Open Access. Powered by Scholars. Published by Universities.®
Biomedical and Dental Materials Commons™
Open Access. Powered by Scholars. Published by Universities.®
- Institution
- Keyword
-
- Antibacterial (1)
- Biomaterials (1)
- Blood–brain barrier permeability (1)
- Bone graft (1)
- Cement (1)
-
- Chitosan (1)
- Composite (1)
- DNA vaccine (1)
- Drug delivery (1)
- Hepatic ischemia (1)
- Hydroxyapatite (1)
- Nanofibers (1)
- Nanoparticle (1)
- Nanoparticles (1)
- Non-viral gene delivery (1)
- Oral vaccine (1)
- Partial hepatectomy (1)
- Pharmacokinetics (1)
- Phytochemical (1)
- Polymer (1)
- Pringle maneuver (1)
- Reperfusion injury (1)
- Sodium fluorescein (1)
- Therapeutic proteins (1)
- Transfection (1)
- Zein (1)
- Publication
- Publication Type
Articles 1 - 5 of 5
Full-Text Articles in Biomedical and Dental Materials
Development Of Metal-Organic Framework-Based Formulation For Cancer Therapeutics, Kaitlyn D. Ybanez, Rahul Tiwari, Joel De Los Santos, Tarun Minocha, Bianca Jimenez, Subhash Chauhan, Murali Yallapu
Development Of Metal-Organic Framework-Based Formulation For Cancer Therapeutics, Kaitlyn D. Ybanez, Rahul Tiwari, Joel De Los Santos, Tarun Minocha, Bianca Jimenez, Subhash Chauhan, Murali Yallapu
Research Colloquium
Background: Novel hydrogel-based drug delivery systems integrating 𝛾-cyclodextrin metal-organic frameworks (𝛾-CD-MOFs) have recently been developed to overcome the hydrophobicity and poor bioavailability of certain chemotherapeutic drugs. Thermosensitive Pluronic F-127 hydrogels can deliver 𝛾-CD-MOFs to target sites, promoting sustained and regulated drug release, especially for mucosal adhesion scenarios as warranted in cervical cancer. This study presents the development of a formulation that encapsulates curcumin, a model anticancer agent, into a Pluronic F-127 Hydrogel + 𝛾-CD-MOFs to enhance dispersion and enable sitespecific gelation at physiological temperatures (37°C).
Methods: Curcumin-loaded 𝛾-CD-MOFs were synthesized by dissolving 𝛾-CD (1.0 mmol, 1.30 g) and KOH …
Engineered Plga Nanofibers For Drug Delivery, Andrew Mancuso
Engineered Plga Nanofibers For Drug Delivery, Andrew Mancuso
Dissertations, Theses, and Capstone Projects
Poly-lactic-co-glycolic acid (PLGA) polymers are rapidly gaining momentum as a platform for next-generation drug delivery systems due to their ease and low cost of synthesis, favorable biocompatibility and biodegradability, and lack of toxicity. In particular, the application of drug-loaded PLGA nanofibers directly to a target tissue may represent a promising alternative to traditional routes of drug administration (e.g., oral, injectable) as they offer the potential to greatly improve bioavailability, increase efficacy, and reduce off-target toxicity. Furthermore, the use of such a system may potentially allow for greater flexibility in clinical drug development, by enabling the use of compounds which have …
Antimicrobial Hydroxyapatite-Gelatin-Silica Composite Pastes With Tunable Setting Properties, Vuk Uskoković, Shreya Ghosh, Victoria M. Wu
Antimicrobial Hydroxyapatite-Gelatin-Silica Composite Pastes With Tunable Setting Properties, Vuk Uskoković, Shreya Ghosh, Victoria M. Wu
Pharmacy Faculty Articles and Research
Bone grafting is one of the commonest surgical procedures, yet all bone substitutes developed so far suffer from specific weaknesses and the search for a bone graft material with ideal physical and biological properties is still ongoing. Calcium phosphate pastes are the most frequently used synthetic bone grafts, yet they (a) often take an impractically long time to set, (b) release the drug content too fast, and (c) do not form pores large enough to accommodate host cells and foster osseointegration. To make up for these deficiencies, we introduced gelatin and silica to pastes composed of 5–15 nm sized hydroxyapatite …
Chitosan Nanoparticle Modifications For Improved Gene Delivery In An Oral Dna Vaccine Application, Austin Helmink
Chitosan Nanoparticle Modifications For Improved Gene Delivery In An Oral Dna Vaccine Application, Austin Helmink
Honors Program: Senior Projects (Public)
Vaccines represent one of the most significant medical innovations of the 20th century, resulting in the eradication or near eradication of a handful of deadly diseases. However, many infectious diseases remain resistant to effective vaccination, largely due to a lack full immune activation by traditional protein-based vaccines. A promising alternative vaccination strategy is the emerging development of DNA vaccines, which rely upon the delivery of exogenous genetic material to host cells encoding for a viral or bacterial antigen in order to induce a robust immune response by closely mimicking live infection. The delivery of genetic material requires a carrier …
Effects Of Pringle Maneuver And Partial Hepatectomy On The Pharmacokinetics And Blood–Brain Barrier Permeability Of Sodium Fluorescein In Rats, Mohammad K. Miah, Imam H. Shaik, Ulrich Bickel, Reza Mehvar
Effects Of Pringle Maneuver And Partial Hepatectomy On The Pharmacokinetics And Blood–Brain Barrier Permeability Of Sodium Fluorescein In Rats, Mohammad K. Miah, Imam H. Shaik, Ulrich Bickel, Reza Mehvar
Pharmacy Faculty Articles and Research
Liver diseases are known to affect the function of remote organs. The aim of the present study was to investigate the effects of Pringle maneuver, which results in hepatic ischemia–reperfusion (IR) injury, and partial hepatectomy (Hx) on the pharmacokinetics and brain distribution of sodium fluorescein (FL), which is a widely used marker of blood–brain barrier (BBB) permeability. Rats were subjected to Pringle maneuver (total hepatic ischemia) for 20 min with (HxIR) or without (IR) 70% hepatectomy. Sham-operated animals underwent laparotomy only. After 15 min or 8 h of reperfusion, a single 25-mg/kg dose of FL was injected intravenously and serial …