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Pharmacological studies on the pulmonary vein of the horse. I. Effects of selected spasmogens.

Horses suffer from a respiratory condition, similar to human allergic asthma, that is characterized by severe dyspnea, wheezing, coughing, and mucus production. Mediator substances released during the allergic reaction may contract airways and pulmonary vasculature. Nothing is known of the effects of autacoids and other vasoactive substances on equine pulmonary vessels. Therefore, spiral strips of equine pulmonary vein were prepared in vitro and the effects of histamine (H), 5-hydroxytryptamine (5HT), bradykinin (BK), carbachol (Carb), and phenylephrine (phen) were studied. The order of contractile effectiveness for the agonists on the vein was found to be 5HT greater than H greater than Bk greater than Phen greater than Carb, although H consistently produced the greatest maximal effects. H1-receptors appeared to mediate H contractions while H2-receptors had no measurable effect. 5HT responses were mediated directly by 'D-type' smooth muscle receptors. Bk produced contractions but of a lesser magnitude than either H or 5HT. Varying degrees of tachyphylaxis were observed for each agent. alpha-Adrenergic receptor stimulation by Phen initiated low-magnitude contractions whereas Carb exhibited virtually no activity on the pulmonary vein. Contractile responses of pulmonary veins to various spasmogens may contribute to the equine asthmatic response by raising vascular hydrostatic pressure, thereby enhancing edema formation.

Animals↗

EDHF, but not NO or prostaglandins, is critical to evoke a conducted dilation upon ACh in hamster arterioles.

Vasomotor reactions upon focal stimulation of arterioles have been shown to be conducted along the vascular wall. Such a conduction, which is assumed to reflect the spread of electrical signals, may contribute to coordination of responses within a vascular segment. We aimed to identify which endothelial autacoid(s) act as mediators of the local and conducted dilator responses, respectively. To this end, arterioles in the hamster cremaster microcirculation were locally stimulated with endothelium-dependent [acetylcholine (ACh)] or endothelium-independent dilators [sodium nitroprusside (SNP)], and the resulting changes in diameter were measured using a videomicroscopy technique at the site of application and up to 1.4 mm upstream at distant sites. Experiments were also performed after blockade of nitric oxide (NO) synthase, cyclooxygenase, P-450 monooxygenase, or K(+) channels. Dilations upon ACh (71 +/- 3%) were conducted rapidly (<1 s) to upstream sites (at 1.4 mm: 37 +/- 5%). Although the NO donor SNP induced a similar local dilation (71 +/- 7%), this response was not conducted. Maximal amplitudes of ACh-induced dilations were not attenuated after inhibition of NO synthase and cyclooxygenase at the local and remote sites. However, additional treatment with a P-450 monooxygenase blocker (sulfaphenazole) strongly attenuated the local response (from 62 +/- 9 to 17 +/- 5%) and abrogated dilations at distant sites (at 0.67 mm: from 23 +/- 4% to 4 +/- 3%). Likewise, 17-octadecynoic acid strongly attenuated local and remote responses. Blockers of Ca(2+)-dependent K(+) channels (charybdotoxin or iberiotoxin) attenuated dilations at the local and remote sites after focal application at the ACh stimulation site. In marked contrast, treatment of the upstream site with these blockers was without any effect. We conclude that upon local stimulation with ACh, a cytochrome P-450 monooxygenase product is generated that induces local dilation via the activation of Ca(2+)-dependent K(+) channels and initiates conduction of the dilation. In contrast to the local site, neither activation of these K(+) channels nor the synthesis of NO or prostaglandins is necessary to dilate the arterioles at remote, distant sites. This suggests that endothelium-derived hyperpolarizing factor serves as an important mediator to initiate conducted dilations and, by doing so, may act as a key player in the coordination of arteriolar behavior in the microcirculatory network.

Acetylcholine↗

Pulsatile stretch and shear stress: physical stimuli determining the production of endothelium-derived relaxing factors.

