Follistatin & Klotho Gene Therapy, Stem Cells In Mexico, NK Killer Cells, Advanced Age Reversal Tactics & More With Adeel Khan
Ben Greenfield
Mar 30, 2024
Mindsip insights from this episode:
Differentiate true pluripotent stem cells from committed progenitor cells
Stem cells from unexpanded fat or bone marrow are actually 'committed progenitor cells,' not true pluripotent stem cells, which must be isolated and culture-expanded to be effective.
Prepare body’s microenvironment to enhance stem cell effectiveness
To maximize stem cell effectiveness, it's crucial to first prepare the body's microenvironment by reducing inflammation and senescent cells, for which a specific peptide protocol can be used.
Utilize intravenous stem cells to re-educate immune system and clear old mitochondria
Intravenous stem cells get trapped in the lungs where they interact with immune tissue to re-educate the immune system, and new research suggests they also trigger mitophagy to clear old mitochondria.
Reprogram nervous system with upgraded vagus nerve block
A modern Stellate Ganglion Block not only uses an anesthetic but also modulates the vagus nerve with exosomes and peptides to reprogram the nervous system and combat stress.
Utilize placental implant to elevate NAD levels for three months
A single subcutaneous injection of a lyophilized placental implant can raise intracellular NAD levels for up to three months, offering an alternative to daily supplements or IV drips.
Utilize Tetracycline as a safety kill switch in Follistatin gene therapy
The Follistatin gene therapy uses a plasmid vector that can be reversed with a common oral antibiotic, Tetracycline, acting as a unique safety kill switch.
Leverage follistatin gene therapy to combat aging and inflammation
Follistatin gene therapy not only builds muscle by inhibiting myostatin but also reduces systemic inflammation by activating the FOXO3 pathway, targeting two hallmarks of aging.
Utilize gene-edited stem cells with fail-safe technology for safety
Second-generation induced pluripotent stem cells (IPSCs) can be gene-edited with a 'fail-safe' technology that acts as a kill switch to prevent the risk of tumor formation.
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