Nanoparticle-based diagnosis–therapy integrative systems represent an emerging approach to cancer treatment. However, the diagnostic sensitivity, treatment efficacy, and bioavailability of nanoparticles as well as the heterogeneity and drug resistance of tumors pose tremendous challenges for clinical implementation. We herein report on the fabrication of tumor pH-sensitive magnetic nanogrenades (termed PMNs) composed of self-assembled iron oxide nanoparticles and pH-responsive ligands. These PMNs can readily target tumors via surface-charge switching triggered by the acidic tumor microenvironment, and are further disassembled into a highly active state in acidic subcellular compartments that “turns on” MR contrast, fluorescence and photodyn...
Iron oxide nanoparticle (IONPs) have become a subject of interest in various biomedical fields due t...
Theranostic systems capable of delivering imaging and therapeutic agents at a specific target are th...
Magnetic nanoparticles hold tremendous potential to change the way we study the body and have the po...
Nanoparticle-based diagnosis-therapy integrative systems represent an emerging approach to cancer tr...
Nanoparticle-based diagnosis therapy integrative systems represent an emerging approach to cancer tr...
Upconversion nanoparticle (UCNP)-mediated photodynamic therapy has shown great effectiveness in incr...
An acidic tumor pH-responsive nanophotomedicine (pH-NanoPM) for targeted photodynamic therapy (PDT) ...
Upconversion nanoparticle (UCNP)-mediated photodynamic therapy has shown great effectiveness in incr...
Smart magnetic resonance (MR) contrast agents, by which MR contrast can be selectively enhanced unde...
Stimuli-responsive nanomaterials are increasingly important in a variety of applications such as bio...
Smart magnetic resonance (MR) contrast agents, by which MR contrast can be selectively enhanced unde...
Magnetic resonance imaging (MRI) probes can be concentrated in tumors through grafting targeting age...
Side effect is one of the main factors affecting the success of cancer therapies in clinic. Patients...
Gao and colleagues have developed a polymeric, micelle-based nanoprobe that is highly responsive to ...
By overcoming drug resistance and subsequently enhancing the treatment, the combination therapy of p...
Iron oxide nanoparticle (IONPs) have become a subject of interest in various biomedical fields due t...
Theranostic systems capable of delivering imaging and therapeutic agents at a specific target are th...
Magnetic nanoparticles hold tremendous potential to change the way we study the body and have the po...
Nanoparticle-based diagnosis-therapy integrative systems represent an emerging approach to cancer tr...
Nanoparticle-based diagnosis therapy integrative systems represent an emerging approach to cancer tr...
Upconversion nanoparticle (UCNP)-mediated photodynamic therapy has shown great effectiveness in incr...
An acidic tumor pH-responsive nanophotomedicine (pH-NanoPM) for targeted photodynamic therapy (PDT) ...
Upconversion nanoparticle (UCNP)-mediated photodynamic therapy has shown great effectiveness in incr...
Smart magnetic resonance (MR) contrast agents, by which MR contrast can be selectively enhanced unde...
Stimuli-responsive nanomaterials are increasingly important in a variety of applications such as bio...
Smart magnetic resonance (MR) contrast agents, by which MR contrast can be selectively enhanced unde...
Magnetic resonance imaging (MRI) probes can be concentrated in tumors through grafting targeting age...
Side effect is one of the main factors affecting the success of cancer therapies in clinic. Patients...
Gao and colleagues have developed a polymeric, micelle-based nanoprobe that is highly responsive to ...
By overcoming drug resistance and subsequently enhancing the treatment, the combination therapy of p...
Iron oxide nanoparticle (IONPs) have become a subject of interest in various biomedical fields due t...
Theranostic systems capable of delivering imaging and therapeutic agents at a specific target are th...
Magnetic nanoparticles hold tremendous potential to change the way we study the body and have the po...