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Role of renal prostaglandin E2 in two-kidney, one-clip renovascular hypertension in rabbits.

To investigate the role of renal prostaglandin E2 (PGE2) in renovascular hypertension, urinary PGE2 was measured in rabbits with hypertension produced by left renal artery constriction. In the acute phase of renovascular hypertension (1 week after the constriction), urinary excretions of PGE2 and sodium were significantly increased without correlations with changes in the systemic blood pressure (delta BP). In this phase, delta BP was directly proportional to plasma renin activity and plasma aldosterone concentration (p less than 0.001). In the intermediate phase (5 weeks), delta BP lost significant correlations with plasma renin activity and plasma aldosterone concentration and had a inverse correlation with urinary sodium excretion (p less than 0.01). In the maintenance phase (10 weeks), delta BP showed inverse correlations (p less than 0.01) with both PGE2 and sodium excretions, although their excretions decreased to normal levels. In the clipped kidney, only urinary PGE2 excretion in the acute phase was significantly elevated (p less than 0.02), and both sodium and PGE2 excretions were significantly decreased (p less than 0.01) in the maintenance phase. In the nonclipped kidney, urinary PGE2 and sodium excretions were elevated in the acute and intermediate phases, but decreased to the control levels in the maintenance phase. In this phase, delta BP showed inverse correlation (p less than 0.01) with both PGE2 and sodium excretions from the nonclipped kidney. The infusion of saralasin, an angiotensin II analogue, dose dependently reduced the blood pressure in the acute phase, but showed no effect in the intermediate and maintenance phases.(ABSTRACT TRUNCATED AT 250 WORDS)

Aldosterone↗

Changes in renal function induced by ACE-inhibition in the conscious two-kidney, one-clip Goldblatt hypertensive dog.

In order to study why the diagnostic sensitivity of 123I-hippurate renography for a renal artery stenosis is improved by angiotensin converting enzyme (ACE-) inhibition we used the model of the conscious chronically instrumented two-kidney, one-clip Goldblatt hypertensive dog. Urine flow (UV), renal blood flow (RBF), glomerular filtration rate (GFR) and effective renal plasma flow (ERPF) were measured (with constant infusion of 125I-iothalamate and 131I-hippurate, respectively) for both kidneys separately before and after a bolus injection of a mild unilateral renal artery stenosis (approximately 30% reduction of RBF). During ACE-inhibition, there were remarkable falls in poststenotic GFR (from 37 +/- 5 to 4 +/- 2 ml/min, p less than 0.05), ERPF (from 111 +/- 13 to 21 +/- 10 ml/min, p less than 0.05) and UV (from 0.86 +/- 0.15 to 0.075 +/- 0.045 ml/min, p less than 0.05), whereas RBF of the poststenotic kidney slightly increased (from 193 +/- 18 to 237 +/- 27 ml/min, p less than 0.05). The concentration of hippurate and thalamate in the blood remained remarkably constant while the excretion of the tracers by the poststenotic kidney diminished and renal retention of 123I-hippurate was seen on the renogram. In 2 dogs, the experiments were repeated during mannitol infusion. In that situation, there was a much smaller decrease of poststenotic UV and GFR whereas ERPF even showed a small increase comparable to the RBF changes.(ABSTRACT TRUNCATED AT 250 WORDS)

Angiotensin-Converting Enzyme Inhibitors↗

Chronic caffeine ingestion exacerbates 2-kidney, 1-clip hypertension and ameliorates deoxycorticosterone acetate-salt hypertension in rats.

