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Early-life stress at the time of the plague in Northern Italy (17th century): the case of two individuals with severe hypoplastic defects from Lazzaretto Vecchio (Venice)

Stefano MagriDepartment of Cultural Heritage, University of Bologna, Via degli Ariani 1, Ravenna 40121, ItalyOwen Alexander HigginsDepartment of Cultural Heritage, University of Bologna, Via degli Ariani 1, Ravenna 40121, ItalyCarla FigusDepartment of Cultural Heritage, University of Bologna, Via degli Ariani 1, Ravenna 40121, ItalyEnrico SassoniDepartment of Civil, Chemical, Environmental, and Materials Engineering, University of Bologna, Viale del Risorgimento 2, Bologna 40136, ItalyGabriela GrazianiPrivate Dental Practice of Dr. Giulia Graziani, Piazza 5 Dicembre 9, Ravenna 48124, ItalyGiulia GrazianiPrivate Dental Practice of Dr. Giulia Graziani, Piazza 5 Dicembre 9, Ravenna 48124, ItalyBryn Marie PhiliotisDepartment of Biology, Via Ugo Bassi, Padova 35121, ItalyAntonino VazzanaDepartment of Cultural Heritage, University of Bologna, Via degli Ariani 1, Ravenna 40121, ItalyMatteo RomandiniDepartment of Cultural Heritage, University of Bologna, Via degli Ariani 1, Ravenna 40121, ItalyRobert AnczkiewiczPolish Academy of SciencesSzymon MianowskiPolish Academy of SciencesLuca BondioliInstitute of Geological Sciences, Polish Academy of Sciences, Senacka 1, Kraków 31-002, PolandAlessia NavaDepartment of Odontostomatological and Maxillofacial Sciences, Sapienza University of Rome, Via Caserta 6, Rome 00161, ItalyStefano BenazziDepartment of Archaeology, Samarkand State University named after Sharof Rashidov, Boulevard 15, Samarkand 140100, Uzbekistan
2026en
ABI

Abstract

Objectives This study investigates two cases of severe enamel hypoplasia observed in individuals buried at Lazzaretto Vecchio (Venice, Italy) likely during the 1575-1630 plague outbreak. By integrating histological and geochemical evidence, we assess whether severe hypoplastic defects correspond to alterations in enamel formation dynamics or elemental composition and explore what such patterns may reveal about physiological disruption during crown development. Design A multi-method approach was applied, including morphological analysis for biological profile reconstruction, enamel histomorphometry and geochemical characterization using Laser Ablation Inductively Coupled Plasma Mass Spectrometry (LA-ICP-MS) and Scanning Electron Microscopy Energy Dispersive X-ray Spectroscopy (SEM-EDS). Results Daily secretion rates did not differ substantially between stress-associated and physiologically regular enamel incremental markers, indicating that ameloblast activity was not disrupted in terms of secretion rate or overall crown formation time. Spatially-resolved geochemical analyses revealed a magnesium imbalance between pre- and post-hypoplastic enamel regions. This divergence suggests an altered magnesium (Mg) distribution across pre- and post-hypoplastic regions potentially linked to a reduced number of functional ameloblasts available for ion exchange during enamel mineralization. Conclusions These findings underscore the value of integrating multiple analytical techniques to refine interpretations of developmental stress and to capture physiological variations that remain obscured in single-method approaches.

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