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Epitalon Peptide and Cell Aging - Biotech Peptides

Epitalon Peptide and Cell Aging by Dr. Usman | Feb 28, 2021 | Research What is Epitalon? Epitalon, also known as Epithalon or Epithalamide, is a tetrapeptide secreted from the pineal gland. It comprises Alanine, Glycine, Aspartic acid, and Glutamic acid. The p

Epitalon Peptide and Cell Aging

by Dr. Usman | Feb 28, 2021 | Research

What is Epitalon?

Epitalon, also known as Epithalon or Epithalamide, is a tetrapeptide secreted from the pineal gland. It comprises Alanine, Glycine, Aspartic acid, and Glutamic acid. The peptide is speculated to mimic the naturally occurring pineal hormone called Epithalamin. The molecule is thought to bind to and induce the sensitivity of the hypothalamus towards the natural hormone, thereby regulating the circadian rhythm and controlling melatonin production. Positive speculative influences have been suggested in the areas of cell aging, and thereby potentially improving life expectancy, and inhibiting the proliferation of cancer cells (with animal research studies conducted in breast, prostate, and colon cancers).

Mode of Action

Telomeres, sequences present towards the end of the chromosomes, may undergo shortening with each round of replication due to the basal expression and activity of the telomerase enzyme. In subsequent cellular divisions, the sequences may shorten, leading to the loss of crucial DNA elements from the chromosomes. Epitalon is believed to help activate the telomerase enzyme, which may maintain telomeric length and potentially reverse the cell aging process. This mechanism may allow cells to continue dividing, contributing to a greater level of physiological function.

Epitalon and Cell Aging

Cell aging is the natural physiological phenomenon whereby cells undergoing repeated cycles of division may ultimately shorten their telomere length beyond the Hayflick limit. These cells might lose some of the beneficial DNA required for proper propagation, leading to cellular senescence, the onset of aging, and age-related conditions such as cardiovascular diseases and potentially untimely death. Aging cells may either leak out accumulated toxins into the surrounding system or undergo self-degradation (apoptosis or programmed cell death). However, sometimes such aged cells, instead of perishing, might turn rogue and adversely affect tissues of various organs like kidneys, lungs, liver, brain, and heart, causing the onset of diseases.

Epitalon Research

Scientists have examined murine models of the early onset of aging to speculate the effect of Epitalon. Genetically modified mice were used for the research, displaying shortened lengths of telomeres and leading to the early onset of aging. These animals exhibited various physiological impairments like shrinkage in the size of the brain, atrophied spleens, damaged intestines, loss of the sense of smell, and so on. These models were exposed to Epitalon and monitored. One month post-exposure, they exhibited apparent dramatic improvement in physiological parameters. At the molecular level, the chromosomes exhibited a greater length of telomeres, possibly due to enhanced telomerase activity. The exposed animals exhibited the formation of new neurons, growth in the size of the spleen, and regained the sense of smell.

Disclaimer: The products mentioned are not intended for human or animal consumption. Research chemicals are intended solely for laboratory experimentation and/or in-vitro testing. Bodily introduction of any sort is strictly prohibited by law. All purchases are limited to licensed researchers and/or qualified professionals. All information shared in this article is for educational purposes only.

Dr. Usman

Dr. Usman (BSc, MBBS, MaRCP) completed his studies in medicine at the Royal College of Physicians, London. He is an avid researcher with more than 30 publications in internationally recognized peer-reviewed journals. Dr. Usman has worked as a researcher and a medical consultant for reputable pharmaceutical companies such as Johnson & Johnson and Sanofi.

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Evidence cooldown

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RESEARCH

2. Lack of Long-Term Human Studies

Studies on animals have shown hopeful results, but there hasn't been a lot of long-term research on Epitalon in humans yet. In other words, even though no major risks have been found, more studies need to be done.

RESEARCH

Epitalon Peptide and Longevity, Antioxidant and Vision Research

Researchers suggest Epitalon peptide may stimulate the generation of telomerase, thus elongating and strengthening telomeres in the DNA strands. This may reduce apoptosis and prolongs cell lifespan, which in turn may have a downstream effect of reducing or delaying the onset of age-related diseases. When it comes to removing free radicals, the peptide has been suggested by research studies to provide potential antioxidant properties. It may remove oxygen-free radicals that contribute to cell destruction – considered the primary cause of degenerative diseases like Alzheimer’s. In rodent models of hereditary Retinitis Pigmentosa, Epitalon peptide was reported by researchers to exhibit workable integrity of their eyes’ retina. For models of pigmentary retinal degeneration, it appeared to enhance their overall vision. NOTE: These products are intended for laboratory research use only. This peptide is not intended for personal use. Please review and adhere to our Terms and Conditions before ordering.