Scientists just figured out how to Scientists just figured out how to reverse aging with AI. And this is a reverse aging with AI. And this is a reverse aging with AI. And this is a massive breakthrough. We can now massive breakthrough. We can now massive breakthrough. We can now reprogram any human cell [music] reprogram any human cell [music] reprogram any human cell [music] back to age 20. Heart cells, skin cells, back to age 20. Heart cells, skin cells, back to age 20. Heart cells, skin cells, brain cells, all reset to their brain cells, all reset to their brain cells, all reset to their biological prime. And here's the wildest biological prime. And here's the wildest biological prime. And here's the wildest part. The technology to do this has part. The technology to do this has part. The technology to do this has existed since 2012. [music] It won the existed since 2012. [music] It won the existed since 2012. [music] It won the Nobel Prize. But the real breakthrough Nobel Prize. But the real breakthrough Nobel Prize. But the real breakthrough wasn't possible until this year when wasn't possible until this year when wasn't possible until this year when they supercharged it [music] with AI. they supercharged it [music] with AI. they supercharged it [music] with AI. It's a wild story. So in 2006, It's a wild story. So in 2006, It's a wild story. So in 2006, scientists discovered Yamanaka factors. scientists discovered Yamanaka factors. scientists discovered Yamanaka factors. They're proteins that can basically They're proteins that can basically They're proteins that can basically convert any normal cell into a universal convert any normal cell into a universal convert any normal cell into a universal stem cell. Now this discovery was a huge stem cell. Now this discovery was a huge stem cell. Now this discovery was a huge deal because these stem cells are deal because these stem cells are deal because these stem cells are basically like magic [music] healers. If basically like magic [music] healers. If basically like magic [music] healers. If you have torn muscle tissue, you can you have torn muscle tissue, you can you have torn muscle tissue, you can inject these stem cells into the area inject these stem cells into the area inject these stem cells into the area and they will turn into the youthful and they will turn into the youthful and they will turn into the youthful muscle cells that you need. [music] So muscle cells that you need. [music] So muscle cells that you need. [music] So Yamanaka factors were an insane Yamanaka factors were an insane Yamanaka factors were an insane breakthrough because they allowed any breakthrough because they allowed any breakthrough because they allowed any human to turn any cell you already have human to turn any cell you already have human to turn any cell you already have into a magic healer. But there was one into a magic healer. But there was one into a magic healer. But there was one big problem. It turns out the original big problem. It turns out the original big problem. It turns out the original Yamanaka factors weren't very good at Yamanaka factors weren't very good at Yamanaka factors weren't very good at this stem cell conversion. They could do this stem cell conversion. They could do this stem cell conversion. They could do it but they just weren't reliable enough it but they just weren't reliable enough it but they just weren't reliable enough to make a product. Enter OpenAI. And to make a product. Enter OpenAI. And to make a product. Enter OpenAI. And this is where things get crazy. OpenAI this is where things get crazy. OpenAI this is where things get crazy. OpenAI designed a special AI model built designed a special AI model built designed a special AI model built specifically to create new proteins. specifically to create new proteins. specifically to create new proteins. Think of it like ChatGPT but for protein Think of it like ChatGPT but for protein Think of it like ChatGPT but for protein [music] [music] [music] engineering. So they took all the engineering. So they took all the engineering. So they took all the original Yamanaka research and gave it original Yamanaka research and gave it original Yamanaka research and gave it to this AI model to go ham on improving to this AI model to go ham on improving to this AI model to go ham on improving it. And guess what happened? Their new it. And guess what happened? Their new it. And guess what happened? Their new version is 50 [music] times more version is 50 [music] times more version is 50 [music] times more effective than the original. They tested effective than the original. They tested effective than the original. They tested it on 50-year-old cells and it it on 50-year-old cells and it it on 50-year-old cells and it successfully started repairing 30% of successfully started repairing 30% of successfully started repairing 30% of the cells in just 7 days. And this isn't the cells in just 7 days. And this isn't the cells in just 7 days. And this isn't science fiction. This actually happened. science fiction. This actually happened. science fiction. This actually happened. And it sounds crazy but in a few years And it sounds crazy but in a few years And it sounds crazy but in a few years humans will be able to take a shot that humans will be able to take a shot that humans will be able to take a shot that literally reverses the age [music] of literally reverses the age [music] of literally reverses the age [music] of their cells. Shout out science.