes And Encapsulated Exomirs In Breast Cancer: Theragnostic Applications And Clinical Implications, Muhammad Imran Sajid, Shafia Bukhari, Hamid Ilyas, Rubina Malik, Minahil Fatima, Rakesh Kumar Tiwari, Surya M. Nauli, Khawaja Husnain Haider
Pharmacy Faculty Books and Book Chapters
Exosomes, released by cells, are small vesicles that have emerged as critical theranostic tools in breast cancer due to their unique ability to transport diverse biomolecules such as proteins, lipids, and RNAs, including microRNAs (ExomiRs). These vesicles are critical in modulating the tumor microenvironment, driving processes like cancer proliferation, invasion, metastasis, and drug resistance. Exosomal microRNAs such as ExomiR-21, ExomiR-1246, and ExomiR-155, with their profound influence on the gene expressions in the recipient cells, are the unsung heroes in tumor progression and immune modulation. This chapter delves into exosome's dual diagnostic and therapeutic potential in breast cancer. It highlights their …
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 …
Folic Acid-Decorated Lipidic Nanocapsules Co-Loaded With Atorvastatin And Curcumin To Enhance Glioma Targeting In Mice, Mahitab Bayoumi, John Youshia, Osama Abdelkawy, Sara Abdelgaber, Mona Arafa, Maha Nasr, Omaima Sammour
Folic Acid-Decorated Lipidic Nanocapsules Co-Loaded With Atorvastatin And Curcumin To Enhance Glioma Targeting In Mice, Mahitab Bayoumi, John Youshia, Osama Abdelkawy, Sara Abdelgaber, Mona Arafa, Maha Nasr, Omaima Sammour
Pharmacy
Background: Glioma remains an intractable and highly aggressive brain tumor, mainly due to the daunting obstacle presented by the blood-brain barrier (BBB). To overcome this challenge and enhance therapeutic efficacy, a dual-drug delivery system was engineered. This system co-encapsulated curcumin, a nutraceutical with multitargeted anticancer potential, with atorvastatin calcium, a repurposed anticancer agent, within lipidic nanocapsules (LNCs). Methods: LNCs were prepared via the phase inversion temperature method and optimized using a Box–Behnken design. The optimized LNCs were subsequently functionalized with folic acid (FA) to enable active targeting. FA-LNCs were characterized using, XPS, TEM, in vitro release, and MTT cytotoxicity …
A Review Of 3d Printing Technology In Drug Design Applications, Hasanain Shakir Mahmood, Jinan M. Al-Mousawy, Jamal Ali Ashoor, Ashti M.H. Saeed, Alaa Abdul Razzaq Al-Nuaimi, Pegah Khosravian
A Review Of 3d Printing Technology In Drug Design Applications, Hasanain Shakir Mahmood, Jinan M. Al-Mousawy, Jamal Ali Ashoor, Ashti M.H. Saeed, Alaa Abdul Razzaq Al-Nuaimi, Pegah Khosravian
Maaen Journal for Medical Sciences
Sustainable technologies such as Additive manufacturing or three-dimensional printing (3D printing) have resulted in drastic changes in a number of industries including healthcare and pharmaceuticals. The current review focuses on the achievements accomplished on the effectiveness of three-dimensional printing in the field of drug designing and development. This technology is very precise and can be customized and that gives a way of developing complicated drug delivery systems and individualized medications. Promising areas of focus are the development of particular formulations of medicinal preparations, identification of new approaches to the drug release and potential creation of specific drug production for specific …
Enhancing The Anticancer Effects Of Apiaceae Spice Phytochemicals., Jared Lee Scott
Enhancing The Anticancer Effects Of Apiaceae Spice Phytochemicals., Jared Lee Scott
Electronic Theses and Dissertations
Breast cancer (BC) is a leading contributor to the death of women and is the most common type of cancer. Many chemotherapy drugs are developed from plants, and some plant extracts can exhibit significant anticancer activities while also having less toxic side effects. The Apiaceae plant family consists of several species that are used as culinarily spices which have demonstrated antioxidant, chemopreventive, and anticancer activities. The encapsulation of anticancer phytochemicals into naturally produced membrane-bound nanoparticles known as exosomes could improve their systemic distribution and efficacy. Exosomes are involved in cell-to-cell communication through the delivery of proteins, nucleic acids, and small …
