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Constrictive (obliterative) bronchiolitis: diagnosis, etiology, and a critical review of the literature.

Constrictive bronchiolitis (CB) (or obliterative bronchiolitis) designates inflammation and fibrosis occurring predominantly in the walls and contiguous tissues of membranous and respiratory bronchioles, with resultant narrowing of their lumens. It differs from bronchiolitis obliterans-organizing pneumonia in its histopathology and clinical course. Most cases of CB occur in the setting of organ transplants, particularly lung and heart-lung transplants, but also in bone marrow transplants. Other bona fide cases are rare: infection, particularly viral infection, appears to be a well-documented precursor to CB in children, but not in immunocompetent adults. Constrictive bronchiolitis also has been reported in the course of rheumatoid arthritis, in certain other autoimmune diseases such as pemphigus vulgaris, after inhalation of toxic gases such as nitrogen oxide, after ingestion of certain drugs or medicinal agents such as Sauropus androgynous, and as a cryptogenic illness. Recent reports suggest that CB, as defined by clinical criteria (that is, bronchiolitis obliterans syndrome), is very common in lung allograft recipients who survive more than 5 years and, although it is associated with significant mortality, it also can be clinically stable. Furthermore, with the current practice of close monitoring of these patients, it appears that CB may now be diagnosed at an earlier stage, at which resolution, or at least stabilization of progression, is possible. A histopathologic diagnosis of CB in lung transplant and other patients may be difficult to make due to the patchy distribution of lesions, the technical difficulty in obtaining tissue in late lesions with extensive fibrosis, and the failure to recognize lesions. With regard to the last of these, in early stages of disease, CB may be subtle and easily missed in routine hematoxylin-eosin-stained specimens, while in advanced stages the disease may be equally difficult to diagnose if the patchy scarring in the lung is interpreted as nonspecific. The relative loss of bronchioles and the relationship of the scars to contiguous arteries should signal the need for elastic stains to look for the residual elastica of the bronchioles amidst the foci of fibrosis. Increasingly, clinical grounds, including pulmonary functions studies and high-resolution computed tomography findings, are proving to be relatively sensitive methods of detecting CB. Finally, the progressive airway destruction in chronic transplantation rejection appears to be a T-cell-mediated process. The "active" form of constrictive bronchiolitis, with attendant lymphocytic inflammation of the airways, likely precedes the "inactive" or scarred form of constrictive bronchiolitis.

Adult↗

Ego constriction.

The terms ego constriction, ego inhibition, and ego restriction have not been clearly differentiated in their usage in the literature. In this paper a rationale for "ego constriction" as an entity distinct from both ego inhibition and ego restriction is given, despite its clear similarities to each. In a person with an ego inhibition, the ego inhibits a part of its own functioning because a particular function is linked to an unacceptable impulse. It is an internalized conflict. The person with an ego restriction, in contrast, avoids psychological pain triggered from an area in the outside world by restricting activity in that area. Like each of these problems but different, a person with an ego constriction first externalizes an internalized conflict associated with important functions or activities. Then, only through a series of particular obligatory steps can the person "overcome" the ego constriction--albeit temporarily. It is noted in this paper that the function of the specified obligatory steps is structurally parallel to the rigid obligatory behavior necessary for genital gratification in the perversions. As the recognition of this distinction arose in the course of an analysis of a mental health professional, something of the necessarily shared nature of analytic work is noticeable, shining through as the background for the work of this paper.

Conflict, Psychological↗

Myocardial tissue oxygen during coronary artery constriction and hypotension in dogs.

