IGF-1 LR3 1mg
$104.99 – $800.00
IGF-1 LR3 (Insulin-Like Growth Factor-1 Long R3)
IGF-1 LR3 is a synthetic analog of Insulin-Like Growth Factor-1 (IGF-1) with an extended half-life, designed to promote enhanced muscle growth, repair, and metabolic regulation. Its modified structure prevents binding to certain proteins in the body, increasing its biological activity and effectiveness.
Description
IGF-1 LR3 is a bioengineered peptide that mimics the natural functions of IGF-1, a hormone involved in growth and development. Its primary mechanism of action revolves around stimulating cellular proliferation and differentiation, particularly in muscle, bone, and connective tissues. Due to its extended half-life, IGF-1 LR3 remains active in the body longer than endogenous IGF-1, making it highly effective for research applications in muscle growth and metabolic regulation.
Key Features
- Enhanced Muscle Growth: Stimulates satellite cell activation, leading to increased muscle hypertrophy and repair.
- Cellular Regeneration: Promotes growth and regeneration of various tissues, including muscles, bones, and organs.
- Improved Nutrient Uptake: Enhances glucose uptake and protein synthesis, optimizing energy utilization and recovery.
- Increased Fat Metabolism: Supports lipolysis, aiding in the reduction of body fat while preserving lean muscle mass.
- Long Half-Life: Its engineered design ensures prolonged activity, increasing its efficacy compared to regular IGF-1.
Research Focus
- Muscle Growth and Recovery: Evaluating its potential in muscle hypertrophy, injury recovery, and age-related muscle loss (sarcopenia).
- Metabolic Disorders: Exploring its role in glucose regulation and insulin sensitivity for diabetes research.
- Tissue Regeneration: Studying its applications in regenerative medicine for wound healing and organ repair.
- Performance Optimization: Investigating its effects on physical endurance, strength, and recovery in athletes (for research purposes only).
Safety and Usage
This compound is intended solely for research purposes and is not approved for human consumption. It must be handled by qualified professionals in controlled laboratory environments. Misuse or improper handling may result in unintended side effects, including hypoglycemia or hormonal imbalances. Researchers are advised to follow all applicable guidelines and protocols for safe experimentation.
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