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C Ciacci

Publications and source records attributed to C Ciacci.

At least 37 records · Page 2Linked to original sources

Muscular-skeletal cryptococcosis in a patient with idiopathic CD4+ lymphopenia.

A healthy 27-year-old woman presented, four months after childbirth, ingravescent pain and claudication of the left lower limb. Magnetic Resonance Imaging of the lumbosacral and iliac regions showed widespread muscular-skeletal lesions. The patient underwent surgery; Cryptococcus neoformans was isolated from surgical samples. Liposomal amphotericin B, fluconazole and itraconazole were administered. Laboratory findings showed lymphocytopenia, with reduction of CD4+ lymphocytes (23 cells per cubic millimeter) in the absence of HIV infection and any other defined immunodeficiency. This is a rare case of muscular-skeletal cryptococcal infection isolated in a subject affected with idiopathic CD4+ lymphocytopenia.

Abscess↗

Proximal stomach function in systemic sclerosis: relationship with autonomic nerve function.

Gastrointestinal involvement is frequent in patients with systemic sclerosis (SSc); however, studies on the proximal stomach and its regulation are lacking. It has been hypothesized that the primary event in the pathogenesis of gastrointestinal involvement in SSc is an early neural lesion. This study investigates proximal stomach function and its relation to autonomic nerve function in SSc. Twenty SSc patients classified in to clinical subsets, underwent measurement of proximal stomach function with and without glucagon by electronic barostat and an assessment of autonomic nerve function. SSc patients were not significantly different from 11 controls for gastric compliance (59.5+/-5.0 vs 47.7+/-4.2 ml/mm Hg, P = 0.1). The pressure-volume curves in each participant with and without glucagon were significantly different (P < 0.001). A significant positive association was found between gastric compliance and autonomic nerve function (P < 0.05). The change in gastric compliance during glucagon administration was significant-associated with autonomic function (P < 0.05). The perception cumulative scores did not differ between SSc patients and control subjects (P = 0.2). In conclusion, proximal stomach function is associated with autonomic nerve function in SSc patients. This confirms the frequent association of motility disorders with autonomic dysfunction in SSc.

Adult↗

Increased risk of surgery in undiagnosed celiac disease.

The diagnosis of celiac disease patients may be delayed by misdiagnosis. Our aim was to evaluate in celiac patients the prevalence of surgery before diagnosis. Two hundred forty-four adult celiac patients and 232 controls were retrospectively investigated for surgery before diagnosis of celiac disease. The prevalence of surgery was increased in celiac patients versus controls (P = 0.001). Frequency of appendectomy (P = 0.0001), tonsillectomy (P = 0.009), and hernia repair (P = 0.05) were increased in celiac patients versus controls. Appendectomy was related to anemia (P = 0.006) and abdominal pain (P = 0.005); tonsillectomy was related to diarrhea (P = 0.02) and weight loss (P = 0,04). Appendectomy was elective in 73% of celiac patients and in 46% of controls. Cosmetic surgery was increased in celiac patients versus controls (P = 0.058). In conclusions, surgery before celiac disease diagnosis is increased in celiac patients compared to controls, as a result of doctors' misdiagnosis and/or poor health status, which increases the demand for medical intervention. The frequency of cosmetic surgery in celiac patients may berelated to impaired psychological profile of patients.

Adult↗

IL-15 drives the specific migration of CD94+ and TCR-gammadelta+ intraepithelial lymphocytes in organ cultures of treated celiac patients.

