Pro Flex Extenda Bond + Blue Mini Tabs
Description
Extenda Pro Flex Extenda Bond is a medical grade tape with a 2-4+ week bond offering an alternative to strong liquid adhesives..
Extenda-Bond has been a favorite in the industry for quite some time. You probably know it by its distinctive holes which allow the scalp to breathe. As part of our maximum wear category (2-4+ weeks), It’s one of our longest holding tapes.
You can expect a 4 week hold from this acrylic adhesive. It also has a very dull finish that is virtually invisible under the unit. It’s flexibility makes it extremely comfortable to wear.
- Clear, double sided tape.
- Perforated holes to allow your skin to breath.
- Remains intact when exposed to heat or moist conditions.
- Instructions included.
- Patch test recommended.
For best results use with scalp protector.
36 mini-tabs per pack.
See our adhesives comparison chart for more details
Also available in 12″ strips – 4 packs & 10 packs
FREE SHIPPING WITH THIS ITEM!
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TB 500 and BPC 157 are two peptides that have gained significant attention in the fields of sports medicine, rehabilitation, and regenerative biology due to their remarkable ability to accelerate tissue repair, reduce inflammation, and enhance overall recovery. Their popularity is rooted not only in anecdotal reports from athletes and bodybuilders but also in a growing body of scientific literature that explores how these molecules interact with cellular signaling pathways to promote healing at both the macro and micro levels. In this comprehensive overview, we will explore their mechanisms of action, optimal dosing strategies, and the array of benefits that can be harnessed by clinicians and performance athletes alike. Introduction to TB 500 and BPC 157 TB 500 is a synthetic version of thymosin beta‑4, a naturally occurring peptide found in high concentrations in platelets and various tissues throughout the body. 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Muscle Regeneration and Strength Gains Studies involving rodent models of muscle contusion have demonstrated increased satellite cell activation and myofiber hypertrophy after TB 500 administration. This translates into improved muscle tone, endurance, and overall functional performance when combined with a structured training program. Neuroprotective Properties Emerging evidence suggests that TB 500 may aid in the recovery of peripheral nerves following injury by promoting Schwann cell proliferation and remyelination. While research is still evolving, early results are promising for patients recovering from nerve compression or traumatic neuropathies. Wound Healing Enhancement TB 500’s ability to stimulate endothelial cells and fibroblasts accelerates epithelialization in both superficial skin wounds and deeper surgical incisions. This can reduce scar formation and improve cosmetic outcomes, an advantage particularly relevant for athletes who value both function and appearance. 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Their unique mechanisms of action allow them to address multiple facets of healing—from cellular migration and angiogenesis to anti‑inflammatory modulation—making them versatile options for both clinical practitioners and athletes seeking rapid yet safe recovery. As research continues to unfold, these peptides may well become integral components of evidence‑based protocols designed to restore tissue integrity while minimizing downtime and enhancing overall performance.
fields of sports medicine, rehabilitation, and regenerative biology due to their remarkable ability to accelerate tissue repair, reduce inflammation, and enhance overall recovery.
Their popularity is rooted not only in anecdotal reports from athletes and bodybuilders but also in a growing body of scientific literature that explores how these molecules interact with cellular signaling pathways to promote healing at both the macro
and micro levels. In this comprehensive overview, we will explore their mechanisms of action, optimal
dosing strategies, and the array of benefits that can be harnessed by clinicians and performance athletes alike.
Introduction to TB 500 and BPC 157
TB 500 is a synthetic version of thymosin beta‑4, a naturally occurring peptide found in high concentrations in platelets and various tissues throughout the body.
The peptide is composed of 43 amino acids and functions primarily as a signaling molecule that orchestrates cell migration, angiogenesis, and anti-inflammatory responses.
In contrast, BPC 157 (Body Protective Compound 157) is derived from a segment of human gastric
juice protein known for its stability in harsh acidic environments.
This fragment contains 15 amino acids and has been shown to interact with multiple
growth factors such as VEGF, EGF, and TGF‑beta, thereby stimulating
cellular proliferation and tissue remodeling.
Both peptides are typically administered via intramuscular or subcutaneous injection, although oral formulations have been explored experimentally.
Their therapeutic potential spans a wide spectrum of conditions—from tendon ruptures
and ligament sprains to chronic pain syndromes and even organ injury such as gastric ulcers or liver
damage. Importantly, the safety profile for both compounds appears favorable in short‑term studies, with
minimal adverse events reported when used within recommended dosing ranges.
