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Biomedical subjects

A W Cuthbert

Publications and source records attributed to A W Cuthbert.

At least 73 records · Page 4Linked to original sources

The antisecretory effects of somatostatin and analogues in rat descending colon mucosa.

Somatostatin-14 (SS-14) and somatostatin-28 (SS-28) produce concentration dependent reductions in short-circuit current in rat colonic mucosa. EC50 values of 15.0 and 13.3 nM were obtained for SS-14 and SS-28 respectively while the N-terminal fragments of SS-28, namely somatostatin-(1-12) (SS1-12) and somatostatin-(1-14) (SS1-14) were inactive. Cyclo(Pro-Phe-D-Trp-Lys-Thr-Phe) and cyclo(Pro-Tyr-D-Trp-Lys-Thr-Phe) were potent antisecretory peptides, like SS-14 and SS-28; while the putative somatostatin antagonist, cyclo(7-aminoheptanoyl-Phe-D-Trp-Lys-Thr[Bzl]) exhibited neither agonist nor antagonist effects. Responses to SS-14 could be regulated by agents which affected the secretory state of the epithelium. Antisecretory effects of SS-14 were markedly attenuated by piroxicam and were restored following piroxicam plus either forskolin or vasoactive intestinal polypeptide (VIP). SS-14 also attenuated secretory responses produced by carbachol, substance P (SP), VIP and alpha- and beta-calcitonin gene related peptide (alpha-, beta-CGRP). Therefore, SS-14 exhibits broad spectrum antisecretory effects in rat descending colon mucosa.

Amino Acid Sequence↗

Altered sensitivity to amiloride in cystic fibrosis. Observations using cultured sweat glands.

1. Using cultured epithelia from sweat glands, derived from both cystic fibrosis and normal subjects, the relationship between amiloride concentration and the inhibition of electrogenic sodium transport was measured, under short circuit conditions. 2. The Kd for amiloride in cultures from normal subjects was 0.64 microM (n = 6) while in cultures derived from CF patients the value was 1.07 microM (n = 4). The values were significantly different (P less than 0.02, ANOVA). 3. In cultures from normal sweat glands, bathed in solutions free of permeable anions (chloride/bicarbonate), the Kd for amiloride rose to a value greater than found in CF tissues (2.3 microM). In CF epithelia subject to the same conditions the abnormally high value increased further, so that in solutions without permeable anions normal and CF cultures behaved similarly. 4. In cultures derived from normal and CF tissues lowering the sodium concentration to 10 mM also lowered the Kd for amiloride, however the shift was greater for CF cultures. 5. Several possible explanations for the results are discussed. The most probable is that the relatively more positive apical membrane potential in CF epithelia opposes the interaction of amiloride with the sodium channel, implying that complex formation is potential sensitive.

Adolescent↗

A novel method for culturing sweat gland epithelia: comparison of normal and cystic fibrosis tissues.

A new method is described to produce epithelial sheets by direct explantation of human sweat glands onto matrigel-coated millipore filters. The method is applicable to whole glands, separated coils or ducts and to normal and CF tissues. Electrogenic transport studies show that epithelia develop sodium transporting capability, even when explants are derived from secretory coils.

Culture Techniques↗

The effects of neuropeptide Y and its fragments upon basal and electrically stimulated ion secretion in rat jejunum mucosa.

1. The effects of neuropeptide Y (NPY) and a range of C terminal fragments were investigated both on basal short circuit current (s.c.c.) and electrical field stimulated responses in voltage clamped preparations in rat jejunal mucosa. 2. Most of the NPY fragments tested had direct effects upon the mucosa, reducing baseline s.c.c. with EC50 values of 1 micron or more. NPY was 30 times more effective than any of the fragments tested and the order of potency was: NPY much greater than NPY (11-36) greater than or equal to (12-36) greater than or equal to (13-36) greater than or equal to (14-36). NPY (15-36), (16-36), (20-36) and (22-36) were still less effective and complete concentration-response curves could not be constructed. NPY (26-36), des amido NPY and the C-terminal flanking peptide of NPY (CPON) were all inactive and did not significantly alter responses to NPY. 3. Electrical field stimulation (EFS) of mucosal preparations elicited rapid transient secretory responses in the presence of hexamethonium and atropine. NPY and fragments attenuated these secretory responses and where concentration-response relationships could be compared at a given time point the following order of potency was obtained: NPY much greater than NPY (11-36) greater than NPY (13-36). Again NPY (26-36), des amido NPY and CPON were ineffective, while at single concentrations (300 nM) a graded attenuation of EFS responses was obtained with NPY (14-36) greater than or equal to NPY (15-36) greater than NPY (16-36) greater than or equal to NPY (20-36) greater than NPY (22-36). 4. The attenuation of EFS responses by these peptides was not dependent upon the basal secretory state. Pretreatment of tissues with piroxicam reduced s.c.c. and attenuated further reductions in s.c.c. by NPY, but had no effect upon NPY-mediated inhibition of electrically-stimulated secretory responses. 5. NPY fragments attenuated both basal and EFS generated secretion. Since fragments are effective these receptors must, by definition be Y2-like. NPY (11-36) and NPY (13-36) at 300nm and 1 microM did not significantly attenuate secretory responses to either carbachol (CCh) or substance P (SP). A 1 microM concentration of either fragment was equivalent in effect to 30nm NPY upon basal current, but NPY at this concentration significantly reduced both CCh- and SP-induced secretion. The reduced spectrum of fragment activity together with the different order and potency ratios obtained with these three peptides indicates a presynaptic action for NPY and the fragments.

