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Biomedical subjects

L O Cardell

Publications and source records attributed to L O Cardell.

At least 37 records · Page 2Linked to original sources

Nasal secretion in ragweed-sensitized dogs: effect of leukotriene synthesis inhibition.

Allergic rhinitis is an inflammatory disease associated with local leukotriene release during periods of symptoms. Zileuton, a leukotriene synthesis inhibitor, is known to inhibit the release of leukotriene B4. Because we previously showed that leukotriene B4 is a potent mediator of neutrophil-dependent nasal secretion, we investigated whether Zileuton inhibited allergen-induced nasal secretion. Using a newly developed method for isolating and superfusing a nasal segment, we examined the effect of Zileuton on nasal secretion and neutrophil recruitment in ragweed-sensitized dogs. Instillation of ragweed into the nasal segment caused time-dependent increases in the volume of airway fluid and the recruitment of neutrophils. Zileuton prevented ragweed-induced neutrophil recruitment and nasal secretion. These results indicate that leukotrienes are important mediators of allergy-induced nasal secretion in dogs. Future clinical studies in allergic patients will determine whether there is a therapeutic role for leukotriene synthesis inhibitors in modulating neutrophil recruitment and hypersecretion in the nose.

Animals↗

Bronchodilation by pituitary adenylate cyclase-activating peptide and related peptides.

Pituitary adenylate cyclase-activating peptide (PACAP) is present in nerves in the vicinity of bronchial and vascular smooth muscle in the airways. At least one endogenous form of PACAP, PACAP 1-27, has high affinity binding sites in the lung, probably including cholinergic nerve terminals, bronchial smooth muscle, epithelial and mononuclear inflammatory cells. The mechanism of action for PACAP 1-27 and 1-38 in vivo involves endogenous catecholamines, peptidases and nitric oxide, depending on tissue type. Intracellularly, cyclic adenosine monophosphate (cAMP) as well as calcium and sodium mobilization is probably involved. PACAP 1-27 and 1-38 inhibit airway smooth muscle tone in vitro and in vivo. The inhibitory effect of PACAP 1-38 is more sustained than that of PACAP 1-27, in vitro as well as in vivo. PACAP 1-38 also causes more sustained inhibition of bronchoconstriction after inhalation in vivo, than does vasoactive intestinal peptide (VIP). PACAP 1-27 given intravenously virtually abolishes allergen-induced bronchoconstriction in vivo. Novel synthetic analogues of PACAP 1-27 cause more sustained inhibition of airway smooth muscle tone in vitro and in vivo than do PACAP 1-27 or 1-38. Both PACAP 1-27 and 1-38 inhibit arterial smooth muscle tone but, administration of PACAP 1-27, 1-38 or a structural analogue of PACAP 1-27 in the airways, induces no cardiovascular side effects at doses inhibiting bronchoconstriction. PACAP 1-38 enhances phagocytosis in macrophages and inhibits the release of the pro-inflammatory cytokine interleukin-2 in lymphocytes, suggesting antiinflammatory effects. It is concluded that pituitary adenylate cyclase-activating peptide 1-27 and 1-38, or structurally related molecules, may be useful as bronchodilators but their effect on human bronchial smooth muscle and on human inflammatory cells is in need of evaluation.

Airway Resistance↗

Expression of endothelin A- and B-receptors in human nasal mucosa.

Several studies have suggested an important role for the endothelin (ET) family of peptides in the vascular regulation of the nose. In addition, there is increasing evidence that ETs play a role in allergic airway inflammation. Endothelin is produced locally in the nose and mediates its effects via two distinct receptor subtypes, termed ET(A) and ET(B). Using reverse transcriptase-polymerase chain reaction, mRNAs encoding ET(A)- and ET(B)-receptors were detected in the human lower turbinate and sinus mucosa. The possibility of local release of ETs in connection with specific target receptors suggests a role for endothelin in the regulation of vascular tone, glandular secretion and epithelial functions.

Adult↗

Expression of histamine H1 and H2 receptors in human nasal mucosa.

mRNA encoding histamine H1 and H2 receptors were detected in the human nasal mucosa using reverse transcriptase-polymerase chain reaction. The possibility of local release in connection with specific target receptors suggests a role for histamine in the regulation of vascular tone, glandular secretion and epithelial functions.