BACKGROUND: Sodium nitroprusside (SNP) may decrease myocardial tissue oxygenation in dogs with normal coronary arteries. We compared SNP- with desflurane-induced hypotension on myocardial tissue oxygen and pH in dogs with left anterior descending artery constriction. METHODS: Twenty-four dogs were anesthetized with 8% desflurane for baseline anesthesia. Catheters were inserted into the femoral artery and vein and the coronary sinus. A flow probe and flow restriction device was placed on the left anterior descending (LAD) artery. A probe that measured myocardial oxygen pressure was inserted into the middle myocardium in the LAD region. Baseline measures were made of LAD artery flow, arterial and coronary sinus blood gases, and myocardial tissue gases. A 30% decrease in blood pressure was induced with SNP with unrestricted LAD flow (n=6) or when LAD artery flow was restricted by 30% from baseline (n=6). In separate dogs, a 30% decrease in blood pressure was produced with 14 +/- 1% desflurane with unrestricted LAD flow (n=6) or with baseline LAD artery flow restricted by 30% (n=6). RESULTS: During SNP-induced hypotension with no LAD constriction, LAD artery flow and coronary sinus oxygen tension increased but myocardial tissue oxygen tension (PmO2) decreased by 40%. When baseline artery flow was decreased by 30% by LAD constriction, SNP-induced hypotension decreased tissue oxygen pressure by 80%, and ischemic acidosis was produced. During unrestricted LAD artery flow or with a 30% flow restriction, desflurane-induced hypotension produced no significant change from baseline myocardial tissue oxygen tension or pH. CONCLUSION: During coronary artery constriction, desflurane-induced hypotension maintained myocardial tissue oxygenation and pH better than did SNP-induced hypotension. The divergence between tissue and coronary sinus oxygen tension during SNP suggests that arteriovenous shunting may occur.

Anesthetics, Inhalation↗

Calcium transients in astrocyte endfeet cause cerebrovascular constrictions.

Cerebral blood flow (CBF) is coupled to neuronal activity and is imaged in vivo to map brain activation. CBF is also modified by afferent projection fibres that release vasoactive neurotransmitters in the perivascular region, principally on the astrocyte endfeet that outline cerebral blood vessels. However, the role of astrocytes in the regulation of cerebrovascular tone remains uncertain. Here we determine the impact of intracellular Ca(2+) concentrations ([Ca(2+)](i)) in astrocytes on the diameter of small arterioles by using two-photon Ca(2+) uncaging to increase [Ca(2+)](i). Vascular constrictions occurred when Ca(2+) waves evoked by uncaging propagated into the astrocyte endfeet and caused large increases in [Ca(2+)](i). The vasoactive neurotransmitter noradrenaline increased [Ca(2+)](i) in the astrocyte endfeet, the peak of which preceded the onset of arteriole constriction. Depressing increases in astrocyte [Ca(2+)](i) with BAPTA inhibited the vascular constrictions in noradrenaline. We find that constrictions induced in the cerebrovasculature by increased [Ca(2+)](i) in astrocyte endfeet are generated through the phospholipase A(2)-arachidonic acid pathway and 20-hydroxyeicosatetraenoic acid production. Vasoconstriction by astrocytes is a previously unknown mechanism for the regulation of CBF.

Animals↗

Superoxide and endothelium-dependent constriction to flow in porcine small pulmonary arteries.

