The physicochemical properties of nanoparticles play critical roles in regulating nano-bio interactions. Whereas the effects of the size, shape, and surface charge of nanoparticles on their biological performances have been extensively investigated, the roles of nanoparticle mechanical properties in drug delivery, which have only been recognized recently, remain the least explored. This review article provides an overview of the impacts of nanoparticle mechanical properties on cancer drug delivery, including (1) basic terminologies of the mechanical properties of nanoparticles and techniques for characterizing these properties; (2) current methods for fabricating nanoparticles with tunable mechanical properties; (3) and studies that highlig...
This review explores the recent chemotherapeutic work on drug delivery using nanoparticles as carrie...
Cancer targeting nanoparticles face a variety of biological environments between the site of injecti...
In the last four decades, nanotechnology has gained momentum with no sign of slowing down. The appli...
The therapeutic efficacy of drugs is dependent upon the ability of a drug to reach its target, and d...
The physicochemical properties of nanoparticles (size, charge, and surface chemistry, <i>etc.</i>) i...
The physicochemical properties of nanoparticles (size, charge, and surface chemistry, etc.) influenc...
Published: February 28, 2018The physicochemical properties of nanoparticles (size, charge, and surfa...
Nanomedicines, which are hopeful vectors for pathologies such as cancer, are the subject of more and...
The ability of cells to sense external mechanical cues is essential for their adaptation to the surr...
Nanoparticles can provide significant improvements in the diagnosis and treatment of cancer. How nan...
Cancer is one of the most deadly diseases in the world. In recent years, nanotechnology, as a unique...
The biomechanical properties of cells and tissues may be instrumental in increasing our understandin...
Introduction: Nanoparticles have been successfully used for cancer drug delivery since 1995. In the ...
To date, the role of elasticity in drug delivery remains elusive due to the inability to measure mic...
Nanotechnology in drug delivery involves the use of materials at nanoscale range to deliver therapeu...
This review explores the recent chemotherapeutic work on drug delivery using nanoparticles as carrie...
Cancer targeting nanoparticles face a variety of biological environments between the site of injecti...
In the last four decades, nanotechnology has gained momentum with no sign of slowing down. The appli...
The therapeutic efficacy of drugs is dependent upon the ability of a drug to reach its target, and d...
The physicochemical properties of nanoparticles (size, charge, and surface chemistry, <i>etc.</i>) i...
The physicochemical properties of nanoparticles (size, charge, and surface chemistry, etc.) influenc...
Published: February 28, 2018The physicochemical properties of nanoparticles (size, charge, and surfa...
Nanomedicines, which are hopeful vectors for pathologies such as cancer, are the subject of more and...
The ability of cells to sense external mechanical cues is essential for their adaptation to the surr...
Nanoparticles can provide significant improvements in the diagnosis and treatment of cancer. How nan...
Cancer is one of the most deadly diseases in the world. In recent years, nanotechnology, as a unique...
The biomechanical properties of cells and tissues may be instrumental in increasing our understandin...
Introduction: Nanoparticles have been successfully used for cancer drug delivery since 1995. In the ...
To date, the role of elasticity in drug delivery remains elusive due to the inability to measure mic...
Nanotechnology in drug delivery involves the use of materials at nanoscale range to deliver therapeu...
This review explores the recent chemotherapeutic work on drug delivery using nanoparticles as carrie...
Cancer targeting nanoparticles face a variety of biological environments between the site of injecti...
In the last four decades, nanotechnology has gained momentum with no sign of slowing down. The appli...