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Biomedical subjects

P J Piper

Publications and source records attributed to P J Piper.

At least 19 recordsLinked to original sources

Vasoactive intestinal peptide and helodermin inhibit the release of cyclo-oxygenase products induced by leukotriene D4 and bradykinin from guinea-pig perfused lung.

Vasoactive intestinal peptide (VIP, 10 nM) inhibited the release of cyclo-oxygenase products, detected by both bioassay and radioimmunoassay, induced by leukotriene (LT) D4 (3-30 pmol) and bradykinin (BK, 3-30 nmol) from guinea-pig isolated perfused lung. Helodermin (10 nM), a peptide that is structurally related to VIP, and salbutamol (10 nM), a beta 2-adrenoceptor agonist, evoked a similar inhibitory effect on LTD4-induced release of cyclo-oxygenase products. The generation of TxB2 and 6-keto-PGF1 alpha following stimulation with exogenously administered arachidonic acid (30-300 nmol) was not significantly attenuated in the presence of either VIP, helodermin or salbutamol. These results show that VIP, helodermin and salbutamol are potent inhibitors of the release of cyclo-oxygenase products induced by agonists known to activate endogenous arachidonic acid metabolism in guinea-pig lung. Since the metabolism of exogenously administered arachidonic acid was not inhibited these results suggest that the inhibitory effect may be exerted on events preceding the mobilisation of arachidonic acid and may involve cyclic AMP.

Albuterol

Effect of removing the endothelium on the vascular responses induced by leukotrienes C4 and D4 in guinea-pig isolated heart.

The coronary vascular endothelium of the guinea-pig isolated perfused heart was removed by treatment with 3-[(3-cholamidopropyl)-dimethylammonio]-1-propanesulfonate (CHAPS), a zwitterionic detergent. After CHAPS treatment of the heart the vasoconstrictor responses of leukotriene (LT) C4, LTD4 and angiotensin II (AII) were significantly attenuated whereas the vascular actions of U46619, a thromboxane (Tx) A2 mimetic, and endothelin-1 (ET-1) were unaltered. The endothelium-dependent vasoconstrictor response of LTC4 and LTD4 could not be attributed to the release of TxA2, platelet-activating factor or AII since indomethacin, WEB 2086 and captopril had no effect on LT actions. However, in the presence of cromakalim, a potassium channel activator, the vasoconstrictor effects induced by LTC4, LTD4 and AII were significantly attenuated to a greater extent than the responses of U46619 and ET-1. The results suggest that in the coronary vasculature of the guinea-pig isolated heart the vasoconstrictor responses of LTC4, LTD4 and AII are endothelium-dependent and may involve a cromakalim-sensitive mechanism.

Animals

Sputum cysteinyl-leukotriene levels correlate with the severity of pulmonary disease in children with cystic fibrosis.

Sputum samples from 13 children with cystic fibrosis (CF) were analyzed for leukotrienes (LTs) LTB4, LTC4, LTD4, and LTE4. Distribution of LTB4 appeared to be normal, and of cysteinyl-LTs log normal. Total cysteinyl-LT levels, of which on average 75% was LTE4, were nearly 10 times higher than in earlier studies. Log LTE4 and total cysteinyl-LT levels correlated with the overall severity of pulmonary disease assessed by Chrispin-Norman chest radiograph score (Log LTE4: r = 0.701, r2 = 49.1%, P = 0.008. Log total cysteinyl-LTs: r = 0.715, r2 = 51.1%, P = 0.006). There was no apparent relationship between LTB4 levels and Chrispin-Norman chest radiograph score, nor between the level of any of the LTs and age or organism cultured from sputum. These findings suggest that the cysteinyl-LTs may be involved in the pathophysiology of pulmonary disease in CF.

Child

Effects of tumour cells on angiogenesis and vasoconstrictor responses in sponge implants in mice.

The effects of tumour cells (Colon 26) on the development and response of new blood vessels to different vasoconstrictors (platelet activating factor; PAF, endothelin-1, angiotensin II, adrenalin and 5-hydroxytryptamine) have been investigated. Sponge implants in mice were used to host tumour cells while washout of 133Xe was employed to assess local blood flow in the implanted sponges. By 14 days after implantation the response of vessels in tumour-bearing implants to the various vasoconstrictors generally was decreased compared to that obtained in control sponge implants or adjacent normal skin. Thus at this time point the t1/2 for 133Xe washout from control sponges treated with adrenalin (0.5 micrograms) was 30 +/- 4 min whereas in tumour-bearing sponges it was 5 +/- 1 min. This decreased sensitivity in tumour vessels was probably not due to a complete lack of contractile elements since actin was demonstrated by immunohistochemistry around blood vessels in both types of implant. The results of the present study have shown that the pharmacological responses of blood vessels in a growing tumour, Colon 26, differed from the responses of vessels of a similar age in non-neoplastic tissue. These results appear to suggest that the different angiogenic stimuli released from tumour tissue may markedly influence pharmacological reactivity of newly formed blood vessels.

