Microfluidic Cultures of Basal Forebrain Cholinergic Neurons for Assessing Retrograde Cell Death by Live Imaging.

IF 1 Q3 BIOLOGY Bio-protocol Pub Date : 2025-01-05 DOI:10.21769/BioProtoc.5149
Srestha Dasgupta, Mansi A Pandya, Wilma J Friedman
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Abstract

Neurons are highly polarized cells, with axons that may innervate distant target regions. In the brain, basal forebrain cholinergic neurons (BFCNs) possess extensive axons that project to several target regions such as the cortex, hippocampus, and amygdala, and may be exposed to a specific microenvironment in their axon targets that may have retrograde effects on neuronal health. Interestingly, BFCNs express the pan-neurotrophin receptor p75NTR throughout life while also concomitantly co-expressing all Trk receptors, making them capable of responding to both mature and precursor neurotrophins to promote survival or apoptosis, respectively. Levels of these trophic factors may be modulated in the BFCN axon or soma microenvironment under neurodegenerative conditions such as seizure and brain injury. In this protocol, BFCNs are established in microfluidic devices for compartmental culture, with the aim of studying the effects of axon- or soma-specific stimulation of BFCNs for an in vitro representation of distal axon vs. soma environments as seen in vivo. This study further establishes a novel method of tracing and imaging live BFCNs exposed to stimuli in their distal axons with the aim of assessing retrograde cell death. The in vitro compartmental culture system of BFCNs that allows live imaging may be applied to investigate various effects of axon- or soma-specific stimuli that affect BFCN health, maintenance, and death, to model events that occur in the context of brain injury and neurodegenerative disorders. Key features • Separation of axons and soma of basal forebrain primary neurons in vitro using microfluidic chambers. • Compartmental/localized treatment of axons or somas of BFCNs. • Live imaging of retrogradely labeled BFCNs to assess cell death.

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基底前脑胆碱能神经元微流体培养用于实时成像评估逆行细胞死亡。
神经元是高度极化的细胞,其轴突可以支配远处的目标区域。在大脑中,基底前脑胆碱能神经元(BFCNs)具有广泛的轴突,可投射到多个目标区域,如皮层、海马和杏仁核,并且可能暴露于轴突目标的特定微环境中,这可能对神经元健康产生逆行影响。有趣的是,BFCNs在一生中表达泛神经营养因子受体p75NTR,同时也同时表达所有Trk受体,使它们能够分别对成熟和前体神经营养因子作出反应,以促进生存或凋亡。在癫痫发作和脑损伤等神经退行性疾病中,这些营养因子的水平可能在BFCN轴突或体细胞微环境中受到调节。在本方案中,在微流体装置中建立BFCNs进行隔室培养,目的是研究轴突或体细胞特异性刺激BFCNs对体内远端轴突与体细胞环境的体外表征的影响。本研究进一步建立了一种追踪和成像远端轴突刺激下活的BFCNs的新方法,目的是评估逆行性细胞死亡。BFCN的体外室室培养系统允许实时成像,可用于研究轴突或躯体特异性刺激对BFCN健康、维持和死亡的各种影响,以模拟脑损伤和神经退行性疾病背景下发生的事件。•利用微流体室体外分离基底前脑初级神经元轴突和体细胞。•bbfcns轴突或体的区隔/局部治疗。•逆行标记BFCNs的实时成像以评估细胞死亡。
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