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P L Rayford

Publications and source records attributed to P L Rayford.

At least 19 recordsLinked to original sources

Characterization of interactions between CCK-33 and CCK receptors in isolated dispersed pancreatic acini.

In isolated dispersed pancreatic acini, we have characterized the interactions between cholecystokinin (CCK) and CCK receptors by simultaneously measuring CCK-33 immunoreactivity and CCK bioactivity. Incubation of acinar cells with CCK-33 at cell density of 0.2-0.3 mg acinar protein per ml resulted in stimulation of amylase release concomitant with significant and time-dependent decrease of the immunoreactive CCK. With L-364,718 (0.1 microM), a specific CCK receptor antagonist, immunoreactive CCK levels in the media were not significantly altered during incubation; however, CCK-stimulated amylase release was almost completely abolished (94% inhibition). Vasoactive intestinal peptide (1 nM) significantly potentiated CCK stimulated amylase release without affecting immunoreactive CCK in the media. Insulin (167 nM) did not affect the CCK stimulated amylase release or immunoreactive CCK in the media. Incubation of acinar cells with CCK-33 at 4 degrees C did not affect the levels of immunoreactive CCK; however, a significant change in levels of immunoreactive CCK were found at 37 degrees C at 90 min. Incubation of cell free medium with CCK-33 in the presence or absence of secreted enzymes revealed no changes in CCK immunoreactivity in the medium at 90 min. Addition of bacitracin in the incubation media did not affect the CCK immunoreactivity or bioactivity. These findings indicate that in isolated rat pancreatic acini, CCK-33 stimulates amylase release through a receptor that is specifically blocked by L-364,718. Specificity of the interactions of CCK-33 with acinar cells in the media appears to be receptor-mediated and time- and temperature-dependent.

Amylases

Exocrine pancreatic function in obstructive jaundice rats: studies with isolated dispersed pancreatic acini.

This study was conducted to investigate pancreatic exocrine function and pancreatic growth in rats with obstructive jaundice (OJ). OJ was produced in adult male Sprague-Dawley rats by bile duct ligation; control rats underwent laparotomy only. Induction of OJ was associated with significant hyperplasia and hypertrophy of the pancreas in rats as shown by increased DNA and RNA contents of pancreatic tissue. Factors associated with pancreatic growth in OJ rats were further examined in isolated dispersed pancreatic acini from OJ rats and the data were compared with those for control rats. Studies with isolated dispersed acini from OJ rats showed that pancreatic growth was accompanied by significant increases in total cellular amylase content; however, amylase release (percentage of initial) in response to cholecystokinin octapeptide was significantly decreased in OJ rats compared to control rats. Total amylase output in response to 100 pM cholecystokinin (CCK) was higher in the OJ group when compared to the control group (8.6 U/mg protein versus 6.4 U/mg protein), as calculated from the total amylase content and percentage of amylase released. Receptor binding data showed that the capacity of CCK receptors in OJ rats was significantly lower when it was compared with control. In addition, plasma levels of CCK were significantly elevated in OJ rats when compared to controls. These results suggest that obstructive jaundice induces pancreatic growth that is associated with alteration of exocrine pancreatic function. Abnormally high levels of stored amylase in pancreatic acini may be implicated in the development of pancreatitis as often seen in obstructive jaundice patients.

Amylases

Effects of FK506 on exocrine pancreas in rats.

The efficacy of FK506 on exocrine pancreas was studied in rats. Male Sprague-Dawley rats (230-250 g) received an i.m. daily injection of FK506 (0.1, 0.5, or 5.0 mg/kg), cyclosporine (CS; 25 mg/kg), or saline for 2 weeks. Isolated dispersed pancreatic acini were prepared from rats, and enzyme content of the cells and secretory response to cholecystokinin (CCK) were determined. Amylase and trypsin contents were increased in a dose-related manner by FK506 (p less than 0.01) and by CS at 25 mg/kg (p less than 0.01). The release of amylase in response to CCK was reduced by FK506 in a dose-related manner (p less than 0.01) and by CS at 25 mg/kg (p less than 0.01). Histologic examination showed that treatment of rats with FK506 at 0.1 mg/kg did not affect morphology of the acinar cells. FK506 at 0.5 mg/kg induced a minimal number of small vacuoles in cytoplasm of acinar cells and FK506 at 5.0 mg/kg, and CS at 25 mg/kg induced numerous cytoplasmic vacuoles and pyknotic nuclei. Increased enzyme storage and suppressed responsiveness of amylase release may have an association with the histologic changes. Therefore, the results of this study suggest that FK506, even when used in a low dose, may have adverse effects on the exocrine pancreas. Understanding of the mechanism of action of FK506 on pancreas will provide essential basic information that will allow transplant practitioners to more fully explore the benefits of this drug.

