Ordering and stability in lipid droplets with applications to low-density lipoproteins

Jarrett L. Lancaster, Todor Antonijevic, and Joseph M. Starobin
Phys. Rev. E 89, 062708 – Published 20 June 2014

Abstract

In this article, we present a framework for investigating the order-disorder transition in lipid droplets using the standard Ising model. While a single lipid droplet is itself a complex system whose constituent cholesteryl esters each possesses many degrees of freedom, we present justification for using this effective approach to isolate the underlying physics. It is argued that the behavior of the esters confined within lipid droplets is significantly different from that of a bulk system of similar esters, which is adequately described by continuum mean-field theory in the thermodynamic limit. When the droplet's shell is modeled as an elastic membrane, a simple picture emerges for a transition between two ordered phases within the core which is tuned by the strength of interactions between the esters. Triglyceride concentration is proposed as a variable which strongly influences the strength of interactions between cholesteryl esters within droplets. The possible relevance of this mechanism to the well known atherogenic nature of small low-density lipoprotein particles is discussed in detail.

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  • Received 3 January 2014
  • Revised 29 April 2014

DOI:https://doi.org/10.1103/PhysRevE.89.062708

©2014 American Physical Society

Authors & Affiliations

Jarrett L. Lancaster, Todor Antonijevic, and Joseph M. Starobin

  • Department of Nanoscience, Joint School of Nanoscience and Nanoengineering, University of North Carolina at Greensboro, 2907 E. Lee Street, Greensboro, North Carolina 27401, USA

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Issue

Vol. 89, Iss. 6 — June 2014

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