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Biomedical subjects

R Saban

Publications and source records attributed to R Saban.

At least 55 records · Page 3Linked to original sources

Isolation and purification of functional bovine lung mast cells (BLMCs).

Purified pulmonary mast cells were obtained from bovine lung using a combination of enzymatic digestion of tissue, density gradient centrifugation using Percoll, and centrifugal elutriation. In the initial procedure, lung tissue was enzymatically digested with collagenase, hyaluronidase, protease and elastase in three 30 min incubations at 37 degrees C. Monodispersed cell suspensions contained between 2 and 6% mast cells. Further purification of these mast cells by Percoll gradients and elutriation consistently yielded mast cells of > 90% purity. These cells were morphologically intact, viable and functional, as determined by histamine release evoked by secretagogue challenge. Incubation of BLMCs with Pasteurella haemolytica A1 culture supernate containing leucotoxin (LCT) alone, resulted in increased histamine release compared to controls. LCT also potentiated calcium ionophore (CaI)-induced histamine release from BLMCs.

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Nerve-mast cell interaction in normal guinea pig urinary bladder.

Urinary bladders of normal adult female guinea pigs were analyzed for anatomical evidence of nerve-mast cell interaction using light microscopy and electron microscopy. Nerves, ganglia, and individual nerve fibers were visualized on paraffin sections using immunohistochemistry with antisera against the neural antigens neurofilament protein and protein gene product 9.5, and sections were also immunoreacted with antisera against the neuropeptides substance P and calcitonin gene-related peptide. Separate mast cell populations were identified by counterstaining with toluidine blue and alcian blue. Mast cells of both types were found within nerves and intramural ganglia and were in close contact with individual nerve fibers displaying substance P- and calcitonin gene-related peptide-like immunoreactivity. Moreover, serotonin-immunoreactive mast cells were innervated with nerve fibers that reacted with antiserum against vasoactive intestinal polypeptide. At the ultrastructural level, these fibers were almost exclusively identified as unmyelinated primary sensory afferents. Mast cells contacted these fibers with lamellipodia that wrapped around and enclosed the fibers deeply within the cell. Close association between mast cells, nerves, and vessels was common. Ultrastructural evidence suggests that bidirectional communication occurs between nerve fibers and mast cells. These structures may participate in axon reflexes that regulate normal vascular and detrusor smooth muscle function and cause vasodilation, edema, inflammation, and bladder hyperreactivity. In summary, a close relationship exists between mast cells and peptidergic nerve fibers, including primary sensory afferents. Results suggest that bidirectional interaction could occur between nerves and mast cells.

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Human FcERI-IgG and humanized anti-IgE monoclonal antibody MaE11 block passive sensitization of human and rhesus monkey lung.

IgE antibodies are thought to play an important role in the induction of allergic inflammation of the bronchi. In this study we assessed the capacity of two inhibitors, FcERI-IgG, an immunoadhesin made up of the alpha chain of the high-affinity IgE receptor joined to a truncated IgG heavy chain, and MaE11, a humanized murine anti-human IgE antibody, to prevent allergen sensitization. Lung parenchyma strips from rhesus monkeys and human beings were passively sensitized for 20 hours with serum from a ragweed-sensitive patient in the presence of 0, 1-, 5-, or 10-fold concentrations of the inhibitors relative to IgE. The parenchymal strips were then suspended in a superfusion apparatus for measurement of isometric tone and collection of superfusate for histamine analysis in response to challenge with antigen E (AgE). Nonsensitized tissues did not react to AgE challenge, whereas AgE challenge of passively sensitized tissues resulted in a time-dependent parenchymal contraction and histamine release. Both FcERI-IgG and MaE11 completely abolished the AgE-induced contraction and histamine release in a dose-dependent manner. In addition, passively sensitized lung tissues failed to respond to direct challenge with either FcERI-IgG or MaE11. The results of this study suggest that FcERI-IgG and MaE11 may have important immunotherapeutic benefit for the amelioration of IgE-mediated diseases.

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In vitro passive sensitization of guinea pig, rhesus monkey and human bladders as a model of noninfectious cystitis.