Amylases

Induction of pancreatic acinar pathology via inhalation of nicotine.

This study was conducted to determine the effects of nicotine inhalation on the onset, progression, and sequential development of pancreatic lesions. Male Sprague-Dawley rats in groups of five were exposed to saline or nicotine aerosol twice daily for 15, 30, 45, and 60 min for 21 days. After sacrifice, blood samples were analyzed for plasma levels of nicotine, glucose, gastrin, and cholecystokinin. Pancreatic tissues were examined for pathological lesions. While there were no significant differences in plasma levels of glucose, gastrin, and cholecystokinin in all groups, there was a steady increase in plasma levels of nicotine with increased exposures to nicotine. Histopathological examination of pancreatic tissue revealed definitive pancreatic injuries that also appeared to be directly correlated with increased duration of nicotine exposure. The pathological changes of the pancreas were confined only to acinar cells of the exocrine pancreas. Two main types of cellular changes were observed: cellular swelling/vacuolation and nuclear condensation/cellular pyknosis. Both of these changes indicated tissue injuries in the pancreas. Transformation of the glandular acini to solid masses of epithelial cells was also observed. The results from our present study strongly suggest that the exocrine pancreas is very sensitive and susceptible to nicotine toxicity. Our data further indicate that early morphological changes in the pancreas induced by nicotine may occur without functional or metabolic alterations; however, such changes could occur at a later stage, when tissue and cellular changes become more extensive.

Administration, Inhalation

Simultaneous measurement of cholecystokinin-stimulated amylase release and cholecystokinin receptor binding in rat pancreatic acini.

In the past, isolated-dispersed pancreatic acini have been used to examine either cholecystokinin-stimulated amylase release or pancreatic acinar cholecystokinin receptors. We have developed and validated a method for simultaneous measurement of synthetic cholecystokinin octapeptide-stimulated (CCK8-stimulated) pancreatic amylase release and cholecystokinin receptors. After an 18-hour fast, rats were killed and their pancreatic acini isolated. Three-milliliter aliquots of acinar suspension were incubated for 60 minutes in N-2-hydroxyethylpiperazine-N'-2-ethanesulfonic acid-Ringer buffer containing graded doses of CCK8 and a constant amount (7 pmol/L) of iodine 125-labeled CCK8 (by the Bolton-Hunter method) ([125I]BH-CCK8). A 1 ml sample was removed from each flask for determination of amylase release, and the remaining 2 ml were used to determine cholecystokinin receptor capacities and affinities. The median effective dose for amylase release was 16 pmol/L, and release was maximal at 100 pmol/L CCK8 plus 7 pmol/L [125I]BH-CCK8, a dose that released 28% +/- 3% of total cellular amylase content. High affinity (equilibrium dissociation constant of high-affinity receptors = 58 +/- 8 pmol/L, receptor density of high-affinity receptors = 4 +/- 1 fmol/mg protein) and low affinity (equilibrium dissociation constant of low-affinity receptors = 7 +/- 2 nmol/L, receptor density of low-affinity receptors = 313 +/- 108 fmol/mg protein) cholecystokinin receptors were measured. The results demonstrate that CCK8-stimulated amylase release and cholecystokinin receptor binding in pancreatic acini can be measured concurrently and that the parameters of amylase release and cholecystokinin receptor binding are strikingly similar to those previously observed.(ABSTRACT TRUNCATED AT 250 WORDS)

Amylases

[Interdigestive and postprandial pancreatic exocrine secretion and cholecystokinin release in dogs].

Interdigestive and postprandial pancreatic exocrine secretion and cholecystokinin (CCK) release were investigated in 5 mongrel dogs with chronic gastric and pancreatic fistulas in this study. The rapidly exaggerated postprandial pancreatic exocrine secretions were shown to be directly correlated to the rapid CCK release after meal. Corresponding to the previous studies, in the interdigestive state, pancreatic exocrine secretion showed cyclic changes which would be abolished by intravenous administration of atropine sulfate. However, we failed to demonstrate any significant correlation between plasma CCK levels and periodic pancreatic exocrine secretions during the interdigestive state through CCK radioimmunoassay. Furthermore, intravenous administration of atropine sulfate did not change the plasma CCK levels significantly in the interdigestive state. Having reviewed the literature, we thought that the periodic pancreatic exocrine secretion during the interdigestive state might be related to motilin release and cholinergic enteropancreatic reflex.

