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Mechanism of action of angiotensin converting enzyme inhibitors on endothelial function in hypertension.

Hypertension is associated with an endothelial dysfunction characterized by an increased endothelium-dependent contraction and a decreased endothelium-dependent relaxation. Angiotensin converting enzyme (ACE) inhibition with cilazapril or captopril can remarkably improve the endothelial function in spontaneously hypertensive rats (SHRs). The goal of the present study was to investigate whether ACE inhibitors were acting by decreasing endothelium-dependent contraction or by increasing endothelium-dependent relaxation. Endothelial function was estimated by calculating the ratio of maximal contraction to serotonin on isolated aortic rings with endothelium to maximal contraction on paired rings without endothelium, termed the serotonin ratio. The serotonin ratio was greater than 1 in SHRs, indicating the release of a vasoconstrictor substance by the endothelium. This substance was identified as prostaglandin (PG) H2, because the serotonin ratio was significantly decreased by thromboxane (TX) A2/PGH2 receptor antagonists but not by TXA2 synthetase inhibitors. Two weeks of treatment of SHRs with cilazapril led to a marked decrease in the serotonin ratio, although acute administration of cilazaprilat was without any effect. However, after 2 weeks of treatment, the serotonin ratio still could be lowered further by TXA2/PGH2 receptor antagonists, indicating that cilazapril did not act by inhibition of PGH2 synthesis. In contrast, the effect of a 4-week treatment with cilazapril could be completely reversed by inhibiting the action of endothelium-derived relaxing factor with methylene blue. The same result was found after treatment with captopril. We speculate that ACE inhibitors improve endothelial function in SHRs not by inhibiting the synthesis of PGH2 but by increasing the release or the action of endothelium-derived relaxing factor.

Angiotensin-Converting Enzyme Inhibitors

Importance of endothelial function in stenotic haemodynamic responses.

STUDY OBJECTIVE: The aim was to examine endothelium mediated flow dependence in a dynamic stenosis. DESIGN: The coronary circulation was modelled as a proximal compliant stenosis and a fixed distal resistance. Pressures and flow were calculated using standard haemodynamic equations. Within the stenosis, the vessel wall was composed of normal and rigid sections, and the normal section dilated proportionally with flow. From this theoretical analysis, three perfusion pressures (150, 100, and 75 mm Hg) and two distal resistances (high and low) were examined. MAIN RESULTS: In a stenotic artery (93% area reduction) with high flow dependence, decreasing distal resistance increased flow substantially. At 75 mm Hg perfusion pressure, flow increased from 40.8 to 81.6 ml.min-1. With moderate flow dependence, flow increases were attenuated. Without flow dependence, flow increases were smaller, and at low perfusion pressure, flow paradoxically decreased (39.0 to 0.0 ml.min-1) when distal resistance decreased. Vasoconstriction responses with and without flow dependence were analysed. In a stenotic artery, vasoconstrictors caused a concentration dependent decrease in flow. Without flow dependence, the flow dose-response curve was shifted to the left: a lower level of arterial vasoconstriction resulted in a greater flow decrease. CONCLUSIONS: The theoretical analysis shows significantly different flow responses to decreasing distal resistance and to vasoconstriction depending on endothelial function. Endothelial dysfunction may be important in the pathophysiology of angina pectoris.

Arterial Occlusive Diseases

Effects of semaglutide and empagliflozin on markers of endothelial function in persons with type 2 diabetes: A post hoc analysis of a randomized clinical trial.

