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Tamoxifen API (Active Pharmaceutical Ingredient) is the pure, bulk powder form of the drug Tamoxifen Citrate, a key selective estrogen receptor modulator (SERM) used mainly to treat and prevent hormone-receptor-positive breast cancers, working as an anti-estrogen by blocking estrogen's effects on cancer cells.
INN / Common name: Tamoxifen citrate
CAS No.: 54965-24-1
Molecular formula: C₂₈H₃₂N₂O·C₆H₈O₇ (citrate salt)
Molecular weight: ~563.64 g/mol
Breast cancer treatment
For estrogen receptor–positive (ER+) breast cancer in pre- and postmenopausal women.
Used in adjuvant therapy (after surgery) or treatment of metastatic disease.
Breast cancer prevention
In high-risk women, tamoxifen reduces the risk of developing breast cancer.
Other estrogen-related conditions (off-label, limited)
Certain gynecomastia cases in men
Fertility treatments (rare off-label use in women to induce ovulation)
Mechanism of action (brief)
Tamoxifen blocks estrogen receptors in breast tissue, preventing estrogen from promoting tumor growth.
In other tissues (bone, uterus), it may act as a partial agonist, producing estrogen-like effects.
Identification
IR spectroscopy: Conforms to reference spectrum
UV / HPLC: Retention time matches certified reference standard
Melting point: Within reference range (~140–144 °C for citrate salt)
Assay (Potency)
Typically 98.0–102.0% (on anhydrous basis)
Oxymetholone raw active pharmaceutical ingredient (API) is used to produce medications for various medical conditions, primarily anemias and muscle-wasting syndromes, as well as for illicit performance enhancement in sports.
INN: Oxymetholone
CAS No.: 434-07-1
Molecular formula: C₂₁H₃₂O₃
Molecular weight: ~332.48 g/mol
White to off-white crystalline powder
Practically insoluble in water; soluble in certain organic solvents
USES : Bodybuilding, muscle enhancement, or performance enhancement
Cosmetic or recreational use
Oxymetholone binds to androgen receptors inside target cells (e.g., bone marrow, muscle).
The drug–receptor complex moves into the cell nucleus.
There, it binds to specific DNA sequences (androgen response elements), changing gene expression.
Metandienone (also known as Methandrostenolone or Dianabol) is a synthetic anabolic–androgenic steroid (AAS) derived from testosterone.
Metandienone (Dianabol) — API Specification
Name: Metandienone
Synonyms: Methandrostenolone, Dianabol
Chemical class: Anabolic–androgenic steroid (AAS)
CAS Number: 72-63-9
Molecular Formula: C₂₀H₂₈O₂
Molecular Weight: ~300.44 g/mol
Description: 17-alpha-alkylated anabolic steroid API
Assay / Purity
Typical pharmaceutical API quality expectations:
Assay (potency): 97.0% – 103.0%
Related substances / impurities: Within specified limits
Residual solvents: Compliant with ICH Q3C guidelines
Heavy metals: Within pharmacopeial limits
Metandienone enters androgen-responsive cells (e.g., skeletal muscle)
It binds to the androgen receptor (AR) in the cytoplasm
The hormone–receptor complex translocates into the cell nucleus
It binds to androgen response elements (AREs) on DNA
USES :
Muscle wasting conditions
Severe weight loss
Osteoporosis
Recovery from major illness or surgery
Oxandrolone is a synthetic anabolic–androgenic steroid (AAS) derived from dihydrotestosterone (DHT).
The RAW API form is a pharmaceutical active ingredient
Name: Oxandrolone
Chemical class: Anabolic–androgenic steroid (AAS), DHT derivative
CAS Number: 53-39-4
Molecular Formula: C₁₉H₃₀O₃
Molecular Weight: ~306.44 g/mol
Description: 17-alpha-alkylated oral anabolic steroid API
Appearance
White to off-white crystalline powder
Odorless or nearly odorless
Practically insoluble in water
Where approved by regulators, oxandrolone API has been used to manufacture prescription medicines for:
Weight gain after severe weight loss due to:
Surgery
Chronic infection
Severe trauma
Catabolic states (muscle wasting)
Burn injury recovery (to help preserve lean body mass)
Certain genetic growth disorders
Oxandrolone is prohibited in competitive sports, so the API is used as:
Reference standards
Calibration materials
Analytical validation compounds
Oxandrolone enters target cells such as skeletal muscle and bone
It binds to the androgen receptor (AR) in the cytoplasm
The oxandrolone–AR complex translocates into the cell nucleus
.
