Photodynamic therapy (PDT) holds great promise in tumor treatment. Nevertheless, it remains highly desirable to develop easy-to-fabricated PDT systems with improved tumor accumulation/internalization and timely therapeutic feedback. Here, we report a tumor-acidity-responsive chimeric peptide for enhanced PDT and noninvasive real-time apoptosis imaging. Both in vitro and in vivo studies revealed that a tumor mildly acidic microenvironment could trigger rapid protonation of carboxylate anions in chimeric peptide, which led to increased ζ potential, improved hydrophobicity, controlled size enlargement, and precise morphology switching from sphere to spherocylinder shape of the chimeric peptide. All of these factors realized superfast accumulat...
Acidity is a biomarker of cancer that is not subject to the blunting clonal selection effects that r...
Cancer is a complex disease with a range of genetic and biochemical markers within and among tumors,...
The pH (low) insertion peptides (pHLIPs) target acidity at the surfaces of cancer cells and show uti...
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...
The design and development of pH-sensitive peptides for cancer diagnostics provides an opportunity t...
Tumor-targeted delivery of nanomedicine is of great importance to improve therapeutic efficacy of ca...
Progress in multifunctional nanomaterials for tumor therapy mostly depends on the development of tum...
An acidic tumor pH-responsive nanophotomedicine (pH-NanoPM) for targeted photodynamic therapy (PDT) ...
The aberrant metabolism of tumor cells creates an inimitable microenvironment featuring acidic pH, h...
ABSTRACT: Extracellular acidity is associated with tumor progression. Elevated glycolysis and acidos...
Poster Division: Engineering, Math, and Physical Sciences: 1st Place (The Ohio State University Edwa...
The design and development of pH-sensitive peptides for cancer diagnostics provides an opportunity t...
Singlet oxygen sensitized photodynamic therapy (PDT) relies on the concentration of oxygen in the ti...
Tumor-responsive nanocarriers are highly valuable and demanded for smart drug delivery particularl...
Acidity is a biomarker of cancer that is not subject to the blunting clonal selection effects that r...
Cancer is a complex disease with a range of genetic and biochemical markers within and among tumors,...
The pH (low) insertion peptides (pHLIPs) target acidity at the surfaces of cancer cells and show uti...
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...
The design and development of pH-sensitive peptides for cancer diagnostics provides an opportunity t...
Tumor-targeted delivery of nanomedicine is of great importance to improve therapeutic efficacy of ca...
Progress in multifunctional nanomaterials for tumor therapy mostly depends on the development of tum...
An acidic tumor pH-responsive nanophotomedicine (pH-NanoPM) for targeted photodynamic therapy (PDT) ...
The aberrant metabolism of tumor cells creates an inimitable microenvironment featuring acidic pH, h...
ABSTRACT: Extracellular acidity is associated with tumor progression. Elevated glycolysis and acidos...
Poster Division: Engineering, Math, and Physical Sciences: 1st Place (The Ohio State University Edwa...
The design and development of pH-sensitive peptides for cancer diagnostics provides an opportunity t...
Singlet oxygen sensitized photodynamic therapy (PDT) relies on the concentration of oxygen in the ti...
Tumor-responsive nanocarriers are highly valuable and demanded for smart drug delivery particularl...
Acidity is a biomarker of cancer that is not subject to the blunting clonal selection effects that r...
Cancer is a complex disease with a range of genetic and biochemical markers within and among tumors,...
The pH (low) insertion peptides (pHLIPs) target acidity at the surfaces of cancer cells and show uti...