Targeted antigen delivery allows activation of the immune system to kill cancer cells. Here we report the targeted delivery of various epitopes, including a peptide, a small molecule, and a sugar, to tumors by pH Low Insertion Peptides (pHLIPs), which respond to surface acidity and insert to span the membranes of metabolically activated cancer and immune cells within tumors. Epitopes linked to the extracellular ends of pH Low Insertion Peptide peptides were positioned at the surfaces of tumor cells and were recognized by corresponding anti-epitope antibodies. Special attention was devoted to the targeted delivery of the nine residue HA peptide epitope from the Flu virus hemagglutinin. The HA sequence is not present in the human genome, and ...
Many contemporary therapeutic and imaging approaches to cancer treatment are based on specific tumor...
The global burden of cancer is growing at an alarming pace, with the American Cancer Society project...
Localized delivery is vital for the successful development of novel and effective therapeutics for t...
Targeted antigen delivery allows activation of the immune system to kill cancer cells. Here we repor...
Targeted antigen delivery allows activation of the immune system to kill cancer cells. Here we repor...
The pH (low) insertion peptides (pHLIPs) target acidity at the surfaces of cancer cells and show uti...
ABSTRACT: Extracellular acidity is associated with tumor progression. Elevated glycolysis and acidos...
The design and development of pH-sensitive peptides for cancer diagnostics provides an opportunity t...
Tumor-targeted drug delivery systems offer not only the advantage of an enhanced therapeutic index, ...
We find that pH-(low)-insertion-peptide (pHLIP)-facilitated translocation of phalloidin, a cell-impe...
Acidity is a biomarker of cancer that is not subject to the blunting clonal selection effects that r...
Purpose: Acidity can be a useful alternative biomarker for the targeting of metabolically active cel...
Cancer is a complex disease with a range of genetic and biochemical markers within and among tumors,...
Malignant tumors exhibit elevated uptake and use of glucose, as well as metabolite buildup and hypox...
Purpose Acidification of extracellular space promotes tumor development, progression, and invasivene...
Many contemporary therapeutic and imaging approaches to cancer treatment are based on specific tumor...
The global burden of cancer is growing at an alarming pace, with the American Cancer Society project...
Localized delivery is vital for the successful development of novel and effective therapeutics for t...
Targeted antigen delivery allows activation of the immune system to kill cancer cells. Here we repor...
Targeted antigen delivery allows activation of the immune system to kill cancer cells. Here we repor...
The pH (low) insertion peptides (pHLIPs) target acidity at the surfaces of cancer cells and show uti...
ABSTRACT: Extracellular acidity is associated with tumor progression. Elevated glycolysis and acidos...
The design and development of pH-sensitive peptides for cancer diagnostics provides an opportunity t...
Tumor-targeted drug delivery systems offer not only the advantage of an enhanced therapeutic index, ...
We find that pH-(low)-insertion-peptide (pHLIP)-facilitated translocation of phalloidin, a cell-impe...
Acidity is a biomarker of cancer that is not subject to the blunting clonal selection effects that r...
Purpose: Acidity can be a useful alternative biomarker for the targeting of metabolically active cel...
Cancer is a complex disease with a range of genetic and biochemical markers within and among tumors,...
Malignant tumors exhibit elevated uptake and use of glucose, as well as metabolite buildup and hypox...
Purpose Acidification of extracellular space promotes tumor development, progression, and invasivene...
Many contemporary therapeutic and imaging approaches to cancer treatment are based on specific tumor...
The global burden of cancer is growing at an alarming pace, with the American Cancer Society project...
Localized delivery is vital for the successful development of novel and effective therapeutics for t...