Hayashi K, Epstein M, Loutzenhiser R
Nephrology Section, Veterans Administration Medical Center, Miami, Fla 33125.
Hypertension. 1992 Feb;19(2):153-60. doi: 10.1161/01.hyp.19.2.153.
We recently demonstrated that the interlobular artery (ILA) constricts in response to elevating renal arterial pressure (RAP), suggesting that the ILA contributes to renal autoregulation. In the present study, we examined the segmental myogenic responsiveness of the ILA in kidneys from Wistar-Kyoto (WKY) rats and spontaneously hypertensive rats (SHR). The tapered nature of the ILA allowed us to characterize the regional responsiveness, using the basal diameter to define segments as either proximal (greater than 60 microns), intermediate (40-60 microns), or distal (less than 40 microns). At 80 mm Hg, segmental diameters were similar in WKY and SHR arteries (proximal, 76.0 +/- 3.1 versus 71.6 +/- 3.5 microns; intermediate, 48.2 +/- 1.4 versus 48.1 +/- 1.7 microns; distal, 30.7 +/- 0.9 versus 27.9 +/- 1.3 microns for WKY and SHR, respectively). In both strains, intermediate and distal segments exhibited graded reductions in diameter as RAP was elevated, whereas proximal segments did not. Pressure-induced decrements in the diameters of distal ILA segments were similar in WKY (-24 +/- 2%) and SHR (-20 +/- 2%; p greater than 0.1). The intermediate ILA of SHR exhibited an augmented myogenic responsiveness, constricting at lower RAP levels and exhibiting greater maximal decrements in diameter at 180 mm Hg (i.e., -19 +/- 2% and -12 +/- 2% for SHR and WKY, respectively; p less than 0.05). Nifedipine (1.0 microM) reduced pressure-induced vasoconstriction of intermediate and distal ILA segments by 56 +/- 11% and 79 +/- 7%, respectively, in WKY.(ABSTRACT TRUNCATED AT 250 WORDS)
我们最近证实,小叶间动脉(ILA)会随着肾动脉压(RAP)升高而收缩,这表明ILA参与了肾自身调节。在本研究中,我们检测了Wistar-Kyoto(WKY)大鼠和自发性高血压大鼠(SHR)肾脏中ILA的节段性肌源性反应性。ILA的锥形结构使我们能够通过基础直径将节段定义为近端(大于60微米)、中间(40 - 60微米)或远端(小于40微米),从而描述区域反应性。在80毫米汞柱时,WKY和SHR动脉的节段直径相似(WKY近端为76.0±3.1微米,SHR为71.6±3.5微米;WKY中间为48.2±1.4微米,SHR为48.1±1.7微米;WKY远端为30.7±0.9微米,SHR为27.9±1.3微米)。在这两种品系中,随着RAP升高,中间和远端节段直径呈分级减小,而近端节段则不然。WKY(-24±2%)和SHR(-20±2%;p>0.1)远端ILA节段直径的压力诱导减小相似。SHR的中间ILA表现出增强的肌源性反应性,在较低的RAP水平收缩,在180毫米汞柱时直径的最大减小幅度更大(即SHR为-19±2%,WKY为-12±2%;p<0.05)。硝苯地平(1.0微摩尔)使WKY中间和远端ILA节段的压力诱导血管收缩分别降低了56±11%和79±7%。(摘要截短于250字)