Current Update Of Clinical Therapeutic Strategies For Colon-Targeted Delivery Systems, Risa Widiani Batubara, Fadlina Chany Saputri, Raditya Iswandana
Current Update Of Clinical Therapeutic Strategies For Colon-Targeted Delivery Systems, Risa Widiani Batubara, Fadlina Chany Saputri, Raditya Iswandana
Pharmaceutical Sciences and Research
Oral colon-targeted drug delivery systems represent a significant advancement offering both systemic and local therapeutic effects for a range of intestinal diseases, including irritable bowel syndrome, inflammatory bowel disease, colonic bacterial infections, and colorectal cancer. These systems facilitate the delivery of both small molecules and macromolecular compounds such as peptides, proteins, antibodies, oligonucleotides, RNA, and probiotics. This review provides an up-to-date exploration of the critical factors crucial for the effective design and development of drug delivery systems targeting the colon. The chosen strategy takes into account various aspects of colon physiology that influences the profile of drug release, absorption, dissolution, …
Harnessing Exosomes As A Platform For Drug Delivery In Breast Cancer: A Systematic Review For In Vivo And In Vitro Studies, Abdulwahab Teflischi Gharavi, Saeed Irian, Azadeh Niknejad, Keykavous Parang, Mona Salimi
Harnessing Exosomes As A Platform For Drug Delivery In Breast Cancer: A Systematic Review For In Vivo And In Vitro Studies, Abdulwahab Teflischi Gharavi, Saeed Irian, Azadeh Niknejad, Keykavous Parang, Mona Salimi
Pharmacy Faculty Articles and Research
Breast cancer remains a significant global health concern, emphasizing the critical need for effective treatment strategies, especially targeted therapies. This systematic review summarizes the findings from in vitro and in vivo studies regarding the therapeutic potential of exosomes as drug delivery platforms in the field of breast cancer treatment. A comprehensive search was conducted across bibliographic datasets, including Web of Science, PubMed, and Scopus, using relevant queries from several related published articles and the Medical Subject Headings Database. Then, all morphological, biomechanical, histopathological, and cellular-molecular outcomes were systematically collected. A total of 30 studies were identified based on the Preferred …
Carfilzomib-Loaded Ternary Polypeptide Nanoparticles Stabilized By Polycationic Complexation, Preye Mike Agbana, Ji Eun Park, Piotr G. Rychahou, Kyung-Bo Kim, Younsoo Bae
Carfilzomib-Loaded Ternary Polypeptide Nanoparticles Stabilized By Polycationic Complexation, Preye Mike Agbana, Ji Eun Park, Piotr G. Rychahou, Kyung-Bo Kim, Younsoo Bae
Markey Cancer Center Faculty Publications
Carfilzomib (CFZ) is a second-generation proteasome inhibitor showing great efficacy in multiple myeloma treatment, yet its clinical applications for other diseases such as solid cancers are limited due to low aqueous solubility and poor biostability. Ternary polypeptide nanoparticles (tPNPs) are drug carriers that we previ- ously reported to overcome these pharmaceutical limitations by entrapping CFZ in the core of the nanopar- ticles and protecting the drugs from degradation in biological media. However, preclinical studies revealed that tPNPs would require further improvement in particle stability to suppress initial burst drug release and thus achieve prolonged inhibition of proteasome activity with CFZ …
Utilization Of Semiconductor Nanocrystals In Cancer Diagnose And Treatment, Yasir Q. Almajidi, Ahmed A. Albadri, Mazen M. Jwaid, Yaseen T. Khalaf
Utilization Of Semiconductor Nanocrystals In Cancer Diagnose And Treatment, Yasir Q. Almajidi, Ahmed A. Albadri, Mazen M. Jwaid, Yaseen T. Khalaf
Maaen Journal for Medical Sciences
