IGF-1 LR3 Peptide
IGF-1 LR3 Peptide
$58.00 $92.00Price range: $58.00 through $92.00 Select options

IGF-1 LR3 Peptide

Price range: $58.00 through $92.00

For Research Use Only. Not for human use. High-purity IGF-1 LR3 (Long R³ Insulin-Like Growth Factor-1), an 83-amino-acid recombinant analog featuring arginine substitution at position 3 and a 13-amino-acid N-terminal extension (MFPAMPLSSLFVNG), supports advanced pre-clinical investigations into prolonged IGF-1 receptor signaling, satellite cell activation, and anabolic pathway modulation. Investigators utilize this compound to examine reduced IGFBP binding, extended half-life, and enhanced potency in muscle hypertrophy, tissue repair, and metabolic models. National Science Labs provides IGF-1 LR3 exclusively for laboratory research exploring IGF-1R-mediated mechanisms, myoblast proliferation, and regenerative responses in controlled experimental settings.

For Research Use Only — Not for Human Consumption
 

Free shipping on all orders over $200 (US)

  • 99% Purity – Third-Party Tested
  • Fast & Reliable Shipping
Guaranteed Checkout

Researchers apply IGF-1 LR3 to investigate its structural modifications that dramatically decrease affinity for IGF-binding proteins, resulting in prolonged plasma half-life and sustained receptor activation compared to native IGF-1. Pre-clinical observations in rodent overload and injury models indicate enhanced satellite cell proliferation, increased muscle cross-sectional area, and promotion of hyperplasia and hypertrophy through augmented Akt/mTOR signaling.

This analog facilitates examination of extended anabolic signaling duration, localized and systemic regenerative effects, and interactions with myostatin pathways in muscle physiology research.

Scientific Overview of IGF-1 LR3 Applications

Pre-clinical models highlight IGF-1 LR3’s enhanced receptor engagement:

  • Reduced binding to IGFBPs and 3–10× increased potency at the IGF-1 receptor, leading to sustained downstream Akt/mTOR pathway activation in skeletal muscle systems.
  • Promotion of muscle hyperplasia (new fiber formation) and hypertrophy (fiber size increase) in overload and injury rodent models.
  • Enhancement of satellite cell proliferation and delayed differentiation, supporting prolonged regenerative phases in muscle damage paradigms.
  • Support for glucose and fatty acid uptake, with inhibition of myostatin expression in metabolic and anabolic research contexts.
  • Neuroprotective effects in brain injury models through upregulation of BDNF and related survival signaling.
  • Examination of tissue-specific IGF-1 signaling contributions in sarcopenia, muscular dystrophy, wound healing, and performance physiology studies.

For further details on IGF-1 analogs, receptor signaling, and regenerative pathways in pre-clinical research, refer to the Peptide Sciences or About Peptides sections.

Why Investigators Select National Science Labs IGF-1 LR3

National Science Labs manufactures IGF-1 LR3 under stringent GMP-compliant protocols to ensure batch-to-batch consistency and reliability for pre-clinical experiments. Independent third-party testing verifies each lot for:

  • Purity ≥99.9% by HPLC and MS
  • Structural identity confirmation via mass spectrometry (full sequence and modifications)
  • Complete Certificate of Analysis (CoA) documentation provided per batch

For Research Use Only. This product is supplied exclusively for in vitro and in vivo pre-clinical research by qualified investigators. Statements about this peptide have not been evaluated by the FDA.

Initiate Your IGF-1 LR3 Research Protocol

Source high-purity IGF-1 LR3 from current limited batches to ensure optimal stability and performance in IGF-1 receptor and anabolic signaling studies.

Additional information

Weight.125 lbs
Dimensions9 × 7 × .5 in
Size: No selection

0.1mg, 1mg

Keep lyophilized peptides sealed in their original vial, protected from light and humidity, and store at -4°F or colder for optimal long-term stability in research settings; short-term refrigeration at around 39°F suffices for immediate use within weeks, though freezer storage maximizes integrity across extended research timelines.