The present study was aimed to determine the effect of caffeine on the development of renal hypertension. Two-kidney, 1-clip (2K1C) hypertension and deoxycorticosterone acetate (DOCA, 200 mg/kg, subcutaneous implantation)-salt (0.9% NaCl drinking) hypertension were instituted in Sprague-Dawley rats. They were then grouped into two groups each: one was supplemented with caffeine (0.1%) in their drinking solution and the other was not. Systolic blood pressure was measured up to 24 days. Caffeine exacerbated the development of 2K1C hypertension in association with a higher plasma renin concentration (PRC). Caffeine ingestion, however, did not exacerbate but ameliorated DOCA-salt hypertension in which PRC was comparable between the caffeine-ingested and control groups. Concentrations of plasma atrial natriuretic peptide (pANP) were significantly different between the caffeine-ingested and control groups neither in 2K1C nor in DOCA-salt rats, suggesting that ANP was not responsible for the modified blood pressure. Acute caffeine infusion (350 micrograms/min, 30 min) in anesthetized normotensive rats caused increases in urinary excretion (volume and sodium) and in PRC without significantly affecting the blood pressure and pANP. These results suggest that caffeine specifically exacerbates 2K1C hypertension through increasing renin release whereas it ameliorates DOCA-salt hypertension possibly through increasing renal excretion.

Administration, Oral↗

Effects of caffeine on the vascular smooth muscles isolated from two-kidney, one-clip renovascular hypertension in rabbits.

To examine the intracellular calcium content of the vascular smooth muscle in the chronic phase of renovascular hypertension, the effects of caffeine on isolated aortic, renal and iliac arterial strips were evaluated in two-kidney, one-clip renovascular hypertension in rabbits. 10 weeks after left renal artery constriction in the constricted group, systemic blood pressure (BP) was significantly higher than in the control group, but plasma renin activity was similar to the control value. The amplitude of caffeine-induced contraction of various vascular strips in the constricted group gradually increased and, at 10 weeks, this was higher in the constricted group than in the control group. In the constricted group, sodium loading produced BP elevation and increased the amplitude of caffeine-induced contraction, whereas sodium constriction decreased BP and the amplitude. In the control group, altered sodium intake did not affect BP and the amplitude of caffeine-induced contraction. These results suggest that in the chronic phase of renovascular hypertension, the increased caffeine-sensitive intracellular calcium store on vascular smooth muscle, which is increased by sodium loading and is decreased by sodium restriction, may contribute to the maintenance of hypertension.

Animals↗

Long-term effect of N-acetyl-seryl-aspartyl-lysyl-proline on left ventricular collagen deposition in rats with 2-kidney, 1-clip hypertension.

BACKGROUND: N-acetyl-seryl-aspartyl-lysyl-proline (Ac-SDKP) is a natural inhibitor of pluripotent hematopoietic stem cell proliferation. Ac-SDKP plasma concentration is increased 5-fold after angiotensin-converting enzyme inhibition. Here we studied the effect of Ac-SDKP on monocyte/macrophage infiltration, fibroblast proliferation, and collagen deposition in the rat heart in renovascular hypertension. METHODS AND RESULTS: We investigated whether long-term Ac-SDKP administration would prevent left ventricular (LV) hypertrophy and interstitial collagen deposition in rats with 2-kidney, 1-clip (2K-1C) hypertension. Ac-SDKP (400 microgram. kg(-1). d(-1)) did not affect development of hypertension. Mean blood pressure was similar in rats with 2K-1C hypertension whether they were given vehicle or Ac-SDKP and was higher than in controls. Both LV weight and cardiomyocyte size were significantly increased in rats with 2K-1C hypertension compared with controls and were unaffected by Ac-SDKP. Proliferating cell nuclear antigen- and monocyte/macrophage-positive cells were increased in the LV of 2K-1C hypertensive rats; this increase was significantly blunted by Ac-SDKP (P<0.001). LV interstitial collagen fraction was also increased in 2K-1C hypertensive rats given vehicle (10.1+/-0.8%) compared with sham (5.3+/-0.1%, P<0.0001), and this increase was prevented by Ac-SDKP (5.4+/-0.4%, P<0.001). CONCLUSIONS: Ac-SDKP inhibited monocyte/macrophage infiltration, cell proliferation, and collagen deposition in the LV of hypertensive rats without affecting blood pressure or cardiac hypertrophy, suggesting that it may be partly responsible for the cardioprotective effect of angiotensin-converting enzyme inhibitors.

