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The identification at molecular level of organic materials in heritage objects as paintings requires in most cases the collection of micro-samples followed by micro-destructive analysis. In this study, we explore the possibility to characterize natural and synthetic resins used as paint varnishes by mean of non-invasive analysis of released volatile organic compounds (VOCs) through selected ion flow tube-mass spectrometry (SIFT-MS). SIFT-MS is a portable direct mass spectrometric technique that achieves the analysis of VOCs at trace levels in real time, by controlled ultra-soft chemical ionization using eight different chemical ionization agents. We tested the portable instrumentation on different reference resins used as paint varnishes, both natural (mastic, dammar, and colophony) and synthetic (Paraloid B67, MS2A, Regalrez 1094, and polyvinyl acetate), to evaluate the possibility to acquire qualitative data for the identification of these materials in heritage objects avoiding any sampling. This new analytical approach was validated by comparison with the traditional approach for VOCs analysis based on solid phase micro extraction-gas chromatography/mass spectrometry (SPME-GC/MS) analysis. The results demonstrate the use of SIFT-MS as an in situ non-invasive and non-destructive mass spectrometric technique to identify organic materials, such as paint varnishes.
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http://dx.doi.org/10.1007/s13361-019-02305-4 | DOI Listing |
Angew Chem Int Ed Engl
September 2025
Institute of Materiobiology, College of Sciences, Shanghai University, Shanghai, 200444, China.
Self-assembled DNA nanostructures have been popularly used to develop DNA-based electrochemical sensors by exploiting the nanoscale positioning capability of DNA origami. However, the impact of the electric field on the structural stability of the DNA origami framework and the activity of carried DNA probes remains to be explored. Herein, we employ DNA origami as structural frameworks for reversible DNA hybridization, and develop a single-molecule fluorescence imaging method to quantify electric field effects on DNA conformation and hybridization properties at the single-molecule level.
View Article and Find Full Text PDFAm J Ophthalmol
September 2025
Wilmer Eye Institute, Johns Hopkins University School of Medicine, Baltimore, Maryland. Electronic address:
Objective: To examine the association between visual impairment (VI) and (1) homebound status, (2) presence of home hazards, and (3) utilization of home-based long-term services and supports (LTSS) among older adults.
Design: Longitudinal and cross-sectional analyses using National Health and Aging Trends Study (NHATS) data (2021-2023).
Subjects: 3,022 Medicare beneficiaries aged ≥71 years (mean age 78.
J Frailty Aging
September 2025
Department of Geriatric Medicine, Klinikum Fürth, Fürth, Germany; Institute for Biomedicine of Ageing, Friedrich-Alexander-University, Erlangen-Nürnberg, Germany.
Purpose: Sarcopenia and sarcopenic obesity are defined by the loss of muscle strength and mass. Both diseases pose a growing global challenge. Their prevalences vary between studied populations.
View Article and Find Full Text PDFBiodegradation
September 2025
Biotechnology Development and Applications Group, Aptim Federal Services, LLC, Lawrenceville, NJ, USA.
1,2,3-Trichloropropane (1,2,3-TCP) is a suspected human carcinogen and a persistent emerging contaminant in groundwater and drinking water. 1,2,3-TCP was historically used as a solvent for cleaning and maintenance, paint and varnish removal, and degreasing, but its sources also include chemical manufacturing processes and application of soil fumigants. The California Department of Public Health (CDPH) has established a state maximum contaminant level (MCL) of 0.
View Article and Find Full Text PDFBiology (Basel)
August 2025
Department of Dermatology, Warren Alpert Medical School of Brown University, Providence, RI 02903, USA.
Human skin pigmentation is one of the most visible and variable traits among populations and has been shaped primarily by natural selection in response to ultraviolet (UV) radiation. This review synthesizes the current understanding of the genetic and evolutionary mechanisms that underlie pigmentation differences across the globe. The roles of key pigmentation-related genes, such as MC1R, SLC24A5, TYR, and OCA2, are examined in terms of how different versions of these genes have been favored in different UV environments to balance the need for photoprotection and vitamin-D synthesis.
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