Adenocarcinoma

Enhanced leukotriene synthesis in leukocytes of atopic and asthmatic subjects.

1. We have investigated the capacities of peripheral leukocytes from atopic asthmatic (AA) (n = 7), atopic non-asthmatic (AN) (n = 7), and normal (N) (n = 7) subjects to generate the bronchoconstrictor and proinflammatory mediators leukotrienes (LTs) B4 and C4. 2. Mixed leukocyte preparations containing 61-84% neutrophils, 2.4-15% eosinophils, and 13-29% mononuclear cells were incubated in vitro at 37 degrees C in the presence of calcium ionophore A23187. Synthesis of LTB4 and LTC4 was quantitated by radioimmunoassay. 3. Both in dose-response experiments (0-10 microM A23187 for 5 min), and in time-course investigations (2 microM A23187 for 0-30 min), the mixed leukocytes of the AA and AN subjects generated on average 4- to 5-fold more LTB4 and 3- to 5-fold more LTC4 than the normal leukocytes (P less than 0.01 in all cases; ANOVA). 4. This enhanced LT synthesis by the AN and AA leukocytes was not due to differences in the counts of leukocyte sub-types, or to altered rates of LT catabolism between the subject groups. 5. LTB4 synthesis correlated significantly with LTC4 synthesis in the leukocytes of the AN and AA subjects (r = 0.81, n = 14, P less than 0.01), but not in those of the normal subjects (r = 0.19, n = 7, P greater than 0.05). 6. Our results demonstrate an up-regulation of the leukotriene synthetic pathway in the circulating leukocytes of atopic non-asthmatic and atopic asthmatic subjects, which may have important implications in the pathophysiology of asthma and allergy.

Adolescent

Effect of K+ channel-modulating drugs on the vasoconstrictor responses of leukotrienes C4, D4 and angiotensin II in the guinea-pig isolated perfused heart.

1. The vascular actions of leukotrienes C4 (LTC4) and LTD4 in the guinea-pig isolated perfused heart were studied in the presence of potassium (K+) channel modulatory compounds. 2. Cromakalim (0.35-10 microM), a K+ channel activator, inhibited the vasoconstrictor responses of LTC4 (30 pmol), LTD4 (30 pmol) and angiotensin II (AII) (100 pmol) in a concentration-dependent manner. 3. Glyceryl trinitrate (10 mgl-1) and vasoactive intestinal peptide (10 nM) induced a similar vasodilator action to cromakalim in the isolated heart but had no effect on responses to LTC4 and LTD4. 4. The inhibitory action by cromakalim (10 microM) on the LTC4 (30 pmol) response could be reversed in the presence of an equimolar concentration of glibenclamide. However, glibenclamide (10 microM) only partially restored the LTD4 (30 pmol) actions. 5. Galanin (10 nM) and charybdotoxin (60 nM) had no effect on the vascular responses to LTC4 and LTD4 (30 pmol). 6. Inhibition by cromakalim of coronary vasospasm induced by vascular LTC4, LTD4 and AII appears to be separate from its vasodilator action and it is postulated that a cromakalim-sensitive mechanism in the coronary vasculature is important in the vasoconstrictor responses to LTC4, LTD4 and AII.

Angiotensin II

Inhibitors of nitric oxide synthase selectively reduce flow in tumor-associated neovasculature.

