BPC-157 5mg
$ 59.50 USD
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BPC-157 5mg

$ 59.50 USD

BPC-157, or Body Protection Compound 157, is a synthetic peptide composed of 15 amino acids. It is derived from a protective protein found in the human gastric juice and has been widely studied for its potential therapeutic properties. BPC-157 is known for its regenerative capabilities, with research suggesting its role in promoting healing across various tissues, including muscles, tendons, ligaments, and even the gastrointestinal (GI) tract. This peptide has gained attention in scientific and medical communities due to its wide-ranging biological effects and potential applications in treating injuries, chronic conditions, and inflammatory diseases.

Ingredients:

Description:

What Is BPC-157?

BPC-157, short for Body Protection Compound-157, is a derivative of body protection compound (BPC). BPC is a protein found naturally in the human digestive tract. It plays a significant role in protecting the lining of the gastrointestinal tract from damage, promoting healing, and encouraging blood vessel growth.

Synthetic BPC-157, a pentadecapeptide comprising 15 amino acids isolated from the much larger BPC protein, has been found to retain many of the healing properties of its parent molecule. In particular, BPC-157 has been shown to have effects on:

BPC-157 Peptide Research

1. BPC-157 and Wound Healing

The natural function of BPC in the GI tract is to maintain the integrity of the mucosal barrier that protects underlying tissues from the harmful actions of gastric acid, bile, and other compounds necessary for digestion and absorption of nutrients from food. At least part of this function is mediated through the recruitment of fibroblasts. BPC-157 has a dose-dependent effect on the spread of fibroblasts in culture and in vivo, causing the cells to both proliferate and migrate faster

2. Vascular Growth and Collateralization

BPC-157 is a potent angiogenic factor, increasing the rate at which endothelial cells (the cells that line blood vessels) proliferate and grow. Research in rats shows that the peptide substantially increases the rate of collateral blood vessel growth in the setting of ischemia. While this effect has been primarily observed in the GI tract, there is evidence for similar benefit in cardiovascular, neurological, and muscle tissues, suggesting that BPC-157 may be used as both a therapy in the setting of stroke and heart attack as well as a probative peptide for understanding how to promote healing following ischemic injury. Studies in chicken embryos suggest that at least part of the mechanism by which BPC-157 promotes vascular growth is through the stimulation of VEGFR2, a cell surface receptor active in the nitric oxide signaling pathway. VEGFR2 is thought to play an important role in endothelial cell growth, proliferation, and longevity.

Cell culture research has effectively demonstrated vascular “running” secondary to BPC-157 administration. Vascular running is the process by which vessels grow toward an area of injury or around an area of vascular occlusion to reestablish blood flow to distal tissue and protect cell function. This particular function of BPC-157 may make it possible to develop an effective oral treatment for slow-growing arterial occlusions, such as are seen in atherosclerotic heart disease. This area of research may one day render unnecessary surgical interventions such as stenting, coronary artery bypass grafting, and more.

3. BPC-157 and Tendon Healing

Given its roles in fibroblast recruitment and blood vessel growth, it should come as no surprise that BPC-157 has shown positive findings in animal models of tendon, ligament, bone, and other connective tissue injuries. Tendon and ligament injuries are slow to heal, in large part, due to poor blood supply in these tissues. Poor blood supply slows the rate at which fibroblasts and other wound-healing cells can reach the area of injury and, ultimately, restricts the overall level of repair that can take place. Both in vitro and in vivo research involving rat tendons has shown that BPC-157 promotes collateralization and boosts fibroblast density in the setting of tendon, ligament, and bone injury. This research indicates that BPC-157 is more effective than bFGF, EFG, and VGF hormones in promoting healing in these tissues

Experiments using FITC-phalloidin staining have revealed that BPC-157 is a potent stimulator of F-actin formation in fibroblasts. F-actin is critical to cell structure and function, playing an important role in cell migration. Analysis via western blotting indicates that BPC-157 increases phosphorylation of paxillin and FAK proteins, which are critical proteins in the cell migration pathway

