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MGF (Mechano Growth Factor, IGF-1Ec) is a localized splice variant of IGF-1 that activates the MAPK/ERK pathway to induce myoblast proliferation and satellite cell recruitment. Unlike systemic IGF-1, MGF expands the myonuclei pool for long-term muscular adaptation.
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Description
MGF Mechano Growth Factor Satellite Cell Activation Muscle Research
About This Compound
MGF (Mechano Growth Factor) is a localized tissue-specific splice variant of the Insulin-like Growth Factor-1 (IGF-1) gene, formally designated as IGF-1Ec in human physiological models. Unlike systemic IGF-1 isoforms, this peptide is expressed primarily in response to mechanical stress or physical trauma, serving as a critical signal for the initiation of tissue repair and cellular hypertrophy.
Product Specifications
- CAS Number: 1146143-91-0 (Reference)
- Molecular Formula: C121H200N42O39
- Molecular Weight: 2868.3 Da
- Purity: >99.0% via HPLC-UV and Mass Spectrometry
- Appearance: Fine white sterile lyophilizate
Mechanism Overview
The biological activity of MGF is distinct from systemic growth factors due to its unique C-terminal peptide sequence. In the first phase, MGF induces myoblast proliferation by activating the MAPK/ERK signaling cascade within damaged tissue. Secondly, Mechano Growth Factor up-regulates M-cadherin expression to facilitate the recruitment of satellite cells to the site of injury. Finally, the IGF-1Ec variant activates myogenic precursor expansion without triggering the early differentiation typically associated with IGF-1 DES. This mechanism effectively increases the pool of available myonuclei, enhancing the long-term potential for muscular adaptation and hypertrophy. Unlike PEG-MGF, the native MGF peptide possesses a rapid clearance rate, necessitating localized application for maximum bio-activity.
Experimental Outcomes
- Satellite Cell Expansion: Users report significant increases in localized muscle fullness through the activation of dormant myogenic stem cells.
- Accelerated Tissue Repair: Published research indicates faster recovery times from micro-tears and acute connective tissue strains.
- Localized Hypertrophy: Cross-study analysis suggests that localized applications lead to site-specific improvements in muscle density.
- Neural Protection: Research models have observed potential neuroprotective qualities during high-intensity stress phases.
- Synergistic Capacity: Often utilized alongside BPC 157 or TB500 to address complex musculoskeletal injuries.
Key Points:
MGF represents a specialized research tool for investigating localized myogenic repair and satellite cell recruitment through non-systemic IGF-1 splice signaling.
Frequently Asked Questions
What is the half-life of MGF?
The native MGF peptide has a very short half-life of approximately 5-7 minutes before being degraded by local proteases.
How should MGF be stored after mixing?
After reconstitution, the peptide must be refrigerated at 2-8 degrees Celsius and used within approximately one week for best results.
Is MGF different from IGF-1 LR3?
Yes, MGF focuses on satellite cell proliferation, while IGF-1 LR3 promotes systemic growth and direct cell differentiation across the body.
What liquid is used for reconstitution?
Researchers typically use Bacteriostatic water or sterile water, although a mild acetic acid solution may be used for initial dissolution.
Can MGF be used with other peptides?
Users frequently combine MGF with compounds like BPC 157 to enhance localized recovery and support comprehensive soft tissue repair protocols.
These statements have not been evaluated by the Food and Drug Administration. This product is not intended to diagnose, treat, cure, or prevent any disease. Consult a qualified healthcare professional before use.
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