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Mechanism of pH-triggered collapse of phosphatidylethanolamine liposomes stabilized by an ortho ester polyethyleneglycol lipid
Authors:Guo Xin  MacKay J Andrew  Szoka Francis C
Affiliation:Department of Pharmaceutical Chemistry, University of California at San Francisco, 94143, USA.
Abstract:The mechanism of pH-triggered destabilization of liposomes composed of a polyethyleneglycol-orthoester-distearoylglycerol lipid (POD) and phosphatidyl ethanolamine (PE) has been studied using an ANTS/DPX leakage and a lipid-mixing assay. We developed a kinetic model that relates POD hydrolysis to liposome collapse. This minimum-surface-shielding model describes the kinetics of the pH-triggered release of POD/PE liposomes. In the model, when acid-catalyzed hydrolysis lowers the mole percentage of POD on the liposome surface to a critical level, intervesicular lipid mixing is initiated, resulting in a burst of contents release. Two phases of content leakage are observed: a lag phase and a burst phase. During the lag phase, less than 20% of liposomal contents are released and the leakage begins to accelerate when approaching to the transition point. During the burst phase, the leakage rate is dependent on interbilayer contact. The burst phase occurs when the surface density of the PEG lipid is 2.3 +/- 0.6 mol%, regardless of the pH. Vesicles containing 4 mol% of a pH-insensitive PEG-lipid conjugate and 10% POD did not leak contents or collapse at any pH. These data are consistent with the stalk theory to describe the lamellar-to-inverted hexagonal phase transition and set a lower bound of approximately 16 PE lipids on the external monolayer as the contact site required for lipid mixing between two bilayers.
Keywords:Ac  critical POD mole percentage or minimum POD percentage necessary to stabilize a bilayer structure  Ao  initial mole percentage of POD in the bilayer  ANTS  8-aminonaphthalene-1  2  3-trisulfonic acid  CHEMS  cholesteryl hemisuccinate  DOPE  dioleoyl-phosphatidylethanolamine  DPX  p-xylenebis(pyridinium) bromide  HEPES  (hydroxyethyl) piperazine-n-2-ethanesulfonic acid  k  hydrolysis rate constant of POD in M−1sec−1  NBD-PE  n-(7-Nitrobenz-2-oxa-1  3-diazol-4-yl)-1  2-dihexadecanoyl-sn-glycero-3-phosphoethanolamine  PCS  Photon Correlation Spectrometry  PEG  polyethylene glycol  POD  polyethylene glycol 2000-diortho ester-distearoyl glycerol conjugate  PEG-DSG  polyethylene glycol 2000-distearoyl glycerol conjugate  POPE  1-palmitoyl-2-oleoylphosphatidylethanolamine  Rh-PE  dipalmitoylphosphatidyl-ethanolaminelissamine rhodamine B  t1  lag time or length of lag phase
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