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08:0 PI
08:0 PI

18:1 (d9-Cis) PC (DOPC) 99 (TLC) Avanti Polar Lipids
18:1 (d9-Cis) PC (DOPC) 99 (TLC) Avanti Polar Lipids

Paclitaxel loading in cationic liposome vectors is enhanced by replacement  of oleoyl with linoleoyl tails with distinct lipid shapes | Scientific  Reports
Paclitaxel loading in cationic liposome vectors is enhanced by replacement of oleoyl with linoleoyl tails with distinct lipid shapes | Scientific Reports

Physico-chemical studies of elastic compliance and adsorption of DOPC  vesicles and its mixture with charged lipids at fluid/solid interface -  ScienceDirect
Physico-chemical studies of elastic compliance and adsorption of DOPC vesicles and its mixture with charged lipids at fluid/solid interface - ScienceDirect

Cholesterol Effect on the Specific Capacitance of Submicrometric DOPC  Bilayer Patches Measured by in-Liquid Scanning Dielectric Microscopy |  Langmuir
Cholesterol Effect on the Specific Capacitance of Submicrometric DOPC Bilayer Patches Measured by in-Liquid Scanning Dielectric Microscopy | Langmuir

18:1 (Δ9-Cis) PC (DOPC)
18:1 (Δ9-Cis) PC (DOPC)

Light-triggered switching of liposome surface charge directs delivery of  membrane impermeable payloads in vivo | Nature Communications
Light-triggered switching of liposome surface charge directs delivery of membrane impermeable payloads in vivo | Nature Communications

Fatty acids residue distribution in studied samples of galactolipids... |  Download Table
Fatty acids residue distribution in studied samples of galactolipids... | Download Table

18:1 (d9-Cis) PC (DOPC) 99 (TLC) Avanti Polar Lipids
18:1 (d9-Cis) PC (DOPC) 99 (TLC) Avanti Polar Lipids

The Size of Lipid Rafts: An Atomic Force Microscopy Study of Ganglioside  GM1 Domains in Sphingomyelin/DOPC/Cholesterol Membranes: Biophysical Journal
The Size of Lipid Rafts: An Atomic Force Microscopy Study of Ganglioside GM1 Domains in Sphingomyelin/DOPC/Cholesterol Membranes: Biophysical Journal

Avanti Polar Lipids | Stratech Scientific
Avanti Polar Lipids | Stratech Scientific

18:1 (Δ9-Cis) PC (DOPC)
18:1 (Δ9-Cis) PC (DOPC)

22:1 (Cis) PC powder 99 (TLC) Avanti Polar Lipids
22:1 (Cis) PC powder 99 (TLC) Avanti Polar Lipids

Avanti® Polar Lipids 18:1 (Δ9-Cis) PC (DOPC) from Merck KGaA, Darmstadt,  Germany | SelectScience
Avanti® Polar Lipids 18:1 (Δ9-Cis) PC (DOPC) from Merck KGaA, Darmstadt, Germany | SelectScience

18:1 (Δ9-Cis) PC (DOPC)
18:1 (Δ9-Cis) PC (DOPC)

Avanti® Polar Lipids
Avanti® Polar Lipids

Permeability of DOPC bilayers under photoinduced oxidation: Sensitivity to  photosensitizer - ScienceDirect
Permeability of DOPC bilayers under photoinduced oxidation: Sensitivity to photosensitizer - ScienceDirect

Material Properties of Lipid Micro-Domains: Force Volume Imaging Study of  the Effect of Cholesterol on Lipid Micro-Domain Rigidi
Material Properties of Lipid Micro-Domains: Force Volume Imaging Study of the Effect of Cholesterol on Lipid Micro-Domain Rigidi

Figures and data in Membrane characteristics tune activities of endosomal  and autophagic human VPS34 complexes | eLife
Figures and data in Membrane characteristics tune activities of endosomal and autophagic human VPS34 complexes | eLife

Avanti® Polar Lipids 18:1 (Δ9-Cis) PC (DOPC) from Merck KGaA, Darmstadt,  Germany | SelectScience
Avanti® Polar Lipids 18:1 (Δ9-Cis) PC (DOPC) from Merck KGaA, Darmstadt, Germany | SelectScience

Characterization of the interface of binary mixed DOPC:DOPS liposomes in  water: The impact of charge condensation: The Journal of Chemical Physics:  Vol 146, No 4
Characterization of the interface of binary mixed DOPC:DOPS liposomes in water: The impact of charge condensation: The Journal of Chemical Physics: Vol 146, No 4

A Stable Lipid/TiO2 Interface with Headgroup Inversed Phosphocholine and a  Comparison with SiO2
A Stable Lipid/TiO2 Interface with Headgroup Inversed Phosphocholine and a Comparison with SiO2

10:0 PG powder 99 (TLC) Avanti Polar Lipids
10:0 PG powder 99 (TLC) Avanti Polar Lipids

Membrane thickness, lipid phase and sterol type are determining factors in  the permeability of membranes to small solutes | Nature Communications
Membrane thickness, lipid phase and sterol type are determining factors in the permeability of membranes to small solutes | Nature Communications