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June 1, 2026Chemical Research in Toxicology0 citations

Silver-Form-Driven Nanotoxicity Reveals Spirodela intermedia W. Koch as a Potential Bioindicator for Aquatic Systems

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MCMaia Sabrina CruzMPMailén PetriLTLuca Terraciano

Key Points

  • The study aims to assess the phytotoxic effects of silver nanoparticles on Spirodela intermedia to evaluate its potential as a bioindicator.
  • Synthesize and characterize silver nanoparticles and silver sulfide nanoparticles using UV–vis spectrophotometry.
  • Assess morphometric parameters such as frond number, frond abscission, and chlorosis post-exposure.
  • Measure enzymatic activity of ascorbate oxidase and chlorophyll-a variable fluorescence after exposure.
  • AgNPs induced significantly higher toxic effects than Ag2SNPs, as shown by increased frond abscission and chlorosis.
  • There was a notable reduction in ascorbate oxidase activity and damage to the photosynthetic apparatus in S. intermedia.
  • Findings indicate that the chemical form of silver nanoparticles is crucial for phytotoxicity and that S. intermedia can serve as a bioindicator in aquatic ecosystems.

Abstract

Silver nanoparticles (AgNPs) and silver sulfide nanoparticles (Ag2SNPs) are increasingly being used in diverse industries due to their unique physicochemical properties. However, their release into aquatic environments raises concerns regarding their potential ecological impact, making them an excellent model system for evaluating potential biomonitors. In this study, we evaluated and compared the phytotoxic effects of AgNPs and Ag2SNPs suspensions on the free-floating macrophyte Spirodela intermedia W. Koch, a species with broad distribution from Mexico to South America and promising potential as a bioindicator. The designed protocol involved both types of nanoparticles, which were synthesized and characterized via UV–vis spectrophotometry and other techniques. In addition, morphometric parameters (frond number, frond abscission, and chlorosis), as well as enzymatic activity of ascorbate oxidase (AO) and chlorophyll-a variable fluorescence, were assessed after exposure to environmentally relevant concentrations. Results indicated that AgNPs induced significantly higher toxic effects than Ag2SNPs, with marked frond abscission, chlorosis, AO activity reduction, and damage to the photosynthetic apparatus. These findings indicate that, as expected, the chemical form of silver nanoparticles plays a key role in phytotoxicity and that S. intermedia exhibits adequate sensitivity to be proposed as a bioindicator candidate in aquatic ecosystems, thereby expanding the global portfolio of bioindicator species and highlighting the ecological value of native flora for sustainable water quality monitoring.

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Cite This Study

Cruz et al. (2026) studied this question.

synapsesocial.com/papers/6a1d21ba02fbce9130637a83https://doi.org/10.1021/acs.chemrestox.5c00490
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