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氯化铵会改变神经元的兴奋性和突触小泡释放。

Ammonium chloride alters neuronal excitability and synaptic vesicle release.

机构信息

Department of Pharmacology, Vanderbilt University, 23rd Avenue South at Pierce Street, Nashville, TN, 37232, USA.

出版信息

Sci Rep. 2017 Jul 11;7(1):5061. doi: 10.1038/s41598-017-05338-5.

Abstract

Genetically encoded pH-sensors are widely used in studying cell membrane trafficking and membrane protein turnover because they render exo-/endocytosis-associated pH changes to fluorescent signals. For imaging and analysis purposes, high concentration ammonium chloride is routinely used to alkalize intracellular membrane compartments under the assumption that it does not cause long-term effects on cellular processes being studied like neurotransmission. However, pathological studies about hyperammonemia have shown that ammonium is toxic to brain cells especially astrocytes and neurons. Here, we focus on ammonium's physiological impacts on neurons including membrane potential, cytosolic Ca and synaptic vesicles. We have found that extracellularly applied ammonium chloride as low as 5 mM causes intracellular Ca-increase and a reduction of vesicle release even after washout. The often-used 50 mM ammonium chloride causes more extensive and persistent changes, including membrane depolarization, prolonged elevation of intracellular Ca and diminution of releasable synaptic vesicles. Our findings not only help to bridge the discrepancies in previous studies about synaptic vesicle release using those pH-sensors or other vesicle specific reporters, but also suggest an intriguing relationship between intracellular pH and neurotransmission.

摘要

基因编码的 pH 传感器被广泛用于研究细胞膜运输和膜蛋白周转,因为它们将外排/内摄相关的 pH 变化转化为荧光信号。为了成像和分析目的,通常使用高浓度氯化铵使细胞内膜隔间碱化,假设它不会对正在研究的细胞过程(如神经传递)产生长期影响。然而,关于高氨血症的病理学研究表明,铵对脑细胞,特别是星形胶质细胞和神经元有毒性。在这里,我们重点研究了铵对神经元的生理影响,包括膜电位、胞质 Ca 和突触囊泡。我们发现,即使在冲洗后,即使是低至 5mM 的细胞外氯化铵也会引起细胞内 Ca 增加和囊泡释放减少。常用的 50mM 氯化铵会引起更广泛和持久的变化,包括膜去极化、胞内 Ca 持续升高和可释放的突触囊泡减少。我们的发现不仅有助于弥合先前使用这些 pH 传感器或其他囊泡特异性报告器研究突触囊泡释放的研究中的差异,还提示细胞内 pH 和神经传递之间存在有趣的关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b4d6/5505971/12fe7e720265/41598_2017_5338_Fig1_HTML.jpg

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