Animals↗

Antisecretory activity of the alpha 2-adrenoceptor agonist, xylazine in rat jejunal epithelium.

Xylazine, an alpha 2 adrenoceptor agonist, reduces short circuit current (SCC) in epithelial preparations of rat jejunum. The alpha 2 antagonist yohimbine, abolished this response while prazosin was without effect. The cyclooxygenase inhibitor, piroxicam, also attenuated xylazine responses indicating that the antisecretory effects were dependent upon endogenous eicosanoid formation. If the secretory state of piroxicam treated tissues was restored by addition of either forskolin, vasoactive intestinal polypeptide (VIP), prostaglandin E2 (PGE2) or isobutyl-1-methyl-xanthine (IBMX) then subsequent additions of xylazine were effective in reducing SCC. All these agents are known to increase SCC and cause Cl secretion by elevating intracellular cAMP. In addition, xylazine was also able to inhibit the Ca2+-mediated secretory responses of carbachol (CCh) and substance P (SP) in rat jejunum. This ability of xylazine to inhibit cAMP- and Ca2+-mediated secretion may indicate that alpha 2 adrenoceptors interact with more than one type of G protein or alternatively suggests a more general interaction between second messenger systems within epithelia of the small intestine.

Adrenergic alpha-Agonists↗

Effects of alpha- and beta-calcitonin gene-related peptides upon ion transport in rat descending colon.

Both alpha- and beta-calcitonin gene-related peptide (CGRP) exhibit concentration-dependent dual actions upon rat colonic epithelia. At low concentrations (i.e. 0.03-10 nM) both CGRPs produce antisecretory effects that are abolished by pretreating tissues with tetrodotoxin (TTX). At higher concentrations (30-200 nM) secretory responses predominate and these effects are not abolished by TTX. It is suggested that the mediator of the antisecretory actions of CGRPs is somatostatin.

Animals↗

Thapsigargin, a new calcium-dependent epithelial anion secretagogue.

1. Thapsigargin, a sesquiterpene lactone, was shown to cause electrogenic anion secretion in monolayers of human colonic epithelial cells, an effect which was crucially dependent upon calcium and did not involve eicosanoid formation. 2. To measure the secretory effect calcium needed to be present in the external bathing solution. By means of Fura-2 fluorescence measurements thapsigargin was shown to raise Cai by around 250 nM when the bathing solution contained calcium. In the nominal absence of external calcium thapsigargin raised Cai by only 60 nM, but from a lower basal value. This was insufficient to cause secretion. 3. Effects of other calcium-dependent secretagogues (e.g. lysylbradykinin) were inhibited in the presence of thapsigargin, whereas kinin responses were potentiated if the peptide was added following a stimulus which increases cyclic AMP. 4. From the data given here and the known behaviour of colonic epithelia it is concluded that thapsigargin increases Cai by a non-ionophoric mechanism by release from internal stores. Calcium-stimulated calcium influx then follows resulting in the opening of basolateral K channels, increasing the electrochemical gradient for chloride efflux, or alternatively by activating anion channels in the apical membrane. It is concluded that thapsigargin is a potentially important tool for examining epithelial mechanisms.

Adenocarcinoma↗

Neuropeptide Y antagonises secretagogue evoked chloride transport in rat jejunal epithelium.

