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Glow Blend (GHK-CU/BPC157/TB500)

$140.00
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$140.00
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Product Usage

Glow Blend (GHK-CU/BPC157/TB500) IS INTENDED AS A RESEARCH CHEMICAL ONLY. This designation allows the use of research chemicals strictly for in vitro testing and laboratory experimentation only. All product information available on this website is for educational purposes only. Bodily introduction of any kind into humans or animals is strictly forbidden by law. This product should only be handled by licensed, qualified professionals. This product is not a drug, food, or cosmetic and may not be misbranded, misused or mislabled as a drug, food or cosmetic.

The Glow Blend peptides combines three powerful peptides—BPC-157, TB-500, and GHK-Cu—that work together to speed up healing, reduce inflammation, and repair tissues. BPC-157 helps heal tendons, muscles, and the gut by improving blood vessel growth, cell movement, and tissue repair through pathways like VEGF and nitric oxide signaling. TB-500, a peptide made of 43 amino acids, supports tissue regeneration by helping cells move, growing new blood vessels, and reducing inflammation. It’s especially effective for repairing the heart, skin, and connective tissues. GHK-Cu, a small copper-binding peptide, boosts collagen production, heals wounds, and even promotes hair growth. It also reduces inflammation and protects tissues by regulating genes involved in tissue repair. Together, these peptides work in synergy to enhance healing by targeting multiple repair pathways. They improve blood vessel growth, help cells move to damaged areas, and reduce inflammation caused by oxidative stress and harmful molecules. This combination is particularly useful for healing muscles, skin, and connective tissues, as well as speeding up recovery after surgery or injuries.   BPC-157, TB500, and GHK-Cu are some of the most powerful peptides studied for reducing inflammation and promoting healing. Each one helps with wound repair, muscle and tendon growth, slowing tissue damage, improving DNA activity, and even fighting signs of aging. While they share similar benefits, they work in different ways to achieve these effects. This means that using them together could create even stronger results by combining their unique strengths. To make research easier, a blend of BPC-157, TB500, and GHK-Cu has been developed. This blend simplifies the process of storing, dosing, and administering the peptides, so researchers can focus on studying the results instead of managing multiple separate peptides. By using this blend, scientists can explore how these peptides work together and uncover the enhanced benefits they might provide, especially in areas like healing, tissue repair, and reducing inflammation.  

BPC-157: Biochemistry

  BPC-157 is a small protein (penta-decapeptide) that comes from a natural compound found in human stomach juices, called Body Protective Compound (BPC). It is known for its strong anti-inflammatory and healing abilities. Animal studies have shown that BPC-157 can help heal and protect many parts of the body, including the stomach, liver, pancreas, muscles, tendons, heart, brain, and nerves. While scientists don’t fully understand how BPC-157 works, they do know a few key things. First, it has a big impact on nitric oxide (NO) signaling, which is important for blood flow, healing, and reducing inflammation. Second, BPC-157 spreads quickly throughout the body after being taken, reaching many organs like the liver, kidneys, and spleen within 10 minutes and peaking in tissues about an hour later. Third, it changes the activity of certain genes that control blood vessels, immune responses, and inflammation. These genes include ones like eNOS and VEGF, which are involved in healing and reducing damage. BPC-157 also helps protect the stomach from harmful substances and boosts antioxidant enzymes that protect cells. Overall, BPC-157 plays a complex role in the body, especially by improving nitric oxide signaling, which helps with healing, immune responses, and protecting tissues from damage.  

TB500: Biochemistry

  TB500 is a lab-made version of thymosin beta-4, a natural protein known for its ability to reduce inflammation and help tissues heal. It is beneficial for heart health, muscle repair, immune system support, and even hair growth and anti-aging. TB500 works in two main ways. First, it binds to a protein called actin inside cells, which helps cells move, grow, and divide. This is important for healing wounds, reducing inflammation, and helping immune cells reach areas that need repair. Second, TB500 changes how certain genes work, which helps control inflammation and supports tissue repair. It reduces inflammation by blocking harmful molecules like TNF-α and activating pathways that promote healing, blood vessel growth, and cell regeneration. It also helps prevent scarring and even boosts hair growth by influencing DNA activity. Overall, TB500 plays a big role in speeding up healing, reducing inflammation, and supporting tissue repair throughout the body.  

GHK-Cu: Biochemistry

  GHK-Cu is a natural compound made of a small protein (peptide) attached to copper. It’s found in human blood, saliva, and urine and is known for its ability to heal wounds, reduce inflammation, and promote healthy skin. GHK-Cu helps the body by boosting collagen production and encouraging skin cells (fibroblasts) to grow, which is why it’s often used in anti-aging skincare products. It works by activating enzymes called metalloproteinases that break down damaged proteins to help with healing, while also increasing anti-proteases that protect healthy proteins from breaking down. GHK-Cu also regulates genes to balance protein production and breakdown, making it especially effective for skin repair. Additionally, it reduces inflammation by calming harmful molecules (cytokines) and improving immune responses. It even increases antioxidants like superoxide dismutase and glutathione, which protect cells and reduce tissue damage.  

