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Chemistry and Physics of Lipids 1996: Vol 85 Index PDF

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Preview Chemistry and Physics of Lipids 1996: Vol 85 Index

CPL . at CHEMISTRY AND Chemistry and Physics of Lipids PHYSICS OF LIPIDS ELSEVIER 85 (1997) 181 Author index Volume 85 (1997) Akulin, V.N. 85, 125 Kisselev, P. 85, 91 Rossi, J.C. 85, 125 Arnhold, J. 85, 13 Klose, G. 85, 115 Arnold, K. 85, 13 Kéberl, M. 85, 23 Saito, H. 85, 45 Asano, T. 85, 53 Komatsu, H. 85, 67 Santaella, C. 85, 135 Kuklev, D.V. 85, 125 Schara, M. 85, | Bakare, O. 85, 175 Kveder, M. 85, | Schmid, R.D. 85, 91 Barwicz, J. 85, 145 Schwarz, D. 85, 91 Bezuglov, V.V. 85, 125 Lam, C.K. 85, 101 Seifert, T. 85, 13 Bornscheuer, U. 85, 91 Lantzsch, G. 85, 115 Sievi, J.-J. 85, 107 Lehtonen, J.Y.A. 85, 107 Séderlund, T. 85, 107 Christie, W.W. 85, 125 Lie Ken Jie, M.S.F. 85, 101, 175 Lindblom, G. 85, 75 Talmon, Y. 85, 75 Danino, D. 85, 75 Tanaka, H. 85, 45 Monasse, B. 85, 135 Davies, J.E.D. 85, 175 Tancréde, P. 85, 145 Donnerstag, A. 85, 115 Tyman, J.H.P. 85, 157 Okada, S. 85, 67 Durand, T. 85, 125 Oradd, G. 85, 75 Vidal, J.P. 85, 125 Esterbauer, H. 85, | Vierling, P. 85, 135 Pampel, A. 85, 115 Visani, N. 85, 157 Pegéar, S. 85, | Hauksson, J.B. 85, 75 Volke, F. 85, 115 Pfeiffer, H. 85, 115 Hinz, H.-J. 85, 23 Pifat, G. 85, | Pisch, S. 85, 91 Waschipky, R. 85, 115 Kaplun, A. 85, 75 Weilzel, P. 85, 115 Kasyanov, S.P. 85, 125 Ramos, P. 85, | Wessel, R. 85, 91 Kawazura, H. 85, 45 Rapp, G. 85, 23 Khysar Pasha, M. 85, 101 Richter, W. 85, 115 Yamazaki, M. 85, 53 Kinnunen, P.K.J. 85, 107 Rilfors, L. 85, 75 Kinoshita, K. 85, 53 Rolland, J.-P. 85, 135 Zschérnig, O. 85, 13 CPL 5 CHEMISTRY AND ELSE+VeI ER Chemistry and Physics of Lipids PHYSICS OF LIPIDS 85 (1997) 183 186 Subject index Volume 85 (1997) Acholeplasma laidlawii; Glycerophosphoryldiglucosyldiacyl- Cholesterol; VO? +; Spin probe; Dynamics; Polar head; Phos- glycerol; Lipid structure; NMR; Cryo-TEM; Micelle 85, 75 phatidylcholine 85, 45 Adsorption; Amphotericin-B; Cholesterol; Ergosterol; Mono- Composition of fatty acids; ESR; Lipoproteins; LDL; layer; Phospholipids 85, 145 VLDL 85,1 Alkynes; Phenolic lipid; Anacardic acid; Dienes; Trienes; Syn- Cryo-TEM; Glycerophosphoryldiglucosyldiacylglycerol; Lipid thesis 85, 157 structure; NMR; Acholeplasma laidlawii; Micelle 85, 75 Amphotericin-B; Cholesterol; Ergosterol; Monolayer; Adsorp- CYPII1AI1; Nonbilayer lipids; Cytochrome P450SCC; Hexago- tion; Phospholipids 85, 145 nal II phase; Enzymatic activity; Vesicle aggregation 85, 91 Anacardic acid; Phenolic lipid; Dienes; Trienes; Synthesis; Cytochrome P450SCC; Nonbilayer lipids; CYP11A1; Hexago- Alkynes 85, 157 nal II phase; Enzymatic activity; Vesicle aggregation 85, 91 DC electric field; Cationic liposomes; Phase contrast mi- Antibiotic; Interaction with