Neuropeptide Y (NPY) inhibits electrogenic Cl secretion in rat jejunal epithelium under voltage clamp conditions. This effect is dependent upon endogenous eicosanoid formation since it is blocked by the cyclooxygenase inhibitor, piroxicam, which itself has an inhibitory action upon chloride secretion. A number of chloride secretagogues have been examined for their ability to restore the antisecretory effects of NPY. Data presented here shows that NPY responsiveness is restored, in piroxicam pretreated tissues, by vasoactive intestinal polypeptide (VIP), forskolin, prostaglandin E2 (PGE2) isobutyl-1-methyl-xanthine (IBMX) and dibutyryl cAMP added prior to the neuropeptide. While all these agents cause chloride secretion by elevating intracellular cAMP, NPY is also effective in inhibiting the secretory effects of carbachol (CCh) and substance P (SP), agents believed to act by raising intracellular calcium (Cai). Although there is evidence that NPY can inhibit adenylate cyclase, its ability to attenuate chloride secretion brought about by secretagogues acting through both adenylate cyclase and calcium mechanisms, implies that NPY has either a more general fundamental mechanism or has multiple interactions with different second messenger systems.

Animals↗

The effect of neuropeptide Y and peptide YY on electrogenic ion transport in rat intestinal epithelia.

1. Neuropeptide Y (NPY), peptide YY (PYY) and, to a lesser extent, human pancreatic polypeptide (HPP) reduced short-circuit current (SCC) in a concentration-dependent manner in epithelial preparations of rat jejunum and descending colon. 2. From concentration-response curves in the jejunum EC50 values of 3 nM for PYY and 10 nM for NPY were obtained. HPP was much less potent, the threshold concentration being around 100 nM, and NPY 13-36 was inactive. 3. Repeated exposure of jejunal preparations to either NPY or PYY led to a rapid desensitization. Cross-desensitization to the actions of these two peptides was also observed. Neither tetrodotoxin (TTX) nor phentolamine affected responses to either NPY or PYY on the jejunum. 4. Responses to both peptides were inhibited by the presence of transport inhibitors, particularly diphenylamine-2-carboxylate (DPC, a chloride channel blocker) and piretanide (Na+-K+-2Cl- co-transport inhibitor). These results may indicate that the reduction in SCC caused by the neuropeptides is due to a net increase in chloride movement in the apical to basolateral direction. 5. 36Cl-flux studies identified an inhibition of chloride secretion as the predominant mechanism of action of NPY and PYY, together with a smaller stimulation of chloride absorption. No significant changes in the movement of 22Na were seen in either direction. 6. The cyclo-oxygenase inhibitors piroxicam (5 microM) and indomethacin (5 microM) significantly reduced the responses to both NPY and PYY in rat jejunum. From this and other evidence it was concluded that the peptides depended for their effect on the endogenous formation of eicosanoids, the prevention of which attenuated the SCC reduction due to the peptides.

Animals↗

Human eccrine sweat gland epithelial cultures express ductal characteristics.

1. Isolated human eccrine sweat glands were cultured in vitro. Cells were harvested and plated onto permeable supports to form confluent cell sheets, area 0.2 cm2. These were used to study the electrogenic transepithelial transport of ions by measurement of short-circuit current (SCC). Epithelial sheets had a basal SCC of 5.89 +/- 0.62 microA cm-2 (n = 33) and a transepithelial resistance of 74.1 +/- 5.6 omega cm2 (n = 33). The transepithelial potential difference varied between -0.2 and -1.8 mV with a mean value of -0.71 +/- 0.09 mV (n = 33). 2. The basal current was abolished by addition of 10 microM-amiloride to the apical bathing solution. The concentration of amiloride which inhibited basal SCC by 50% (EC50) was 0.4 microM. Cultures prepared from the secretory coil of sweat glands, rather than from whole glands, were similarly sensitive to amiloride (EC50 = 0.8 microM). 3. Lysylbradykinin (LBK), carbachol, isoprenaline, prostaglandin E2 (PGE2) and A23187 all increased SCC in cultures from whole glands. LBK responses were obtained with basolateral and not with apical application. Furthermore LBK actions were not substantially altered by cyclo-oxygenase inhibition but showed marked desensitization upon repeated application. Sheet cultures prepared from sweat gland coils also showed SCC responses to both carbachol and LBK. Forskolin, an activator of adenylate cyclase, did not alter SCC in either type of preparation. 4. Replacement of chloride and of chloride and bicarbonate in the bathing solution did not cause attenuation of the responses to LBK or carbachol in whole-gland sheet cultures. Furthermore responses were unaffected by piretanide or acetazolamide. These results were taken to indicate that anion secretion was not the basis for the SCC responses. 5. Responses to LBK and carbachol were significantly reduced by amiloride (10 microM), this effect being reversible. No responses to LBK or carbachol were seen when N-methyl-D-glucamine (NMDG) was used to replace sodium, whereas reintroduction of sodium ions restored responsiveness to these agents. 6. The SCC responses to the muscarinic agonist carbachol and to LBK appear to be due to stimulation of amiloride-sensitive, electrogenic sodium absorption in whole-gland sheet cultures. Further it would appear that, in culture, the pleuripotential capacity of the cells is revealed since both whole-gland and secretory coil cultures exhibit some properties usually associated in vivo with duct cells. Many mammalian epithelia show electrogenic chloride secretion both in response to carbachol and LBK but also in response to activation of adenylate cyclase with forskolin.(ABSTRACT TRUNCATED AT 400 WORDS)

Amiloride↗

Intestinal anaphylaxis: rapid changes in mucosal ion transport and morphology.

