Literature DB >> 33672636

Zebrafish Tools for Deciphering Habenular Network-Linked Mental Disorders.

Anja Bühler1, Matthias Carl1.   

Abstract

The prevalence of patients suffering from mental disorders is substantially increasing in recent years and represents a major burden to society. The underlying causes and neuronal circuits affected are complex and difficult to unravel. Frequent disorders such as depression, schizophrenia, autism, and bipolar disorder share links to the habenular neural circuit. This conserved neurotransmitter system relays cognitive information between different brain areas steering behaviors ranging from fear and anxiety to reward, sleep, and social behaviors. Advances in the field using the zebrafish model organism have uncovered major genetic mechanisms underlying the formation of the habenular neural circuit. Some of the identified genes involved in regulating Wnt/beta-catenin signaling have previously been suggested as risk genes of human mental disorders. Hence, these studies on habenular genetics contribute to a better understanding of brain diseases. We are here summarizing how the gained knowledge on the mechanisms underlying habenular neural circuit development can be used to introduce defined manipulations into the system to study the functional behavioral consequences. We further give an overview of existing behavior assays to address phenotypes related to mental disorders and critically discuss the power but also the limits of the zebrafish model for identifying suitable targets to develop therapies.

Entities:  

Keywords:  Wnt; asymmetry; behavior; compound; habenula; mental disorder; neurogenesis; pharmacology; zebrafish

Mesh:

Substances:

Year:  2021        PMID: 33672636      PMCID: PMC7924194          DOI: 10.3390/biom11020324

Source DB:  PubMed          Journal:  Biomolecules        ISSN: 2218-273X


  164 in total

1.  Local tissue interactions across the dorsal midline of the forebrain establish CNS laterality.

Authors:  Miguel L Concha; Claire Russell; Jennifer C Regan; Marcel Tawk; Samuel Sidi; Darren T Gilmour; Marika Kapsimali; Lauro Sumoy; Kim Goldstone; Enrique Amaya; David Kimelman; Teresa Nicolson; Stefan Gründer; Miranda Gomperts; Jonathan D W Clarke; Stephen W Wilson
Journal:  Neuron       Date:  2003-07-31       Impact factor: 17.173

2.  Measuring thigmotaxis in larval zebrafish.

Authors:  S J Schnörr; P J Steenbergen; M K Richardson; D L Champagne
Journal:  Behav Brain Res       Date:  2011-12-19       Impact factor: 3.332

3.  Development of the acoustically evoked behavioral response in zebrafish to pure tones.

Authors:  David G Zeddies; Richard R Fay
Journal:  J Exp Biol       Date:  2005-04       Impact factor: 3.312

Review 4.  Human studies of prepulse inhibition of startle: normal subjects, patient groups, and pharmacological studies.

Authors:  D L Braff; M A Geyer; N R Swerdlow
Journal:  Psychopharmacology (Berl)       Date:  2001-07       Impact factor: 4.530

5.  Distinct retinal pathways drive spatial orientation behaviors in zebrafish navigation.

Authors:  Harold A Burgess; Hannah Schoch; Michael Granato
Journal:  Curr Biol       Date:  2010-02-11       Impact factor: 10.834

6.  Buspirone, chlordiazepoxide and diazepam effects in a zebrafish model of anxiety.

Authors:  Zachary Bencan; Damiyon Sledge; Edward D Levin
Journal:  Pharmacol Biochem Behav       Date:  2009-07-28       Impact factor: 3.533

7.  Analyzing habituation responses to novelty in zebrafish (Danio rerio).

Authors:  Keith Wong; Marco Elegante; Brett Bartels; Salem Elkhayat; David Tien; Sudipta Roy; Jason Goodspeed; Chris Suciu; Julia Tan; Chelsea Grimes; Amanda Chung; Michael Rosenberg; Siddharth Gaikwad; Ashley Denmark; Andrew Jackson; Ferdous Kadri; Kyung Min Chung; Adam Stewart; Tom Gilder; Esther Beeson; Ivan Zapolsky; Nadine Wu; Jonathan Cachat; Allan V Kalueff
Journal:  Behav Brain Res       Date:  2009-12-23       Impact factor: 3.332

8.  Epidemiology of anxiety disorders in the 21st century.

Authors:  Borwin Bandelow; Sophie Michaelis
Journal:  Dialogues Clin Neurosci       Date:  2015-09       Impact factor: 5.986

9.  Chronic unpredictable stress (CUS)-induced anxiety and related mood disorders in a zebrafish model: altered brain proteome profile implicates mitochondrial dysfunction.

Authors:  Sumana Chakravarty; Bommana R Reddy; Sreesha R Sudhakar; Sandeep Saxena; Tapatee Das; Vuppalapaty Meghah; Cherukuvada V Brahmendra Swamy; Arvind Kumar; Mohammed M Idris
Journal:  PLoS One       Date:  2013-05-14       Impact factor: 3.240

10.  Fingerprinting of psychoactive drugs in zebrafish anxiety-like behaviors.

Authors:  Caio Maximino; Annanda Waneza Batista da Silva; Juliana Araújo; Monica Gomes Lima; Vanessa Miranda; Bruna Puty; Rancés Benzecry; Domingos Luiz Wanderley Picanço-Diniz; Amauri Gouveia; Karen Renata Matos Oliveira; Anderson Manoel Herculano
Journal:  PLoS One       Date:  2014-07-31       Impact factor: 3.240

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  5 in total

Review 1.  The Brilliance of the Zebrafish Model: Perception on Behavior and Alzheimer's Disease.

Authors:  Avinash Shenoy; Meheli Banerjee; Archana Upadhya; Siddhi Bagwe-Parab; Ginpreet Kaur
Journal:  Front Behav Neurosci       Date:  2022-06-13       Impact factor: 3.617

Review 2.  Synaptic dysfunction connects autism spectrum disorder and sleep disturbances: A perspective from studies in model organisms.

Authors:  Fusun Doldur-Balli; Toshihiro Imamura; Olivia J Veatch; Naihua N Gong; Diane C Lim; Michael P Hart; Ted Abel; Matthew S Kayser; Edward S Brodkin; Allan I Pack
Journal:  Sleep Med Rev       Date:  2022-01-25       Impact factor: 11.401

Review 3.  Role of Habenula in Social and Reproductive Behaviors in Fish: Comparison With Mammals.

Authors:  Satoshi Ogawa; Ishwar S Parhar
Journal:  Front Behav Neurosci       Date:  2022-02-10       Impact factor: 3.558

4.  Habenula bibliometrics: Thematic development and research fronts of a resurgent field.

Authors:  Sifan Chen; Xiaoyu Sun; Yizhe Zhang; Yu Mu; Diansan Su
Journal:  Front Integr Neurosci       Date:  2022-08-03

5.  Conserved and diverged asymmetric gene expression in the brain of teleosts.

Authors:  Carolina Agostini; Anja Bühler; Alessandra Antico Calderone; Narendar Aadepu; Cathrin Herder; Felix Loosli; Matthias Carl
Journal:  Front Cell Dev Biol       Date:  2022-09-21
  5 in total

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