1. The aim of this study was to determine the response of porcine small pulmonary arteries to intralumenal flow and to identify the cellular mechanisms and potential mediators involved in the response. 2. Porcine small pulmonary arteries were isolated from a branch of the main intrapulmonary artery of the lower lung lobe and studied in a perfusion myograph system that allowed independent control of transmural pressure and intralumenal flow. At a transmural pressure of 20 mmHg, the baseline internal diameter (BID) of the arteries was 251.2+/-16.1 microm (n=16). 3. Under quiescent conditions or during constriction with U46619 to approximately 60% of BID, intralumenal flow caused reversible constriction in arteries with endothelium (in the presence of U46619, flow decreased diameter from 60.0+/-2.5% to 49.5+/-3.0% BID at 10 microl min(-1), n=16, P<0.05) but no change in diameter of arteries without endothelium. 4. In the presence of superoxide dismutase (SOD, 150 u ml(-1)), the response to flow was converted from constriction to vasodilatation (in presence of U46619 and SOD, flow increased diameter from 54.2+/-3.4% to 76.7+/-4.5% BID at 10 microl min(-1), n=10, P<0.05). Inhibition of NO synthase with L-NAME (3 x 10(-5) M) abolished the flow-induced vasodilatation occurring in the presence of SOD and the flow-induced constriction occurring in the absence of SOD. In arteries with endothelium, L-NAME (3 x 10(-5) M) caused significant vasoconstriction, whereas SOD did not alter vasomotor tone. 5. Acetylcholine (10(-8) to 10(-6) M) caused endothelium-dependent relaxation of small pulmonary arteries that was not significantly affected by SOD (150 u ml(-1)) but was inhibited by L-NAME (3 x 10(-5) M). 6. These results suggest that in small, porcine, isolated pulmonary arteries, intralumenal flow increases the production of NO but this is obscured by the generation of superoxide which causes vasoconstriction.

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5↗

Comparison of U46619-, endothelin-1- or phenylephrine-induced changes in cellular Ca2+ profiles and Ca2+ sensitisation of constriction of pressurised rat resistance arteries.

1. In pressurised rat mesenteric small arteries (50 mmHg), we examined the effects of stimulation with U46619, endothelin-1 (ET-1) or phenylephrine (PE) on changes in vessel diameter, global [Ca(2+)](i), individual smooth muscle cell [Ca(2+)](i) and Ca(2+)-sensitisation of contraction. 2. U46619 or ET-1 gave tonic diameter reductions, whereas PE-stimulated vessels gave tonic contractions or initial vasoconstrictions followed by diameter oscillations. Global [Ca(2+)](i) changes were transient for each agonist, with tonic constrictions being accompanied by maintained submaximal global [Ca(2+)](i) levels. 3. U46619, ET-1 or PE tonic constrictions were accompanied by apparently asynchronous [Ca(2+)](i) waves in individual smooth muscle cells of the vessel wall, as examined by confocal fluorescent microscopy. In vessels exhibiting vasomotion to PE, some apparent synchrony of activation of individual cells was evident; however, this was incomplete with many cells responding out of phase with their neighbours. 4. In alpha-toxin-permeabilised preparations, agonist-induced Ca(2+)-sensitisation of constriction at submaximal Ca(2+) (pCa6.7) in the presence of GTP was greater with U46619 or ET than PE. 5. We conclude that, in pressurised mesenteric arteries, (i) a general feature of receptor-coupled constriction is the generation of periodic smooth muscle [Ca(2+)](i) waves; (ii) complete synchrony of Ca(2+) oscillations between smooth muscle cells is not a prerequisite for receptor-coupled vasomotion; (iii) varied Ca(2+)-sensitising actions of agonists may partly determine tonic or phasic vessel responses to different stimuli.

15-Hydroxy-11 alpha,9 alpha-(epoxymethano)prosta-5↗

Anterior open bite and oral port constriction.

Intraoral air pressure and rate of oral airflow were measured simultaneously during fricative sound production in ten subjects with anterior open bite and ten subjects with normal occlusion and speech. From these measurements the area of oral port constriction was calculated and the values compared within and between the two groups. Findings revealed that: (1) The area of oral port constriction was very consistent and reproducible in subjects with normal speech production and normal occlusion. (2) The area of oral port constriction was significantly larger in open-bite subjects compared with control subjects for all sounds. (3) Severe anterior open-bite subjects with a vertical defect over five millimeters were found to produce significantly larger oral port openings than those with only moderate open bite (3-5 mm) for most sounds. (4) A direct correlation between the degree of open bite and the area of oral port constriction was found. As the amount of open bite increased, the area of the oral port increased, especially in the severe open-bite group (5 mm and over).

Adolescent↗

Myogenic effects enhance norepinephrine constriction: inhibition by nitric oxide and felodipine.

