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Biomedical subjects

F Loffredo

Publications and source records attributed to F Loffredo.

At least 19 recordsLinked to original sources

Oesophageal acid exposure and altered neurocardiac function in patients with GERD and idiopathic cardiac dysrhythmias.

BACKGROUND: Oesophageal sensory stimuli alter neurocardiac function through autonomic reflexes. AIM: To evaluate in patients with idiopathic supraventricular cardiac dysrhythmias and gastro-oesophageal reflux disease (GERD) whether GE reflux alters neurocardiac function and the effect of acid suppression on cardiac symptoms. METHODS: Thirty-two patients (13 females and 19 males; age: 20-69 years) with dysrhythmias plus GERD, and nine patients (five females and four males; age: 43-58 years) with GERD only, underwent simultaneous 24-h pH-metry and ECG monitoring. Power spectrum analysis of heart rate variability (PSHRV) was obtained with both its low frequency (LF, sympathetic modulation) and high frequency (HF, vagal modulation) components. Hourly mean oesophageal pH and LF/HF ratio were correlated. A 3 months full-dosage PPI therapy (esomeprazole 40 mg/day) was prescribed. RESULTS: In 18 (56%) of the 32 patients with dysrhythmia and in none with GERD only, a significant (P < 0.05) correlation between oesophageal pH and LF/HF ratio (oesophagus-heart correlation) was observed. A significant reduction of cardiac symptoms after PPI therapy was observed only in these patients (13/16 vs. 4/11, P < 0.01). CONCLUSIONS: This study has identified a subgroup of dysrhythmic patients in whom the oesophageal acid stimulus elicited cardiac autonomic reflexes. In these patients acid suppression seems to improve GERD and cardiac symptoms.

Adult↗

Morphological alterations induced by cytochalasin D on serous cells of human submandibular gland in basal and stimulated conditions.

Cytochalasin D (CD) is a fungal toxin which binds to the faster growing end of actin microfilament and inhibits actin polymerization. By an in vitro incubation system of slices of human submandibular glands obtained at surgery, we investigated by light microscope (LM), transmission electron microscope (TEM), and high resolution scanning electron microscope (HRSEM) the morphological changes caused by CD on serous cells. We studied the effects of the drug on secretory events induced by isoproterenol (I) and carbachol (C). With LM, following CD incubation, canaliculi were enlarged and prominent vacuoles were seen throughout the cytoplasm. By TEM, the vacuoles, which in many cases were in continuity with the lumen, represented the distinctive feature of secretory cells. With HRSEM, intercellular canaliculi, seen from their cytoplasmic side, exhibited many small spherical bulges, corresponding to the coated pits seen with TEM and indicating that the retrieval of plasma membrane was arrested at an early phase by the disruption of the actin cytoskeleton. In specimens treated with secretagogues and CD, a consequence reported here for the first time was the presence of dense granules within the vacuoles. The protrusions seen by HRSEM on the cytoplasmic side of intercellular canaliculi, following secretagogues stimulations, appeared peculiar to each stimulants, even if combined with CD, suggesting that besides actin filaments, other components, unaffected by CD, also are involved in the process of exocytosis and related phenomena.

Actin Cytoskeleton↗

Dose-dependent morphological changes of intercellular canaliculi during stimulation with carbachol and isoproterenol in the isolated rat submandibular gland.

Intercellular canaliculi (IC) form a primary mixing reservoir for transcellularly and paracellularly secreted saliva whose composition depends on the degree of elevation of cytosolic Ca2+ and of cytosolic cyclic AMP concentrations caused by the secretagogues employed. In perfused rat submandibular gland (SMG), appearance of exocytosis on IC reflected the quantity of secreted mucin. Morphological observations were carried out by HR-SEM using a modified osmium maceration method on specimens treated with CCh and/or ISP. Mild secretory stimulation revealed that exocytosis did not occur simultaneously, even along the same intercellular canaliculus. Higher doses did not alter the spatial distribution of exocytosis along intercellular canaliculi but increased its temporal frequency, dose dependently. These findings lead us to conclude that, under low levels of secretory stimulation, exocytosis does not show a dose-dependent change, but that its spatial and temporal frequency changes in a dose-dependent manner.

Adrenergic beta-Agonists↗

The coupling of RP-HPLC and ESI-MS in the study of small peptides and proteins secreted in vitro by human salivary glands that are soluble in acidic solution.

