With the growing demand for personalized medicine and medical devices, the impact of on-demand triggerable (e.g., via magnetic fields) drug delivery systems increased significantly in recent years. The three-dimensional (3D) printing technology has already been applied in the development of personalized dosage forms because of its high-precision and accurate manufacturing ability. In this study, a novel magnetically triggerable drug delivery device composed of a magnetic polydimethylsiloxane (PDMS) sponge cylinder and a 3D printed reservoir was designed, fabricated and characterized. This system can realize a switch between “on” and “off” state easily through the application of different magnetic fields and from different directions. Active...
Thesis (M.S.)--Wichita State University, College of Engineering, Dept. of Mechanical Engineering.Thi...
The objective of this study was to describe the magnetic nanoparticle–drug conjugates for improved c...
Herein, original magnetic drug delivery nanomaterials for cancer therapy are developed and compared,...
In this project, the main objective is to develop a portable and integrated device that is suitable ...
We introduce a novel, on-demand drug delivery device based on a biocompatible magnetic sponge. The s...
This study aims to prepare, optimize, and characterize magnetic-field-sensitive sugar-templated poly...
This study aims to prepare, optimize, and characterize magnetic-field-sensitive sugar-templated poly...
Hollow-sphere nanocapsules containing intentionally trapped magnetic nanoparticles and defined antic...
Systemic drug administration (i.e., intravenous injection), leading to drug circulation throughout t...
International audienceLocal and temporal control of drug release has for long been a main focus in t...
We have developed a cylindrical shape magnetically-actuated MEMS drug delivery device for localized ...
Considerable attention is given to drug delivery technology that efficiently delivers appropriate le...
The capability to deliver high effective dosages to specific sites in the human body has become the ...
AbstractMagnetic microspheres hold great promise for reaching the goal of controlled and site specif...
IEEE Transactions on Biomedical Engineering, 55(2): pp. 643-649.The drug-eluting stent’s increasingl...
Thesis (M.S.)--Wichita State University, College of Engineering, Dept. of Mechanical Engineering.Thi...
The objective of this study was to describe the magnetic nanoparticle–drug conjugates for improved c...
Herein, original magnetic drug delivery nanomaterials for cancer therapy are developed and compared,...
In this project, the main objective is to develop a portable and integrated device that is suitable ...
We introduce a novel, on-demand drug delivery device based on a biocompatible magnetic sponge. The s...
This study aims to prepare, optimize, and characterize magnetic-field-sensitive sugar-templated poly...
This study aims to prepare, optimize, and characterize magnetic-field-sensitive sugar-templated poly...
Hollow-sphere nanocapsules containing intentionally trapped magnetic nanoparticles and defined antic...
Systemic drug administration (i.e., intravenous injection), leading to drug circulation throughout t...
International audienceLocal and temporal control of drug release has for long been a main focus in t...
We have developed a cylindrical shape magnetically-actuated MEMS drug delivery device for localized ...
Considerable attention is given to drug delivery technology that efficiently delivers appropriate le...
The capability to deliver high effective dosages to specific sites in the human body has become the ...
AbstractMagnetic microspheres hold great promise for reaching the goal of controlled and site specif...
IEEE Transactions on Biomedical Engineering, 55(2): pp. 643-649.The drug-eluting stent’s increasingl...
Thesis (M.S.)--Wichita State University, College of Engineering, Dept. of Mechanical Engineering.Thi...
The objective of this study was to describe the magnetic nanoparticle–drug conjugates for improved c...
Herein, original magnetic drug delivery nanomaterials for cancer therapy are developed and compared,...