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MYOGENIC RESPONSES OF MOUSE ISOLATED PERFUSED RENAL AFFERENT ARTERIOLES: EFFECTS OF SALT INTAKE AND REDUCED RENAL MASS

机译:小鼠分离灌注肾传育动脉瘤的肌源性反应:盐摄入量和肾肿块的作用

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摘要

Since defects in renal autoregulation may contribute to renal barotrauma in chronic kidney disease, we tested the hypothesis that the myogenic response is diminished by reduced renal mass. Kidneys from 5/6 nephrectomized mice had only a minor increase in the glomerular sclerosis index. The telemetric mean arterial pressure (108±10 mmHg) was unaffected after 3 months of high salt intake (6% salt in chow) or reduced renal mass. Afferent arterioles from 5/6 nephrectomized mice and sham-operated controls were perfused ex vivo during step changes in pressure from 40 to 134 mmHg. Afferent arterioles developed a constriction and a linear increase in active wall tension above a perfusion pressure of 36±6 mmHg, without a plateau. The slope of active wall tension vs perfusion pressure defined the myogenic response which was similar in sham mice fed normal or high salt diets for 3 months (2.90±0.22 vs 3.22±0.40 dynes·cm−1/mmHg, ns). The myogenic response was unaffected after 3 days of reduced renal mass on either salt diet (3.39±0.61 vs 4.04±0.47) but was reduced (p<0.05) in afferent arterioles from reduced renal mass groups fed normal and high salt at 3 months (2.10±0.28 and 1.35±0.21 dynes·cm−1/mmHg). In conclusion, mouse renal afferent arterioles develop a linear increase in myogenic tone around the range of ambient perfusion pressures. This myogenic response is impaired substantially in the mouse model of prolonged reduced renal mass, especially during high salt intake.

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