AIMS: The endothelium maintains vascular health by regulating blood flow and protecting against inflammatory damage. In type 2 diabetes (T2DM), however, hyperglycemia, hypertension, and hyperlipidemia place a significant burden on the endothelium, potentially leading to atherosclerosis and cardiovascular disease (CVD). While semaglutide and empagliflozin have been shown to reduce CVD risk in T2DM, it remains unclear whether these benefits are mediated by improved endothelial function. This post-hoc analysis explores the effects of these agents on markers of endothelial function, i.e. the reactive hyperaemic index (RHI) and the endothelial-derived cell adhesion molecules (CAMs) E-Selectin, ICAM-1, P-Selectin, and VCAM-1. METHODS: This was a post-hoc analysis of a 32-week randomized trial evaluating the separate and combined effects of semaglutide and empagliflozin on cardio-renal organ damage. One hundred and twenty participants with type 2 diabetes, age&#xa0;&#x2265;&#xa0;50 were randomized to four groups (semaglutide, empagliflozin, the combination or placebo). An increase in RHI and/or a decrease in CAMs were considered beneficial. RESULTS: RHI increased compared to baseline (0.11, 95%CI [0.008;0.21], p&#xa0;=&#xa0;0.03) but not compared to placebo in the semaglutide group (0.11, 95%CI [-0.04;0.24], p&#xa0;=&#xa0;0.16). There was no effect on RHI in the empagliflozin group. Compared to placebo, E-Selectin decreased significantly in the semaglutide and combination groups (-9, 95%CI [-14.1;-5.1] p&#xa0;<&#xa0;0.01 and&#xa0;-&#xa0;9, 95%CI [-14.3; -5.2] p&#xa0;<&#xa0;0.01, respectively). VCAM-1 increased in the same groups, compared to placebo (12.3, 95%CI[2.8;20.8] p&#xa0;=&#xa0;0.01 and 16.2, 95%CI [7.2;24.3], p&#xa0;<&#xa0;0.01, respectively).P-Selectin and ICAM-1 was not significantly affected in any of the groups, compared to placebo (p&#xa0;&#x2265;&#xa0;0.11 and p&#xa0;&#x2265;&#xa0;0.09, respectively). CONCLUSION: Semaglutide improved endothelial function compared to baseline, but not significantly versus placebo, which likely is due to limited power. CAM responses were heterogeneous, suggesting distinct roles in endothelial dysfunction and atherosclerosis. ClinicalTrialsRegister.eu: EudraCT 2019-000781-38.

Aged

Guidelines for evaluating endothelial function in vascular tissue.

The endothelium plays a central role in maintaining vascular homeostasis by orchestrating vascular tone, inflammation, healing, permeability, and thrombosis. Assessing endothelial function in vascular tissue is essential for understanding the cellular and molecular mechanisms underlying cardiovascular physiology and pathology. Traditional approaches, such as wire and pressure myography, have been instrumental in defining endothelium-dependent responses and identifying key pharmacological targets. However, the complexity and heterogeneity of endothelial cells across vascular beds and their dynamic phenotypic changes in health and disease necessitate the incorporation of new investigative strategies. Emerging methodologies, including bulk and single-cell transcriptomics, proteomics, and advanced imaging, now provide unprecedented insights into endothelial cell diversity and function. A team of leading experts in the field, who collectively reached a consensus on the most widely used techniques to evaluate endothelial function, developed these guidelines. The document establishes best practices for assessing endothelial function, from endothelial cell cultures to isolated vascular tissues, integrating conventional functional assays with modern molecular approaches. By fostering methodological consistency and embracing innovation, our goal is to enhance rigor, reproducibility, understanding, and discovery in endothelial biology.

Humans

Supplementations of docosahexaenoic acid and blueberry suppress a high-fat breakfast-induced postprandial inflammation but only docosahexaenoic acid improves endothelial function in healthy adults: a randomized, double-blind, placebo-controlled crossover intervention study.

