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Updated: Jul 21, 2026

Protocol for Microplastics Sampling on the Sea Surface and Sample Analysis
Published on: December 16, 2016
Microplastic contamination of packaged spirulina products
Serkan Tutaroğlu1, Leyla Uslu1,2, Sedat Gündoğdu3
1Department of Biotechnology, Cukurova University, Balcalı, Saricam, 01330, Adana, Türkiye.
Microplastic contamination was found in most commercially sold spirulina products. Fibers were the most common microplastic type, with blue being the predominant color, highlighting potential risks in dietary supplements.
Area of Science:
- Environmental Science
- Food Safety
- Analytical Chemistry
Background:
- Microplastic (MP) contamination is a growing global concern, affecting various food sources.
- The presence and impact of MPs in dietary supplements like spirulina remain largely uninvestigated.
- Spirulina is a popular nutrient-rich algae supplement, making its contamination a public health issue.
Purpose of the Study:
- To investigate the presence and characteristics of microplastics in commercially available spirulina products.
- To quantify microplastic abundance and identify polymer types within spirulina samples.
- To explore potential correlations between microplastic levels and C-Phycocyanin content.
Main Methods:
- Acquisition of 29 spirulina samples from various brands, packaging types, and origins.
- Microscopic and μ-Raman spectroscopy analysis for microplastic identification and quantification.
- C-Phycocyanin analysis to verify spirulina content and compare with microplastic levels.
Main Results:
- Microplastics were detected in 26 out of 29 spirulina products, with a mean abundance of 13.77 ± 2.45 MPs/100 g dw.
- Fibers (61.7%) were more prevalent than fragments (38.3%), with blue (52.8%) being the dominant color.
- Polypropylene and polystyrene were the most common polymers identified; no significant correlation was found between C-Phycocyanin and MP concentrations.
Conclusions:
- Commercially sold spirulina products are a potential source of microplastic ingestion.
- Packaging and processing stages significantly influence microplastic contamination levels and composition.
- Further research is essential to identify microplastic sources and assess human health risks associated with spirulina consumption.
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