The aim of this study was the development of a method based on the coupling of RP-HPLC and ESI-MS for identifying and quantifying proteins and peptides secreted by human salivary glands in vitro. Salivary gland specimens, obtained from informed patients undergoing surgical resection, were incubated in an optimized medium. Incubation media of glandular specimens, selected on the basis of cytomorphological and ultrastructural analysis, were investigated by HPLC-MS. Several salivary peptides/proteins, previously recognized in human whole saliva, were searched for along the chromatogram by the selected ion monitoring (SIM) strategy. Analysis of the incubation media of parotid glands revealed the presence of basic PRPs PC, PD, PH, IB-1, II-2, and acidic PRP-1 and PRP-3 in all of the investigated samples. Basic PRPs PB and PA, acidic PRPs, and cystatins SN and S1 were detected in all of the incubation media of submandibular glands, whereas histatin 1 was detected in only one sample. Moreover, the method allowed detection of some post-translational derivatives of known salivary proteins, as well as of several previously unidentified small peptides. The present method represents a sensitive and powerful instrument to detect peptides and proteins secreted by human salivary glands in vitro.

Adult↗

Relationship of fluid and mucin secretion to morphological changes in the perfused rat submandibular gland.

Transport of electrolytes/water and exocytosis are activated by elevation of the cytosolic Ca(2+) concentration and are potentiated by elevation of cytosolic cyclic AMP. To correlate mucin and fluid secretion with morphological changes, rat submandibular glands were vascularly perfused and the fluid secretion and N-acetylgalactosamine in the saliva were measured during stimulation with various concentrations of carbachol (CCh) and/or isoproterenol (ISP). Single stimulation with 1 microM CCh induced a transient increase of N-acetyl galactosamine followed by a decline to a low level during sustained stimulation. The overload of 1 microM ISP increased secretion of N-acetyl galactosamine to a higher sustained level of 40-50 microg/g-min. However, at 1 microM CCh, fluid secretion was maintained at the same level during stimulation and even overload of 1 microM ISP did not significantly affect its level, whereas addition of 0.5 microM ISP to the gland stimulated with 0.1 microM CCh increased fluid secretion. Morphological observation was carried out by HRSEM and TEM. Combination of CCh and ISP in different concentrations resulted in distinctive morphological changes which reflect fluid secretion and mucin secretion. The kinetics of ATP and creatine phosphate (PCr) were measured using P-31 NMR, which indicated that the potentiation of fluid secretion is limited under a higher level of CCh stimulation due to a limited energy supply.

Acetylgalactosamine↗

Expression of exogenous tissue factor pathway inhibitor in vivo suppresses thrombus formation in injured rabbit carotid arteries.

OBJECTIVES: The aim of the present study was to test the hypothesis that retrovirus-mediated in vivo tissue factor pathway inhibitor (TFPI) gene transfer to the arterial wall would efficiently inhibit thrombosis without causing significant changes in systemic hemostatic variables. BACKGROUND: Acute coronary syndromes (unstable angina and acute myocardial infarction) are usually caused by atherosclerotic plaque rupture, with consequent activation of the coagulation cascade and circulating platelets. Tissue factor (TF) exposure represents an early event in this pathophysiologic sequence, leading to activation of the extrinsic coagulation pathway and thrombin formation. Tissue factor pathway inhibitor is a naturally occurring inhibitor of the extrinsic pathway. METHODS: In the present study, the gene coding for rabbit TFPI was inserted in a retroviral vector under control of a tetracycline-inducible promoter. Replication-defective, infectious, recombinant retroviruses were used to transfect rabbit carotid arteries with either TFPI or a reporter gene--green fluorescent protein (GFP). RESULTS: Retroviral-mediated arterial gene transfer of TFPI resulted in potent inhibition of intravascular thrombus formation in stenotic and injured rabbit carotid arteries, whereas transfection of the contralateral carotid artery with GFP had no effect on thrombosis. No significant changes in systemic hemostatic variables (prothrombin time and partial thromboplastin time) were observed when thrombosis was inhibited. CONCLUSIONS: These data suggest that retroviral-mediated transfection of the arterial wall with TFPI might represent an attractive approach for the treatment of thrombotic disorders.

Animals↗

Cell biology of human salivary secretion.

