Stella J Soyka

ORCID: 0000-0002-8070-8951
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About
Contact & Profiles
Research Areas
  • Erythrocyte Function and Pathophysiology
  • Neuroscience and Neuropharmacology Research
  • Neurogenesis and neuroplasticity mechanisms
  • RNA Research and Splicing
  • Single-cell and spatial transcriptomics
  • Cell Image Analysis Techniques
  • Caveolin-1 and cellular processes
  • Gene Regulatory Network Analysis
  • Lipid Membrane Structure and Behavior
  • Advanced Electron Microscopy Techniques and Applications

Heidelberg University
2023-2025

National Center for Tumor Diseases
2024

University Hospital Heidelberg
2024

Glioblastomas are invasive brain tumors with high therapeutic resistance. Neuron-to-glioma synapses have been shown to promote glioblastoma progression. However, a characterization of tumor-connected neurons has hampered by lack technologies. Here, we adapted retrograde tracing using rabies viruses investigate and manipulate neuron-tumor networks. Glioblastoma rapidly integrated into neural circuits across the brain, engaging in widespread functional communication, cholinergic driving...

10.1016/j.cell.2024.11.002 article EN cc-by Cell 2024-12-01

The axon initial segment (AIS) constitutes not only the site of action potential initiation, but also a hub for activity-dependent modulation output generation. Recent studies shedding light on AIS function used predominantly post-hoc approaches since no robust murine in vivo live reporters exist. Here, we introduce reporter line which is intrinsically labeled by an ankyrin-G-GFP fusion protein activated Cre recombinase, tagging native Ank3 gene. Using confocal, superresolution, and...

10.7554/elife.87078.3 article EN cc-by eLife 2025-02-03

Abstract The axon initial segment (AIS) constitutes not only the site of action potential initiation, but also a hub for activity-dependent modulation output generation. Recent studies shedding light on AIS function used predominantly post-hoc approaches since no robust murine in vivo live reporters exist. Here, we introduce reporter line which is intrinsically labeled by an ankyrin-G-GFP fusion protein activated Cre recombinase, tagging native Ank3 gene. Using confocal, superresolution, and...

10.1101/2023.02.01.525891 preprint EN cc-by-nc-nd bioRxiv (Cold Spring Harbor Laboratory) 2023-02-01

The axon initial segment (AIS) constitutes not only the site of action potential initiation, but also a hub for activity-dependent modulation output generation. Recent studies shedding light on AIS function used predominantly post-hoc approaches since no robust murine in vivo live reporters exist. Here, we introduce reporter line which is intrinsically labeled by an ankyrin-G-GFP fusion protein activated Cre recombinase, tagging native Ank3 gene. Using confocal, superresolution, and...

10.7554/elife.87078 article EN cc-by eLife 2023-06-27

The axon initial segment (AIS) constitutes not only the site of action potential initiation, but also a hub for activity-dependent modulation output generation. Recent studies shedding light on AIS function used predominantly post-hoc approaches since no robust murine in vivo live reporters exist. Here, we introduce reporter line which is intrinsically labeled by an ankyrin-G-GFP fusion protein activated Cre recombinase, tagging native Ank3 gene. Using confocal, superresolution, and...

10.7554/elife.87078.2 preprint EN 2024-10-30

The axon initial segment (AIS) constitutes not only the site of action potential initiation, but also a hub for activity-dependent modulation output generation. Recent studies shedding light on AIS function used predominantly post hoc approaches since no robust murine in vivo live reporters exist. Here, we introduce reporter line which is intrinsically labeled by an ankyrin-G-GFP fusion protein activated Cre recombinase, tagging native Ank3 gene. Using confocal, superresolution, and...

10.7554/elife.87078.1 preprint EN 2023-06-27
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