Early diabetes as a model for testing the regulation of juxtaglomerular NOSI

被引:49
作者
Thomson, SC
Deng, AH
Komine, N
Hammes, JS
Blantz, RC
Gabbai, FB
机构
[1] Univ Calif San Diego, Dept Med, Div Nephrol Hypertens, San Diego, CA 92021 USA
[2] Vet Affairs San Diego Hlth Care Syst, San Diego, CA 92021 USA
关键词
glomerular filtration; macula densa; micropuncture; nitric oxide; tubuloglomerular feedback;
D O I
10.1152/ajprenal.00340.2003
中图分类号
Q4 [生理学];
学科分类号
071003 ;
摘要
Dysregulation of kidney nitric oxide synthase (NOS) I may alter renal hemodynamics in diabetes. Four types of studies were performed in anesthetized 1- to 2-wk-streptozotocin diabetic rats. 1) Glomerular filtration rate (GFR) was measured before and during NOS I blockade. Subsequent addition of nonspecific NOS blocker tested for residual NO from other isoforms. Acute systemic NOS I blockade reduced GFR only in diabetics. Nonspecific NOS blockade had no additional effect on NOS I-blocked diabetics. 2) Renal blood flow (RBF) was monitored for evidence that tubuloglomerular feedback (TGF) resets during 1 h of continuous activation with benzolamide. NOS I blockade was added to test for the role of NOS I in TGF resetting. During 1 h of TGF activation in controls, RBF initially declined and then returned to baseline. In diabetic and NOS I-blocked rats, RBF declined and remained low. 3) The ability of NOS I blockade to increase the homeostatic efficiency of TGF in diabetes was tested by micropuncture in free-flowing nephrons. The addition of NOS I blocker to the tubular fluid increased TGF efficiency in control and diabetic rats. 4) The influence of distal salt delivery on local NOS I activity was tested by micropuncture. Henle's loop was perfused at varying rates with NOS I blocker while single-nephron GFR (SNGFR) from the late proximal tubule was measured. In controls, NOS I blockade mainly reduced SNGFR when flow through Henle's loop was high. In diabetics, NOS I blockade reduced SNGFR independently of flow through Henle's loop. In conclusion, normally, salt delivered to the macula densa (MD) exerts immediate control over MD NOS I activity. In diabetes, there is ongoing overactivity of NOS I that is not regulated by MD salt.
引用
收藏
页码:F732 / F738
页数:7
相关论文
共 32 条
[1]  
[Anonymous], 2000, The Kidney
[2]   ROLE OF EDRF (NITRIC-OXIDE) IN DIABETIC RENAL HYPERFILTRATION [J].
BANK, N ;
AYNEDJIAN, HS .
KIDNEY INTERNATIONAL, 1993, 43 (06) :1306-1312
[3]   SELECTIVE NEURONAL NITRIC-OXIDE SYNTHASE INHIBITION BLOCKS FUROSEMIDE-STIMULATED RENIN SECRETION IN-VIVO [J].
BEIERWALTES, WH .
AMERICAN JOURNAL OF PHYSIOLOGY-RENAL FLUID AND ELECTROLYTE PHYSIOLOGY, 1995, 269 (01) :F134-F139
[4]  
BLANTZ RC, 1978, METHOD PHARMACOL, P141
[5]  
Choi KC, 1997, KIDNEY INT, pS23
[6]   Hemodynamics of early tubuloglomerular feedback resetting during reduced proximal reabsorption [J].
Deng, AH ;
Hammes, JS ;
Thomson, SC .
KIDNEY INTERNATIONAL, 2002, 62 (06) :2136-2143
[7]   Renal nitric oxide production during the early phase of experimental diabetes mellitus [J].
Keynan, S ;
Hirshberg, B ;
Levin-Iaina, N ;
Wexler, ID ;
Dahan, R ;
Reinhartz, E ;
Ovadia, H ;
Wollman, Y ;
Chernihovskey, T ;
Iaina, A ;
Raz, I .
KIDNEY INTERNATIONAL, 2000, 58 (02) :740-747
[8]   ROLE OF ENDOTHELIUM-DERIVED NITRIC-OXIDE IN THE PATHOGENESIS OF THE RENAL HEMODYNAMIC-CHANGES OF EXPERIMENTAL DIABETES [J].
KOMERS, R ;
ALLEN, TJ ;
COOPER, ME .
DIABETES, 1994, 43 (10) :1190-1197
[9]   Role of neuronal nitric oxide synthase (NOS1) in the pathogenesis of renal hemodynamic changes in diabetes [J].
Komers, R ;
Lindsley, JN ;
Oyama, TT ;
Allison, KM ;
Anderson, S .
AMERICAN JOURNAL OF PHYSIOLOGY-RENAL PHYSIOLOGY, 2000, 279 (03) :F573-F583
[10]   Changes of cell volume and nitric oxide concentration in macula densa cells caused by changes in luminal NaCl concentration [J].
Liu, RS ;
Pittner, J ;
Persson, AEG .
JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 2002, 13 (11) :2688-2696