We treated surgical specimens of human parotid and submandibular glands in vitro to manipulate the receptor-signaling cascade pharmacologically and analyzed cellular responses by light microscopy on epoxy embedded sections. Treatment of specimens with the b-agonist, isoproterenol, and with the second messenger analog, dibutyryl cyclic AMP, stimulated serous acinar cells to engage in exocytosis and degranulation. The muscarinic agonist, carbachol, and the calcium ionophore, A23187, on the other hand, elicited formation of "vacuoles" in the cytoplasm of serous acinar cells. Taking previous in vivo human and animal studies into account, these changes are suggested as the morphological expression of enzyme release and fluid secretion, respectively. Specimens obtained from patients over 70 years old exhibited poor response even though their morphological appearance remained intact. Aged salivary glands are thus suggested to experience a decline in their secretory activity at the cellular level, probably by impairment of the signaling processes downstream to the receptor activation and second messenger production.

Adrenergic beta-Agonists↗

Relationship between amylase and fluid secretion in the isolated perfused whole parotid gland of the rat.

Whole gland perfusion technique was applied to rat parotid glands to assess whether amylase affects fluid secretion. Control perfusion without any secretagogue evoked no spontaneous secretion. Carbachol (CCh 1 microM) induced both amylase and fluid secretion with distinctive kinetics. Fluid secretion occurred constantly at 40-120 microliter/g-min (average plateau was 60 microliter/g-min), whereas amylase secretion exhibited an initial peak (10 mg maltose/30 s per g wet w. of the gland), followed by a rapid decrease to reach a plateau level of 1 mg maltose/30 s later than 1.5-2 min. Isoproterenol (Isop 1 microM) alone did not induce fluid secretion although it evoked amylase secretion as measured in isolated perfused acini. Addition of Isop during CCh stimulation evoked a rapid and large rise in amylase secretion to 15 mg maltose/30 s accompanied by the increase in oxygen consumption. However, the fluid secretion exhibited a rather gradual decrease. These findings suggest that control of salivary fluid secretion is independent of the amylase secretion system induced by CCh and/or Isop. Morphological observations carried out by HR SEM and TEM revealed exocytotic profiles following Isop stimulation. CCh stimulation alone seldom showed -exocytotic profiles, suggesting a low incidence of amylase secretion during copious fluid secretion. Combined stimulation of CCh and Isop induced both vacuolation and exocytosis along intercellular canaliculi. During washout of secretagogues, lysosomal digestion of excess membrane took place.

Amylases↗

Fluid and amylase secretion by perfused parotid gland: physio-morphological approach.

Whole gland perfusion technique was applied to rat parotid glands to assess whether amylase affects fluid secretion. Control perfusion without any secretagogue evoked no spontaneous secretion. Carbachol (CCh 1 microM) induced both amylase and fluid secretion with distinctive kinetics. Fluid secretion occurred constantly around 60 microL/g-min, whereas amylase secretion exhibited an initial peak, followed by a rapid decrease to reach a plateau. Isoproterenol (Isop 1 microM) alone did not induce fluid secretion although it evoked amylase secretion as measured in isolated perfused acini. Addition of Isop during CCh stimulation evoked a rapid and large rise in amylase secretion accompanied by small increase in oxygen consumption. Morphological observations carried out by HR SEM and TEM revealed exocytotic profiles following Isop stimulation. CCh stimulation alone seldom showed exocytotic profiles, suggesting a low incidence of amylase secretion during copious fluid secretion. Combined stimulation of CCh and Isop induced both vacuolation and exocytosis along intercellular canaliculi. These findings suggest that control of salivary fluid secretion is independent of the amylase secretion system induced by CCh and/or Isop.

Amylases↗

A scanning and transmission electron microscope study of the human minor salivary glands.

All human minor salivary glands, apart from the posterior deep lingual (von Ebner's) glands which were serous, contained a minor population of seromucous cells that increased from palatine and posterior superficial lingual (Weber's) to labial, anterior lingual (Blandin and Nuhn's) and buccal glands, in that order. Unlike the predominant mucous cells, whose structure was uniform, serous and seromucous cells exhibited, in each gland, peculiar cytological and cytoarchitectural characters.

Adolescent↗

Exocytosis in human salivary glands visualized by high-resolution scanning electron microscopy.

