The development of precision nanomedicines to direct nanostructure-based reagents into tumour-targeted areas remains a critical challenge in clinics. Chemical reaction-mediated localization in response to tumour environmental perturbations offers promising opportunities for rational design of effective nano-theranostics. Here, we present a unique microenvironment-sensitive strategy for localization of peptide-premodified upconversion nanocrystals (UCNs) within tumour areas. Upon tumour-specific cathepsin protease reactions, the cleavage of peptides induces covalent cross-linking between the exposed cysteine and 2-cyanobenzothiazole on neighbouring particles, thus triggering the accumulation of UCNs into tumour site. Such enzyme-triggered cr...
Tumor-responsive nanocarriers are highly valuable and demanded for smart drug delivery particularl...
Inhibition of the CDK4/cyclin D complex through the substrate recruitment site on the cyclin positiv...
Tailoring personalized cancer nanomedicines demands detailed understanding of the tumor microenviron...
The development of precision nanomedicines to direct nanostructure-based reagents into tumour-target...
In recent decades, precision theranostics are greatly demanded to efficiently treat various human di...
A perfect “off” to “on” switch of the therapeutic function is very important to minimize the phototo...
The treatment depth of existing photodynamic therapy (PDT) is limited because of the absorption of v...
The treatment depth of existing photodynamic therapy (PDT) is limited because of the absorption of v...
Two major challenges of current photodynamic therapy (PDT) are the limited tissue penetration of exc...
Upconversion nanoparticle (UCNP)-mediated photodynamic therapy has shown great effectiveness in incr...
Inorganic nanocrystals such as quantum dots (QDs) and upconverting nanoparticles (UCNPs) are uniquel...
Upconversion (UC) nanostructures, which can upconvert near-infrared (NIR) light with low energy to v...
Combined cancer therapy possesses many advantages including improved tumoricidal efficacy, reduced s...
Upconversion nanoparticle (UCNP)-mediated photodynamic therapy has shown great effectiveness in incr...
Innovative luminescent nanomaterials, termed upconversion nanoparticles (UCNPs), have demonstrated c...
Tumor-responsive nanocarriers are highly valuable and demanded for smart drug delivery particularl...
Inhibition of the CDK4/cyclin D complex through the substrate recruitment site on the cyclin positiv...
Tailoring personalized cancer nanomedicines demands detailed understanding of the tumor microenviron...
The development of precision nanomedicines to direct nanostructure-based reagents into tumour-target...
In recent decades, precision theranostics are greatly demanded to efficiently treat various human di...
A perfect “off” to “on” switch of the therapeutic function is very important to minimize the phototo...
The treatment depth of existing photodynamic therapy (PDT) is limited because of the absorption of v...
The treatment depth of existing photodynamic therapy (PDT) is limited because of the absorption of v...
Two major challenges of current photodynamic therapy (PDT) are the limited tissue penetration of exc...
Upconversion nanoparticle (UCNP)-mediated photodynamic therapy has shown great effectiveness in incr...
Inorganic nanocrystals such as quantum dots (QDs) and upconverting nanoparticles (UCNPs) are uniquel...
Upconversion (UC) nanostructures, which can upconvert near-infrared (NIR) light with low energy to v...
Combined cancer therapy possesses many advantages including improved tumoricidal efficacy, reduced s...
Upconversion nanoparticle (UCNP)-mediated photodynamic therapy has shown great effectiveness in incr...
Innovative luminescent nanomaterials, termed upconversion nanoparticles (UCNPs), have demonstrated c...
Tumor-responsive nanocarriers are highly valuable and demanded for smart drug delivery particularl...
Inhibition of the CDK4/cyclin D complex through the substrate recruitment site on the cyclin positiv...
Tailoring personalized cancer nanomedicines demands detailed understanding of the tumor microenviron...