Mechanical forces generated at the endothelium by fluid shear stress and pulsatile stretch are important in ensuring the continuous release of vasoactive endothelial autacoids. Although the mechanism by which endothelial cells are able to detect and convert these physical stimuli into chemical signals is unclear, this process involves the activation of integrins, G proteins and cascades of protein kinases. The constitutive endothelial nitric oxide synthase (NOS III), classified as a Ca2+/calmodulin-dependent isoform, can be activated by shear stress and isometric contraction in the absence of a maintained increase in [Ca2+]i via a mechanism involving its redistribution within the cytoskeleton/caveolae and the activation of one or more regulatory NOS-associated proteins. Thus it would appear that the intracellular cascades activated by Ca2+-elevating receptor-dependent agonists, such as bradykinin, and hemodynamic stimuli are distinct. Rhythmic vessel distension is also able to elicit the synthesis of superoxide anions and the endothelium-derived hyperpolarizing factor which play a role in modulating arterial compliance in certain vascular beds.

Animals↗

Genetic and environmental influences on airway inflammation in asthma.

The clear recognition that asthma has an inflammatory basis has led to a search for genetic and environmental causes. Genetic linkage studies provide evidence for allelic association between polymorphic markers of interleukin-9 on chromosome 5 and a principal component of the allergic phenotype, log IgE. Further studies that intrauterine environmental factors are an important determinant of the allergic phenotype in addition to allergen exposure during the first year of life. Once sensitised, the respiratory mucosa provides the allergic interface between the environment and internal milieux involving autacoid and cytokine release from mast cells. Up-regulation of endothelial cell adhesion molecules, specifically E-selectin and ICAM-1, is responsible for the leucocyte recruitment of the late-phase asthmatic response, while recruitment of T cells and their subsequent activation contribute to the ongoing inflammatory response of asthma. The epithelium is the origin and target tissue for the inflammatory response, resulting in detachment of suprabasal cells, up-regulation of adhesion molecules and enhanced mediator and cytokine secretion. These latter findings, being more evident in severe chronic disease, suggest that the 'formed' airway elements are also important in mediating the ongoing inflammation characteristic of asthma.

Allergens↗

[Reaction of umbilical cord arteries to PGF2 alpha and glycerol trinitrate during the first days post partum].

OBJECTIVE: Are there changes in the reactivity of umbilical cord arteries within the first day after parturition? METHODS: Groups of rings made from umbilical cord arteries were investigated by a force transducer for their reactions to PGF2 alpha and glycerol trinitrate after 1, 6, 12 and 24 hours after parturition. RESULTS: PGF2 alpha induces vasoconstriction, glycerol trinitrate vasodilatation of the umbilical cord arteries. The quantity of these reactions remains the same at each of the investigation times. But the standard deviation decreases 12 and 24 hours after parturition. CONCLUSIONS: There is an increase of the reproducibility of these investigations in the second half of the first day after parturition. The higher standard deviation in the first 6 hours after parturition may be caused by endogenous autacoids.

Autacoids↗

Characterization of the activity of a platelet activating factor antagonist, CV-3988.

CV-3988 inhibited the vascular permeability increase induced by C16-PAF and C18-PAF in rat skin in a dose-dependent manner. The inhibition was shown to be specific and competitive with PAF on its receptor by the following observations: parallel shift of the dose-response curve; crossing of double reciprocal plots on the intersection of the ordinate; and no inhibition on other autacoids such as bradykinin, histamine, 5-hydroxytryptamine and LTC4. PAF-induced blood pressure fall in rats was also suppressed by pretreatment with CV-3988 selectively.

Alprazolam↗

Hormonal and neurotransmitter regulation of Ca++ influx through voltage-dependent slow channels in cardiac muscle membrane.