1. The effects of L-arginine analogues, NG-nitro-L-arginine methyl ester (L-NAME) and NG-monomethyl-L-arginine (L-NMMA) and methylene blue on blood flow in a murine adenocarcinoma and melanoma have been investigated. 2. Sponge implants in Balb/c and C57/BL mice were used to host proliferating tumour cells while the washout of 133Xe was employed to assess local blood flow in the implanted sponges. 3. Pharmacological inhibition of nitric oxide (NO) reduced blood flow in both tumours but this effect was reversed by administration of L-arginine. 4. In marked contrast, the effect of these same NO inhibitors on the blood flow in sponge-induced non-neoplastic granulation tissue was negligible. 5. These results strongly suggest that: (a) flow in tumour vessels is modulated by nitric oxide which maintains a dilator tone in neoplastic tissue; (b) the constrictor activity (as monitored by an increase in t1/2 of 133Xe) of NO inhibitors may be attributed to the removal of such dilator tone; (c) many of the abnormalities described in tumour vasculature, such as hyporeactivity or unresponsiveness to vasoactive mediators and maximum vasodilation, may be due to an increase in NO synthesis in cancers.

Adenocarcinoma

Effects of platelet activating factor (PAF) and other vasoconstrictors on a model of angiogenesis in the mouse.

The combination of sponge implant and 133Xe washout technique described in this paper provides a model to study neovascularization in mice which can be observed over several days in the same animal. The local blood flow within the ingrowing granulation tissue has been determined by measuring the washout rate of 133Xe injected into the implants. Tissue infiltration of the sponges was assessed by histological examination and by measurement of sponge wet weight, protein and glycosaminoglycans (GAG) content. The newly formed blood vessels, despite having abnormal configuration, responded to platelet activating factor (PAF) and to endothelin-1 (ET-1) similarly to the normal mature vessels in adjacent skin. However, the sponge blood vessels were more sensitive to angiotensin II than the skin blood vessels. Using this model we have also demonstrated an angiogenic activity of PAF substantiated by increased blood flow and biochemical variables in the implanted sponges.

Angiotensin II

Effects of leukotrienes C4 and D4 on human isolated saphenous veins.

1. Vascular injury during the intra-operative procedures of bypass surgery may be the initiating event in the gradual deterioration in the patency of the graft. Adhesion of leukocytes to the vascular endothelium frequently accompanies preparation and insertion of the graft. However, little is known about the effects of vasoactive substances released from leukocytes on vein graft performance. 2. To determine whether leukotrienes are capable of affecting the tone of blood vessels used as coronary artery bypass grafts we studied the human saphenous vein as intact rings using an isolated organ bath technique. 3. LTC4 and LTD4 caused weak endothelium-dependent relaxations at lower concentrations (1 pM to 1 nM) and powerful endothelium-independent contractions at higher concentrations (3 nM to 0.1 microM). The maximum responses to LTC4 and LTD4 for relaxations were 21.1 +/- 4.8% and 28.6 +/- 3.4% (% of noradrenaline induced tone) respectively and 64.6 +/- 9.9% and 59.1 +/- 7.9% (% response to KCl) respectively for contractions. 4. The inhibitor of nitric oxide formation, L-NG-monomethyl L-arginine, prevented the relaxations to LTD4, but not LTC4 and unmasked endothelium-dependent contractions to LTD4 (32.9 +/- 11.3%). NG-monomethyl L-arginine had no effect on the contractions produced by LTC4 or LTD4. 5. Indomethacin augmented relaxations and contractions of saphenous vein to LTC4 from 22.5 +/- 5.6 to 40.02 +/- 8.7 (P < 0.05) and 48.8 +/- 5.5% to 74.7 +/- 7.6% (P < 0.01) respectively. LTD4 responses were not affected by indomethacin treatment. 6. In conclusion, leukotrienes mediate biphasic responses in the human saphenous vein.(ABSTRACT TRUNCATED AT 250 WORDS)

Arginine

Potential sources of artefact in the co-axial bioassay.

The apparent release of relaxant activity from airway epithelium (epithelium-derived relaxing factor, EpDRF) has been examined in a co-axial bioassay system. The endothelium-denuded rat aorta, placed inside either the epithelium-intact guinea-pig trachea or rabbit bronchus relaxed in response to acetylcholine. In a modification of the standard preparation, the airway was slit longitudinally and immobilised inside a silicone rubber tube. Under these conditions, the acetylcholine-induced relaxation was abolished. Under the conditions of the co-axial bioassay, the oxygen tension in the lumen of either airway tube was lower than that of the bathing fluid. Upon addition of acetylcholine at concentrations which caused relaxation in the co-axial bioassay, the oxygen tension inside the epithelium-intact, but not the epithelium-denuded guinea-pig trachea was depressed to levels which would have affected the contractile response of a rat aorta. We suggest that the assay of relaxant activity from airways using co-axial preparations may be complicated by changes in volume and oxygen tension in the lumen of the donor airway and discuss how such problems might be avoided.

