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We discovered something that wasn't supposed to exist: Stem cells living INSIDE mature heart muscle cells. These "cell-in-cell structures" contain proliferating cardiac stem cells that eventually release ~200 new cardiac precursors. (1/5)
This "cell-in-cell" mechanism may explain how the heart maintains itself throughout life - and opens new possibilities for regenerative therapy. What if we could stimulate this process after a heart attack? That's the question driving our research (4/5)
→ Autologous (your own) cell therapy could become reality → We need to rethink "irreversible" heart damage The future of cardiology is regenerative.
#HeartHealth#Longevity#AntiAging#StemCellTherapy (2/2)
At 80 years old, your heart still contains stem cells capable of making new heart muscle. This isn't theory. We saw it directly in tissue samples from cardiac surgery patients. The implications:
→ Heart regeneration may be possible at any age
(1/2)
✓ No significant decline with age up to 80 years The regenerative potential is there. The question is: how do we activate it?
Published: Cellular Therapy and Transplantation, 2023
#ClinicalResearch#HeartSurgery#Regeneration#Biotech (2/2)
What we found in heart biopsies from cardiac surgery patients: ✓ Cardiac stem cells (CSCs) present in ALL samples ✓ Active cell division markers (Ki67+) ✓ "Cell-in-cell structures" releasing new cardiac precursors (1/2)
We found cardiac stem cells in patients up to 80 years old. For decades, scientists believed the adult heart couldn't regenerate. Our clinical study of 24 cardiac surgery patients (ages 47-80) found active stem cells in every single biopsy - regardless of age.
What if dying cells could teach new cells how to heal the heart? Our research discovered that when heart muscle cells die naturally (apoptosis), they release tiny packages, "apoptotic bodies" containing an RNA code. This code tells cardiac stem cells: "Become heart muscle." (1/5)
The heart speaks in RNA. When a cardiomyocyte dies, it doesn't just disappear — it leaves instructions for the next generation of cells. We call this an "epigenetic code" for tissue-specific regeneration. What if we could harness this code to repair damaged hearts? (4/5)
What if dying cells could teach new cells how to heal the heart? Our research discovered that when heart muscle cells die naturally (apoptosis), they release tiny packages called "apoptotic bodies" containing an RNA code. This code tells cardiac stem cells: "Become heart muscle."
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We are a team of researchers, scientists, and technology enthusiasts who have spent 15 years developing unique genetic medicines for tissue and organ regeneration.
What do we want to share with you through social media? (1/4)
Starting today, we will immerse you in the fascinating world of biomedical discoveries.
We're bringing closer a fantastic future where any of us can replace a damaged organ or lost tissue.
To live long and joyfully, getting the most out of this world. (3/4)