Recommendations for the registration of drugs used in the treatment of osteoarthritis: an update on biochemical markers.
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Biomedical subjects
Publications and source records attributed to L Rovati.
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BACKGROUND AND AIMS: The mechanism of intraduodenal fat induced inhibition of food intake is still unclear. Therefore, we tested the ability of duodenal fatty acids to suppress food intake at a lunchtime meal; in addition, we were interested to test if these effects were mediated by cholecystokinin (CCK) A receptors. SUBJECTS AND METHODS: Three sequential double blind, three period crossover studies were performed in 12 healthy males each: (1) subjects received intraduodenal fat with or without 120 mg of tetrahydrolipstatin, an inhibitor of gastrointestinal lipases, or saline; (2) volunteers received intraduodenal long chain fatty acids, medium chain fatty acids, or saline; (3) subjects received long chain fatty acids or saline together with concomitant intravenous infusions of saline or loxiglumide, a specific CCK-A receptor antagonist. The effect of these treatments on food intake and feelings of hunger was quantified. RESULTS: Intraduodenal fat perfusion significantly (p<0.05) reduced calorie intake. Inhibition of fat hydrolysis abolished this effect. Only long chain fatty acids significantly (p<0.05) decreased calorie intake, whereas medium chain fatty acids were ineffective. Infusion of loxiglumide abolished the effect of long chain fatty acids. CONCLUSIONS: Generation of long chain fatty acids through hydrolysis of fat is a critical step for fat induced inhibition of food intake; the signal is mediated via CCK-A receptors.
The aim of the study was to investigate the effects of estrogen replacement therapy (ERT) on nitric oxide (NO) activity in healthy postmenopausal women. The study group consisted of 22 postmenopausal women (last menses at least 12 months prior to study entry) who were randomized to receive treatment for 2 months with patches that delivered either 50 micrograms/day of 17 beta-estradiol or placebo in a cross-over design. Blood samples for measurements of serum citrulline and arginine were collected at the start of the study and at the end of each treatment course. Serum citrulline and arginine were measured using high-performance liquid chromatography with fluorometric detection. Arginine levels were significantly lower in the ERT group compared to the placebo group, while citrulline levels did not change. The percentage citrulline/arginine ratio was significantly higher in the ERT group (42.9 +/- 21.6) compared to the placebo group (33.9 +/- 18.5) (p < 0.01). The citrulline/arginine ratio, both at baseline and during either ERT or placebo administration demonstrated a positive linear correlation with body mass index (BMI). No correlations were found between follicle stimulating hormone, estradiol and insulin levels and BMI. No correlations were found between age, time since menopause and baseline arginine and citrulline levels or the citrulline/arginine ratio. These data indirectly demonstrate that transdermal estradiol replacement in postmenopausal women is able to stimulate NO production through the involvement of endogenous L-arginine. A positive linear correlation was found between BMI and the citrulline/arginine ratio, suggesting an additional protective cardiovascular effect in overweight women.
The adrenal production of the delta 5-androgens, dehydroepiandrosterone (DHEA) and its sulfate ester dehydroepiandrosterone sulfate (DHEAS), declines linearly with aging. The evidence that DHEA or DHEAS administration may alleviate some of the problems related to aging has opened new perspectives for clinical research. The present study aims to investigate the effects of a 6-month DHEA supplementation in early and late postmenopausal women, with normal or overweight body mass index (BMI), on the level of circulating steroids, sex hormone binding globulin (SHBG), beta-endorphin and gonadotropins, and on the adrenal gland response to dexamethasone suppression and adrenocorticotropic hormone (ACTH) stimulation. Early postmenopausal women (50-55 years) both normal weight (BMI 20-24, n = 9) and overweight (BMI 26-30, n = 9) and late postmenopausal women (60-65 years) both of normal weight and overweight, were treated with oral DHEA (50 mg/day). Circulating DHEA, DHEAS, 17-OH pregnenolone, progesterone, 17-OH progesterone, allopregnenolone, androstenedione, testosterone, dihydrotestosterone, estrone, estradiol, SHBG, cortisol, luteinizing hormone, follicle stimulating hormone and beta-endorphin levels were evaluated monthly and a Kupperman score was performed. The product/precursor ratios of adrenal steroid levels were used to assess the relative activities of the adrenal cortex enzymes. Before and after 3 and 6 months of therapy, each women underwent an ACTH