Normandie University, UNICAEN, INSERM, GIP Cyceron, Institute Blood and Brain @Caen-Normandie (BB@C), UMR-S U1237, Physiopathology and Imaging of Neurological Disorders (PhIND), 14000 Caen, France.
Lys Therapeutics, Cyceron, Boulevard Henri Becquerel, 14000 Caen, France.
Int J Mol Sci. 2022 Sep 7;23(18):10336. doi: 10.3390/ijms231810336.
The excitatory neurotransmission of the central nervous system (CNS) mainly involves glutamate and its receptors, especially N-methyl-D-Aspartate receptors (NMDARs). These receptors have been extensively described on neurons and, more recently, also on other cell types. Nowadays, the study of their differential expression and function is taking a growing place in preclinical and clinical research. The diversity of NMDAR subtypes and their signaling pathways give rise to pleiotropic functions such as brain development, neuronal plasticity, maturation along with excitotoxicity, blood-brain barrier integrity, and inflammation. NMDARs have thus emerged as key targets for the treatment of neurological disorders. By their large extracellular regions and complex intracellular structures, NMDARs are modulated by a variety of endogenous and pharmacological compounds. Here, we will present an overview of NMDAR functions on neurons and other important cell types involved in the pathophysiology of neurodegenerative, neurovascular, mental, autoimmune, and neurodevelopmental diseases. We will then discuss past and future development of NMDAR targeting drugs, including innovative and promising new approaches.
中枢神经系统(CNS)的兴奋性神经传递主要涉及谷氨酸及其受体,尤其是 N-甲基-D-天冬氨酸受体(NMDAR)。这些受体已在神经元上得到广泛描述,最近也在其他细胞类型上得到描述。如今,它们在临床前和临床研究中的差异表达和功能研究越来越受到重视。NMDAR 亚型的多样性及其信号通路产生了多种功能,如脑发育、神经元可塑性、成熟以及兴奋性毒性、血脑屏障完整性和炎症。因此,NMDAR 已成为治疗神经疾病的关键靶点。由于其庞大的细胞外区域和复杂的细胞内结构,NMDAR 受到各种内源性和药理学化合物的调节。在这里,我们将概述 NMDAR 在神经元和其他参与神经退行性、神经血管、精神、自身免疫和神经发育疾病病理生理学的重要细胞类型上的功能。然后,我们将讨论针对 NMDAR 的药物的过去和未来发展,包括创新和有前途的新方法。