Animals↗

Arteriolar changes in developing and chronic stages of two-kidney, one clip hypertension.

Arteriolar internal and external diameters in the cremaster muscle of two-kidney, one clip hypertensive rats (2K1C) were measured in vivo with video microscopy, both before and after the topical application of adenosine (10(-4) M). Arteriolar density was determined by stereologic techniques. Mean arterial blood pressure was significantly elevated in the 2K1C rats, rising to 186 +/- 6 mm Hg by 8 weeks compared with 113 +/- 4 mm Hg in controls. Lumens of larger arterioles showed a structural reduction at 2 weeks of hypertension and remained at the same level through 8 weeks, while arterioles of control rats showed a progressive increase in diameter with age (101 +/- 6 microns in 2K1C vs. 158 +/- 8 microns in controls at 8 weeks after operation). Wall-to-lumen ratios of larger arterioles were significantly increased at 2, 4, and 8 weeks of hypertension, but cross-sectional wall area was significantly reduced at 8 weeks. Medial hypertrophy was not evident at any stage of hypertension. Arteriolar rarefaction of smaller arterioles was functional at 2 weeks and structural at 8 weeks of hypertension. Vascular tone of the smaller arterioles was elevated in the developing and chronic stages of hypertension. At 2 weeks of hypertension when the structural reduction in diameters of larger arterioles was progressing, the increased vasoconstriction and functional rarefaction may have contributed to the elevated resistance. At 8 weeks, the marked diameter reductions of larger arterioles (36% in first-order arterioles and 25% in second-order arterioles) account for most of the increased resistance to flow.

Abdomen↗

A kallikrein-like enzyme in blood vessels of one-kidney, one clip hypertensive rats.

Active and inactive kallikrein or a kallikrein-like enzyme are found in the aorta, vena cava, and tail artery and veins of the rat. We studied the concentration of vascular kininogenase in rats with one-kidney, one clip renovascular hypertension and in unilaterally nephrectomized normotensive rats. Six weeks after surgery, active and total vascular kininogenase activity (active plus trypsin-activated) was measured. Blood pressure was 212 +/- 4 mm Hg in the hypertensive rats (n = 33) and 120 +/- 1 mm Hg in the normotensive rats (n = 32) (p less than 0.001). Active kininogenase was lower in the hypertensive rats; although the difference was not significant in the thoracic aorta (56 +/- 8 versus 77 +/- 15), it was highly significant in the abdominal aorta (63 +/- 13 versus 167 +/- 17, p less than 0.001) and tail artery (48 +/- 8 versus 197 +/- 31, p less than 0.003). Total vascular kininogenase activity (active plus trypsin-activated) was lower in the hypertensive rats in all arteries examined: thoracic aorta (183 +/- 16 versus 380 +/- 38, p less than 0.003), abdominal aorta (565 +/- 61 versus 1,093 +/- 74, p less than 0.001), and tail artery (532 +/- 112 versus 1,243 +/- 135, p less than 0.003). Active kininogenase in the vena cava was higher in the hypertensive rats (213 +/- 56 versus 131 +/- 31); however, this difference was not statistically significant, whereas in the tail veins it was highly significant (1,803 +/- 221 versus 771 +/- 79, p less than 0.003).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effect of NG-monomethyl L-arginine on endothelium-dependent relaxation in arterioles of one-kidney, one clip hypertensive rats.

