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Interplay Between Long-Range And Short-Range Interactions In Polymer Self-Assembly And Cell Adhesion

TLDR
In this paper, reversible gelation of associating polymers and ligand-receptor interactions in membrane adhesion was studied, and the energy barrier of the adhesion as a result of membrane bending deformations and the double-well adhesion potential was calculated.
Abstract
Interplay between long-range and short-range interactions is a common theme in soft and biological matter, which results in complicated self-assembly behaviors. We study two examples of this interplay: reversible gelation of associating polymers and ligand-receptor interactions in membrane adhesion. In associating polymer solutions, the competition between the conformation flexibility of polymer chains and the enthalpic monomer interactions results in phase-separated micro-structures at the mesoscopic scale; both gelation and the microphase order-disorder transition are manifestations of this self-assembly. We further establish that reversible gelation is similar to the glass transition: both are characterized by ergodicity breaking, aperiodic micro-structures, and non-equilibrium relaxations over a finite temperature range. In the study of ligand-receptor interactions between surfaces, we emphasize the interplay between specific ligand-receptor binding, and generic physical interactions. We find that both the finite spatial extension of receptors and their mobilities affect their binding affinity. As a special case of the interplay between receptor binding and generic interactions, we study the dynamics of membrane adhesion that is mediated by receptor binding but fulfilled through membrane deformations. We calculate the energy barrier of the adhesion as a result of membrane bending deformations and the double-well adhesion potential, and analyze the different scenarios according to the shape of the adhesion potential by scaling arguments.

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Unifying Weak- and Strong-Segregation Block Copolymer Theories

TL;DR: In this paper, a mean-field phase diagram for conformationally symmetric diblock melts using the standard Gaussian polymer model is presented, which traverses the weak- to strong-segregation regimes, is free of traditional approximations.
Posted Content

Reply to Comment on "Stripe glasses: self generated randomness in a uniformly frustrated system"

TL;DR: It is shown that a system with competing interactions on different length scales, relevant to the formation of stripes in doped Mott insulators, undergoes a self-generated glass transition which is caused by the frustrated nature of the interactions and not related to the presence of quenched disorder.
Journal ArticleDOI

Physics of Biological Systems, From Molecules to Species

TL;DR: In this paper, eine Einfiihrung in einige aktuelle Forschungsaspekte aus dem Bereich der Biophysik zu geben is discussed.
Journal Article

Cell Adhesion as Dynamic Interplay of Lock-and-Key, Generic and Elastic Forces(Physics of Non-Equilibrium Systems: Self-Organized Structures and Dynamics Far from Equilibrium)

TL;DR: The selectivity of cell-cell and cell-tissue adhesion is determined by specific short range forces between cell surface proteins, which function as constraint reaction spaces facilitating the local assembly of actin stress fibers and control cell signalling processes.
References
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Journal ArticleDOI

Fluctuation analysis of tension-controlled undulation forces between giant vesicles and solid substrates.

TL;DR: Using reflection interference contrast microscopy, the thermal fluctuations of giant vesicles that weakly adhere to flat solid substrates were studied in this article, where the absolute membrane-substrate separation distance was imaged and the average contact contour, including the contact area, the contact rounding, and the asymptotic contact angle, was determined.
Journal ArticleDOI

Thermoreversible Gelation with Junctions of Variable Multiplicity

TL;DR: In this article, a molecular theory for the thermodynamic properties of reversible gels whose junctions are formed by clustering of an arbitrary number of associating groups, or segments, on the constituent molecules (or primary chains for polymeric gels).
Journal ArticleDOI

Domains in membranes and vesicles

TL;DR: Preliminary experimental results for vesicle membranes composed of phospholipid, sphingomyelin and cholesterol are presented, which show that budding always occurs in the low tension regime.
Posted Content

Reply to Comment on "Stripe glasses: self generated randomness in a uniformly frustrated system"

TL;DR: It is shown that a system with competing interactions on different length scales, relevant to the formation of stripes in doped Mott insulators, undergoes a self-generated glass transition which is caused by the frustrated nature of the interactions and not related to the presence of quenched disorder.
Journal ArticleDOI

Kinetics of metastable states in block copolymer melts

TL;DR: In this article, a theory is presented to describe the nucleation and subsequent growth of weakly inhomogeneous lamellar phases from a supercooled disordered phase, and the authors find unusually small nucleation barriers and critically slowed growth kinetics.
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