The controlled release of therapeutics has been one of the major challenges for scientists and engineers during the past three decades. Coupled with excellent biocompatibility profiles, various nanomaterials have showed great promise for biomedical applications. Stimuli-responsive nanomaterials guarantee the controlled release of cargo to a given location, at a specific time, and with an accurate amount. In this review, we have combined the major stimuli that are currently used to achieve the ultimate goal of controlled and targeted release by “smart” nanomaterials. The most heavily explored strategies include (1) pH, (2) enzymes, (3) redox, (4) magnetic, and (5) light-triggered release
The concept of smart drug delivery vehicles involves designing and preparing a nanostructure (or mic...
Nanomaterials have been the focus of attention in several fields, including biomedicine, electronics...
The use of nanotechnology to improve treatment efficacy and reduce side effects is central to nanome...
Stimuli-responsive controlled-release nanocarriers are promising vehicles for delivery of bioactive ...
Benefiting from the development of nanotechnology, drug delivery systems (DDSs) with stimuli-respons...
Nanogels (NGs), especially those with stimuli responsiveness, have attracted significant attention i...
ABSTRACT: Nature employs a variety of tactics to precisely time and execute the processes and mechan...
In recent years miscellaneous smart micro/nanosystems that respond to various exogenous/endogenous s...
The combination of fields such as applied physics, biology, computational modeling and analysis, pha...
Stimuli-responsive organic/inorganic nanohybrids, with an inorganic core and a polymer coating, have...
New achievements in the realm of nanoscience and innovative techniques of nanomedicine have moved mi...
Designed synthesis and assembly of nanoparticles assisted by their surface ligands can create “smart...
Protein therapeutics have emerged as a significant role in treatment of a broad spectrum of diseases...
International audienceStimulus-responsive systems have demonstrated for some time now significant ad...
Over the past 10 years, stimuli-responsive polymeric biomaterials have emerged as effective systems ...
The concept of smart drug delivery vehicles involves designing and preparing a nanostructure (or mic...
Nanomaterials have been the focus of attention in several fields, including biomedicine, electronics...
The use of nanotechnology to improve treatment efficacy and reduce side effects is central to nanome...
Stimuli-responsive controlled-release nanocarriers are promising vehicles for delivery of bioactive ...
Benefiting from the development of nanotechnology, drug delivery systems (DDSs) with stimuli-respons...
Nanogels (NGs), especially those with stimuli responsiveness, have attracted significant attention i...
ABSTRACT: Nature employs a variety of tactics to precisely time and execute the processes and mechan...
In recent years miscellaneous smart micro/nanosystems that respond to various exogenous/endogenous s...
The combination of fields such as applied physics, biology, computational modeling and analysis, pha...
Stimuli-responsive organic/inorganic nanohybrids, with an inorganic core and a polymer coating, have...
New achievements in the realm of nanoscience and innovative techniques of nanomedicine have moved mi...
Designed synthesis and assembly of nanoparticles assisted by their surface ligands can create “smart...
Protein therapeutics have emerged as a significant role in treatment of a broad spectrum of diseases...
International audienceStimulus-responsive systems have demonstrated for some time now significant ad...
Over the past 10 years, stimuli-responsive polymeric biomaterials have emerged as effective systems ...
The concept of smart drug delivery vehicles involves designing and preparing a nanostructure (or mic...
Nanomaterials have been the focus of attention in several fields, including biomedicine, electronics...
The use of nanotechnology to improve treatment efficacy and reduce side effects is central to nanome...