Lotusine ameliorates propionic acid‐induced autism spectrum disorder‐like behavior in mice by activating D1 dopamine receptor in medial prefrontal cortex

前额叶皮质 多巴胺 兴奋性突触后电位 神经科学 自闭症谱系障碍 神经保护 药理学 莫里斯水上航行任务 敌手 化学 受体 心理学 医学 内科学 自闭症 抑制性突触后电位 海马体 精神科 认知
作者
Qingqing Liu,Jie Mi,Yaya Du,Rong Zheng,Yan Qin,Wei Jiang,Emma Li,Jiaoyan Yu,Le Yang,Xiao‐yan Du,Qi Yang,Yanyan Guo
出处
期刊:Phytotherapy Research [Wiley]
卷期号:38 (2): 1089-1103 被引量:2
标识
DOI:10.1002/ptr.8098
摘要

Abstract Autism spectrum disorder (ASD) is a multifaceted neuropsychiatric condition for which effective drug therapy for core clinical symptoms remains elusive. Lotusine, known for its neuroprotective properties in the treatment of neurological disorders, holds potential in addressing ASD. Nevertheless, its specific efficacy in ASD remains uncertain. This study aims to investigate the therapeutic potential of lotusine in ASD and elucidate the underlying molecular mechanisms. We induced an ASD mouse model through intracerebroventricular‐propionic acid (ICV‐PPA) injection for 7 days, followed by lotusine administration for 5 days. The efficacy of lotusine was evaluated through a battery of behavioral tests, including the three‐chamber social test. The underlying mechanisms of lotusine action in ameliorating ASD‐like behavior were investigated in the medial prefrontal cortex (mPFC) using whole‐cell patch‐clamp recordings, western blotting, immunofluorescence staining, molecular docking, and cellular thermal shift assay. The efficacy and mechanisms of lotusine were further validated in vitro. Lotusine effectively alleviated social deficits induced by ICV‐PPA injection in mice by counteracting the reduction in miniature excitatory postsynaptic current frequency within the mPFC. Moreover, lotusine enhanced neuronal activity and ameliorated α‐amino‐3‐hydroxy‐5‐methyl‐4‐isoxazolepropionic acid receptor dysfunction in ICV‐PPA infusion mice by upregulating c‐fos, p‐GluA1 Ser 845, and p‐GluA1 Ser 831 protein levels within the mPFC. Our findings also suggest that lotusine may exert its effects through modulation of the D1 dopamine receptor (DRD1). Furthermore, the rescuing effects of lotusine were nullified by a DRD1 antagonist in PC12 cells. In summary, our results revealed that lotusine ameliorates ASD‐like behavior through targeted modulation of DRD1, ultimately enhancing excitatory synaptic transmission. These findings highlight the potential of lotusine as a nutritional supplement in the treatment of ASD.
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