Adult↗

LTB(4)-induced nasal gland serous cell secretion mediated by neutrophil elastase.

Local allergen challenge causes nasal hypersecretion and also causes local leukotriene (LT) release, including LTB(4). Because LTB(4) causes leukocyte recruitment, and because neutrophil elastase is a potent secretagogue, we examined the hypothesis that LTB(4) causes nasal hypersecretion via neutrophil elastase. We developed a method for isolating and superfusing a nasal segment in dogs. Instillation of LTB(4) into the nasal segment caused a time-dependent increase in the volume of airway fluid, in lysozyme secretion, and in the recruitment of neutrophils. ICI 200,355, a selective inhibitor of neutrophil elastase, prevented LTB(4)-induced nasal secretion and lysozyme secretion, but it had no effect on neutrophil recruitment. We conclude that LTB(4) causes potent nasal secretion via release of elastase, and therefore LTB(4) may play a major role in allergic nasal hypersecretion.

Animals↗

Expression of NPY Y1 and CGRP1 receptors in human nasal mucosa: implications in allergic rhinitis.

Numerous nerve fibers containing neuropeptide Y (NPY) and calcitonin gene-related peptide (CGRP) have been found in the human nasal mucosa by means of immunocytochemistry. We detected NPY Y1 and CGRP1 receptors at the same location using reverse transcriptase-polymerase chain reaction. The possibility of local release in connection with specific target receptors suggests a role for endogenous NPY and CGRP in the regulation of vascular tone, glandular secretion, and epithelial functions.

Adult↗

Carbon monoxide, a cyclic GMP-related messenger, involved in hypoxic bronchodilation in vivo.

Recent reports indicate the presence of two carbon monoxide (CO)-inducing enzymes, heme oxygenase (HO)-1 and -2 in airway smooth muscle. Generally HO-2 is considered to be a constitutive enzyme associated with various neuronal structures, whereas HO-1 can be induced by several factors, including hypoxia. Recent functional data indicate that exogenous CO can induce bronchodilation via a NO-independent, cyclic GMP-related mechanism. The aim of the present study was to investigate the potential role of CO as an endogenously produced airway messenger using an in vivo model of airway hypoxia. HO-1 and HO-2-like immunoreactivities were seen in airway smooth muscle along the bronchus and in the respiratory epithelium. The staining for HO-1 was relatively weak but consistent in all animals investigated. In contrast, the HO-2 staining was intense at all locations. After hypoxic stimulation, the staining for HO-1 and HO-2 was equally intense, indicating an up-regulation of the HO-1 expression. In another set up, anaesthetized, ventilated guinea-pigs were given a continuous infusion of histamine to increase total pulmonary resistance (R1). Hypoxic stimulation, induced by inhalation of 180 breaths of pure nitrogen (N2), resulted in a subsequent reduction in R1. Pretreatment with Rp-8Br-cGMPs, a cyclic GMP antagonist abolished more than 75% of this reduction, whereas L-NAME, an antagonist of NO synthesis, was without effect. Zinc protoporphyrin-IX (ZnPP), an inhibitor of HO, mimicked the effects of Rp-8Br-cGMPS. In conclusion, the present findings suggest a possible role for CO in the hypoxic regulation of airway tone.

Airway Resistance↗

Regional variation in appearance of vascular contractile endothelin-B receptors following organ culture.