Blueberries and n - 3 polyunsaturated fatty acids each can provide protection against inflammation and cardiometabolic disorders. However, the underlying mechanisms are not fully understood. We hypothesized that blueberry and docosahexaenoic acid (DHA) can suppress high fat (HF) meal-induced postprandial inflammation and improve endothelial function. Sixty-two healthy participants (age: 26.8 &#xb1; 1.2 y; BMI: 22.1 &#xb1; 1.2 kg/m&#xb2;) consumed an isoenergetic breakfast (850 kcal) containing 34.7 g mostly animal fat (36% kcal), 25.3 g protein, and 111 g carbohydrate, with or without either 42.2 g blueberry powder (BBP) or 1.76 g DHA in a randomized, double-blind, placebo-controlled crossover intervention study. Blood samples were collected before and 1 h, 3 h and 6 h after breakfast. Monocyte activation, proinflammatory gene expression, cytokine production and endothelial function were assessed. Compared with the placebo control, DHA supplementation suppressed the HF breakfast-induced: expression of IL-1&#x3b2; by 21.6% (P < .01) and prostaglandin-endoperoxide synthase 2 (PTGS2, i.e., cyclooxygenase 2) by 22.8% (P < .01) at 6 h; plasma IL-1&#x3b2; production by 40.1 to 49.8% (P < .01) at 1-6 h; lipoprotein lipase (LPL)-treated blood IL-1&#x3b2; production by 40.9% (P < .0001) at 6 h; and total cholesterol/HDL cholesterol ratio by 2.2% (P < .01) at 3 h and 3.5% (P < .0001) at 6 h. BBP supplementation suppressed LPL-treated blood IL-1&#x3b2; production by 23.1% (P < .05) at 6 h. BBP and DHA also induced postprandial increases in reactive hyperemia index (RHI) scores relative to the fasting baselines, with DHA producing a 13.3% increase compared with placebo at 6 h (P < .05). In conclusion, supplementation with BBP or DHA suppressed the HF meal-induced postprandial inflammation but only DHA improved postprandial endothelial function. This study was registered at clinicaltrails.gov (NCT02472171).

Blueberry

Endothelial function in relation to low-level chronic residential air pollution in a general population: a cohort study.

BACKGROUND: Given the recently updated clean-air targets, this population study assessed endothelial function at low exposure to particulate matter with an aerodynamic diameter of &#x2264;10&#xa0;&#xb5;m (PM10) and &#x2264;2.5&#x2009;&#xb5;m (PM2.5), nitrogen dioxide (NO2) and black carbon (BC). METHODS: In 453 Flemish participants (47.7% women; mean age, 52.8&#x2009;years), endothelial function was assessed by finger photoplethysmography after 5&#x2009;min of ischaemia. The outcome measures were the maximal ischaemic-to-control ratio (Rmax) and the maximal difference (Dmax) in pulse amplitude between the test and control fingers. The air pollutants were related to Rmax and Dmax using mixed models accounting for coresidence, to cardiovascular endpoints by proportional hazards regression, and to residential address by high-resolution spatiotemporal interpolation. RESULTS: From 2010 to 2015, PM10, PM2.5, NO2 and BC decreased (p&#x2009;<&#x2009;0.0001) with 6-year levels averaging 15.9, 12.8, 14.3 and 1.04&#xa0;&#xb5;g/m3. Irrespective of adjustment for risk factors, Dmax was inversely correlated with PM2.5, while associations of Rmax with PM2.5 and associations of both Dmax and Rmax with other pollutants were weaker (p values <0.10), but consistently inverse. Association sizes of Rmax and Dmax with PM10 and PM2.5 weakened over 6&#xa0;years, paralleling the decreasing air pollutants (p&#x2009;&#x2264;&#x2009;0.044). In adjusted analyses, the risk of a composite cardiovascular endpoint decreased (p&#x2009;&#x2264;&#x2009;0.043) with higher Rmax and Dmax with hazard ratios ranging from 0.31 to 0.49. Finally, in the geographical analysis, endothelial dysfunction followed the spatial gradients in PM2.5. CONCLUSIONS: Long-term low-level air pollution is associated with subclinical endothelial dysfunction, the initial and critical step leading to adverse cardiovascular outcomes.

Humans

Hypertension and endothelial function--aspects of atheroma protection.

Old concepts of an "inert" vascular endothelium have been entirely discredited. It is now known that the vascular endothelium and media form a "functional unit", communicating via both electric and humoral signals. Normal endothelium maintains vascular dilation through release of various dilatory substances, the main one being endothelial relaxing factor (EDRF), which is nitric oxide (NO). EDRF is, for example, released in response to increased shear stress that accompanies high flow rates, and acts by engaging the cyclic GMP system of smooth muscle cells. Even potential vasoconstrictors such as vasopressin, catecholamines and serotonin release EDRF. Endothelial release of prostacyclin supplements the EDRF action. EDRF (and prostacyclin) also inhibit platelet aggregation. In the presence of hypertension and/or atherosclerosis, endothelial function is often impaired and pressor/thrombogenic factors such as endothelin, thromboxane, vasopressin, catecholamines, and serotonin become more dominant. Antihypertensive therapy should, ideally, seek to restore endothelial function to normal.