In contemporary times, nanotechnology has emerged as a notably sophisticated technological discipline. It possesses an interdisciplinary and multidisciplinary nature, spanning a wide array of domains including medical science, engineering, biology, physics, materials science, and chemistry. Utilization of nanotechnology offers a significant advantage by enabling precise manipulation and control of properties to effectively address specific challenges in various applications. In the fields of science and biomedicine, there has been extensive exploration into the use of functional nanomaterials, emerging as rapidly advancing and captivating areas of research. Diverse types of nanomaterials, including silicon nanowires, quantum dots, carbon nanotubes, and gold/silver nanoparticles, which …
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 …
Cryogels: Advancing Biomaterials For Transformative Biomedical Applications., Hossein Omidian, Sumana Dey Chowdhury, Niloofar Babanejad
Cryogels: Advancing Biomaterials For Transformative Biomedical Applications., Hossein Omidian, Sumana Dey Chowdhury, Niloofar Babanejad
HPD Articles
Cryogels, composed of synthetic and natural materials, have emerged as versatile biomaterials with applications in tissue engineering, controlled drug delivery, regenerative medicine, and therapeutics. However, optimizing cryogel properties, such as mechanical strength and release profiles, remains challenging. To advance the field, researchers are exploring advanced manufacturing techniques, biomimetic design, and addressing long-term stability. Combination therapies and drug delivery systems using cryogels show promise. In vivo evaluation and clinical trials are crucial for safety and efficacy. Overcoming practical challenges, including scalability, structural integrity, mass transfer constraints, biocompatibility, seamless integration, and cost-effectiveness, is essential. By addressing these challenges, cryogels can transform biomedical …
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 …
Self-Assembled Ternary Polypeptide Nanoparticles With Improved Biostability For Drug Delivery In Cancer Therapy, Preye Mike Agbana
Self-Assembled Ternary Polypeptide Nanoparticles With Improved Biostability For Drug Delivery In Cancer Therapy, Preye Mike Agbana
Theses and Dissertations--Pharmacy
Cancer remains a real and present threat to global health. In the United States, according to cancer statistics, almost 40% of people will be diagnosed with cancer at some point in their lifetime. Conventional chemotherapy has become the mainstay for cancer treatment option. However, chemotherapeutic agents are plagued with problems such as poor aqueous solubility, chemical degradation, Bio instability, and off-site toxicity due to non-specificity. New drug modalities are needed to tackle the ever-growing burden on cancer. In recent times, the promise of nanotechnology has aided to develop drug delivery vehicles to facilitate the administration of potent chemotherapeutics. Nanoformulations such …
Right Treatment Wrong Time: Immunotherapy Administration Post-Radiotherapy Decreases Tumor Burden In A Preclinical Model Of Brain Metastasis, Kathryn Elizabeth Blethen
Right Treatment Wrong Time: Immunotherapy Administration Post-Radiotherapy Decreases Tumor Burden In A Preclinical Model Of Brain Metastasis, Kathryn Elizabeth Blethen
Graduate Theses, Dissertations, and Problem Reports (ETD)
This dissertation (a) provided an in-depth literature review of methods to modulate the blood-brain and blood-tumor barriers to increase drug delivery and efficacy in brain metastases, (b) evaluated the effects of whole-brain radiation therapy on the blood-brain barrier in immunocompetent and immunocompromised mouse models and proposed a mechanism by which the immune response to radiation disrupts the blood-brain barrier, and (c) developed a syngeneic lung cancer brain metastasis model to determine the impact of coordinated immunotherapy administration with radiotherapy. The blood-brain barrier is an impediment to drug delivery to the brain. The inherent leakiness of the blood-tumor barrier does not …
Industry Update October 2022, Elaine Harris
Industry Update October 2022, Elaine Harris
Articles
