Inspired by the dynamic morphology control of molecular assemblies in biological systems, we have developed pH-responsive transformable peptide-based nanoparticles for photodynamic therapy (PDT) with prolonged tumor retention times. The self-assembled peptide–porphyrin nanoparticles transformed into nanofibers when exposed to the acidic tumor microenvironment, which was mainly driven by enhanced intermolecular hydrogen bond formation between the protonated molecules. The nanoparticle transformation into fibrils improved their singlet oxygen generation ability and enabled high accumulation and long-term retention at tumor sites. Strong fluorescent signals of these nanomaterials were detected in tumor tissue up to 7 days after administration....
Supramolecular photosensitizer nanodrugs that combine the flexibility of supramolecular self-assembl...
Peptide-tuned self-assembly of functional components offers a strategy towards improved properties a...
Photodynamic therapy (PDT) holds great promise in tumor treatment. Nevertheless, it remains highly d...
Inspired by the dynamic morphology control of molecular assemblies in biological systems, we have de...
Photodynamic therapy (PDT) is a highly promising therapeutic modality for cancer treatment. The deve...
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...
Engineering photosensitizers into stimuli-responsive supramolecular nanodrugs allows enhanced spatio...
Tumor-targeted delivery of nanomedicine is of great importance to improve therapeutic efficacy of ca...
The aberrant metabolism of tumor cells creates an inimitable microenvironment featuring acidic pH, h...
Peptide-tuned self-assembly of functional components offers a strategy towards improved properties a...
Cancer is the second leading cause of death worldwide after cardiovascular disease. Depending on the...
Supramolecular photosensitizer nanodrugs that combine the flexibility of supramolecular self-assembl...
Peptide-tuned self-assembly of functional components offers a strategy towards improved properties a...
Photodynamic therapy (PDT) holds great promise in tumor treatment. Nevertheless, it remains highly d...
Inspired by the dynamic morphology control of molecular assemblies in biological systems, we have de...
Photodynamic therapy (PDT) is a highly promising therapeutic modality for cancer treatment. The deve...
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...
Engineering photosensitizers into stimuli-responsive supramolecular nanodrugs allows enhanced spatio...
Tumor-targeted delivery of nanomedicine is of great importance to improve therapeutic efficacy of ca...
The aberrant metabolism of tumor cells creates an inimitable microenvironment featuring acidic pH, h...
Peptide-tuned self-assembly of functional components offers a strategy towards improved properties a...
Cancer is the second leading cause of death worldwide after cardiovascular disease. Depending on the...
Supramolecular photosensitizer nanodrugs that combine the flexibility of supramolecular self-assembl...
Peptide-tuned self-assembly of functional components offers a strategy towards improved properties a...
Photodynamic therapy (PDT) holds great promise in tumor treatment. Nevertheless, it remains highly d...