Dose-response curves to topically applied acetylcholine, bradykinin, and nitroprusside were obtained by intravital microscopy in arcading arterioles of the spinotrapezius muscle of control (n = 9) and one-kidney, one clip hypertensive (1K1C) rats (n = 11) of 4 weeks' duration before and during superfusion with the specific inhibitor of nitric oxide formation NG-monomethyl L-arginine (LNMMA) (10(-4) M) and both LNMMA (10(-4) M) and indomethacin (2.8 x 10(-5) M). Resting arteriolar tone was higher in 1K1C rats than in controls, and vasodilation to acetylcholine and bradykinin, but not to nitroprusside, was reduced (p less than 0.05) in 1K1C rats compared with controls. LNMMA increased arteriolar tone (p less than 0.05) and inhibited the vasodilator responses to acetylcholine and bradykinin (p less than 0.05) in controls but not in 1K1C rats. LNMMA did not alter the response to nitroprusside in either group. Addition of indomethacin to LNMMA increased arteriolar tone and markedly reduced the response to bradykinin, but not to acetylcholine or nitroprusside, in both groups. These findings suggest that resting arteriolar tone is increased in 1K1C rats partially because of the decreased basal release or synthesis of nitric oxide. Responses to the endothelium-dependent vasodilators acetylcholine and bradykinin were attenuated in 1K1C rats, possibly because of changes in synthesis or release of nitric oxide for acetylcholine and of prostacyclin for bradykinin, because the response to the endothelium-independent vasodilator nitroprusside did not differ between the groups.

Acetylcholine↗

Sympathetic and renin-angiotensin system influence on blood pressure and renal blood flow of two-kidney, one clip Goldblatt hypertensive dog.

Conscious normotensive and two-kidney, one clip Goldblatt hypertensive dogs were studied to determine the influence of the sympathetic and renin-angiotensin systems on the blood pressure and renal blood flow. Renal blood flow was monitored in a single kidney of the normotensive dogs and in the contralateral kidney of the hypertensive dogs. Saralasin was infused intravenously (i.v.) at 1 microgram/kg/min for 15 minutes in untreated and guanethidine-treated animals. Guanethidine (i.v.) decreased blood pressure (BP) in the hypertensives at X = 16 days after Goldblatt clamp application, but not in the normotensives, and did not affect renal blood flow or vascular resistance in either group. Saralasin produced approximately the same BP decrease in both untreated and guanethidine-treated hypertensives at X = 12 days after Goldblatt clamp application; the combined effect of the drugs was greater than saralasin alone. Blood flow and vascular resistance of the hypertensives' contralateral kidney were not significantly affected by saralasin in these experiments. No sustained effect on BP or renal blood flow was obtained with saralasin in the normotensives. Administration of furosemide was utilized to increase plasma renin activity (PRA) in another series of experiments. In both normotensives and hypertensives, PRA was elevated at 2-3 hours after furosemide application, being greater in the hypertensives. When the renin-angiotensin system was activated in this manner, saralasin had a significant hypotensive and renal vasodilator effect in the hypertensives, but not in the normotensives.

Angiotensin I↗

Renal angiotensin II receptor regulation in two-kidney, one clip hypertensive rats: effect of ACE inhibition.

Local renal and plasma renin-angiotensin systems (RAS) both play an important role in blood pressure regulation during the development of two-kidney, one clip Goldblatt hypertension (2K1C) through their vasoactive component, angiotensin II (Ang II). Our goal was to characterize glomerular and preglomerular vascular Ang II receptors during the different stages of development of hypertension in 2K1C rats (2-, 4-, 8-, and 16-weeks postoperative) using Ang II antagonists [Sar1,Ile8]-Ang II, losartan, and PD 123319 and their regulation after angiotensin-converting enzyme (ACE) inhibition by captopril. Competitive binding studies showed that the only Ang II receptor detected on both glomeruli and preglomerular vessels of all groups (2-, 4-, 8-, and 16-week 2K1C rats, control rats, and captopril-treated rats) was the Ang II type 1 receptor (AT1). Vascular AT1 receptor density (Bmax) was significantly lower in only the 16-week 2K1C group, whereas glomerular Bmax was significantly lower in 2K1C rats at 2-, 4-, and 8-weeks. Vascular and glomerular receptor densities were both significantly higher in captopril-treated rats than in nontreated rats. We therefore conclude that in 2K1C rats, Ang II receptors on preglomerular vessels and glomeruli are regulated differentially during the development of hypertension and after ACE inhibition. Our results suggest that glomerular Ang II receptors are regulated by systemic plasma Ang II levels, whereas vascular Ang II receptors are not. However, when renal and systemic RASs are both blocked, these receptors are upregulated but are no longer differentially regulated.

