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首页> 外文期刊>American Journal of Physiology >Tubuloglomerular feedback in Dahl rats.
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Tubuloglomerular feedback in Dahl rats.

机译:达尔大鼠的肾小管肾反馈。

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We have previously demonstrated a loss of autoregulation in Dahl salt-sensitive (Dahl-S) rats rendered hypertensive on a high-salt diet. To determine whether this was due to a decreased activity of either the myogenic or the tubuloglomerular feedback (TGF) response, we tested the TGF response in both Dahl-S and salt-resistant Dahl rats on high- and low-salt diets. TGF was investigated in the closed-loop mode with a videometric technique, in which the response in late proximal flow rate to perturbations in Henle flow rate was measured. All Dahl rats showed a similar compensatory response to perturbations around the natural operating point, with a TGF response that was more efficient than in normotensive Sprague-Dawley rats. No evidence of decreased TGF responsiveness in hypertensive Dahl-S rats was found. The results suggest that the loss of autoregulation in hypertensive Dahl-S rats is due to a compromised myogenic response. We also measured the free-flow proximal intratubular pressure in Dahl rats. Perfectly regular oscillations were demonstrated in all Dahl series, including the hypertensive Dahl-S rats. This is the first demonstration of regular oscillations in an experimental rat model of hypertension.
机译:先前我们已经证明了在高盐饮食使高血压的Dahl盐敏感性(Dahl-S)大鼠中自动调节的丧失。为了确定这是否是由于肌源性或肾小管肾小球反馈(TGF)反应活性降低,我们在高盐和低盐饮食下的Dahl-S和耐盐Dahl大鼠中测试了TGF反应。使用视频技术在闭环模式下研究了TGF,其中测量了近端近端流速对Henle流速扰动的响应。所有Dahl大鼠在自然操作点附近均表现出对摄动的类似补偿性反应,而TGF反应比正常血压Sprague-Dawley大鼠更有效。没有发现高血压Dahl-S大鼠TGF反应性降低的证据。结果表明,高血压Dahl-S大鼠的自动调节功能丧失是由于成肌反应受损。我们还测量了达尔大鼠的自由流动近端肾小管内压力。在所有Dahl系列中,包括高血压的Dahl-S大鼠,均表现出完全规则的振荡。这是高血压大鼠实验模型中规则振荡的首次证明。

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