JoVE Logo

Sign In

ConceptExperiment

A subscription to JoVE is required to view this content.

Measuring Protein Expression in the Rodent Brain Using Near-Infrared Fluorescence and High-Resolution Scanning

-- views • 1:30 min

Transcript

Take a glass slide containing rat brain tissue sections immunostained for AMPA and NMDA receptors in amygdala neurons.

AMPA receptors mediate glutamate-induced sodium influx and fast excitatory synaptic transmission. 

In contrast, NMDA receptors mediate glutamate and co-agonist-induced sodium and calcium influx, facilitating slow excitatory synaptic transmission.

The receptors are stained with primary antibodies and detected using near-infrared fluorophore-tagged secondary antibodies.

Place the slide tissue-side down on the near-infrared scanning interface.

Adjust the imaging parameters and begin imaging.

Upon laser illumination, the fluorophores on the AMPA and NMDA receptors emit fluorescence.

Near-infrared imaging minimizes autofluorescence, enhancing signal clarity.

High-resolution scanning further ensures clear differentiation of fluorescence signals, enabling precise visualization of nearby AMPA and NMDA receptors in the amygdala.

Using imaging software, calculate the AMPA/NMDA fluorescence intensity ratio in a specific region of interest as a marker of learning and memory.

article

01:32

Measuring Protein Expression in the Rodent Brain Using Near-Infrared Fluorescence and High-Resolution Scanning

Related Videos

18 Views

article

13:50

بعد تضمين التعريف Immunogold من البروتينات متشابك في الثقافات شريحة الحصين

Related Videos

17.0K Views

article

07:43

التصور المناعى من الحصين العصبية آخر بعد المكانية التعلم في نموذج الفأر من الاضطرابات العصبية النمائية

Related Videos

11.2K Views

article

10:45

إعداد شرائح حادة من الحصين دورسال لتسجيل الخلية الكاملة وإعادة بناء الخلايا العصبية في Gyrus Dentate من الفئران الكبار

Related Videos

7.2K Views

JoVE Logo

Privacy

Terms of Use

Policies

Research

Education

ABOUT JoVE

Copyright © 2025 MyJoVE Corporation. All rights reserved