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Ipamorelin 2mg ×10 + MOD-GRF (1-29) 2mg ×10 (Bundle)

Ipamorelin 2mg ×10 + MOD-GRF (1-29) 2mg ×10 (Bundle)

CAS: 170851-70-4 / 86168-78-7

Ipamorelin 2mg ×10 and MOD-GRF (1-29) 2mg ×10 by BioPeptide is a high-purity, research-grade peptide combination developed for advanced laboratory studies in growth hormone signaling, receptor coordination, and endocrine pathway analysis. This bundle combines Ipamorelin (CAS 170851-70-4) with MOD-GRF (1-29) no DAC (CAS 86168-78-7), supplied in multiple 2mg vials to support precise, repeatable research workflows. Synthesized using advanced peptide chemistry and purified to ≥99% HPLC, this bundle is trusted by research institutions across Europe and the United States.

$890.00

Products will arrive in a lyophilized (powder) form for maximum stability
1

Research Use Only

Research Peptides

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Peptide Blends

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  • BPC-157 + TB-500 Blend 10mg
  • BPC-157 + TB-500 Blend 20mg
  • BPC-157 + TB-500 Blend 30mg
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  • CJC-1295 + GHRP-6 Blend 10mg
  • CJC-1295 + Hexarelin Blend 10mg
  • CJC-1295 + Ipamorelin + GHRP-2 Blend
  • CJC-1295 + Ipamorelin Blend 10mg
  • Fragment Modified GRF + Ipamorelin Blend 12mg
  • GHRP-2 5mg ×5 + CJC-1295 5mg ×5 (Bundle)
  • GHRP-2 5mg ×5 + Ipamorelin 5mg ×5 (Bundle)
  • GHRP-2 5mg ×10 + MOD GRF (1-29) 5mg ×10 (Bundle)
  • GHRP-2 5mg ×10 + Ipamorelin 5mg ×10 (Bundle)
  • GHRP-6 5mg ×5 + CJC-1295 5mg ×5 (Bundle)
  • GHRP-6 5mg ×10 + MOD-GRF (1-29) 5mg ×10 (Bundle)
  • GHRP-6 5mg ×10 + Ipamorelin 5mg ×10 (Bundle)
  • Hexarelin 2mg ×10 + MOD-GRF (1-29) 2mg ×10 (Bundle)
  • Hexarelin 5mg ×10 + MOD-GRF (1-29) 5mg ×10 (Bundle)
  • Ipamorelin 2mg ×10 + MOD-GRF (1-29) 2mg ×10 (Bundle)
  • MOD-GRF (1-29) + GHRP-2 Blend 10mg
  • MOD-GRF (1-29) + Hexarelin Blend 10mg
  • MOD-GRF (1-29) + Ipamorelin + GHRP-2 Blend
  • MOD-GRF (1-29) + Ipamorelin Blend 10mg
  • Repair & Recovery – 60 Capsules

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Research Use Only

All BioPeptide products are strictly for laboratory research use.

Research Overview

The Ipamorelin and MOD-GRF (1-29) research bundle enables scientists to study growth hormone signaling through two complementary biological pathways.

Ipamorelin interacts with the growth hormone secretagogue receptor (GHS-R), while MOD-GRF (1-29) stimulates the pituitary growth hormone-releasing hormone receptor.

Studying these peptides together allows researchers to investigate signaling coordination, receptor interactions, and endocrine system regulation.

This combination is widely used in laboratory research exploring hormone release dynamics and peptide-receptor communication.

Ipamorelin 2mg ×10 + MOD-GRF (1-29) 2mg ×10 (Bundle) image 1

Scientific Background

Growth hormone regulation involves complex signaling interactions between hypothalamic peptides, pituitary receptors, and systemic feedback pathways.

Ipamorelin is studied for its selective activation of the ghrelin receptor, providing a focused model for GH secretagogue research.

MOD-GRF (1-29) is a modified fragment of growth hormone-releasing hormone commonly used in research to stimulate pituitary GH release.

Together these peptides allow researchers to study integrated hormonal signaling networks and receptor pathway interactions.

Mechanistic Research Perspective

  • Ghrelin receptor activation research
  • Growth hormone–releasing hormone pathway studies
  • Endocrine signaling coordination analysis
  • Peptide-receptor interaction modeling
  • Hormonal pathway integration research

Primary Research Applications

Growth Hormone Signaling Studies: Researchers use this peptide combination to analyze GH secretion patterns, receptor activation timing, and signaling efficiency.

Endocrine Coordination Research: The bundle enables investigation of how ghrelin and GHRH pathways interact within endocrine signaling networks.

Receptor Interaction Studies: Laboratories examine receptor cross-talk between GHS-R and GHRH receptors in controlled experimental environments.

Cellular & Molecular Biology Research: Cell-based assays utilize these peptides to analyze intracellular signaling cascades and transcriptional responses.

In-Vitro Research Models: The peptide bundle is widely incorporated into non-clinical research models exploring hormonal signaling pathways.

Molecular Characteristics

  • Ipamorelin CAS: 170851-70-4
  • MOD-GRF (1-29) CAS: 86168-78-7
  • Ipamorelin Molecular Weight: ~711.9 g/mol
  • MOD-GRF (1-29) Molecular Weight: ~3357 g/mol
  • Form: Lyophilized peptide powders
  • Purity: ≥99% HPLC verified

Storage & Stability Recommendations

  • Store lyophilized peptides at −20°C
  • Avoid repeated freeze-thaw cycles
  • Protect from moisture and light exposure
  • Use sterile laboratory solvents for reconstitution
  • Maintain aseptic laboratory handling procedures

Solubility & Reconstitution Options

  • Sterile bacteriostatic water
  • Sterile saline solutions
  • Laboratory-grade buffered solutions
  • Peptide assay buffers
  • Biochemical research solvents

Technical Specifications

product Name

Ipamorelin 2mg ×10 + MOD-GRF (1-29) 2mg ×10

brand

BioPeptides

purity

≥99% (HPLC verified)

unit Size

2mg ×10 vials each peptide

form

Lyophilized powders

synthesis

Solid-Phase Peptide Synthesis (SPPS)

analytical

HPLC and Mass Spectrometry

classification

Research Use Only (RUO)

Analytical Validation & Quality Assurance

  • High-performance liquid chromatography purity testing
  • Mass spectrometry molecular weight verification
  • Structural integrity analysis
  • Batch-to-batch consistency testing
  • Peptide stability assessment

Frequently Asked Questions

They activate complementary growth hormone pathways, allowing researchers to investigate coordinated GH signaling and endocrine feedback mechanisms.

Ipamorelin selectively activates the ghrelin receptor, enabling focused studies of growth hormone secretagogue signaling.

MOD-GRF (1-29) is a shortened analog used in research to study receptor activation and GH pathway dynamics.

Yes. The bundle is widely used in in-vitro experiments investigating receptor signaling and endocrine pathway behavior.

CAS numbers ensure precise chemical identification, traceability, and reproducibility in laboratory documentation.

Academic institutions, biotechnology laboratories, and independent research facilities studying endocrine and receptor signaling.

Reconstituted peptides should be aliquoted, refrigerated or frozen appropriately, and protected from repeated freeze-thaw cycles.

BioPeptides provides high-purity peptides, verified CAS documentation, and laboratory-grade packaging suitable for scientific research.

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