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培养的飞蝗触角叶神经元的胆碱能钙反应。

Cholinergic calcium responses in cultured antennal lobe neurons of the migratory locust.

机构信息

Institute of Physiology and Cell Biology, University of Veterinary Medicine Hannover, Bischofsholer Damm 15/102, 30173, Hannover, Germany.

出版信息

Sci Rep. 2021 May 11;11(1):10018. doi: 10.1038/s41598-021-89374-2.

Abstract

Locusts are advantageous organisms to elucidate mechanisms of olfactory coding at the systems level. Sensory input is provided by the olfactory receptor neurons of the antenna, which send their axons into the antennal lobe. So far, cellular properties of neurons isolated from the circuitry of the olfactory system, such as transmitter-induced calcium responses, have not been studied. Biochemical and immunocytochemical investigations have provided evidence for acetylcholine as classical transmitter of olfactory receptor neurons. Here, we characterize cell cultured projection and local interneurons of the antennal lobe by cytosolic calcium imaging to cholinergic stimulation. We bulk loaded the indicator dye Cal-520 AM in dissociated culture and recorded calcium transients after applying cholinergic agonists and antagonists. The majority of projection and local neurons respond with increases in calcium levels to activation of both nicotinic and muscarinic receptors. In local interneurons, we reveal interactions lasting over minutes between intracellular signaling pathways, mediated by muscarinic and nicotinic receptor stimulation. The present investigation is pioneer in showing that Cal-520 AM readily loads Locusta migratoria neurons, making it a valuable tool for future research in locust neurophysiology, neuropharmacology, and neurodevelopment.

摘要

蝗虫是阐明系统水平嗅觉编码机制的有利生物体。感觉输入由触角的嗅觉受体神经元提供,它们的轴突进入触角叶。到目前为止,尚未研究从嗅觉系统电路中分离出的神经元的细胞特性,例如递质诱导的钙反应。生化和免疫细胞化学研究为乙酰胆碱作为嗅觉受体神经元的经典递质提供了证据。在这里,我们通过细胞质钙成像来描述触角叶投射和局部中间神经元对胆碱能刺激的反应。我们在分离培养物中批量加载指示剂染料 Cal-520 AM,并在应用胆碱能激动剂和拮抗剂后记录钙瞬变。大多数投射和局部神经元对烟碱型和毒蕈碱型受体的激活均表现出钙水平的增加。在局部中间神经元中,我们揭示了由毒蕈碱和烟碱型受体刺激介导的细胞内信号通路之间持续数分钟的相互作用。本研究首次表明 Cal-520 AM 很容易加载 Locusta migratoria 神经元,使其成为未来蝗虫神经生理学、神经药理学和神经发育研究的有价值的工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00d0/8113283/d7ba6adf8033/41598_2021_89374_Fig1_HTML.jpg

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