stimulating test (10 micrograms i.v. in bolus) after dexamethasone administration (0.5 mg p.o.) to evaluate the response of cortisol, DHEA, DHEAS, androstenedione, 17-OH pregnenolone, allopregnanolone, progesterone and 17-OH progesterone. The between-group differences observed before treatment disappeared during DHEA administration. Levels of 17-OH pregnenolone remained constant during the 6 months. Levels of DHEA, DHEAS, androstenedione, testosterone and dihydrotestosterone increased progressively from the first month of treatment. Levels of estradiol and estrone significantly increased after the first/second month of treatment. Levels of SHBG significantly decreased from the second month of treatment only in overweight late postmenopausal women, while the other groups showed constant levels. Progesterone levels remained constant in all groups, while 17-OH progesterone levels showed a slight but significant increase in all groups. Allopregnanolone and plasma beta-endorphin levels increased progressively and significantly in the four groups, reaching values three times higher than baseline. Levels of cortisol and gonadotropins progressively decreased in all groups. The product/precursor ratios of adrenal steroid levels at the sixth month were used to assess the relative activities of the adrenal cortex enzymes and were compared to those found before therapy. The 17,20-desmolase, sulfatase and/or sulfotransferase, 17,20-lyase and 5 alpha-reductase activities significantly increased, while the 3 beta-hydroxysteroid-oxidoreductase activity did not vary. On the contrary, the 11-hydroxylase and/or 21-hydroxylase activities showed a significant decrease after 6 months of treatment. In basal conditions, dexamethasone significantly suppressed all the adrenal steroids and this suppression was greater after 3 and 6 months of treatment for DHEA, DHEAS and allopregnanolone, while it remained unchanged for other steroids. Before treatment, ACTH stimulus induced a significant response in all parameters; after the treatment, it prompted a greater response in delta 5- and delta 4-androgens, progesterone and 17-OH progesterone, while cortisol responded less in both younger and older normal-weight women. The endometrial thickness did not show significant modifications in any of the groups of postmenopausal women during the 6 months of treatment. Treatment with DHEA was associated with a progressive improvement of the Kupperman score in all groups, with major effects on the vasomotor symptoms in
BACKGROUND: A gastrin receptor antagonist, CR2194 (spiroglumide), was used to explore the physiological role of gastrin in regulating gastric acid secretion in humans. MATERIALS AND METHODS: The effect of CR2194 on inhibition of gastrin-stimulated acid output was evaluated in a four-period crossover study. Each subject received intravenous doses of 1, 2.5 or 7.5 mg kg-1 h-1 CR2194 or saline (control) followed by graded increasing doses of gastrin (6.4-800 pmol kg-1 h-1). Secondly, the effect of CR2194 on meal-stimulated intragastric acidity was evaluated by infusing either saline (control) or CR2194 (7.5 mg kg-1 h-1) before and after food ingestion. RESULTS: Acid secretion was dose-dependently inhibited by CR2194. With CR2194, acidity was significantly reduced in the pre-meal and post-prandial period (P < 0.01 and 0.002 respectively), and the integrated gastrin response was augmented to 8.0 +/- 1.4 ng mL-1 240 min compared with 1.5 +/- 0.8 ng mL-1 240 min in the control experiment (P < 0.01). Finally, acid secretion in response to sham feeding was significantly reduced: 15.9 +/- 0.9 mmol 90 min-1 in the control experiment compared with 2.8 +/- 0.9 mmol 90 min-1 during CR2194 infusion (P < 0.05). CONCLUSION: Gastrin receptor blockade with CR2194 alters gastric acid secretion in response to food ingestion or to sham feeding. The results support a physiological role for gastrin in regulating acid secretion in humans.
The effect of a 2-mo treatment with transdermal estradiol (50 microgram/day) versus placebo on 24 h of blood pressure rhythm was investigated in 18 normotensive healthy postmenopausal women. Whereas daytime blood pressure was not modified, nighttime blood pressure was reduced by estradiol. Estradiol magnified the nocturnal decrement of systolic (14.3 +/- 7.2 vs. 9.8 +/- 6.7 mmHg, P = 0. 0033), diastolic (11.6 +/- 5.0 vs. 7.5 +/- 7.3 mmHg, P = 0.028), and mean (10.8 +/- 5.6 vs. 7.2 +/- 4.5 mmHg, P = 0.011) blood pressure. As a consequence, the 24-h rhythm of mean blood pressure was restored in 50% of the subjects (P = 0.045) in whom it was absent and was amplified in the remaining 50% of the subjects. Body mass index was an independent determinant of blood pressure values being directly related to the amplitude of the 24-h mean blood pressure rhythm (r2 = 0.38; P = 0.0067). In normotensive postmenopausal women, physiological doses of estradiol amplify the nocturnal decline of blood pressure.
