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PMID: 1060080 Published · ppublish English Journal Article Research Support, U.S. Gov't, P.H.S.

A theory of the chain melting phase transition of aqueous phospholipid dispersions.

Jacobs RE, Hudson B, Andersen HC

Abstract

A model for the chain melting phase transition in dilute aqueous phospholipid bilayer dispersions is presented. This model includes interactions between head groups, between hydrocarbon chains, and within the chains. The head groups are modeled as hard disks which are constrained to lie on a two-dimensional surface separating the aqueous and hydrocarbon regions. The chain statistics problem is treated in an approximate manner using an approach motivated by scaled particle theory to describe the inter-chain steric repulsions in a mathematically tractable way. In this approach the whole system interacts with any given chain through an average lateral pressure which is proportional to the hard disk pressure. Following Nagle, we assume that the steric repulsions between chains and between head groups and the trans-gauche rotation energies are the dominant interactions in determining the transition and we describe the effect of the other interactions with a mean field approximation. Using the known transition temperature of a series of 1,2-diacyl phosphatidyl cholines to adjust two parameters in the theory, the model gives enthalpy and area changes that are in quite reasonable agreement with experiment. Moreover, the curvature observed in the plot of the transition temperature against acyl chain length is reproduced.

MeSH Terms
Binding Sites Calorimetry Mathematics Membranes, Artificial Models, Biological Molecular Conformation Phospholipids Structure-Activity Relationship Temperature Thermodynamics
Chemicals
Membranes, Artificial Phospholipids
Authors & Affiliations
3 authors, click to expand affiliations / ORCID
Jacobs R E
Hudson B
Andersen H C
References (11)
11 references, click to expand
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Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
1975-10-00
Pages
3993-7
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC433124
Subset
IM
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