OBJECTIVES: Celiac disease (CD) is an under-diagnosed but extremely frequent disease, triggered by the ingestion of gliadin. The pathogenic mechanisms of CD are still poorly understood, but intraepithelial lymphocytes are considered to have a key role. We intended to define the subsets of T lymphocytes migrating upon gliadin challenge in organ cultures of treated celiac patients and establish the type of factor(s) driving such an infiltration. METHODS: Duodenum biopsies from 10 treated celiacs and 7 controls were cultured in vitro with/without gliadin digest (1 mg/ml) or interleukin (IL)-15 (10 ng/ml). In 7 treated celiacs IL-7, IL-4, and IL-2 were similarly tested. Intraepithelial CD3, CD8, TCR-gammadelta, and CD94 were detected by immunohistochemistry and numbered per mm epithelium. RESULTS: IL-15 but not IL-7, IL-4, or IL-2 induced intraepithelial increase of CD3+ and CD8+ cells in celiac and control intestine (p < 0.001 vs cultures with medium). IL-15 induced increases in the number of intraepithelial TCR- gammadelta+ and CD94+ cells only in celiacs (p < 0.001). IL-7 was also effective in increasing intraepithelial TCR-gammadelta+ (but not CD94+) cells in celiac biopsies (p < 0.001). Gliadin induced intraepithelial migration of CD3+, CD8+ (p < 0.001), and CD94+ (p < 0.05) cells in celiacs, but not in controls. CONCLUSIONS: The results we describe in this report indicate that IL-15 might have a key role in modulating and driving intraepithelial infiltration and ultimately in the pathogenesis of CD.

Adolescent↗

Prevalence of thyroid disorders in untreated adult celiac disease patients and effect of gluten withdrawal: an Italian multicenter study.

OBJECTIVES: Many afflictions have been associated with celiac disease, but chance associations may exists. The aim of this study was to establish, by means of a multicenter prospective study, the prevalence of thyroid impairment among adult patients with newly diagnosed celiac disease and to evaluate the effect of a 1-yr gluten withdrawal on thyroid function. METHODS: A total of 241 consecutive untreated patients and 212 controls were enrolled. In 128 subjects a thorough assessment, including intestinal biopsy, was repeated within 1 yr of dietary treatment. Thyroid function was assayed by measuring the levels of TSH, free T3, free T4, thyroperoxidase, and thyroid microsome antibodies. RESULTS: Thyroid disease was 3-fold higher in patients than in controls (p < 0.0005). Hypothyroidism, diagnosed in 31 patients (12.9%) and nine controls (4.2%), was subclinical in 29 patients and of nonautoimmune origin in 21. There was no difference regarding hyperthyroidism, whereas autoimmune thyroid disease with euthyroidism was present in 39 patients (16.2%) and eight controls (3.8%). In most patients who strictly followed a 1-yr gluten withdrawal (as confirmed by intestinal mucosa recovery), there was a normalization of subclinical hypothyroidism. Twenty-five percent of patients with euthyroid autoimmune disease shifted toward either a subclinical hyperthyroidism or subclinical hypothyroidism; in these subjects, dietary compliance was poor. In addition, 5.5% of patients whose thyroid function was normal while untreated developed some degree of thyroid dysfunction 1 yr later. CONCLUSIONS: The greater frequency of thyroid disease among celiac disease patients justifies a thyroid functional assessment. In distinct cases, gluten withdrawal may single-handedly reverse the abnormality.

Adult↗

FAS engagement drives apoptosis of enterocytes of coeliac patients.

BACKGROUND: Villus atrophy is the most distinctive sign of untreated coeliac disease (CD) and epithelial apoptosis is considered to be involved in this stage of the coeliac lesion. The extent of villus atrophy is, however, not homogeneous and patients with patchy or mild lesions have been described. AIMS: To address: (a) the degree of "patchiness" in untreated CD patients; and (b) to clarify if apoptosis, and eventually which trigger drives it, causes epithelial damage. PATIENTS: Twenty of 40 untreated, 14 treated coeliac patients, and 15 controls received five or more multiple duodenal biopsies; the remaining 20 untreated CD patients had no more than three biopsies. METHODS: All biopsies were analysed to monitor the presence of a "flat" mucosa. Biopsies of 14 untreated, 10 treated coeliacs, and seven controls were cultured with or without gliadin. DNA fragmentation was studied by terminal deoxynucleotidyl transferase (TdT) mediated dUTP digoxigenin nick end labelling (TUNEL), and FAS and Ki67 expression by immunohistochemistry. Antiendomysium antibodies (EMA) were surveyed in biopsy culture supernatants. RESULTS: A pattern of patchy duodenal lesions was observed in all untreated CD patients biopsied up to five times. High enterocyte FAS expression, and a high number of TUNEL+ and Ki67+ enterocytes were detected in areas with villus atrophy but not in those with a normal morphology (p<0.001). Conversely, EMA in culture supernatants and signs of immunological activation were present in all untreated CD biopsies. In vitro gliadin challenge increased the number of TUNEL+ and Ki67+ enterocytes (p<0.001 v cultures with medium alone) only in "flat" biopsies. Neutralising anti-FAS monoclonal antibodies were found to control gliadin induced enterocyte apoptosis (p>0.01) while agonist anti-FAS monoclonal antibody increased it (p<0.001). CONCLUSIONS: Patchy lesions are observed in untreated CD mucosa and epithelial FAS engagement is a key trigger in driving villus atrophy in CD.

