Advances in Lipid Methodology, Volume 3 by W. W. Christie

By W. W. Christie

This can be the 3rd quantity of an occasional sequence of books facing points of lipid methodology.  The individuals talk about and study positional isomers of glycerolipids, long-chain acyl-coenzyme A esters, 31P nuclear magnetic resonance profiling of phospholipids and a few vital references in lipid method.

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83. , Fahey,J. ,J. A, 704, 99-111 (1995). 84. N. , Lipids, 5, 353-358 (1970). 85. , Ferrato,F. , Chirality, 5, 24-30 (1993). 86. , Ransac,S. ,J. Biol. , 265, 20271-20276 (1990). 87. , Damiani,P. ,J. Am. Oil Chem. , 69, 552-556 (1992). 88. , J. Am. Oil Chem. , 42, 945-957 (1965). 89. Sempore,G. ,J. Am. Oil Chem. , 68, 702-709 (1991). 90. Sempore,G. ,J. , 547, 89-103 (1991 ). 91. G. ,J. , 557, 227-240 (1991). 36 92. 93. 94. 95. 96. 97. 98. 99. 100. 101. 102. 103. 104. 105. 106. 107. 108. 109. 110.

Yang and Kuksis [110,112] have used the method for stereospecific analysis of menhaden oil and of the chylomicron triacylglycerols derived from it to propose a convergence of the phosphatidic acid and the monoacylglycerol pathways of triacylglycerol biosynthesis during fat absorption. Yang et al. [113] have employed the chiral-phase HPLC method to demonstrate that hepatic triacylglycerols are not directly transferred to VLDL but first undergo lipolysis to acylglycerols before being re-synthesised into VLDL triacylglycerols.

J. Am. Oil Chem. , 69, 417-424 ( 1982). 4. , Rosenquist,A. , Lipids, 28, 147-149 (1993). 5. L. , in lipid Chromatographic Analysis, pp. 291-316 (1994) (edited by T. ). 6. ,J. , 12, 24-30 (1971). 7. , in Handbook of lipid Research, pp. 197-232 (1978) (edited by A. Kuksis, Plenum Press, New York). 8. C. ,J. , 9, 388-393 (1968). 9. , lipids, 6, 942-956 (1971 ). 10. Brockerhoff,H. , Lipolytic Enzymes, pp. 10-24 (1974) (Academic Press, Orlando, FL). 11. M. , Chem. Phys. lipids, 16, 123-132 (1976).

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