Amino acid analysis (revision 13)
Old revision·00:39, 26 May 2025·KarlFischerKit
| Amino acid analysisCompositional and quantitative method | |
|---|---|
| Abbreviation | AAA |
| Principle | Acid hydrolysis followed by chromatographic quantitation |
| Gives | Residue composition and absolute content |
| Compendial chapter | USP <1052> |
| Analytical method infobox · conventions | |
Amino acid analysis hydrolyses a peptide into its constituent amino acids and quantifies each. It yields two things a chromatographic purity determination cannot: the residue composition, which supports identity, and an absolute peptide content, which supports quantity.[1]
It is one of the few methods that gives content without requiring a reference standard of the peptide itself, because the standards required are the individual amino acids.[2] This makes it particularly valuable for compounds with no marketed product and therefore no compendial standard.[3]
The method is destructive, laborious and subject to well-characterised systematic errors, which is why it is used to qualify a standard or to establish content on a lot rather than as a routine release test.[1]
Procedure
[edit]A weighed sample is hydrolysed, conventionally in 6 M hydrochloric acid at 110 °C for 24 hours under vacuum or inert atmosphere. The hydrolysate is derivatised and the amino acids separated and quantified by chromatography against standards of each.[1]
The molar ratios obtained are compared with those expected from the sequence. Agreement supports identity, though it does not establish sequence order — a permutation of the same residues gives the same composition, which is why composition is complementary to mass and fragmentation rather than a substitute for them.
Absolute content follows from the total recovered amino acid mass against the sample mass taken. This is the figure that makes the method valuable for quantitation, and it is unaffected by water, counterion or residual solvent, all of which contribute to the weighed mass and none of which yields amino acids.[3]
Systematic errors
[edit]| Residue | Behaviour under standard hydrolysis |
|---|---|
| Asparagine, glutamine | Converted to aspartate and glutamate; reported combined |
| Tryptophan | Substantially destroyed |
| Cysteine | Destroyed unless derivatised beforehand |
| Serine, threonine | Partially destroyed; corrected by extrapolation |
| Valine, isoleucine | Slow to release; may be under-recovered at 24 h |
These are not defects of a particular laboratory; they are properties of acid hydrolysis and are handled by convention. Serine and threonine losses are corrected by hydrolysing for several durations and extrapolating to zero time; valine and isoleucine by extending hydrolysis. Both corrections are established procedures rather than ad hoc adjustments.[1][4]
The practical consequence is that an amino acid analysis result should be read with the hydrolysis conditions in view, and that residues known to be destroyed are simply not evidence either way. A composition report that lists tryptophan at its theoretical value from a standard hydrolysis is reporting something that did not happen.
See also
References
- ^ a b c d United States Pharmacopeia, General Chapter <1052>, Biotechnology-Derived Articles — Amino Acid Analysis.
- ^ United States Pharmacopeia, General Chapter <11>, USP Reference Standards.
- ^ a b United States Pharmacopeia, General Chapter <1503>, Quality Attributes of Synthetic Peptide Drug Substances.
- ^ International Council for Harmonisation, Q2(R2): Validation of Analytical Procedures (2023).