The luminal membrane of salivary acinar cells creates a specialized cell surface area that accepts exocytosis and undergoes dynamic changes during secretion. These changes were visualized three-dimensionally from both the inside and outside of the cell in human parotid and submandibular glands, by application of in vitro secretory stimulation and then of OsO4 maceration to remove cytoplasmic organelles by varying degrees. In control glands treated without secretagogues, the luminal surface of serous acinar cells bore well-developed microvilli with only an occasional incidence of exocytotic profiles. Following treatment with the beta-adrenergic agonist, isoproterenol, considerable shortening and loss of microvilli occurred along the luminal membrane where, on its cytoplasmic side, many protuberances of sizes similar to or smaller than those of single secretory granules (approximately 1 micron in diameter) appeared. The cytoplasmic surface of these protuberances exhibited small vesicles (approximately 100-150 nm in diameter) that, by transmission electron microscopy, were shown to be coated pits or vesicles present on or around the exocytosed granule membranes. Treatment of tissues with the muscarinic agonist carbachol also caused a decrease of microvilli and the appearance of protrusions at the luminal membrane. However, unlike isoproterenol treatment, many of these protrusions were devoid of small pits or vesicles and were much larger than a single secretory granule. These results indicate that (1) secretory stimulation causes the dynamic transformation of microvilli at the luminal membrane, where granule docking and membrane fusion take place, and (2) after fusion, the exocytosed membranes are processed differently, by coated pit/vesicle mediated or non-mediated mechanisms, according to the autonomic receptor control.

Adrenergic beta-Agonists↗

Human salivary gland parenchymal cells seen by SEM from the cytoplasmic side using a new osmium maceration method.

By removing all or most organelles, we have exposed the cytoplasmic side of the plasmalemma and its specializations in serous cells and in cells of striated and excretory ducts of human major salivary glands. The areas of plasmalemma located beneath the lumen and those bordering the intercellular canaliculi are covered by evenly distributed particles arranged in a continuous band and, below it, in regularly spaced clusters. A similar pattern of particles is seen on the internal aspects of the juxtaluminal plasmalemma of cells of both striated and excretory ducts. Small isolated clusters of particles are seen in other regions of serous and ductal cells as well, being particularly numerous along the basal processes of cells of striated ducts. A distribution of particles resembling that present along intercellular canaliculi of serous cells also is seen on the plasmalemma bordering the biliary canaliculi where, however, the clusters look smaller and farther apart. Large clusters of particles, matching those seen on salivary glands and on liver, are present at the base of the short processes of cells of the stratum spinosum of squamous stratified epithelia. Since the sites of location of the clusters closely correspond to the areas where transmission electron microscopy (TEM) reveals the presence of desmosomes, we believe that the clusters may be related to these cellular junctions. Of more difficult interpretation are the particles present on the juxtaluminal band corresponding both to the zonula occludens and to the zonula adhaerens.

Adult↗

Cytoskeletal regulation of human salivary secretion studied by high resolution electron microscopy and confocal laser microscopy.

To study the cell regulation mechanisms of human salivary secretion, surgical specimens of human parotid and submandibular glands were treated in vitro with isoproterenol (beta-agonist), carbachol (muscarinic agonist), and cytochalasin D (microfilament disruptive agent), and morphological changes occurring in serous acinar cells were observed. Control acinar cells treated without secretagogues exhibited only occasional examples of exocytosis. Microfilaments, revealed by transmission electron microscopy (TEM) and confocal laser scanning microscopy (CLSM) of F-actin fluorescence stained by rhodamine-phalloidin, were localized underneath the luminal membrane to separate the secretory granules from the luminal membrane. Following isoproterenol treatment, secretory granules made direct contact with the luminal membrane and many omega-shaped exocytotic profiles appeared. TEM and scanning electron microscopy (SEM) showed these profiles to be of granule size or somewhat smaller and to be provided on their cytoplasmic surface with coated pits. Furthermore, CLSM detected the appearance of F-actin fluorescence around the exocytosed granule membranes. Carbachol treatment also evoked the formation in acinar cells of omega-shaped exocytotic profiles some of which were larger than the granules and which exhibited neither coated pits nor associated F-actin fluorescence. To determine if microfilaments regulate the post-exocytotic process of membrane retrieval, we combined isoproterenol treatments with cytochalasin D or carbachol. Following these treatments, F-actin fluorescence surrounding the exocytosed membrane was dispersed or diffused and the exocytotic profiles enlarged remarkably. These results led to the hypothesis that exo/endocytotic processes in human salivary serous acinar cells are regulated differently under autonomic receptor control mediated by microfilaments.

Adult↗

A 3D study of intra and extracellular structures of liver in beta-thalassemia intermedia: an OsO4 maceration analysis.

