ParasocialDownload on theApp Store

632nm

Diffraction Limit, Microscopy, and Cell Biology | Eric Betzig on Super-Resolution Microscopy

2 hr 41 min

3 min preview

Listen to the full episode

Do not have it yet? Parasocial is a podcast player by Super Simple.

About this episode

What does a cell actually look like when you can see its molecules in action? In this episode, we speak with Nobel Prize-winning scientist Eric Betzig, whose pioneering work in super-resolution microscopy transformed our ability to see inside living cells. Betzig recounts his decades-long effort to overcome the diffraction limit of light microscopy, from his early work in near-field microscopy to the development of PALM and his eventual focus on watching biological processes unfold in living cells. We explore why the familiar picture of the cell in biology textbooks may be fundamentally misleading. Much of cell biology has been built by combining observations from biochemistry, molecular biology, and structural biology to construct models of how molecules interact. But, as Betzig explains, we have historically had very little direct information about the spatial organization and dynamics of these molecules inside a living cell. When he and his colleagues used single-molecule microscopy to watch transcription factors in real time, they found that proteins believed to form stable complexes were instead binding to DNA for only a few seconds, forcing them to reconsider how transcript

Diffraction Limit, Microscopy, and Cell Biology | Eric Betzig on Super-Resolution Microscopy — 632nm