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Food Lipids: Chemistry, Nutrition, and Biotechnology

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47. N. Markova, E. Sparr, L. Wadso, <strong>and</strong> H. Wennerstrom. A calorimetric study of phospholipid<br />

hydration. Simultaneous monitoring of enthalpy <strong>and</strong> free energy. J. Phys.<br />

Chem. B 104:8053–8060 (2000).<br />

48. G. Zaccai, J. K. Blasie, <strong>and</strong> B. P. Schoenborn. Neutron diffraction studies on the<br />

location of water in lecithin bilayer model membranes. Proc. Natl. Acad. Sci. U.S.A.<br />

72:376–380 (1975).<br />

49. D. L. Worcester <strong>and</strong> N. P. Franks. Structural analysis of hydrated egg lecithin <strong>and</strong><br />

cholesterol bilayers. II. Neutron diffraction. J. Mol. Biol. 100:359–378 (1976).<br />

50. S. A. Simon <strong>and</strong> T. J. McIntosh. Depth of water penetration into lipid bilayers. Meth<br />

Enzymol 127:511–521 (1986).<br />

51. R. V. McDaniel <strong>and</strong> T. J. McIntosh. Neutron <strong>and</strong> X-ray diffraction structural analysis<br />

of phosphatidylinositol bilayers. Biochim. Biophys. Acta 983:241–246 (1989).<br />

52. T. J. McIntosh <strong>and</strong> S. A. Simon. Area per molecule <strong>and</strong> distribution of water in fully<br />

hydrated dilauroylphosphatidylethanolamine bilayers. Biochemistry 25:4948–4952<br />

(1986).<br />

53. T. J. McIntosh <strong>and</strong> S. A. Simon. Area per molecule <strong>and</strong> distribution of water in fully<br />

hydrated dilauroylphosphatidylethanolamine bilayers. Corrections. Biochemistry 25:<br />

8474 (1986).<br />

54. J. N. Israelachivili. Intermolecular <strong>and</strong> Surface Forces. Academic Press, London, 1985.<br />

55. C. Selle, W. Pohle, <strong>and</strong> H. Fritzsche. Monitoring the stepwise hydration of phospholipids<br />

in films by FT-IR spectroscopy. Mikrochim. Acta 14:449–450 (1997).<br />

56. W. Pohle, C. Selle, H. Fritzsche, <strong>and</strong> H. Binder. Fourier transform infrared spectroscopy<br />

as a probe for the study of the hydration of lipid self-assemblies. I. Methodology <strong>and</strong><br />

general phenomena. Biospectroscopy 4:267–280 (1998).<br />

57. L. J. Lis, V. A. Parsegian, <strong>and</strong> R. P. R<strong>and</strong>. Binding of divalent cations to dipalmitoylphosphatidylcholine<br />

bilayers <strong>and</strong> its effects on bilayer interaction. Biochemistry 20:<br />

1761–1770 (1981).<br />

58. M. E. Loosley-Millman, R. P. R<strong>and</strong>, <strong>and</strong> V. A. Parsegian. Effects of monovalent ion<br />

binding <strong>and</strong> screening on measured electrostatic forces between charged phospholipid<br />

bilayers. Biophys. J. 40:221–232 (1982).<br />

59. H. Hauser <strong>and</strong> G. G. Shipley. Interaction of divalent cations with phosphatidylserine<br />

bilayer membranes. Biochemistry 23:34–41 (1984).<br />

60. H. Hauser, E. G. Finer, <strong>and</strong> A. Darke. Crystalline anhydrous Ca-phosphatidylserine<br />

bilayers. Biochem. Biophys. Res. Commun. 76:267–274 (1977).<br />

61. C. Tanford. The Hydrophobic Effect, 2nd ed. Wiley, New York, 1980.<br />

62. R. A. Dluhy, D. G. Cameron, H. H. Mantsch, <strong>and</strong> R. Mendelsohn. Fourier transform<br />

infrared spectroscopic studies of the effect of calcium ions on phosphatidylserine. Biochemistry<br />

22:6318–6325 (1983).<br />

63. H. L. Casal, H. H. Mantsch, <strong>and</strong> H. Hauser. Infrared studies of fully hydrated saturated<br />

<strong>and</strong> phosphatidylserine bilayers. Effect of Li � <strong>and</strong> Ca 2� . Biochemistry 26:4408–4416<br />

(1987).<br />

64. H. L. Casal, A. Martin, H. H. Mantsch, F. Paltauf, <strong>and</strong> H. Hauser. Infrared studies of<br />

fully hydrated unsaturated phosphatidylserine bilayers. Effect of Li � <strong>and</strong> Ca 2� . Biochemistry<br />

26:7395–7401 (1987).<br />

65. H. Hauser, M. C. Phillips, B. A. Levine, <strong>and</strong> R. J. P. Williams. Ion-binding to phospholipids.<br />

Interaction of calcium <strong>and</strong> lanthanide ions with phosphatidylcholine. Eur. J.<br />

Biochem. 58:133–144 (1975).<br />

66. P. W. Nolden <strong>and</strong> T. Ackermann. A high-resolution NMR study ( 1 H, 13 C, 31 P) of the<br />

interaction of paramagnetic ions with phospholipids in aqueous dispersions. Biophys.<br />

Chem. 4:297–304 (1976).<br />

67. L. Herbette, C. Napolitano, <strong>and</strong> R. V. McDaniel. Direct determination of the calcium<br />

profile structure for dipalmitoyllecithin multilayers using neutron diffraction. Biophys.<br />

J. 46:677–685 (1984).<br />

Copyright 2002 by Marcel Dekker, Inc. All Rights Reserved.

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