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Home » Current Events » Nobel Prize Honors Breakthrough in Brain Cell Control

Nobel Prize Honors Breakthrough in Brain Cell Control

Or: How to change your mind, with psychedelics and optogenetics. Genevieve introduced the closing keynote for the PSFC Summit today: Karl Deisseroth is the pioneer of the mind-reading and writing tool (<a href="http://optogenetics.org" rel="noreferrer nofollow">optogenetics.org</a> at Stanford) that allows for individual neuron targeting and manipulation, and his new work looks at the effects of mind-altering drugs on brain function in detail. For a sense of the power of his methods: he can take a pair of mice than were just mating happily, and with a flip of a switch, they become violent to each other. He made a mouse walk in an infinite left turn loop when a fiber optic is flipped on in the motor cortex (with no apparent awareness or distress at being controlled this way). Another team selectively turned on subsets of parenting behavior (like bringing wandering young back to the nest or grooming behaviors). They can also probe three different sub-states of anxiety that we only experience as a bundle. How does this work? Before the plant kingdom evolved chlorophyll to harvest energy from sunlight, the more ancient bacteria used rhodopsins in a membrane-bound proton-pump to do the same. The rhodopsins captured a swath of the sun’s spectrum, tilting the algae to the leftover parts of the spectrum not yet absorbed, and this is why plants are green. Karl introduced these bacterial light-triggered elements into neurons of interest using a viral vector to the brain. He can then trigger neuronal firing optically, as the rhodopsin pump supplements the ion channels in the neuron. He can also trigger reporter molecules from the bacterial world to read out brain activity as the brain is functioning. So, for example, he has observed a 3 Hz cycling in the retrosplenial cortex of a mouse brain on ketamine, and he has been able to reproduce the effects with optogenetic stimulation to achieve similar effects. He has also found that the dissociative drugs (ketamine and PCP) allow for reflexes to pain (e.g., heat on paw or puff of air to eyes) to continue normally, while the protective cognitive reactions (licking the paws after heat or squinting in anticipation of the next puff) disappear, a disassociation of mind and body reflexes. He is diving deeper into the brain to investigate how this works, finding that the various subregions of the thalamus are regulated by disassociative drugs by overpowering the voting circuits with a pulsing 3 Hz modulation of the ketamine-enhanced circuits. The other nodes in the thalamus are operating as before, but do not achieve as powerful a consensus. The thalamus regulates where we spend our attention and conscious focus, to avoid doing everything we might be tempted to do simultaneously, and thereby not really doing any of them well. In his latest work, he has found that MDMA operates very differently than Ketamine (work to be published later this year). The implications of this level of understanding are enormous. The questions we can now ask using optogenetics will transform how we understand mental disorders and also call into question some deep philosophical questions surrounding consciousness and free will. It may also unveil the mysteries about how psychedelics operate in the brain, allowing us to optimize the use cases for testing in human clinical trials. Exciting work is going on with psilocybin for alcohol use disorder, extreme OCD and the eating disorders (which are also a disassociation of mind from body).
By Digital News Editorial Team on October 5, 2026

Karl Deisseroth, Peter Hegemann and Georg Nagel share the 2026 Nobel Prize in Physiology or Medicine for discoveries that led to optogenetics.

Karl Deisseroth and Peter Hegemann and Georg Nagel have been awarded the 2026 Nobel Prize in Physiology or Medicine. The prize was announced at the Karolinska Institutet in Stockholm Sweden on Monday October 5 2026. The Nobel Assembly recognized their work on light-gated ion channels and optogenetics.

These scientists developed methods to control nerve cells using light which has advanced understanding of how the brain works. Optogenetics is a technique that uses genetic engineering and light to activate or silence specific cells in the brain. The process involves introducing genes into cells so they produce proteins sensitive to light known as opsins.

This approach allows researchers to study how individual neurons and brain circuits influence behavior and mental processes.

The research began with work on a single-celled alga called Chlamydomonas by Hegemann and Nagel. They helped identify and characterize channelrhodopsins that allow electrically charged ions to pass through cell membranes in response to light. Deisseroth and his colleagues later showed that channelrhodopsin-2 could be used to control the firing of mammalian nerve cells with blue light.

Those findings were published in 2005 and his team later expanded the method for use in living animals. This led to the development of optogenetics as a powerful tool in neuroscience research. Traditional methods often affected many cells at once making it hard to study individual neuron roles.

Optogenetics allowed scientists to target specific groups of neurons with high precision. The technique has been used in studies involving movement and sleep and learning and behavior. Deisseroth is a professor at Stanford University in California according to a report from NPR.

Hegemann works at Humboldt University in Berlin Germany. Nagel is affiliated with the University of Würzburg in Germany. The three scientists will share the Nobel Prize amount of 12 million Swedish kronor.

This year’s prize follows last year’s award to scientists studying the immune system.

The Nobel week continues with physics and chemistry and literature and peace prizes in the coming days. The final award — the Nobel Memorial Prize in Economic Sciences — will be announced on October 12. The celebrations for the Nobel laureates end on December 10 on the anniversary of Alfred Nobel’s death.

On that day winners receive their awards at ceremonies in Stockholm and Oslo. Laureates are also honored during Nobel Week celebrations surrounding the ceremonies.

IMAGE: Or: How to change your mind, with psychedelics and optogenetics.
Genevieve introduced the closing keynote for the PSFC Summit today: Karl Deisseroth is the pioneer of the mind-reading and writing tool (<a href=”http://optogenetics.org” rel=”noreferrer nofollow”>optogenetics.org</a> at Stanford) that allows for individual neuron targeting and manipulation, and his new work looks at the effects of mind-altering drugs on brain function in detail.

Exciting work is going on with psilocybin for alcohol use disorder, extreme OCD and the eating disorders (which are also a disassociation of mind from body).. Photo: Steve Jurvetson from Los Altos, USA / Wikimedia, taken 2022-05-23, CC BY 2.0

 

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