Angiotensin-Converting Enzyme Inhibitors↗

Adrenergic neurotransmission in tail arteries from two-kidney, one clip, renal hypertensive rats.

The goal of this study was to determine if increased vascular smooth muscle sensitivity to norepinephrine in two-kidney, one clip (2K1C) hypertensive rats is the result of a decrease in adrenergic nerve function. Vascular sensitivity to norepinephrine was measured in isolated tail artery strips from 2K1C hypertensive and normotensive rats and in various arterial stripe preparations from normotensive rats that exhibit varying degrees of adrenergic innervation. In each case, the characteristic of the vascular smooth muscle response in the vessel with the least amount of adrenergic innervation simulated the response of the vascular smooth muscle from the 2K1C hypertensive rats. Release or displacement of endogenous norepinephrine by electrical stimulation, tyramine, potassium-free solution, and potassium excess, and measurement of tissue content of norepinephrine suggest that the blood vessels of 2K1C hypertensive animals are depleted of catecholamine stores. Based on these observations it is concluded that the increased sensitivity of vascular smooth muscle to norepinephrine in 2K1C hypertensive rats is the result of a diminished adrenergic innervation. This increased sensitivity of the vasculature may be a response of the smooth muscle cells to a decrease in innervation or the consequence of vascular wall hypertrophy leading to an increased number of smooth muscle cells that are remote from their adrenergic supply.

Adrenergic Fibers↗

Role of the renal nerves in one-kidney, one clip hypertension in rats.

The effects of renal denervation on the onset and maintenance of one-kidney, one clip Goldblatt (1K1C) hypertension were determined. Renal denervation was performed at the time of 1K1C surgery, and was repeated at 3-week intervals to prevent renal nerve regeneration. Denervation delayed the onset of 1K1C hypertension by about 5 weeks, but the final hypertensive state was unaltered. Mean arterial pressure (MAP) averaged 196 +/- 11.4 mm Hg in six rats at 9 weeks after 1K1C surgery and 194 +/- 11.3 mm Hg in eight renal-denervated rats at this time. The delay in the development of 1K1C hypertension following renal denervation could not be explained by interference with renin release. This delay in the development of hypertension could be prevented, however, in renal-denervated 1K1C rats by substituting saline for the drinking water. Two weeks after 1K1C surgery and a high sodium diet, MAP averaged 164 +/- 6.4 mm Hg in eight rats rats with intact renal nerves and 173 +/- 4.8 mm Hg in nine renal-denervated rats. Intact renal nerves are not necessary for the development or maintenance of 1K1C hypertension. Renal denervation delays development of 1K1C hypertension, possibly by delaying the ability of these rats to retain sodium.

Animals↗

Sympathetic activity and cardiac adrenergic receptors in one-kidney, one clip hypertension in rats.

