JoVE Logo

S'identifier

ConceptExperiment

Vous avez un accès complet à ce contenu via

Nanyang Technological University

Bioluminescence Imaging for Studying Calcium Transients in Drosophila Brain Structures

-- views • 1:23 min

Transcription

Secure an immobilized transgenic Drosophila with its head exposed in a recording chamber on a fluorescence microscope stage.

The fly’s mushroom body comprises neurons expressing calcium-sensitive bioluminescent fusion protein, which is activated by a preloaded cofactor.

Connect a perfusion tube to the chamber. Locate the fluorescent mushroom bodies, focusing on the calyx and medial lobes. Confirm drainage with buffer. 

Set imaging parameters and focus on the calyx and medial lobes. In the dark, acquire baseline fluorescence images of the mushroom bodies prior to stimulant exposure.

Perfuse nicotine in calcium-containing buffer to activate nicotinic acetylcholine receptors, triggering calcium influx and bioluminescent light emission.

Wash with buffer to restore baseline conditions. 

Perfuse potassium chloride to depolarize neurons, triggering intracellular calcium release and bioluminescent signal emission. 

Wash with buffer to restore baseline conditions. 

Analyze images to assess spatial and temporal calcium activity in the calyx and medial lobes.

article

02:31

Bioluminescence Imaging for Studying Calcium Transients in Drosophila Brain Structures

Vidéos Associées

15 Views

article

13:24

Fluorescence et bioluminescence imagerie des Subcellular Ca

Vidéos Associées

8.3K Views

article

06:49

Ex Vivo Imagerie calcique pour visualiser le cerveau réponses à signalisation endocrinienne chez la drosophile

Vidéos Associées

9.2K Views

article

08:51

En imagerie calcique Vivo des cellules ciliées ligne latérale chez le poisson zèbre larvaire

Vidéos Associées

11.4K Views

JoVE Logo

Confidentialité

Conditions d'utilisation

Politiques

Recherche

Enseignement

À PROPOS DE JoVE

Copyright © 2025 MyJoVE Corporation. Tous droits réservés.