Studies of human bladder inflammation have been limited to examination of urine, bladder biopsy, or examination of autopsy material. We have developed an in vitro bladder passive sensitization technique which can measure type I responses of isolated human bladder tissue. We have compared these results using human tissue to those obtained with bladder tissue from guinea pigs and Rhesus monkeys. In our studies, bladder tissue was passively sensitized in vitro for 20 hours with immunoglobulin-containing serum. Subsequent antigen challenge of the passively sensitized tissue resulted in a time-dependent contraction that was accompanied by tissue histamine release. Contractions of guinea pig, monkey and human bladder tissue reached 79%, 100% and 78% of the maximal contraction induced by potassium chloride. In contrast, adjacent strips of unsensitized tissue had no detectable response to antigen challenge. The responses were reduced in the presence of histamine H1 receptor blockade with pyrilamine and abolished in the presence of a concomitant blockade of leukotriene synthesis with nordihydroguaiaretic acid (NDGA). Blockade of cyclooxygenase activity with indomethacin increased the contraction of the sensitized guinea pig bladder in response to antigen challenge. These findings demonstrate that in vitro passive sensitization of human bladder tissue can be used to investigate basic mechanisms of noninfectious bladder inflammation in humans.

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Response of the isolated guinea pig bladder to exogenous and endogenous leukotrienes.

Noninfectious urinary bladder inflammation is a poorly understood phenomenon, and the participation of leukotrienes (LTs) in the pathogenesis of bladder inflammation is unclear. Leukotrienes are synthesized by the bladder, and exogenous LTs induce contraction of isolated bladder segments. LTD4 and LTC4 were more potent contractile agents than LTE4. Leukotriene-induced contractions were blocked by ICI 198,615 (10(-6) M. and 10(-7) M.) a specific LT receptor antagonist. In the presence of indomethacin (5 x 10(-6) M.), bladder contraction in response to LTD4 was increased. Endogenous LT release was studied using an experimental model of cystitis. Antigen (ovalbumin 10(-6) to 10(-2) mg./ml.) challenge of bladder segments isolated from actively sensitized animals induced release of LT, prostaglandin D2 and histamine. A-64077 (Zileuton), a 5-lipoxygenase (5-LO) inhibitor, significantly reduced contraction of sensitized bladder tissue in response to antigen challenge in a concentration-dependent manner and abolished LT release. These data indicate that the guinea pig urinary bladder produces sulfidopeptide-LTs that can be released upon specific stimulation. Furthermore, LTs activate specific receptors promoting bladder contraction. Our findings suggest that specific 5-LO inhibitors or LT-receptor antagonists might be useful in treating or preventing bladder inflammation.

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Differential release of prostaglandins and leukotrienes by sensitized guinea pig urinary bladder layers upon antigen challenge.

The relative contributions of mucosal/submucosal and detrusor layers to the release of inflammatory mediators were investigated in isolated, ovalbumin (OVA) sensitized guinea pig urinary bladders. Ovalbumin challenge of sensitized mucosa induced release of prostaglandins (PG): PGE2, PGD2 and PGF2 alpha, in that order of magnitude. The total release of PGs was significantly higher from the mucosa/submucosa than from the detrusor/serosa. Under the same conditions, net release of leukotriene (LT) was observed predominantly from the detrusor. The total amount of histamine released from the mucosa was greater than that from the muscle layer. These results indicate differential production and release of inflammatory mediators from the mucosal/submucosal and detrusor smooth muscle layers. These results may have serious implications in disorders, such as interstitial cystitis, involving bladder mucosal damage. The cytoprotective effect of PGE2 is likely to be lost when the mucosa is damaged, and LT release from deeper layers may contribute significantly to symptoms of bladder inflammation.

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Alteration of reactivity of native arteries induced by venous graft placement.

