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Velocity
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    • PERFORMANCE
    • WELLNESS
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    • Peptide FAQ
    • Gift cards
    • DISCLAIMER

Velocity
Peptides

Velocity PeptidesVelocity PeptidesVelocity Peptides
  • Home
  • PERFORMANCE
  • WELLNESS
  • LONGEVITY
  • Contact
  • About
  • Peptide FAQ
  • Gift cards
  • DISCLAIMER

PERFORMANCE PEPTIDES

Peptides for muscle and workout performance are designed to support the body’s natural processes involved in building strength, enhancing recovery, and improving endurance. In research settings, certain peptides have been shown to promote lean muscle growth, increase protein synthesis, support fat metabolism, and reduce downtime between workouts. They’re often studied for their potential to help athletes train harder, recover faster, and perform at a higher level.

CJC-1295 + IPAMORELIN (CJC/IPA blend)

CJC-1295 and Ipamorelin are often combined as a peptide stack to synergistically boost natural growth hormone release. CJC-1295 is a GHRH analog that increases the amount of growth hormone the body produces, while Ipamorelin is a GHRP that signals the pituitary to release growth hormone in a controlled, gentle manner. Together, they can enhance fat loss, improve recovery, support lean muscle growth, and promote better sleep and overall repair, with typically minimal side effects when used appropriately.


  • Boosts natural growth hormone (GH) and IGF-1 levels
  • Enhances muscle development and increases lean body mass
  • Supports fat reduction and improved body composition when paired with proper nutrition and exercise
  • Accelerates recovery from workouts, injuries, and tissue stress
  • Promotes deeper, more restorative sleep for overall repair and wellbeing

TESAMORELIN + IPAMORELIN (TESA/IPA blend)

Tesamorelin and CJC-1295 are two growth hormone-releasing peptides that are often combined in research because they work through complementary mechanisms to stimulate the body's natural release of growth hormone. By blending these peptides, researchers are able to study whether their combined activity may provide a more consistent or enhanced growth hormone response compared with either peptide alone. This combination has become popular in laboratory research involving body composition, lean muscle development, recovery, metabolism, healthy aging, and IGF-1 signaling.


  • Combines two growth hormone-releasing peptides that are studied for their complementary mechanisms of action
  • Designed for research exploring the combined effects of supporting growth hormone signaling pathways
  • Investigated for potential effects on IGF-1 signaling and metabolic pathways
  • Commonly researched in areas related to body composition, muscle development, recovery, and healthy aging

TESAMORELIN

Tesamorelin is a synthetic peptide that stimulates the release of growth hormone by mimicking the body’s natural growth hormone–releasing hormone (GHRH). It’s FDA-approved primarily for reducing visceral adipose tissue (deep abdominal fat) in people with HIV-associated lipodystrophy, but it’s also used off-label for its potential to improve body composition, support metabolism, and enhance cellular repair. By increasing growth hormone and IGF-1 levels, Tesamorelin may promote fat loss while helping maintain lean muscle, with a generally favorable safety profile when used appropriately.


  • Tesamorelin is designed to trigger natural growth hormone release
  • Acts on GHRH receptors in the brain to elevate GH and IGF-1 levels
  • Clinically approved for treating excess visceral fat in HIV-related lipodystrophy
  • Used off-label for goals like reducing abdominal fat and improving metabolic balance
  • Can support lean muscle maintenance while promoting fat reduction

K-WOLVERINE (BPC-157 + TB-4 + KPV blend)

K-Wolverine is studied for its potential to support faster recovery and overall tissue repair. Research suggests it may help speed the healing of muscles, tendons, and ligaments while reducing inflammation and pain. It is also being explored for its ability to improve joint mobility, support gut health through components like BPC-157, and enhance blood flow to injured areas, which may aid nutrient and immune delivery. Overall, it’s commonly researched for its possible role in promoting quicker workout recovery and improved physical resilience.


  • Faster healing of muscles, ligaments, tendons 
  • May reduce inflammation and pain
  • Better joint flexibility and movement
  • Supports gut health (from BPC-157)
  • Improves blood flow to injuries (nutrient/immune delivery) 
  • May speed workout recovery

DEADPOOL (BPC-157, TB-4 & Cartalax blend)

Deadpool Blend is a research peptide combination featuring BPC-157, TB-4 (Thymosin Beta-4), and Cartalax, three peptides that are commonly studied for their potential roles in tissue support, cellular communication, and connective tissue research. By combining these peptides, researchers can explore how multiple pathways may work together in areas related to tissue maintenance, recovery processes, cartilage health, and overall cellular function..


