Engineering photosensitizers into stimuli-responsive supramolecular nanodrugs allows enhanced spatiotemporal delivery and controllable release of photosensitizers, which is promising for dedicated and precise tumor photodynamic therapy. Complicated fabrication for nanodrugs with good tumor accumulation capability and the undesirable side-effects caused by the drug components retards the application of PDT in vivo. The fact that extracellular adenosine triphosphate (ATP) is overexpressed in tumor tissue has been overlooked in fabricating nanomedicines for tumor-targeting delivery. Hence, herein we present metal-free helical nanofibers formed in aqueous solution from the coassembly of a cationic porphyrin and ATP as a nanodrug for PDT. The ea...
Photodynamic therapy (PDT) for cancer treatment involves the pathology’s uptake of photosensitizers,...
Inspired by the dynamic morphology control of molecular assemblies in biological systems, we have de...
[[abstract]]Photodynamic therapy (PDT) for cancer treatment involves the pathology's uptake of photo...
Engineering photosensitizers into stimuli-responsive supramolecular nanodrugs allows enhanced spatio...
Employing nanoscaled materials as photosensitizer (PS) carriers is an effective strategy to solve th...
Employing nanoscaled materials as photosensitizer (PS) carriers is an effective strategy to solve th...
Photodynamic therapy (PDT) is becoming a promising way to treat various kinds of cancers, with few s...
International audienceAiming to engineer simple, neutral, strongly amphiphilic photoactive nanoparti...
In chemotherapy a fine balance between therapeutic and toxic effects needs to be found for each pati...
Photodynamic therapy (PDT) is an anticancer modality that exploits singlet oxygen and other reactive...
International audienceA new versatile hybrid nanocarrier has been designed using a " soft chemistry"...
Specificity is a critical feature of a cancer treatment and efforts are devoted to develop powerful ...
Nanoparticles can deliver drugs to tumours but improvements in selectively targeting tumour cells ar...
Multifunctional nanoparticles with combined diagnostic and therapeutic functions show great promise ...
Photodynamic therapy (PDT) for cancer treatment involves the pathology’s uptake of photosensitizers,...
Inspired by the dynamic morphology control of molecular assemblies in biological systems, we have de...
[[abstract]]Photodynamic therapy (PDT) for cancer treatment involves the pathology's uptake of photo...
Engineering photosensitizers into stimuli-responsive supramolecular nanodrugs allows enhanced spatio...
Employing nanoscaled materials as photosensitizer (PS) carriers is an effective strategy to solve th...
Employing nanoscaled materials as photosensitizer (PS) carriers is an effective strategy to solve th...
Photodynamic therapy (PDT) is becoming a promising way to treat various kinds of cancers, with few s...
International audienceAiming to engineer simple, neutral, strongly amphiphilic photoactive nanoparti...
In chemotherapy a fine balance between therapeutic and toxic effects needs to be found for each pati...
Photodynamic therapy (PDT) is an anticancer modality that exploits singlet oxygen and other reactive...
International audienceA new versatile hybrid nanocarrier has been designed using a " soft chemistry"...
Specificity is a critical feature of a cancer treatment and efforts are devoted to develop powerful ...
Nanoparticles can deliver drugs to tumours but improvements in selectively targeting tumour cells ar...
Multifunctional nanoparticles with combined diagnostic and therapeutic functions show great promise ...
Photodynamic therapy (PDT) for cancer treatment involves the pathology’s uptake of photosensitizers,...
Inspired by the dynamic morphology control of molecular assemblies in biological systems, we have de...
[[abstract]]Photodynamic therapy (PDT) for cancer treatment involves the pathology's uptake of photo...