OBJECTIVE: The aim of this study was to investigate the appearance of contractile endothelin (ET)-B receptors following organ culture in different vascular regions. METHOD: The contractile responses of vascular smooth muscle induced by ET-1 and the selective ETB receptor agonist sarafotoxin 6c (S6c) were investigated in circular segments representing eight vascular regions in the rat (aorta, femoral artery, mesenteric artery, branch of the mesenteric artery, proximal and distal parts of the caudal artery, femoral and mesenteric veins). To allow the ETB receptor to be expressed, the segments were placed in organ culture for 1 to 5 days. Pharmacological characterisation of the ET receptors was performed in mesenteric arterial segments. All contractile responses were measured in percentage of K(+)-induced contraction. RESULTS: ET-1 induced strong concentration-dependent contractions of all fresh (not cultured) segments. S6c had negligible effects on all fresh vessels with the exception of the mesenteric vein, where a small contraction was seen. After 1 day of organ culture all tested segments, with the exception of aorta and the proximal part of the caudal artery, showed concentration-dependent contractile responses to S6c which were further augmented after 5 days of culture. The ET-1-induced responses were only slightly affected by organ culture. Contractions induced by S6c were more enhanced in small arteries and veins than in larger arteries. Furthermore, the S6c-induced response was more pronounced in the mesenteric region as compared to the hindlimb. In fresh mesenteric arterial segments FR139317 (ETA receptor antagonist) and bosentan (ETA/ETB receptor antagonist) but not IRL 2500 (ETB receptor antagonist) shifted the ET-1-induced concentration-response curve in parallel to the right. In contrast, after organ culture the S6c-induced concentration-response curves were shifted parallel to the right in the following potency order: IRL 2500 > bosentan > FR139317. CONCLUSION: During normal conditions, the ETA receptor is the dominating mediator of endothelin-induced contraction in eight different vascular regions. Furthermore, this study indicates that most of the vessels have the ability to develop contractile ETB receptors and that this plasticity differs in vascular regions.

Animals↗

PACAP 1-38 as an inhaled bronchodilator in guinea pigs in vivo.

The effect on total pulmonary resistance (R1) was examined for inhaled PACAP 1-38, PACAP 1-27 and VIP in anesthetized, ventilated guinea pigs. Two minutes after inhalation, PACAP 1-38 (36 +/- 6%), PACAP 1-27 (42 +/- 9%) and VIP (48 +/- 19%) inhibited the increase in R1 (% inhibition of histamine-induced R1 prior to inhalation) caused by histamine i.v., whereas the vehicle (-1 +/- 10%) did not. This inhibitory effect lasted five times longer for PACAP 1-38 (> 50 min) than for PACAP 1-27 and VIP (< 10 min). The inhaled peptides caused no sustained effects on heart rate or blood pressure. Infusion of PACAP 1-38 i.v. dose-dependently inhibited the increase in R1 caused by inhaled histamine and by carbachol i.v..

Administration, Inhalation↗

Bronchodilatation in vivo by carbon monoxide, a cyclic GMP related messenger.

1. Recent studies suggest that gaseous carbon monoxide (CO) is involved in neurotransmission and that this molecule also is an important vasodilator in vivo. In the present study we evaluated the effect of inhaled CO on guinea-pig airway smooth muscle tone. The mechanisms involved were characterized by use of a cyclic GMP antagonist, Rp-8Br-cyclic GMPS, and a nitric oxide synthase inhibitor, L-NAME. 2. Anaesthetized, ventilated guinea-pigs were given a bolus injection of histamine (0.12 mg kg(-1), i.v.), followed by a continuous infusion of histamine (0.30 microg kg(-1) min(-1)) to increase total pulmonary resistance (RL). Subsequent exposure to 7, 15 or 30 breaths of CO (100%), resulted in a dose-dependent inhibition of the bronchoconstriction. In the highest dose tested (30 breaths), CO inhibited 80% of the histamine-induced increase in RL. 3. In separate experiments, animals receiving histamine infusions followed by 30 breaths of CO, were pretreated with Rp-8Br-cyclic GMPS (0.05 mg kg(-1)). This pretreatment abolished >60% of the CO-induced reduction in RL, but it had no effect on the bronchodilator response induced by salbutamol. In another set of experiments animals were pretreated with L-NAME (1.60 mg kg(-1)). In contrast to the Rp-8Br-cyclic GMPS pretreatment, the pretreatment with L-NAME did not affect the CO-induced reduction in RL. 4. The present findings indicate that CO causes bronchodilatation in vivo via cyclic GMP.

Animals↗

Capsaicin desensitization of the nasal mucosa reduces symptoms upon allergen challenge in patients with allergic rhinitis.