Intraduodenal fat inhibits gastric emptying and exerts early satiation in animals and humans, but it is not clear whether the effects are mediated by cholecystokinin (CCK) in humans. Here, we tested whether CCK-A receptors mediate the inhibition of fat on food intake. Two sequential, double-blind, crossover studies were performed in 24 male subjects. First, subjects received either intraduodenal fat or saline together with a preload of either water or banana shake. Second, 12 subjects received either intraduodenal fat or saline perfusion plus a concomitant infusion of saline or loxiglumide, a specific CCK-A receptor antagonist, together with a preload of banana shake. In both studies, subjects were free to eat and drink as much as they wished. Fat induced a reduction in calorie intake (P < 0.05) compared with controls. Furthermore, a decrease in hunger feelings was observed. Infusion of loxiglumide abolished the effects of fat. Duodenal fat interacts with an appetizer to modulate energy intake in humans. This effect is mediated by CCK-A receptors.
OBJECTIVE: This study investigated the in-vitro effects of a crystalline glucosamine sulfate (GS) preparation on DNA synthesis and on proteoglycan (PG) and type II collagen (coll II) production by human articular chondrocytes isolated from human osteoarthritic articular cartilage in a 3-dimensional culture system for 4, 8, and 12 days. MATERIALS AND METHODS: Human articular chondrocytes from osteoarthritic femoral heads were isolated from their matrix by collagenase digestion and then cultured in suspension. Under constant agitation, cells aggregated and formed a cluster within a few days. The effects of GS (1-100 micrograms/ml) on chondrocytes were determined by quantifying DNA synthesis (by measurement of [3H]-thymidine uptake) as well as PG and coll II production using radiommunoassays (RIAs) specific for coll II and to human human cartilage PG. Cross-reaction with GS in the RIAs was not detected. Moreover, PG size distribution was determined by exclusion chromatography under associative conditions to determine the association of PG monomers with hyaluronic acid (HA) to form large molecular weight PG aggregates. RESULTS: Under the above conditions, PG production in culture media and chondrocyte clusters was increased by GS (10-100 micrograms/ml). DNA synthesis and coll II production were not modified by GS. In addition, GS did not modify the physico-chemical form of PG produced by cells during culture. CONCLUSIONS: Glucosamine sulfate did not affect DNA synthesis nor coll II production but caused a statistically significant stimulation of PG production by chondrocytes from human osteoarthritic cartilage cultured for up to 12 days in 3-dimensional cultures.
A double-blind therapeutic investigation was performed on 178 Chinese patients suffering from osteoarthritis of the knee randomized into two groups, one treated for 4 weeks with glucosamine sulfate (GS, CAS 29031-19-4, Viartril-S) at the daily dose of 1,500 mg and the other with ibuprofen (IBU, CAS 15687-27-1) at the daily dose of 1,200 mg. Knee pain at rest, at movement and at pressure, knee swelling, improvement and therapeutic utility as well as adverse events and drop-outs were recorded after 2 and 4 weeks of treatment. The variables were recorded also after 2 weeks of treatment discontinuation in order to appreciate the remnant therapeutic effect. Both GS and IBU significantly reduced the symptoms of osteoarthritis with the trend of GS to be more effective. After 2 weeks of drug discontinuation there was a remnant therapeutic effect in both groups, with the trend to be more pronounced in the GS group. GS was significantly better tolerated than IBU, as shown by the adverse drug reactions (6% in the patients of the GS group and 16% in the IBU group--p = 0.02) and by the drug-related drop-outs (0% of the patients in the GS group and 10% in the IBU group--p = 0.0017). The better tolerability of GS is explained by its mode of action, because GS specifically curbs the pathogenic mechanisms of osteoarthritis and does not inhibit the cyclo-oxygenases as the non-steroidal anti-inflammatory drugs (NSAIDs) do, with the consequent anti-inflammatory analgesic activities but also with the several adverse reactions due to this not targeted effect. The present study confirms that GS is a selective drug for osteoarthritis, as effective on the symptoms of the disease as NSAIDs but significantly better tolerated. For these properties GS seems particularly indicated in the long-term treatments needed in osteoarthritis.