The voltage- and time-dependent slow channels in the myocardial cell membrane are the major pathway by which Ca++ ions enter the cell during excitation for initiation and regulation of the force of contraction of cardiac muscle. These slow channels behave kinetically as if their gates open, close, and recover more slowly than those of the fast Na+ channels; in addition, the slow channel gates operate over a less negative (more depolarized) voltage range. Tetrodotoxin does not block the slow channels, whereas the calcium antagonistic drugs, Mn++, Co++, and La ions do. The slow channels have some special properties, including their functional dependence on metabolic energy, their selective blockade by acidosis, and their regulation by cyclic AMP level. Because of their regulation by cyclic AMP, it is proposed that either the slow channel protein or an associated regulatory protein must be phosphorylated in order for the channel to be made available for voltage activation during excitation. That is, the dephosphorylated channel would be electrically silent. The requirement for phosphorylation allows the extrinsic control of the slow channels and Ca++ influx by neurotransmitters, hormones, and autacoids that affect the cyclic nucleotide levels.

Animals↗

[Architecture of physiological functions: the same basis but new aspects].

The principles of physiological functions formulated by J. Barckroft (constancy of the internal medium, reserves, any adaptation as an integration, principle of antagonism, doubling of mechanisms) are compared with principles of modern physiology. The place and role of physiology in the life sciences are discussed. The necessity of taking into consideration 4 level of regulation of functions (the nervous system, hormones, autacoids, physicochemical factors of the extracellular fluid) is substantiated, as well as the necessity of identification of 4 levels of organization of physiological systems. The main role of the water-salt homeostasis in maintaining the cell volume is suggested. Significance of various types of receptors and second messengers in regulation and modulation of functions is shown.

Animals↗

[Metabolic and pharmacologic interactions on the bronchial tonus].

After reminding data concerning the part played by the as a rule antagonist cAMP system in moticity of the smooth muscle fibers in general and of the bronchial fibers in particular, the authors study the different types of interaction on bronchial muscular fibers which have been discribed. It is concerning the adrenergic fibers that the experimental and clinical data are prevalent (role of bronchial alpha- and beta2- receptors) and the authors point especially to their own studies performed since 1964 concerning the alpha1- -bronchoconstrictive component and progressive auto-inhibition of the bronchial beta2- receptors. But autacoids (serotonin, bradykinin, histamine and prostaglandines) and with the stimulating or inhibiting agents of the beta2 -receptors also begin to be recognized.

Adrenal Cortex Hormones↗

Regulation of parturition update. Endocrine and paracrine effectors of term and preterm labor.

This article summarizes the role of endocrine and paracrine mediators of human parturition. Gonadal steroids (17 beta--estradiol and progesterone) mediate many of the decidual and uterine contractile functions during early events in labor. Proinflammatory cytokines and chemokines orchestrate many of the events triggering or sustaining active labor at term and in the preterm setting. Several autacoids (prostaglandins, platelet-activating factor) serve proximal activities such as uterine contractility and remodeling of the cervical extracellular matrix leading to dilatation and effacement. As the biochemical participants during parturition become more clearly understood, it will be possible to develop improved surveillance, management, and treatment strategies for preterm labor.

Autacoids↗

Asthma: a dynamic disease of inflammation and repair.

It is now widely accepted that asthma in its varied forms is an inflammatory disorder of the airways in which mediator release from activated mast cells and eosinophils plays a major role. T lymphocytes take a primary role in orchestrating these processes through their capacity to generate a range of cytokines of the interleukin 4 gene cluster encoded on the long arm of chromosome 5. Additional cytokines derived from mast cells and eosinophils also play a key role, especially tumour necrosis factor alpha, which is responsible for initiating the up-regulation of vascular adhesion molecules involved in the recruitment of eosinophils and other inflammatory cells from the circulation. The importance of C-X-C and C-C chemokines as local chemoattractants and activating stimuli is also recognized. In addition to releasing an array of pharmacologically active autacoids, the inflammatory response in asthma results in the generation of proteolytic activities from mast cells (tryptase, chymase), eosinophils (MMP-9) and the epithelium itself (MMP-2, MMP-9), which exert tissue-destructive and cell-signalling effects. The epithelium is also highly activated, as evidenced by the up-regulation of cytokine production, inducible enzymes and soluble mediators. Increased surface expression of the epithelial isoform of CD44 (9v) and subepithelial proliferation of myofibroblasts are indicative of a simultaneous active repair process and the laying down of new interstitial collagens. Together, inflammatory and repair processes create the complex phenotype that characterizes asthma and its progression.

