FB2026_03 , released September 17, 2026
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Luo, X., Zhang, K., Chen, K., Pan, J., Ding, Y., Zhang, X., Li, Q., Sun, M. (2026). Nanoplastics exacerbate lead exposure-induced developmental neurotoxicity by disrupting gut integrity in Drosophila.  Neurotoxicology 113(): 103407.
FlyBase ID
FBrf0264908
Publication Type
Research paper
Abstract
Lead (Pb), a neurotoxic heavy metal, can accumulate in the central nervous system (CNS) by crossing the blood-brain barrier and cause damage, while micro-nanoplastics (MNPs) are known to absorb Pb and enhance its toxicity. However, the synergistic effects of co-exposure on neurodevelopment remain unclear. This study established a Drosophila model to systematically evaluate the neurodevelopmental toxicity of combined nanoplastics (NPs) and Pb exposure. Behavioral tests revealed that co-exposure significantly exacerbated learning and memory deficits compared to Pb exposure alone, accompanied by reduced pupation and eclosion rates, as well as delayed development. Female flies showed decreased survival rates and more severe impairments in climbing and motor activity. Mechanistic investigations indicated that co-exposure promoted Pb accumulation in neural tissues, aggravated oxidative stress (elevated SOD activity, decreased CAT activity, and increased MDA levels), disrupted neuromuscular junction (NMJ) development and Mushroom body (MB) axon guidance, and induced intestinal damage (increased epithelial cell mortality and microvilli structural abnormalities). This study demonstrates that NPs synergistically enhance Pb-induced neurodevelopmental toxicity through multiple pathways, providing critical toxicological evidence for the health risks of environmental composite pollutants.
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    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    Neurotoxicology
    Title
    Neurotoxicology
    Publication Year
    1979-
    ISBN/ISSN
    0161-813X 1872-9711
    Data From Reference
    Chemicals (3)
    Human Disease Models (1)