In a pilot study, proglumide, a cholecystokinin receptor antagonist, was administered to 8 patients affected from Huntington's chorea under long-term haloperidol treatment. The effectiveness of haloperidol on chronic symptomatology was reduced by the concomitant administration of proglumide; the latter drug, when administered alone, did not modify the severity of chorea compared to placebo. Possible explanations of these results are discussed, stressing the modulatory role of CCK not only on the dopaminergic, but also on the GABAergic system.
The effects of the cholecystokinin (CCK)-analogue, caerulein, and CCK-receptor antagonist lorglumide (CR-1409) on pancreatic carcinogenesis induced by 7,12-dimethylbenz(a)anthracene (DMBA) were studied. One hundred thirty rats were divided into the following 10 treatment groups: group 1, DMBA (2-3 mg); group 2, DMBA + caerulein (5 micrograms/kg); group 3, DMBA + caerulein + CR-1409 (12 mg/kg); group 4, caerulein + DMBA; group 5, caerulein + CR-1409 + DMBA; group 6, DMBA + CR-1409; group 7, CR-1409 + DMBA; group 8, caerulein; group 9, CR-1409; and group 10, sham operation + saline. DMBA was surgically implanted into the pancreas. Caerulein and/or CR-1409 was administered twice daily for 15 days after (in groups 2, 3, and 6) or before (in groups 4, 5, and 7) DMBA implantation. Six months after carcinogen administration, all rats were sacrificed and autopsied. The incidence of pancreatic cancer appeared significantly (P < 0.001) increased when caerulein was administered following DMBA implantation. CR-1409 significantly inhibited (P < 0.02) caerulein effects and reduced tumor growth when injected after carcinogen exposure.
The aim of this paper was to investigate the effects of the CCK, a receptor antagonist loxiglumide on food intake, hunger and fullness in humans. A double blind, placebo controlled, cross-over test was carried out, with subjects taking one loxiglumide or one placebo tablet three times a day, 15 min before main meals or at comparable intervals. The work was carried out at the Centre for Human Nutrition, Northern General Hospital, University of Sheffield, on 11 healthy, normal weight, male and female volunteers. The following were measured: weighted-intake measurement of food intake during drug and placebo treatment; laboratory test of food intake on day three of each treatment; hunger and fullness ratings throughout this meal. A small, non-significant, increase in food intake as measured by the weighed intake diaries (8577 +/- 636 vs 7895 +/- 569 kJ (2049 +/- 152 vs 1886 +/- 136 kcal); P = 0.17) was seen during loxiglumide treatment, but no effect on food consumption from the evening test meal was observed and no effect on feelings of hunger and fullness before or after this meal was seen. These results do not support the hypothesis that, in the free feeding situation, endogenously released CCK is involved in the reduction of food intake or inhibition of hunger. However, a different dose of route of administration or a larger group of subjects may reveal an effect of loxiglumide on feeding in humans.
This study used a cholecystokinin (CCK) antagonist to evaluate whether CCK that is released after regular meals regulates meal-stimulated insulin secretion. Several experiments were performed in eight to 10 healthy male volunteers, each in duplicate. The subjects received different meals either with or with i.v. infusion of 5 mg/kg/h of the CCK antagonist loxiglumide (Rotta, Italy). The mixed solid-liquid meals of 600, 800, or 1,000 kcal consisting of regular German food were given orally. In addition, studies were carried out in which a liquid test meal of 750 kcal was infused into the duodenum over a 2-hour period to exclude effects of the CCK antagonist on gastric emptying. Finally, the subjects received an oral load of 100 g glucose either with or without i.v. infusion of loxiglumide. Loxiglumide at the dose used completely abolishes the actions of endogenous CCK and of exogenous CCK when given at doses that mimic postprandial circulating concentrations of this peptide at various target organs such as gallbladder, pancreas, stomach, and intestine. Loxiglumide also markedly reduced the increase in pancreatic polypeptide seen after the intraduodenal infusion of nutrients. However, loxiglumide at this dose did not alter the increase in circulating concentrations of glucose, insulin, and C-peptide after any of the various oral meals, after the intraduodenal administration of nutrients, and after the oral load of glucose. Although the present study does not rule out that in some conditions CCK may increase insulin secretion in humans, the results do rule out that CCK acts as a major physiologic incretin in healthy humans.