membranes; MAS NMR; DSC; croscopy; Fluorescence microscopy 85, 107 Electron microscopy 85, 115 Dienes; Phenolic lipid; Anacardic acid; Trienes; Synthesis; Beta-blockers; Laser electrophoresis; Low-density lipoproteins Alkynes 85, 157 (LDL); Sodium hypochlorite; Zeta-potential; J774 macrophages 85, 13 DSC; Antibiotic; Interaction with membranes; MAS NMR; Electron microscopy 85, 115 Bilayer; Glycolipids; Monolayer; Phase transitions; Surface pressure; X-ray scattering; Transition enthalpy; Transition DSC; Fluorinated phospholipids; Bilayers; Membranes; Misci- temperature; Transition area; WAXS; SAXS_ 85, 23 bility; Binary mixture 85, 135 Bilayers; Fluorinated phospholipids; Membranes; Miscibility; Dynamics; VO**; Spin probe; Polar head; Phosphatidyl- Binary mixture; DSC 85, 135 choline; Cholesterol 85, 45 Binary mixture; Fluorinated phospholipids; Bilayers; Mem- Electron microscopy; Antibiotic; Interaction with membranes; branes; Miscibility; DSC 85, 135 MAS NMR; DSC 838, 115 Cationic liposomes; DC electric field; Phase contrast mi- Enzymatic activity; Nonbilayer lipids; Cytochrome P450SCC; croscopy; Fluorescence microscopy 85, 107 CYP11A1; Hexagonal II phase; Vesicle aggregation 85, 91 Cholesterol; Amphotericin-B; Ergosterol; Monolayer; Adsorp- Ergosterol; Amphotericin-B; Cholesterol; Monolayer; Adsorp- tion; Phospholipids 85, 145 tion; Phospholipids 85, 145 Cholesterol; Ethyl! alcohol; Interdigitation; Permeation; Lipo- ESR; Lipoproteins; LDL; VLDL; Composition of fatty some; Vesicle 85, 67 acids 85,| 184 Subject index Ethyl alcohol; Cholesterol; Interdigitation; Permeation; Lipo- Isomerization, m-Chloroperoxybenzoic acid; Furanoid fatty some; Vesicle 85, 67 ester; Hydrogen peroxide; Magnesium monoperoxyphthalate; Pyridinium chlorochromate; Ultrasound 85, 101 Fluorescence microscopy; Cationic liposomes; DC electric field; Phase contrast microscopy 85, 107 J774 macrophages; Beta-blockers; Laser electrophoresis; Low- density lipoproteins (LDL); Sodium hypochlorite; Zeta-poten- Fluorinated phospholipids; Bilayers; Membranes; Miscibility; tial 85, 13 Binary mixture; DSC 885, 135 Ketodienoic compounds; Linoleic acid; Lipid peroxidation; 9- Furanoid fatty ester; m-Chloroperoxybenzoic acid; Hydrogen Hydroxy-(10£,12Z)-octadecadien-l-oic acid (9-HODE); 13- Hydroperoxy-(9Z,11£)-octadecadien-l-oic acid (13-HODE); peroxide; Isomerization; Magnesium monoperoxyphthalate; Synthesis; NMR spectroscopy; Mass spectrometry; High per- Pyridinium chlorochromate; Ultrasound 885, 101 formance liquid chromatography 85, 125 Glycerophosphoryldiglucosyldiacylglycerol; Lipid structure; Laser electrophoresis; Beta-blockers; Low-density lipoproteins NMR; Cryo-TEM; Acholeplasma laidlawii; Micelle 85, 75 (LDL); Sodium hypochlorite; Zeta-potential; J774 macrophages 85, 13 Glycolipids; Monolayer; Bilayer; Phase transitions; Surface pressure; X-ray scattering; Transition