| The Wnt/β-catenin/TCF/Sp5/Zic4 Gene Network That Regulates Head Organizer Activity in Hydra Is Differentially Regulated in Epidermis and Gastrodermis | Biomedicines |  | | 2024 | 107 | 164 |
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| The transcription factor Zic4 promotes tentacle formation and prevents epithelial transdifferentiation in Hydra | Science advances |  | | 2022 | 154 | 286 |
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| The ULK1 kinase, a necessary component of the pro-regenerative and anti-aging machinery in Hydra | Mechanisms of Ageing and Development |  | | 2021 | 425 | 314 |
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| Combining BrdU-Labeling to Detection of Neuronal Markers to Monitor Adult Neurogenesis in Hydra | Methods in Molecular Biology |  | | 2020 | 634 | 404 |
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| The polymorphism of Hydra microsatellite sequences provides strain-specific signatures | PLOS ONE |  | | 2020 | 282 | 199 |
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| The polymorphism of Hydra microsatellite sequences provides strain-specific signatures | BioRxiv |  | | 2020 | 563 | 214 |
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| Loss of neurogenesis in aging Hydra | Developmental Neurobiology |  | | 2019 | 489 | 131 |
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| An evolutionarily-conserved Wnt3/β-catenin/Sp5 feedback loop restricts head organizer activity in Hydra | Nature Communications |  | | 2019 | 597 | 382 |
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| Generic and context-dependent gene modulations during Hydra whole body regeneration | |  | | 2019 | 540 | 252 |
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| Analysis of candidate genes potentially supporting the putative plasticity of epithelial cells in Hydra | |  | | 2014 | 276 | 6 |
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