Animals

Use of a specific cholecystokinin receptor antagonist (L-364,718) to determine the role of cholecystokinin on feeding and body weight in rats with obstructive jaundice.

We conducted a study to examine the role of cholecystokinin in feeding behavior and weight change in rats with obstructive jaundice. Daily food and water intake, body weight, and short-term food intake were determined in two groups of rats with surgically induced obstructive jaundice and in control rats. One group of rats with obstructive jaundice was given L-364,718, a selective cholecystokinin receptor antagonist. Plasma bilirubin and cholecystokinin levels were measured in each rat before and 7 days after surgery. Daily food intake and body weight were decreased in obstructive jaundice rats compared with control rats during the first week after surgery (P less than .05); however, obstructive jaundice rats treated with L-364,718 had increased food intake and body weight (P less than .05). Short-term food intake measured for 30 minutes and 120 minutes in food-deprived obstructive jaundice rats was decreased when compared with control rats (P less than .05), but the obstructive jaundice rats given L-364,718 had increased short-term food intake (P less than .05). Water intake was similar between the two groups of rats. Plasma levels of cholecystokinin and bilirubin were increased in obstructive jaundice rats with and without L-364,718 treatment (P less than .05). The results support the concept that endogenously elevated levels of plasma cholecystokinin play an important role in decreased food intake and subsequent loss of body weight in rats with obstructive jaundice.

Animals

Meal-stimulated exocrine pancreatic secretion and release of GI peptides in normal and nicotine-treated rats.

In rats, treated chronically with saline and nicotine, we studied the postprandial release of gastrin and cholecystokinin by specific radioimmunoassays and simultaneously measured secretory outputs of the exocrine pancreas. Rats were prepared surgically with gastric and pancreatic fistulas. Meal-stimulated release of peptides and exocrine secretory outputs were measured 24 h postoperatively in conscious rats. Infusion of food via intragastric cannula significantly stimulated plasma gastrin levels in both control and nicotine treated rats. Postprandial gastrin levels in nicotine treated rats were significantly higher compared to gastrin levels obtained after food in untreated control rats. Plasma CCK levels were increased in both groups after food. These levels remained significantly elevated from the basal values only for a transient period following infusion of the liquid meal. There were no differences in postprandial plasma CCK levels between the two groups. Outputs of exocrine pancreatic volume, protein and trypsin increased significantly after food in both control and nicotine treated groups of rats. The differences in outputs of volume and protein between the two groups of rats were not significant; however, the trypsin outputs in the nicotine rats were decreased significantly when compared to control rats. The data indicate that in rats, administration of food stimulated the release of immunoreactive gastrin and CCK with concomitant increase in exocrine pancreatic secretions of volume, protein and trypsin. Chronic nicotine treatment and its effect on food, however, appeared to have induced hyperfunction of G-cells that resulted in increased gastrin secretion and a decrease in trypsin secretion by exocrine pancreas. These data may have important implications in the etiology of the development of exocrine pancreatic dysfunction in chronic smokers.

Animals

Estrogens influence cholecystokinin stimulated pancreatic amylase release and acinar cell membrane cholecystokinin receptors in rat.

This study examines the influence of ovariectomy and administration of a pharmacologic dose of estradiol on amylase release from isolated-dispersed rat pancreatic acini and cholecystokinin receptors on rat acinar cell membranes. Rats were sham ovariectomized (intact) or ovariectomized (Ovx) and 21 day timed release pellets containing either estradiol (2.5 mg) or vehicle, were implanted subcutaneously. Eighteen days later, pancreatic acini were isolated from rats by collagenase digestion and differential centrifugation. Total cellular amylase, basal and cholecystokinin octapeptide (CCK8) stimulated amylase release and CCK membrane receptors were measured. Acini isolated from estradiol treated Ovx rats had significantly greater total cellular amylase, compared to acini isolated from either intact or Ovx rats. The amplitude of both total stimulated amylase release and percent total stimulated amylase release were significantly greater for acini isolated from vehicle treated Ovx rats, than acini isolated from either intact or estradiol treated Ovx rats. The magnitude of percent total amylase release of acini isolated from estradiol treated Ovx rats was significantly lower than that of acini isolated from intact rats. Cholecystokinin receptor concentration was significantly greater on membranes prepared from vehicle treated Ovx rats, compared to membranes prepared from either intact or estradiol treated Ovx rats. These data indicate that ovariectomy is associated with increased responsiveness of pancreatic acini to CCK stimulation, while chronic estradiol treatment of ovariectomized rats is associated with increased total cellular amylase and decreased acinar cell responsiveness to CCK8. Estrogen mediated alterations in acinar cell amylase content and amylase release may play a role in estrogen related pancreatitis.