enthalpy; Transition LDL; ESR; Lipoproteins; VLDL; Composition of fatty temperature; Transition area; WAXS; SAXS_ 85, 23 acids 85,| Hexagonal II phase; Nonbilayer lipids; Cytochrome P450SCC; Linoleic acid; Lipid peroxidation; Ketodienoic compounds; CYPIiA1; Enzymatic activity; Vesicle aggregation 85, 91 9-Hydroxy-(10£,12Z)-octadecadien-l-oic acid (9-HODE); 13- Hydroperoxy-(9Z,11£)-octadecadien-l-oic acid (13-HODE); High performance liquid chromatography; Linoleic acid; Lipid Synthesis; NMR spectroscopy; Mass spectrometry; High per- peroxidation; Ketodienoic compounds; 9-Hydroxy-(10£,12Z)- formance liquid chromatography 85, 125 octadecadien-l-oic acid (9-HODE); 13-Hydroperoxy- (9Z,11£)-octadecadien-l-oic acid (13-HODE); Synthesis; Lipid peroxidation; Linoleic acid; Ketodienoic compounds; NMR spectroscopy; Mass spectrometry 85, 125 9-Hydroxy-(10£,12Z)-octadecadien-l-oic acid (9-HODE); 13- Hydroperoxy-(9Z,11£)-octadecadien-l-oic acid (13-HODE); Hydrogen peroxide, m-Chloroperoxybenzoic acid; Furanoid Synthesis; NMR spectroscopy; Mass spectrometry; High per- fatty ester; Isomerization; Magnesium monoperoxyphthalate; formance liquid chromatography 85, 125 Pyridinium chlorochromate; Ultrasound 85, 101 Lipid structure; Glycerophosphoryldiglucosyldiacylglycerol; 13-Hydroperoxy-(9Z,11£)-octadecadien-1-oic acid (13-HODE),; NMR; Cryo-TEM; Acholeplasma laidlawii; Micelle 85, 75 Linoleic acid; Lipid peroxidation; Ketodienoic compounds; Lipoproteins, ESR; LDL; VLDL; Composition of fatty 9-Hydroxy-(10£,12Z)-octadecadien-l-oic acid (9-HODE); Synthesis; NMR spectroscopy; Mass spectrometry; High per- acids 85,| formance liquid chromatography 85, 125 Liposome; Ethyl alcohol; Cholesterol; Interdigitation; Perme- ation; Vesicle 85, 67 9-Hydroxy-(10£,12Z)-octadecadien-l-oic acid (9-HODE); Linoleic acid; Lipid peroxidation; Ketodienoic compounds; Low-density lipoproteins (LDL); Beta-blockers; Laser elec- 13-Hydroperoxy-(9Z, | 1 E)-octadecadien-1-oic acid (13- trophoresis; Sodium hypochlorite; Zeta-potential; J774 HODE); Synthesis; NMR spectroscopy; Mass spectrometry; macrophages 85, 13 High performance liquid chromatography 85, 125 Magnesium monoperoxyphthalate, m-Chloroperoxybenzoic Interaction with membranes; Antibiotic: MAS NMR; DSC: acid; Furanoid fatty ester; Hydrogen peroxide; Isomerization; Electron microscopy 85, 115 Pyridinium chlorochromate; Ultrasound 885, 101 Interdigitated gel phase; 7 Parameter; Poor solvent; Phase MAS NMR; Antibiotic; Interaction with membranes; DSC; transition; Phospholipid 85, 53 Electron microscopy 85, 115 Interdigitation,; Ethyl alcohol; Cholesterol; Permeation; Lipo- Mass spectrometry; Linoleic acid; Lipid peroxidation; Keto- some; Vesicle 85, 67 dienoic compounds; 9-Hydroxy-(10E,12Z)-octadecadien-1-oic acid (9-HODE); 13-Hydroperoxy-(9Z, 11 £)-octadecadien-|-oic IR spectroscopy; Raman spectroscopy; Selenalaurates; Tellu- acid (13-HODE); Synthesis; NMR spectroscopy; High perfor- ralaurates; Sulphinyl laurates; Sulphonyl laurates 85, 175 mance liquid chromatography 85, 125 Subject index 185 m-Chloroperoxybenzoic acid; Furanoid fatty ester; Hydrogen Phospholipids; Amphotericin-B; Cholesterol; Ergosterol; peroxide; Isomerization; Magnesium monoperoxyphthalate; Monolayer; Adsorption 85, 145 Pyridinium chlorochromate; Ultrasound 85, 101 Polar head; VO*?*; Spin probe; Dynamics; Phosphatidyl- Membranes; Fluorinated phospholipids; Bilayers; Miscibility; choline; Cholesterol 85, 45 Binary mixture; DSC 885, 135 Poor solvent; 7 Parameter; Phase transition; Phospholipid; Micelle; Glycerophosphoryldiglucosyldiacylglycerol; Lipid Interdigitated gel phase 85, 53 structure; NMR; Cryo-TEM; Acholeplasma laidlawii 85, 75 Pyridinium chlorochromate; m-Chloroperoxybenzoic acid; Miscibility; Fluorinated phospholipids; Bilayers; Membranes; Furanoid fatty ester; Hydrogen peroxide; Isomerization; Mag- Binary mixture; DSC 85, 135 nesium monoperoxyphthalate; Ultrasound 85, 101 Monolayer; Amphotericin-B; Cholesterol; Ergosterol; Adsorp- Raman spectroscopy; IR spectroscopy; Selenalaurates; Tellu- tion; Phospholipids 85, 145 ralaurates; Sulphinyl laurates; Sulphonyl laurates 85, 175 Monolayer; Glycolipids; Bilayer; Phase transitions; Surface SAXS; Glycolipids; Monolayer; Bilayer; Phase transitions; pressure; X-ray scattering; Transition enthalpy; Transition Surface pressure; X-ray scattering; Transition enthalpy; Tran- temperature; Transition area; WAXS; SAXS_ 885, 23 sition temperature; Transition area; WAXS_ 885, 23 NMR; Glycerophosphoryldiglucosyldiacylglycerol; Lipid Selenalaurates; Raman spectroscopy; IR spectroscopy; Tellu- structure; Cryo-TEM; Acholeplasma laidlawii; Micelle 85, 75 ralaurates; Sulphinyl laurates; Sulphonyl laurates 85, 175 NMR spectroscopy; Linoleic acid; Lipid peroxidation; Keto- Sodium hypochlorite; Beta-blockers; Laser electrophoresis; dienoic compounds; 9-Hydroxy-(10£,12Z)-octadecadien-|-oic Low-density lipoproteins (LDL); Zeta-potential; J774 acid (9-HODE); 13-Hydroperoxy-(9Z, | 1 E)-octadecadien-1-oic macrophages 85, 13 acid (13-HODE); Synthesis; Mass spectrometry; High perfor- mance liquid chromatography 85, 125 Spin probe; VO?*; Dynamics; Polar head; Phosphatidyl- choline; Cholesterol 85, 45 Nonbilayer lipids; Cytochrome P450SCC; CYP11A1; Hexago- nal II phase; Enzymatic activity; Vesicle aggregation 85, 91 Sulphiny! laurates; Raman spectroscopy; IR spectroscopy; Se- lenalaurates; Telluralaurates; Sulphonyl laurates 85, 175 zx Parameter; Poor solvent; Phase transition; Phospholipid; Interdigitated gel phase 85, 53 Sulphony! laurates; Raman spectroscopy; IR spectroscopy; Se- lenalaurates; Telluralaurates; Sulphinyl laurates 85, 175 Permeation; Ethyl alcohol; Cholesterol; Interdigitation; Lipo- some; Vesicle 85, 67 Surface