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Rho/ Rho激酶在肾微血管张力中依赖血管和血管收缩剂的作用

Vessel- and vasoconstrictor-dependent role of rho/rho-kinase in renal microvascular tone.

作者信息

Nakamura Akira, Hayashi Koichi, Ozawa Yuri, Fujiwara Keiji, Okubo Ken, Kanda Takeshi, Wakino Shu, Saruta Takao

机构信息

Department of Internal Medicine, School of Medicine, Keio University, Tokyo, Japan.

出版信息

J Vasc Res. 2003 May-Jun;40(3):244-51. doi: 10.1159/000071888.

Abstract

We examined the role of Rho/Rho-kinase in renal afferent and efferent arteriolar tone induced by angiotensin (Ang) II, KCl and elevated renal arterial pressure (from 80 to 180 mm Hg), using isolated perfused rat hydronephrotic kidney. In the condition with no vasoconstrictor stimuli, Y-27632, a Rho-kinase inhibitor, dilated only afferent (from 11.6 +/- 0.4 to 14.1 +/- 0.5 microm) but not efferent arterioles (from 11.6 +/- 0.2 to 12.6 +/- 0.7 microm) at 10(-5) mol/l. During renal vasoconstriction by Ang II, Y-27632 restored the afferent arteriolar constriction (141 +/- 10% reversal at 10(-5) mol/l), whereas the ability of Y-27632 to inhibit the Ang II-induced efferent arteriolar constriction was diminished (73 +/- 7% reversal). A similar action was observed with fasudil, another Rho-kinase inhibitor. Furthermore, Y-27632 impaired myogenic afferent arteriolar constriction, with 117 +/- 17% inhibition at 10(-5) mol/l. The inhibition by Y-27632 of the myogenic vasoconstriction was almost the same as that of the Ang II-induced tone of this vessel type. However, Y-27632 had a modest effect on KCl-induced vasoconstriction of afferent arterioles. In conclusion, the present study demonstrates a predominant role of Rho/Rho-kinase in mediating the basal and Ang II-induced tone of afferent, but not efferent, arterioles. Furthermore, the role of Rho/Rho-kinase in afferent arteriolar constriction differs, with a substantial contribution to Ang II-induced and myogenic constriction but a minimal role in depolarization-induced constriction. Since Ang II-induced, KCl-induced and myogenic constriction of afferent arterioles require calcium entry through voltage-dependent calcium channels, the interaction between Rho/Rho-kinase and the calcium entry pathway may determine the afferent arteriolar tone induced by these stimuli.

摘要

我们使用离体灌注的大鼠肾积水肾脏,研究了Rho/ Rho激酶在血管紧张素(Ang)II、氯化钾及肾动脉压升高(从80毫米汞柱升至180毫米汞柱)诱导的肾入球小动脉和出球小动脉张力中的作用。在无血管收缩剂刺激的情况下,Rho激酶抑制剂Y-27632在10⁻⁵摩尔/升时仅使入球小动脉扩张(从11.6±0.4微米扩张至14.1±0.5微米),而出球小动脉未扩张(从11.6±0.2微米至12.6±0.7微米)。在Ang II引起的肾血管收缩过程中,Y-27632可恢复入球小动脉的收缩(在10⁻⁵摩尔/升时逆转141±10%),而Y-27632抑制Ang II引起的出球小动脉收缩的能力减弱(逆转73±7%)。另一种Rho激酶抑制剂法舒地尔也观察到类似作用。此外,Y-27632削弱了肌源性入球小动脉收缩,在10⁻⁵摩尔/升时抑制率为117±17%。Y-27632对肌源性血管收缩的抑制作用与对该血管类型Ang II诱导的张力的抑制作用几乎相同。然而,Y-27632对氯化钾诱导的入球小动脉血管收缩作用较小。总之,本研究表明Rho/ Rho激酶在介导入球小动脉而非出球小动脉的基础张力和Ang II诱导的张力中起主要作用。此外,Rho/ Rho激酶在入球小动脉收缩中的作用有所不同,对Ang II诱导的和肌源性收缩有重要作用,但在去极化诱导的收缩中作用最小。由于Ang II诱导的、氯化钾诱导的和肌源性的入球小动脉收缩需要钙通过电压依赖性钙通道内流,Rho/ Rho激酶与钙内流途径之间的相互作用可能决定这些刺激诱导的入球小动脉张力。

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