Bioelectricity, Morphogenesis, and Two-Headed Worms | Michael Levin
632nm2 Juni

Bioelectricity, Morphogenesis, and Two-Headed Worms | Michael Levin

How can a flatworm regenerate a complete head after being cut in half?

In this episode, we speak with Michael Levin, developmental biologist and director of the Allen Discovery Center at Tufts University, about the emerging field of developmental bioelectricity. Levin explains how voltage gradients, ion channels, and gap junctions form a layer of biological control that operates alongside genetics and biochemistry to regulate embryonic development, regeneration, and anatomical patterning.

We explore the experimental foundations of bioelectricity research, including the use of voltage-sensitive dyes, ion channel manipulation, and computational models to read and write electrical information in living tissues. Levin discusses how bioelectric signals help establish left-right asymmetry in embryos, coordinate communication across developing tissues, and encode large-scale anatomical information that individual cells cannot possess on their own.

The conversation examines classic and surprising experiments from the field, including the creation of two-headed planarian worms, the induction of ectopic eyes in frog embryos, and the restoration of normal development after severe genetic and environmental disruptions. Levin explains how bioelectric circuits can act as a control architecture for morphogenesis, allowing tissues to make collective decisions about growth, form, and regeneration.

We also discuss voltage gradients, membrane potentials, gap junction networks, developmental pattern formation, regenerative medicine, collective cellular intelligence, and the relationship between electrophysiology and gene regulation. Throughout the episode, Levin argues that understanding development requires looking beyond genes alone to the dynamic electrical communication networks that coordinate living systems across scales.

Whether you're interested in developmental biology, embryology, regeneration, electrophysiology, bioelectricity, morphogenesis, systems biology, ion channels, pattern formation, or the future of regenerative medicine, this episode provides a deep technical exploration of how electrical signals help shape living organisms.

Follow us for more technical interviews with the world’s greatest scientists:
Twitter: https://x.com/632nmPodcast
Instagram: https://www.instagram.com/632nmpodcast?utm_source=ig_web_button_share_sheet&igsh=ZDNlZDc0MzIxNw==
LinkedIn: https://www.linkedin.com/company/632nm/about/
Substack: https://632nmpodcast.substack.com/

Follow our hosts!
Mikhail Shalaginov: https://www.linkedin.com/in/mikhail-shalaginov/
Michael Dubrovsky: https://www.linkedin.com/in/michael-dubrovsky/
Xinghui Yin: https://www.linkedin.com/in/xinghui-yin-168b94130/

Subscribe:
Apple Podcasts: https://podcasts.apple.com/us/podcast/632nm/id1751170269
Spotify: https://open.spotify.com/show/4aVH9vT5qp5UUUvQ6Uf6OR
Website: https://www.632nm.com

Timestamps:
00:00 - Intro
01:40 - Early Interest in Bioelectricity
05:22 - External Electric Stimulation
19:54 - Two-Headed Planarians
31:40 - Designing Bioelectric Experimental Methods
56:37 - Different Model Organisms
1:07:34 - TAME Theory
1:24:16 - Xenobots and Advice for Young Scientists

#planaria #morphology #neuroscience #biology #bioelectricity

Det här avsnittet är hämtat från ett öppet RSS-flöde och publiceras inte av Podme. Det kan innehålla reklam.

Avsnitt(59)

Building Quantum Computers at Semiconductor Scale | John Martinis on Qolab + Superconducting Qubits

Building Quantum Computers at Semiconductor Scale | John Martinis on Qolab + Superconducting Qubits

What does it actually take to build a quantum computer that can scale to millions of qubits?Learn more about Qolab here: https://qolab.ai/In this episode, we speak with John Martinis, recipient of the...

22 Sep 2h 4min

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

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

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 microsc...

8 Sep 2h 40min

The Hybrid Architecture Behind Quantum Computing | Yonatan Cohen Quantum Machines CTO

The Hybrid Architecture Behind Quantum Computing | Yonatan Cohen Quantum Machines CTO

Why is controlling a quantum hardware becoming one of the biggest challenges in scaling quantum computers?In this episode, we speak with Yonatan Cohen, co-founder and CTO of Quantum Machines, a compan...

18 Aug 1h 52min

How DNA Sequencing Was Discovered By Accident | Walter Gilbert on Biogen, Industry, and Art

How DNA Sequencing Was Discovered By Accident | Walter Gilbert on Biogen, Industry, and Art

How did we go from knowing almost nothing about genes to sequencing the entire human genome?In this episode, we speak with Nobel Prize-winning molecular biologist Walter Gilbert, whose discoveries hel...

4 Aug 2h 8min

How Bacteria Evolved Rotary Motors | Michael Manson

How Bacteria Evolved Rotary Motors | Michael Manson

How do bacteria power one of the most sophisticated molecular machines in nature?In this episode, we speak with Dr. Michael Manson, one of the pioneers of bacterial motility research, whose nearly 50-...

21 Juli 3h 26min

The Atomic Physics Behind Neutral Atom Computers | Mark Saffman

The Atomic Physics Behind Neutral Atom Computers | Mark Saffman

Why are so many companies betting on neutral atoms to build the first useful quantum computers?In this episode, we speak with Mark Saffman, professor at the University of Wisconsin–Madison and one of ...

30 Juni 1h 23min

Silicon Photonics and the Future of AI Scaling | John Bowers

Silicon Photonics and the Future of AI Scaling | John Bowers

Why are some of the world's largest technology companies betting on silicon photonics?In this episode, we speak with John Bowers, professor at UC Santa Barbara and one of the pioneers of silicon photo...

16 Juni 1h 39min

Populärt inom Vetenskap

dumma-manniskor
p3-dystopia
rss-mottagningen
allt-du-velat-veta
angestpodden
rss-ronden
kapitalet-en-podd-om-ekonomi
det-morka-psyket
rss-ufobortom-rimligt-tvivel
svd-nyhetsartiklar
4health-med-anna-sparre
bildningspodden
rss-vetenskapsradion
rss-geopodden-2
sexet
rss-vetenskapsradion-2
rss-odla
ufo-sverige
rss-spraket
ideer-som-forandrar-varlden