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Meeting 2023 TMS Annual Meeting & Exhibition
Symposium Advanced Biomaterials for Biomedical Implants
Presentation Title Application of Magnetic Iron Oxide Nanostructures in Drug Delivery: A Compact Review
Author(s) Inono C. Omoruyi1, Jeffery I. Omoruyi, Oscar N. Aghedo, Ukeme D. Archibong, Ikhazuagbe Hilary Ifijen
On-Site Speaker (Planned) Oscar N. Aghedo
Abstract Scope Magnetic iron oxide nanoparticles (IONs) stand out among a plethora of drug nanocarriers as sturdy nanoplatforms due to exceptional magnetic and biological properties, which allow them to achieve significant drug loading as well as targeting capabilities. These applications necessitate accurate nanoparticle design in terms of numerous characteristics that must be evaluated in tandem to achieve maximum therapeutic efficacy. This concise overview summarizes recent advances in the roles of untreated and modified iron oxide nanoparticles for drug delivery. These modifications included chitosan, poly(vinylpyrrolidone), poly(vinyl alcohol), poly(lactic-co-glycolic acid), and poly(ethylene glycol). One of the key areas of research in the targeted drug delivery domain is the invention of nanocarriers that allow for efficient delivery of therapeutic chemicals to specific sites. Drugs loaded onto iron oxide nanoparticles can be efficiently guided and selectively delivered to selected sites by precisely altering the structural features of the nanoparticles.
Proceedings Inclusion? Planned:
Keywords Energy Conversion and Storage, High-Temperature Materials, Other

OTHER PAPERS PLANNED FOR THIS SYMPOSIUM

A Combined Experimental and Computational Study of Dental Implant
Analysis of Biometal Alloys in a Clinically Relevant In Vivo Arterial Implant Model
Application of Magnetic Iron Oxide Nanostructures in Drug Delivery: A Compact Review
Candida Albicans Biofilm Formation of an Additive-manufactured Titanium Alloy
Characterization of Spicule Structure
Characterization of Zn-Li-WC Nanocomposite for Biodegradable Implants
Developing Strong and Ductile TWIP Zr-based Alloys for Cardiovascular Stent Application
Development of Advanced Bioabsorbable Zn-based Materials Using Powder-metallurgy Techniques
Effects of Grain Size and Precipitates on the Mechanical and Biocorrosion Properties of ZX10 Mg Alloy
Finite Element Analysis of Partially Biodegradable Ti-PGA Composite Implants Assembled with Bone Fractures
Hemocompatibility and Biocompatibility Evaluation of an Mg-Ca-Sr Alloy for Vascular Stent Applications
K-1: Case Hardening of a Biomedical Cobalt- and Nickel-Free Stainless Steel
K-3: The Effects of Thermal Treatment on the Properties and Performance of Hot Extruded Zn-based Bioresorbable Alloy for Vascular Stenting Applications
Laser Induced Micro/Nano Structured Stainless Steel Surfaces for Biological and Food Storage Applications
Manufacturing of Mg Wires with Optimized Properties for Biomedical Applications
Plasma Reduction Process for Nanostructured Biomaterials and 3D-Scaffold Surfaces
Polymeric Biodegradable Biomaterials for Tissue Bioengineering and Bone Rejuvenation
Real-time Raman Spectroscopy of Binder Setting in Bioactive Glass Composite Bone Tissue Scaffolds
Synthesis and Characterization of Novel Antibacterial Ti-Nb-Cu/Ga Alloys for Load-bearing Implant Applications
The Stress-corrosion-cracking Resistance of Zinc-based Alloys Designed for Bioresorbable Medical Implants
ZnO-NPs-Coated Implants with Osteogenic Properties for Enhanced Osseointegration

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