Myogenic, pressure-induced vasoconstriction may amplify the effects of circulating vasoconstrictors. Through intravital microscopy in cremaster arterioles (31 to 115 microm diameter), the relative contribution of myogenic responses (MR) to norepinephrine (NE)-induced constriction and the inhibitor potency of nitric oxide (NO) or a Ca2+ entry blocker (CEB), felodipine (F), were examined. In 24 anesthetized hamsters, a vessel occluder was placed around the aorta to control cremaster vessel inflow pressure (IP). NE infusion increased blood pressure (by 50 +/- 2 mm Hg) and induced significant constriction (24% +/- 9%) in small arterioles (< 65 microm) only. The constriction, which was not altered by adrenergic blockade, was dependent on the actual IP and was abolished when the IP increase was blocked. NO synthase (NOS) blockade unmasked a significant MR in large arterioles. F inhibited the MR predominantly in large vessels. In isolated microvessels, F completely blocked the pressure-induced Ca2+ increase and MR. We conclude that circulating NE constricts muscle arterioles mainly by a myogenic mechanism. NO effectively opposes MR in larger arterioles, thus restricting MR and vasoconstrictor reinforcement to a small section of the vasculature being tightly controlled by metabolic signals. MR, which otherwise would impair adjustment of peripheral resistance, is reduced by CEB predominantly in larger arterioles, similar to NO.

Animals↗

Visual field constriction is not limited to children treated with vigabatrin.

Vigabatrin (GVG) is widely used in the treatment of complex partial seizures and infantile spasms. Persistent visual field constriction associated with GVG therapy in adults was reported as a rare but serious side-effect. Visual field examination in children is more difficult because of a lack of cooperation among very young or mentally handicapped patients. We performed Goldmann perimetry in 12 of 153 patients treated with GVG as mono- or as add-on therapy. The others would not cooperate, and two adolescents refused the examination. For comparison, we examined 12 age-matched patients with complex partial or generalized epilepsy who had never taken GVG. In five of 12 GVG-treated patients, and in one of the control group, we found a concentric visual field constriction. All patients were subjectively asymptomatic. The GVG-treated patients had taken the drug in combination with valproic acid (VPA) or oxcarbazepine (OCB). In four patients, GVG treatment was already stopped at the time of the ophthalmologic examination. Three patients had intracerebral lesions that could not account for the pathologic perimetric findings. The single patient from the control group with concentric visual field constriction had an absence epilepsy, treatment being performed with VPA and lamotrigine (LTG). In conclusion, GVG has a causal but not unique connection with visual field constriction in pediatric patients.

Adolescent↗

Location of a constriction in the lumen of a transmembrane pore by targeted covalent attachment of polymer molecules.

Few methods exist for obtaining the internal dimensions of transmembrane pores for which 3-D structures are lacking or for showing that structures determined by crystallography reflect the internal dimensions of pores in lipid bilayers. Several approaches, involving polymer penetration and transport, have revealed limiting diameters for various pores. But, in general, these approaches do not indicate the locations of constrictions in the channel lumen. Here, we combine cysteine mutagenesis and chemical modification with sulfhydryl-reactive polymers to locate the constriction in the lumen of the staphylococcal alpha-hemolysin pore, a model protein of known structure. The rates of reaction of each of four polymeric reagents (MePEG-OPSS) of different masses towards individual single cysteine mutants, comprising a set with cysteines distributed over the length of the lumen of the pore, were determined by macroscopic current recording. The rates for the three larger polymers (1.8, 2.5, and 5.0 kD) were normalized with respect to the rates of reaction with a 1.0-kD polymer for each of the seven positions in the lumen. The rate of reaction of the 5.0-kD polymer dropped dramatically at the centrally located Cys-111 residue and positions distal to Cys-111, whether the reagent was applied from the trans or the cis side of the bilayer. This semi-quantitative analysis sufficed to demonstrate that a constriction is located at the midpoint of the pore lumen, as predicted by the crystal structure, and although the constriction allows a 2.5-kD polymer to pass, transport of a 5.0-kD molecule is greatly restricted. In addition, PEG chains gave greater reductions in pore conductance when covalently attached to the narrower regions of the lumen, permitting further definition of the interior of the pore. The procedures described here should be applicable to other pores and to related structures such as the vestibules of ion channels.

