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Glow 70mg (Blend)

Glow 70mg (Blend)

 
常规价格 $460.00
常规价格 $460.00 促销价 $480.00
SAVE 4% 售罄

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Glow 70mg (Blend)

Glow 70mg (Blend)

常规价格 $460.00
常规价格 $460.00 促销价 $480.00
SAVE 4% 售罄

TB4, a synthetic analog of Thymosin Beta-4, exhibits multiple biological activities by regulating actin dynamics in the cytoskeleton, promoting cell migration, proliferation, and differentiation, and playing a key role in tissue repair and regeneration.
BPC 157, a synthetic peptide, demonstrates extensive biological functions, including tissue repair, neuroprotection, anti-ulcer, anti-inflammatory, and antioxidant effects, with notable efficacy in accelerating wound healing and supporting gastrointestinal and liver health.
GHK-Cu, a tripeptide copper chelate, displays a broad spectrum of biological activities such as antioxidant, anti-inflammatory, and collagen-synthesis promotion, offering significant benefits for skin health and tissue repair.
The combination of TB500, BPC157, and GHK-Cu presents synergistic advantages in wound healing, tissue repair, anti-inflammation, neuroprotection, and skin health and beauty.

 
The peptide will be provided as lyophilized powder to ensure maximum stability.
TB4
As a synthetic analog of Thymosin Beta-4 (Tβ4), TB4 is a polypeptide molecule with multiple biological activities. Its core mechanism of action is achieved by precisely regulating the dynamic balance between the polymerization and depolymerization of actin in the cytoskeleton. This molecule can significantly promote cell migration, proliferation, and differentiation, thereby playing a key regulatory role in the process of tissue repair and regeneration. In the repair of skin wounds, TB4 can accelerate wound closure, promote the orderly deposition of collagen, and inhibit the abnormal proliferation of pathological scar tissue. In the field of metabolic diseases, it alleviates inflammation-related pathological processes such as non-alcoholic fatty liver disease and pulmonary fibrosis by inhibiting the release of pro-inflammatory factors. In terms of cardiovascular protection, during the acute phase of myocardial infarction, TB4 can effectively protect surviving cardiomyocytes, activate the endogenous angiogenesis mechanism, optimize the myocardial microcirculation, and ultimately improve the cardiac pumping function. It is worth noting that TB4 exhibits high bioavailability, synergistic effects at multiple targets, and excellent biocompatibility. Its unique tissue-targeting property enables it to directly act on the microenvironment of damaged tissues. While achieving precise treatment, it significantly reduces the risk of systemic exposure, providing a theoretical basis and practical support for clinical applications.
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