Patients with birch pollen allergic rhinitis were treated locally, out of season, in the nasal cavity with capsaicin (30 microM) or saline. The capsaicin treatment resulted in a statistically significant reduction of symptoms upon allergen challenge, which lasted for 2 months. Saline had no effect on the symptom score upon allergen challenge. Neither capsaicin nor saline treatment had any effect on allergen challenge-induced nasal mucosal swelling monitored by acoustic rhinometry. Allergen challenge-induced eosinophil migration to the nasal mucosa was affected by neither capsaicin nor the saline treatment. The finding that capsaicin treatment reduces allergic symptoms indicates that selective, non-peptide neurokinin receptor antagonists may be an alternative in the future in the treatment of nasal allergy. However, owing to the pain involved in local capsaicin treatment this treatment is unlikely to be of clinical use.

Administration, Intranasal↗

Neutrophil-dependent goblet cell degranulation: role of membrane-bound elastase and adhesion molecules.

We examined the effect of the neutrophil chemoattractants interleukin (IL)-8 and N-formyl-methionyl-leucyl-phenylalanine on goblet cell (GC) degranulation in guinea pigs. Chemoattractants caused time-dependent neutrophil recruitment and GC degranulation in vivo. NPC 15669 (an inhibitor of leukocyte infiltration) prevented both responses, implicating neutrophils. ICI 200,355 (an inhibitor of neutrophil elastase and proteinase-3) or secretory leukocyte protease inhibitor (an inhibitor of elastase but not of proteinase-3) abolished IL-8-induced GC degranulation, implicating elastase. Incubating tracheal segments with IL-8 plus neutrophils caused GC degranulation in vitro, an effect due to activation of the neutrophils themselves (and not an effect present in the supernatant). Chemoattractant increased surface staining of elastase and the cleavage of elastase-specific fluorogenic substrate by neutrophils. Pretreatment with anti-intercellular adhesion molecule-1, anti-CD18, or anti-CD11b antibody inhibited the chemoattractant-induced GC degranulation in vitro, implicating adhesion molecules. These studies suggest that chemoattractants cause neutrophil-dependent GC degranulation involving adhesive interactions between cells, with elastase activity occurring at the cell interface, causing GC secretion. The findings, reproduced in human airways, suggest novel methods of therapeutic intervention.

Animals↗

Goblet cell degranulation after antigen challenge in sensitized guinea pigs. Role of neutrophils.

Mucus hypersecretion is a common characteristic of asthma. Acute severe asthma is often associated with neutrophilic infiltration into airways. Neutrophils contain elastase, a potent secretagogue in airways. Therefore, we hypothesized that instillation of ovalbumin in sensitized guinea pigs causes goblet cell secretion by releasing elastase from recruited neutrophils. When we instilled ovalbumin into the trachea of ovalbumin-sensitized guinea pigs, early recruitment of neutrophils identified by 3,3'- diaminobenzidine staining, and goblet cell degranulation measured with a semiautomatic computer-based imaging system occurred. The Leumedin NPC 15669 (a drug that inhibits leukocyte recruitment) and an antibody to intercellular adhesion molecule-1 (ICAM-1) both prevented neutrophil recruitment and goblet cell degranulation, implicating leukocytes in the response. Using immunofluorescence we showed that the leukocytes recruited early after antigen challenge were CD-16-positive, implicating neutrophils. Pretreatment with the selective neutrophil elastase inhibitor ICI 200,355 also prevented ovalbumin-induced goblet cell degranulation, implicating elastase. We conclude that ovalbumin-induced goblet cell degranulation is due to neutrophil recruitment and elastase release.

3,3'-Diaminobenzidine↗

PACAP-induced plasma extravasation in rat skin.

The effects of pituitary adenylate cyclase activating peptide (PACAP) 38, PACAP 27 and vasoactive intestinal peptide (VIP) on plasma extravasation were investigated in vivo in rat skin. PACAP 38, PACAP 27 and VIP, caused concentration-dependent extravasation in rat skin. The order of potency was PACAP 38 > PACAP 27 = VIP, whereas the order of maximal induced extravasation was PACAP 38 = PACAP 27 > VIP, suggesting that PACAP 38 might be the most powerful inducer of plasma extravasation of the three tested members of the secretin-glucagon-VIP family. Substance P (SP) was about 5 times more potent than PACAP 38 and 15 times more potent than PACAP 27. These data indicate that PACAP 38 induced plasma extravasation in concentrations roughly equimolar to SP. Pyrilamine (H1 receptor antagonist) reduced the PACAP 38-induced plasma extravasation more than 50%; cimetidine (H2 receptor antagonist) was without effect. To investigate whether a cAMP-mediated process is involved in the induction of plasma extravasation, the synthetic adenosine 3',5'-cyclic monophosphate (cAMP), dibutyryl adenosine cyclic monophosphate (DBcAMP) and the cAMP-inducing drug, salbutamol, were each injected in the skin; neither of these drugs caused extravasation. We conclude that PACAP 38 and PACAP 27 cause potent plasma extravasation which, at least in part, involves histamine release.

