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GLP-3 RT 10mg: 3rd Gen Weight Loss Research Peptide (COA - Second Image)

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GLP-3 RT is an investigational triple-agonist peptide designed to simultaneously activate GLP-1, GIP, and Glucagon receptors. This unique multi-receptor activity has made GLP-3 RT one of the most studied next-generation metabolic research peptides in preclinical and early clinical development models.

It is researched primarily for its effects on energy balance, metabolic regulation, and adipose tissue signaling.

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LAB RECORD // PRODUCT SPECIFICATION

Research Profile

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A concise product record covering the stated research format and supporting batch documentation.

01 / RESEARCH SPECIFICATIONS
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02 / DOCUMENTATION

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RESEARCH USE DESIGNATION

For qualified laboratory research, in-vitro testing, and analytical applications only. Not for human or animal consumption or consumer use.

GLP-3 RT is an investigational triple-agonist peptide designed to simultaneously activate GLP-1, GIP, and Glucagon receptors. This unique multi-receptor activity has made GLP-3 RT one of the most studied next-generation metabolic research peptides in preclinical and early clinical development models.

It is researched primarily for its effects on energy balance, metabolic regulation, and adipose tissue signaling.

Scientific Background

GLP-3 RT is a synthetic 39-amino-acid peptide engineered to act as a potent agonist of:

GLP-1 receptor – involved in glucose regulation, appetite signaling, and gastric emptying

GIP receptor – associated with insulin release and metabolic sensitivity

Glucagon receptor – influences energy expenditure and fat mobilization

By engaging all three pathways simultaneously, GLP-3 represents a new class of triple-hormone receptor agonists.

Research Areas of Interest

All information below is strictly intended for laboratory, scientific, and in-vitro research discussion only.

1. Metabolic Regulation

GLP-3 RT is studied for its ability to influence:

Energy balance

Glucose handling

Insulin sensitivity

Hormonal signaling in metabolic tissues

2. Body-Weight Research Models

Due to its multi-receptor activity, research models evaluate potential effects on:

Appetite signaling

Energy expenditure

Lipolysis and fat mobilization

3. GLP-1 + GIP + Glucagon Synergy

GLP-3 RT’s triple-agonist mechanism allows researchers to assess:

Combined incretin activity

Crosstalk between glucagon and insulin pathways

Multi-pathway metabolic switching

4. Adipose & Liver Tissue Studies

Investigative models explore potential roles in:

Fatty-acid oxidation

Hepatic glucose output

Adipose tissue remodeling

5. Next-Generation Incretin Research

GLP-3 RT is part of a broader category of advanced incretin-based research peptides including:

GLP-2 (dual GLP-1/GIP agonist)

Cagrilintide (amylin analogue)

Semaglutide (GLP-1 agonist)

GLP-3 RT’s triple-agonist profile makes it a unique tool for studying combination hormone activity.

Molecular Profile

Peptide: GLP-3 RT

Type: GLP-1/GIP/Glucagon Triple-Receptor Agonist

Sequence Length: 39 amino acids (synthetic analogue)

Form: Lyophilized powder

Purity: ≥ 98% (HPLC tested)

Exact full amino-acid sequence is typically proprietary in pharmaceutical development and not publicly displayed by peptide vendors.

Storage & Stability

Store lyophilized peptide at –20°C

Protect from light, heat, and moisture

Reconstituted solutions should be handled using standard laboratory procedures

Each 3 mL vial is formulated with 10 mg of highly purified (>99%) lyophilized GLP-3 RT, produced in sterile environments that meet research-grade standards. Prime Peptides validates every batch through third-party laboratory testing to ensure exact molecular composition, stable peptide structure, and consistent results suitable for a wide range of experimental designs

GLP-3 RT is an investigational triple-agonist peptide designed to simultaneously activate GLP-1, GIP, and Glucagon receptors. This unique multi-receptor activity has made GLP-3 RT one of the most studied next-generation metabolic research peptides in preclinical and early clinical development models. It is researched primarily for its effects on energy balance, metabolic regulation, and adipose tissue signaling.
Lab Report

Research Use Disclaimer

Research Use Only: All products offered are intended strictly for laboratory research purposes. Products are not for human consumption and are not intended for diagnostic, therapeutic, or medical use. By purchasing from our website, customers confirm they are qualified researchers or laboratories and understand the intended research-use designation.

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