pressure; Glycolipids; Monolayer; Bilayer; Phase tran- sitions; X-ray scattering; Transition enthalpy; Transition tem- Phase contrast microscopy; Cationic liposomes; DC electric field; Fluorescence microscopy 85, 107 perature; Transition area; WAXS; SAXS_ 85, 23 Phase transition; 7 Parameter; Poor solvent; Phospholipid; Synthesis; Linoleic acid; Lipid peroxidation; Ketodienoic com- Interdigitated gel phase 85, 53 pounds; 9-Hydroxy-(10£,12Z)-octadecadien-l-oic acid (9- HODE); 13-Hydroperoxy-(9Z,11£)-octadecadien-l-oic acid Phase transitions; Glycolipids; Monolayer; Bilayer; Surface (13-HODE); NMR spectroscopy; Mass spectrometry; High pressure; X-ray scattering; Transition enthalpy; Transition performance liquid chromatography 85, 125 temperature; Transition area, WAXS; SAXS_ 85, 23 Synthesis; Phenolic lipid; Anacardic acid; Dienes; Trienes; Phenolic lipid; Anacardic acid; Dienes; Trienes; Synthesis; Alkynes 85, 157 Alkynes 85, 157 Telluralaurates; Raman spectroscopy; IR spectroscopy; Sele- Phosphatidylcholine; VO? * ; Spin probe; Dynamics; Polar nalaurates; Sulphinyl laurates; Sulphonyl laurates 85, 175 head; Cholesterol 85, 45 Transition area; Glycolipids; Monolayer; Bilayer; Phase transi- Phospholipid; 7 Parameter; Poor solvent; Phase transition; tions; Surface pressure; X-ray scattering; Transition enthalpy; Interdigitated gel phase 85, 53 Transition temperature; WAXS; SAXS_ 85, 23 186 Subject index Transition enthalpy; Glycolipids; Monolayer; Bilayer; Phase ation; Liposome 85, 67 transitions; Surface pressure; X-ray scattering; Transition tem- perature; Transition area; WAXS; SAXS_ 85, 23 VLDL; ESR; Lipoproteins; LDL; Composition of fatty acids 85,| Transition temperature; Glycolipids; Monolayer; Bilayer; Phase transitions; Surface pressure; X-ray scattering; Transition en- VO?*; Spin probe; Dynamics; Polar head; Phosphatidyl- thalpy; Transition area; WAXS; SAXS_ 85, 23 choline; Cholesterol 85, 45 Trienes; Phenolic lipid; Anacardic acid; Dienes; Synthesis; WAXS; Glycolipids; Monolayer; Bilayer; Phase transitions; Alkynes 85, 157 Surface pressure; X-ray scattering; Transition enthalpy; Tran- sition temperature; Transition area; SAXS_ 85, 23 Ultrasound; m-Chloroperoxybenzoic acid; Furanoid fatty es- ter; Hydrogen peroxide; Isomerization; Magnesium monoper- X-ray scattering; Glycolipids; Monolayer; Bilayer; Phase tran- oxyphthalate; Pyridinium chlorochromate 85, 101 sitions; Surface pressure; Transition enthalpy; Transition tem- perature; Transition area; WAXS; SAXS_ 85, 23 Vesicle aggregation; Nonbilayer lipids; Cytochrome P450SCC; CYPIIA1; Hexagonal II phase; Enzymatic activity 85, 91 Zeta-potential; Beta-blockers; Laser electrophoresis; Low-den- sity lipoproteins (LDL); Sodium hypochlorite; J774 Vesicle; Ethyl alcohol; Cholesterol; Interdigitation; Perme- macrophages 85, 13

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