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Membrane curvature / Lipid bilayer / Lipid polymorphism / Amphiphile / Model lipid bilayer / Lipid / Cell membrane / Vesicle / Synthetic membrane / Biology / Membrane biology / Chemistry


650 Ind. Eng. Chem. Res. 2008, 47, [removed]Formulation Affects the Rate of Membrane Degradation Catalyzed by Cationic Amphiphilic Drugs
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City

New York / Witte / Electro Optics / Sebai / London / Durham / /

Company

Academic Press / GSK plc. / Phospholipid Model Membrane Systems / Model 626 LC / Nikas S. P. / Chemical Biology Doctoral / Sigma-Aldrich / Ligand / Gassim A. E. / Science Ltd. / Dow Corning Corp. / Oxford University Press / Royce A. E. / Shimizu / J. Pharm / Macmillan / /

Country

United States / United Kingdom / /

Currency

pence / USD / /

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Facility

Plant Protoplasts / Imperial College / South Kensington Campus / Hammersmith Hospital / /

IndustryTerm

imaging / lipid degradation products / energy / predicted degradation products / transportation mechanism / lipophilic media / cellular energy / chemical / pharmaceutical compounds / chemicals / /

Organization

Imperial College London / Richard H. Templer* Chemical Biology Centre / Department of Chemistry / United Kingdom Antony D. Gee GSK Clinical Imaging Centre / Oxford University / Hammersmith Hospital / /

Person

Franz Hofmeister / Duncan R. Casey / G. R. Role / Richard H. Templer / Andrew Heron / Robert V. Law / Oscar Ces / Van Echteld / Gemma C. Shearman / Antony D. Gee / Van Etcheld / /

Position

model for biological membranes / Painter / Porter / /

Product

haloperidol / HCl / Azithromycin / acetic acid / adenosine / /

ProgrammingLanguage

DC / /

ProvinceOrState

Indiana / South Carolina / O. N. / /

Technology

X-ray / ESA / Drug DeliVery / drug discovery / crystallization / condensation / CAD / /

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