Asthma↗

Connective tissue activation. XXVII. The behavior of skin fibroblasts from patients with scleroderma.

Four normal (NF) and 4 scleroderma skin fibroblast (SF) strains were compared with respect to 1) basal 14C-glucosamine and 35SO4-labeled glycosaminoglycan (GAG) synthesis, 2) responsiveness to autacoid mediators, and 3) performance following maximal stimulation. Under basal conditions, SF synthesized and secreted 2-3 times more radioactive hyaluronic acid than the NF (P less than 0.001); molecular volume by gel chromatography was similar and suggested a high molecular weight product. SF were essentially as responsive to normal lymphoid and platelet factors as were NF. No consistent qualitative or quantitative differences in sulfated GAG synthesis were noted between the 2 groups of cells. Incubation of NF and SF with a false "core protein" such as p-nitrophenyl-beta-D-xyloside suggested that synthesis of the core protein was rate limiting; SF and NF were equally facile in SO4-GAG chain synthesis in the presence of a beta-xyloside. SF appear to retain in vitro a partially activated state for many generations, at least with respect to hyaluronic acid synthesis.

Adult↗

Analysis of effector cell-derived lyso platelet activating factor by electron capture negative ion mass spectrometry.

Quantification of 1-O-alkyl-2-lyso-sn-3-glycero-phosphocholine (lysoPAF) and determination of the different molecular species released by cells has been hampered by the molecules's lack of intrinsic bioactivity, unavailability of a suitable internal standard, and reliance on derivatives requiring electron impact techniques. We have synthesized trideuterated internal standards (labeled on the terminal carbon of the alkyl chain) for both C16:0 and C18:0 lysoPAF. Using these standards, we isolated and quantified lysoPAF released from A23187-stimulated human neutrophils and rat alveolar macrophages. Extracted lysoPAF was purified by solid-phase extraction and thin-layer chromatography. The polar phosphorylcholine group was removed with 29 M HF or phospholipase C. The two free hydroxyl groups were derivatized with pentafluorobenzoyl chloride. The resultant bis-pentafluorobenzoyl derivative, analyzed by gas chromatography/electron capture negative ion mass spectrometry, underwent substantial fragmentation. Lowering of the ion source temperature resulted in a dramatic increase in signal-to-noise ratio, with the vast majority of the ion current carried in the molecular anion. Stimulated neutrophils released 16.3 and 10.2 ng/10(6) cells of C16:0 lysoPAF and C18:0 lysoPAF, respectively. Rat macrophages synthesized 15.9 ng/10(6) cells of C16:0 lysoPAF, but C18:0 lysoPAF was variably detected at low levels. We conclude that use of the bispentafluorobenzoyl ester derivative of lysoPAF allows facile quantification of this autacoid metabolite in biological matrices.

Adult↗

Preliminary studies on phospholipase A2-induced mouse paw edema as a model to evaluate antiinflammatory agents.

Phospholipase A2 (PLA2) is a key component of the inflammatory process because of its role in the generation of eicosanoids and platelet-activating factor (PAF). Manipulation of PLA2 activity offers a novel therapeutic approach for the development of antiinflammatory agents; however, there is a need for a suitable in vivo model. Injection of 1 microgram of snake venom PLA2 (A. piscivorus piscivorus, D-49) into the mouse hind footpad produced a significant three- to four-fold rise in paw edema within 10 min, compared to the saline control. Edema formation depended on enzyme concentration and appeared specific for PLA2 since edema was negated by enzyme pretreatment with p-bromophenacyl bromide, a nonspecific PLA2 inhibitor. Moreover, injection of a protein such as bovine serum albumin did not result in significant edema. Coinjection of phenidone (lipoxygenase inhibitor, 50 micrograms), indomethacin (cyclooxygenase inhibitor, 50 micrograms), cyproheptadine (antihistamine/antiserotonin, 50 micrograms), aristolochic acid (putative PLA2 inhibitor, 100 micrograms), or kadsurenone (PAF antagonist, 50 micrograms) with PLA2 (1 microgram/paw) resulted in partial reduction (44.5, 34.2, 54.7, 64, and 50% inhibition, respectively) of edema formation. Oral administration of cyproheptadine (10 mg/kg), indomethacin (10 mg/kg), BW 755c (100 mg/kg), or dexamethasone (1 mg/kg) 1-3 h before challenge also decreased PLA2-induced edema (63.0, 30.1, 47.8, or 62.5% inhibition, respectively). The data suggest that mouse paw edema resulting from PLA2 injection is a multicomponent event, influenced by both autacoids and lipid mediators of inflammation.

