Effective targeting by uniformly functionalized nanoparticles is limited to cancer cells expressing at least two copies of targeted receptors per nanoparticle footprint (approximately ≥2 × 105 receptor copies per cell); such a receptor density supports the required multivalent interaction between the neighboring receptors and the ligands from a single nanoparticle. To enable selective targeting below this receptor density, ligands on the surface of lipid vesicles were displayed in clusters that were designed to form at the acidic pH of the tumor interstitium. Vesicles with clustered HER2-targeting peptides within such sticky patches (sticky vesicles) were compared to uniformly functionalized vesicles. On HER2-negative breast cancer cells MD...
Cancer is still the worldwide leading cause of death. Cancer cells are similar to and different from...
The journey of chemotherapeutic drugs from the site of administration to the site of action is confr...
Curing cancer is the greatest challenge for modern medicine and finding ways to minimize the adverse...
HER2-targeted nanoparticles encapsulating chemotherapeutics have shown promise for reducing the seve...
One method for improving cancer treatment is the use of nanoparticle drugs functionalized with targe...
In the area of receptor-targeted lipid nanoparticles for drug delivery, efficiency has been mainly f...
We investigated the feasibility and efficacy of a drug delivery strategy to vascularized cancer that...
In this study, actively-targeted (CD44-receptors) and dual stimuli (pH/redox)-responsive lipid–polym...
Nanoparticles (NPs) are commonly functionalized using targeting ligands to drive their selective upt...
Interactions of nanoparticles with human cells have been the subject of intense research in the fiel...
Nanoparticles (NPs) are commonly functionalized using targeting ligands to drive their selective upt...
Decoration of nanoparticle surfaces with receptor-specific ligands can improve functional drug deliv...
The present work aimed at designing a lipid-based nanocarrier for siRNA delivery towards two cell ...
Tumor metastasis accounts for 90% of cancer-associated deaths and is almost inaccessible by chemothe...
Nanotechnology applications in medicine, termed as nanomedicine, have introduced a number of nanopar...
Cancer is still the worldwide leading cause of death. Cancer cells are similar to and different from...
The journey of chemotherapeutic drugs from the site of administration to the site of action is confr...
Curing cancer is the greatest challenge for modern medicine and finding ways to minimize the adverse...
HER2-targeted nanoparticles encapsulating chemotherapeutics have shown promise for reducing the seve...
One method for improving cancer treatment is the use of nanoparticle drugs functionalized with targe...
In the area of receptor-targeted lipid nanoparticles for drug delivery, efficiency has been mainly f...
We investigated the feasibility and efficacy of a drug delivery strategy to vascularized cancer that...
In this study, actively-targeted (CD44-receptors) and dual stimuli (pH/redox)-responsive lipid–polym...
Nanoparticles (NPs) are commonly functionalized using targeting ligands to drive their selective upt...
Interactions of nanoparticles with human cells have been the subject of intense research in the fiel...
Nanoparticles (NPs) are commonly functionalized using targeting ligands to drive their selective upt...
Decoration of nanoparticle surfaces with receptor-specific ligands can improve functional drug deliv...
The present work aimed at designing a lipid-based nanocarrier for siRNA delivery towards two cell ...
Tumor metastasis accounts for 90% of cancer-associated deaths and is almost inaccessible by chemothe...
Nanotechnology applications in medicine, termed as nanomedicine, have introduced a number of nanopar...
Cancer is still the worldwide leading cause of death. Cancer cells are similar to and different from...
The journey of chemotherapeutic drugs from the site of administration to the site of action is confr...
Curing cancer is the greatest challenge for modern medicine and finding ways to minimize the adverse...