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Miscibility of binary phospholipid mixtures under hydrated and non-hydrated conditions. IV. Phosphatidylglycerols with different acyl chain length

โœ Scribed by Tohru Inoue; Yoshinori Nibu


Publisher
Elsevier Science
Year
1995
Tongue
English
Weight
714 KB
Volume
76
Category
Article
ISSN
0009-3084

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โœฆ Synopsis


The miscibility property of homologous diacylphosphatidylglycerol (PG) with different acyl chain length (n = 14, 16, and 18, where n is the number of carbon atoms per chain) under hydrated and non-hydrated conditions was examined in terms of the binary phase diagram constructed by differential scanning calorimetry. The phase diagrams were analyzed based on thermodynamic equations derived by evaluating the excess free energy of mixing within a framework of the Bragg-Williams approximation, and the non-ideality parameter of mixing, Po, was estimated for various phases of PG mixture. The P0 values obtained for hydrated liquid-crystalline and gel phases are larger than those obtained for non-hydrated liquid and solid phases, respectively. This demonstrates that the miscibility is poorer in hydrated lipid bilayer than in non-hydrated bulk lipid phase. The tendency in the variation of Po values with respect to the lipid phases is similar to that obtained previously for homologous diacylphosphatidylethanolamines (PE). However, the Po values for PG are smaller than the corresponding values for PE, which indicates a better miscibility of PG ,;pecies compared to PE species. According to an interpretation of the mixing behavior in terms of the difference in the pair-interaction energies between like-pair and mixed-pair formed in the mixture, this suggests that the inter-headgroup interaction acting in a PG mixture is stronger than that in a PE mixture.


๐Ÿ“œ SIMILAR VOLUMES


Miscibility of binary phospholipid mixtu
โœ Tohru Inoue; Yoshinori Nibu ๐Ÿ“‚ Article ๐Ÿ“… 1995 ๐Ÿ› Elsevier Science ๐ŸŒ English โš– 640 KB

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The miscibility of binary mixtures of phosphatidic acids (PA) with different acyl chain length (n = 14, 16 and 18) was examined in the absence of and presence of added water, based on phase diagrams constructed by DSC measurements. The solidus and liquidus curves obtained with unhydrated systems exh