Adolescent↗

Evaluation of PCR methods for 5S-rDNA and p30 genes to detect Toxoplasma gondii in blood and other clinical samples.

During the last few years the direct diagnosis of Toxoplasma gondii infection has taken advantage of PCR. The present work tested the sensitivity and specificity of PCR for rDNA and p30 genes. Using ascitic fluid from infected mice rDNA PCR detected 0.5 tachyzoite/ml, while nested p30 PCR 1 tachyzoite/ml. The rDNA amplification was positive in all clinical samples from a single immuno compromised patient (blood, urine and bronchoalveolar fluid). In the same patient nested p30 PCR was positive only in urine and bronchoalveolar lavage (BAL) fluid. The rDNA and p30 amplicons were never found in any amniotic fluids tested. These results could prove the usefulness of rDNA amplification to detect T. gondii in blood.

Amniotic Fluid↗

Immunoelectron microscope analysis of epidermal growth factor receptor (EGFR) in isolated Mytilus galloprovincialis (Lam.) digestive gland cells: evidence for ligand-induced changes in EGFR intracellular distribution.

In mammalian cells, the binding of epidermal growth factor (EGF) to its receptor (EGFR), a glycoprotein with intrinsic tyrosine kinase activity, leads to the pleiotropic responses to EGF. Among these, a negative feedback response by stimulation of receptor internalization and lysosomal degradation, this attenuating signal transduction. In this work, data are reported on the identification of specific EGFRs in isolated digestive gland cells from the marine mussel (Mytilus galloprovincialis Lam.) By immunoelectron microscopy. In control digestive cells, EGFR immunoreactivity was mainly associated with cytoplasmic membrane structures and, to a lesser extent, the cell membrane. The presence of EGFR-like receptors was confirmed by Western blotting of digestive gland cell extracts with two different monoclonal antibodies that recognize either intracellular or extracellular epitopes. The addition of mammalian EGF resulted in significant time and temperature-dependent changes in EGFR subcellular distribution in mussel cells. In cells exposed to EGF for 0-15 min at 4 degrees C, the distribution of EGFR was not significantly different from that of the control cells. On the other hand, at 18 degrees C, an increased labelling along the cell membrane was observed after 5-10 min after EGF addition, with a concomitant decrease in the cytoplasmic signal. Moreover, after 20 min of exposure to EGF, ligand binding apparently resulted in EGFR compartmentation within the lysosomes. These observations were confirmed by quantitative analysis of EGFR labelling at different times of EGF exposure. Similar results were obtained utilizing the two different monoclonal antibodies. The results indicate that, in mussel digestive cells, the binding of heterologous EGF to specific receptors induces a negative feedback response by stimulating the lysosomal degradation of EGFR, thus suggesting the presence of mechanisms responsible for receptor downregulation similar to those observed in mammalian cells.

Animals↗

Hg(2+) and Cu(2+) interfere with agonist-mediated Ca(2+) signaling in isolated Mytilus digestive gland cells.