Acetylcholine

The effects of an anti-CD18 antibody (R15.7) in antigen-induced airway hyperresponsiveness (AH) and cell influx in guinea pigs.

Aerosol ovalbumin challenge (OA) of sensitized guinea pigs induced airway hyperreactivity (AH) to i.v. acetylcholine (Ach) and serotonin (5-HT) 24 hr post OA. Bronchoalveolar lavage fluid 24 hrs after OA showed increased leukocytes compared to unsensitized unchallenged animals. Treatment with monoclonal antibody R15.7 (3 mg/kg i.v.,) 1 hr prior and 4 hours after OA prevented the induction of AH to Ach but not to 5-HT and reduced influx of leukocytes. We conclude: 1) antigen inhalation induces an increase in AH with an increase in proinflammatory cell influx and 2) treatment with anti-CD18 antibody inhibits cell influx and airway hyperreactivity.

Animals

Effect of ICI 198,615, SK+F 104,353, MK-571 and CGP45715A on cysteinyl leukotriene-induced responses in guinea-pig heart.

Peptidoleukotrienes (LTs), LTC4 and LTD4, cause potent vasoconstriction and myocardial depression in a range of species including man. The recent availability of specific LTD4 antagonists has allowed the evaluation of LT involvement in disease states and the characterisation of LT receptors in the airways. We decided to study the actions of four LT antagonists; ICI 198,615, SK + F 104,353, MK-571 and CGP45715A on LTD4-, LTC4- and U46619-induced effects in the coronary vasculature and on cardiac contractility in the guinea-pig isolated heart. We found a difference in the actions of the antagonists in the GP heart compared with the lung. ICI 198,615 retained its selectivity towards LTD4 whereas SK + F 104,353 antagonised both LTD4 and LTC4. MK-571 and CGP45715A had a non specific action against the LTs. Our results also indicated a direct action of the LTs on cardiac contractility which was not associated with the constriction of the coronary vasculature. These studies indicate that if the leukotrienes are involved in cardiac disease antagonists specific for the peptidoleukotrienes may be of therapeutic benefit in many of the disease states of the heart.

Animals

Effects of vasoactive intestinal peptide, helodermin and galanin on responses of guinea-pig lung parenchyma to histamine, acetylcholine and leukotriene D4.

1. The effect of vasoactive intestinal peptide (VIP) was studied on the contractile response of guinea-pig lung parenchymal strips (GPP) induced by bronchoconstrictor agonists, such as leukotriene D4 (LTD4), histamine and acetylcholine (ACh). This effect of VIP was compared with helodermin, a peptide that is structurally related to VIP, and galanin, another neuropeptide that is thought to co-exist with VIP. 2. VIP (10 nM) induced a potent and reversible inhibition of the contractions of GPP induced by LTD4 (1-30 pmol) but did not affect those due to ACh (1-100 nmol) or histamine (1-30 nmol). A ten fold higher concentration of VIP (100 nM) did not further inhibit LTD4-induced responses or reduce those induced by histamine or ACh. 3. Helodermin (10 nM) had a similar inhibitory effect on contractions of GPP induced by LTD4 (3-30 pmol) but did not affect contractions induced by histamine (1-10 nmol). 4. Indomethacin (2.8 microM) and salbutamol (10 nM) significantly reduced responses elicited by LTD4 and histamine but not those due to ACh. A ten fold higher concentration of salbutamol (100 nM) further inhibited the contractions due to LTD4 and histamine and at this concentration responses induced by ACh were inhibited. 5. VIP (10 nM) and helodermin (10 nM) significantly reduced the LTD4-induced release of thromboxane A2 (TXA2), measured as TxB2 by radioimmunoassay, from GPP. The smaller release of TxA2 induced by histamine was not significantly reduced in the presence of VIP. 6. In comparative studies, galanin (10-100 nM) did not affect contractions of GPP induced by either LTD4, histamine or ACh. In contrast to VIP and helodermin, both at 0.1-3 nmol, which induced doserelated relaxations of guinea-pig trachea, galanin was inactive on this preparation in doses of up to 3 nmol.7. In conclusion, our results show that contractions of GPP induced by LTD4 are more sensitive to inhibition by VIP and helodermin than are contractions due to histamine or ACh. This inhibition appears to be associated with the different contribution of released TxA2 to contractions evoked by the agonists. VIP and helodermin inhibit the cyclo-oxygenase-dependent component of the LTD4-induced response, as in the case of indomethacin.

Acetylcholine