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A Sesso

Publications and source records attributed to A Sesso.

At least 19 recordsLinked to original sources

Post-natal maturation of acinar cells of the guinea pig pancreas: an ultrastructural morphometric study.

The morphological maturation of the acinar cells of the guinea pig pancreas during post-natal development was characterized morphometrically by determining the intracytoplasmic accumulation of rough endoplasmic reticulum (RER) and zymogen granules. The following results were obtained for the period analysed, i.e., from 2 to 70 days of post-natal life: (a) the acinar cell volume increased by 210% (P < 0.01); (b) the mostly cisternal RER occupied more than 30% of the cytoplasm at any age studied and their total volume and surface in the cell were increased by 300 and 534% (P < 0.01), respectively; (c) maturation in the morphological pattern of the RER was observed; (d) the mean number of zymogen granules per cell increased from 261 at 2 days to 422 at 70 days (P < 0.01), while their mean diameter increased from 0.52 to 0.94 micron (P < 0.01) during the same period; (e) these increases in granule number and size were responsible for a 500% (P < 0.01) increase in total volume from 2 to 70 days and for a 304% increase (P < 0.01) in total surface from 2 to 35 days; (f) the RER and the zymogen granules together occupied 44, 54, 55 and 57% of the cytoplasm at 2, 14, 35 and 70 days of age, respectively. We conclude that although the pancreatic acinar cells of the guinea pig are morphologically well differentiated at 2 days of age, with the cytoplasm already showing a large amount of RER and zymogen granules, they are still immature. Morphological maturation of the acinar cell occurs during the first months of post-natal life and is characterized by a substantial gain in cell volume and intracytoplasmic accumulation of RER and zymogen granules, which significantly increase of both their absolute volume and total surface, with a higher growth rate being observed during the period from 2 to 14 days of post-natal life.

Animals↗

Distribution of COX-negative mitochondria in myofibers of rats intoxicated with Senna occidentalis seeds.

We have described that administration of seeds or parts of the seed of Senna occidentalis (coffee senna) for long periods, induces histochemical changes in the skeletal muscles of hens and rats that are characteristic of a mitochondrial myopathy--as decrease of SDH and COX activity, with some COX negative fibers. In this experimental model of mitochondrial myopathy, as in many human mitochondrial diseases, there is a random distribution of COX negative fibers. Some fibers are completely COX negative while others are partially negative and others are completely positive. In the present work we have studied the distribution of COX negative mitochondria at transmission electron microscopy in skeletal muscle of rats in this experimental myopathy. In myofibers of intoxicated animals the expression of COX was heterogeneous. The histochemical reaction was observed in the internal membrane (more evident in mitochondrial cristae) of all mitochondria of some myofibers, while it was almost absent in other myofibers. In these myofibers the great part of the mitochondria were negative for COX reaction while other ones had a weak expression of this enzyme (dot or focal expression of COX). Our results indicated that the COX mitochondrial activity is heterogeneously impaired in myofibers of rats intoxicated with S. occidentalis. These abnormalities remember those observed in some types of human mitochondrial myopathies.

Cytochrome-c Oxidase Deficiency↗

Cell population growth in the rat parotid gland during postnatal development.

The growth kinetics of different cell populations in the rat parotid was studied. The evolution of the frequency and absolute number of each cell type was determined morphometrically by a particle-counting method and the evolution of the [(3)H]thymidine labeling indices of the same cell types was determined by autoradiography. The data obtained for the evolution of cell number in each gland compartment, i.e. acini, intercalated ducts, striated ducts and stroma, were adjusted by exponential equations, permitting estimation of the effective cell accumulation rate in the compartment for each population, i.e. the mean population duplication time (T(D)). In addition, the cell production rate in each gland compartment was determined using the mean labeling index for the period studied and a mathematical estimation of the mean cell generation time (T(G)), assuming an exponential growth pattern for the acinar, intercalated duct and striated duct populations during the period from 5 to 20 days of postnatal development. Analysis of the relation between effective cell accumulation (T(D)) and presumed cell production (labeling index and T(G)) for each intralobular parenchymal compartment of the rat parotid during this period suggests that the proliferative activity of the acinar cell population was sufficient to guarantee marked growth of its compartment and provided cells that presumably dedifferentiated into intercalated duct cells, whereas cells produced in the intercalated duct compartment migrated to, and differentiated into, cells of the striated duct compartment.

