Interaction of conical membrane inclusions: Effect of lateral tension
- 1 June 1998
- journal article
- research article
- Published by American Physical Society (APS) in Physical Review E
- Vol. 57 (6) , 6988-6995
- https://doi.org/10.1103/physreve.57.6988
Abstract
Considering two rigid conical inclusions embedded in a membrane subject to lateral tension, we study the membrane-mediated interaction between these inclusions that originates from the hat-shaped membrane deformations associated with the cones. At nonvanishing lateral tensions, the interaction is found to depend on the orientation of the cones with respect to the membrane plane. The interaction of inclusions of equal orientation is repulsive at all distances between them, while the inclusions of opposite orientation repel each other at small separations, but attract each other at larger ones. Both the repulsive and attractive forces become stronger with increasing lateral tension. This is different from what has been predicted on the basis of the same static model for the case of vanishing lateral tension. Without tension, the inclusions repel each other at all distances independently of their relative orientation. We conclude that lateral tension may induce the aggregation of conical membrane inclusions.Keywords
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This publication has 8 references indexed in Scilit:
- Inclusions in membranesCurrent Opinion in Colloid & Interface Science, 1996
- Protein aggregation in membranesCurrent Opinion in Solid State and Materials Science, 1996
- Fluctuation-induced interactions between rods on membranes and interfacesEurophysics Letters, 1996
- Inhomogeneous fluid membranes: Segregation, ordering, and effective rigidityPhysical Review E, 1995
- Long-Range Forces in Heterogeneous Fluid MembranesEurophysics Letters, 1993
- Long-Range Forces in Heterogeneous Fluid MembranesEurophysics Letters, 1993
- Physical properties of surfactant bilayer membranes: thermal transitions, elasticity, rigidity, cohesion and colloidal interactionsThe Journal of Physical Chemistry, 1987
- Elastic Properties of Lipid Bilayers: Theory and Possible ExperimentsZeitschrift für Naturforschung C, 1973