Amylases

Tissue and plasma levels of immunoreactive gastrin and cholecystokinin in chickens with and without bombesin.

Immunoreactive gastrin and immunoreactive cholecystokinin were measured in chicken tissue extracts obtained from the gut and brain. In contrast to that found in mammals, immunoreactive gastrin found in chickens was higher in the brain than in gut tissues, and it was highest in the ileum when compared with other gut tissues. Dose-response curves of tissue extracts from the brain and ileum and of serum were parallel to the dose-response curve of synthetic human gastrin, suggesting the existence of gastrin or a peptide immunologically similar to gastrin in those chicken tissues. Immunoreactive cholecystokinin in tissues was highest in the duodenum, followed by the jejunum, ileum, and cortex; lesser amounts of cholecystokinin were found in other tissues. Influence of bombesin on the release of immunoreactive gastrin and immunoreactive cholecystokinin in the blood of chickens was also studied. Bombesin doses of 3 micrograms/kg per hour significantly increased immunoreactive gastrin in serum and immunoreactive cholecystokinin in plasma, whereas gastrin did not increase with a bombesin dose of 0.6 micrograms/kg per hour. The results confirm the existence of immunoreactive gastrin and immunoreactive cholecystokinin in the tissue of chickens and indicate that they are released into circulation in response to bombesin.

Animals

Receptor binding of cholecystokinin analogues in isolated rat pancreatic acini.

The receptor binding of CCK analogues was determined in terms of the inhibition of [125I]CCK binding in isolated rat pancreatic acini. The inhibition curve produced by CCK-8 showed the same feature as that produced by synthetic human CCK-33. The relative potency values of CCK analogues to half-maximally inhibit specific CCK binding were calculated; CCK-8 was equal to human CCK-33, 3-fold stronger than natural porcine CCK-33 and 39, and 700-fold stronger than the unsulphated form of synthetic human CCK-33. Our data suggest that CCK-33, one of the longer molecular forms of CCK, is as important as CCK-8 in the mechanism of physiological actions of CCK.

Animals

Effects of dietary protein alterations on circadian rhythms of gastrointestinal peptides in rats.

Altered protein diets and circadian rhythms of gastrin and cholecystokinin (CCK) were investigated in 126 male and 126 female Sprague-Dawley rats acclimated for two weeks to a 12:12 hr light-dark cycle. Rats were divided equally and fed low-protein (8%), high-protein (64%) or normal protein (27%) diets for four weeks. All animals were fasted for 24 hr prior to blood collections. Blood samples were collected at 4-hr intervals for 24 hr for determination of plasma gastrin and CCK using specific radioimmunoassays. A significant rhythm for gastrin was detected in males on normal and low-protein diets (P less than 0.03) and in females on low-protein diets (P less than .02). A significant rhythm for CCK was detected (P less than 0.05) in rats of both sexes fed normal and high-protein diets. Mean plasma levels of both peptides were lower in females than males. In a separate study, food intake and body weight were monitored in male rats receiving the three diets over 21 days. Animals on the low-protein diet exhibited reduced food intake and body weight compared to rats fed the normal or high-protein diets.

Animals

Metabolic and pathologic effects of nicotine on gastrointestinal tract and pancreas of rats.

We examined in male Sprague-Dawley rats the effects of nicotine at doses of 50 (0.31 mM) and 200 mg/L (1.23 mM) given for a period of 16 weeks on body weight gain, food and fluid intake, plasma CCK, glucose and insulin levels, amylase secretory responses of isolated pancreatic acinar cells to CCK-8 and carbachol, and histopathology (gross and light microscopy) of stomach and pancreas. These parameters were re-examined further in animals treated with nicotine at doses of 200 mg/L (1.23 mM) for 12 weeks and given tap water for an additional 4 weeks to evaluate the effects of nicotine withdrawal. Metabolic data suggest that decreases in body weight gain, food and fluid intake, and plasma levels of glucose and insulin by nicotine are dose dependent. Endocrinological studies showed that the plasma levels of CCK were significantly increased with nicotine but the amylase secretory response of pancreatic acinar cells was inhibited in response to CCK-8 and carbachol. Histopathologic data revealed that treatment of animals with a high dose of nicotine enhanced the appearance of numerous vacuoles in the pancreatic acinar cell cytoplasm. When the pancreatic acinar cell morphology was closely examined, it showed evidence of pyknotic nuclei and fusion of vacuoles. Prominent loss of gastric mucosal surface was found in nicotine-treated animals with gross microscopic evidence of bleeding ulcers. All of the metabolic parameters except body weight gain were reversed upon nicotine withdrawal. In addition, plasma CCK levels and pancreatic enzyme secretion were reversed upon nicotine withdrawal.(ABSTRACT TRUNCATED AT 250 WORDS)