The effects of mercury and copper on agonist-mediated Ca-signaling were investigated in isolated cells from the marine mussel, Mytilus galloprovincialis Lam., by single cell fluorescence microscopy. In isolated digestive gland cells, short-term exposure (10 min) to both Hg(2+), a highly toxic metal and Cu(2+), an essential metal, in the nano-low µM range caused a sustained increase in cytosolic [Ca(2+)]. The effect of mercury on resting [Ca(2+)] was stronger than that of copper. The Hg-induced elevation in [Ca(2+)] seemed to be mainly due to an increased influx through Verapamil-sensitive Ca-channels, whereas the effect of Cu(2+) was related to a release from thapsigargin-sensitive intracellular stores. Agonists, such as epidermal growth factor (EGF), bradykinin (BK) and ATP, evoked Ca(2+) transients in isolated digestive gland cells through different mechanisms similar to those observed in mammalian cells, demonstrating the presence of common pathways of Ca-mediated cell signaling in both invertebrates and vertebrates. The agonist-mediated Ca(2+) response was affected by exposure to Hg(2+) and Cu(2+) in a concentration dependent manner: both metals significantly reduced the amplitude of the Ca(2+) spikes elicited by BK and ATP and decreased the percentage of EGF-responsive cells. The effects of Hg(2+) and Cu(2+) were apparently independent of their different type of interaction with the mechanisms involved in Ca(2+) homeostasis. The results clearly demonstrate that, in marine invertebrate cells, short-term exposure to heavy metal concentrations comparable to environmental exposure levels results in alterations of intracellular Ca(2+) homeostasis which compromise the cell response to extracellular stimuli involving Ca-mediated signaling. The mechanisms of heavy metal interference with Ca-homeostasis and signaling are discussed.

Journal Article↗

Growth factor-mediated signal transduction and redox balance in isolated digestive gland cells from Mytilus galloprovincialis Lam.

In mammalian cells, a growing body of evidence indicates a relationship between cellular redox balance and tyrosine kinase-mediated cell signalling. The phosphorylative cascade activated by extracellular signals is inhibited by reducing conditions and stimulated by oxidative stress, in particular at the level of mitogen activated protein kinase (MAPK) activation. The mussel Mytilus typically shows variations in antioxidant defence systems and decreases in glutathione content in response to both natural and contaminant environmental stressors. In isolated mussel digestive gland cells, both epidermal growth factor (EGF) and insulin-like growth factor-I (IGF-I) have been recently demonstrated to activate tyrosine kinase receptors leading to multiple responses; among these, stimulation of the key glycolytic enzymes phosphofructokinase (PFK) and pyruvate kinase (PK). The present study investigates the possible relationship between the tyrosine kinase-mediated metabolic effects of growth factors and cellular redox balance in mussel cells. The results demonstrate that the effects of growth factors on glycolytic enzymes were abolished by cell pretreatment with the antioxidant N-acetyl-cysteine (NAC). On the other hand, in cells where the glutathione content and synthesis were lowered either in vitro (by cell pretreatment with buthionine sulfoximine (BSO)), or in vivo (by mussel exposure to Cu(2+)) the metabolic effects of growth factors were unaffected. Moreover, the results show that, in both control and glutathione-depleted cells, growth factors can also regulate the level of glutathione apparently by modulating, via phosphorylative mechanisms involving MAPK activation, the activity of gamma-glutamylcysteine synthetase (GCS), the rate limiting enzyme in GSH biosynthesis. Overall, this study extends the hypothesis that cell signalling is intimately related to redox balance in marine invertebrate cells.

Acetylcysteine↗

Interleukin 15 mediates epithelial changes in celiac disease.