Occlusion of aortocoronary venous grafts can be due to thrombosis, atherosclerosis, or vasospasm. Investigations have focused on properties of the graft itself, and little is known about the vascular reactivity and function of the native arteries proximal and distal to the vein graft, although spasm of the native artery distal to the graft site has been observed in patients. We hypothesized that the function of the endothelium of the native arteries may be altered after surgery. Autogenous venous grafts were placed in femoral arteries of rabbits to study the reactivity of the native arteries after grafting. Four weeks after graft implantation, the vein graft, ipsilateral vein, and native artery proximal and distal to the graft were removed for in vitro studies. Morphological evaluation by scanning electron microscopy and fluorescence microscopy after labeling with acetylated low density lipoprotein labeled with 1,1'-dioctadecyl-3,3,3',3'-tetramethyl-indocarbocyanine perchlorate indicated the presence of an intact, metabolically active endothelial layer. There was no alteration in the contractile responses to phenylephrine of the arteries, vein grafts, or veins. Precontracted vein grafts, veins, and arterial segments proximal to the grafts relaxed when exposed to endothelium-dependent vasodilators (acetylcholine, arachidonic acid, and substance P), but the native arteries distal to the grafts did not. In bioassay cascade experiments, the distal artery did not release any measurable relaxing factor when exposed to acetylcholine. We conclude that the endothelium of the distal artery did not function normally. The extent and reversibility of altered endothelial function remain to be determined. This observation may help to explain the occurrence of myocardial infarction after aortocoronary bypass grafting in some patients.

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Removal of venous endothelium with air.

Much research on the activity and half-life of endothelium-derived substances has entailed the removal of endothelium from arteries by mechanical or enzymatic processes. It has been observed that the technique used for the removal of arterial endothelium may profoundly affect smooth muscle function and release of prostanoids by the vessel wall. The function and patterns of regeneration of arterial endothelium have been extensively described, but there is a relative paucity of information about the venous endothelium, due in part to the difficulty of its removal. We developed a technique for removal of the endothelium of rabbit femoral veins by passing a stream of air through the lumen of the vessel to dry and remove the endothelium. The effectiveness of endothelium removal was verified by the lack of in vitro reactivity to endothelium-dependent relaxing substances, examination of frozen sections of vessels, labeled with fluorescent-tagged acetylated low-density lipoprotein, with fluorescent light microscopy and scanning electron microscopy of vessel segments. Air drying effectively removed the endothelium and abolished mechanical responses to endothelium-dependent vasodilators but did not affect the function of the smooth muscle. We propose the use of air to remove endothelium from veins to be used to study endothelium-derived factors since this method achieves complete removal of endothelium without causing detectable damage (morphological or functional) to the remainder of the vessel wall.

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In vitro effects of bladder mucosa and an enkephalinase inhibitor on tachykinin induced contractility of the dog bladder.

Tachykinin-induced contractility of smooth muscle strips from dog bladders was studied in vitro, and the presence of substance P-like immunoreactivity and neurokinin A and neurokinin B-like immunoreactivity was examined in bladder sections. Nerve fibers with substance P-like immunoreactivity were present in the mucosa, submucosa and smooth muscle. Fibers were also found in nerves, intramural ganglia, and around blood vessels. Neurokinin A-like immunoreactivity had similar distribution, and no neurokinin B-like immunoreactivity was observed. Removal of the mucosa significantly enhanced the sensitivity and the maximum responses to the tachykinins. After removing the mucosa, the sensitivity to these tachykinins increased 0.4 to 0.5 log units (p less than 0.02). The responses to carbachol were not altered by mucosa removal. The leftward shifts of the concentration-response curves for neurokinin A were of similar magnitude after removal of the mucosa, and after pretreatment with phosphoramidon (10 microM), an enkephalinase inhibitor, in the presence of mucosa. However, phosphoramidon did not alter the sensitivity of the bladder strips to neurokinin B, and slightly changed the sensitivity to substance P (0.2 log units). Additional shifts of the substance P and neurokinin A curves to the left were observed in the presence of phosphoramidon when the mucosa was removed (0.6 and 0.5 log units, p less than 0.005). The order of potency for the tachykinins (neurokinin A greater than substance P) was not altered by mucosa removal, addition of phosphoramidon, or both. Neurokinin A was degraded by enkephalinase located in the bladder mucosa and addition of phosphoramidon or mucosa removal resulted in an inhibition or loss of enkephalinase activity. It is concluded that the responses to neurokinin A, which acts on NK-2 type of receptors, prevail on the dog bladder.

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A guinea pig model for study of bladder mast cell function: histamine release and smooth muscle contraction.

