Neuronal Attachment Enhancement

Neuronal attachment enhancement refers to strategies that improve the adhesion, survival, and spatial stability of neurons on laboratory culture surfaces, supporting reliable investigation of neural cells. These strategies commonly modify substrates with extracellular matrix proteins, such as laminin or poly-D-lysine, which promote cell-surface interactions and integrin-mediated signaling that anchor neurites and cell bodies. Improved attachment helps maintain neuronal morphology, network formation, and experimental consistency in cultures used for neuroscience research. The approach supports studies of neurite outgrowth, synaptic development, neurotoxicity, and neural tissue engineering, while enabling more reproducible imaging, electrophysiology, and cell-based assays.

Neuronal Attachment Enhancement - Related Videos

Research

JoVE Journal - Neuroscience

An Approach to Enhance Alignment and Myelination of Dorsal Root Ganglion Neurons

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Cited by 7 •

2016

This protocol describes the isolation of dorsal root ganglion (DRG) neurons isolated from rats and the culture of DRG neurons on a static pre-stretched cell culture system to enhance axon alignment, with subsequent co-culture of Schwann Cells (SCs) to promote myelination.

Microscopy-Based Evaluation of Bacterial Attachment to Plant Root Surfaces

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2026

Source: Matthysse, A. G. Adherence of Bacteria to Plant Surfaces Measured in the Laboratory. J. Vis. Exp. (2018).This video demonstrates the evaluation of bacterial attachment to plant roots using phase-contrast microscopy. Root samples from seedlings incubated with bacteria are first mounted to check for free bacteria. The samples are then washed to remove loosely attached bacteria and remounted using a suitable coverslip to prevent damage. Finally, the number of bacteria attached to the root...

Education

JoVE Core - Introduction to Psychology

Attachment

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2025

Attachment is vital for infant development, as warm social interactions support growth and well-being. In a classic 1958 study by Harry Harlow, the significance of warmth and comfort in forming attachments was examined. Harlow separated newborn monkeys from their mothers and provided two artificial "mothers": one made of cold wire and the other covered in soft cloth. Despite the wire mother offering food, the infant monkeys preferred the comfort of the cloth mother, demonstrating that physical...

High-Frequency Stimulation to Enhance Neuronal Activation and Neurogenesis in the Mouse Dentate Gyrus

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2025

Source: Zhao, Z. et al. An Invasive Method for the Activation of the Mouse Dentate Gyrus by High-frequency Stimulation. J. Vis. Exp. (2018)This video demonstrates the protocol for delivering high-frequency deep brain stimulation to a mouse hippocampal dentate gyrus, detailing its effects on neuronal activation, synaptic plasticity, and neurogenesis.

Research

JoVE Journal - Neuroscience
Free Sample

Targeting Olfactory Bulb Neurons Using Combined In Vivo Electroporation and Gal4-Based Enhancer Trap Zebrafish Lines

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Cited by 8 •

2011

The temporal and spatial resolution of genetic manipulations determines the spectrum of biological phenomena that they can perturb. Here we use temporally and spatially discrete in vivo electroporation, combined with transgenic lines of zebrafish, to induce expression of a GFP transgene specifically in neurons of the developing olfactory bulb.

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