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首页> 外文期刊>Journal of Muscle Research and Cell Motility >The signaling mechanisms of long distance intercellular calcium waves (far waves) in cultured human uterine myocytes.
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The signaling mechanisms of long distance intercellular calcium waves (far waves) in cultured human uterine myocytes.

机译:培养的人子宫肌细胞中长距离细胞间钙波(远波)的信号传导机制。

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Cultured human myocytes exhibit intercellular calcium waves that travel farther than 100 microm ('far waves'). This work investigates the mechanism of far wave propagation. Culture lines were initiated from myometrial biopsies of term pregnant women. Calcium green-1 was used as a fluorescence probe for intracellular free calcium. Serial imaging was performed at a frame rate of 0.83 frames/s. Intercellular calcium waves were mechanically initiated by atraumatically applying small drops of mineral oil onto the surface of the monolayer. Each intercellular calcium wave was scored using a standardized grid, and points were assigned depending upon the distance the wave traveled and the fluorescent intensity observed within each region. Experiments were performed in the presence of inhibitors of gap junctions and connexin hemichannels (octanol), ATP (apyrase and MDL 12330 A), prostaglandins (indomethacin, high concentrations of lanthanum), the prostaglandin transporter, PGT (DIDS), and transmembrane calcium flux (low concentrations of lanthanum). Octanol, apyrase and MDL 12330 A failed to modify the far waves, indicating gap junctions, connexin hemichannels and ATP do not participate in the paracrine mechanism. Indomethacin at 30, 100 and 300 microM, in a dose dependent manner, reduced the far wave score to 0, suggesting a prostaglandin was critically involved in the mechanism. DIDS reduced the far wave score, but did not fully inhibit wave propagation, suggesting the presence of PGT-dependent and -independent components to the mechanism. Lanthanum at 0.1 mM had no effect, but at 1 mM, reduced the far wave score. These results are consistent with PGF2alpha and/or PGE2 being the signal molecule for the PGT-dependent component. Taken together, these data indicate that long distance intercellular calcium waves in cultured human myocytes utilizes a paracrine signaling mechanism, but with more than one extracellular signaling compound.
机译:培养的人心肌细胞表现出的细胞间钙波传播的距离超过100微米(“远波”)。这项工作研究了远波传播的机制。培养系从足月孕妇的子宫肌组织活检开始。钙绿1用作细胞内游离钙的荧光探针。以0.83帧/秒的帧速率执行串行成像。通过无创性地将小滴矿物油滴涂到单层表面上,机械地引发细胞间钙波。使用标准化网格对每个细胞间钙波进行评分,并根据波传播的距离和每个区域内观察到的荧光强度来分配点。在间隙连接和连接蛋白半通道(辛醇),ATP(apyrase和MDL 12330 A),前列腺素(吲哚美辛,高浓度镧),前列腺素转运蛋白,PGT(DIDS)和跨膜钙通量抑制剂的存在下进行实验(低浓度的镧)。辛醇,腺苷三磷酸酶和MDL 12330 A无法修饰远波,表明缝隙连接,连接蛋白半通道和ATP不参与旁分泌机制。 30、100和300 microM的消炎痛以剂量依赖性方式将远波评分降低至0,表明前列腺素在该机制中起关键作用。 DIDS降低了远波得分,但没有完全抑制波传播,表明该机制存在PGT依赖性和非依赖性成分。镧在0.1 mM时没有作用,但是在1 mM时降低了远波得分。这些结果与PGF2α和/或PGE2是PGT依赖性成分的信号分子一致。综上所述,这些数据表明,培养的人心肌细胞中的长距离细胞间钙波利用旁分泌信号传导机制,但具有不止一种细胞外信号传导化合物。

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