Amylases

Effect of synthetic human cholecystokinin-33 on pancreatic blood flow in dogs.

We have examined the effect of synthetic human cholecystokinin (CCK-33 and CCK-8) on pancreatic blood flow and protein output in anesthetized dogs. Human CCK-33 and CCK-8 increased pancreatic blood flow and protein output in a dose-related manner. There were no significant differences in increasing pancreatic blood flow between human CCK-33 and CCK-8, and increases in blood flow were closely related to the increase of the pancreatic enzyme secretion. L-364,718 (20 nmol/kg) caused a potent inhibition of CCK-stimulated pancreatic blood flow as well as protein output. The degree of inhibition by L-364,718 was dependent on the amount of CCK infused. This study demonstrates that increasing effect on pancreatic blood flow may be one of the biological actions of CCK mediated via CCK receptor. The CCK-33, one of longer molecular forms of CCK, is an important biological stimulator of pancreatic blood flow as well as of exocrine pancreatic secretion.

Animals

Hyperosmolal formula in neonatal piglets: effects on gastrointestinal hormone concentrations, enteric bacterial titers, and small intestinal histology.

Ingestion of hyperosmolal formula (HOF) by neonatal piglets has been shown to cause significant time-dependent reduction in phase 3 myoelectric activity, which persists in the terminal ileum. To determine whether a single hyperosmolal meal leads to elevated concentrations of gastrointestinal (GI) hormones that inhibit intestinal motility and/or promote bacterial proliferation and disruption of intestinal mucosa, we studied 20 healthy neonatal piglets following feeding with an increased HOF (872 +/- 32 mOsmol/kg, n = 10) and commercial pig milk formula (481 +/- 41 mOsmol/kg, n = 10). Gastrin, secretin, cholecystokinin, and motilin concentrations were determined by radioimmunoassay during fasting and postprandial periods (15, 30, 45, 120, 180, and 240 min). Gastrin concentrations were significantly increased at 15 and 30 min following a hyperosmolal meal (p less than 0.01), but there were no statistical differences in GI hormone concentrations between groups. These transient elevations of gastrin concentrations are associated with significant postprandial reductions in phase 3 small intestinal myoelectric activity (SIMEA) that we have observed. Aerobic bacterial titers were not significantly different between proximal and distal small intestinal segments or between experimental groups, and anaerobic bacteria were seldom recovered. Thus, SIMEA was not sufficiently altered to produce significant bacterial proliferation. Small intestinal histology, assessed by light microscopy, showed normal proximal and distal small intestinal mucosa in 8 of 10 piglets from each group. Therefore, orogastric instillation of a single hyperosmolal feed does not result in intestinal mucosal damage. Further studies are warranted to determine the effects of hyperosmolal feeds when additional risk factors exist in the neonate.

Animal Feed

L-364,718, a new CCK antagonist, inhibits postprandial pancreatic secretion and PP release in dogs.

The effects of L-364,718, a new CCK receptor antagonist, on food-stimulated exocrine pancreatic secretion and plasma levels of PP, insulin, CCK, and gastrin were examined in four conscious dogs with pancreatic fistulas. Intravenous injections of L-364,718 (20 nmol/kg) significantly inhibited pancreatic protein and enzyme responses by food (33% inhibition) but not juice volume output. Both rapid and secondary prolonged postprandial rises of plasma PP were also significantly suppressed by L-364,718 (50% inhibition); however, plasma levels of insulin were not altered. Postprandial levels of gastrin were not affected by L-364,718 administration, whereas 3-hr integrated CCK response was significantly enhanced by L-364,718. This study indicates that L-364,718 inhibits pancreatic protein and enzyme secretion and the release of pancreatic polypeptide stimulated by food in conscious dogs. This inhibition might be due to the selective blockage of receptor binding of circulating CCK molecules. The results suggest that L-364,718 may be useful for the physiological and pathophysiological studies associated with CCK.

Animals