Hippocampal Bdnf Levels

Hippocampal BDNF levels refer to the amount of brain-derived neurotrophic factor present in the hippocampus, a region essential for learning, memory, and stress-related behavior. Neuronal activity, environmental experiences, and stress can alter Bdnf gene expression and BDNF production; the resulting protein binds TrkB receptors to activate signaling pathways that support neuronal survival, dendritic growth, and synaptic plasticity. Measuring hippocampal BDNF levels helps researchers examine how exercise, stress, aging, drugs, and experimental interventions influence neural function and behavior. These measurements provide a molecular link between environmental or physiological conditions and changes in memory, emotional regulation, and behavioral adaptation.

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Research

JoVE Journal - Neuroscience

Organotypic Hippocampal Slice Cultures

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Cited by 52 •

2011

We describe a method to prepare organotypic hippocampal slices that can be easily adapted to other brain regions. Brain slices are laid on porous membranes and culture media is allowed to form an interface. This method preserves the gross architecture of the hippocampus for up to 2 weeks in culture.

Co-culturing of Ventral Hippocampal and Nucleus Accumbens

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2025

This video demonstrates the process of preparing ventral hippocampal and nucleus accumbens tissues from mouse brains for co-culture. Neurons extend projections to form synaptic connections between the ventral hippocampal and nucleus accumbens tissues. This method allows studying neuronal interactions between these two brain regions, offering insights into cognition, behavior, and neurological disorders.

Isolation and Expansion of Adult Canine Hippocampal Neural Precursors

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Cited by 3 •

2016

The canine brain is a valuable model in which to study adult neurogenesis. Presented here are protocols for isolating and expanding adult canine hippocampal neural precursor cells from primary brain tissue.

Optogenetic Control of Hippocampal Network Dynamics

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2025

This video demonstrates the method to use optogenetics to modulate hippocampal network dynamics by activating genetically modified light-sensitive interneurons in a mouse brain slice, enhancing theta oscillation synchronization and studying neural circuit behavior.

Dissociating and Culturing Neurons from Hippocampal Tissue Samples

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2025

This video demonstrates the dissociation and culture of hippocampal neurons from hippocampal tissue samples using enzymatic and mechanical dissociations. The treatment with Ara-C inhibits the growth of non-neuronal cells, facilitating the selective growth of hippocampal neurons.

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