Regenerative Plasticity | Zebrafish | In vivo Fluorescent Imaging | Liver Regeneration | Starvation Response | Alcoholic Liver Disease
#LiverRegeneration #Zebrafish #RegenerativeBiology #CellPlasticity
(8/8)
#LiverRegeneration #Zebrafish #RegenerativeBiology #CellPlasticity
(8/8)
🐟 This study also highlights the power of #zebrafish as a model for dynamic cell plasticity and #regeneration.
🔗 Full paper: nature.com/articles/s41...
🔗 Lab: sumeetpalsingh.github.io
(7/8)
🐟 This study also highlights the power of #zebrafish as a model for dynamic cell plasticity and #regeneration.
🔗 Full paper: nature.com/articles/s41...
🔗 Lab: sumeetpalsingh.github.io
(7/8)
👏 Lead author Sema Elif Eski
👏 Co-authors @jiaruimi.bsky.social Macarena Pozo Morales, Garnik Hovhannisyan
👏 Collaborators @o-andersson-lab.bsky.social Esteban Gurzov, Rita Manco, Federico Marini
(6/8)
👏 Lead author Sema Elif Eski
👏 Co-authors @jiaruimi.bsky.social Macarena Pozo Morales, Garnik Hovhannisyan
👏 Collaborators @o-andersson-lab.bsky.social Esteban Gurzov, Rita Manco, Federico Marini
(6/8)
A new paradigm: transdifferentiation can occur without senescence, fibrosis, or chronic damage.
(5/8)
A new paradigm: transdifferentiation can occur without senescence, fibrosis, or chronic damage.
(5/8)
We confirmed this with a 17% partial hepatectomy model. ✂️🐟
(4/8)
We confirmed this with a 17% partial hepatectomy model. ✂️🐟
(4/8)
🟢 Spared hepatocytes
🔴 Ablated hepatocytes
🔵 De novo hepatocytes (not hepatocytes before injury)
This lets us precisely map where new hepatocytes come from after injury.
(3/8)
🟢 Spared hepatocytes
🔴 Ablated hepatocytes
🔵 De novo hepatocytes (not hepatocytes before injury)
This lets us precisely map where new hepatocytes come from after injury.
(3/8)
But when hepatocytes are damaged, can cholangiocytes step in to rebuild the liver even if some hepatocytes remain?
We built a new zebrafish model to test it.
(2/8)
But when hepatocytes are damaged, can cholangiocytes step in to rebuild the liver even if some hepatocytes remain?
We built a new zebrafish model to test it.
(2/8)
We hope CellCousin2 helps others studying regeneration, cell fate, and tissue repair.
All plasmids are available on @addgene.bsky.social
We hope CellCousin2 helps others studying regeneration, cell fate, and tissue repair.
All plasmids are available on @addgene.bsky.social
We fused CreER to a destabilizing domain (DD) that is degraded unless stabilized by TMP.
💊 TMP = protein stabilization
🟣 4-OHT = nuclear translocation
Only when both are present does recombination occur—ensuring tight temporal control.
We fused CreER to a destabilizing domain (DD) that is degraded unless stabilized by TMP.
💊 TMP = protein stabilization
🟣 4-OHT = nuclear translocation
Only when both are present does recombination occur—ensuring tight temporal control.
✅ DDCreER: chemically inducible Cre with low leakiness
✅ NTR2.0: ablation with 10× less metronidazole
✅ Cleaner, more precise regeneration readouts
The system is modular and adaptable to other tissues or models.
✅ DDCreER: chemically inducible Cre with low leakiness
✅ NTR2.0: ablation with 10× less metronidazole
✅ Cleaner, more precise regeneration readouts
The system is modular and adaptable to other tissues or models.
It uses stochastic recombination and NTR-based ablation to remove only a subset of hepatocytes.
🟢 Spared cells
🔵 New (De novo) hepatocytes
This allows direct comparison of lineage contributions during liver repair.
It uses stochastic recombination and NTR-based ablation to remove only a subset of hepatocytes.
🟢 Spared cells
🔵 New (De novo) hepatocytes
This allows direct comparison of lineage contributions during liver repair.