2014年3月26日星期三

What is Epithalon

What is Epithalon?


The tetrapeptide Epithalon is a peptide whose structure is built upon four amino acids.  It is occasionally referred to by the following alternate names:
  • Epithalone
  • Epitalon
  • CID2192042
  • LS-72251
It has a molecular weight of 390.3459 and a molecular formula is C14H22N4O9.  It has also been shown to be secreted by the pineal gland in animal test subjects, a gland that is also known as the conarium, epiphysis cerebri, or the pineal body.
Telomeres and Telomerase
The key to Epithalon’s overall functionality, according to scientific study based on animal test subjects, relates to its association with two components of a cellular unit:  telomeres and telomerase.
Telomeres are regions of DNA sequencing that are located within the chromatids inside a cellular unit.  These areas in essence function to halt the degradation of genes and preserve the genetic code that is contained within the cellular unit.  As a cell undergoes the process of division, the telomeres shorten.  However, when a shortening occurs, the enzyme telomerase goes to work.
The expression of telomerase essentially replenishes the lost amount of telomeres in the aftermath of a cellular division, which in turn allows for it to maintain its functionality as a binder of DNA sequencing.  The downside to telomerase is that eventually, it stops production.  When this happens, cellular division still occurs, but the telomeres become shorter and weaker with each dividing occurrence.  Eventually, the telomeres simply become too short and weak to contain the telomeres, and they end up unraveling.  When this happens, the DNA sequencing that it is charged with containment becomes undone, and its genetic code goes out of sequence.  This act of disorder confuses the animal test subject’s body, and it responds by causing several processes relating to the overall functionality of the body to either slow down or stop outright.
However, it has been demonstrated through scientific study on animal test subjects that Epithalon has an ability to promote an elevated amount of telomerase to be produced over a longer interval of time.  Because of this, it has been determined that telomeres can retain its strength and length for a longer period, which in turn allows it to bind the DNA sequencing within a cellular unit for a longer interval.  Ultimately, this means that the animal test subject can decipher the genetic code properly for a longer time, thus allowing the processes that would otherwise be thrown into a state of disruption to enjoy a better period of homeostasis.
Epithalon and the Aging Process
Because of the way in which Epithalon can boost the production of telomerase and ultimately preserve the integrity of DNA sequencing and the overall genetic code, scientific study that has been based on animal test subjects has been able to derive the notion that it could play a key role in slowing down an animal test subject’s aging process.  Because a DNA sequence can remain intact for a greater interval, it is determined that the various processes whose malfunction has been tied to the overall aging process can remain in a better state of homeostasis.  These processes can include the ability to maintain a consistent sense of flexibility, retaining a normal level of energy, an ability to fend off basic non-life threatening illnesses, and a more preserved sense of libido.
Further scientific study based on animal test subjects has also determined that Epithalon’s functionality could aid in expediting the process of lipolysis; that is, the process in which fatty acids can be broken down.
Epithalon and Disease
In addition to Epithalon’s perceived positive effects as they relate to the aging process, scientific study that has been based on animal test subjects has determined that its presence can lead to slowing down or even ceasing the onset of a host of deadly diseases that are often associated with the overall aging process.  Some of these diseases include heart disease, stroke, cancer, and various functions associated with mental degradation such as dementia.  Furthermore, scientific study that has been based on animal test subjects has determined that the way in which Epithalon can lengthen the effectiveness of telomeres can conceivable enable studies to locate triggers that may be in place to initiate the onset of these diseases.
Purely for Scientific Research
Despite the fact that there has been plenty of research on Epithalon in relation to how it functions and the benefits that can be derived from such functionality, it should be emphasized that the peptide is still just intended for scientific study at this point in time.  All matters of research relating to the way in which Epithalon operates has all been culled from scientific study on animal test subjects.  Because of this, any findings or observations relating to Epithalon’s overall functionality, mechanics, benefits, should exclusively be the product of study performed in a strictly contained environment such as a medical research facility or a laboratory.


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