A scanning electron microscopy study of liver changes has been carried out in three patients affected by beta-thalassemia intermedia (BTI). Applying a new osmium maceration method, recently developed in our laboratory, we had the opportunity to obtain, at SEM, tridimensional images of intra and extracellular structures. Other than the previously reported lesions in BTI, we observed the following pathological findings: disarrangement of the cell structure by a high number of hemosiderin loaded lysosomes; alterations in shape and in diameter of the nuclear pores; presence of apoptotic bodies scattered among the parenchymal cells; deposition of collagen fibers in the space of Disse to form a perihepatocytic dam; enlargement of the sinusoidal endothelial cell fenestrae of the sieve plate. By complete digestion of liver cells, we evidenced a diffuse pericellular fibrosis, made up of interlacing fibrils. Our study evidences some not yet reported morphological lesions in BT. Since patients affected by BTI do not need blood transfusions, these lesions could be considered intrinsic of the disease.

Adult↗

Further data on intracellular structures of human salivary glands. A SEM study.

Specimens of human salivary glands have been studied by our modification of the AODO maceration method which, carried out on sections of controlled thickness, allows the analytical study of human bioptical material. Lately, our technique has been further improved and simplified by omitting the treatment with dimethylsulfoxide and by using osmium-ferrocyanide as secondary fixative. Following maceration with diluted OsO4, some of the sections also were shaken for 10-15 min with a rotating agitator. Already at low magnification, all parenchymal cells were clearly distinguishable for their complement of cytoplasmic organelles. Serous cells and mucous cells at the beginning of their secretory cycle were characterized by well developed RER and Golgi apparatus, while mature mucous cells exhibited only scanty organelles compressed among the secretory droplets. Mitochondria were tubular, and often branched and convoluted. When sectioned, these organelles, besides the usual plate-like cristae, showed tubular cristae as well. The SER of striated and excretory duct cells was well developed and consisted of a network of smooth anastomosing tubules in the apical cytoplasm where it probably represented the transcellular pathway for ion transport. In specimens subjected to shaking, cytoplasmic organelles were occasionally removed allowing a nonobstructed view of the inner side of the plasmalemma and its specializations. With this technique the intercellular canaliculi of serous cells also became appreciable from their cytoplasmic side. They appeared as ribbon-like irregular protrusions with walls fenestrated by holes, corresponding to the interior of microvilli deprived of the cytoskeleton, and, sometimes, with lateral expansions possibly related to the mechanism of exocytosis. Results reported here clearly showed the usefulness of the maceration method in providing additional data on the cytoarchitecture of epithelial cells of salivary glands. Furthermore, by allowing the visualization of internal surfaces previously hidden to direct inspection, our technique may open new horizons in morpho/functional studies of human salivary glands.

Adult↗

Scanning electron microscopy of the interior of cells in Hürthle cell tumors.

Four cases of Hürthle cell tumor were examined by scanning electron microscopy after being macerated to remove all soluble components. By all morphological criteria, Hürthle cells are oncocytes with their usual augmented complement of mitochondria. The Hürthle cell mitochondria either are ovate with central stacks of cristae or elliptical or rod-like with cristae that often are finger-like. As in salivary gland oncocytes, the shelf-like cristae are anchored to the inner boundary membrane by tubular necks. In some Hürthle cells, all of the mitochondria exhibit reticulate cristae. A few mitochondria harbor a globular inclusion in their inner compartment. The Golgi apparatuses are relatively simple, consisting of imbricated saccules that are edged by small, bud-like structures. The rare lumina in the midst of clusters of Hürthle cells are lined by numerous microvilli. Thus, scanning electron microscopy of macerated Hürthle cell tumors has revealed a number of features, especially of their mitochondria, that have escaped detection by transmission electron microscopy.

Adenoma, Oxyphilic↗

[An atrial hematopoietic locus in the heart of the cave salamander (urodele amphibian)].

Lungless Salamanders of the family Plethodontidae have a reduced interatrial septum. The pulmonary vein is lacking. In these species, the septum as a membranous thin sheet attaches near the dorsal lip of the sino-atrial valve where a connective and muscular column, supporting the valve, extends its branches over the upper wall of the undivided atrial cavity where a sponge-like structure is formed. The meshes of this structure are the site of a erythropoietic activity as shown in the plates. Early stages in active reproduction are found in the external acid layer while in the basic inner layer the red cells undergo differentiation. This locus may be correlated to the particular anatomy of the heart concerning the lacking of the pulmonary vein, the position of the sino-arterial aperture shifted to the left side and the reduced interatrial septum. In the large upper cavity of the atrium a certain degree of blood stagnation could be possible which could allow the settlement of this locus. No ventricular erythropoiesis nor epicardial granulopoiesis have been found. This hemopoietic locus is lacking in the family Salamandridae and Anura.

Animals↗