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Influence of maternal zinc supplementation on the development of autism-associated behavioural and synaptic deficits in offspring Shank3 -knockout mice

机译:母体锌补充对后代Shank3 - Knockout小鼠在后代相关行为和突触缺陷发展的影响

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Autism Spectrum Disorders (ASD) are characterised by deficits in social interactions and repetitive behaviours. Multiple ASD-associated mutations have been identified in the Shank family of proteins that play a critical role in the structure and plasticity of glutamatergic synapses, leading to impaired synapse function and the presentation of ASD-associated behavioural deficits in mice. Shank proteins are highly regulated by zinc, where zinc binds the Shank SAM domain to drive synaptic protein recruitment and synaptic maturation. Here we have examined the influence of maternal dietary zinc supplementation during pregnancy and lactation on the development of ASD-associated behavioural and synaptic changes in the offspring Shank3 knockout (Shank3?/?) mice. Behavioural and electrophysiological experiments were performed in juvenile and adult Shank3?/? and wildtype littermate control mice born from mothers fed control (30?ppm, ppm) or supplemented (150?ppm) dietary zinc. We observed that the supplemented maternal zinc diet prevented ASD-associated deficits in social interaction and normalised anxiety behaviours in Shank3?/? offspring mice. These effects were maintained into adulthood. Repetitive grooming was also prevented in adult Shank3?/? offspring mice. At the synaptic level, maternal zinc supplementation altered postsynaptic NMDA receptor-mediated currents and presynaptic function at glutamatergic synapses onto medium spiny neurons in the cortico-striatal pathway of the Shank3?/? offspring mice. These data show that increased maternal dietary zinc during pregnancy and lactation can alter the development of ASD-associated changes at the synaptic and the behavioural levels, and that zinc supplementation from the beginning of brain development can prevent ASD-associated deficits in Shank3?/? mice long term.
机译:自闭症谱系障碍(ASD)的特点是社会互动和重复行为的缺陷。已经在柄蛋白的柄族蛋白质中鉴定了多个ASD相关突变,其在谷氨酰胺突触的结构和可塑性中发挥着关键作用,导致突触功能受损和小鼠asd相关行为缺陷的呈现。胫骨蛋白受锌的高度调节,其中锌结合柄SAM结构域以驱动突触蛋白募集和突触成熟。在这里,我们研究了在后代Shank3敲除(Shank3?/α)小鼠中怀孕期间孕妇膳食锌补充剂的影响和哺乳期。在少年和成人Shank3中进行行为和电生理实验?/?和野生型凋落物对照小鼠出生于喂养的母亲喂养(30?ppm,ppm)或补充(150μlppm)膳食锌。我们观察到补充母亲锌饮食阻止了浅款相关的赤字在社交互动和鼻梁中的正常焦虑行为?/?后代小鼠。这些效果保持在成年期。在成年Shank3也被预防重复的修饰?/?后代小鼠。在突触水平,母体锌补充剂改变了谷氨酸突突突突突突突突突突突突突突突突出的Shank3的中等多刺神经元?/?后代小鼠。这些数据显示怀孕和哺乳期间的母体膳食锌增加可以改变突触和行为水平的ASD相关变化的发展,并且从脑发育开始时补充的锌可以防止Shank3中的ASD相关缺陷?/?长期小鼠。

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