Animals

Substance P for evaluation of coronary endothelial function after cardiac transplantation.

The endothelium-dependent vasodilator substance P dilates normal and diseased coronary vessels in humans in vivo and produces a maximal response similar to that seen with intracoronary isosorbide dinitrate. Twelve cardiac transplant recipients underwent intracoronary infusion of substance P after routine annual investigations. All patients were well, with no evidence of rejection and with angiographically normal coronary arteries. Substance P was infused at 2 ml/min for 2 min into the coronary artery, starting at a dose of 1.4 pmol/min and increasing by doubling increments, and followed by isosorbide dinitrate (1 mg/min) infused over 2 min. Coronary artery diameter was measured in 23 vessel segments from 12 transplant recipients. The following doses were infused: saline solution (1 ml/min), substance P (0.7 [three patients], 1.4, 2.8, 5.6, 11.2, 22.4 pmol/min) and isosorbide dinitrate (1 mg/min). The mean percent increase in diameter (+/- SEM) in response to increasing doses of substance P was as follows: 0, 6.5 +/- 2.9%, 10.9 +/- 2.9%, 12.1 +/- 2.9%, 16.5 +/- 2.6%, 19.2 +/- 3.1% and 25.8 +/- 2.2%, respectively. Half maximal dilation was produced with 1.4 to 2.8 pmol/min of substance P; the maximal response (mean percent diameter change) was 22 +/- 2.5%. This was not significantly different from that achieved with isosorbide dinitrate. It is concluded that coronary endothelial function as assessed by response to substance P is preserved in cardiac transplant recipients with angiographically normal coronary arteries. Substance P may be a suitable agent for testing endothelial function in these patients.

Coronary Angiography

Uptake of polyamines by human endothelial cells. Characterization and lack of effect of agonists of endothelial function.

Uptake of polyamines by confluent monolayers of human umbilical-vein endothelial cells (HUVECs) was found to be time-, temperature- and concentration-dependent, energy-requiring, and saturable. Kinetic constants were putrescine Kt 3 +/- 1 microM, Vmax. 15 +/- 7 pmol/h per microgram of protein; spermidine, 0.7 +/- 0.2, 12 +/- 3; spermine, 1 +/- 0.7, 11 +/- 4. Putrescine uptake was inhibited by spermine or spermidine, whereas uptake of spermine or spermidine was not inhibited by 20 microM-putrescine. These data suggest the existence of two carriers, one shared by spermine and spermidine, and one capable of transporting all three polyamines. Pretreatment of HUVECs with thrombin (less than or equal to 10 units/ml; 1 h), bradykinin (less than or equal to 10 microM; 1 h), interleukin-1 (less than or equal to 100 units/ml; 2 h) or phorbol 12-myristate 13-acetate (less than or equal to 1.0 microM; 1 h), all known agonists of endothelial function, had no significant effect on polyamine uptake. These responses may be of importance in angiogenesis and wound healing, and could have pharmacological significance, for there is a growing interest in the use of polyamines or polyamine analogues as therapeutic agents.

2,4-Dinitrophenol

Endothelial function and contractility of human vena saphena magna prepared for aortocoronary bypass grafting.