Testosterone Cypionate Powder | 99.26% USP35 Test Cyp Raw SteroidCATEGORY AND TAGS:
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CAS No.: 58-20-8
M.F.: C27H40O3
M.W.: 412.6
Assays: 99.26%
Reference Standard: USP35
Appearance: White Or White-off Crystalline Powder
Testosterone Cypionate promotes sex drive, fat loss, helps with gaining and maintaining lean muscle mass, increases bone density, and may even protect against heart disease.
Testosterone Cypionate can increase the levels of another anabolic hormone, IGF-1 in muscle tissue providing even more anabolic activity.
Testosterone Cypionate has the amazing ability to increase the activity of satellite cells. These cells play an active role in repairing damaged muscle.
Testosterone binds to the androgen receptor to promote androgen receptor dependent mechanisms for muscle gain and fat loss.
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Generic Name :- Kisspeptin-10
Receptor for metastin (kisspeptin-54 or kp-54), a C-terminally amidated peptide of KiSS1. KiSS1 is a metastasis suppressor protein that suppresses metastases in malignant melanomas and in some breast carcinomas without affecting tumorigenicity. The metastasis suppressor properties may be mediated in part by cell cycle arrest and induction of apoptosis in malignant cells. The receptor is essential for normal gonadotropin-released hormone physiology and for puberty. The hypothalamic KiSS1/KISS1R system is a pivotal factor in central regulation of the gonadotropic axis at puberty and in adulthood. The receptor is also probably involved in the regulation and fine-tuning of trophoblast invasion generated by the trophoblast itself. Analysis of the transduction pathways activated by the receptor identifies coupling to phospholipase C and intracellular calcium release through pertussis toxin-insensitive G(q) proteins
1. Stimulation of Gonadotropin-Releasing Hormone (GnRH)
Kisspeptin-10 stimulates the hypothalamus to release GnRH, which then promotes the secretion of:
Luteinizing hormone (LH)
Follicle-stimulating hormone (FSH)
This cascade is crucial for puberty onset, ovulation, and fertility regulation.
2. Fertility Research
Used in assisted reproductive technologies (ART) and IVF studies to promote natural hormonal responses.
Can potentially reduce the need for synthetic hormones like hCG.
3. Hypogonadism and Delayed Puberty
Investigated as a treatment for hypogonadotropic hypogonadism (low LH/FSH due to low GnRH).
May help restore reproductive function in affected individuals.
4. Polycystic Ovary Syndrome (PCOS)
Studied for its role in correcting LH/FSH imbalances in PCOS patients.
5. Diagnostic Use
Used to test pituitary function or the integrity of the hypothalamic-pituitary-gonadal (HPG) axis.
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FoxO4-DRI = A powerful senolytic research peptide
Acts via FoxO4-p53 disruption, promoting senescent cell apoptosis
Highly promising in aging, neurodegeneration, and regenerative biology fields
🔬 1. Anti-Aging & Longevity Research
Clears senescent cells, which accumulate with age and cause inflammation and tissue dysfunction.
By removing these cells, FoxO4-DRI may slow biological aging and restore tissue function (based on animal studies).
Shown to extend healthspan (not necessarily lifespan) in mice.
🧪 2. Cellular Rejuvenation
Helps promote tissue regeneration and stem cell activation.
May reverse signs of aging at the cellular level, especially in tissues like muscles, kidneys, and the brain.
🧠 3. Cognitive Health
Studies in mice showed memory improvement and neural rejuvenation in aged animals after FoxO4-DRI treatment.
Potential use in research for neurodegenerative diseases like Alzheimer’s or age-related cognitive decline.
🩺 4. Senolytic Therapy Research
Works by disrupting the interaction between FoxO4 and p53, which causes senescent cells to undergo apoptosis (programmed cell death).
