Cell Junctions

Cell junctions are specialized structures that connect neighboring cells or anchor cells to the extracellular matrix, organizing tissues and enabling coordinated behavior. Their mechanisms vary: tight junction proteins seal spaces between cells, adhesion complexes link cadherins to actin or intermediate filaments, and gap junction channels permit ions and small molecules to pass directly between cytoplasms. In biology, studying cell junctions helps explain epithelial barriers, tissue architecture, mechanical strength, and intercellular communication, while junction defects can contribute to inflammation, developmental abnormalities, and cancer. These structures are therefore important targets for investigating disease, tissue repair, and the regulation of multicellular organization.

Cell Junctions - Related Videos

Education

JoVE Core - Cell Biology

Overview of Cell-Cell Junctions

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2023

The complex three-dimensional arrangement of cells in any multicellular organism is defined and maintained by interactions of cells with each other and the extracellular matrix. Cell-cell junctions are specialized structures where the multi-protein complexes on one cell interact with the multi-protein complexes on another cell. These cell junctions are classified into three main types based on their function — occluding, anchoring, and gap junctions. Occluding or Tight Junctions Tight...

Education

JoVE Core - Anatomy and Physiology
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Overview of Cell-Cell Junctions

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2025

The complex three-dimensional arrangement of cells in any multicellular organism is defined and maintained by interactions of cells with each other and the extracellular matrix. Cell-cell junctions are specialized structures where the multi-protein complexes on one cell interact with the multi-protein complexes on another cell. These cell junctions are classified into three main types based on their function — occluding, anchoring, and gap junctions. Occluding or Tight Junctions Tight...

Research

JoVE Journal - Neuroscience

Sequential Photo-bleaching to Delineate Single Schwann Cells at the Neuromuscular Junction

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Cited by 10 •

2013

Visualizing individual cells in densely packed tissues, such as terminal Schwann cells (SCs) at neuromuscular junctions (NMJs), is challenging. "Sequential photo-bleaching" allows delineating single terminal SCs, for instance in the triangularis sterni muscle explant, a convenient nerve-muscle preparation, where sequential bleaching can be combined with time-lapse imaging and post-hoc immunostainings.

Junction Potentials in Galvanic Cells

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2026

The Nernst equation, derived under the assumption of thermodynamic equilibrium, calculates the electromotive force (emf) as the sum of potential differences at phase boundaries in a reversible cell without a liquid junction. However, in irreversible cells such as the Daniell cell, an additional potential difference named the liquid-junction potential (EJ) arises across the interface of two electrolyte solutions due to different ion diffusion rates. This EJ represents the potential difference...

Fluorescence Localization of Tight Junction Proteins and Stress Fibers in Endothelial Cells

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2025

Source: Alluri, H., et al. Oxygen-Glucose Deprivation and Reoxygenation as an In Vitro Ischemia-Reperfusion Injury Model for Studying Blood-Brain Barrier Dysfunction. J. Vis. Exp. (2015).The video demonstrates the fluorescent localization of tight junction proteins and stress fibers in rat brain microvascular endothelial cells (RBMECs). In the stressed monolayer, fluorescently labeled antibodies are used to tag the tight junction proteins, while fluorophore-tagged phalloidin labels the stress...

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