Poly(ethylacrylic acid) (PEAA) is a pH-sensitive polymer that undergoes a transition from a hydrophilic to a hydrophobic form as the pH is lowered from neutral to acidic values. In this work we show that pH sensitive liposomes capable of intracellular delivery can be constructed by inserting a lipid derivative of PEAA into preformed large unilamellar vesicles (LUV) using a simple one step incubation procedure. The lipid derivatives of PEAA were synthesized by reacting a small proportion (3%) of the carboxylic groups of PEAA with C_(10) alkylamines to produce C_(10)-PEAA. Incubation of C_(10)-PEAA with preformed LUV resulted in the association of up to 8% by weight of derivatized polymer with the LUV without inducing aggregation. The resulti...
The pH-dependent conformational transition of poly(2-ethylacrylic acid) [PEAA] was investigated by f...
AbstractThis study demonstrates rapid and pH-sensitive release of a highly water-soluble fluorescent...
Poly(2-ethylacrylic acid) [PEAA] was shown to induce fusion of phosphatidylcholine bilayer membranes...
AbstractWe investigated the molecular mechanisms by which pH-sensitive liposomes surpass the cytopla...
We investigated the molecular mechanisms by which pH-sensitive liposomes surpass the cytoplasmic and...
AbstractPreviously, as a new type of pH-sensitive liposome, we prepared egg yolk phosphatidylcholine...
AbstractNegatively charged liposomes are endocytosed by the coated vesicle system and accumulate in ...
Strategies used to enhance liposome-mediated drug delivery in vivo include the enhancement of stabil...
Tingli Lu,1 Zhao Wang,2 Yufan Ma,1 Yang Zhang,2 Tao Chen1,21Key Laboratory for Space Bioscience and ...
Liposomes that destabilize at mildly acidic pH are efficient tools for delivering water-soluble drug...
Negatively charged liposomes are endocytosed by the coated vesicle system and accumulate in acidic i...
The permeability barrier posed by cell membranes represents a challenge for the delivery of hydrophi...
AbstractStable liposomes were rendered pH-sensitive by complexation to a polymer that undergoes mark...
The pH-dependent conformational transition of poly(2-ethylacrylic acid) [PEAA] was investigated by f...
AbstractThis study demonstrates rapid and pH-sensitive release of a highly water-soluble fluorescent...
Poly(2-ethylacrylic acid) [PEAA] was shown to induce fusion of phosphatidylcholine bilayer membranes...
AbstractWe investigated the molecular mechanisms by which pH-sensitive liposomes surpass the cytopla...
We investigated the molecular mechanisms by which pH-sensitive liposomes surpass the cytoplasmic and...
AbstractPreviously, as a new type of pH-sensitive liposome, we prepared egg yolk phosphatidylcholine...
AbstractNegatively charged liposomes are endocytosed by the coated vesicle system and accumulate in ...
Strategies used to enhance liposome-mediated drug delivery in vivo include the enhancement of stabil...
Tingli Lu,1 Zhao Wang,2 Yufan Ma,1 Yang Zhang,2 Tao Chen1,21Key Laboratory for Space Bioscience and ...
Liposomes that destabilize at mildly acidic pH are efficient tools for delivering water-soluble drug...
Negatively charged liposomes are endocytosed by the coated vesicle system and accumulate in acidic i...
The permeability barrier posed by cell membranes represents a challenge for the delivery of hydrophi...
AbstractStable liposomes were rendered pH-sensitive by complexation to a polymer that undergoes mark...
The pH-dependent conformational transition of poly(2-ethylacrylic acid) [PEAA] was investigated by f...
AbstractThis study demonstrates rapid and pH-sensitive release of a highly water-soluble fluorescent...
Poly(2-ethylacrylic acid) [PEAA] was shown to induce fusion of phosphatidylcholine bilayer membranes...