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Testosterone Enanthate is simply Testosterone with the Enanthate ester bound to the Testosterone chemical structure. Specifically ‘Enanthate’ is Enanthoic acid, but once bound to Testosterone it is properly referred to in chemistry as an ester bond (or ester linkage). Enanthoic acid is bonded to the 17-beta hydroxyl group on the Testosterone structure. Esterified anabolic steroids are more fat soluble, and release slowly from the injection site – however, this is not the main reason as to why esters extend the release rate of the anabolic steroid. The primary reason for the augmentation of its half-life and release rate is because once Testosterone Enanthate enters the bloodstream, enzymes work to break the bond between the ester and the hormone, which takes a varying amount of time. The end result is that the ester is removed from the hormone by enzymes, and what is left is pure Testosterone that is free to do its work in the body. This process of enzymes cleaving off the ester from the Testosterone molecule is what is responsible for the slower release rates. Testosterone alone with no ester bonded to it possesses a half-life of approximately 2 – 4 hours. When the Enanthate ester is attached to it, creating Testosterone Enanthate, the half-life of Testosterone is now extended to 10 days, providing a slower release and activity of the hormone.
Equipoise is a synthetic derivative of Testosterone where it has been modified at carbon 1 and carbon 2 on the steroid structure, where double-bonds have been added between these two carbon atoms. This is what is known as the modification that is responsible for reducing Equipoise’s affinity for interaction with the aromatase enzyme (the enzyme responsible for the conversion of androgens into Estrogen). As a result, its Estrogenic activity is regarded to be lower than Testosterone. Equipoise is Boldenone with the Undecylenate ester attached to it. Specifically, ‘Undecylenate’ is Undecylenoic acid, but once bound to Boldenone it is properly referred to in chemistry as an ester bond (or ester linkage). Undecylenoic acid is chemically bonded to the 17-beta hydroxyl group on the Boldenone structure. The addition of this ester augments the hormone’s release rate and half-life to favor a longer window of release. The primary reason for the augmentation of its half-life and release rate is because once Boldenone Undecylenate enters the bloodstream, enzymes work to break the bond between the ester and the hormone, which takes a varying amount of time. The end result is that of the ester being removed from the hormone by these enzymes, and the result following this is pure Boldenone that is free to do its work in the body. This process of enzymes removing the ester from the hormone to which it is attached is what is responsible for the slower release rates. When the Undecylenate ester is attached to Boldenone, creating Boldenone Undecylenate, the half-life of Boldenone is now extended to 14 days, providing a slower release and activity of the hormone than the hormone otherwise would without this ester.
Trenbolone Enanthate is a long ester variant of the hormone Trenbolone. Trenbolone, being a derivative of Nandrolone (the base hormone in Deca-Durabolin), is a 19-nor anabolic steroid. 19-nor compounds are characterized by their lack of a 19th carbon on the steroid structure, which also brings Trenbolone the classification of a progestin as well. Through it’s modifications from Nandrolone, it introduces two double-bonds between carbons 11 and 9, and it is this chemical modification that effectively makes Trenbolone totally immune to aromatization (conversion into Estrogen) by way of the aromatase enzyme as well as increasing the strength at which Trenbolone binds to the androgen receptor. That is to say that Trenbolone will not produce any estrogenic side effects alone, and that it is an extremely potent and very strong anabolic steroid with an anabolic:androgenic ratio of 500:500. Compared to Testosterone, this is staggering, as Testosterone expresses an anabolic:androgenic ratio of 100:100. Hence, we can see how and why Trenbolone is five times the strength of Testosterone. Its chemical modifications also allow it a stronger resistance to metabolism in the body, allowing even more maximization of its anabolic capabilities in muscle tissue. Lastly, Trenbolone Enanthate possesses the enanthate ester, affixed at the 17-beta hydroxyl group on the steroid structure. This, as mentioned many times already, slows the release rate and also extends Trenbolone’s half-life in the body to approximately 7 – 10 days.
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