The aim of this study was to examine whether contractility and endothelial function of the human saphenous vein prepared for aortocoronary bypass grafting are altered by the surgical technique, e.g. cannulation and gentle distension of the vessel. Two segments (2 cm length each) of native vena saphena magna and 2 segments (2 cm length each) of the same vessel prepared for coronary bypass grafting were taken for further experimentation. After ligation of all side branches the segments were cannulated and arranged in two systems (with two segments each) in a serial manner (system I: prepared vessel followed by a native segment; system II: native vessel followed by a prepared segment) and perfused with Tyrode's solution at a constant flow rate of 20 ml/min (PO2 = 45 mmHg). Pressure gradient was measured continuously over each segment as a function of the vessel's radius according to the Hagen-Poiseuille equation. Endothelial and smooth muscle function was checked by perfusion with increasing concentrations of acetylcholine (ACH) to provoke the release of endothelium-derived relaxing factor (EDRF) (ACH; 0.3, 1, 3, 10, 30 mumol/L) after precontraction of the vessels with 1 mumol/L norepinephrine (NE). This showed normal contractility and ACH-induced relaxation in the native vessels but a reduced contractile response and a total lack of ACH-EDRF-induced relaxation in the prepared vessels. Perfusion with 5-hydroxytrytamine (5-HT) (0.25, 0.5, 1, 10 mumol/L for 10 min each concentration) resulted in marked constriction of all vessels with preserved contractility which could be completely prevented by pretreatment with the 5-HT2-receptor antagonist ketanserine (20 mumol/L).(ABSTRACT TRUNCATED AT 250 WORDS)

Acetylcholine

The endothelial function of donor corneas: effects of delayed enucleation and refrigeration.

The endothelial viability of rabbit corneas subjected to various forms of cadaveric and moist chamber storage was evaluated by means of the specular microscope and the rate of stromal deturgescence during a temperature reversal response. Delays in the postmortem enucleation and refrigeration of potential donor corneas was shown to be detrimental to the functioning of the endothelium. To best preserve the endothelial function of donor corneas, the eyes should be removed as soon after death as possible and refrigerated at 4 degrees C. Refrigerated cadaveric storage was found not to be a substitute for early enucleation and refrigeration of the corneas. The limitations in the use of the rate of stromal deturgescence during a temperature reversal response as a quantitative indicator of endothelial function are discussed.

Animals

Endothelial function in humans. Studies of forearm resistance vessels.

The endothelium is increasingly recognized as a modulator of vascular tone, and evidence also is accumulating for an important role of the endothelium in humans in vivo. Endothelial release of prostacylin appears to regulate hyperemic blood flow after ischemia and muscle exercise, and the potent vasodilating properties of endothelium-derived relaxing factor (EDRF) are well established. Tonic release of EDRF plays an important role in the regulation of vascular tone in normal subjects, and a reduction of EDRF release in response to muscarinergic stimulation has been described in subjects with uncomplicated hypertension and also in hyperlipidemic patients. These observations point toward an early disturbance of endothelial function in disorders known as risk factors for the development of atherosclerosis. Furthermore, altered EDRF release and responsiveness to stimuli may be involved in the disturbed regulation of peripheral vascular tone in congestive heart failure. The physiological role of the vasoconstricting peptide endothelin-1 is not yet defined, but the study of the vascular actions of the peptide in humans has shown a vasodilating effect (for low dosages or when the vasconstricting effects are blocked), as well as a marked and long-lasting vasoconstricting effect. Although the mechanisms leading to vasodilation are not clear in humans, endothelin-1-induced vasoconstriction appears to be completely dependent on the activity of voltage-operated calcium channels and can be blocked by organic calcium antagonists but not by nitrovasodilators or EDRF. Further clarification of the role of the endothelium will provide a better understanding of circulatory physiology and pathophysiology and eventually may lead to the development of new therapeutic modalities.

Endothelins

Acute effects of cyclosporin and cremophor EL on endothelial function and vascular smooth muscle in the isolated rat heart.