BACKGROUND & AIMS: Villous atrophy and crypt proliferation are key epithelial features of untreated celiac disease. We tried to define whether cytokines such as interleukin (IL)-15, IL-2, IL-4, and IL-7, which share chains of their receptors, could influence the epithelial modifications. METHODS: Duodenal biopsy specimens (14 treated and 13 untreated celiac patients, 7 controls) were cultured in vitro for 24 hours with or without gliadin (1 mg/mL), IL-15, IL-7, IL-4, or IL-2 (10 ng/mL). Tumor necrosis factor (TNF)-alpha and interferon (IFN)-gamma were also used in some specimens of untreated celiacs. Epithelial expression of Ki67, FAS, and transferrin receptor (TFR) was detected by immunohistochemistry, and apoptosis by TUNEL technique (percentage of positive enterocytes). IL-15-positive cells were detected by immunohistochemistry in celiac disease and control biopsy specimens; presence of IL-15 was also determined by semiquantitative polymerase chain reaction. RESULTS: Only IL-15 induced enterocyte expression of Ki67, TFR, and FAS in treated celiac (P<0.01 vs. medium) and enterocyte apoptosis in untreated celiac disease specimens. Anti-IL-15 monoclonal antibodies neutralized gliadin-induced enterocyte TFR and FAS expression in treated celiac and enterocyte apoptosis in untreated celiac disease specimens (P<0.05 vs. gliadin). IL-15-positive cells were increased in untreated celiacs (P<0.001 vs. treated celiacs and controls). CONCLUSIONS: IL-15 is involved in the modulation of epithelial changes in celiac disease, indicating that this cytokine has an unforeseen role in the pathologic manifestations of celiac disease.

Adolescent↗

Helicobacter pylori infection and peptic disease in coeliac disease.

OBJECTIVE: To evaluate Helicobacter pylori (HP) and peptic disease prevalence in coeliac disease patients and in a control group. DESIGN: In the retrospective study, data collected on 690 upper endoscopies in coeliac patients, carried out between 1990 and 1997, were analysed. In the prospective study 263 consecutive adult patients were studied for follow-up of coeliac disease or suspected malabsorption/coeliac disease. Tests included routine blood tests; serum dosage of EMA; IgG anti-HP and, in a subgroup of participants, anti-CagA antibodies; upper endoscopy with multiple gastric and duodenal biopsies; histological examination of gastric and duodenal specimens with staining providing evidence for the presence of HP. SETTING: A centre for the treatment of malabsorptive diseases, University Federico II of Naples, Italy. PARTICIPANTS: Adults with coeliac disease at the time of diagnosis and follow-up. RESULTS: In the retrospective study, peptic disease had a prevalence of 0.72% in the endoscopy series of coeliac patients examined. In the prospective study, the prevalence of HP infection was significantly lower in untreated coeliac patients when compared with treated patients and controls (20.7%, 32.4% and 55.3%, respectively; P = 0.001, chi2). The prevalence of HP was related to both gender and age. It was found more frequently in men and the frequency increased with age in all groups. The study confirmed the low prevalence of peptic disease in coeliac patients compared with controls (0.9% vs 3.8%, P = 0.001). CONCLUSION: Patients with coeliac disease show a significantly lower prevalence of HP infection and peptic disease when compared to controls. Gluten free diet-induced changes in the intestinal environment and/or the host immuno-response may explain the increased HP prevalence in treated coeliac patients.

Adolescent↗

Growth factors stimulate the activity of key glycolytic enzymes in isolated digestive gland cells from mussels (Mytilus galloprovincialis Lam.) through tyrosine kinase mediated signal transduction.

Digestive gland cells isolated from mussels (Mytilus) have previously been demonstrated to respond to mammalian EGF with a cytosolic Ca(2+) transient and stimulated DNA synthesis; both responses were mediated by activation of tyrosine kinase receptors. The present study examines the mechanisms involved in further signal progression and possible targets of phosphorylation/dephosphorylation processes. The effects of EGF, IGF-I, and insulin on the activity of two key glycolytic enzymes PFK (phosphofructokinase) and PK (pyruvate kinase) were evaluated. All the peptides tested induced a transient and dose-dependent stimulation of the activity of both PFK and PK, which involved activation of MAPKs. Quantitative immunoelectron microscopy, utilizing monoclonal anti-phosphotyrosine antibodies, revealed that EGF induced a transient increase in tyrosine phosphorylation. The results demonstrate that, in marine invertebrate cells, activation of tyrosine kinase membrane receptors by growth factors triggers signal transduction pathways involving a phosphorylative cascade similar to that of mammalian cells. Moreover, these data suggest that, in mussel cells, growth factors may play a physiological role in the in vivo regulation of glucose metabolism by modulating, through reversible phosphorylation, the activity of key glycolytic enzymes.

