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Open AccessJournal ArticleDOI

Dynamics in the plasma membrane: how to combine fluidity and order

TLDR
The basic concepts of Brownian diffusion and lipid domain formation in model membranes are summarized and the development of ideas and tools in this field are tracked, outlining key results obtained on the dynamic processes at work in membrane structure and assembly.
Abstract
Cell membranes are fascinating supramolecular aggregates that not only form a barrier between compartments but also harbor many chemical reactions essential to the existence and functioning of a cell. Here, it is proposed to review the molecular dynamics and mosaic organization of the plasma membrane, which are thought to have important functional implications. We will first summarize the basic concepts of Brownian diffusion and lipid domain formation in model membranes and then track the development of ideas and tools in this field, outlining key results obtained on the dynamic processes at work in membrane structure and assembly. We will focus in particular on findings made using fluorescent labeling and imaging procedures to record these dynamic processes. We will also discuss a few examples showing the impact of lateral diffusion on cell signal transduction, and outline some future methodological challenges which must be met before we can answer some of the questions arising in this field of research.

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Book ChapterDOI

2.8 Super-Resolution Near-Field Optical Microscopy

TL;DR: In this paper, the intrinsic advantages of near-field optics in the study of cellular structures are highlighted, and further directions of near field optics, including optical antennas and fluorescence correlation spectroscopy approaches in the near field regime.

The role of filopodia in the formation of spine synapses

TL;DR: The role of axonal pathfinding in synapse formation and Mechanisms and regulation of palmitoylation-dependent protein sorting in filopodia induction and spine maturation are studied.
Journal ArticleDOI

Micropatterning of functional lipid bilayer assays for quantitative bioanalysis.

R C K Montalbo, +1 more
- 01 May 2023 - 
TL;DR: An overview of the current methods of the lipid membrane patterning is presented in this paper , where fabrication and pattern characteristics are briefly described to present an idea of the quality and notable features of the methods, their utilizations for quantitative bioanalysis, as well as to highlight possible directions for the advanced micropatterning lipid membrane assays.
Book ChapterDOI

Dynamic Partitioning of Tetraspanins Within Plasma Membranes

TL;DR: In this paper, the concept of tetraspanin-enriched microdomains has been revisited in recent studies that shed new light on TSPanin dynamics and interactions.
References
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Journal ArticleDOI

The fluid mosaic model of the structure of cell membranes.

TL;DR: Results strongly indicate that the bivalent antibodies produce an aggregation of the surface immunoglobulin molecules in the plane of the membrane, which can occur only if the immunoglOBulin molecules are free to diffuse in the membrane.
Journal ArticleDOI

Quantum Dots for Live Cells, in Vivo Imaging, and Diagnostics

TL;DR: The new generations of qdots have far-reaching potential for the study of intracellular processes at the single-molecule level, high-resolution cellular imaging, long-term in vivo observation of cell trafficking, tumor targeting, and diagnostics.
Journal ArticleDOI

Quantum dot bioconjugates for imaging, labelling and sensing

TL;DR: This review looks at current methods for preparing QD bioconjugates as well as presenting an overview of applications, and concludes that the potential of QDs in biology has just begun to be realized and new avenues will arise as the ability to manipulate these materials improves.
Book

Random walks in biology

TL;DR: This book is a lucid, straightforward introduction to the concepts and techniques of statistical physics that students of biology, biochemistry, and biophysics must know.
Journal ArticleDOI

A guide to choosing fluorescent proteins.

TL;DR: A unified characterization of the best available FPs provides a useful guide in narrowing down the options for biological imaging tools.
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