Research on epithalon peptides and the biology of cellular aging
The scientific exploration of aging has shifted from viewing it as a linear, inevitable decay to seeing it as a plastic biological process that can be influenced at the molecular level. Central to this shift is the study of cellular senescence and the maintenance of genomic integrity.
The Biology of Cellular Aging
To understand how Epithalon works, we must first look at why cells age. Biological aging is largely governed by several "hallmarks," two of the most critical being:
Telomere Attrition: Telomeres are protective caps at the ends of chromosomes. Every time a cell divides, these caps shorten. When they become too short, the cell can no longer divide and enters a state of "arrest" known as senescence.
Epigenetic Alterations: Over time, the "switches" that turn genes on or off become degraded due to environmental stress and metabolic byproducts, leading to cellular malfunction.
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