4. Antioxidant Properties

Research in rats has shown that BPC-157 can neutralize certain oxidative stress markers like nitric oxide and malondialadehyde (MDA). This makes BPC-157 a powerful antioxidant, a property of the peptide that is further supported by research showing that it can reduce the production of reactive oxygen species in the gastrointestinal tract. Research investigating whether modified lactococcus lactis bacteria can deliver BPC-157 to the GI system shows that the bacteria increases levels of the peptide dramatically in cell culture

5. BPC-157 and Drug Side Effects

Often, the limiting factor in medical pharmaceutical use is side effects. NSAIDs, like ibuprofen, for instance, cannot be used for long periods of time because they increase gastric bleeding as well as the risk for heart attack. The ability to counteract side effects while leaving desired effects intact is a holy grail of modern medical research as it would improve therapeutic benefits for a number of drugs. BPC-157 has been found to counteract side effects of NSAIDs, medications used in psychiatric conditions, and a number of heart medications.

6. BPC-157 and Bees

Colony collapse disorder (CCD) is a syndrome in which entire colonies of honey bees experience rapid decline and, eventually, complete destruction. Causes of the condition are not fully defined, but at least part of the problem can be contributed to an infection in honey bee guts by the fungus Nosema ceranae. By supplementing the food that honey bees eat with BPC-157, researchers have shown a reduction in the damage the fungus causes in honey bee GI tracts and a concomitant increase in hive survival rates

Future BPC-157 Research

BPC-157 is under active investigation in a number of cell culture and animal models. The peptide shows a great deal of promise not just as therapeutic agent for promoting wound healing and regulating vascular growth, but as a tool for investigating these processes to better understand their control. Research using BPC-157 has the potential to shed a great deal of light on angiogensis in particular, a process that is not only critical to wound healing, but that plays extensive roles in growth, cancer development, and embryogenesis.

BPC-157 exhibits minimal side effects, moderate oral and excellent subcutaneous bioavailability in mice. Per kg dosage in mice does not scale to humans. BPC-157 for sale at Peptide Sciences is limited to educational and scientific research only, not for human consumption. Only buy BPC-157 if you are a licensed researcher.

Storage Instructions:

All of our products are manufactured using the Lyophilization (Freeze Drying) process, which ensures that our products remain 100% stable for shipping 3-4 months reconstituted (mixed with bacteriostatic water) to maintain stability. After reconstitution, the peptides will remain stable for up to 30 days.

Lyophilization is a unique dehydration process, also known as cryodesiccation, where the peptides are frozen and then subjected to low pressure. This causes the water in the peptide vial to sublimate directly from solid to gas, leaving behind a stable, crystalline white structure known as lyophilized peptide. The puffy white powder can be stored at room temperature until you're ready to reconstitute it with bacteriostatic water.

Once peptides have been received, it is imperative that they are kept cold and away from light. If the peptides will be used immediately, or in the next several days, weeks or months, short-term refrigeration under 4C (39F) is generally acceptable. Lyophilized peptides are usually stable at room temperatures for several weeks or more, so if they will be utilized within weeks or months such storage is typically adequate.

However, for longer term storage (several months to years) it is more preferable to store peptides in a freezer at -80C (-112F). When storing peptides for months or even years, freezing is optimal in order to preserve the peptide’s stability.

How to use

A Comprehensive Guide to Using

BPC-157 5mg

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Administer the precise dose of medication.

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Allow it to dissolve into a soft powder.

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Brush for 2 minutes with a wet toothbrush.

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Spit, smile, and repeat twice daily for dental and environmental health.

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Clinically Tested Peptides

Backed by science and tested for purity and efficacy.

No Fillers or Binders

Pure peptides with zero unnecessary additives.

Pharmaceutical-Grade Quality

Manufactured under strict cGMP standards.

Precision Formulated

Each peptide is developed for targeted performance.

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Emily K.
High-Quality Products and Reliable Service
(5.0)

Biogen Peptides has been my go-to source for research-grade peptides. The quality and consistency are unmatched, and the customer service is always top-notch.

Dr. Michael R.

Fast Shipping and Consistent Quality
(5.0)

Excellent purity and fast shipping! Biogen Peptides is truly dedicated to supporting research professionals with top-quality products.

Mark R.
Superior Quality and Consistency
(5.0)

Biogen Peptides consistently delivers top-quality products. The purity of their peptides has enhanced the reliability of my research outcomes.

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