利用Ca2+成像技术鉴定含有钙透性AMPA和盐酸盐受体的神经元。

IF 1.1 Q3 BIOLOGY Bio-protocol Pub Date : 2025-02-05 DOI:10.21769/BioProtoc.5199
Sergei G Gaidin, Artem M Kosenkov, Valery P Zinchenko, Bakytzhan K Kairat, Arailim E Malibayeva, Sultan T Tuleukhanov
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引用次数: 0

摘要

钙透性AMPA受体(CP-AMPARs)和盐酸盐受体(CP-KARs)在突触可塑性中起着至关重要的作用,并涉及多种神经过程。目前用于识别表达这些受体的神经元的方法,如电生理记录和免疫染色,在吞吐量或无法区分功能受体方面存在局限性。该协议描述了一种新的方法,用于使用钙成像对含有CP-AMPARs和CP-KARs的神经元进行重要鉴定。该方法包括在神经元上加载Fura-2 AM(一种钙敏感荧光探针),使用KCl来识别所有神经元,并在电压门控钙通道阻滞剂和NMDAR/KAR拮抗剂存在的情况下进一步添加特异性AMPAR激动剂(例如5-氟维拉地啶)来识别含有cp -AMPAR的神经元。在存在和不存在NASPM(一种CP-AMPAR拮抗剂)的情况下,使用软骨藻酸鉴定含有cp - kar的神经元。与现有方法相比,该技术具有许多优点,包括能够同时评估大量神经元群体,区分不同受体类型,并提供活神经元中CP-AMPAR和CP-KAR表达的功能信息,使其成为研究突触可塑性和神经系统疾病的有价值的工具。•所描述的协议允许含有钙透性AMPA (CP-AMPARs)和盐酸盐受体(CP-KARs)的神经元的重要鉴定。•该方法可与其他方法结合使用,如电生理记录或免疫染色。•该方法快速,可重复性好,并且允许非侵入性地同时鉴定大量含有CP-AMPAR-/ cp - kar的神经元。•所描述的方案可用于不同药物的药理学筛选,包括神经保护剂,或研究健康和疾病中含有CP-AMPAR-/ cp - kar的神经元的特征。
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Identification of Neurons Containing Calcium-Permeable AMPA and Kainate Receptors Using Ca2+ Imaging.

Calcium-permeable AMPA receptors (CP-AMPARs) and kainate receptors (CP-KARs) play crucial roles in synaptic plasticity and are implicated in various neurological processes. Current methods for identifying neurons expressing these receptors, such as electrophysiological recordings and immunostaining, have limitations in throughput or inability to distinguish functional receptors. This protocol describes a novel approach for the vital identification of neurons containing CP-AMPARs and CP-KARs using calcium imaging. The method involves loading neurons with Fura-2 AM, a calcium-sensitive fluorescent probe, KCl application to identify all neurons, and further addition of specific AMPAR agonists (e.g., 5-fluorowillardiine) in the presence of voltage-gated calcium channel blockers and NMDAR/KAR antagonists to identify CP-AMPAR-containing neurons. CP-KAR-containing neurons are identified using domoic acid applications in the presence and absence of NASPM (a CP-AMPAR antagonist). This technique offers several advantages over existing methods, including the ability to assess large neuronal populations simultaneously, distinguish between different receptor types, and provide functional information about CP-AMPAR and CP-KAR expression in living neurons, making it a valuable tool for studying synaptic plasticity and neurological disorders. Key features • The described protocol allows vital identification of neurons containing calcium-permeable AMPA (CP-AMPARs) and kainate receptors (CP-KARs). • This approach can be combined with other methods, such as electrophysiological recordings or immunostaining. • The method is fast, reproducible, and allows non-invasive simultaneous identification of numerous CP-AMPAR-/CP-KAR-containing neurons. • The described protocol can be used for pharmacological screening of different drugs, including neuroprotectors, or investigation of features of CP-AMPAR-/CP-KAR-containing neurons in health and disease.

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