Thiopental Elevates Steady-State Levels of Intracellular Ca2+ and Zn2+ in Rat Thymic Lymphocytes

Norio Kamemura, Keisuke Oyama, S. Ueno, Mizuki Mizobuchi, K. Ishidoh, Naoki Kanematsu
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Abstract

Thiopental is an ultra-short-acting barbiturate and has been used commonly in the induction phase of general anesthesia. However, the toxic effect of thiopental is not completely clear. The effect of thiopental on intracellular Ca2+ ([Ca2+]i) levels was investigated in non-excitable cells. Experiments were carried out using a flow-cytometric technique, rat thymic lymphocytes (as non-excitable cells), and appropriate fluorescent probes. Treatment of cells with 300 µM thiopental increased Fluo-3 fluorescence intensity, indicating elevation of [Ca2+]i. This increase was partially attenuated by a chelator of intracellular Zn2+. Thus, thiopental elevated both [Ca2+]i and intracellular Zn2+ ([Zn2+]i) levels. Under intracellular Zn2+-free conditions, 100–300 µM thiopental was still able to induce a statistically significant increase in [Ca2+]i, whereas removal of extracellular Ca2+ greatly reduced the increase in [Ca2+]i induced by this dose of thiopental. Therefore, the thiopental-induced increase in [Ca2+]i was mainly due to an increased influx of Ca2+. Treatment of cells with 300 µM thiopental increased FluoZin-3 fluorescence intensity, indicating the presence of [Zn2+]i, both in the presence and absence of extracellular Zn2+. The thiopental-induced elevation of [Zn2+]i was due to an increase in both influx of Zn2+ and intracellular Zn2+ release. Concanavalin A (10 µg/mL) augmented Fluo-3 fluorescence in the presence of an intracellular Zn2+ chelator. The combination of concanavalin A and 100–300 µM thiopental synergistically increased [Ca2+]i. Results suggest that thiopental increases [Ca2+]i in both quiescent and activated lymphocytes, possibly resulting in modulation of immune system function.
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硫喷妥钠提高大鼠胸腺淋巴细胞内Ca2+和Zn2+的稳态水平
硫喷妥钠是一种超短效巴比妥类药物,常用于全麻诱导期。然而,硫喷妥钠的毒性作用尚不完全清楚。研究了硫喷妥钠对非兴奋细胞内Ca2+([Ca2+]i)水平的影响。实验使用流式细胞术技术、大鼠胸腺淋巴细胞(作为非兴奋性细胞)和适当的荧光探针进行。用300µM硫喷妥钠处理细胞增加了Fluo-3荧光强度,表明[Ca2+]i升高。这种增加被细胞内Zn2+的螯合剂部分减弱。因此,硫喷妥钠提高了[Ca2+]i和细胞内Zn2+([Zn2+]i)水平。在细胞内无Zn2+的条件下,100–300µM硫喷妥钠仍然能够诱导[Ca2+]i的统计学显著增加,而去除细胞外Ca2+大大减少了该剂量硫喷妥铵诱导的[Ca2+]i的增加。因此,硫喷妥钠诱导的[Ca2+]i增加主要是由于Ca2+内流增加。用300µM硫喷妥钠处理细胞增加了FluoZin-3的荧光强度,表明在存在和不存在细胞外Zn2+的情况下存在[Zn2+]i。硫喷妥钠诱导的[Zn2+]i升高是由于Zn2+内流和细胞内Zn2+释放的增加。伴刀豆球蛋白A(10µg/mL)在细胞内Zn2+螯合剂存在下增强Fluo-3荧光。刀豆球蛋白A和100–300µM硫喷妥钠的组合协同增加了[Ca2+]i。结果表明,硫喷妥钠增加了静止和活化淋巴细胞的[Ca2+]i,可能导致免疫系统功能的调节。
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