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The Bio-Patina on a Hypogeum Wall of the Matera-Sassi Rupestrian Church “San Pietro Barisano” before and after Treatment with Glycoalkaloids

Francesco CardellicchioInstitute of Methodologies for Environmental Analysis, Italian Research Council (CNR), Contrada Loya, 85050 Tito, ItalySabino Aurelio BufoDepartment of Geography, Environmental Management and Energy Studies, University of Johannesburg, Johannesburg 2092, South AfricaȘtefania Mirela MangSchool of Agriculture, Forestry and Environment, University of Basilicata, 85100 Potenza, ItalyIppolito CameleSchool of Agriculture, Forestry and Environment, University of Basilicata, 85100 Potenza, ItalyAnna Maria SalviDepartment of Sciences, University of Basilicata, Via dell’Ateneo Lucano 10, 85100 Potenza, ItalyLaura ScranoDepartment of European Cultures, University of Basilicata, 75100 Matera, Italy
2022en
ABI

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The investigation focused on the deterioration of the walls in the hypogeum of “San Pietro Barisano” rupestrian church, located in the Matera-Sassi (Southern Italy), one of the UNESCO World Heritage sites. The study evaluated the biocide activity of a mixture of natural glycoalkaloids (GAs) extracted from the unripe fruit of Solanum nigrum and applied to clean a hypogeum wall surface in the church affected by bio-patinas. The analyzed bio-patina, collected before treatment and, at pre-established times, after treatment, showed changes in chemical composition detected by XPS, accompanied by visible discoloration and biological activity variation. The biocidal action of the glycoalkaloids mixture, directly employed on the wall surface, was effective after about four weeks for most bio-patina colonizers but not for the fungal species that can migrate and survive in the porosities of the calcarenite. Consequently, the cleaning procedure requires the integration of fungicidal actions, combined with the consolidation of the surfaces, to obtain complete bioremediation and avoid subsequent biological recolonization. SEM images and associated microanalysis of pretreated bio-patina have revealed the biocalcogenity of some autochthonous microorganisms, thus preluding to their eventual isolation and reintroduction on the wall surface to act as consolidants once the bio-cleaning phase has been completed.

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