May be combined in research with other senolytics like Dasatinib and Quercetin.
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GHK-Cu (Copper Peptide, 50mg) is a well-known regenerative peptide complex made of glycyl-L-histidyl-L-lysine bound to a copper ion. It naturally occurs in the human body and plays a key role in tissue repair, skin regeneration, inflammation control, and hair growth.
When provided in 50mg lyophilized vials, GHK-Cu is typically used for cosmetic and therapeutic purposes — both topical and injectable (research use only).
💎 1. Skin Regeneration & Anti-Aging
Stimulates collagen and elastin production
Reduces fine lines, wrinkles, and hyperpigmentation
Increases skin firmness and elasticity
Promotes wound healing and reduces scarring
💇 2. Hair Growth Stimulation
Increases size of hair follicles and improves hair thickness
Shown to regrow hair in androgenetic alopecia (male/female pattern baldness)
Often used in microneedling treatments or topical serums
🧫 3. Tissue Repair & Wound Healing
Enhances the body's healing response at cellular level
Promotes angiogenesis (new blood vessel formation)
Reduces inflammation and oxidative stress
🧠 4. Anti-Inflammatory & Antioxidant Effects
Modulates gene expression to suppress pro-inflammatory pathways
Helps protect against oxidative damage in tissues and organs
🧪 5. Stem Cell Activation
Enhances activity of skin and bone marrow stem cells
Supports regeneration in injured or aging tissues
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TB-500 (10mg)
It is a first-in-class peptide candidate that promotes the following*: Endothelial (blood vessels) cell differentiation Angiogenesis (growth of new blood cells from pre-existing vessels) in dermal tissues Keratinocyte migration Collagen deposition; and Decreases inflammation.
TB-500 (10 mg) is a synthetic version of a naturally occurring peptide called Thymosin Beta-4, specifically designed to support tissue regeneration, healing, and inflammation reduction. It is widely used in sports medicine, biohacking, and research protocols for injury recovery and performance support.
Name: TB-500 (Thymosin Beta-4 Acetate, synthetic fragment)
Structure: 43 amino acid peptide (active portion of full Thymosin Beta-4)
Form: Lyophilized powder, typically in 10 mg vials for ease of multi-dose use
TB-500 (10 mg)
🧠 1. Tissue Repair and Regeneration
Promotes healing of muscles, tendons, and ligaments
Facilitates angiogenesis (formation of new blood vessels) to speed tissue recovery
Improves cell migration and differentiation to injury sites
🦴 2. Joint, Ligament & Tendon Recovery
Used for chronic joint pain, arthritis, or tendonitis (e.g., elbow, shoulder, knee)
Often combined with BPC-157 for synergistic musculoskeletal healing
💪 3. Muscle Recovery and Performance
Enhances muscle growth, flexibility, and strength restoration
Reduces inflammation and helps repair overtrained or injured muscle tissue
🧬 4. Hair Growth (Experimental)
May support hair follicle regeneration and increase hair growth phase duration
Sometimes used in off-label protocols for hair loss
🩹 5. Wound Healing
Speeds dermal healing of cuts, abrasions, and post-surgical wounds
Increases keratinocyte and endothelial cell movement to wound site
💊 Primary Uses of TB-500 (10 mg)
🧠 1. Tissue Repair and Regeneration
Promotes healing of muscles, tendons, and ligaments
Facilitates angiogenesis (formation of new blood vessels) to speed tissue recovery
Improves cell migration and differentiation to injury sites
🦴 2. Joint, Ligament & Tendon Recovery
Used for chronic joint pain, arthritis, or tendonitis (e.g., elbow, shoulder, knee)
Often combined with BPC-157 for synergistic musculoskeletal healing
💪 3. Muscle Recovery and Performance
Enhances muscle growth, flexibility, and strength restoration
Reduces inflammation and helps repair overtrained or injured muscle tissue
🧬 4. Hair Growth (Experimental)
May support hair follicle regeneration and increase hair growth phase duration
Sometimes used in off-label protocols for hair loss
🩹 5. Wound Healing
Speeds dermal healing of cuts, abrasions, and post-surgical wounds
Increases keratinocyte and endothelial cell movement to wound site
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