Anaphylactic reactions can be elicited by beta-lactoglobulin (beta LG) in the isolated colonic and ileal mucosae of guinea pigs fed cow milk. We have shown that these tissues respond to antigen challenge with a rapid rise in short-circuit current (SCC) due to net chloride secretion in the colon and less well-characterized ion movements in the ileum. Here, tissues were characterized morphologically at or near the peak of the SCC response 2 min after antigen addition. These sensitized preparations, or naive tissues passively sensitized with immune sera and challenged with beta LG, showed numerous structural alterations that correlated significantly with the change in SCC. In the ileum, these changes included compound exocytosis of mucous granules from goblet cells of crypts but not of villi and a decrease in the intercellular space of the crypts. In contrast, colonic goblet cells of both crypts and luminal surface showed no evidence of secretion, but crypt architecture was reproducibly and characteristically altered. Thus antigen challenge of intestinal mucosa results in temporally related but diverse changes in morphology and ion transport.

Anaphylaxis↗

Affinity purified immunoglobulin G transfers immediate hypersensitivity to guinea pig colonic epithelium in vitro.

Our aim was to establish whether the epithelial type 1 hypersensitivity reaction in response to a dietary antigen, as we have previously described, had an immunologic basis. Using serum from guinea pigs fed with milk proteins we examined the passive transfer of sensitivity to beta-lactoglobulin. Biophysical methods were used to measure electrogenic chloride secretion across colonic epithelia. This response has been shown previously to be the cellular function that is altered after antigen challenge. Affinity column chromatography was used to separate immune serum into immunoglobulin G-(IgG)-rich and immunoglobulin G-depleted fractions and the purity of these fractions was established. Passive transfer of sensitivity was possible with the immunoglobulin G-rich, but not the immunoglobulin G-depleted, fraction. We have proven, therefore, that the reaction is mediated, at least in part, by immunoglobulins of the G class. This finding may have implications for the study of phenomena of food allergy.

Animals↗

The effect of angiotensin II upon electrogenic ion transport in rat intestinal epithelia.

Epithelial sheets from rat jejunum and descending colon have been shown to respond to angiotensin II (AII) when studied under short-circuit conditions and bathed on both sides with Krebs-Henseleit solution. The octapeptide AII elicited increases in short-circuit current (SCC) in preparations of jejunum and decreases in SCC in the descending colon; both responses occurred when the peptide was applied to the basolateral surface, but not when applied to the apical solution. Responses in both tissues were highly specific, being inhibited by a range of AII antagonists with the following order of potency: [Sar1. Thr8]-AII greater than [Sar1. Leu8]-AII greater than [Sar1. Ile8]-AII greater than [Sar1. Ala8]-AII greater than [Des,Asp1. Ile8]-AII in rat jejunum. AII responses were not affected by alpha- or beta- adrenoceptor antagonists, atropine or tetrodotoxin. AII responses were totally inhibited by the chloride channel blocker, diphenylamine-2-carboxylate (DPC) while cotransport inhibitors e.g. piretanide and frusemide significantly reduced the size of AII responses in colon and jejunum. These patterns of activity suggest that in the jejunum the responses result from electrogenic chloride secretion. Although AII responses in colon were sensitive to DPC the transporting ions have not yet been identified. Both piroxicam and indomethacin inhibited the increase in SCC elicited by AII in the jejunum, and the reduction in SCC caused by AII in the colon. Taken together these results indicate that eicosanoids are involved in AII responses in both tissues. This is the first study to demonstrate a direct, electrogenic effect for AII on transporting epithelia from the gastrointestinal tract. The responses are most probably initiated by All interacting with previously identified specific All receptors within the epithelial membranes.

Angiotensin I↗

Calcium- and cyclic AMP-dependent chloride secretion in human colonic epithelia.