Animals↗

Low plasma cholesterol: a correlate of nondiagnosed celiac disease in adults with hypochromic anemia.

OBJECTIVE: Hypochromic anemia is at times attributable to nondiagnosed celiac disease. The aim of this study was to define the correlates of celiac disease in anemic adults without overt malabsorption. METHODS: One hundred patients with hypochromic anemia and without diarrhea underwent a complete diagnostic work-up, including screening for celiac disease, i.e., upper endoscopy with duodenal biopsy and search of antiendomysium antibodies. RESULTS: Patients with hypochromic anemia were from two different Divisions and were analyzed as a single group because they were not significantly different for any variable. Hypochromic anemia was attributable to celiac disease in 10 patients. Compared to anemic patients without celiac disease, anemic patients with celiac disease had significant or borderline significant differences for plasma cholesterol (-17.9%), albumin (-9.4%), and body mass index (-11.8%), but not for gender distribution, age, weight, height, blood hemoglobin, mean corpuscolar volume, plasma iron, and ferritin. All anemic patients with celiac disease had plasma cholesterol < 156 mg/100 ml. Within the entire cohort of anemic patients, plasma cholesterol inversely related to prevalence of celiac disease (p < 0.001); also plasma albumin and body mass index inversely related to celiac disease, but coefficients were borderline significant (p = 0.056 and 0.052, respectively). CONCLUSIONS: The data suggest that among patients with hypochromic anemia, plasma cholesterol in the high-to-normal range could be used to exclude the presence of celiac disease. Other nutritional markers are less sensitive as indices of risk of celiac disease. Hematological indices are not of help to define the risk of celiac disease in anemic patients without signs of malabsorption.

Adolescent↗

Idiopathic cerebellar ataxia associated with celiac disease: lack of distinctive neurological features.

OBJECTIVES: To determine the occurrence of celiac disease in a population of ataxic patients without definite diagnosis and to characterise distinctive features which may help to differentiate cerebellar ataxia with and without celiac disease. METHODS: Twenty four ataxic patients without definite diagnosis (group A) and 23 ataxic patients with definite diagnosis (group B) were screened for antigliadin (AGAs) and antiendomysium antibodies (EMAs). Patients with a positive AGA or EMA test underwent endoscopic biopsy of the duodenal mucosa. RESULTS: There was an increased prevalence of celiac disease in group A (3/24) compared with group B (0/23). None of the celiac patients presented gastrointestinal symptoms or malabsorption signs. None of the ataxic patients with celiac disease had early onset ataxia. CONCLUSIONS: Celiac disease is associated with ataxic syndromes without definite diagnosis, suggesting that it plays a part in the pathogenesis of some ataxic syndromes. The absence of distinctive neurological features in ataxic patients with celiac disease suggests that a search should be made for celiac disease markers in all ataxic patients without definite diagnosis.

Adult↗

Comparative study of the cytoplasmic domain of band 3 from human and rabbit erythrocyte membranes.

The cytoplasmic domain of band 3 (cdb3) is thought to play an important role in human erythrocyte aging. In order to investigate the role of cdb3 during rabbit erythrocyte aging, we compared rabbit cdb3 with the corresponding protein from human erythrocyte membranes. We describe a purification procedure for rabbit cdb3 comparing rabbit and human cdb3 on sodium dodecyl sulphate-polyacrylamide electrophoresis, we found fragments of different molecular weights, implying different chymotryptic cuts in the two species. Anti-human antibodies did not bind to the rabbit cdb3; we also noticed structural differences in the protein between the two species, which may also play a role in the aging processes. Rabbit erythrocyte membranes have a higher capacity of binding hemichromes, due to the higher content of band 3. While in rabbit erythrocyte membranes only one binding site for hemichromes (corresponding to cdb3) was found, we confirmed the existence of two binding sites in human membranes. The second binding site probably corresponds to glycophorin, a protein not present in rabbit membranes.

Animals↗