Casellas D, Moore L C
Groupe Rein et Hypertension, Hôpital St. Charles, Montpellier, France.
Am J Physiol. 1993 Feb;264(2 Pt 2):F315-21. doi: 10.1152/ajprenal.1993.264.2.F315.
To quantify the functional significance of autoregulatory responses in preglomerular juxtamedullary (JM) vessels, intravascular pressures (P chi) were measured with a servonull instrument in blood-perfused arcuate (ArcA) and interlobular arteries (ILA), afferent arterioles (AA), and glomerular capillaries (GC) in vitro. P chi was determined at perfusion pressures (Pp) between approximately 60 and 150 mmHg, and the slope of the relationship between Px and Pp was estimated by linear regression. From the regression, Px was 98 +/- 1, 96 +/- 2, 64 +/- 9, and 48 +/- 2 mmHg for ArcA, ILA, AA, and GC, respectively, at the reference perfusion pressure of 100 mmHg. The results show good autoregulation of GC pressure (Pg), with a response slope of 0.10 +/- 0.07 mmHg per mmHg change in Pp, corresponding to an autoregulation index of 0.20 +/- 0.15. The slopes of the Px vs. Pp relationships in ArcA, ILA, and AA were 0.96 +/- 0.02, 0.79 +/- 0.08, and 0.32 +/- 0.11, respectively. To determine whether these observed relationships in preglomerular vessels reflect significant upstream resistance changes, we derived a new autoregulation index for Px measured at an arbitrary preglomerular location. This analysis takes into account the extent to which outflow pressure, Pg, is autoregulated by the ensemble action of the entire preglomerular vasculature. The analysis indicates that 20% autoregulatory compensation occurs upstream from the late ILA, 65% upstream from the late AA, and 80% for the entire preglomerular vascular tree. Hence, in the JM preglomerular circulation, the AA is the major site of autoregulatory resistances adjustment, with a smaller but significant contribution by the ILA.
为了量化球旁近髓(JM)血管中自身调节反应的功能意义,在体外使用伺服零位仪器测量了血液灌注的弓形动脉(ArcA)、小叶间动脉(ILA)、入球小动脉(AA)和肾小球毛细血管(GC)中的血管内压力(Pχ)。在大约60至150 mmHg的灌注压力(Pp)下测定Pχ,并通过线性回归估计Pχ与Pp之间关系的斜率。根据回归分析,在100 mmHg的参考灌注压力下,ArcA、ILA、AA和GC的Pχ分别为98±1、96±2、64±9和48±2 mmHg。结果显示肾小球毛细血管压力(Pg)具有良好的自身调节,Pp每变化1 mmHg时反应斜率为0.10±0.07 mmHg,相应的自身调节指数为0.20±0.15。ArcA、ILA和AA中Pχ与Pp关系的斜率分别为0.96±0.02、0.79±0.08和0.32±0.11。为了确定在球旁血管中观察到的这些关系是否反映了显著的上游阻力变化,我们为在任意球旁位置测量的Pχ推导了一个新的自身调节指数。该分析考虑了流出压力Pg在整个球旁血管系统的整体作用下的自身调节程度。分析表明,在ILA晚期上游发生20%的自身调节补偿,在AA晚期上游发生65%的自身调节补偿,整个球旁血管树为80%。因此,在JM球旁循环中,AA是自身调节阻力调节的主要部位,ILA的贡献较小但显著。