Three stable epithelial cell lines (HCA-7, HCA-7-Col 1 and HCA-7-Col 3) all derived from the same human adenocarcinoma have been cultured on collagen-coated Millipore filters. These epithelial monolayers have been used to record short circuit current (SCC) in response to of secretagogues. Similar monolayers, but grown on plastic dishes, were used for measurements of tissue cyclic AMP. Lysylbradykinin, applied to either side of the monolayers, increased SCC in HCA-7 cells but had little effect on the other two lines. The responses showed rapid desensitization, which could be prevented by cooling to 4 degrees C. Responses to kinin were not significantly attenuated by piroxicam, an inhibitor of cyclo-oxygenase. Other secretagogues, vasoactive intestinal polypeptide (VIP) and carbachol also increased SCC in monolayers. The responses to VIP were greatest in HCA-7-Col 1 monolayers while responses were virtually absent in HCA-7-Col 3. A similar profile was seen with carbachol except that responses of HCA-7 and HCA-7-Col 1 monolayers were more equal. With one exception the responses to VIP and carbachol showed sidedness, acting only from the basolateral side. The effects of the secretagogues were inhibited by piretanide, a loop diuretic, applied basolaterally. It is presumed that SCC responses represent electrogenic chloride secretion. Treatment with forskolin increased SCC in HCA-7 and HCA-7-Col 1 monolayers with little effect in HCA-7-Col 3. Nevertheless cyclic AMP levels were elevated most in HCA-7-Col 3 and least in HCA-7-Col 1 monolayers, in reciprocal relationship to the functional response. A23187 increased SCC when applied to HCA-7 and HCA-7-Col 3 monolayers with little effect on HCA-7-Col 1. The differential responses of the three human cell lines provide unique opportunities to discover the functional responsibilities of entities involved in the chloride secretory process. HCA-7-Col 3 cells which generate high levels of cyclic AMP in response to forskolin but which fail to show a substantial chloride secretory response may be a useful model of some disease conditions.

Calcimycin↗

Type 1 hypersensitivity reactions in reconstructed tissues using syngeneic cell types.

1. Type 1 hypersensitivity reactions in response to antigen challenge have been measured as short circuit current (SCC) responses in reconstructed tissues consisting of syngeneic cell types. 2. In all instances reconstructed tissues consisted of an epithelial monolayer grown on collagen-coated Millipore filters and a pad of peritoneal cells. Monolayers were formed of either HCA-7 or HCA-7-Col 1 cells derived from a human adenocarcinoma. Peritoneal cells were derived from rats or guinea-pigs sensitized to either ovalbumin or beta-lactoglobulin. 3. The SCC responses of the monolayers were dependent upon the 'concentration' of peritoneal cells in the reconstructed tissue. The threshold concentration was 0.4 X 10(6) cells when rat peritoneal cells are combined with an epithelial monolayer of 0.2 cm2. 4. The SCC responses in response to antigen challenge were selectively inhibited by the H1-receptor antagonist, mepyramine. Similarly the effects of exogenously applied histamine were antagonised by mepyramine. 5. The responses to antigen challenge were not inhibited by tetrodotoxin in reconstructed tissues. This result is in contrast to that with isolated intestinal epithelia from sensitized animals where tetrodotoxin inhibits the SCC responses to external field stimulation and to challenge with antigens. The consequences of these results for understanding the mechanisms of epithelial Type 1 hypersensitivity reactions are discussed. Suggestions are made to illustrate how the methods developed here may be employed to ask questions about the nature of mediators released and the types of cell responsible in human disease conditions.

Animals↗

Neuronal involvement in type 1 hypersensitivity reactions in gut epithelia.

1. Using a number of 5-hydroxytryptamine (5-HT)-antagonists we have compared their activity against the chloride-secretory response in guinea-pig ileal and colonic epithelia when challenged with 5-HT or antigen. Guinea-pigs sensitized to beta-lactoglobulin (beta LG) were used throughout; these were obtained by providing animals with cows' milk for drinking. 2. Of methysergide, ketanserin, cyproheptadine and ICS 205-930, only the latter inhibited both the response to 5-HT and to antigen challenge. Methysergide caused a minor, significant effect on 5-HT but not on beta LG responses. Ketanserin had no effect on the responses to 5-HT, but both ketanserin and cyproheptadine inhibited the challenge to beta LG. 3. The data are considered in relation to the current views of receptor subtypes for 5-HT. Some of the reported inhibitors may be non-specific, while we consider there is evidence to support the view that 5-HT3-receptors (neuronal receptors) are involved both in the responses to 5-HT and to antigen challenge. 4. Tetrodotoxin mimicked the effect of ICS 205-930 on both the response to 5-HT and to antigen challenge in sensitized tissues, confirming a neuronal involvement for both types of stimuli.

Animals↗