A needle-type microrobot (MR) for targeted drug delivery is developed to stably deliver drugs to a target microtissue (MT) for a given period time without the need for an external force after affixing. The MRs are fabricatedby 3D laser lithography and nickel (Ni)/titanium oxide (TiO2 ) layers are coated by physical vapor deposition. The translational velocity of the MR is 714 µm s-1 at 20 mT and affixed to the target MT under the control of a rotating magnetic field. The manipulability of the MR is shown by using both manual and automatic controls. Finally, drug release from the paclitaxel-loaded MR is characterized to determine the efficiency of targeted drug delivery. This study demonstrates the utility of the proposed needle-type MR for ...
Focusing medicine to disease locations is a needed ability to treat a variety of pathologies. During...
Targeted drug delivery systems are an emerging technological focus for precision medicine. Ideal dru...
International audienceThis paper describes the pulling and steering of magnetic therapeutic micropar...
As robotic tools are becoming a fundamental part of present day surgical interventions, microrobotic...
A design methodology is reported to fabricate functional compound micromachines using 3D direct lase...
Magnetically manipulated microrobots are demonstrated for targeted cell transportation. Full three‐d...
ABSTRACT: The delivery of drug molecules to tumor hypoxic areas could yield optimal therapeutic outc...
Drug therapy efficacy depends on therapeutic concentrations of drugs at disease sites. An ideal cont...
This paper reports the design and development of a novel millimeter-sized robotic system for targete...
The advancement of drug delivery devices is critical for the individualization of patient treatment ...
The advancement of drug delivery devices is critical for the individualization of patient treatment ...
Introduction: There is growing emphasis on the development of bioinspired and biohybrid micro/nanoro...
A novel inkjet printing technology is introduced as a process to coat metal microneedle arrays with ...
Patch-based transdermal drug delivery offers a convenient way to administer drugs without the drawba...
We have developed a cylindrical shape magnetically-actuated MEMS drug delivery device for localized ...
Focusing medicine to disease locations is a needed ability to treat a variety of pathologies. During...
Targeted drug delivery systems are an emerging technological focus for precision medicine. Ideal dru...
International audienceThis paper describes the pulling and steering of magnetic therapeutic micropar...
As robotic tools are becoming a fundamental part of present day surgical interventions, microrobotic...
A design methodology is reported to fabricate functional compound micromachines using 3D direct lase...
Magnetically manipulated microrobots are demonstrated for targeted cell transportation. Full three‐d...
ABSTRACT: The delivery of drug molecules to tumor hypoxic areas could yield optimal therapeutic outc...
Drug therapy efficacy depends on therapeutic concentrations of drugs at disease sites. An ideal cont...
This paper reports the design and development of a novel millimeter-sized robotic system for targete...
The advancement of drug delivery devices is critical for the individualization of patient treatment ...
The advancement of drug delivery devices is critical for the individualization of patient treatment ...
Introduction: There is growing emphasis on the development of bioinspired and biohybrid micro/nanoro...
A novel inkjet printing technology is introduced as a process to coat metal microneedle arrays with ...
Patch-based transdermal drug delivery offers a convenient way to administer drugs without the drawba...
We have developed a cylindrical shape magnetically-actuated MEMS drug delivery device for localized ...
Focusing medicine to disease locations is a needed ability to treat a variety of pathologies. During...
Targeted drug delivery systems are an emerging technological focus for precision medicine. Ideal dru...
International audienceThis paper describes the pulling and steering of magnetic therapeutic micropar...