Isotope analysis of human dental calculus δ13 CO3 2- : Investigating a potential new proxy for sugar consumption.


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Authors
Chidimuro, Blessing  ORCID logo  https://orcid.org/0000-0002-3513-715X
Boudreault, Noémie 
Abstract

RATIONALE: Dental calculus (mineralised dental plaque) is composed primarily of hydroxyapatite. We hypothesise that the carbonate component of dental calculus will reflect the isotopic composition of ingested simple carbohydrates. Therefore, dental calculus carbonates may be an indicator for sugar consumption, and an alternative to bone carbonate in isotopic palaeodiet studies. METHODS: We utilised Fourier transform infrared attenuated total reflectance analysis to characterise the composition and crystallisation of bone and dental calculus before isotope analysis of carbonate. Using a Sercon 20-22 mass spectrometer coupled with a Sercon GSL sample preparation system and an IsoPrime 100 dual inlet mass spectrometer plus Multiprep device to measure carbon, we tested the potential of dental calculus carbonate to identify C4 resources in diet through analysis of δ13 C values in paired bone, calculus and teeth mineral samples. RESULTS: The modern population shows higher δ13 C values in all three tissue carbonates compared to both archaeological populations. Clear differences in dental calculus δ13 C values are observed between the modern and archaeological individuals suggesting potential for utilising dental calculus in isotope palaeodiet studies. The offset between dental calculus and either bone or enamel carbonate δ13 C values is large and consistent in direction, with no consistent offset between the δ13 C values for the three tissues per individual. CONCLUSIONS: Our results support dental calculus carbonate as a new biomaterial to identify C4 sugar through isotope analysis. Greater carbon fractionation in the mouth is likely due to the complex formation of dental calculus as a mineralized biofilm, which results in consistently high δ13 C values compared to bone and enamel.

Description

Funder: University of Leicester; Id: http://dx.doi.org/10.13039/501100000738


Funder: University of Tennessee; Id: http://dx.doi.org/10.13039/100007135

Keywords
Carbon, Carbon Isotopes, Carbonates, Dental Calculus, Dietary Sugars, Humans, Isotopes, Sugars
Journal Title
Rapid Commun Mass Spectrom
Conference Name
Journal ISSN
0951-4198
1097-0231
Volume Title
36
Publisher
Wiley
Sponsorship
Arts and Humanities Research Council (AH/L503848/1)
NERC Isotope Geoscience Facilities Steering Committee (IP‐1801‐0618)
University of York (L503848)