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October 19, 2025Sustainability2 citationsOpen Access

Multi-Species Probiotics as Sustainable Strategy to Alleviate Polyamide Microplastic-Induced Stress in Nile Tilapia

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MAMR AminMIM. S. IslamMSMst Mahfuja Akhter Sweety

Key Points

  • Probiotics significantly improved growth performance and survival rates in Nile tilapia exposed to microplastics.
  • Exposure to polyamide microplastics led to reduced hemoglobin levels and higher glucose levels, which probiotics helped restore.
  • Elevated expression of antioxidant and immune genes was observed during microplastic exposure, but probiotics mitigated this response.
  • Multi-species probiotics potentially enhance fish health and promote sustainability in aquaculture amidst microplastic pollution.

Abstract

Microplastic particles exhibit multiple toxic effects, disrupting physiological processes in fish, such as Nile tilapia (Oreochromis niloticus), a widely cultured species. Probiotics could help counter polyamide microplastic toxicity while promoting fish health and sustainable aquaculture. A 6-week experiment was conducted on Nile tilapia included four treatments: (1) without polyamide microplastics and/or probiotics (control) and (2) with polyamide microplastics (PA-MP), (3) probiotics (Pr.), or (4) polyamide microplastics and probiotics (PA-MP + Pr.). The outcomes demonstrate that exposure to polyamide microplastics caused poorer growth performance and survivability along with reduced hemoglobin, and upregulated glucose levels, which were restored by probiotics application. The prevalence of erythrocytic abnormalities increased in the polyamide microplastic group but probiotics supplementation reduced the anomalies. Fish exposed to polyamide microplastics exhibited a lower frequency of goblet cells than other groups. Moreover, expression of antioxidant genes (SOD and CAT) and immune genes (IL-1β, IFN-γ, and TNF-α) was higher during polyamide microplastic exposure, which was downregulated in the polyamide microplastics along with probiotics group. These findings suggest that multi-species probiotics relieve microplastic-induced stress and hindrance of growth in Nile tilapia, which will help sustainable aquaculture practices safeguard fish health and maintain aquaculture productivity by alleviating adverse impacts of microplastic pollution in waterbodies.

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Cite This Study

Amin et al. (2025) studied this question.

synapsesocial.com/papers/68f43efb854d1061a58abf27https://doi.org/10.3390/su17209085
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Microplastics in aquaculture - Potential impacts on inflammatory processes in Nile tilapia2024 · 5 citations
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  4. 4Dietary Probiotics Modulate Oxidative Stress, Metabolic Status, and Immune-Related Gene Expression in Nile Tilapia (Oreochromis niloticus) Exposed to Malathion2026
  5. 5The Effects of Probiotics on the Recovery of Growth, Digestive, Antioxidant, Immune Functions, and Gut Microbiota of Chinese Hooksnout Carp (Opsariichthys bidens) Under Microplastic Stress2025