We studied the effects of cyclosporin dissolved in the vehicle used as an intravenous preparation, namely, cremophor EL, and cremophor alone on the basal coronary flow plus endothelial function and vascular smooth muscle response by examining their influence on 5-hydroxytryptamine (5-HT) and nitroglycerine (GTN) induced the changes in coronary flow in the isolated rat heart. A total of 72 rat hearts were perfused with a modified Langendorf preparation. There was a 12.8 +/- 3% reduction in the basal coronary flow after 60 minutes of perfusion with the drug-free buffer (p = ns). A dose of 50 ng/ml of cremophor or cyclosporin gave a similar reduction in the flow (cremophor 9.2 +/- 0.7%, cyclosporin 12.7 +/- 2%). However, at higher concentrations cremophor caused dose-dependent coronary vasodilation, while cyclosporin had the opposite effect. The maximum effect after 1000 ng/ml of cyclosporin was a 48.7 +/- 0.6% decrease, and after an equivalent dose of cremophor a 24.8 +/- 2.2% increase in the flow. The vasodilatory response to 5-HT and GTN remained unchanged after 60 minutes of perfusion with the drug-free buffer (5-HT, before 33.3 +/- 2.5%, after 37.7 +/- 4.2%; GTN, before 34.3 +/- 2.5%, after 33.7 +/- 1.5%).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Improved preservation of endothelial function at 4 degrees C.

Hypothermia combined with chemical cardioplegia is routinely used clinically for perioperative myocardial protection and for donor heart preservation. Profound hypothermia can have an adverse influence on post-preservation endothelial and myocardial functions. In this study, we investigated the effect of temperature on endothelial and myocardial functions following global cardiac ischaemia in the isolated rat heart. A 5-hydroxytryptamine (5-HT)-induced increase in coronary flow was used as a selective probe to assess endothelial function, while myocardial function was measured by a working rat heart model. After recording control observations for endothelial and myocardial functions, hearts were kept ischaemic for 30 or 60 min without cardioplegia (groups 1 and 2, respectively) and for 60, 90 or 120 min following a single infusion of St. Thomas' Hospital solution (groups 3, 4 and 5, respectively). In each group, hearts were kept ischaemic at 20 degrees C or at 4 degrees C (n = 12 in each group). Endothelial and myocardial functions were reevaluated and compared with control values.(ABSTRACT TRUNCATED AT 250 WORDS)

Animals

Endothelial function of human gastroepiploic artery. Implications for its use as a bypass graft.

The human gastroepiploic artery has been used as a coronary artery bypass conduit in a limited number of clinical studies. It has been postulated that the capacity of the endothelium to release vasoactive substances may contribute to differing patency rates observed in established bypass grafts. We have now examined endothelial function in the human gastroepiploic artery. Endothelium-dependent relaxations to substance P were observed. A maximum relaxation of 83.25% +/- 8.2% (mean +/- standard error) was attenuated to 48.5% +/- 16.4% in the presence of L-NG-monomethyl-arginine, a specific inhibitor of endogenous nitric oxide synthesis. Removal of the endothelium abolished the relaxations. With a specific radioimmunoassay, concomitant changes in levels of cyclic guanosine 3',5'-monophosphate, the second messenger that elicits smooth muscle relaxation after release of the endothelium-derived relaxing factor, were measured. It was found that the gastroepiploic artery had significantly higher resting and stimulated levels of cyclic guanosine 3',5'-monophosphate than either the internal mammary artery or the saphenous vein. In the presence of the cyclooxygenase inhibitor indomethacin, and indomethacin plus L-NG-monomethylanginine, the maximum relaxation was decreased to 70% +/- 9.5% and 59% +/- 10.8%, respectively. Our data demonstrate that endothelium-derived relaxing factor and prostacyclin may exhibit synergy in the control of vascular tone in this vessel. It is concluded that the endothelium of the gastroepiploic artery has a strong capacity to secrete vasodilators and inhibitors of platelet activity. This could have important influence on long-term patency.

Arginine

Intracoronary L-arginine during reperfusion improves endothelial function and reduces infarct size.