The activity of the sympathetic nervous system, as measured by levels of plasma and cardiac catecholamines and catecholamine metabolites and the function of cardiac alpha- and beta-adrenergic receptors, was evaluated at 3 days and 4 weeks after induction of one-kidney, one clip hypertension (1K1C) in the rat. At 3 days, the plasma level of norepinephrine (NE) was lower in the 1K1C group than the control group (p less than 0.01), whereas epinephrine (E) and the metabolites dihydroxymandelic acid (DOMA), dihydroxyphenylglycol (DOPEG), and normetanephrine (NMN) were similar in both groups. In addition, cardiac content of catecholamines, their metabolites, and adrenergic receptors were similar in both groups. At 4 weeks, plasma levels of NE and DOPEG were lower (p less than 0.01), whereas levels of DOMA and NMN were higher (p less than 0.02 and p less than 0.001, respectively) in the 1K1C group than the control group. Cardiac content of NE (p less than 0.01), and DOPEG (p less than 0.05) was significantly lower, whereas DOMA and NMN were significantly higher (p less than 0.01) in the 1K1C group as compared to controls. In addition, cardiac density of both alpha- and beta-adrenergic receptors was reduced in the 1K1C group, whereas receptor affinities were unchanged.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Effect of captopril on 99mTc-diethylenetriaminepentaacetic acid renograms in two-kidney, one clip hypertension.

In an effort to improve on the noninvasive detection of renal artery stenosis, we investigated the effect of angiotensin converting enzyme inhibition on computer-assisted 99mTc-diethylenetriaminepentaacetic acid (DTPA) renal flow studies in a canine model of two-kidney, one clip hypertension and compared these findings with clearances of inulin and p-aminohippuric acid in the stenotic and contralateral kidney before and after converting enzyme inhibition. The 99mTc-DTPA renal flow study with the converting enzyme inhibitor captopril (1.5 mg/kg bolus with 1.5 mg/min infusion) showed an increased sensitivity in the detection of unilateral renal artery stenosis over the use of the 99mTc-DTPA study alone. Captopril induced striking alterations that were most evident in the 15-minute 99mTc-DTPA renal flow study, in which all nine curves exhibited severely blunted uptake and excretion of the radionuclide. These changes were reversed during a recovery study without converting enzyme inhibition and were not seen when blood pressure was lowered with nitroprusside to a level similar to that observed during converting enzyme inhibition. The changes shown by the 99mTc-DTPA study during converting enzyme inhibition correlated with a decrease in the glomerular filtration rate of the stenotic kidney. Captopril infusion significantly decreased the glomerular filtration rate of the stenotic kidney (16.0 +/- 3.1 vs 11.0 +/- 2.5 mg/min, p less than 0.03) but not of the contralateral kidney (32.4 +/- 2.6 vs 28.4 +/- 2.8 mg/min).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Incidence of recurrent subarachnoid hemorrhage after clipping for ruptured intracranial aneurysms.

BACKGROUND AND PURPOSE: Because intracranial aneurysms develop during life, patients with subarachnoid hemorrhage (SAH) and successfully occluded aneurysms are at risk for a recurrence. We studied the incidence of and risk factors for recurrent SAH in patients who regained independence after SAH and in whom all aneurysms were occluded by means of clipping. METHODS: From a cohort of patients with SAH admitted between 1985 and 2001, we included those patients who were discharged home or to a rehabilitation facility. We interviewed these patients about new episodes of SAH. We retrieved all medical records and radiographs in case of reported recurrences. If patients had died, we retrieved the cause of death. We analyzed the incidence of and risk factors for recurrent SAH by Kaplan-Meier curves and Cox regression analysis. RESULTS: Of 752 patients with 6016 follow-up years (mean follow up 8.0 years), 18 had a recurrence. In the first 10 years after the initial SAH, the cumulative incidence of recurrent SAH was 3.2% (95% confidence interval [CI], 1.5% to 4.9%) and the incidence rate 286 of 100,000 patient-years (95% CI, 160 to 472 per 100,000). Risk factors were smoking (hazard ratio [HR], 6.5; 95% CI, 1.7 to 24.0), age (HR, 0.5 per 10 years; 95% CI, 0.3 to 0.8) and multiple aneurysms at the time of the initial SAH (HR, 5.5; 95% CI, 2.2 to 14.1). CONCLUSIONS: After SAH, the incidence of a recurrence within the first 10 years is 22 (12 to 38) times higher than expected in populations with comparable age and sex. Whether this increased risk justifies screening for recurrent aneurysms in patients with a history of SAH requires further study.

