Despite the advancements made in drug delivery systems over the years, many challenges remain in drug delivery systems for treating chronic diseases at the personalized medicine level. The current urgent need is to develop novel strategies for targeted therapy of chronic diseases. Due to their unique properties, microelectromechanical systems (MEMS) technology has been recently engineered as implantable drug delivery systems for disease therapy. This review examines the challenges faced in implementing implantable MEMS drug delivery systems in vivo and the solutions available to overcome these challenges.Published versio
Microsystem technologies (MST) have become the basis of a large industry. The advantages of MST comp...
A microsystem is a collection of electromechanical and electronic elements that have been reduced in...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
Individualized disease diagnosis and therapy has emerged as a new direction in the research of futur...
Despite the advancements made in conventional drug delivery over the years, there are many difficult...
The aim of controlled drug delivery is to manage the time and site of drug release according to the ...
There is no doubt that controlled and pulsatile drug delivery system is an important challenge in me...
Individualized disease treatment is a promising branch for future medicine. In this work, we introdu...
Individualized disease treatment is a promising branch for future medicine. In this work, we introdu...
With the objective of improving efficacy and morbidity, device manufacturers incorporate chemicals o...
Individualised medicine, which aims to comprehensively optimise diagnostic and therapeutic strategie...
Biological and medical application of micro-electro-mechanical-systems (MEMS) is currently seen as a...
AbstractAdvancement in microelectromechanical system has facilitated the microfabrication of polymer...
MEMS devices are manufactured using similar microfabrica-tion techniques as those used to create int...
This review covers reservoir-based drug delivery systems that incorporate microtechnology, with an e...
Microsystem technologies (MST) have become the basis of a large industry. The advantages of MST comp...
A microsystem is a collection of electromechanical and electronic elements that have been reduced in...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...
Individualized disease diagnosis and therapy has emerged as a new direction in the research of futur...
Despite the advancements made in conventional drug delivery over the years, there are many difficult...
The aim of controlled drug delivery is to manage the time and site of drug release according to the ...
There is no doubt that controlled and pulsatile drug delivery system is an important challenge in me...
Individualized disease treatment is a promising branch for future medicine. In this work, we introdu...
Individualized disease treatment is a promising branch for future medicine. In this work, we introdu...
With the objective of improving efficacy and morbidity, device manufacturers incorporate chemicals o...
Individualised medicine, which aims to comprehensively optimise diagnostic and therapeutic strategie...
Biological and medical application of micro-electro-mechanical-systems (MEMS) is currently seen as a...
AbstractAdvancement in microelectromechanical system has facilitated the microfabrication of polymer...
MEMS devices are manufactured using similar microfabrica-tion techniques as those used to create int...
This review covers reservoir-based drug delivery systems that incorporate microtechnology, with an e...
Microsystem technologies (MST) have become the basis of a large industry. The advantages of MST comp...
A microsystem is a collection of electromechanical and electronic elements that have been reduced in...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering, ...