WB
Title | Published in | Access level | OA Policy | Year | Views | Downloads | |
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Studying Stem Cell Biology in Intact and Whole-Body Regenerating Hydra by Flow Cytometry | Whole-Body Regeneration: Methods and Protocols | 2022 | 152 | 76 | |||
The transcription factor Zic4 promotes tentacle formation and prevents epithelial transdifferentiation in Hydra | Science Advances | 2022 | 132 | 155 | |||
Apical-to-basal graded ROS metabolism in intact Hydra leads to distinct levels of injury-induced ROS signaling in apical and basal regenerating tips | bioRxiv | 2022 | 51 | 60 | |||
Investigation of the role of HyBcl-2-l8 on cell death resistance in Hydra epithelial cells | 2022 | 199 | 33 | ||||
Cellular, Metabolic, and Developmental Dimensions of Whole-Body Regeneration in Hydra | Cold Spring Harbor Perspectives in Biology | 2021 | 323 | 380 | |||
Deficient autophagy in epithelial stem cells drives aging in the freshwater cnidarian Hydra | Development | 2020 | 383 | 323 | |||
Combining BrdU-Labeling to Detection of Neuronal Markers to Monitor Adult Neurogenesis in Hydra | Methods in Molecular Biology | 2020 | 576 | 274 | |||
Loss of neurogenesis in aging Hydra | Developmental Neurobiology | 2019 | 466 | 106 | |||
Generic and context-dependent gene modulations during Hydra whole body regeneration | 2019 | 522 | 226 | ||||
Impact of cycling cells and cell cycle regulation on Hydra regeneration | Developmental Biology | 2018 | 559 | 333 | |||
Non-developmental dimensions of adult regeneration in Hydra | International Journal of Developmental Biology | 2018 | 722 | 306 | |||
Hydra, a model system for deciphering the mechanisms of aging and resistance to aging | Conn's Handbook For Models On Human Aging | 2018 | 631 | 448 | |||
Deficient autophagy drives aging in Hydra | 2017 | 543 | 361 | ||||
Loss of neurogenesis in Hydra leads to compensatory regulation of neurogenic and neurotransmission genes in epithelial cells | Philosophical transactions - Royal Society. Biological sciences | 2016 | 665 | 219 | |||
Multi-functionality and plasticity characterize epithelial cells in Hydra | Tissue barriers | 2015 | 665 | 189 | |||
Robust G2 pausing of adult stem cells in Hydra | Differentiation | 2014 | 810 | 293 | |||
Injury-induced immune responses in Hydra | Seminars in immunology | 2014 | 765 | 605 | |||
Robust G2 pausing of adult stem cells in Hydra | World biomedical frontiers | 2014 | 596 | 137 | |||
Guidelines for the use and interpretation of assays for monitoring autophagy | Autophagy | 2012 | 1,117 | 5,340 | |||
Hydra, a versatile model to study the homeostatic and developmental functions of cell death | The International journal of developmental biology | 2012 | 859 | 711 | |||
Autophagy in Hydra: a response to starvation and stress in early animal evolution | Biochimica et biophysica acta | 2009 | 660 | 384 | |||
Apoptotic cells provide an unexpected source of Wnt3 signaling to drive hydra head regeneration | Developmental cell | 2009 | 712 | 0 | |||
Methods to investigate autophagy during starvation and regeneration in hydra | Methods in enzymology | 2008 | 988 | 830 |