Brain lipidomics identifies mitochondrial redox dysfunction and metabolic trade-offs associated with Parkinsons disease-like pathology induced by Nanoplastics exposure
Rathor, P.; Tiwari, A.; Patel, R. P.; Singh, S. P.; CH, R.
Show abstract
Growing nanoplastics exposure raises concern for neurotoxicity, particularly given recent evidence of plastic accumulation within human brain tissue-a highly lipid enriched organ, yet effects on brain lipid metabolism remains poorly understood. Here, we employed high-resolution untargeted lipidomics to map brain lipid perturbations in Drosophila melanogaster chronically exposed to environmentally relevant levels of polystyrene nanoplastics (NPs). Polystyrene NPs accumulated in fly brains and induced dose-dependent remodeling of mitochondrial membrane lipids, notably cardiolipins and phosphatidylethanolamines, accompanied by increased diacylglycerols/triacylglycerols and monounsaturated fatty acids and by lipid droplet expansion. Guided by these lipidomic signatures, targeted biochemical assays demonstrated depolarized mitochondrial membrane potential, elevated mitochondrial reactive-oxygen species, inhibition of respiratory-chain complexes I and IV, and a shift in NAD(H) and NADP(H) redox couples toward a reduced state and increasing lipid peroxidation. This redox imbalance was accompanied by decreased tyrosine-hydroxylase expression, dopamine depletion, and impaired locomotor behavior, hallmarks of PD-like neurodegeneration. Dopaminergic neurochemistry was impaired (tyrosine hydroxylase and dopamine decreased), with concomitant reduction of GABA, and locomotor and circadian deficits emerged. Remarkbly, co-treatment with the antioxidant N-acetylcysteine (NAC) restored mitochondrial membrane potential, reduced mitochondrial ROS and lipid peroxidation, normalized neutral lipid and MUFA accumulation, and rescued neurotransmitter levels and behavior. Stable-isotope tracing confirmed disrupted TCA cycle flux after NP exposure that was rescued by NAC. Collectively, these findings reveal lipidomic remodeling as a critical link between environmental nanoplastic exposure and PD-like pathology, highlighting mitochondrial redox-lipid interactions as early determinants and support redox-directed interventions to mitigate risk.
Matching journals
The top 10 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Low level of antioxidant capacity biomarkers but not target overexpression predicts vulnerability to ROS-inducing drugs 92%
- JNK signalling regulates antioxidant responses in neurons 91%
- Amino acid restriction sensitizes lung cancer cells toferroptosis via GCN2-dependent activation of the integratedstress response 91%
Similar papers in this journal
- Polydopamine Nanoparticles as Mimicking RPE Melanin for the Protection of Retinal Cells Against Blue Light-Induced Phototoxicity 92%
- The NO Answer for Autism Spectrum Disorder 91%
- Synchrotron XRF imaging reveals manganese accumulation in the Golgi and post-synapses of neurons and enhanced uptake in astrocytes 90%
Similar papers in this journal
- Hyperphosphorylated Tau Inflicts Intracellular Stress Responses That Are Mitigated by Apomorphine 91%
- Epigallocatechin Gallate Modulates Microglia Phenotype to Suppress Pro-Inflammatory Signalling Cues and Inhibit Phagocytosis 90%
- Targeting tau mitigates mitochondrial fragmentation and oxidative stress in amyotrophic lateral sclerosis 90%
Similar papers in this journal
- LRRK2 kinase inhibition protects against Parkinson's disease-associated environmental toxicants 93%
- Dopamine-iron homeostasis interaction rescues mitochondrial fitness in Parkinson's disease 93%
- Developmental exposure to the organochlorine pesticide dieldrin causes male-specific exacerbation of α-synuclein-preformed fibril-induced toxicity and motor deficits 92%
Similar papers in this journal
- A patient-derived blood-brain barrier model for screening copper bis(thiosemicarbazone) complexes as potential therapeutics in Alzheimer's disease 93%
- Neurotransmitter loaded DNA nanocages as potential therapeutics for α-synuclein based neuropathies in cells and in vivo 93%
- Glycated alpha-synuclein assemblies cause distinct Parkinsons disease pathogenesis in mice 92%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.