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High Pure Weight Loss Growth Hormone Trenbolone Acetate Powder CAS 10161-34-9

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High Pure Weight Loss Growth Hormone Trenbolone Acetate Powder CAS 10161-34-9

High Pure Weight Loss Growth Hormone Trenbolone Acetate Powder CAS 10161-34-9
High Pure Weight Loss Growth Hormone Trenbolone Acetate Powder CAS 10161-34-9 High Pure Weight Loss Growth Hormone Trenbolone Acetate Powder CAS 10161-34-9

Large Image :  High Pure Weight Loss Growth Hormone Trenbolone Acetate Powder CAS 10161-34-9

Product Details:
Place of Origin: Hubei, China
Brand Name: Mking
Certification: ISO9001, SGS
Model Number: CAS 10161-34-9
Payment & Shipping Terms:
Minimum Order Quantity: 10 Gram
Price: Negotiable
Packaging Details: Disguised Package or As Required
Delivery Time: Within 24 Hours
Payment Terms: T/T, Western Union, MoneyGram, Paypal
Supply Ability: 1000 Kg Per Month
Detailed Product Description
Appearance: Yellow Powder Grade: Medical Grade
MF: C20H24O3 Assay: 99% Min
Injectable: Yes Function: Lean Muscle Gain
Guarantee: Reshipping Delivery: 5-7 Working Days, Safe And Fast
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CAS 10161-34-9 Cutting Raw Steroids Trenbolone Acetate / Tren Ace Powder
 


Trenbolone Acetate
 
Synonyms: Revalor-H;finaplix;trienbolone acetate;Fina;Finajet
CAS No: 10161-34-9
M.F.: C20H24O3
M.W.: 312.4
Assays: 99%+
Appearance: Yellow to Pale yellow crystalline powder
Storage: shading, confined preservation.
 
 
Trenbolone Acetate Description
 
Trenbolone was first synthesized in 1963 by Velluz et al.503 The drug appears to have been an early development project of Roussel-UCLAF. By the early 1970’s, it was being sold as an injectable (trenbolone acetate) in England by Hoechst as Finajet, and in France as Finaject by Roussel. Roussel AG in Germany was parent to both companies. Trenbolone acetate is a drug of veterinary medicine, although a longer-acting ester of trenbolone (see: Parabolan) was once sold for human consumption as well. Trenbolone acetate is used, almost exclusively, to increase the rate of weight gain and improve feed efficiency of cattle shortly before slaughter. Essentially, the drug is utilized to increase product profitability, as measured in total pounds of salable meat. It is generally used right up to the point of slaughter, with no withholding period. Meat products sold in many areas of the world will often contain small amounts of residual trenbolone metabolites as a result of this practice.
 
Trenbolone acetate first became popular among U.S. bodybuilders during the 1980’s, a time when the drug was being smuggled in from Europe in high volume. It was identified (rightly so) as a powerful anabolic and androgenic agent, and quickly became a drug of choice among American competitive bodybuilders. Although extremely hot for a brief period of time, the supply of trenbolone acetate ended abruptly in 1987, as Hoechst-Roussel decided to voluntarily discontinue sale of all injectable forms of this medication. Although unconfirmed, the growing public concern about sports doping likely had much to do with this decision, as the discontinuation of “controversial” steroids was very common during the late 1980’s and early 1990’s. This event marked the end of legitimate medicines containing trenbolone acetate for injection.
 
Around the same time as we were seeing the demise of Finajet and Finaject, Hoechst-Roussell was introducing trenbolone acetate to the U.S. market as Finaplix cattle implant pellets. This came subsequent to the FDA’s approval for such products in 1987 . The pellets were designed for subcutaneous implantation into the ear of the cattle with a handheld implant gun, and are far too large to be implanted in humans without minor surgery. Remarkably, trenbolone acetate pellets are exempt from U.S. controlled substance laws. This is presumably to make it easy and affordable for livestock owners to have access to the growth-promoting agent. If a veterinarian were needed every time these products were to be used, they might be too troublesome or cost prohibitive to consider. Admittedly, since these products come in the form of pellets, they are not in a form suitable for human consumption either, making their exemption seem a little more reasonable than at first glance.
 

 

Typical Trenbolone Dosages

 

Trenbolone acetate is usually used at doses of 35-150 mg/day, and more typically 50-100 mg/day. The 35 mg figure generally is appropriate only when having high personal sensitivity to trenbolone-specific side effects. When trenbolone usage is this low and an effective cycle is desired, another injectable anabolic steroid should be added. Masteron is a good choice for this purpose. Another, quite different choice is testosterone.
 
As for the higher 150 mg/figure, this generally is used for the purpose of increased nervous system stimulation compared to 100 mg/day rather than for further mass or strength improvements, which are already maximized or very nearly maximized at 100 mg/day.
 
Most users find 50-75 mg/day to be an ideal dosage range, giving excellent benefit as part of an anabolic steroid stack.
 
These milligram amounts are unusually low for an injectable anabolic steroid. Part of the reason is that trenbolone is remarkably potent (effective per milligram.) Another reason is that because the acetate ester is unusually light, a very high percentage of the weight of the trenbolone acetate molecule is the active steroid.
 

 

Avoid Trenbolone-Only Cycles

 

Trenbolone, whether as the acetate (Finaplix, Finajet), enanthate, or cyclohexylmethylcarbonate (Parabolan), should not be used as the sole anabolic in a steroid cycle. Mass gains are greatly limited when this is done. Instead, trenbolone should be stacked with Dianabol, Anadrol, or testosterone as the most common and highly suitable choices.
 
 
Tren Series

 

Product Name CAS Number EINECS Molecular Formula
Trenbolone Base 10161-33-8 / C18H22O2
Trenbolone Acetate(trenA/Finaplix H/Revalor-H) 10161-34-9 233-432-5 C20H24O3
Trenbolone Cyclohexylmethylcarbonate 23454-33-3 245-669-1 C26H34O4
Trenbolone Enanthate(trenE) 10161-33-8 /  
Altrenogest/Allyltrenbolone 850-52-2 212-703-1 C21H26O2
Methyltrienolone/Metribolone 965-93-5 / C19H24O2

 
 
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