The development of pH-sensitive drug delivery nanosystems that present a low drug release at the physiological pH and are able to increase the extent of the release at a lower pH value (like those existent in the interstitial space of solid tumors (pH 6.5) and in the intracellular endolysosomal compartments (pH 5.0)) is very important for an efficient and safe cancer therapy. Laponite (LP) is a synthetic silicate nanoparticle with a nanodisk structure (25 nm in diameter and 0.92 nm in thickness) and negative-charged surface, which can be used for the encapsulation of doxorubicin (DOX, a cationic drug) through electrostatic interactions and exhibit good pH sensitivity in drug delivery. However, the colloidal instability of LP still limits it...
Laponite® is a synthetic smectite clay that already has many important technological applications, w...
Design and development of smart nano-sized delivery devices for controlled drug release in response ...
Development of various nanoscale drug carriers for enhanced antitumor therapy still remains a great ...
The development of pH-sensitive drug delivery nanosystems that present a low drug release at the phy...
The development of pH-sensitive drug delivery nanosystems that present a low drug release at the phy...
The efficacy of the anticancer drug doxorubicin (Dox) is limited by an insufficient cellular uptake ...
Despite the wide research done in the field, the development of advanced drug delivery systems with ...
In this study, hyaluronic acid (HA), a natural polysaccharide that can specifically bind to CD44 rec...
Injectable shear-thinning biomaterials (STBs) have attracted significant attention because of their ...
The application of nanoparticle-based delivery systems is limited by uncontrolled drug release, limi...
In this study, we synthesized dendrimer-functionalized laponite (LAP) nanodisks for loading and deli...
In the last decades, amphiphilic self-assembling block copolymers have been studied as carriers for ...
In this work, a pH-sensitive liposome–polymer nanoparticle (NP) composed of lipid, hyaluronic acid (...
There are several limitations to the application of nanoparticles in the treatment of cancer, includ...
Current needs for increased drug delivery carrier efficacy and specificity in cancer necessitate the...
Laponite® is a synthetic smectite clay that already has many important technological applications, w...
Design and development of smart nano-sized delivery devices for controlled drug release in response ...
Development of various nanoscale drug carriers for enhanced antitumor therapy still remains a great ...
The development of pH-sensitive drug delivery nanosystems that present a low drug release at the phy...
The development of pH-sensitive drug delivery nanosystems that present a low drug release at the phy...
The efficacy of the anticancer drug doxorubicin (Dox) is limited by an insufficient cellular uptake ...
Despite the wide research done in the field, the development of advanced drug delivery systems with ...
In this study, hyaluronic acid (HA), a natural polysaccharide that can specifically bind to CD44 rec...
Injectable shear-thinning biomaterials (STBs) have attracted significant attention because of their ...
The application of nanoparticle-based delivery systems is limited by uncontrolled drug release, limi...
In this study, we synthesized dendrimer-functionalized laponite (LAP) nanodisks for loading and deli...
In the last decades, amphiphilic self-assembling block copolymers have been studied as carriers for ...
In this work, a pH-sensitive liposome–polymer nanoparticle (NP) composed of lipid, hyaluronic acid (...
There are several limitations to the application of nanoparticles in the treatment of cancer, includ...
Current needs for increased drug delivery carrier efficacy and specificity in cancer necessitate the...
Laponite® is a synthetic smectite clay that already has many important technological applications, w...
Design and development of smart nano-sized delivery devices for controlled drug release in response ...
Development of various nanoscale drug carriers for enhanced antitumor therapy still remains a great ...