1 citations
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October 2019 in “International Journal of Dermatology and Venereology” This review discusses the role of zebrafish as a model for studying human hereditary pigmentary disorders and reports no new experimental results, emphasizing their genetic similarities and the genetic tools available.
3 citations
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March 2022 in “The journal of investigative dermatology/Journal of investigative dermatology” This review explores the advantages and limitations of using zebrafish models to study various skin diseases, but reports no new experimental results.
February 2020 in “Biophysical journal” This study confirms that zebrafish engineered with Cantú Syndrome mutations in ABCC9 and KCNJ8 genes exhibit gain-of-function characteristics in their cardiovascular KATP channels, similar to mammalian counterparts.
January 2019 in “Spectrum Research Repository (Concordia University)” This study observed that topiramate treatment in female zebrafish may impair genetic transmission to offspring, reducing expression of certain skeletal development-related genes in embryos.
In this study, researchers observed that during zebrafish fin regeneration, osteoblast Erk activity, influenced by Fgf receptor signaling, forms gradients scaling with amputation length, which predicts regenerative tissue growth and skeletal structure size.
5 citations
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February 2019 in “Journal of oceanology and limnology (Online)” This study found that adding 7% Ecklonia cava extract to oxidative hair dyes significantly reduced their cytotoxicity and oxidative stress without affecting color performance.
2 citations
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September 2022 In this study, researchers found that a PER3 gene SNP may be pathogenic for a new subtype of dyschromatosis universalis hereditaria, especially when combined with a SASH1 mutation.
November 2022 in “Journal of Investigative Dermatology” This study identified 15 Iranian patients with PLEC variants linked to various plectinopathies and highlighted a novel association between a homozygous nonsense variant in PLEC and a rare combination of disorders including EB pruriginosa, muscular dystrophy, and congenital myasthenic syndrome.
January 2026 in “RSC Advances” This study used a zebrafish model and advanced mass spectrometry to identify 11 metabolites of epristeride, revealing significant effects on purine metabolism and aromatic amino acid biosynthesis, which may aid in developing anti-doping detection methods.
114 citations
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March 2010 in “Zebrafish” This review discusses the use of the zebrafish lateral line system as a model to study hair cell loss, protection, and regeneration, with potential implications for human hearing research.
34 citations
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February 2015 in “Frontiers in Cellular Neuroscience” This study identified new genes and compounds affecting hair cell survival during ototoxin exposure using the zebrafish model, potentially aiding in understanding and preventing hearing loss and balance disorders in humans.
21 citations
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June 2016 in “PloS one” This study found that MYC and FGF pathways are crucial for hair cell regeneration in chick and zebrafish models, suggesting potential targets for promoting hair cell regeneration in mammals.
4 citations
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December 2022 in “Frontiers in cell and developmental biology” This review discusses the use of zebrafish larvae as an alternative model for studying ototoxicity, facilitating large-scale screening for otoprotective compounds, but reports no new clinical results.
19 citations
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January 2013 in “Frontiers in Neuroanatomy” This study demonstrates a method using intravital imaging to observe sensory hair-cell development and regeneration in zebrafish, which may facilitate assays for drug discovery related to aural function preservation.
44 citations
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March 2016 in “Frontiers in cellular neuroscience” In this study using zebrafish, four bisbenzylisoquinoline derivatives were found to protect hair cells from aminoglycoside-induced damage without reducing antibiotic efficacy, potentially leading to therapies for patients undergoing such treatments.
8 citations
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April 2021 in “Journal of Clinical Investigation” Finasteride reduces opioid use and withdrawal symptoms in animals.
5 citations
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November 2024 in “Cells” This review highlighted that in an in vitro setting, 3D spheroid cultures of fish cells offer a promising alternative to traditional monolayer cultures, potentially advancing research in eco-toxicology, immunology, drug screening, and more by better mimicking in vivo conditions.
December 2025 in “Drug Discovery and Molecular Docking (DDMD)” This review highlights how single-cell transcriptomics has advanced understanding of tissue regeneration by revealing cellular diversity and key molecular interactions in animal models, despite methodological challenges, suggesting future applications in developing targeted regenerative therapies.
May 2021 in “The journal of investigative dermatology/Journal of investigative dermatology” This research discusses a zebrafish model showing that nicastrin deficiency leads to tyrosinase-dependent depigmentation and melanophore cell death, suggesting implications for studying skin depigmentation disorders.
October 2022 in “Frontiers in Endocrinology” This review discusses recent advancements in omics and gene editing technologies for studying neuropeptides and receptors in fish, but reports no new experimental findings; the authors highlight the need for further research in this area.
October 2024 in “Developmental Dynamics” This paper highlights advances in Developmental Dynamics, noting how epoa-deficient zebrafish can model Diamond-Blackfan anemia like disorders for drug screening, Alx4 mouse models offer insights into craniofacial development, and mTORC1 signaling is crucial for retinal development.
23 citations
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November 2018 in “npj Regenerative Medicine” This review discusses the similarities and differences in wound healing between non-sterile skin wounds and ischemic injuries to internal organs, emphasizing regenerative capabilities observed in zebrafish models, with no new clinical results reported.
September 2020 in “bioRxiv (Cold Spring Harbor Laboratory)” This study found that finasteride reduced opioid self-administration in zebrafish and rats without affecting pain relief, suggesting steroidogenic pathways may offer new treatment avenues for opioid use disorder.
19 citations
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November 2022 in “Antioxidants” In this study, ginger peel polysaccharides modified with zinc reduced inflammation in zebrafish by altering cytokine expression, suggesting potential for treating chronic inflammation-related diseases.
1 citations
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January 2025 in “Regenerative Biomaterials” In this study, researchers found that exosomes derived from Pinctada martensii mucus can effectively inhibit melanin production in melanoma cells and zebrafish without adverse effects, potentially offering a promising therapeutic strategy for treating pigmentary disorders by modulating the NF-κB signaling pathway.
This study found that Ca²⁺ signaling and peptidylarginine deiminase enzymes play a crucial role in activating neural stem cells in response to injury in zebrafish, suggesting potential therapeutic targets for CNS injuries and cancer.
December 2025 in “Cell Communication and Signaling” This study discovered that minoxidil affects hematopoiesis by downregulating wnt4, leading to suppression of hematopoietic stem and progenitor cells and alleviating MDS-like symptoms in zebrafish and mice, with hematologic safety achieved at optimized doses.
6 citations
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September 2022 in “Frontiers in pharmacology” In this study, Epimedii Folium extract was found to enhance melanin production and promote pigmentation through mechanisms involving the MAPK/ERK1/2 pathway in both in vitro and in vivo models.
February 2026 in “ACS Applied Materials & Interfaces” This study developed a novel treatment method using carbon dots from Cinnamomum burmannii leaves, which improved hair regeneration and thickness in an AGA mouse model by promoting cell proliferation, angiogenesis, and reducing inflammation through multiple signaling pathways.
7 citations
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May 2023 in “Nanomaterials” In this study on Danio rerio, researchers found that exposure to titanium dioxide nanoparticles did not affect embryonic development but altered the structure of male gonads, acting as potential endocrine disruptors with androgenic activity.