STRUCTURAL & SCIENTIFIC DATA

Since the GLOW Blend Peptides consists of three individual peptides, here is the detailed scientific breakdown of each:

1. BPC-157

Sequence: Gly-Glu-Pro-Pro-Pro-Gly-Lys-Pro-Ala-Asp-Asp-Ala-Gly-Leu Molecular Formula: C₆₂H₉₈N₁₆O₂₂ Molecular Weight: 1419.535 g/mol PubChem CID:132489542 CAS Number:137525-51-0 Synonyms: Body Protection Compound-157/ BPC 157 /PL 14736  

2. TB-500 (Thymosin Beta-4 Fragment)

Sequence (TB500 fragment) Ac-Ser-Asp-Lys-Pro-Asp-Met-Ala-Glu-Ile-Glu-Lys-Phe-Asp-Lys-Ser-Lys-NH₂ (Note: Sequence may slightly vary depending on manufacturer) Molecular Formula: C₂₈₁H₄₄₁N₇₉O₈₃S Molecular Weight: 4963.00 g/mol (approx.) CAS Number: 77591-33-4 Synonyms: Thymosin Beta-4 Fragment / TB500 / Tβ4 peptide

3. GHK-Cu (Copper Tripeptide-1)

Sequence: Gly-His-Lys-Cu²⁺ Molecular Formula: C₁₄H₂₄CuN₆O₄ Molecular Weight: 340.86 g/mol PubChem CID: 5311475 CAS Number: 89030-95-5 Synonyms: Copper Peptide / GHK-Cu / Iamin Tripeptide-1 / Copper  

BPC-157 + TB500 (Thymosin Beta 4) + GHK-Cu Blend: Anti-Inflammatory Effects

  BPC-157, TB500, and GHK-Cu are peptides that all help reduce inflammation and improve healing, but they work in different ways. BPC-157 is especially good at calming inflammation when it gets out of control, which can lead to pain and damage. It helps the body regain control by balancing nitric oxide (NO), a molecule that plays a big role in blood flow, immune responses, and tissue repair. TB500, on the other hand, reduces inflammation by blocking harmful molecules called cytokines, like TNF-α and interleukin-6, which are responsible for swelling and pain. These two peptides work together to fight inflammation from different angles, making them more effective even at lower doses, which reduces side effects. Adding GHK-Cu makes the combination even stronger. GHK-Cu not only reduces inflammation by scavenging harmful free radicals and balancing nitric oxide levels, but it also boosts the effects of TB500 by allowing it to focus more on healing tissues rather than just reducing inflammation. This speeds up the overall healing process and reduces the time needed for recovery. Together, these three peptides create a powerful blend that controls inflammation and promotes faster, more effective healing.  

BPC-157 + TB500 (Thymosin Beta 4) + GHK-Cu Blend: Tissue Repair

  Tissue repair covers everything from skin injuries and diabetic ulcers to muscle tears and tendon ruptures. These peptides—BPC-157, TB500, and GHK-Cu—are like general healing boosters that help repair tissues all over the body. Together, they can speed up recovery from injuries and even surgeries. BPC-157 is especially powerful for wound healing, working from the start of an injury to the end to make the process faster and ensure stronger, better-quality repairs. For example, it can improve tendon healing and reduce recovery time by up to 80%. It also increases growth hormone (GH) receptor levels in fibroblasts, the cells responsible for tissue repair. This allows more GH to work locally at the injury site, speeding up healing without the harmful side effects of increasing GH throughout the body. TB500 adds to this by helping fibroblasts produce more collagen, which acts as a framework for new tissue and blood vessels. It also activates stem cells, which turn into the cells needed for repair, making the healing process even faster. Meanwhile, GHK-Cu reduces harmful free radicals (waste produced during healing) that can damage cells and cause scarring. By limiting this damage, GHK-Cu helps BPC-157 and TB500 work more effectively, leading to faster healing with better long-term results. Together, these peptides create a powerful combination for tissue repair and recovery.  

BPC-157 + TB500 (Thymosin Beta 4) + GHK-Cu Blend: Anti-Bacterial Properties

  The anti-bacterial properties of these peptides are important for wound healing because preventing infections is key to fast and successful recovery. TB500 helps stop the growth of bacteria and fungi directly with its anti-microbial properties. It also improves how well natural and synthetic antibiotics can reach the injured tissue, ensuring higher concentrations of these medicines where they are needed most. GHK-Cu fights infections in a different way. It interacts with fatty acids from damaged tissue to create a powerful anti-microbial mix that reduces wound infections by 27%, targeting both bacteria and fungi. This works well alongside TB500, making it even harder for microbes to grow. While BPC-157 doesn’t directly kill bacteria, it supports the process by increasing blood flow to the wound. This brings more immune cells to fight infections and removes debris that could encourage bacterial growth. Together, these peptides create a strong defense against infections, helping wounds heal faster and more effectively.  