Pancreatic enzyme secretion is regulated in humans by the cholinergic system and by cholecystokinin (CCK). The interaction between both regulatory systems in response to exogenous and endogenous stimulation was analyzed in the present study using the cholinergic antagonist atropine and the CCK antagonist loxiglumide. A dose-dependent stimulation of pancreatic enzyme output was achieved either by duodenal perfusion of graded caloric loads or by IV infusion of increasing doses of cerulein. Prestimulated pancreatic secretion was inhibited by atropine and loxiglumide. Atropine furthermore almost completely blocked meal-stimulated pancreatic secretion, whereas loxiglumide caused 60% inhibition. The enzyme response to graded doses of exogenous CCK was significantly inhibited by atropine and loxiglumide. Plasma levels of CCK were not altered by atropine but increased with infusion of loxiglumide. This study supports the concept that pancreatic enzyme secretion is predominantly dependent on a cholinergic tone and that CCK modulates the enzyme-secretory response.
Proglumide, a cholecystokinin antagonist, did not improve Parkinson's disease in a preliminary drug treatment trial.
Ectopic corticoadrenal tissue is not a very uncommon finding during orchiopexy in children. The causes can be found in the period of organ development and gonadal migration (spermatic cord). From 1986 to 1990, we have performed 88 orchiopexy procedures in the Urology Service of "San Antonio Abad de Gallarate" Hospital. Only one case (1.13%) of juxta-funicular corticoadrenal ectopia has been observed. The aim of the present study is to determine the correct surgical approach to this incidental finding during surgery of the inguinal canal in pediatric patients.
The present study investigated the effect of loxiglumide, a new selective cholecystokinin-receptor antagonist, on the gallbladder contractile responses to caerulein and to food in humans. In 6 healthy men, the gallbladder emptying driven by intravenous infusion of stepwise increasing doses of cerulein (10-80 ng/kg . h) and that induced by a 550-cal standard meal were monitored by ultrasonography. In both sets of experiments, the effect of loxiglumide was tested at various infusional rates against a control infusion of saline. An infusional rate of 2.5 mg/kg . h of loxiglumide abolished the gallbladder response even to maximal doses of cerulein, whereas a rate of 1.0 mg/kg . h counteracted the cholecystokinetic activity of cerulein up to the dose of 20 ng/kg . h. In postprandial experiments, the cholecystokinin antagonist dose-dependently inhibited the physiologic gallbladder contraction. The maximal gallbladder emptying, which always occurred 85 min after the meal, was 71.1% +/- 3.3% of basal volume in control studies, 39.2% +/- 1.8% during infusion of 2.5 mg/kg . h of loxiglumide, and 17.3% +/- 5.9% when 5.0 mg/kg . h were infused. A dose of 7.5 mg/kg . h of loxiglumide was able to prevent any postprandial emptying of the gallbladder. The present study shows that a selective cholecystokinin receptorial blockade competitively antagonizes cerulein-induced gallbladder contraction and dose-dependently inhibits postprandial gallbladder emptying.
Cholecystokinin (CCK) is known to inhibit gastric acid secretion and gastric emptying but its physiological role in the inhibition of gastric functions is not settled. In this study performed on 16 young male subjects, gastric acid secretion and emptying rate were determined after intragastric administration of 8% peptone meal alone or in combination with intravenous infusion of graded doses of CCK-8 (5-80 pmol/kg.h) or with addition of vegetable oil to meal without or with pretreatment with loxiglumide, a specific CCK antagonist. CCK-8 infusion at lower dose (5 pmol/kg.h) was ineffective but at higher doses (20-80 pmol/kg.h) it resulted in a significant reduction in acid output by 39 and 43% and a decrease in gastric emptying from 54% to 40 and 22%, respectively. Pretreatment with loxiglumide abolished almost completely the inhibition of both gastric acid and gastric emptying by CCK-8. Fat added to peptone meal reduced gastric acid secretion by 42-65% and decreased gastric emptying to 24-32%. The pretreatment with loxiglumide tended to reduce fat-induced inhibition of gastric acid secretion and gastric emptying but the difference in the inhibition of gastric functions between the tests without and with loxiglumide was not significant. This study provides evidence that exogenous CCK administered at pharmacological doses is a potent inhibitor of gastric acid secretion and gastric emptying and probably acts via specific CCK receptors. In contrast, fat induces inhibition of gastric acid secretion and gastric emptying that cannot be fully attributed to hormonally acting CCK.