To study the function of mast cells in bladder tissue, guinea pigs were sensitized with ovalbumin by intraperitoneal injections, bladder tissue strips were superfused, and tissue contractile force and histamine release were studied. Upon challenge with ovalbumin, bladder tissue contracted 64 +/- 4% (mean +/- S.E.M.) of the maximum carbachol contraction and released 14.1 +/- 1.6% of the total tissue histamine content. Incubation of sensitized bladder tissue with indomethacin led to an increased force and duration of the contraction while incubation with nordihydroguaiaretic acid combined with pyrilamine reduced histamine release and abolished the contraction. Tissue histamine content was significantly higher in the bladder neck than in the dome, and significantly elevated following sensitization. Histochemical studies of bladder tissue demonstrated mast cell degranulation in antigen challenge experiments. In addition, a group of guinea pigs were sensitized to ovalbumin through bladder instillations. With this model, study of the functional characteristics of bladder mast cells and the acute actions of mast cell products on the bladder microenvironment, should now be feasible.

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An examination of the influence of the epithelium on contractile responses to peptidoleukotrienes and blockade by ICI 204,219 in isolated guinea pig trachea and human intralobar airways.

The influence of the epithelium on antagonism by ICI 204,219 of contractile responses to peptide leukotriene (LT) agonists was examined in guinea pig tracheal and human bronchial rings. The -log molar KB values for ICI 204,219 were found to be independent of the epithelium in both tissues. Even though uninfluenced by the epithelium, the -log molar KB values for ICI 204,219 were about 10-fold smaller in human airways than in guinea pig trachea. Removal of the epithelium from guinea pig trachea resulted in small leftward shifts of the concentration-response curves to LTC4 and LTD4 and rightward shifts of the concentration-response curves to LTE4 when examined in the presence of indomethacin. The potentiation of LTC4 and LTD4 by epithelium removal was not seen in the presence of inhibitors of the transformation of LTC4 to LTD4 and LTD4 to LTE4. The influence of the epithelium on responses to LTE4 remained in the presence of these metabolic inhibitors. The lipoxygenase inhibitors nordihydroguaiaretic acid, B755C, Rev 5901 and AA861 antagonized responses to LTE4 in the presence, but not in the absence of epithelium. In human airways, epithelium removal resulted in a small leftward shift of the concentration-response curve to LTD4 whereas responses to LTC4 and LTE4 were unaltered. This effect was not observed in the presence of indomethacin, relating it to reduced release of cyclooxygenase products. These data suggest that contractile responses of guinea pig trachea to LTE4 are modulated by LTE4-induced release of 5-lipoxygenase product(s) only when the epithelium is present.(ABSTRACT TRUNCATED AT 250 WORDS)

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Enhancement by parainfluenza 3 infection of contractile responses to substance P and capsaicin in airway smooth muscle from the guinea pig.

Guinea pigs were inoculated by nasal insufflation with parainfluenza 3 (P-3) or virus growth medium 4 days before performing in vitro pharmacologic studies on left bronchial ring segments. Cumulative dose-response studies with capsaicin revealed an enhanced contractile response after P-3 infection. The sensitivity and magnitude of contractile effects of substance P in the left bronchi were also enhanced by P-3 infection. After pretreatment of the isolated tissues with phenoxybenzamine to block histamine H1 (with metiamide to block histamine H2), muscarinic, serotonergic, and alpha adrenergic receptors, or indomethacin to block the cyclooxygenase pathway of arachidonic acid metabolism, P-3 remained effective in enhancing contractile responses, even though these pretreatments altered the sensitivity and/or magnitude of contractions produced by substance P. When ETYA or NDGA were combined with indomethacin to also block the lipoxygenase pathway of arachidonic acid metabolism, the sensitizing effect of P-3 infection was diminished or abolished, especially at larger concentrations of substance P. With combination of FPL55712 and indomethacin, the sensitizing effect of P-3 was not abolished. Contractile responses to LTC4 and LTD4 were not enhanced by P-3 infection. The data suggest a selective influence of P-3 infection on the substance P system and provide evidence for a role of the lipoxygenase pathway of arachidonic acid metabolism in the sensitizing action. Peptide leukotrienes do not appear to be the lipoxygenase products involved in this effect of virus.

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