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IGF-1 LR3 + MOTS-C Blend

IGF-1 LR3, or Insulin-like Growth Factor 1 Long R3, is a more potent version of IGF-1. It's engineered to have a longer half-life in the body, enhancing its effectiveness in promoting muscle growth and development.

IGF-1 LR3 + MOTS-C Blend

Regular price $199.00
Unit price
Muscle Mass
Metabolic Health

98% Pure Peptides

Manufactured in the United States

Research suggests

Increased Muscle Growth

Enhanced Muscle Recovery

Improved Body Composition

Increased Protein Synthesis

Anti-aging effects

Disclaimer: Some products on this site are for Research, Development use only. Products are not for human consumption of any kind. The statements made within this website have not been evaluated by the US Food and Drug Administration. The statements and the products of this company are not intended to diagnose, treat, cure or prevent any disease.

IGF-1 LR3, or Insulin-like Growth Factor 1 Long R3, is a more potent version of IGF-1. It's engineered to have a longer half-life in the body, enhancing its effectiveness in promoting muscle growth and development.

Unlock the Power of IGF-1 LR3 + MOTS-C: Improve Your Physique & Longevity

Discover How Our IGF-1 LR3 + MOTS-C Blend Can Revolutionize Your Fitness Journey & Lifestyle


Muscle Development

IGF-1 LR3 is known for its potent effects on muscle growth. By promoting cellular growth and proliferation, it's a popular choice among athletes and bodybuilders seeking to increase muscle mass.


Fat Burning

IGF-1 LR3 assists in the metabolism of fats, potentially aiding in reducing body fat and improving overall body composition, a key goal for many fitness enthusiasts.


Protein Synthesis

By stimulating amino acid uptake in muscle cells, IGF-1 LR3 enhances protein synthesis, crucial for muscle building and repair, making it a desirable supplement for those looking to boost their gains.


Metabolic Flexibility

MOTS-C has garnered attention for its ability to enhance metabolic flexibility, a key factor in overall metabolic health. Metabolic flexibility refers to the body's capacity to efficiently switch between using carbohydrates and fats as sources of energy based on the availability of nutrients and energy demands. Research suggests that MOTS-C can optimize this metabolic switch, ensuring that the body utilizes the most appropriate energy source for its needs. This adaptability is vital for maintaining energy balance, especially under varying dietary and exercise conditions. By promoting metabolic flexibility, MOTS-C may contribute to better weight management and metabolic health.


Insulin Sensitivity

One of the well-established benefits of MOTS-C is its role in improving insulin sensitivity. Insulin sensitivity is a measure of how effectively the body responds to insulin, a hormone that regulates blood sugar levels. Impaired insulin sensitivity is a hallmark of insulin resistance, a precursor to type 2 diabetes. MOTS-C works by facilitating the uptake of glucose into cells, helping to regulate blood sugar levels more efficiently. This improvement in insulin sensitivity can reduce the risk of developing insulin resistance and may offer potential therapeutic benefits for individuals with metabolic disorders or those at risk of type 2 diabetes.


Fat Utilization

MOTS-C's ability to promote the use of fats for energy has generated significant interest, especially in the context of weight management. Research suggests that MOTS-C can enhance the body's utilization of fatty acids for energy production, potentially aiding in the breakdown and utilization of stored fat. This effect aligns with increased energy expenditure and may have implications for weight loss efforts. While further studies are needed to fully understand the mechanisms behind MOTS-C's influence on fat utilization, its potential in supporting weight management is an intriguing avenue of research that has captured the attention of scientists and health enthusiasts alike.

The science of IGF-1 LR3

IGF-1 LR3, or Insulin-like Growth Factor 1 Long Arginine 3, is a synthetic variant of the naturally occurring IGF-1 hormone, a protein similar in structure to insulin. It plays a crucial role in childhood growth and continues to have anabolic effects in adults. The LR3 variant of IGF-1 has been modified to avoid binding to proteins in the human body, thereby increasing its active lifespan and effectiveness. This modification enhances its potency and longevity in the body compared to natural IGF-1. IGF-1 LR3 works by binding to the IGF-1 receptor, which is present on many types of cells throughout the body, particularly muscle cells. Upon binding, it stimulates cellular growth (hypertrophy), promotes the uptake of amino acids (the building blocks of proteins), and aids in muscle recovery and regeneration. Additionally, IGF-1 LR3 can influence the metabolism of fats and sugars in the body, making it a compound of interest not only for muscle growth but also for its potential impacts on overall metabolic health. However, it's important to note that while the benefits of IGF-1 LR3 for muscle development and repair are supported by its biological action, clinical studies to fully understand its effects, safety profile, and potential long-term risks are still needed.

The science of MOTS-C

MOTS-c, a novel mitochondrial-derived peptide, represents a significant breakthrough in our understanding of the interplay between mitochondria and cellular metabolism. Encoded within the mitochondrial DNA, MOTS-c has emerged as a key regulator of metabolic functions. It primarily acts by modulating metabolic pathways to enhance insulin sensitivity and optimize energy utilization. This involves the activation of AMPK (AMP-activated protein kinase), a crucial enzyme in energy homeostasis, which facilitates the uptake and utilization of glucose and fatty acids in the cells. Additionally, MOTS-c influences the expression of genes related to metabolism, contributing to improved metabolic flexibility. This means it can help the body efficiently switch between burning carbohydrates and fats as energy sources, a critical factor in maintaining energy balance, especially under varying dietary and exercise conditions. Its role in promoting fat utilization over glucose is particularly notable, as it aligns with increased energy expenditure and potentially improved metabolic health. The potential of MOTS-c extends beyond just metabolism; emerging research suggests possible applications in areas like aging, obesity, type 2 diabetes, and exercise performance. However, much of the research is still in the preliminary stages, and a deeper understanding of MOTS-c's mechanisms of action and long-term effects is crucial to fully harness its potential in therapeutic applications.

GetFitMed IGF-1-LR3 & MOTS-C

Certificate of Analysis (COA)


Talk to a doctor

For personalized health advice and to understand the suitability of peptides for individual conditions, consulting with a healthcare professional is recommended.

Frequently asked questions about IGF-1 LR3

Any medical treatment or supplement should be discussed with a healthcare provider for personalized advice.