We develop a method for pH-dependent fusion between liposomes and cellular membranes using pHLIP (pH Low Insertion Peptide), which inserts into lipid bilayer of membrane only at low pH. Previously we establish the molecular mechanism of peptide action and show that pHLIP can target acidic diseased tissue. Here we investigate how coating of PEGylated liposomes with pHLIP might affect liposomal uptake by cells. The presence of pHLIP on the surface of PEGylated-liposomes enhanced membrane fusion and lipid exchange in a pH dependent fashion, leading to increase of cellular uptake and payload release, and inhibition of cell proliferation by liposomes containing ceramide. A novel type of pH-sensitive, “fusogenic” pHLIP-liposomes was developed, wh...
Cancer is a complex disease with a range of genetic and biochemical markers within and among tumors,...
Purpose: Malignant cancer foci develop acidic extracellular environments. Mild acidic conditions tri...
Tumor-oriented nanocarrier drug delivery approaches with pH-sensitivity have been drawing considerab...
Here we review a novel class of delivery vehicles based on pH-sensitive, moderately polar membrane p...
SummaryOur goal is to define the properties of cell-impermeable cargo molecules that can be delivere...
Acidity at surface of cancer cells is a hallmark of tumor microenvironments, which does not depend o...
The pH-selective insertion and folding of a membrane peptide, pHLIP [pH (low) insertion peptide], ca...
Acidity at surface of cancer cells is a hallmark of tumor microenvironments, which does not depend o...
The pH-dependent interactions of pHLIPs® (pH (Low) Insertion Peptides) with lipid bilayer of membran...
The pH-dependent interactions of pHLIPs® (pH (Low) Insertion Peptides) with lipid bilayer of membran...
SummaryOur goal is to define the properties of cell-impermeable cargo molecules that can be delivere...
Many contemporary therapeutic and imaging approaches to cancer treatment are based on specific tumor...
AbstractThe investigation of pH-dependent membrane-associated folding has both fundamental interest ...
The pH Low Insertion Peptide (pHLIP) is able to unidirectionally insert itself in membranes at low p...
Abstract Acidity at surface of cancer cells is a hallmark of tumor microenvironments, which does not...
Cancer is a complex disease with a range of genetic and biochemical markers within and among tumors,...
Purpose: Malignant cancer foci develop acidic extracellular environments. Mild acidic conditions tri...
Tumor-oriented nanocarrier drug delivery approaches with pH-sensitivity have been drawing considerab...
Here we review a novel class of delivery vehicles based on pH-sensitive, moderately polar membrane p...
SummaryOur goal is to define the properties of cell-impermeable cargo molecules that can be delivere...
Acidity at surface of cancer cells is a hallmark of tumor microenvironments, which does not depend o...
The pH-selective insertion and folding of a membrane peptide, pHLIP [pH (low) insertion peptide], ca...
Acidity at surface of cancer cells is a hallmark of tumor microenvironments, which does not depend o...
The pH-dependent interactions of pHLIPs® (pH (Low) Insertion Peptides) with lipid bilayer of membran...
The pH-dependent interactions of pHLIPs® (pH (Low) Insertion Peptides) with lipid bilayer of membran...
SummaryOur goal is to define the properties of cell-impermeable cargo molecules that can be delivere...
Many contemporary therapeutic and imaging approaches to cancer treatment are based on specific tumor...
AbstractThe investigation of pH-dependent membrane-associated folding has both fundamental interest ...
The pH Low Insertion Peptide (pHLIP) is able to unidirectionally insert itself in membranes at low p...
Abstract Acidity at surface of cancer cells is a hallmark of tumor microenvironments, which does not...
Cancer is a complex disease with a range of genetic and biochemical markers within and among tumors,...
Purpose: Malignant cancer foci develop acidic extracellular environments. Mild acidic conditions tri...
Tumor-oriented nanocarrier drug delivery approaches with pH-sensitivity have been drawing considerab...