Pall Martin L
School of Molecular Biosciences, Washington State University, Pullman, WA 99164, USA.
Brain Sci. 2024 Apr 30;14(5):454. doi: 10.3390/brainsci14050454.
The roles of perinatal development, intracellular calcium [Ca]i, and synaptogenesis disruption are not novel in the autism/ASD literature. The focus on six mechanisms controlling synaptogenesis, each regulated by [Ca]i, and each aberrant in ASDs is novel. The model presented here predicts that autism epidemic causation involves central roles of both electromagnetic fields (EMFs) and chemicals. EMFs act via voltage-gated calcium channel (VGCC) activation and [Ca]i elevation. A total of 15 autism-implicated chemical classes each act to produce [Ca]i elevation, 12 acting via NMDA receptor activation, and three acting via other mechanisms. The chronic nature of ASDs is explained via NO/ONOO(-) vicious cycle elevation and MeCP2 epigenetic dysfunction. Genetic causation often also involves [Ca]i elevation or other impacts on synaptogenesis. The literature examining each of these steps is systematically examined and found to be consistent with predictions. Approaches that may be sed for ASD prevention or treatment are discussed in connection with this special issue: . Such approaches include EMF, chemical avoidance, and using nutrients and other agents to raise the levels of Nrf2. An enriched environment, vitamin D, magnesium, and omega-3s in fish oil may also be helpful.
围产期发育、细胞内钙[Ca]i以及突触形成破坏在自闭症/自闭症谱系障碍(ASD)文献中的作用并非新鲜事。关注六种控制突触形成的机制则是新颖的,每种机制都由[Ca]i调节,且在ASD中均异常。此处提出的模型预测,自闭症流行的病因涉及电磁场(EMF)和化学物质的核心作用。EMF通过电压门控钙通道(VGCC)激活和[Ca]i升高起作用。总共15类与自闭症相关的化学物质均会导致[Ca]i升高,其中12类通过NMDA受体激活起作用,3类通过其他机制起作用。ASD的慢性本质通过NO/ONOO(-)恶性循环升高和MeCP2表观遗传功能障碍来解释。遗传病因通常也涉及[Ca]i升高或对突触形成的其他影响。对这些步骤中的每一步的文献进行了系统审查,发现与预测一致。结合本期特刊讨论了可能用于预防或治疗ASD的方法:。这些方法包括避免EMF、化学物质,以及使用营养素和其他药物来提高Nrf2的水平。丰富的环境、维生素D、镁和鱼油中的omega-3也可能有所帮助。