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Biomedical subjects

Hua Zou

Publications and source records attributed to Hua Zou.

2 recordsLinked to original sources

Micro- and nanoplastics-induced neurotoxicity: a CNS-centered, evidence-graded adverse outcome pathway framework based on systematic weight-of-evidence assessment.

Micro- and nanoplastics (MPs/NPs) are ubiquitous anthropogenic particulate pollutants posing emerging threats to human neurological health. Severe heterogeneity in particle physicochemical properties, environmental aging status, exposure paradigms and experimental platforms has created persistent mechanistic uncertainties in MP/NP neurotoxicology, hindering reliable hazard characterization and risk translation. Here, we systematically consolidate empirical toxicological evidence and construct a dedicated central nervous system (CNS)-targeted adverse outcome pathway (AOP) network integrated with rigorous weight-of-evidence (WoE) grading to elucidate the hierarchical, particle-specific toxic cascades underlying MP/NP-induced neural injury. Our synthesis overturns the conventional linear toxicity paradigm, demonstrating that MPs/NPs trigger neurotoxicity via a complex multi-input mechanistic network. We definitively establish oxidative stress as a robust early convergent key event-rather than a universal molecular initiating event-orchestrating ROS overproduction, lipid peroxidation, mitochondrial dysfunction, and neuroinflammation to propagate neuronal damage. This core module is driven by five distinct particulate upstream triggers: particle-biomolecule interfacial perturbation, corona-facilitated cellular internalization, plastic-associated chemical leaching, aging-derived free radical reactivity, and gut-borne systemic neurotoxic signaling. Downstream pathogenic outcomes encompass glial overactivation, neurotransmitter dyshomeostasis, autophagy-lysosome dysfunction, metabolic reprogramming, regulated neuronal cell death, and behavioral impairments. Tiered WoE analysis confirms strong validation for early oxidative/inflammatory cascades, moderate support for gut-brain axis crosstalk and intracellular trafficking disruption, and nascent evidence for synaptic dysfunction and neurodegeneration-linked proteostatic defects. Extrapolation to human health risk remains constrained by the frequent use of high-dose exposure paradigms, limited validated data on internal dosimetry in the human brain, discrepancies between effective concentrations in experimental models and environmentally relevant human tissue burdens, and insufficient causal validation of distal adverse outcomes. We highlight key research priorities including aged mixed-particle exposure systems, leachate-controlled assays, quantitative internal dose evaluation, and mechanistic intervention verification. This evidence-stratified AOP framework resolves longstanding mechanistic ambiguities in particulate neurotoxicity, providing a standardized, causality-based foundation for future mechanistic exploration and health risk assessment of global plastic pollution.

Adverse outcome pathway

The causal effect of juvenile idiopathic arthritis on IgA nephropathy: A Mendelian randomization study.

IgA nephropathy (IgAN) has been documented in patients with various comorbidities. Previous observational studies showed an association between juvenile idiopathic arthritis (JIA) and IgAN. The aim of this study was to determine whether there is a causal effect of JIA on the risk of IgAN using a 2-sample Mendelian randomization (MR) approach. A 2-sample MR analysis was conducted to elucidate the potential causal relationship between JIA and IgAN. Summary-level data from genome-wide association studies in the European population were utilized, including IgAN (5556 cases and 21,178 controls) and JIA (3305 cases and 9196 controls). The inverse variance weighted method showed significant evidence of a positive causal relationship between genetically predicted JIA and IgAN. For each standard deviation increase in genetically predicted JIA, the risk of IgAN was found to be increased by 22% (odds ratio [OR] = 1.22, 95% CI: 1.10-1.29, P = 3.03 × 10-4). Similar associations were observed with the weighted median (OR: 1.16, 95% CI: 1.05-1.29) and weighted mode methods (OR: 1.16 95% CI: 1.02-1.33), but not with the simple median (OR: 1.22, 95% CI: 0.99-1.50) and MR Egger method (OR: 1.21, 95% CI: 0.93-1.57). Reverse MR analysis found no inverse causal relationship between these 2 diseases. This study provides genetic evidence supporting a causal link between JIA and an increased risk of IgAN. In JIA patients, periodic evaluation of kidney function and proteinuria is warranted.

Humans