Awarded a contract for up to $12M from the Advanced Research Projects Agency for Health (ARPA-H), researchers at the Wyss ...
The Humans of the Wyss (HOW) series features members of the Wyss community discussing their work, the influences that shape ...
This photo shows Amogh Jalihal, Neil Dalvie, and team member Mohammed Hijaz in the rockweathering lab that they equipped with multiple rock-seawater bioreactors to pursue their rockweathering study.
George Church, Ph.D., is a Core Faculty member at the Wyss Institute and a genetics professor at Harvard Medical School. He is a pioneer in synthetic biology and personalized genomics. In 2017, Time ...
In this episode of ToxChats, hosts Lauren Walker and Sarah Benjamin sit down with the groundbreaking Donald Ingber—visionary scientist, engineer, and Founding Director of the Wyss Institute. Ingber ...
This animation explains how an emerging technology called “gene drives” may be used to potentially spread particular genomic alterations through targeted wild populations over many generations. It ...
During the last decade, advances in genome editing and pluripotent stem cell (PSC) culture have let researchers generate edited PSC lines to study a wide variety of biological questions. However, ...
The Science Soapbox team sits down with Dr. George Church to talk everything from the dawn of CRISPR to the place of science fiction in society. Dr. Church is Professor of Genetics at Harvard Medical ...
This animation shows an example of an eToehold that detects and signals the presence of a specific viral RNA in a human cell. After the virus has injected its RNA into a host cell, the RNA acts as a ...
In this video, Wyss Core Faculty member Pamela Silver describes how her team at the Wyss Institute and Harvard Medical School induced magnetic sensitivity in a non-magnetic organism. This technology ...
Wyss Core Faculty member Neel Joshi and Postdoctoral Fellow Anna Duraj-Thatte discuss the intersection between synthetic biology and materials science as an underexplored area with great potential to ...