FUNCTIONAL HETEROGENEITY OF NEPHRONS .I. INTRALUMINAL FLOW VELOCITIES

被引:27
作者
BAINES, AD
BAINES, CJ
DEROUFFI.C
机构
[1] Department of Medicine, University of North Carolina, Chapel Hill, North Carolina
[2] Department of Pathological Chemistry, University of Toronto, Toronto, Ontario
[3] Département de Biologie, Commissariat à l'Energie Atomique, Saclay
来源
PFLUGERS ARCHIV-EUROPEAN JOURNAL OF PHYSIOLOGY | 1969年 / 308卷 / 03期
关键词
Ferrocyanide Clearance; Ferrocyanide Located in Microdissected Nephrons; Flow Velocity in Single Nephron; Nephron Dimensions; Non-Uniformity of Nephron Function;
D O I
10.1007/BF00586557
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Intraluminal flow velocities and tubular dimensions were estimated for superficial and deep proximal tubules of non-diuretic kidneys with a technique developed by Hanssen. Kidneys of anesthetized rats were frozen in vivo 4-20 sec after an i.v. injection of 0.05 ml 10-20% Na ferrocyanide. Ferrocyanide was located as prussian blue in microdissected tubules after freeze-substitution and maceration of the kidneys. Its position was used to indicate the movement of glomerular filtrate along the tubule. Ferrocyanide clearance was slightly less than that of inulin at low plasma ferrocyanide levels. They were equal at higher plasma levels. The two clearances were sufficiently alike, however, to justify using ferrocyanide as an indicator of glomerular filtrate in these experiments. Transient small decreases in systemic blood pressure and increases in renal blood flow followed i.v. injections of 0.05 ml ferrocyanide and 0.05 ml 5% lissamine green. There was no evidence of continuing intraluminal flow when the kidney was rendered ischemic by ligating the renal pedicle. The mean distance between glomerulus and prussian blue front in kidneys frozen at different intervals after a ferrocyanide injection increased curvilinearly with time in a manner compatible with its indicating mean flow velocity. The distance between glomerulus and dye front in tubules from any one kidney was proportional to tubular length. Flow velocities were similar when measured with lissamine green in vivo or with ferrocyanide in microdissected tubules. Velocities decreased when C inulin was reduced by partial compression of the renal artery. The reduction was greater in superficial than in deep tubules suggesting that flow velocities vary non-uniformly as gfr changes. Luminal diameters measured in microdissected tubules were similar to other estimates of in vivo tubular dimensions. There was no apparent difference between the length or luminal diameter of proximal tubules from the surface and deeper portions of the cortex in these rats. © 1969 Springer-Verlag.
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页码:244 / &
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