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Biotechnology for microbial monitoring of indoor cultural heritage environments

机译:用于室内文化遗产环境微生物监测的生物技术

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摘要

An integrated approach for the characterization of bioaerosol was employed in different sites (that include hypogeal and semi-confined areas), characterized by great cultural/artistic interest besides peculiar architectural structures, thermo- hygrometric and lighting parameters. These typologies of indoor environments preserve several artworks like mural paintings, stone-works, paper or parchments that are susceptible of microbial colonization. The presence of fungal spores and low air change can induce both potentially effects to human health (users/operators) or biodegradation of historical-artistic manufacts. We perform bioaerosol sampling by a portable sampler (Sartorius MD8), equipped with gelatin filters and non-invasive sampling (Nylon membrane or sterile swab) is carried out on works of art surface. Microbial consortia is revealed and characterized by Optical, Scanning Electron and Confocal Laser Scanning Microscopy (OM, SEM, CLSM), in vitro culture and molecular analysis (PCR, sequencing, sequence analysis). The inter-disciplinary approach applied in this study, represents a valuable contribution for the proper planning of both direct and/or indirect biological growth control and for the conservative restoration procedure (1, 2).ududThis work was supported by Research Project It@cha - Italian Technologies for Advanced application in Cultural Heritage Assets, grant PON 01_00625 “Ricerca e Competitività” 2007-2013. udud(1) Palla F. et al. (2006) Characterization of bacterial community in indoor environment. Heritage, Weathering and Conservation, 1: 361-365.ud(2) Palla F. et al. (2010) Microscopy and molecular biology techniques for the study biocenosis diversity in semi-confined environments. Conservation Science in Cultural Heritage, 10: 185-194.
机译:在不同场所(包括hypogeal和半封闭区域)采用了一种表征生物气溶胶的综合方法,除了独特的建筑结构,温湿度和照明参数外,还具有极大的文化/艺术兴趣。室内环境的这些类型保留了一些艺术品,例如壁画,石头作品,纸张或羊皮纸,这些微生物容易生菌。真菌孢子的存在和空气变化低会导致对人类健康(使用者/操作者)的潜在影响或对历史艺术作品的生物降解。我们通过配备有明胶过滤器的便携式采样器(Sartorius MD8)进行生物气溶胶采样,并在艺术品表面上进行非侵入性采样(尼龙膜或无菌拭子)。通过光学,扫描电子和共聚焦激光扫描显微镜(OM,SEM,CLSM),体外培养和分子分析(PCR,测序,序列分析)揭示并表征微生物群落。本研究中采用的跨学科方法为正确规划直接和/或间接生物生长控制以及保守的恢复程序提供了宝贵的贡献(1、2)。 ud ud这项工作得到了研究项目的支持It @ cha-用于文化遗产资产的先进技术的意大利技术,授予PON 01_00625“ Ricerca eCompetitività” 2007-2013。 ud ud(1)Palla F. (2006)室内环境中细菌群落的表征。遗产,风化与自然保护,1:361-365。 ud(2)Palla F. (2010)显微镜和分子生物学技术,用于研究半封闭环境中的生物多样性。 《文化遗产保护科学》,第10期:185-194。

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