PUBLICATION

An EGFP Knock-in Zebrafish Experimental Model Used in Evaluation of the Amantadine Drug Safety During Early Cardiogenesis

Authors
Ouyang, S., Qin, W.M., Niu, Y.J., Ding, Y.H., Deng, Y.
ID
ZDB-PUB-220423-5
Date
2022
Source
Frontiers in cardiovascular medicine   9: 839166 (Journal)
Registered Authors
Deng, Yun, Ding, Yonghe
Keywords
amantadine drug, cardiac development, congenital heart disease (CHD), vmhc, zebrafish model
MeSH Terms
none
PubMed
35449877 Full text @ Front Cardiovasc Med
Abstract
Drug exposure during gestation or in prematurely born children represents a significant risk to congenital heart disease (CHD). Amantadine is an antiviral agent also effective in the treatment of Parkinson's disease. However, while its potential side effects associated with tetralogy of fallot (ToF) and birth defects were implicated, its underlying etiologic mechanisms of action remain unknown. Here, we report teratogenic effects of amantadine drug during early cardiogenesis through developing a novel zebrafish (Danio rerio) knock-in (KI) animal model and explore the underlying mechanisms.
Homologous recombination (HR) pathway triggered by CRISPR/Cas9 system was utilized to generate an enhanced green fluorescent protein (EGFP) KI zebrafish animal model. Dynamic fluorescence imaging coupled with a whole-mount in-situ hybridization (WISH) assay was employed to compare the spatial and temporal expression patterns of the EGFP reporter in the KI animal model with the KI-targeted endogenous gene. Heart morphology and EGFP expression dynamics in the KI animal models were monitored to assess cardiac side effects of different doses of amantadine hydrochloride. Expression of key genes required for myocardium differentiation and left-right (LR) asymmetry was analyzed using WISH and quantitative reverse transcription-PCR (RT-PCR).
A novel EGFP KI line targeted at the ventricular myosin heavy chain (vmhc) gene locus was successfully generated, in which EGFP reporter could faithfully recapitulate the endogenous expression dynamics of the ventricle chamber-specific expression of the vmhc gene. Amantadine drug treatment-induced ectopic expression of vmhc gene in the atrium and caused cardiac-looping or LR asymmetry defects to dose-dependently during early cardiogenesis, concomitant with dramatically reduced expression levels of key genes required for myocardium differentiation and LR asymmetry.
We generated a novel zebrafish KI animal model in which EGFP reports the ventricle chamber-specific expression of vmhc gene dynamics that is useful to effectively assess drug safety on the cardiac morphology in vivo. Specifically, this study identified teratogenic effects of amantadine drug during early cardiogenesis dose dependent, which could be likely conveyed by inhibiting expression of key genes required for cardiac myocardium differentiation and LR asymmetry.
Genes / Markers
Figures
Figure Gallery (4 images)
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Expression
Phenotype
Fish Conditions Stage Phenotype Figure
myh7hn2Tg/hn2Tgchemical treatment by environment: amantadine, chemical treatment by environment: paracetamol5-9 somites
myh7hn2Tg/hn2Tgchemical treatment by environment: amantadine, chemical treatment by environment: paracetamol5-9 somites
myh7hn2Tg/hn2Tgchemical treatment by environment: amantadine, chemical treatment by environment: paracetamol5-9 somites
myh7hn2Tg/hn2Tgchemical treatment by environment: amantadine, chemical treatment by environment: paracetamol5-9 somites
myh7hn2Tg/hn2Tgchemical treatment by environment: amantadine, chemical treatment by environment: paracetamol5-9 somites
myh7hn2Tg/hn2Tgchemical treatment by environment: amantadine, chemical treatment by environment: paracetamol5-9 somites
myh7hn2Tg/hn2Tgchemical treatment by environment: amantadine, chemical treatment by environment: paracetamol5-9 somites
myh7hn2Tg/hn2Tgchemical treatment by environment: amantadine, chemical treatment by environment: paracetamol5-9 somites
myh7hn2Tg/hn2Tgchemical treatment by environment: amantadine, chemical treatment by environment: paracetamol26+ somites
myh7hn2Tg/hn2Tgchemical treatment by environment: amantadine, chemical treatment by environment: paracetamol26+ somites
1 - 10 of 23
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Mutations / Transgenics
Allele Construct Type Affected Genomic Region
hn2TgTransgenic Insertion
1 - 1 of 1
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Human Disease / Model
No data available
Sequence Targeting Reagents
Target Reagent Reagent Type
myh7CRISPR4-myh7CRISPR
1 - 1 of 1
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Fish
1 - 1 of 1
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Antibodies
Name Type Antigen Genes Isotypes Host Organism
Ab1-myh7polyclonal
    IgGRabbit
    Ab13-tubbmonoclonal
      Mouse
      1 - 2 of 2
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      Orthology
      No data available
      Engineered Foreign Genes
      Marker Marker Type Name
      EGFPEFGEGFP
      1 - 1 of 1
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      Mapping
      No data available