Albuterol↗

Functional type II VIP-PACAP receptors in human airway epithelial-like cells.

VIP-PACAP receptors were characterized in a human airway epithelial-like cell line (Calu-3), Pituitary adenylate cyclase activating polypeptide (PACAP) 1-27, PACAP 1-38, vasoactive intestinal polypeptide (VIP) and the beta 1- and beta 2-adrenoceptor agonist isoproterenol (3 nM-1 microM) increased cAMP concentration dependently. The peptides and isoproterenol displayed similar potencies (range of means pEC50[M]: 6.5-7.1). The maximum increase in cAMP (Emax in % of basal cAMP level) was similar for the peptides (range of means Emax: 2500-5100%). Pretreatment with the peptidase inhibitors captopril (10 microM) and phosphoramidon (1 microM) significantly increased the cAMP response to PACAP 1-38 (to 480% of control) only.

Captopril↗

The induction of nitric oxide-mediated relaxation of human isolated pulmonary arteries by PACAP.

1. The effects of pituitary adenylate cyclase-activating peptide (PACAP) and vasoactive intestinal peptide (VIP) were analysed in human isolated circular segments of pulmonary arteries. Guinea-pig pulmonary arteries were used for comparison. The responses obtained were analysed in relation to the vascular endothelium and the nitric oxide (NO) synthase inhibitor NG-monomethyl L-arginine (L-NMMA). 2. PACAP and VIP induced concentration-dependent relaxations of precontracted pulmonary arteries. The maximal dilator response (Imax, %) and the potency (pEC50 value) were the same for both peptides, and there were no differences in the effects obtained on human and guinea-pig segments. PACAP and VIP were both more potent that acetylcholine (ACh). 3. Removal of the vascular endothelium abolished the PACAP induced dilator response in pulmonary arteries from both species. The VIP induced dilatation was unaffected, whereas the response to ACh was abolished. L-NMMA given before PACAP inhibited the dilatation. Furthermore, L-NMMA also reversed the dilatation already induced by PACAP and excess concentrations of L-arginine restored the dilator response of the L-NMMA treated arteries. 4. PACAP is a potent dilator of human pulmonary arteries. Although the dilator effect seems to be similar in amplitude to the one induced by VIP, the present results suggest differences in the underlying mechanisms of action (endothelium-dependency) between the two peptides.

Acetylcholine↗

Reduced nasal airway resistance following uvulopalatoplasty.

Active anterior rhinomanometry was performed on adult healthy snorers before and after uvulopalatopharyngoplasty or laser uvulopalatoplasty. Significant reduction of the nasal airway resistance both before and after pharmacological decongestion of the nasal mucosa was found in a group of 46 patients. Oedema disappearing after surgery may be an explanation for the results.

Adult↗

A method for canine nasal mucosa superfusion, in vivo; evidence that pseudomonas-induced neutrophil migration is inhibited by alpha2-adrenoceptor agonist.

METHODS AND RESULTS: A method for isolating and superfusing a segment of the nasal cavity in the anaesthetized dog was developed. Introduction of Pseudomonas aeruginosa supernatant (PA), which is known to induce IL-8 release, resulted in a marked time-dependent exponential increase in neutrophil recruitment to the nasal chamber. When oxymetazoline (final concentration, 10(-5) M), was added to the superfusate, the PA induced-neutrophil migration was inhibited; the addition of benzalchoniul chloride to the superfusate had no effect on the PA induced-neutrophil migration. CONCLUSION: We conclude that a alpha2 adrenoceptor agonist profoundly inhibits neutrophil migration in response to bacterial products. Our novel method allows continuous introduction of stimuli and monitoring of responses in the nasal mucosa.

Adrenergic alpha-Agonists↗