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Isolation and characterization of microplastics from human blood samples by confocal RAMAN microscopy
Antonio José Sarabia1, Belén Martínez2, María de Los Ángeles Martínez3
1Department of Experimental Sciences, Faculty of Experimental Sciences, University of Jaén, Jaén 23071, Spain.
None:
Microplastics (MPs) and nanoplastics (NPs) are emerging environmental contaminants increasingly detected in human tissues and fluids, highlighting the need for reliable analytical methods capable of isolating and characterizing these particles in complex biological matrices while reducing contamination risks. This work presents a systematic, integrative, and reproducible protocol for detecting MPs in human blood using confocal Raman microscopy. The method incorporates strict contamination-control measures, includes negative and positive controls to ensure analytical reliability, and provides reference Raman spectra from commonly used clinical and laboratory materials to identify potential sources of cross-contamination. Spectral data are compared using the open-source platform Open Specy, enabling similarity matching with an extensive polymer database and improving the confidence of particle identification. Application of the protocol enabled the detection and characterization of MPs in human blood samples, identifying polymers such as polystyrene (PS), ethylene-vinyl acetate (EVA), and polyethylene (PE). Overall, this protocol demonstrates high specificity for detecting MPs in human blood and provides a robust framework for future exposure studies.•Provides a contamination-controlled analytical framework for MP detection in human blood.•Integrates reference materials and controls to ensure data reliability and trace contamination sources.•Uses open-source spectral comparison to support confident polymer identification.

