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For laboratory and research use only. Not for human or veterinary use.

Comparison

Semaglutide vs Tirzepatide vs Retatrutide

Three acylated incretin analogues of increasing receptor breadth — single, dual and triple receptor activity — compared by residue count, mass and structural class.

Side by side

Property Semaglutide Tirzepatide Retatrutide
CAS number 910463-68-2 2023788-19-2 2381089-83-2
Molecular formula C187H291N45O59 C225H348N48O68 C221H342N46O68
Average molecular weight 4,113.58 g/mol 4,813.45 g/mol 4,731.40 g/mol
Amino-acid count 31 39 39
Peptide class acylated GLP-1 analogue lipidated 39-residue peptide analogue lipidated 39-residue peptide analogue
Physical form Lyophilized powder Lyophilized powder Lyophilized powder
Research area Metabolic research Metabolic research Metabolic research
Solubility Soluble in sterile or bacteriostatic water; consult the lot COA for solvent guidance Soluble in sterile or bacteriostatic water; consult the lot COA for solvent guidance Soluble in sterile or bacteriostatic water; consult the lot COA for solvent guidance
Primary sequence

One design, three receptor breadths

These three represent successive generations of the same engineering programme, and the trend across them is receptor breadth rather than molecular size.

Semaglutide Tirzepatide Retatrutide
Residues 31 39 39
Mass (g/mol) 4,113.58 4,813.45 4,731.4
Receptors GLP-1 GIP, GLP-1 GIP, GLP-1, glucagon
Lipid C18 diacid C20 diacid Lipidated

Note that mass does not increase monotonically with receptor breadth: retatrutide engages three receptors and is lighter than tirzepatide, which engages two. Molecular size and functional complexity are not the same axis.

The shared architecture

All three use the same two-part stabilization strategy, and it is worth stating because it explains why they look alike analytically.

Aib substitution blocks dipeptidyl peptidase-4, the enzyme that inactivates native GLP-1 within minutes.

Lipidation through a linker provides reversible serum albumin binding, protecting the molecule from renal filtration and creating a circulating reservoir.

Neither modification alone suffices — one addresses enzymatic degradation, the other renal clearance — and the combination is the solved problem being reapplied across the family, with design effort going into receptor selectivity instead.

Why sequences are not published

A plain residue string would omit the Aib substitutions, the acylation site, the linker chemistry and the fatty acid — most of what distinguishes each molecule. Identity confirmation for all three rests on mass spectrometry against the complete modified structure.

Shared handling profile

All three are strongly hydrophobic for their length, retain late on reversed-phase columns, adsorb to plastic, and — unusually — aggregate more readily in concentrated solution than dilute, because the exposed lipid seeks a hydrophobic environment and often finds another molecule of the same compound. Reconstitute gently, aliquot immediately, and prepare working dilutions fresh.