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BPC 157 Relating to Cartilage Repair

Cartilage plays an important role in joint functioning, but you can also find this tissue in other areas of your body. Due to its vital function, suffering cartilage damage can be inconvenient. It can lead to compromised optimal movement and other issues.

Is it possible to use BPC 157 for cartilage repair, and will it deliver any results? Check out our article and find out the vital things to know about this topic!

What Is Cartilage?

Cartilage is elastic tissue located in various parts of the human body. You can find it as a part of the structure of your nose, ears, rib cage, intervertebral discs, bronchial tubes, etc. Experts describe it as the primary connective tissue type in the human body. [1]

The fact that cartilage is elastic gives it flexibility. However, this tissue is tough and very resilient. The majority of the cartilage is made of water, and its percentage goes from 60% to 80%. A special substance mix called matrix forms the remaining part of the cartilage.

The matrix reminds of a gel by its structure. It includes multiple types of proteins, including collagens and non-collagenous proteins, and proteoglycans.

Main Cartilage Types

The three main cartilage types in the human body are:

  • Hyaline cartilage – you can find this in the air tube, nose septum, and the joints. The common name for this type is articular cartilage.
  • Fibrocartilage – these are menisci or special pads found in knees and other areas of the body. Their task is to decrease friction and dissipate bodyweight properly.
  • Elastic cartilage – you will find these in the air tube, nose, and ear section.

Hyaline cartilage is the most frequent type since it is present in the majority of joints throughout the human body. [2] It is shiny and smooth, which explains its origin from the word “hyali,” which means glass in Greek.

Joint Cartilage

Articular or hyaline cartilage found in joints is at the surfaces where bones meet. These places also form the joint itself. You will find the cartilage in the kneecap and the knee, as well as the femur’s bottom, and the tibia’s upper part.

Cartilage is important for joint function because it ensures optimal motion and shock absorption. It plays a crucial role in moving properly. Since the cartilage is slippery, it ensures the flexibility of the joints and allows bone gliding. Cartilages also absorb shock from walking, running, or other activities. Since bones impact other bones in the human body, the task of the cartilage is to cushion those impacts.

What Causes Cartilage Damage?

The most common cause of cartilage damage is wear and tear. The degeneration of the entire joints over time also causes cartilage to deteriorate. Additionally, the cartilage might have suffered an injury, and that is the reason why it cannot function properly. Conditions like ankylosing spondylitis, rheumatoid arthritis, and osteoarthritis can also lead to cartilage damage.

Although cartilage doesn’t cause pain because they contain no nerves, cartilage damage is related to pain. The friction between bones isn’t followed by optimal shock absorption, and that causes pain, discomfort, and even inflammation.

Cartilage repair can be a long-lasting process because it doesn’t contain blood vessels. The human body can only produce a restricted quantity of cartilage, and new cells grow in unexpected patterns.

Can BPC 157 Promote Cartilage Repair?

BPC stands short for a body protective compound. BPC 157 is nothing else than a peptide consisted of a chain of 15 amino acids. As a substance that protects the body, it has an overall positive effect on the healing processes. Many studies focus on analyzing the effects of these compounds on healing. [3] These studies confirm that BPC 157 has angiogenetic properties.

Angiogenesis is a process that involves forming new blood vessels. That formation secures transferring nutrients and oxygen throughout the body. It includes transferring them to tissues, and cartilage is a type of tissue.

A study conducted in 2013 in South Korea focuses on angiogenesis and its therapeutic opportunities. [4] The study pinpoints that angiogenesis promotes both wound healing and tissue repair. The tissue repair means that BPC 157 can promote cartilage repair and speed up the process of healing these tissues. The peptide activates the VEGF protein to stimulate angiogenesis and promote recovery.

Since BPC 157 is capable of accelerating wound healing, it can also help with any injuries to the cartilage. If a trauma is a reason behind cartilage damage, this peptide can be capable of speeding up the recovery.

Other Positive Effects of BPC 157 on Joint Repair

BPC 157 has an overall positive effect on joint repair. For example, it can play an important role in promoting tendon healing. Tendons keep the bones and muscles connected. [5] These structures ensure optimal joint movement, and their primary component is collagen. However, they are very prone to injuries, especially in athletes. Whether it is wear and tear or physical trauma, almost every third injury in athletes is related to tendon issues.

A promising study published in 2018 focused on using BPC 157 to heal the muscle-tendon junction. Although the researchers performed the study on rats, the results were encouraging. [6] The study proved that boosting VEGF and triggering angiogenesis can also repair tendons. These can heal together with damaged cartilage and speed up the process of recovering from joint issues.

BPC 157 has an all-around positive effect on wound healing and tissue repair throughout the human body. It is why you should consider adding this body protective compound to your nutrition plan. The good news is that you don’t have to bother with injections or capsules.

AgeForce designed a unique way of administering BPC 157 supplements. They utilize transdermal delivery and design patches you apply directly to your skin. These patches measure your daily dose accurately and ensure the timed release of the compounds. That way, the patches manage to achieve maximum absorption and improved effectiveness. If you are dealing with cartilage damage and are looking for something to accelerate the repair process, this might be the right solution!

References:

  1. https://cartilage.org/patient/about-cartilage/what-is-cartilage/
  2. https://www.arthritis-health.com/types/joint-anatomy/what-cartilage
  3. https://www.ncbi.nlm.nih.gov/pubmed/9403790
  4. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3745966/
  5. https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5865563/
  6. https://www.fasebj.org/doi/abs/10.1096/fasebj.2018.32.1_supplement.832.13

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