  • Combines three research peptides studied for their complementary roles in tissue and cellular research
  • Investigated for pathways involved in connective tissue and musculoskeletal research
  • BPC-157 is studied for its role in cellular signaling and tissue repair pathways
  • TB-4 (Thymosin Beta-4) is researched for its involvement in cell migration, tissue remodeling, and recovery processes
  • Cartalax is studied for its potential role in cartilage maintenance and connective tissue research
  • Explored in laboratory studies involving joint, tendon, ligament, and soft tissue research.
  • Provides a multi-peptide approach for investigating cellular communication and regenerative pathways
  • Studied for applications related to healthy aging and maintaining tissue function

CARTALAX

Cartalax is a research peptide complex that has been studied for its potential role in supporting healthy cartilage and connective tissue. In laboratory studies, researchers have explored how Cartalax may help maintain cartilage cells and support the body's natural tissue repair processes. Because of these properties, it has become a peptide of interest in research involving joint health, mobility, and age-related cartilage changes.


  • Supports research involving healthy cartilage and connective tissue
  • Studied for its potential role in maintaining cartilage cell function
  • Investigated in laboratory settings for tissue repair and regeneration processes
  • Commonly researched for applications related to joint health and mobility
  • May play a role in cellular signaling associated with cartilage maintenance

BPC-157 (Body Protective Compound)

BPC-157 is studied for its potential to speed the healing of muscles, tendons, ligaments, and other soft tissues. Research suggests it may protect the stomach lining, support ulcer healing, and calm gut inflammation. It’s also being explored for its anti-inflammatory effects, possible benefits in nerve repair, and support for bone and joint recovery. Overall, BPC-157 is commonly researched for its ability to improve mobility and enhance recovery after injuries.


  • Helps heal muscles, tendons, ligaments faster
  • Protects stomach lining, helps ulcers, may calm gut inflammation 
  • Reduces inflammation and tissue damage
  • May help nerve repair and bone/joint recovery
  • Improves mobility after injuries

TB-4 (Thymosin Beta-4)

TB-4 is a naturally occurring peptide studied for its role in tissue repair, regeneration, and reducing inflammation. In research settings, it has been examined for its potential to accelerate healing of muscles, tendons, and skin while supporting new blood vessel formation and cell migration to injury sites. Scientists are also interested in its possible benefits for improving recovery, enhancing mobility, and promoting overall repair after physical stress or injury.


  • Naturally occurring peptide involved in tissue repair and regeneration
  • Studied for reducing inflammation and supporting healing
  • May accelerate recovery of muscles, tendons, and skin
  • Explored for promoting new blood vessel formation
  • May support cell migration to injury sites
  • Studied for improving mobility and overall recovery after physical stress or injury

KPV (Lysine- Proline- Valine)

KPV is a naturally occurring peptide studied for its strong anti-inflammatory and healing properties. In research settings, it has been examined for its potential to calm immune responses, reduce skin and gut inflammation, and support overall tissue repair. Scientists are particularly interested in KPV for its possible role in promoting healthier skin, improving gut balance, and aiding recovery from irritation or injury.


  • Naturally occurring peptide with strong anti-inflammatory properties
  • Studied for calming immune responses
  • May help reduce skin and gut inflammation
  • Explored for supporting overall tissue repair
  • May promote healthier skin and improved gut balance
  • Studied for aiding recovery from irritation or injury

SS-31

SS-31 (also called elamipretide) is a small peptide that may help cells make energy more efficiently by protecting the mitochondria — the tiny “power plants” inside each cell. When mitochondria get damaged or stressed, it can cause fatigue and inflammation. In research settings, SS-31 may help stabilize and repair these energy centers, which may lower oxidative stress and improve how well the cells function. Because of this, it’s being studied for benefits like better energy, faster muscle recovery, improved heart and brain health, and overall support for healthy aging. In simple terms, it helps cells run cleaner and stronger, which can increase energy.


  • May help cells produce energy more efficiently
  • May reduce oxidative stress and cellular damage
  • May improve energy levels and reduce fatigue
  • Explored for supporting muscle recovery, heart health, and brain function
  • Being studied for healthy aging and overall vitality

DISCLAIMER: THESE MATERIALS ARE FOR SCIENTIFIC LABORATORY RESEARCH USE ONLY. THEY ARE NOT FOR HUMAN OR ANIMAL CONSUMPTION, DIETARY SUPPLEMENTS, OR COSMETIC USE. 


All information listed above reflects data obtained from laboratory-based scientific studies and is for research and educational purposes only.

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