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首页> 外文期刊>ACS Omega >Interfacial pH Behavior at a Cell/Gate Insulator Nanogap Induced by Allergic Responses
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Interfacial pH Behavior at a Cell/Gate Insulator Nanogap Induced by Allergic Responses

机译:过敏反应诱导的细胞/门绝缘子纳米间隙的界面pH行为

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In this paper, we clarify the interfacial pH behavior induced by allergic responses at a mast cell/gate insulator nanogap detected by laser scanning confocal fluorescence microscopy. In a previous work, the change in interfacial pH detected on the basis of allergic responses was monitored at a mast cell/gate insulator nanogap interface using a cell-cultured gate ion-sensitive field-effect transistor (ISFET), but the interfacial pH behavior at a mast cell/gate insulator nanogap has not been clarified using other methods. Here, the phospholipid fluorescein is employed as the extracellular pH indicator, which is fixed to the external side of the plasma membrane of mast cells cultured on a substrate. As a result, the interfacial pH at the mast cell/substrate nanogap increases after mast cells with IgE on their membrane are activated by the interaction between IgE and an allergen. This is due to the basicity of histamine molecules released from mast cells. Moreover, the change in the interfacial pH at the mast cell/substrate nanogap is larger than that at the mast cell/bulk solution interface. That is, molecules of substances secreted as a result of allergic responses are assumed to accumulate around the cell/substrate nanogap. The data obtained in this study support the idea that potentiometric ion sensors such as ISFETs can detect a cellular-function-induced change in pH at a cell/electrode nanogap in real time.
机译:在本文中,我们阐明了通过激光扫描共聚焦荧光显微镜检测到的肥大细胞/栅绝缘子纳米间隙的过敏反应所引起的界面pH行为。在以前的工作中,使用细胞培养的栅极离子敏感场效应晶体管(ISFET)在肥大细胞/栅极绝缘体纳米间隙界面上监测了基于过敏反应检测到的界面pH的变化,但是界面的pH行为在肥大单元/栅绝缘子上的纳米间隙尚未使用其他方法阐明。此处,磷脂荧光素用作细胞外pH指示剂,其固定在培养在基质上的肥大细胞的质膜的外侧。结果,在膜上具有IgE的肥大细胞被IgE和过敏原之间的相互作用激活后,肥大细胞/基质纳米间隙的界面pH升高。这是由于从肥大细胞释放的组胺分子的碱性。此外,肥大细胞/底物纳米间隙的界面pH的变化大于肥大细胞/体溶液界面的pH的变化。即,假定由于过敏反应而分泌的物质分子在细胞/底物纳米间隙周围积聚。这项研究中获得的数据支持这样的想法:诸如ISFET的电位离子传感器可以实时检测细胞/电极纳米间隙中细胞功能引起的pH值变化。

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