Product Overview

Liraglutide (CAS 204656-20-2, C₁₇₂H₂₆₅N₄₃O₅₁, MW 3751.20 g/mol) is a 31-amino-acid synthetic analogue of human GLP-1(7-37) sharing 97% sequence homology with the native incretin hormone. Two engineered modifications account for its extended pharmacology: (1) a Lys-for-Arg substitution at position 34 (Arg34Lys), and (2) acylation of Lys26 with a C16 palmitic (hexadecanoyl) fatty acid through a γ-glutamic acid (γ-Glu) spacer. This fatty-acid appendage enables non-covalent self-association and reversible albumin binding, delaying DPP-IV-mediated degradation and renal clearance to yield a ~13-hour (once-daily) half-life. As a GLP-1 receptor (GLP-1R) agonist, liraglutide triggers glucose-dependent insulin secretion, suppresses glucagon, delays gastric emptying, and promotes central satiety and appetite suppression — producing glycemic control and weight reduction. Supplied as a white to off-white lyophilized powder for reconstitution in aqueous buffers.

Liraglutide is the active principle of the FDA-approved Victoza (type 2 diabetes) and Saxenda (obesity/weight management) and was the first once-daily GLP-1 receptor agonist — making it an essential reference standard for metabolic, incretin, and obesity research. UPOR Biotech supplies Research Grade (RUO) liraglutide as a bulk lyophilized peptide for academic and industrial laboratories. Research Use Only (RUO) — not for human diagnostic or therapeutic use. Certifications include ISO 9001, cGMP, and FDA facility registration, with packaging available in 1 mg, 5 mg, 10 mg, and 50 mg vials.

Liraglutide vs Semaglutide — Once-Daily C16 Palmitoyl vs Once-Weekly C18 Diacid Acylation

Both liraglutide and semaglutide are GLP-1 receptor agonists, but they differ fundamentally in their fatty-acid acylation strategy and dosing interval. Liraglutide uses a C16 palmitic acid conjugated to Lys26 via a γ-Glu spacer, producing once-daily dosing with a ~13-hour half-life. Semaglutide uses a C18 diacid with an AEEA linker and an Aib8 substitution, extending half-life to ~165 hours (once-weekly) through stronger albumin affinity. Liraglutide was the first once-daily GLP-1 RA and remains a key reference standard for incretin research, head-to-head pharmacology, and formulation development.

Technical Specifications

PropertySpecification
Product NameLiraglutide (GLP-1 Receptor Agonist) — Research Grade (RUO)
CAS Number204656-20-2
Molecular FormulaC₁₇₂H₂₆₅N₄₃O₅₁
Molecular Weight3751.20 g/mol
Amino Acid Residues31 (synthetic GLP-1(7-37) analogue)
Sequence Homology97% to native human GLP-1(7-37)
Key ModificationsArg34Lys substitution; Lys26 C16 palmitoyl acylation via γ-Glu spacer
Mechanism of ActionGLP-1 receptor (GLP-1R) agonist — incretin mimetic
Extended Half-Life~13 hours (once-daily) via reversible albumin binding
Synthesis MethodSolid-phase peptide synthesis (SPPS) with C16 palmitoyl conjugation
Physical FormLyophilized (freeze-dried) powder
Purity (HPLC)≥98.0%
Peptide Content≥90%
AppearanceWhite to off-white lyophilized powder
SolubilitySoluble in water, PBS, and DMSO (0.1–1.0 mg/mL); pH-dependent
Endotoxin≤1.0 EU/mg
Water Content≤5.0%
Counter-ionAcetate
pH4.0–5.0 (1 mg/mL aqueous solution)
Heavy Metals≤10 ppm
Storage-20°C, desiccated, protected from light
GradeResearch Grade (RUO)
ApplicationsGLP-1R signaling, incretin physiology, T2D & obesity research
CertificationsISO 9001, cGMP, FDA facility registration
Packaging1 mg / 5 mg / 10 mg / 50 mg vials
Shelf Life2 years at -20°C
DisclaimerResearch Use Only (RUO) — not for human diagnostic or therapeutic use

Key Benefits — Liraglutide Research Peptide

Once-Daily GLP-1R Activation via C16 Palmitoyl Albumin Binding

The Lys26 C16 palmitoyl acylation via a γ-Glu spacer drives non-covalent self-association and reversible albumin binding, delaying DPP-IV degradation and renal clearance to yield a ~13-hour (once-daily) half-life — the defining feature of liraglutide’s extended pharmacology.