We tested the hypothesis that intracoronary administration of L-arginine (L-Arg), the physiological nitric oxide (NO) precursor, during reperfusion would attenuate postischemic damage by L-Arg NO-pathway mechanisms. Open-chest, anesthetized dogs underwent 60 min of left anterior descending coronary arterial (LAD) occlusion followed by 270 min of reperfusion. Dogs received intracoronary 10 mM L-Arg (n = 9 dogs), intracoronary 10 mM D-arginine (D-Arg, n = 7), or saline vehicle (Veh, n = 10) in the LAD during the first 120 min of reperfusion using an extracorporeal system. After 270 min of reperfusion, segmental systolic and diastolic function were comparably impaired in all three groups. Infarct size (triphenyltetrazolium chloride) expressed as a percentage of the area at risk (An/Ar) was significantly (P < 0.05) reduced in the L-Arg group (17.7 +/- 3.2%) compared with the Veh group (34.8 +/- 2.4%); D-Arg reversed this cardioprotection (48.8 +/- 5.2%, P < 0.05 vs. L-Arg, Veh). Cardiac myeloperoxidase activity, an index of neutrophil accumulation (U/100 mg tissue), was significantly (P < 0.05) lower in the necrotic tissue of the L-Arg group (0.88 +/- 0.26) than in the Veh group (2.46 +/- 0.38). Furthermore, responses to endothelium-dependent vasodilators acetylcholine and A23187 in isolated ischemic-reperfused LAD rings were significantly (P < 0.05) greater in the L-Arg group than in the other two groups. We conclude that intracoronary infusion of L-Arg during the early phase of reperfusion reduced neutrophil accumulation and infarct size and the infusion preserved endothelial function, possibly by increasing NO release or production by the endothelium.

Animals

Differential role of endothelial function on vasodilator responses in series-arranged arterioles.

Both in vitro and in vivo studies have revealed that removal of vascular endothelial cells abolishes the vasodilation to acetylcholine (Ach) but not sodium nitroprusside (SNP). Differential properties of endothelial cells in the series-arranged arterioles to vasodilator responses have not been studied. In this study, the cheek pouch microcirculation from the golden syrian hamster anesthetized with sodium pentobarbital (6 mg/100 g body wt, ip) was prepared for intravital microscopy. Measurements of lumen diameters of small series-arranged arterioles (2nd- and 4th-order) were made before, during, and after topical microapplication of different doses of either Ach or SNP. After control measurements, a light-dye (L-D) technique utilizing sodium fluorescein (FITC-dextran(150K), 50 mg/100 g body wt, iv) and illuminating a discrete area of the arteriole with 490-nm-wavelength light for 3 (4th) or 10 (2nd) min was used to impair endothelial cell function without damaging vascular smooth muscle cells. Responses to vasoactive substances for both 4th-order (10-20 microns) and second-order (30-50 microns) arterioles were retested. Vasodilatory responses to 10(-7) M Ach and SNP also were tested with and without the presence of NG-monomethyl L-arginine (L-NMMA), an inhibitor of EDRF/NO formation. In the control state, Ach and SNP produced a focal, dose-dependent increase in diameter in all arterioles tested. Endothelial impairment by L-D treatment significantly suppressed the vasodilator response to Ach in 4th- but not 2nd-order arterioles, whereas the SNP response was not significantly affected. Consistent with these observations, L-NMMA treatment significantly attenuated Ach-induced vasodilation in 4th-order arterioles, but it had no effect on 2nd-order arterioles. These studies document further the role of the endothelium in local modulation of arteriolar diameter in response to acetylcholine and demonstrate a differential effect for this response in series-arranged microvessels. Thus, there may be a heterogeneous distribution of endothelial cell functions for modulating vasodilator activity in microvessels.

Acetylcholine

Cytokine regulation of endothelial cell function.

Endothelial cells have long been viewed as a passive lining of blood vessels endowed essentially with negative properties such as that of being nonreactive to blood components. It is now evident that upon exposure to environmental signals, cytokines in particular, vascular cells undergo profound changes in gene expression and function that allow these cells to participate actively in inflammatory reactions, immunity, and thrombosis. Different mediators (e.g., interleukin-1 [IL-1] and interferon-gamma) activate relatively distinct sets of functions. These functional programs expressed in activated endothelial cells include the production by the same cells of cytokines (e.g., IL-1, IL-6, chemotactic cytokines, and colony-stimulating factors), which regulate hematopoiesis, the differentiation and proliferation of T and B lymphocytes, and the extravasation of leukocytes. The identification of cytokine circuits through which vascular cells participate to thrombotic, inflammatory, and immune reactions provides novel targets for therapeutic intervention.

Animals