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Persistence of birefringence and specific collagen cross-links in dentine of teeth of the ‘Nuraghi’ population living in SardiniaBC 1500–1200

Bibliographic Data

ID12371263
AuthorsAndrzej Wójtowicz (0000-0003-1385-6572, Medical University of Warsaw), M Yamauchi (0000-0003-1100-1423, University of North Carolina at Chapel Hill), Andrea Montella (0000-0002-5514-4453, University of Sassari), Pasquale Bandiera (0000-0002-0589-4539, University of Sassari), R Sotowski (Medical University of Warsaw), K Ostrowski (0000-0003-1416-1019, corresponding author)
Year1998
Volume8
Issue4
Pages288-294
Publication date1998-07-01
Peer ReviewedYes
Open AccessYes
TypeARTICLE
VenueInternational Journal of Osteoarchaeology (JOURNAL)
Journal identifiersISSN: 1047-482X • E-ISSN: 1099-1212
PublisherWiley (PUBLISHER • GB)
DOI10.1002/(sici)1099-1212(199807/08)8:4<288::aid-oa429>3.0.co;2-8
OpenAlexW2022494698
LanguageEN
References cited11

Well preserved bones of the Nuraghi population, discovered in 1980, are deposited in the Department of Biomedical Sciences, Division of Human Anatomy of the University of Sassari, in Sardinia, Italy. The Giant Tomb belongs to the megalithic monuments constructed in the period BC 1500–1200. The origin, history and the fate of Nuraghi population is not well known. Many cone-shaped fortresses are found in Sicily and megalithic monuments for burial purposes were built in their proximity. Due to the good macroscopic preservation of the mineralized parts of the Nuraghi skeletons we decided to compare the histological and biochemical structure of the recovered Nuraghi teeth with contemporary ones. Crown dentine of four Nuraghi molar and four premolar teeth were analysed and compared with contemporary molars and premolars removed for orthodontic reasons from 17–40-year-old patients in the Dental School, University of North Carolina at Chapel Hill USA. Evaluation of the collagen cross-links of dentine collagen was performed using a HPLC technique to analyze for hydrolysates. Nonreducible, stable cross-links pyridinoline and its lysyl analogue were quantified by fluorescence (excitation 330 nm, emission 390 nm). The concentration of reducible, labile cross-links referred to as DHLNL and HLNL (dehydro-dihydroxylisinorleucine) were identified and calculated by chromatography after the application of NaB3H4 with integration of respective peaks and converting the numbers into a residue per mole of collagen basis. The ultrastructure of collagen was estimated by its persistent birefringence in polarized light after staining with Picrosirus Red. It was found that dentine collagen of Nuraghi teeth resisted environmental factors sufficiently well to preserve the molecular ultrastructure of collagen fibres, proved by their birefringence and by the preservation of some of the stable and reducible collagen cross-links, characteristic for skeletal tissues. © 1998 John Wiley & Sons, Ltd

Archaeology · Dentin · Geography · Megalith · Molar · Population · Posterior teeth · Premolar · Pyridinoline · Bone and Dental Protein Studies · Chemistry · Collagen: Extraction and Characterization · Dentistry · Endodontics and Root Canal Treatments · Medicine · Anatomy

  • Amino acids in archaeological bone

    Open Access•K J Dennison•Journal of Archaeological Science•1980

Citation velocityhistorical
Highly citedNo
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