Johansen Torben, Krabbe Christina, Schmidt Sissel Ida, Serrano Alberto Martínez, Meyer Morten
Department of Cardiovascular and Renal Research, University of Southern Denmark, J.B.Winsløws Vej 21, 5000 Odense C, Denmark.
Department of Neurobiology Research, Institute of Molecular Medicine, University of Southern Denmark, J.B.Winsløws Vej 21, 5000 Odense C, Denmark.
Stem Cells Int. 2017;2017:9605432. doi: 10.1155/2017/9605432. Epub 2017 Oct 22.
Spontaneous cytosolic calcium transients and oscillations have been reported in various tissues of nonhuman and human origin but not in human midbrain-derived stem cells. Using confocal microfluorimetry, we studied spontaneous calcium transients and calcium-regulating mechanisms in a human ventral mesencephalic stem cell line undergoing proliferation and neuronal differentiation. Spontaneous calcium transients were detected in a large fraction of both proliferating (>50%) and differentiating (>55%) cells. We provide evidence for the existence of intracellular calcium stores that respond to muscarinic activation of the cells, having sensitivity for ryanodine and thapsigargin possibly reflecting IP receptor activity and the presence of ryanodine receptors and calcium ATPase pumps. The observed calcium transient activity potentially supports the existence of a sodium-calcium antiporter and the existence of calcium influx induced by depletion of calcium stores. We conclude that the cells have developed the most important mechanisms governing cytosolic calcium homeostasis. This is the first comparative report of spontaneous calcium transients in proliferating and differentiating human midbrain-derived stem cells that provides evidence for the mechanisms that are likely to be involved. We propose that the observed spontaneous calcium transients may contribute to mechanisms involved in cell proliferation, phenotypic differentiation, and general cell maturation.
在非人类和人类来源的各种组织中均已报道过自发性胞质钙瞬变和振荡,但在人源中脑干细胞中尚未见报道。我们利用共聚焦显微荧光测定法,研究了处于增殖和神经元分化阶段的人腹侧中脑干细胞系中的自发性钙瞬变及钙调节机制。在大部分增殖细胞(>50%)和分化细胞(>55%)中均检测到了自发性钙瞬变。我们提供证据表明,细胞内存在对毒蕈碱激活有反应的钙库,对ryanodine和毒胡萝卜素敏感,这可能反映了IP受体活性以及ryanodine受体和钙ATP酶泵的存在。观察到的钙瞬变活动可能支持钠钙反向转运体的存在以及钙库耗竭诱导的钙内流的存在。我们得出结论,这些细胞已经形成了调控胞质钙稳态的最重要机制。这是关于增殖和分化的人源中脑干细胞中自发性钙瞬变的首份比较报告,为可能涉及的机制提供了证据。我们提出,观察到的自发性钙瞬变可能有助于细胞增殖、表型分化和一般细胞成熟所涉及的机制。