Piazza Valeria, Ciubotaru Catalin D, Gale Jonathan E, Mammano Fabio
Venetian Institute of Molecular Medicine, Foundation for Advanced Biomedical Research, via G. Orus 2, 35129 Padua, Italy.
Cell Calcium. 2007 Jan;41(1):77-86. doi: 10.1016/j.ceca.2006.05.005. Epub 2006 Jul 7.
Extracellular ATP is a key neuromodulator of visual and auditory sensory epithelia. In the rat cochlea, pharmacological dissection indicates that ATP, acting through a highly sensitive purinergic/IP(3)-mediated signaling pathway with (little or) no involvement of ryanodine receptors, is the principal paracrine mediator implicated in the propagation of calcium waves through supporting and epithelial cells. Measurement of sensitivity to UTP and other purinergic agonists implicate P2Y(2) and P2Y(4) as the main P2Y receptor isoforms involved in these responses. Ca2+ waves, elicited under highly reproducible conditions by carefully controlling dose (1 microM) and timing of focal agonist application (0.2s), extended over radial distance greater than 160 microm from the source, identical to those activated by damaging single outer hair cells. Altogether, these results indicate that intercellular calcium waves are a robust phenomenon that confers a significant ability for cell-cell communication in the mammalian cochlea. Further ongoing research will reveal the roles that such Ca2+ waves play in the inner ear.
细胞外ATP是视觉和听觉感觉上皮的关键神经调节剂。在大鼠耳蜗中,药理学分析表明,ATP通过高度敏感的嘌呤能/IP(3)介导的信号通路起作用,(很少或)不涉及ryanodine受体,是参与钙波通过支持细胞和上皮细胞传播的主要旁分泌介质。对UTP和其他嘌呤能激动剂的敏感性测量表明,P2Y(2)和P2Y(4)是参与这些反应的主要P2Y受体亚型。通过仔细控制剂量(1 microM)和局部激动剂应用的时间(0.2秒),在高度可重复的条件下引发的Ca2+波,从源点延伸超过160微米的径向距离,与损伤单个外毛细胞激活的情况相同。总之,这些结果表明细胞间钙波是一种强大的现象,赋予哺乳动物耳蜗细胞间通讯的显著能力。正在进行的进一步研究将揭示这种Ca2+波在内耳中所起的作用。