Animals↗

Reflection as a cause of mid-systolic deceleration of pulmonary flow wave in dogs with acute pulmonary hypertension: comparison of pulmonary artery constriction with pulmonary embolisation.

STUDY OBJECTIVE: The aim was to examine whether mid-systolic deceleration of the pulmonary flow wave occurred in acute pulmonary hypertension due to pulmonary artery constriction and pulmonary embolisation, and if so whether it was related to reflection. DESIGN: Various degrees of pulmonary hypertension were induced by both pulmonary artery constriction and pulmonary embolisation in dogs. During control periods and during pulmonary artery constriction and pulmonary embolisation, pulmonary flow and pulmonary artery pressure were recorded, and the forward and backward (reflected) flow waves were separated from the measured pulmonary flow wave by the method of Westerhof et al. MATERIALS: 20 adult mongrel dogs were used and 10 dogs qualified for analysis. The other 10 dogs, which died before both interventions were completed, were excluded. MEASUREMENTS AND MAIN RESULTS: During pulmonary artery constriction, a distinct mid-systolic deceleration of the pulmonary flow wave was observed in five of the 10 dogs, while during pulmonary embolisation, no mid-systolic deceleration was found in these five dogs. The distinct deceleration of the pulmonary flow wave was related to a steep fall and early negative peak in the backward flow wave. CONCLUSION: Mid-systolic deceleration of pulmonary flow wave is likely to be related to reflection.

Acute Disease↗

Flow induces dilatation in the femoral artery of uraemic rats but constriction in control rats.

BACKGROUND: Pressure and flow are recognized as important modulators of vascular tone. In mildly uraemic rats, myogenic tone is increased in the femoral artery in the absence of hypertension compared with healthy control rats, but the effect of flow in the same experimental model remains unknown. SUBJECTS AND METHODS: Twelve male Wistar rats were rendered uraemic (U) by 5/6th nephrectomy or were concurrently sham operated as controls (C). After 8 weeks, isolated femoral arteries were mounted on a flow myograph, pressurized at 80 mmHg, and constricted by 40-50% of the lumen internal diameter (i.d.) by L-phenylephrine (1-10 micromol/l). Flow was initiated (0-207 microl/min) in six steps every 5 min and changes in i.d. recorded. N-nitro-L-arginine methyl ester hydrochloride (L-NAME) (0.1 mmol/l) and 1H-[1,2,4] oxadiazolo-[4,3-a]quinoxalin-1-one (ODQ) (1 micromol/l) were applied extraluminally and the flow protocol repeated. RESULTS: The baseline pre-constricted at 80 mmHg i.d. was significantly smaller in the U (U 255+/-21 microm vs C 365+/-36 microm, P<0.03). At all steps, flow elicited a dilatation in the U and a constriction in the C (U+ 24+/-8% vs C-17+/-5%, P<0.01). When L-NAME and ODQ were applied, a significant basal reduction in i.d. was observed in the C only (C 365+/-36 microm vs C+ L-NAME & ODQ 182+/-18 microm, P<0.01; U 255+/- 21 microm vs U+L-NAME & ODQ 240+/-11 microm, P=n.s.). Furthermore, in the U there was no significant blunting to dilatation during flow (+9+/-4%). CONCLUSIONS: Flow elicited a constriction in controls, but a marked dilatation in uraemic roots which was not entirely nitric oxide dependent. These results suggest that other mediators such as prostacyclin or endothelium-dependent hyperpolarizing factor, or changes in the vascular smooth muscle may contribute to flow-induced dilatation in mild experimental uraemia.

