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EFFECT OF GAP-JUNCTIONAL CELL-TO-CELL COMMUNICATION ON INTRACELLULAR ICE PROPAGATION AND CONSEQUENT CELL VIABILITY

机译:间隙连接的细胞间通信对细胞内冰繁殖和后续细胞存活的影响

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摘要

Intracellular ice formation (IIF) propagates from cell to cell and causes lethal damage to the cell during the freezing process. In this study, we hypothesized that IIF passes through gap junctions between cells and that blockage of gap junctions increases cell viability after the freeze–thaw process because of the inhibited IIF propagation. Monolayer cultures of Madin–Darby canine kidney (MDCK) cells on glass coverslips were preincubated with and without the gap-junction blocker heptanol and subsequently frozen at different cooling rates on a temperature-controlled stage. Microscopic observations showed that IIF propagation was successfully inhibited in the blocked group. However, cell viability in the blocked group after thawing was significantly lower than that in the non-blocked group. Although results of this study did not confirm our hypotheses, they indicated the important role of gap-junctional communication in the occurrence of IIF and the consequent cell damage.
机译:细胞内冰的形成(IIF)在细胞之间传播,并在冷冻过程中对细胞造成致命伤害。在这项研究中,我们假设IIF穿过细胞之间的间隙连接,并且冻融过程后,由于IIF的传播受到抑制,间隙连接的阻塞会增加细胞活力。将玻璃盖玻片上的Madin-Darby犬肾(MDCK)细胞单层培养物与或不与间隙连接阻滞剂庚醇一起预孵育,然后在温度控制的阶段以不同的冷却速率冷冻。显微镜观察表明,在阻断组中IIF的繁殖被成功抑制。然而,解冻后封闭组的细胞活力显着低于非封闭组。尽管这项研究的结果未能证实我们的假设,但它们表明了间隙连接通讯在IIF发生和随后的细胞损伤中的重要作用。

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