How this model explains symptoms

Transcript
This chapter, from the episode video's captions · 276 words
1:14:33The same gene. >> The same gene is in both. I'm I'm this this is I understand the the connection to T-Rex because the deep dive we did for the Nobel Prize we went really really deep on and it is definitely worth watching in the context of we have so many uh throwback connections to past episodes in this one >> because >> it I can now much more intuitively translate in my head the idea of it being the T-Rex of the brain because of understanding the function of regulatory tea cells in the immune response and why a breakdown in the regulatory tea cells can sort of be a driver for
1:15:16like problems that we see arise. So like you can map it's a very direct >> very directly >> map to this problem set just in terms of the framework of how to think about it. Um, obviously understanding it's is a combinatorial problem set. There's multiple blah blah blah. >> Exactly. >> But very very interesting. >> But it is it is very cool. And they they they used not only mouse models, they also had human brain tissue. >> Okay. >> And the same results >> Mhm. >> were were in the human brain tissue which is very important. Obviously you can't do the invivo effects and things like that. But um on on the tissue as much as you can sort of express one thing, express the other thing, all of this stuff tracks even in humans, right? Um, the one really cool thing that that
1:15:57I thought they did was they used hippocample tissue and they looked at
From 3I/ATLAS Explained, Forensic Fingerprints & Alzheimer's Breakthrough
Interstellar object, forensic leap, and an Alzheimer's immune rethink.