Company news Bend Bioscience invests in expansion of drug-delivery capabilities Bend Bioscience (OR, USA) and NovaQuest Private Equity, have announced plans on 11 October 2022 to invest in a new facility in Bend, Oregon. The group will focus on developing new R&D partnerships, and early phase manufacturing and development activities based on proprietary particle engineering-based drug-delivery technologies. This new facility will consist of approximately 20,000 square feet of laboratory and processing areas and it is anticipated that manufacturing and analytical capabilities will operational by the end of Q2 2023. Announcing the investment decision, Dan Dobry, Bend Bioscience’s co-founder said “We …
Electromechanical Effects On Micro And Nano Particles Generated From Drug Delivery Devices And Their Implications In Flow And Deposition Efficiency, Mohammed Ali, Mark Miller
Electromechanical Effects On Micro And Nano Particles Generated From Drug Delivery Devices And Their Implications In Flow And Deposition Efficiency, Mohammed Ali, Mark Miller
Technology Faculty Publications and Presentations
This experimental investigation was undertaken to quantify the electrostatic charge and aerodynamic size distribution of the medicinal drug particles inhaled through an in-vitro mouth-throat (MT) in order to compare the amount of drugs can be delivered to the human lung while mimicking a patient is either sitting or lying. The MT model is a cadaver-based replica cast of human oral-pharyngeal-laryngeal region. Tested drug aerosols were generated by a commercially available metered dose inhaler (MDI). The MT model was placed inside a humidity (95%) and temperature (37oC) controlled chamber. Its mouth-inlet was positioned horizontally and vertically to simulate sitting …
Nanotherapeutics And Hiv: Four Decades Of Infection Canvass The Quest For Drug Development Using Nanomedical Technologies, Bhupender S. Chhikara, Nirpendra Singh, Poonam, Parveen Bazard, Rajender S. Varma, Keykavous Parang
Nanotherapeutics And Hiv: Four Decades Of Infection Canvass The Quest For Drug Development Using Nanomedical Technologies, Bhupender S. Chhikara, Nirpendra Singh, Poonam, Parveen Bazard, Rajender S. Varma, Keykavous Parang
Pharmacy Faculty Articles and Research
We have seen four decades of human struggle to cure or eradicate HIV infection since the first clinical detection of HIV infection. Various developed drugs such as nucleoside reverse transcriptase inhibitors (NRTIs), non-nucleoside reverse transcriptase inhibitors (NNRTIs), protease inhibitors, integrase inhibitors, microbicides, and others have known restrictions, such as side effects and resistance development when used alone, and hidden reservoir of the virus, which have opened the gates for the involvement of nanomedicine associated systems, particularly for latent sites of HIV infection. The nanotechnological vehicles, such as liposomes, dendrimers, metal nanoparticles, polymeric nanocapsules/particles, surfactants, and targeted vehicles have become part …
The Use Of Silica Nanoparticles For Controlled Drug Delivery Of Nicotine, Jennifer C. Iwenofu
The Use Of Silica Nanoparticles For Controlled Drug Delivery Of Nicotine, Jennifer C. Iwenofu
Honors College Theses
Drug molecules can be administered in different ways to the human body. Nanotechnology stands out over other alternatives by delivering drugs to specific locations and reducing reactivity time. In this research, the hydrogen bond between silica nanoparticles and the drug molecule, nicotine, were studied to controllably deliver nicotine by varying pH values.
Effect Of Chemical And Physical Enhancers On The Skin Permeation Of Cromolyn Sodium, Miranda Holman
Effect Of Chemical And Physical Enhancers On The Skin Permeation Of Cromolyn Sodium, Miranda Holman
Electronic Theses and Dissertations
Cromolyn sodium (CS) has clinically shown to be an effective topical remedy for atopic dermatitis, however its physiochemical properties prevent efficient passive drug delivery beyond the outermost skin layer. This project aimed to optimize CS gel formulations and applications to improve drug delivery to the dermis of skin by examining various topical enhancement strategies. Oleic acid, salcaprozate sodium, and microneedles were investigated as enhancers for their effect on skin permeation of CS. In vitro permeation studies across dermatomed porcine ear skin tested CS gels to determine 24-hour drug permeation profiles and skin layer distribution of drug. Further, extraction method efficiency, …