Xuanshuang Mai, Qiuhong Du, Jiajie Wang, Jiawei Zhou, Shushu Song, Zhongbi Peng, Mingdan You, Hao Zhou
Autism spectrum disorder (ASD) is associated with reduced serum taurine (TA) levels in children with ASD. However, the protective effects of TA against As-associated neurodevelopmental injury remain unclear. Here, we investigated whether TA ameliorates maternal As exposure-associated ASD-like behaviors and explored the underlying mechanisms. Pregnant Sprague-Dawley rats received As₂O₃ and TA through drinking water during gestation. Offspring behaviors and prefrontal cortical changes were assessed using behavioral, histological, ultrastructural, biochemical, and cell-based assays. Maternal As exposure impaired social preference and social novelty preference and increased repetitive, stereotyped, and anxiety-like behaviors, whereas TA treatment ameliorated these abnormalities. In the prefrontal cortex, As exposure increased synaptic cleft width by 39.80%, reduced postsynaptic density thickness by 17.28%, and increased Cleaved Caspase-3 expression to 3.38-fold that of the CTL group. The density of TUNEL⁺/NeuN⁺ cells increased from 38.10 to 213.34 cells/mm², whereas TA treatment reduced it to 42.45 and 40.27 cells/mm², respectively. TA also attenuated astrocyte hyperactivation and A1-like phenotypic alteration, restored the NGF/TrkA pathway, and reduced astrocyte-mediated neuronal apoptosis in vitro. TrkA inhibition weakened the anti-apoptotic effect of TA. These findings suggest that TA may alleviate As-associated neurodevelopmental injury by modulating astrocyte reactivity and promoting neuronal survival.