Deprecated: Implicit conversion from float 213.6 to int loses precision in C:\Inetpub\vhosts\kidney.de\httpdocs\pget.php on line 534
Deprecated: Implicit conversion from float 213.6 to int loses precision in C:\Inetpub\vhosts\kidney.de\httpdocs\pget.php on line 534
Deprecated: Implicit conversion from float 213.6 to int loses precision in C:\Inetpub\vhosts\kidney.de\httpdocs\pget.php on line 534
Deprecated: Implicit conversion from float 213.6 to int loses precision in C:\Inetpub\vhosts\kidney.de\httpdocs\pget.php on line 534
Deprecated: Implicit conversion from float 213.6 to int loses precision in C:\Inetpub\vhosts\kidney.de\httpdocs\pget.php on line 534
Deprecated: Implicit conversion from float 213.6 to int loses precision in C:\Inetpub\vhosts\kidney.de\httpdocs\pget.php on line 534
Deprecated: Implicit conversion from float 247.2 to int loses precision in C:\Inetpub\vhosts\kidney.de\httpdocs\pget.php on line 534
Deprecated: Implicit conversion from float 247.2 to int loses precision in C:\Inetpub\vhosts\kidney.de\httpdocs\pget.php on line 534
Deprecated: Implicit conversion from float 247.2 to int loses precision in C:\Inetpub\vhosts\kidney.de\httpdocs\pget.php on line 534
Deprecated: Implicit conversion from float 247.2 to int loses precision in C:\Inetpub\vhosts\kidney.de\httpdocs\pget.php on line 534 Am+J+Med+Sci 2016 ; 351 (5): 513-9 Nephropedia Template TP
gab.com Text
Twit Text FOAVip
Twit Text #
English Wikipedia
Interlobular arteries from two-kidney, one-clip Goldblatt hypertensive rats exhibit impaired vasodilator response to epoxyeicosatrienoic acids #MMPMID27140711
Am J Med Sci 2016[May]; 351 (5): 513-9 PMID27140711show ga
Background: Small renal arteries have a significant role in regulation of renal hemodynamics and blood pressure (BP). To study potential changes in regulation of vascular function in hypertension, we examined renal vasodilatory responses of small arteries from nonclipped kidneys of the two-kidney, one-clip (2K1C) Goldblatt hypertensive rats to native epoxyeicosatrienoic acids (EETs) which are believed to be involved in regulation of renal vascular function and BP. Two newly synthesized EET analogs were also examined. Methods: Renal interlobular arteries isolated from the nonclipped kidneys on day 28 after clipping were preconstricted with phenylephrine (PE), pressurized, and the effects of a 14,15-EET analog, native 14,15-EET, and 11,12-ether-EET-8ZE, an analog of 11,12-EET, on the vascular diameter were determined and compared to the responses of arteries from the kidneys of sham-operated rats. Results: In the arteries from non-clipped kidneys isolated in the maintenance phase of Goldblatt hypertension the maximal vasodilatory response to 14,15-EET analog was 30.1 ± 2.8% versus 49.8 ± 7.2% in sham-operated rats; the respective values for 11,12-ther-EET-8ZE were 31.4± 6.4% versus 80.4±6%, and for native EETs they were 41.7 ± 6.6 % versus 62.8 ± 4.4 % (P ? 0.05 for each difference). Conclusions: We propose that reduced vasodilatory action and decreased intrarenal bioavailability of EETs combined with intrarenal ANG II levels that are inappropriately high for hypertensive rats underlie functional derangements of the nonclipped kidneys of 2K1C Goldblatt hypertensive rats. These derangements could play an important role in pathophysiology of sustained BP elevation observed in this animal model of human renovascular hypertension.