Yu Diana, Buibas Marius, Chow Siu-Kei, Lee Ian Y, Singer Zakary, Silva Gabriel A
Department of Bioengineering, University of California, San Diego, La Jolla, CA, USA.
Cell Mol Bioeng. 2009 Mar 1;2(1):144-155. doi: 10.1007/s12195-008-0039-1.
Retinal Müller glial cells, in addition to providing homeostatic support to retinal neurons, have been shown to engage in modulation of neuronal activity and regulate vasomotor responses in the retina, among other functions. Calcium-mediated signaling in Müller cells has been implicated to play a significant role in the intracellular and intercellular interactions necessary to carry out these functions. Although the basic molecular mechanisms of calcium signaling in Müller cells have been described, the dynamics of calcium responses in Müller cells have not been fully explored. Here, we provide a quantitative characterization of calcium signaling in an in vitro model of Müller cell signaling using the rMC-1 cell line, a well-established line developed from rat Müller cells. rMC-1 cells displayed robust intracellular calcium transients and the capacity to support calcium transient-mediated intercellular calcium waves with signaling dynamics similar to that reported for Müller cells in in situ retinal preparations. Furthermore, pharmacological perturbations of intracellular calcium transients with thapsigargin and intercellular calcium waves with purinergic receptor antagonists and gap junction blockers (PPADS and FFA, respectively) suggest that the molecular mechanisms that underlie calcium signaling in rMC-1 cells has been conserved with those of Müller cells. This model provides a robust in vitro system for investigating specific mechanistic hypotheses of intra- and intercellular calcium signaling in Müller cells.
视网膜穆勒神经胶质细胞除了为视网膜神经元提供稳态支持外,还被证明参与调节神经元活动并调节视网膜中的血管舒缩反应等功能。穆勒细胞中钙介导的信号传导被认为在执行这些功能所需的细胞内和细胞间相互作用中发挥重要作用。尽管已经描述了穆勒细胞中钙信号传导的基本分子机制,但穆勒细胞中钙反应的动力学尚未得到充分探索。在此,我们使用rMC-1细胞系(一种从大鼠穆勒细胞建立的成熟细胞系),对穆勒细胞信号传导的体外模型中的钙信号传导进行了定量表征。rMC-1细胞表现出强大的细胞内钙瞬变以及支持钙瞬变介导的细胞间钙波的能力,其信号动力学与原位视网膜制剂中报道的穆勒细胞相似。此外,用毒胡萝卜素对细胞内钙瞬变进行药理学扰动,并用嘌呤能受体拮抗剂和缝隙连接阻滞剂(分别为PPADS和FFA)对细胞间钙波进行药理学扰动,表明rMC-1细胞中钙信号传导的分子机制与穆勒细胞的分子机制一致。该模型为研究穆勒细胞中细胞内和细胞间钙信号传导的特定机制假说提供了一个强大的体外系统。