Piezoelectric nanomaterials have become increasingly popular in the field of biomedical applications due to their high biocompatibility and ultrasound-mediated piezocatalytic properties. In addition, the ability of these nanomaterials to disaggregate amyloid proteins, which are responsible for a range of diseases resulting from the accumulation of these proteins in body tissues and organs, has recently gained considerable attention. However, the use of nanoparticles in biomedicine poses significant challenges, including targeting and uncontrolled aggregation. To address these limitations, our study proposes to load these functional nanomaterials on a multifunctional mobile microrobot (PiezoBOT). This microrobot is designed by coating magnet...
Nanoscale structures and materials have been explored in many biological applications because of the...
Amyloidosis is a biophysical phenomenon of protein aggregation with biological and pathogenic implic...
Magnetic helical micro- and nanorobots can perform 3D navigation in various liquids with a sub-micro...
Piezoelectric nanomaterials have become increasingly popular in the field of biomedical applications...
Investigating amyloid nanofibril self-assembly, with an emphasis on the electromechanical property o...
Wireless micro- and nanorobots are biomedical devices with a potential use in high-precision minimal...
Remotely triggered hysteretic heat dissipation by magnetic nanoparticles (MNPs) selectively attached...
As the population ages, an epidemic of neurodegenerative diseases with devastating social consequenc...
Thesis: S.B., Massachusetts Institute of Technology, Department of Materials Science and Engineering...
With the rapid development of micro/nanomanufacturing technology, a variety of multifunctional micro...
The amyloid hypothesis asserts that accumulation of amyloid beta (Aβ) peptides is a primary cause of...
Magnetic nanoparticles (MNPs) have great potential in biomedical and clinical applications because o...
Magnetic micro/nanorobots (MagRobots) with unparalleled advantages, including remote mobility, high ...
International audienceMagnetic nanoparticles (MNPs) have great potential in biomedical and clinical ...
Last two decades has seen a growth of the research on untethered mobile small-scale robots. These mo...
Nanoscale structures and materials have been explored in many biological applications because of the...
Amyloidosis is a biophysical phenomenon of protein aggregation with biological and pathogenic implic...
Magnetic helical micro- and nanorobots can perform 3D navigation in various liquids with a sub-micro...
Piezoelectric nanomaterials have become increasingly popular in the field of biomedical applications...
Investigating amyloid nanofibril self-assembly, with an emphasis on the electromechanical property o...
Wireless micro- and nanorobots are biomedical devices with a potential use in high-precision minimal...
Remotely triggered hysteretic heat dissipation by magnetic nanoparticles (MNPs) selectively attached...
As the population ages, an epidemic of neurodegenerative diseases with devastating social consequenc...
Thesis: S.B., Massachusetts Institute of Technology, Department of Materials Science and Engineering...
With the rapid development of micro/nanomanufacturing technology, a variety of multifunctional micro...
The amyloid hypothesis asserts that accumulation of amyloid beta (Aβ) peptides is a primary cause of...
Magnetic nanoparticles (MNPs) have great potential in biomedical and clinical applications because o...
Magnetic micro/nanorobots (MagRobots) with unparalleled advantages, including remote mobility, high ...
International audienceMagnetic nanoparticles (MNPs) have great potential in biomedical and clinical ...
Last two decades has seen a growth of the research on untethered mobile small-scale robots. These mo...
Nanoscale structures and materials have been explored in many biological applications because of the...
Amyloidosis is a biophysical phenomenon of protein aggregation with biological and pathogenic implic...
Magnetic helical micro- and nanorobots can perform 3D navigation in various liquids with a sub-micro...