GLP – SG

Long-acting GLP-1 receptor analog studied in metabolic signaling, incretin pathway activity, glucose regulation research, and appetite-related biological models. Intended strictly for laboratory research use.

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Description

What is GLP-SG?

GLP-SG (30 mg) is a synthetic peptide designed as a selective agonist of the glucagon-like peptide-1 ( ) receptor. It is used in laboratory research to investigate incretin signaling pathways and their role in endocrine communication, metabolic regulation, and energy balance.

As a   receptor agonist, GLP-SG enables researchers to study how activation of a single incretin pathway influences intracellular signaling cascades, receptor pharmacology, and metabolic processes across tissues such as the pancreas, liver, and adipose tissue.

GLP-SG is produced using controlled solid-phase peptide synthesis (SPPS) and purified through high-performance liquid chromatography (HPLC). Analytical verification methods, including mass spectrometry, confirm molecular identity and purity for laboratory research applications.

Note: This compound is intended strictly for laboratory research use only.

 


 

Chemical Identity

GLP-SG consists of a modified peptide backbone derived from the endogenous incretin hormone glucagon-like peptide-1 ( ), with targeted structural modifications designed to enhance receptor interaction and molecular stability in experimental systems.

The peptide incorporates a lipid side chain conjugated through a linker region, enabling reversible association with serum albumin. This structural feature influences peptide persistence and stability during laboratory assays and supports its function as a receptor-selective agonist in controlled research environments.

 


 

Research Applications

Incretin Signaling and Metabolic Pathways

GLP-SG is widely studied as a molecular tool for investigating incretin signaling and metabolic regulation. By selectively activating the   receptor, it allows researchers to examine receptor-specific signaling dynamics and pathway modulation in controlled experimental systems.

Energy Balance and Cellular Metabolism

Laboratory studies frequently evaluate how   receptor activation influences cellular processes associated with energy metabolism, nutrient utilization, and intracellular signaling. GLP-SG is used to analyze cyclic AMP signaling pathways and downstream metabolic regulation.

Endocrine and Glucose Signaling

In experimental models, GLP-SG is used to study signaling responses in pancreatic and endocrine cell systems, including intracellular signaling cascades, kinase activity, and transcriptional responses related to glucose-responsive hormone pathways.

Lipid Metabolism and Adipose Biology

GLP-SG is also used in laboratory research to investigate lipid metabolism and adipose tissue signaling. These studies examine how   receptor activation influences pathways involved in lipid storage, fatty acid metabolism, and inter-tissue signaling.

Receptor-Specific Pathway Analysis

Because GLP-SG selectively targets the   receptor, it serves as a useful comparison model for evaluating differences between single-receptor and multi-receptor incretin signaling systems in experimental research.

 


 

Mechanism of Action

GLP-SG functions as a selective agonist of the   receptor, a member of the class B G protein–coupled receptor (GPCR) family involved in metabolic signaling and endocrine regulation.

Target Engagement

GLP-SG binds to the   receptor, inducing conformational changes that activate intracellular signaling pathways associated with incretin hormone function.

Downstream Signaling

Receptor activation stimulates adenylate cyclase activity, increasing intracellular cyclic AMP levels and activating downstream signaling pathways such as protein kinase A and transcriptional regulators involved in metabolic signaling.

Cellular Effects

In laboratory studies, GLP-SG has been shown to influence intracellular signaling activity, gene expression patterns, and metabolic pathway regulation, making it a valuable research tool for studying   receptor pharmacology.

 


 

Comparison: Related Research Compounds

Property

GLP-SG

GLP-TZ

GLP-RT

Type

  receptor agonist

Dual incretin receptor agonist

Triple receptor agonist

Primary Targets

 

GIP +  

  + GIP + Glucagon

Mechanistic Focus

Single pathway signaling

Dual pathway signaling

Multi-pathway metabolic signaling

Research Use

Receptor-specific studies

Metabolic signaling studies

Advanced metabolic research

 


 

Chemical Properties

Molecular Formula

C187H291N45O59

Molecular Weight

4113.58 g/mol

CAS Number

910463-68-2

PubChem CID

56843331

Synonyms

  receptor agonist

View full compound data on PubChem →

 


 

Lab Safety & Handling

GLP-SG should be handled only by trained laboratory personnel following appropriate chemical safety protocols.

  • Store lyophilized material at −20°C in a dry, light-protected environment

  • Allow vial to reach room temperature before opening

  • Use sterile laboratory techniques during preparation

  • Avoid repeated freeze–thaw cycles

  • Store reconstituted solutions at 2–8°C

 


 

Frequently Asked Questions

Why is GLP-SG studied?
GLP-SG is used to investigate   receptor signaling and its role in metabolic and endocrine pathways.

How should it be stored?
Store lyophilized material at low temperatures and protect from moisture and light. Refrigerate after reconstitution.

What is its research use?
GLP-SG is used for studying incretin biology, receptor pharmacology, and metabolic signaling pathways.

 


 

Regulatory & Legal

This product is intended strictly for laboratory research and development use only. It is not approved for human or veterinary use and must not be introduced into humans or animals.

This material is not a drug, food, dietary supplement, or cosmetic and has not been evaluated by the FDA.


Sources & References

  1. View Compound Data
  2. GLP-1 receptor signaling research
  3. Incretin pharmacology overview

Additional information

volume

5mg

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