Animals↗

Nitric oxide specifically reduces the permeability of Cx37-containing gap junctions to small molecules.

Gap junction intercellular communication (GJIC) plays a significant role in the vascular system. Regulation of GJIC is a dynamic process, with alterations in connexin (Cx) protein expression and post-translational modification as contributing mechanisms. We hypothesized that the endothelial autacoid nitric oxide (NO) would reduce dye coupling in human umbilical vein endothelial cells (HUVECs). In our subsequent experiments, we sought to isolate the specific Cx isoform(s) targeted by NO or NO-activated signaling pathways. Since HUVEC cells variably express three Cx (Cx37, Cx40, and Cx43), this latter aim required the use of transfected HeLa cells (HeLaCx37, HeLaCx43), which do not express Cx proteins in their wild type form. Dye coupling was measured by injecting fluorescent dye (e.g., Alexa Fluor 488) into a single cell and determining the number of stained adjacent cells. Application of the NO donor SNAP (2 microM, 20 min) reduced dye coupling in HUVEC by 30%. In HeLa cells, SNAP did not reduce dye transfer of cells expressing Cx43, but decreased the dye transfer from Cx37-expressing cells to Cx43-expressing cells by 76%. The effect of SNAP on dye coupling was not mediated via cGMP. In contrast to its effect on dye coupling, SNAP had no effect on electrical coupling, measured by a double patch clamp in whole cell mode. Our results demonstrate that NO inhibits the intercellular transfer of small molecules by a specific influence on Cx37, suggesting a potential role of NO in controlling certain aspects of vascular GJIC.

Capillary Permeability↗

Organic peroxides inhibit neutrophil leukotriene B4 biosynthesis.

Leukotriene B4, an autacoid metabolite of arachidonic acid produced by polymorphonuclear neutrophils, induces chemokinesis, chemotaxis, and adhesion of these cells at sites of inflammation. Because neutrophil infiltration is a self-limited process, we hypothesized that oxidized lipid products of neutrophil-damaged tissue might inhibit leukotriene B4 biosynthesis, thereby preventing additional neutrophil infiltration and limiting peroxidative tissue damage. Erythrocyte ghosts exposed to a hydrogen peroxide-generating system served as a model of peroxidized tissue in inflammation and inhibited neutrophil leukotriene B4 production by 50% compared with unoxidized ghosts. Organic peroxides, including tert-butylhydroperoxide, peracetic acid, and linoleic hydroperoxide, resembling the product(s) of tissue membrane peroxidation in lipid solubility and catalase resistance, inhibited leukotriene B4 biosynthesis in a dose-dependent manner (50% inhibitory concentration of 3.9 microM compared to 530 microM for H2O2). Biosynthetic steps prior to the 5-lipoxygenase did not appear to be the site of inhibition. Likewise, the step after the 5-lipoxygenase, the leukotriene A4 hydrolase, was not primarily involved. Thus a possible mechanism for controlling the influx of neutrophils and their oxidative damage during inflammation may be inhibition of the 5-lipoxygenase by catalase-resistant lipid peroxides released by tissue membranes.

Acyltransferases↗

Distinct biochemical responses of hepatic macrophages and endothelial cells to platelet-activating factor during endotoxemia.

