Carbon isotope analysis of bulk keratin and single amino acids from British and North American hair.

Symplectic ID
118250
Source
PubMed
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Saturday, 12 September, 2026 - 23:27
DOI
10.1002/rcm.2150
Publication Date
Saturday, 1 January, 2005
First Page
3227
Last Page
3231
Keywords
Amino Acids
Carbon Isotopes
Diet
Hair
Humans
Keratins
North America
United Kingdom
Authors
McCullagh, JSO
Tripp, JA
Hedges, REM
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0
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Abstract
The reconstruction of ancient diets using isotopic measurements of bone collagen, and other tissues, which survive in archaeological contexts, relies on known isotopic relationships between diet and body tissues. Examination of these relationships often requires the study of modern human and animal subjects. While hair keratin can act as a useful proxy for bone collagen in isotopic studies on living humans, where it is inappropriate to sample tissues such as collagen, it can, in addition, act as a chronological indicator of dietary change. This study investigates hair keratin delta13C values from current residents of the UK and the USA. Residents in the USA showed a clear bulk hair delta13C enrichment of approximately 3 per thousand over UK individuals, attributed to an elevated C4 dietary input from maize fed to livestock in North America. The keratin delta13C of subjects who moved between the UK and USA showed a pronounced change after relocation, taking approximately 4 months to reach isotopic equilibrium. To investigate these differences further, we measured delta13C values of dispensable and indispensable amino acids as a group, and selected individual amino acids. As a group, enrichment of dispensable amino acids compared with indispensable amino acids occurred in samples from both continents, averaging 7.2 per thousand in the UK and 7.9 per thousand in the USA. Dispensable and indispensable amino acids, as well as all individual amino acids measured, were enriched in samples from the USA compared with those from the UK.
ISSN
0951-4198
Journal Title
Rapid Commun Mass Spectrom
Volume
19
Issue
22
ID at Source
16220499
Publication Status
Published
Open access
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