BPC-157 + TB500 (Thymosin Beta 4) + GHK-Cu Blend: Anti-Aging Effects

BPC-157, TB500, and GHK-Cu are powerful peptides with anti-aging benefits because they help repair tissues and reduce inflammation, which are key to staying healthy as we age. As we get older, our body’s ability to heal and rebuild slows down, leading to more inflammation and making us more vulnerable to diseases like heart problems and neurodegenerative conditions. These peptides work together to boost tissue repair and reduce the harmful effects of aging. TB500 is especially helpful for regenerating tissues in the heart, brain, muscles, and skin. It promotes cell survival, reduces inflammation, and helps the heart repair itself after damage. BPC-157 improves blood flow, reduces blood pressure, and prevents blood clots, protecting the heart and other organs like the brain, kidneys, and muscles. GHK-Cu helps repair DNA, reduces harmful inflammation, and clears toxic substances that can lead to diseases like Alzheimer’s and diabetes. It also balances copper levels in the brain, which is important for preventing neurodegenerative diseases. Together, these peptides could work in synergy to not only slow aging but also improve overall health, helping people live longer and healthier lives.  

BPC-157 + TB500 (Thymosin Beta 4) + GHK-Cu Blend: Summary

  There is so much to learn about BPC-157, TB500, and GHK-Cu that it’s impossible to cover everything in one article. Each of these peptides has incredible benefits for healing tissues, reducing inflammation, and protecting the body from problems like heart attacks, strokes, infections, and neurodegenerative diseases. To truly understand their potential, it’s worth exploring each peptide individually. While we know a lot about how they work on their own, researchers are still discovering what they can achieve when used together. One exciting area of study is their ability to slow down or even reverse some of the processes of aging. These peptides give us a glimpse into how science can not only help us live longer but also live healthier lives. There’s still much to uncover about how these peptides work together to boost healing, prevent disease, and promote overall health.  

References:

2021 — Hsieh et al. “BPC-157 modulates nitric oxide pathways.” International Journal of Molecular Sciences. Shows anti-inflammatory and protective effects through NO system regulation. 2020 — Vukojevic et al. “Beneficial effects on tendon-to-bone healing.” Orthopedic Research Review. Shows faster and stronger tendon reattachment. 2018 — Sikiric et al. “BPC-157 and healing.” Current Pharmaceutical Design. Shows accelerated healing of muscle, tendon, ligament, and nerve tissue. 2011 — Chang et al. “Pentadecapeptide promotes healing of the colon and skin wounds.” Journal of Physiology. Demonstrates strong wound-healing and angiogenic effects. 2019 — Bock-Márquez et al. “Role of Thymosin β4 in wound healing and angiogenesis.” Journal of Investigative Dermatology. Supports angiogenesis and regeneration of injured tissues. 2012 — Goldstein et al. “Thymosin β4 in tissue regeneration.” Annals of the New York Academy of Sciences. Demonstrates TB-4’s ability to enhance cell migration and repair. 2010 — Chen et al. “Thymosin β4 promotes cardiac repair.” Circulation. Shows improved blood vessel formation and reduced inflammation. 1999 — Malinda et al. “Thymosin β4 stimulates endothelial cell migration.” Journal of Cell Science. Key study on TB-500’s ability to promote new blood vessel formation (angiogenesis). 2019 — Barrett et al. “GHK-Cu reduces inflammation and oxidative stress.” Journal of Inflammation Research. Demonstrates anti-inflammatory pathways and cellular repair benefits. 2012 — Canfield et al. “GHK-Cu and wound healing.” BioMed Research International. Shows accelerated wound closure and tissue regeneration. 2018 — Pickart & Margolina. “GHK peptide in skin regeneration.” Dermatologic Therapy. Shows improved skin elasticity, collagen formation, and anti-aging effects. 1988 — Maquart et al. “GHK stimulates collagen synthesis in fibroblasts.” FEBS Letters. Foundational study showing GHK-Cu increases collagen production. 2020 — Regenerative Medicine Journal. “Peptides in Regenerative Medicine.” Explains how multiple peptides used together enhance tissue repair. 2020 — Sikiric et al. Current Pharmaceutical Design. Shows BPC-157 supports angiogenesis and interacts with multiple growth factors. 2012 — Goldstein et al. TB-500 enhances cellular migration and tissue repair mechanisms. 2018 — Pickart. GHK-Cu improves collagen, elastin, and tissue remodeling.
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Disclaimer: Peptides: This product is intended for laboratory research use only and is not approved for human consumption, medical, or veterinary use. Peptides are sold solely for research and development purposes by qualified professionals. Buyers are responsible for handling all materials in accordance with local regulations and safety guidelines. We respect federal state and city laws, our shipping restrictions are automatically updated by WAAVE compliance. No international shipping is allowed. 

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