Optimizing Healing: TB 500 and BPC 157 Dosage Guidelines
The precise dosage of TB 500 and bpc 157 what is it 157 can vary depending on the
nature of the injury, the individual’s metabolic
rate, and the desired therapeutic outcome. Below are general guidelines derived from both preclinical data and practitioner experience:
TB 500
Initial loading phase: Administer 2–3 milligrams per week for
4 to 6 weeks. This dose is usually divided into two injections of
1–1.5 mg each, spaced at least 48 hours
apart.
Maintenance phase: After the loading period, reduce the dose to 0.5–1 mg once a week or twice monthly.
Some practitioners prefer an alternate‑day regimen during acute injury
phases to support rapid tissue remodeling.
Route of administration: Subcutaneous injections are preferred for deeper tissues such as ligaments and tendons,
whereas intramuscular injection can be used for muscle
injuries.
BPC 157
Loading dose: 0.5–1 milligram per day for the first 7 days following
injury or surgery. This dose is typically split into two daily administrations
of 0.25–0.5 mg.
Prolonged therapy: Continue with a maintenance dose of 0.2–0.4
mg daily for up to 30 days, depending on the severity and progression of healing.
Oral versus injection: While oral BPC 157 has shown some efficacy in animal models,
subcutaneous delivery is often favored for faster systemic absorption, especially when targeting large or
deep tissue defects.
It is crucial that individuals seeking these peptides consult a qualified medical professional to tailor the dosage schedule to their
specific circumstances. The recommended ranges above are general guidelines and should
not replace personalized medical advice.
Benefits of TB 500
Accelerated Tendon and Ligament Repair
TB 500 has been shown to enhance fibroblast migration, increase collagen synthesis, and
promote angiogenesis within damaged connective tissues.
These effects collectively reduce the healing time for
common sports injuries such as Achilles tendonitis or ACL sprains, often leading
to a return to activity in weeks rather than months.
Anti‑Inflammatory Action
By modulating cytokine production—specifically decreasing pro‑inflammatory mediators like TNF‑alpha and IL‑6—TB 500
can alleviate pain and swelling at the injury site.
This anti‑inflammatory profile is especially valuable for athletes who need to manage chronic overuse injuries without relying on nonsteroidal anti‑inflammatories that may
impair tissue repair.
Muscle Regeneration and Strength Gains
Studies involving rodent models of muscle contusion have demonstrated increased satellite cell activation and myofiber hypertrophy after TB 500 administration. This translates
into improved muscle tone, endurance, and overall functional performance when combined with
a structured training program.
Neuroprotective Properties
Emerging evidence suggests that TB 500 may aid in the
recovery of peripheral nerves following injury by promoting Schwann cell
proliferation and remyelination. While research is still evolving, early results are promising
for patients recovering from nerve compression or traumatic neuropathies.
Wound Healing Enhancement
TB 500’s ability to stimulate endothelial cells and fibroblasts accelerates
epithelialization in both superficial skin wounds and deeper surgical incisions.
This can reduce scar formation and improve cosmetic outcomes, an advantage particularly relevant for
athletes who value both function and appearance.
Cardiovascular Support
By encouraging new vessel growth and reducing oxidative
stress within cardiac tissue, TB 500 has shown potential benefits in ischemic heart models.
Although clinical data in humans remain limited, this cardiovascular support could be advantageous for individuals with a
history of cardiac strain due to high‑intensity training.
Compatibility with Other Therapies
TB 500 can be combined safely with other regenerative treatments such as platelet‑rich plasma or stem cell
injections. The synergistic effect may lead
to superior outcomes compared to either modality alone, providing a comprehensive approach to tissue restoration.
In conclusion, TB 500 and BPC 157 represent powerful tools in the modern arsenal for
injury prevention, acute repair, and long‑term functional optimization. Their unique mechanisms of action allow them to address
multiple facets of healing—from cellular migration and angiogenesis to
anti‑inflammatory modulation—making them versatile options for
both clinical practitioners and athletes seeking rapid yet safe recovery.
As research continues to unfold, these peptides may well become integral components of evidence‑based
protocols designed to restore tissue integrity while minimizing
downtime and enhancing overall performance.
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