Adult↗

Transcranial clipping of recurrent cerebral aneurysms after endovascular treatment.

BACKGROUND AND PURPOSE: Treatment of intracranial aneurysms by interventional neurovascular techniques may be useful as a therapeutic alternative. We describe two cases of recurrent aneurysms after endovascular treatment using detachable balloons. CASE DESCRIPTION: Two cases are reported of recurrence 2 years after endovascular treatment of cerebral aneurysms (posterior communicating in both cases). One patient had a subarachnoid hemorrhage after rupture of a posterior communicating aneurysm. The other patient had an aneurysm diagnosed incidentally after a contrast-enhanced computed tomographic scan of the head for an unrelated problem. Endovascular balloon embolization of both aneurysms was performed without any immediate complication. Two years after treatment, a cerebral angiogram showed recurrent aneurysms. Surgical clipping excluded both aneurysms definitely. CONCLUSIONS: These cases highlight the importance of control angiography at long-term follow-up and emphasize the significance of balloon migration after endovascular treatment of aneurysms.

Cerebral Angiography↗

Ca(2+) influx is increased in 2-kidney, 1-clip hypertensive rat aorta.

Arteries from hypertensive rats show a greater contraction in response to Ca(2+) channel activator and an increased sensitivity to Ca(2+) entry blockers compared with those of normotensive rats. These facts suggest an altered Ca(2+) influx through membrane channels. In this study, this hypothesis was tested by direct activation of voltage-gated Ca(2+) channels using Bay K 8644, a dihydropyridine sensitive large conductance (L-type) Ca(2+) channel opener in aortas from 2-kidney, 1-clip (2K1C) hypertensive rats. Because the membrane potential of smooth muscle cells is an important regulator of the conformational state of L-type Ca(2+) channels and, consequently, dihydropyridine affinity, the effect of 10 mmol/L KCl on the responses to Bay K 8644 was also studied. Maximal contraction (ME) and sensitivity to Bay K 8644 were greater in 2K1C rats than in 2K normotensive rats (ME, 1.77+/-0.15 versus 1.25+/-0.19 g; negative log molar value [pD(2)], 8.27+/-0.07 versus 7.92+/-0.08). When the KCl concentration was increased from 4.7 to 10 mmol/L in the bathing medium, no differences were observed in the contractile effect of Bay K 8644 between 2K1C and 2K (ME, 1.28+/-0.13 versus 1.14+/-0.21 g; pD(2), 8.56+/-0.08 versus 8.38+/-0.07). The cell resting membrane potential of 2K1C aorta vascular smooth muscle cells were less negative than in 2K (-35.19+/-4.91 versus -48.32+/-1.88 mV). Basal intracellular Ca(2+) concentration ([Ca(2+)](i)) was greater in cultured vascular smooth muscle cells from 2K1C than from 2K (293.4+/-25.83 versus 205.40+/-12.83 nmol/L). In 2K1C, Bay K 8644 induced a larger increase in [Ca(2+)](i) than in 2K (190.60+/-45.65 versus 92.57+/-14.67 nmol/L), and in 10 mmol/L KCl, this difference was abolished (134.90+/-45.12 versus 125.20+/-32.17 nmol/L). The main conclusion of the present work is that the increased contractile response to Bay K 8644 in 2K1C aortas is due to an increased Ca(2+) influx through voltage-gated Ca(2+) channels.

3-Pyridinecarboxylic acid, 1,4-dihydro-2,6-dimethy↗

Hair-clip type piston artificial stapes and the safety auger.

A hair-clip artificial stapes prosthesis was used in the surgical treatment of otosclerosis in 22 ears. In nine patients followed an average of 15 months the air-bone gap stabilized at 6-7 dB. Further advantages of the prosthesis design and technique are that they minimize the risk of ischemic necrosis and perilymphatic fistula formation.

Female↗