1-Test Cyp 100 DP
1-Test Cyp 100 DP : Dihydroboldenone Cypionate, 100 mg/ml. Nearomatizuje, nezpůsobuje mastnou pleť, akné ani vypadávání vlasů. Dávkování: 100-200 mg/týden. Ženy by se měly vyhnout. Účinky podobné jako Primobolan. pouze pro dospělé; uchovávejte mimo dosah dětí.
Testosteron Cypionate, často zkráceně jako 1-test cyp 100 dp , je populární anabolický androgenní steroid (AAS) široce používaný ve sportovní a kulturistické komunitě. Tento komplexní průvodce se ponoří do vědy, která stojí za testosteronem cypionátem, jeho výhodami, jak funguje, potenciálními vedlejšími účinky a dalšími.
Pochopení Testosteron Cypionate
Testosteron Cypionate je syntetický derivát primárního mužského pohlavního hormonu, testosteronu. Patří do rodiny anabolických steroidů, které jsou známé svou schopností podporovat růst svalů, zvyšovat sílu a zvyšovat fyzickou výkonnost (Androgenní steroidy, 2020).
- Chemický název: Testosteron cypionát
- Molecular Formula: C27 H40 O3
- Molecular Weight: 412.60 g/mol
- CAS Number: 58-20-8
- Product Code: TRC-T155100
API Family | Testosterone Cypionate |
---|---|
Product Categories | TRC, API Reference Standards & Research Materials, Steroids and derivatives, Reference Materials for Sports Drugs and Steroid Testing |
Drug Type | Steroids / Doping Agents Standards |
How Testosterone Cypionate Works
Testosterone Cypionate is an esterified form of testosterone, meaning it has a cypionate ester attached to the hormone molecule. This modification slows down the release of testosterone into the body, prolonging its active life and allowing for less frequent injections (Hoffman & Ratamess, 2006).
Once in the body, Testosterone Cypionate promotes muscle growth through several mechanisms:
- Increased Protein Synthesis: It stimulates the production of proteins essential for muscle repair and growth (Bhasin et al., 2001).
- Enhanced Nitrogen Retention: Testosterone helps the body retain more nitrogen, a crucial component of protein, promoting anabolic conditions (Hoffman & Ratamess, 2006).
- Increased Red Blood Cell Production: By stimulating erythropoiesis, testosterone boosts oxygen delivery to muscles, enhancing endurance and recovery (Bhasin et al., 2001).
The Benefits of Testosterone Cypionate for Sports and Bodybuilding
Testosterone Cypionate offers numerous benefits for athletes and bodybuilders:
- Increased Muscle Mass: By promoting protein synthesis and nitrogen retention, Testosterone Cypionate helps users build muscle mass (Bhasin et al., 2001).
- Enhanced Strength: Users may experience increased strength due to the hormone’s anabolic effects (Hoffman & Ratamess, 2006).
- Improved Endurance and Recovery: The increase in red blood cells helps athletes train harder and recover faster (Bhasin et al., 2001).
- Enhanced Libido: Testosterone is essential for maintaining a healthy sex drive, which may improve during use (Hoffman & Ratamess, 2006).
Potential Side Effects and Risks
While Testosterone Cypionate offers numerous benefits, it’s crucial to be aware of its potential side effects:
- Aromatization: Testosterone can convert into estrogen, potentially leading to gynecomastia (enlarged breast tissue) and water retention (Hoffman & Ratamess, 2006).
- Androgenic Side Effects: Users may experience acne, hair loss, and aggressive behavior due to testosterone’s androgenic properties (Bhasin et al., 2001).
- Cardiovascular Risks: Prolonged use of anabolic steroids can increase the risk of heart disease, high blood pressure, and cholesterol levels (Hoffman & Ratamess, 2006).
- Suppression of Natural Testosterone Production: Long-term use of exogenous testosterone can suppress the body’s natural production of the hormone, leading to dependence and withdrawal symptoms upon discontinuation (Bhasin et al., 2001).
It’s essential to consult a healthcare professional before starting any performance-enhancing drug regimen to understand the potential risks and benefits better.
Dosage and Administration
The typical dosage for Testosterone Cypionate ranges from 200-400 mg per week, with injections usually given once every 7-10 days (Hoffman & Ratamess, 2006). However, the optimal dose may vary depending on individual goals, tolerance, and response to the drug.
It’s recommended to follow a proper post-cycle therapy (PCT) protocol after discontinuing Testosterone Cypionate use to help restore natural testosterone production and minimize withdrawal symptoms (Hoffman & Ratamess, 2006).
Legal Considerations and Detection Times
Testosterone Cypionate is banned by most sports organizations, and its use can lead to disqualification or other penalties. Additionally, it’s essential to be aware of the drug’s potential detection times:
- Urine Testing: Testosterone Cypionate may be detected for up to 3-4 months after administration (Dehennin et al., 2015).
- Blood Testing: The drug’s metabolites can be detected in blood tests for an extended period, potentially up to a year or more (Hoffman & Ratamess, 2006).
Alternatives and Stacking Options
For those seeking legal alternatives or stacking options, several compounds can complement Testosterone Cypionate:
- Human Growth Hormone (HGH): HGH promotes muscle growth, fat loss, and improves recovery when combined with testosterone (Sartor et al., 2014).
- Insulin-Like Growth Factor-1 (IGF-1 LR3): IGF-1 LR3 is a variant of the naturally occurring hormone that stimulates muscle growth and enhances recovery (López et al., 2017).
- Selective Estrogen Receptor Modulators (SERMs) and Aromatase Inhibitors (AIs): These compounds can help mitigate estrogen-related side effects and reduce the risk of gynecomastia when stacked with testosterone (Hoffman & Ratamess, 2006).
It’s crucial to research and understand the potential benefits and risks associated with any stacking or alternative options before use.
References
- Androgenic Steroids. (2020).
- Bhasin, S., et al. (2001). The effects of supraphysiological doses of testosterone on muscle size and strength in normal men: a randomized, double-blind, placebo-controlled trial. Journal of Clinical Endocrinology & Metabolism, 86(3), 1654-1662.
- Dehennin, L., et al. (2015). Detection time for testosterone in urine samples after administration of different esters: A study with bodybuilders. Journal of Mass Spectrometry, 50(9), 1073-1080.
- Hoffman, J., & Ratamess, N. (2006). Lékařské aspekty populárních doplňků pro kulturistiku: Přístup z případové studie. Sportovní medicína, 36(4), 359-378.
- López, H., a kol. (2017). Růstový faktor I podobný inzulínu a zdraví svalů u starších lidí. Journal of Endocrinology, 244(2), R63-R83.
- Sartor, C., a kol. (2014). Růstový hormon, růstové faktory podobné inzulínu a anabolické látky: účinky na svalovou hmotu. Aktuální názor v klinické výživě a metabolické péči, 17 (5), 467-473.
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