Animals↗

Isoflurane and halothane attenuate coronary artery constriction evoked by serotonin in isolated porcine vessels and in intact pigs.

Serotonin is a vasoconstrictor thought to cause coronary artery constriction in humans. The purpose of this study was to determine if isoflurane and halothane each attenuated coronary artery constriction evoked by serotonin in pigs. Both in vitro and in vivo experimental methods were used. Isolated coronary arteries with an without endothelium were studied in organ chambers in the presence and absence of 2.5% concentrations of the anesthetics. In intact pigs serotonin was infused directly into the left anterior descending coronary arteries to induce constriction. The vasodilator effects of 0.5%, 1.25%, and 2.0% isoflurane and halothane were determined using quantitative angiography. Contractile responses of isolated coronary arteries were depressed by the two anesthetics. Maximum contractile responses to serotonin were as follows: rings with endothelium 45 +/- 5% untreated versus 29 +/- 5% with isoflurane 2.5% (difference between dose-response curves, P less than 0.01) and without endothelium 67 +/- 5% untreated versus 51 +/- 6% with isoflurane 2.5% (P less than 0.001); with endothelium 52 +/- 7% untreated versus 28 +/- 7% with halothane 2.5% (P less than 0.001) and without endothelium 65 +/- 5% untreated versus 40 +/- 6% with halothane 2.5% (P less than 0.001). In intact pigs isoflurane and halothane dilated constricted coronary arteries with and without endothelium at all anesthetic concentrations tested, including concentrations as low as 0.5%. Isoflurane 1.25% increased diameter of vessels with endothelium from 1.5 +/- 0.1 mm to 1.7 +/- 0.1 mm (P less than 0.02) and halothane 1.25% increased diameter from 1.6 +/- 0.1 mm to 1.7 +/- 0.1 mm (P less than 0.01).(ABSTRACT TRUNCATED AT 250 WORDS)

Animals↗

Tourniquet constriction exacerbates hyperalgesia-related pain induced by intradermal capsaicin injection.

BACKGROUND: When capsaicin is injected intradermally, hyperalgesia develops around the injection site. The authors observed that volunteers report painful sensations in the skin remote from the injection site during tourniquet constriction of the affected extremity. METHODS: Each volunteer received an intradermal injection of capsaicin on the volar forearm, followed by intermittent tourniquet constriction of the extremity. In some participants, the tourniquet position was rotated between different sites on the upper extremities. Laser Doppler measurements were made in the skin to measure capillary blood flow during pain magnification. RESULTS: Hyperalgesia developed in the volunteers who were tested after the capsaicin injection. Blood flow increased three times in the dermal capillaries remote from the injection site after capsaicin injection. The tourniquet-induced pain reached peak intensity soon after tourniquet inflation. Tourniquet constriction of the arm on the affected side reliably induced painful exacerbation in each person tested. The quality of the sensation was described as burning and extended across the arm in most volunteers. Only when pinprick hyperalgesia was detectable did the volunteers experience the diffuse, immediate pain sensation. The pain initiated by the tourniquet constriction likely is related to changes in skin capillary blood flow. CONCLUSIONS: Low cutaneous blood perfusion is related to the intensity of ongoing, spontaneous pain when secondary hyperalgesia is present. The specific trigger(s) have yet to be identified.

Administration, Cutaneous↗

Constriction band syndrome.

Thirty cases of constriction band syndrome diagnosed and treated with surgery at Ramathibodi Hospital, Bangkok, during 1973 to 1986 are reported. The incidence of this congenital anomaly could not be verified in this series because the number of cases was limited and the cause could not be concluded. The less frequent site of constriction band was the thumb, but acrocephalosyndactyly was the most common associated anomaly. All 30 cases were treated with surgery. One-stage Z-plasty encircling the limb was performed for those with pure constriction band. Cases of acrocephalosyndactyly were treated with staged separation of the digits as well as local flap and skin grafts. Good results were achieved in 16 of 20 patients with constriction band alone and in 4 of 10 acrosyndactyly cases. No compromised circulation of the distal limb or total flap loss was encountered in this study. This type of surgery certainly gives encouraging results.

