Literature DB >> 28612236

Using optogenetics to assess neuroendocrine modulation of heart rate in Drosophila melanogaster larvae.

Cole Malloy1, Jacob Sifers1,2, Angela Mikos1, Aya Samadi1,3, Aya Omar1, Christina Hermanns1, Robin L Cooper4.   

Abstract

The Drosophila melanogaster heart has become a principal model in which to study cardiac physiology and development. While the morphology of the heart in Drosophila and mammals is different, many of the molecular mechanisms that underlie heart development and function are similar and function can be assessed by similar physiological measurements, such as cardiac output, rate, and time in systole or diastole. Here, we have utilized an intact, optogenetic approach to assess the neural influence on heart rate in the third instar larvae. To simulate the release of modulators from the nervous system in response to environmental influences, we have directed expression of channel-rhodopsin variants to targeted neuronal populations to assess the role of these neural ensembles in directing release of modulators that may affect heart rate in vivo. Our observations show that the activation of targeted neurons, including cholinergic, dopaminergic, and serotonergic neurons, stimulate the release of cardioactive substances that increase heart rate after the initial activation at both room temperature and in a cold environment. This parallels previous studies suggesting these modulators play a crucial role in altering heart rate when applied to exposed hearts and adds to our understanding of chemical modulation of heart rate in intact Drosophila larvae.

Entities:  

Keywords:  Cardiac; Drosophila melanogaster; Heart rate; Modulators; Optogenetics

Mesh:

Substances:

Year:  2017        PMID: 28612236     DOI: 10.1007/s00359-017-1191-7

Source DB:  PubMed          Journal:  J Comp Physiol A Neuroethol Sens Neural Behav Physiol        ISSN: 0340-7594            Impact factor:   1.836


  47 in total

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Authors:  Josh S Titlow; Jordan Rice; Zana R Majeed; Emily Holsopple; Stephanie Biecker; Robin L Cooper
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5.  Studies of electrical activity of the peripheral components of the autonomic nervous system in chronic experiments.

Authors:  A D Nozdrachev; V A Bagaev
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6.  Analysis of various physiological salines for heart rate, CNS function, and synaptic transmission at neuromuscular junctions in Drosophila melanogaster larvae.

Authors:  Clara de Castro; Josh Titlow; Zana R Majeed; Robin L Cooper
Journal:  J Comp Physiol A Neuroethol Sens Neural Behav Physiol       Date:  2013-11-05       Impact factor: 1.836

7.  Modulatory effects on Drosophila larva hearts: room temperature, acute and chronic cold stress.

Authors:  Yue Chen Zhu; Emily Yocom; Jacob Sifers; Henry Uradu; Robin L Cooper
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10.  ROS-mediated activation of Drosophila larval nociceptor neurons by UVC irradiation.

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3.  The Effects of Chloride Flux on Drosophila Heart Rate.

Authors:  Catherine E Stanley; Alex S Mauss; Alexander Borst; Robin L Cooper
Journal:  Methods Protoc       Date:  2019-08-22

4.  Effect of Temperature on Heart Rate for Phaenicia sericata and Drosophila melanogaster with Altered Expression of the TrpA1 Receptors.

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6.  Hyperpolarization by activation of halorhodopsin results in enhanced synaptic transmission: Neuromuscular junction and CNS circuit.

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Review 7.  Optogenetic approaches for understanding homeostatic and degenerative processes in Drosophila.

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  7 in total

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