Prussian blue (PB) is known for its multiple applications ranging from fine arts to therapeutics. More recently, PB nanoparticles have been pointed to as appealing photothermal agents (PA) when irradiated with wavelengths corresponding to the biological windows, namely regions located in the near infrared (NIR) zone. In addition, the combination of PB with other components such as phospholipids boosts their therapeutical potential by facilitating, for instance, the incorporation of drugs becoming suitable drug delivery systems. The novelty of the research relies on the synthesis procedure and characterization of hybrid lipid-PB nanoparticles with a high yield in a friendly environment suitable for photothermal therapy. This goal was achieve...
Prussian blue is an ancient artificial pigment. Its biocompatibility and the possibility of synthesi...
Highlights• Design of multifunctional nanoparticles able to provide efficient photothermal effect ...
Cancer immunotherapy is revolutionizing oncology. The marriage of nanotechnology and immunotherapy o...
Prussian blue (PB) is a coordination polymer studied since the early 18th century, historically kno...
Prussian blue (PB) is a coordination polymer studied since the early 18th century, historically know...
Yanjun Xu,1,* Yang Zhang,2,* Xiaojun Cai,1,2 Wei Gao,1,2 Xiuzhen Tang,3 Yini Chen,1,2 Jie Chen,1,2 L...
Multifunctional nanoparticles represent a class of materials with diverse therapy and imaging proper...
International audienceWe report here a novel "one-pot" approach for the controlled growth and organi...
This paper reported a core-shell nanotheranostic agent by growing Prussian blue (PB) nanoshells of 3...
Personal medicine is the future to treat cancer. To address this concern, researchers started to dev...
Summary: Therapeutic effects of photodynamic therapy (PDT) remain largely limited because of tumor h...
Prussian blue (PB) and PB analogues (PBA) are coordination network materials that present important ...
Despite its success against cancer, photothermal therapy (PTT) (>50 °C) suffers from several limitat...
This paper reported the fabrication of a multifunctional nanoplatform by modifying hollow Prussian b...
Supplemental Material for Prussian blue-modified ferritin nanoparticles for effective tumor chemo-ph...
Prussian blue is an ancient artificial pigment. Its biocompatibility and the possibility of synthesi...
Highlights• Design of multifunctional nanoparticles able to provide efficient photothermal effect ...
Cancer immunotherapy is revolutionizing oncology. The marriage of nanotechnology and immunotherapy o...
Prussian blue (PB) is a coordination polymer studied since the early 18th century, historically kno...
Prussian blue (PB) is a coordination polymer studied since the early 18th century, historically know...
Yanjun Xu,1,* Yang Zhang,2,* Xiaojun Cai,1,2 Wei Gao,1,2 Xiuzhen Tang,3 Yini Chen,1,2 Jie Chen,1,2 L...
Multifunctional nanoparticles represent a class of materials with diverse therapy and imaging proper...
International audienceWe report here a novel "one-pot" approach for the controlled growth and organi...
This paper reported a core-shell nanotheranostic agent by growing Prussian blue (PB) nanoshells of 3...
Personal medicine is the future to treat cancer. To address this concern, researchers started to dev...
Summary: Therapeutic effects of photodynamic therapy (PDT) remain largely limited because of tumor h...
Prussian blue (PB) and PB analogues (PBA) are coordination network materials that present important ...
Despite its success against cancer, photothermal therapy (PTT) (>50 °C) suffers from several limitat...
This paper reported the fabrication of a multifunctional nanoplatform by modifying hollow Prussian b...
Supplemental Material for Prussian blue-modified ferritin nanoparticles for effective tumor chemo-ph...
Prussian blue is an ancient artificial pigment. Its biocompatibility and the possibility of synthesi...
Highlights• Design of multifunctional nanoparticles able to provide efficient photothermal effect ...
Cancer immunotherapy is revolutionizing oncology. The marriage of nanotechnology and immunotherapy o...