Acute endotoxemia is associated with activation of hepatic macrophages and endothelial cells. These cells release a variety of inflammatory mediators that have been implicated in tissue injury. In the present studies, we analyzed the biochemical responses of these cells to platelet-activating factor (PAF), a lipid autacoid released during hepatic inflammatory responses. To induce acute endotoxemia, rats were injected intravenously with lipopolysaccharide (LPS). Using the calcium sensitive fluorescent indicator dye Indo-1, we found that PAF induced a rapid and transient increase in intracellular calcium in both hepatic macrophages and endothelial cells. Induction of acute endotoxemia resulted in an increase in the amount of calcium mobilized by both cell types. Although endothelial cells from control rats were less responsive to PAF than macrophages, these cells were more sensitive to in vivo endotoxin. PAF was also found to cause a rapid decrease in intracellular pH in hepatic macrophages that was quantified by fluorescence image analysis using the pH sensitive dye SNAFL-calcein. This decrease occurred more rapidly in macrophages from endotoxemic rats. In cells from both control and endotoxemic rats, the effects of PAF on intracellular pH were inhibited by the specific PAF antagonist triazolam. In contrast to hepatic macrophages, PAF had no effect on intracellular pH in endothelial cells from either control or endotoxemic rats. Ligand binding studies demonstrated that both hepatic macrophages and endothelial cells possess high affinity binding sites for PAF. Macrophages expressed 6- to 7-fold more binding sites/cell than endothelial cells and exhibited a higher Kd. Whereas treatment of rats with LPS had no effect on the Kd for PAF binding to macrophages or on the number of binding sites, a significant increase in both of these receptor characteristics was observed in endothelial cells. Taken together, the present data suggest that the biochemical responses of endothelial cells and macrophages to PAF are distinct. Furthermore, cellular activation induced by PAF in endothelial cells appears to be independent of changes in intracellular pH.

Acute Disease↗

Secretion of platelet-activating factor acetylhydrolase following phorbol ester-stimulated differentiation of HL-60 cells.

Platelet-activating factor (PAF) plays an important role in a number of biological processes ranging from inflammation to reproductive biology. We have reported that the enzyme that inactivates this potent autacoid, PAF-acetylhydrolase (PAF-AH), is decreased in maternal plasma during the latter stages of pregnancy. This enzyme is associated with the plasma lipoprotein fraction and therefore its tissue origin was thought to be the liver. Prescott and colleagues (J. Biol. Chem. 265, 17381, 1990) have reported that both a rat liver cell line (HepG2 cells) and human peripheral macrophages secrete PAF-AH of the plasma type. We have shown previously that the injection of rats with dexamethasone or medroxyprogesterone causes an increase and estrogen a decrease in the plasma PAF-AH activity. To clarify the mechanism of hormonal regulation of PAF-AH production, we employed a monocyte-macrophage model system to investigate the secretion of PAF-AH during differentiation. In the present study, we have demonstrated that a myelocytic leukemic cell line (HL-60) produces and secretes PAF-AH into a defined medium when the cells are differentiated into macrophages following stimulation by 12-O-tetradecanoylphorbol-13-acetate (TPA). The medium obtained from unstimulated HL-60 cells did not contain detectable amounts of PAF-AH activity. Stimulation with TPA caused a dose- and time-dependent increase in PAF-AH activity in the media. No increase in cell number was observed in the HL-60 cells during the culture period after the cells were treated with TPA. Cell lysis was excluded by the demonstration that the TPA-induced adherent cells excluded trypan blue and did not release lactate dehydrogenase activity into the medium. The increase in PAF-AH activity was inhibited by actinomycin D and cycloheximide. Dexamethasone and medroxyprogesterone markedly increased the secretion of PAF-AH by these cells, while estrogen was without effect. Bacterial endotoxin (lipopolysaccharide, LPS) inhibited the production of PAF-AH by these cells in a dose-dependent manner. The stimulation of PAF-AH secretion during differentiation of HL-60 cells and its modulation by LPS and steroid hormones may provide a useful model system for studying PAF metabolism during the inflammatory response and pregnancy.

1-Alkyl-2-acetylglycerophosphocholine Esterase↗