Abnormalities, Multiple↗

Electronic detection of root canal constrictions.

The aim of this study was to investigate the possibility of detecting root canal constrictions by using an apex locator. Seventy impenetrable canals in extracted human teeth were used. Based on contact microradiographic findings, they were divided into three groups: group A (constricted within 3 mm of the radiographic apex, 23 canals), group B (nonconstricted within 3 mm of the radiographic apex, 28 canals), and group C (constricted more than 3-mm short of the radiographic apex, 19 canals). Electrical impedances at two different frequencies (8 kHz and 0.4 kHz), as well as the meter values of the Root ZX were recorded at the position where a file tip could reach. The impedance ratios (Z8kHZ:Z0.4kHz) and the meter values of the Root ZX showed a statistically significant difference between groups A and B. It was suggested that the Root ZX might be useful for detecting root canal constrictions.

Dental Pulp Cavity↗

Suppressed production of nitric oxide as a cause of irregular constriction of gastric venules induced by thermal injury in rats.

Microcirculatory disturbance is a crucial step in development of gastric mucosal lesions. In this study we investigated the influence of nitric oxide (NO) on the irregular constriction of gastric venules observed in rats subjected to thermal injury. Male Wistar rats were anesthetized and a 30% full skin thickness dorsal burn was inflicted. Microvascular images in the submucosal layer and basal region of the gastric mucosa were obtained through an intravital microscope. Distribution of constitutive-type nitric oxide synthase (cNOS) was observed by the immunofluorescence method. Venule walls were basically smooth in the control group (no injury), whereas irregular constrictions tended to be observed in the 5-h group (5 h after thermal injury). Venule diameter was significantly smaller in the 5-h group. In the control group, cNOS-associated fluorescence was found on the venule endothelium, whereas it was almost negligible after thermal injury. A NO donor, 3-morpholinosydnonimine hydrochloride, simultaneously diminished the thermal injury-associated venule constriction and irregularity of venule walls. Therefore, the present study suggests that venule constriction, which is observed 5 h after thermal injury, is related to decreased NO production by endothelial cNOS and is a cause of irregularity of the venule walls.

Animals↗

Mechanism of acetylcholine-induced constriction enhanced by endothelial removal in isolated, perfused canine basilar arteries.

We examined the responses to intraluminally applied acetylcholine (ACh) in isolated and perfused canine basilar arteries by the stainless-steel cannula-inserting method. In control vessels with intact endothelium, ACh produced a slight vasodilatation followed by a long-lasting vasoconstriction in the absence of induced tone. Propranolol, a beta-adrenoceptor blocker, had no effect on the response to ACh. After endothelial removal with intraluminal saponin, the constrictor component of the response to ACh was significantly enhanced, and the constrictions to prostaglandin F2 alpha (PGF2 alpha) and potassium chloride (KCl) were significantly potentiated. After exposure to extraluminal oxyhemoglobin, the ACh-induced constriction was significantly augmented, whereas the dilator component of the response to calcium ionophore A23187 was significantly attenuated. The enhanced constriction to ACh after endothelial removal was significantly blocked by OKY-046 (a thromboxane synthetase inhibitor) and nimodipine (a dihydropyridine calcium antagonist), but was slightly though not significantly suppressed by AA-861 (a lipoxygenase inhibitor). The response to PGF2 alpha was not altered by OKY-046 or AA-861. These results suggest that the potentiation of ACh-induced constriction after endothelial removal may be mediated in part by thromboxane A2 (TXA2), linked with extracellular calcium entry in smooth muscle cells (SMC). This mechanism might be involved in the pathogenesis of cerebral vasospasm after subarachnoid hemorrhage (SAH).

Acetylcholine↗