Although phototherapy has been considered as an emerging and promising technology for cancer therapy, its therapeutic specificity and efficacy are severely limited by nonspecific uptake by normal tissues, tumor hypoxia, and so on. Herein, combination-responsive strategy (CRS) is applied to develop one kind of hyaluronic acid-hybridized Ru nanoaggregates (HA-Ru NAs) for enhanced cancer phototherapy via the reasonable integration of receptor-mediated targeting (RMT) and tumor-microenvironment responsiveness (TMR). In this nanosystem, the HA component endows HA-Ru NAs with RMT characteristic to selectively recognize CD44-overexpressing cancer cells, whereas the Ru nanocomponent makes HA-Ru NAs have TMR therapy activity. Specially, the Ru nanoc...
The discovery of near-infrared-II (NIR-II) tumor phototheranostics holds a great promise for use in ...
Severe aggregation-caused quenching and the lack of special organelle targeting in conventional phot...
Traditional photodynamic phototherapy is not efficient for anticancer treatment because solid tumors...
Photodynamic therapy implies a combined use of a photosensitizing medicament and low-intensity light...
Photodynamic therapy implies a combined use of a photosensitizing medicament and low-intensity light...
It is of extreme importance to reduce side effects resulting from the nonspecific uptake of photothe...
Targeted phototheranostic nanosystems involving both cancer-specific near-infrared (NIR) fluorescenc...
Standard treatment strategies for cancer patients include surgery, radiation therapy, and chemothera...
Design and development of photosensitizers that can efficiently convert energy of near-infrared (NIR...
Self-assembled nanostructures of photoresponsive polymers have been used for anticancer phototherapy...
The complexities of light penetration, short 1O2 life, severe tumor hypoxia, overexpressed reductive...
The complexities of light penetration, short 1O2 life, severe tumor hypoxia, overexpressed reductive...
Multifunctional agents for the management of highly heterogeneous diseases, like cancer, are gaining...
In an attempt to integrate photodynamic therapy (PDT) with photothermal therapy and chemotherapy for...
The efficacy of combined near-infrared (NIR) and immune therapies for inhibiting tumor growth and re...
The discovery of near-infrared-II (NIR-II) tumor phototheranostics holds a great promise for use in ...
Severe aggregation-caused quenching and the lack of special organelle targeting in conventional phot...
Traditional photodynamic phototherapy is not efficient for anticancer treatment because solid tumors...
Photodynamic therapy implies a combined use of a photosensitizing medicament and low-intensity light...
Photodynamic therapy implies a combined use of a photosensitizing medicament and low-intensity light...
It is of extreme importance to reduce side effects resulting from the nonspecific uptake of photothe...
Targeted phototheranostic nanosystems involving both cancer-specific near-infrared (NIR) fluorescenc...
Standard treatment strategies for cancer patients include surgery, radiation therapy, and chemothera...
Design and development of photosensitizers that can efficiently convert energy of near-infrared (NIR...
Self-assembled nanostructures of photoresponsive polymers have been used for anticancer phototherapy...
The complexities of light penetration, short 1O2 life, severe tumor hypoxia, overexpressed reductive...
The complexities of light penetration, short 1O2 life, severe tumor hypoxia, overexpressed reductive...
Multifunctional agents for the management of highly heterogeneous diseases, like cancer, are gaining...
In an attempt to integrate photodynamic therapy (PDT) with photothermal therapy and chemotherapy for...
The efficacy of combined near-infrared (NIR) and immune therapies for inhibiting tumor growth and re...
The discovery of near-infrared-II (NIR-II) tumor phototheranostics holds a great promise for use in ...
Severe aggregation-caused quenching and the lack of special organelle targeting in conventional phot...
Traditional photodynamic phototherapy is not efficient for anticancer treatment because solid tumors...