IN THE NEWS
The lab in the press
The lab in the press
The lab in the press
Coverage of our work on synthetic human tissues, organoid models, and the origins of congenital disease.
Coverage of our work on synthetic human tissues, organoid models, and the origins of congenital disease.
Jun 14, 2023
The Guardian
Synthetic human embryos created in groundbreaking advance
Synthetic human embryos created in groundbreaking advance
Synthetic human embryos created in groundbreaking advance
Breakthrough in modelling early human development could aid research into genetic disorders while raising new ethical and legal questions.
Breakthrough in modelling early human development could aid research into genetic disorders while raising new ethical and legal questions.
Dec 15, 2023
The Rockefeller University
Intriguing science discoveries of 2023
Intriguing science discoveries of 2023
Intriguing science discoveries of 2023
A year-in-review round-up of the most striking discoveries to come out of Rockefeller laboratories.
A year-in-review round-up of the most striking discoveries to come out of Rockefeller laboratories.
Jan 11, 2021
The Rockefeller University
Synthetic “micro lungs” could take COVID-19 research to the next level
Synthetic “micro lungs” could take COVID-19 research to the next level
Synthetic “micro lungs” could take COVID-19 research to the next level
Miniature stem-cell-derived lung tissues offer a scalable model for studying how SARS-CoV-2 infects the human airway.
Miniature stem-cell-derived lung tissues offer a scalable model for studying how SARS-CoV-2 infects the human airway.
Jan 10, 2021
News-Medical
Synthetic lung organoids provide high-throughput platform to identify new cellular targets of SARS-CoV-2
Synthetic lung organoids provide high-throughput platform to identify new cellular targets of SARS-CoV-2
Synthetic lung organoids provide high-throughput platform to identify new cellular targets of SARS-CoV-2
A new platform generates matched human lung buds in the tens of thousands, allowing SARS-CoV-2 infection and therapeutics to be studied in tissue that mirrors human lung development.
A new platform generates matched human lung buds in the tens of thousands, allowing SARS-CoV-2 infection and therapeutics to be studied in tissue that mirrors human lung development.