C16 Palmitoyl / Once-Daily

Glucose-Dependent Insulin Secretion

Liraglutide activates the GLP-1 receptor to stimulate insulin secretion only when glucose is elevated, suppress glucagon, and restore incretin physiology — a glucose-dependent mechanism that minimizes hypoglycemia risk and faithfully models native GLP-1 signaling.

GLP-1R Agonist

Central Satiety & Gastric Emptying Modulation

Beyond the pancreas, liraglutide acts centrally to suppress appetite and promote satiety while delaying gastric emptying — the dual pathway underlying its weight-management effects and the basis of its obesity research applications.

Satiety & GI Modulation

≥98% HPLC Purity 31-aa Research Peptide

A 31-amino-acid synthetic GLP-1(7-37) analogue with 97% sequence homology, supplied as ≥98% HPLC purity (≥90% peptide content) lyophilized powder with full COA/MSDS/MS documentation — a dependable reference standard for reproducible research.

≥98% HPLC

Applications

Type 2 Diabetes & Glycemic Control Research

GLP-1R agonist reference standard for modeling glucose-dependent insulin secretion, glucagon suppression, and beta-cell incretin response in T2D cell and animal models.

Obesity & Weight-Management Research

Reference active principle of Saxenda for studying central satiety, appetite suppression, gastric emptying, and body-weight regulation pathways.

GLP-1 Receptor Signaling / GPCR Studies

Tool for GLP-1R binding, cAMP, biased agonism, and internalization assays in the class B GPCR and incretin signaling field.

Incretin Physiology & Beta-Cell Function Studies

Model GLP-1(7-37) analogue for investigating incretin hormone action, insulin secretion dynamics, and islet/beta-cell function.

Combination & Next-Gen GLP-1 Research

Baseline comparator for head-to-head studies with semaglutide, tirzepatide, and dual GIP/GLP-1 or next-generation incretin agonists.

Peptide Reference Standard & Assay Development

High-purity lyophilized reference standard for LC-MS method development, ELISA validation, and quantitative bioanalytical assays.

Frequently Asked Questions

Liraglutide (CAS 204656-20-2) is a 31-amino-acid synthetic analogue of human GLP-1(7-37) with 97% sequence homology, engineered as a GLP-1 receptor agonist. Its Lys26 C16 palmitoyl acylation (via a γ-Glu spacer) enables reversible albumin binding that extends its half-life to ~13 hours, allowing once-daily dosing. It lowers blood glucose through glucose-dependent insulin secretion, suppresses glucagon, delays gastric emptying, and promotes central satiety and appetite suppression — the classic incretin mechanism.

Both liraglutide and semaglutide are GLP-1 receptor agonists, but they differ in fatty-acid acylation and dosing interval. Liraglutide carries a C16 palmitic fatty acid (once-daily, ~13-hour half-life); semaglutide carries a C18 diacid with an AEEA linker and an Aib8 substitution (once-weekly, ~165-hour half-life). Liraglutide was the first once-daily GLP-1 RA and remains a key reference standard for head-to-head incretin research.

Two modifications extend liraglutide’s half-life: (1) Arg34Lys — substitution of Lys for Arg at position 34; and (2) Lys26 C16 palmitoyl acylation — a C16 palmitic (hexadecanoyl) fatty acid conjugated to Lys26 via a γ-glutamic acid spacer. These promote non-covalent self-association and reversible albumin binding, delaying DPP-IV degradation and renal clearance to yield a ~13-hour, once-daily profile.

Store liraglutide lyophilized powder at -20°C, desiccated and protected from light. Reconstitute in sterile water or PBS at 0.1–1.0 mg/mL, gently and without vortexing, and use promptly. Avoid repeated freeze-thaw cycles; aliquot reconstituted solutions and store at -20°C for short-term use. Single-use aliquots are recommended for reproducible research.

Every order includes a COA (HPLC purity ≥98.0%, peptide content ≥90%, endotoxin ≤1.0 EU/mg, water content, counter-ion, heavy metals), MSDS, HPLC chromatogram, and MS (mass spectrometry) report. UPOR Biotech operates under ISO 9001, cGMP, and FDA facility registration. All liraglutide is supplied Research Use Only (RUO) — not for human diagnostic or therapeutic use.