首页> 外文期刊>European Journal of Pharmacology: An International Journal >Human mast cell line-1 (HMC-1) cells exhibit a membrane capacitance increase when dialysed with high free-Ca2+ and GTPγS containing intracellular solution
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Human mast cell line-1 (HMC-1) cells exhibit a membrane capacitance increase when dialysed with high free-Ca2+ and GTPγS containing intracellular solution

机译:用高游离Ca2 +和含有GTPγS的细胞内溶液透析时,人肥大细胞系1(HMC-1)细胞的膜电容增加

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An increase in cytosolic free calcium concentration [Ca2+] i initiates the exocytotic activity in various types of secretory cells. The guanosine 5′-O-[3-thio]triphosphate (GTPγS), a non-hydrolysable analogue of GTP (guanosine 5′-triphosphate), is an effective secretagogue for different cell types of different species, like mast cells, neutrophils or eosinophils. Consequently, the internal administration of GTPγS causes degranulation of mouse and rat mast cells. Regarding rat mast cells, it is proved that Ca2+ can cooperate with GTP or GTPγS in accelerating and increasing amplitude of the secretory response. All the previous studies with respect to capacitance recordings and mast cells were performed using mouse or rat mast cells, usually derived from peritoneum or the rat basophilic leukaemia cell line RBL. In this study, we applied the capacitance measurement technique to the human mast cell line-1 (HMC-1) cells, an immature cell line established from a patient with mast cell leukaemia. Patch-clamp dialysis experiments revealed that high intracellular free Ca 2+ and GTPγS concentrations are both required for considerable capacitance increases in HMC-1 cells. During degranulation of HMC-1 cells, the total membrane capacitance (Cm) increase appeared continuously and, in some cases, as a discrete capacitance change, developing in a stepwise manner. Then, we tested the effect of latrunculin B upon HMC-1 cell capacitance increase as well as of some classic mast cell stimulators like PMA, A23187 and IL-1β in hexosaminidase release. Finally, we could conclude that the HMC-1 cell line represents a suitable model for the study of human mast cell degranulation.
机译:胞质游离钙浓度[Ca2 +] i的增加会引发各种类型分泌细胞中的胞吐活性。鸟苷5'-O- [3-硫代]三磷酸(GTPγS)是GTP的不可水解类似物(鸟苷5'-三磷酸),是不同物种的不同细胞类型(例如肥大细胞,嗜中性白血球或嗜酸性粒细胞。因此,GTPγS的内部给药导致小鼠和大鼠肥大细胞脱粒。关于大鼠肥大细胞,已证明Ca 2+可以与GTP或GTPγS协同作用以加速和增加分泌反应的幅度。以前所有关于电容记录和肥大细胞的研究都是使用小鼠或大鼠肥大细胞进行的,通常来自腹膜或大鼠嗜碱性白血病细胞系RBL。在这项研究中,我们将电容测量技术应用于人类肥大细胞系1(HMC-1)细胞,这是一种由肥大细胞白血病患者建立的不成熟细胞系。膜片钳透析实验表明,高细胞内游离Ca 2+和GTPγS浓度都是HMC-1细胞中显着电容增加所必需的。在HMC-1细胞脱粒过程中,总膜电容(Cm)不断增加,并且在某些情况下,随着离散电容的变化,逐步形成。然后,我们测试了latrunculin B对HMC-1细胞电容增加的影响以及己糖胺酶释放中一些经典肥大细胞刺激物(如PMA,A23187和IL-1β)的作用。最后,我们可以得出结论,HMC-1细胞系代表了用于研究人类肥大细胞脱粒的合适模型。

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