The Mod GRF (1-29) + Ipamorelin 10mg Blend by West Lab Chemical is a dual growth hormone secretagogue formula designed for advanced endocrine, metabolic, and regenerative research.
Combining Mod GRF (1-29) (a potent GHRH analog) with Ipamorelin (a selective GHSR agonist), this peptide blend models natural pulsatile GH release with exceptional precision, providing an ideal tool for studying pituitary stimulation, growth hormone regulation, and peptide synergy.
For Laboratory Research Use Only. Not for Human or Veterinary Use.
Packaging: 10mg Vial
Composition: Mod GRF (1-29) + Ipamorelin
Purity: ≥ 98% (HPLC Verified)
Grade: Analytical / Research
What is Mod GRF (1-29) + Ipamorelin?
This two-peptide complex has been developed to support research on growth hormone secretion and pituitary gland response. It is favored for its balanced, natural GH pulse release and low side-effect profile, offering cleaner results compared to older peptide combinations.
1. Mod GRF (1-29)
Mod GRF (1-29), also known as CJC-1295 without DAC, is a modified GHRH analog that increases GH secretion by acting directly on the pituitary.
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Promotes natural GH pulse amplitude
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Supports cell regeneration and IGF-1 modulation studies
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Improves metabolic response modeling
2. Ipamorelin
Ipamorelin is a selective ghrelin receptor (GHSR) agonist known for clean, targeted GH stimulation without significant influence on prolactin or cortisol.
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Mimics natural GH-releasing patterns
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Enhances metabolic balance and recovery studies
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Exhibits excellent receptor selectivity
When combined, Mod GRF (1-29) and Ipamorelin create a dual-pathway GH release model, making this blend highly effective for endocrine, recovery, and anti-aging research applications.
Key Features
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🧬 Dual GH Secretagogue Blend (GHRH + GHSR Activation)
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💎 ≥98% purity (HPLC verified)
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🔬 Supports pituitary and metabolic function research
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🌡️ Stable lyophilized peptide for long-term storage
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⚗️ Designed for controlled GH pulse studies
Mechanism of Action
This blend works through dual GH secretion pathways:
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Mod GRF (1-29) stimulates the GHRH receptor, triggering a controlled GH release from the anterior pituitary.
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Ipamorelin activates ghrelin receptors (GHSR), amplifying the GH pulse amplitude and improving the body’s natural feedback loop.
Together, they simulate physiological GH pulses, making this combination ideal for studies on GH regulation, metabolic activity, and recovery mechanisms.
Potential Research Applications
(For research purposes only. Not approved for human use.)
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Growth hormone release studies
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Pituitary function and receptor activation
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Metabolic and recovery research
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IGF-1 synthesis and signaling pathways
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Anti-aging and tissue repair modeling
Specifications
| Property | Details |
|---|---|
| Product Name | Mod GRF (1-29) + Ipamorelin (Blend) |
| Total Content | 10mg per vial |
| Composition | Mod GRF (1-29) + Ipamorelin |
| Purity | ≥ 98% (HPLC Verified) |
| Form | Lyophilized Powder |
| Grade | Analytical / Research Only |
| Storage | 2–8°C (Refrigerated) |
| Appearance | White to off-white crystalline powder |
Storage & Handling
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Store at 2°C – 8°C
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Protect from moisture and direct sunlight
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Reconstitute using sterile or bacteriostatic water (for laboratory use only)
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Avoid repeated freeze-thaw cycles
Why Buy from West Lab Chemical
West Lab Chemical is a globally trusted supplier of high-purity peptides, SARMs, and research compounds. Every batch undergoes strict quality control to ensure maximum purity, consistency, and scientific accuracy.
Our Key Advantages:
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≥ 98% purity verified via HPLC & Mass Spectrometry
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COA and MSDS provided with every order
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GMP-compliant peptide synthesis facility
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Secure temperature-controlled shipping
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Expert support for research institutions and laboratories
Precision. Purity. Performance. — That’s the West Lab Chemical Standard.
Purity Verification
| Parameter | Result |
|---|---|
| Purity (HPLC) | ≥ 98% |
| Heavy Metals | < 10 ppm |
| Endotoxin | < 0.05 EU/mg |
| Solvent Residue | < 0.1% |
Legal Disclaimer
This product is strictly for laboratory research purposes only.
Not intended for human or animal consumption.
Researchers must follow institutional safety protocols and comply with local regulations.

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