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氨氯地平对两种129小鼠亚系(129P3/J和129X1/SvJ)鼓索神经NaCl反应的抑制作用。

Amiloride inhibition on NaCl responses of the chorda tympani nerve in two 129 substrains of mice, 129P3/J and 129X1/SvJ.

作者信息

Ohkuri Tadahiro, Yasumatsu Keiko, Shigemura Noriatsu, Yoshida Ryusuke, Ninomiya Yuzo

机构信息

Section of Oral Neuroscience, Graduate School of Dental Sciences, Kyushu University, 3-1-1 Maidashi, Higashi-ku, Fukuoka 812-8582, Japan.

出版信息

Chem Senses. 2006 Jul;31(6):565-72. doi: 10.1093/chemse/bjj061. Epub 2006 May 24.

Abstract

Amiloride, a sodium channel blocker, is known to suppress NaCl responses of the chorda tympani (CT) nerve in various mammalian species. In mice, the NaCl suppressing effect of amiloride is reported to differ among strains. In C57BL mice, amiloride inhibits NaCl responses to about 50% of control, whereas no such clear suppression was evident in prior studies with 129 mice. However, evidence from behavioral studies is not entirely consistent with this. Recently, it has been found that genetic backgrounds of 129 mice differ within substrains. 129X1/SvJ (formerly 129/SvJ) mice differ from the 129P3/J (formerly 129/J) strain by 25% of sequence length polymorphisms. Therefore, we examined possible substrain difference between 129P3/J and 129X1/SvJ mice in the amiloride sensitivity of electrophysiologically recorded NaCl responses. Amiloride significantly suppressed CT responses to NaCl without affecting responses to KCl both in 129P3/J and 129X1/SvJ mice. However, the magnitude of the amiloride inhibition was significantly larger (approximately 50% of control in response to 0.01-1.0 M NaCl by 100 microM amiloride) in 129X1/SvJ than in 129P3/J mice (approximately 20% of control in response to 0.03-0.3 M NaCl by 100 microM amiloride). Threshold amiloride concentration for suppression of responses to 0.3 M NaCl was 30 microM in 129P3/J mice, which was higher than that in 129X1/SvJ mice (10 microM). In 129X1/SvJ mice, the threshold amiloride concentration eliciting inhibition of NaCl responses and the magnitude of the inhibition were comparable with those in C57BL/6 mice. These results suggest that amiloride sensitivity of NaCl responses differs even among the 129 substrains, 129P3/J and 129 X1/SvJ, and the substrain difference of 129 mice in amiloride sensitivity is as large as that between two inbred strains (129P3/J and C57BL/6).

摘要

氨氯吡咪是一种钠通道阻滞剂,已知它能抑制多种哺乳动物物种的鼓索神经(CT)对氯化钠的反应。在小鼠中,据报道氨氯吡咪对氯化钠的抑制作用在不同品系间存在差异。在C57BL小鼠中,氨氯吡咪能将氯化钠反应抑制至对照的约50%,而在之前对129小鼠的研究中,并未观察到如此明显的抑制作用。然而,行为学研究的证据并不完全支持这一点。最近发现,129小鼠的亚品系间基因背景存在差异。129X1/SvJ(原129/SvJ)小鼠与129P3/J(原129/J)品系在序列长度多态性上有25%的差异。因此,我们研究了129P3/J和129X1/SvJ小鼠在电生理记录的氯化钠反应对氨氯吡咪敏感性方面可能存在的亚品系差异。在129P3/J和129X1/SvJ小鼠中,氨氯吡咪均能显著抑制CT对氯化钠的反应,而不影响对氯化钾的反应。然而,129X1/SvJ小鼠中氨氯吡咪的抑制幅度显著大于129P3/J小鼠(100微摩尔/升氨氯吡咪对0.01 - 1.0摩尔/升氯化钠反应的抑制约为对照的50%)(100微摩尔/升氨氯吡咪对0.03 - 0.3摩尔/升氯化钠反应的抑制约为对照的20%)。在129P3/J小鼠中,抑制0.3摩尔/升氯化钠反应的氨氯吡咪阈值浓度为30微摩尔/升,高于129X1/SvJ小鼠(10微摩尔/升)。在129X1/SvJ小鼠中,引发氯化钠反应抑制的氨氯吡咪阈值浓度和抑制幅度与C57BL/6小鼠相当。这些结果表明,即使在129亚品系(129P3/J和129X1/SvJ)中,氯化钠反应对氨氯吡咪的敏感性也存在差异,并且129小鼠在氨氯吡咪敏感性方面的亚品系差异与两个近交系(129P3/J和C57BL/6)之间的差异一样大。

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