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Dr. Lars Velten is a Group Leader at the Centre for Genomic Regulation in Barcelona. He talks about his research on cell-state-specific enhancers in hematopoiesis and lineage tracing techniques to study blood aging. He also discusses combining generative AI with wet lab techniques and the advantages of risk-taking in basic research. (40:41)
HSPC Aging in Space – Spaceflight reduces telomere maintenance and HSPC self-renewal. (1:50)
Modeling Myelin Repair – Brain organoids with integrated microglia enabled the investigation of demyelination and remyelination. (14:45)
Gastric Cancer Organoids – Scientists identified ligand-receptor pairs likely to be involved in fetal HSC migration and maintenance. (25:55)
Gastroids to Model Stomach Development – This study reveals a principle for instructing gastric patterning and provides a platform for advancing knowledge of stomach organogenesis. (33:10)
Image courtesy of Dr. Lars Velten
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Dr. Lars Velten is a Group Leader at the Centre for Genomic Regulation in Barcelona. He talks about his research on cell-state-specific enhancers in hematopoiesis and lineage tracing techniques to study blood aging. He also discusses combining generative AI with wet lab techniques and the advantages of risk-taking in basic research. (40:41)
HSPC Aging in Space – Spaceflight reduces telomere maintenance and HSPC self-renewal. (1:50)
Modeling Myelin Repair – Brain organoids with integrated microglia enabled the investigation of demyelination and remyelination. (14:45)
Gastric Cancer Organoids – Scientists identified ligand-receptor pairs likely to be involved in fetal HSC migration and maintenance. (25:55)
Gastroids to Model Stomach Development – This study reveals a principle for instructing gastric patterning and provides a platform for advancing knowledge of stomach organogenesis. (33:10)
Image courtesy of Dr. Lars Velten
Never miss updates about new episodes.
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