Analysis of Variance↗

Oxidation of LDL enhances the cholesteryl ester transfer protein (CETP)-mediated cholesteryl ester transfer rate to HDL, bringing on a diminished net transfer of cholesteryl ester from HDL to oxidized LDL.

Cholesteryl ester transfer protein (CETP) plays a controversial role in atherogenesis by contributing to the net transfer of high density lipoprotein (HDL) cholesteryl ester (CE) to the liver via apolipoprotein-B-containing lipoproteins (apoB-LP). We evaluated in vitro the CETP-mediated bidirectional transfer of CE from HDL to the chemically modified pro-atherogenic low density lipoprotein (LDL) particles. Acetylated or oxidized (ox) LDL, either unlabeled or [3H]-CE labeled, were incubated with [14C]-CE-HDL in the presence of the lipoprotein-deficient plasma fraction (d>1.21 g/ml) as the source of CETP. The amount of radioactive CE transferred was determined after dextran sulfate/MgCl(2) precipitation of LDL. The results showed a 1.4-2.8-fold lower HDL-CE transfer to acetylated LDL while no effect was observed on the CE transfer to oxidized LDL. However, the reverse transfer rate of [3H]CE-LDL to HDL was 1.4-3.6 times greater when LDL was oxidized than when it was intact. Overall, HDL(2) was better than HDL(3) as donor of CE to native LDL, probably reflecting the relatively greater CE content of HDL(2). Oxidation of LDL enhanced the CETP-mediated cholesteryl ester transfer rate to HDL, bringing on a reduced net transfer rate of cholesteryl ester from HDL to ox LDL. This may diminish the oxLDL particle's atherogenic effect.

Carrier Proteins↗

Cytochemical analysis of acid phosphatase activity in the venom secretory cells of Bothrops jararaca.

A study of the histochemical reaction for acid phosphatase (AcPase) in venom gland secretory cells from Bothrops jararaca was done to investigate the distribution of lysosomes and related structures in stages of high- and low-protein synthesis. From this analysis, it was expected to gain insight into the cellular pathway by which AcPase is secreted into the venom. Two subtypes of AcPase reactivities were detected in the venom gland secretory cells: one was found in lysosomes and related structures and in some trans-Golgi network (TGN) elements and reacts with beta-glycerophosphate (betaGP) as substrate; the other was found in secretory vesicles, apical plasmalemma, lysosomes and related structures, and in some TGN elements, and reacts with cytidine monophosphate (CMP). The results are compatible with the possibility that there is a secretory via for AcPase in the venom gland of B. jararaca and that the elements composing this pathway are noted only when CMP is used as substrate. Large autophagosomes reactive to both betaGP and to CMP were commonly observed in the basal region of the secretory cells, and they were more abundant in the glands during the stage of low activity of protein synthesis.

Acid Phosphatase↗

Evidence of type II pneumocyte apoptosis in the pathogenesis of idiopathic pulmonary fibrosis (IFP)/usual interstitial pneumonia (UIP).

BACKGROUND/AIMS: The pathogenesis of idiopathic pulmonary fibrosis (IPF)/usual interstitial pneumonia (UIP), a chronic and incurable human respiratory disease, is not well established. This study was designed to investigate whether the apoptosis of type II pneumocytes could be the precipitating factor in the pathogenesis of IPF. METHODS: Nineteen specimens obtained by retrospective review of the medical and pathological records of 55 patients with IPF, four normal subjects, and 10 disease control lungs were analysed. The selected specimens had normal alveoli with intervening patchy scarring of the lung parenchyma, fulfilling the pathological criteria for UIP. To identify individual cells undergoing apoptosis in the normal alveoli, electron microscopy and in situ end labelling of fragmented DNA were performed on paraffin was embedded sections using digoxigenin-11-dUTP and the enzyme terminal deoxynucleotidyl transferase. RESULTS: Apoptosis was detected in the normal alveoli of 17 of the 19 patients with IPF/UIP and was absent in the controls. Electron microscopy demonstrated apoptotic changes in type II pneumocytes. These results indicate that apoptotic type II pneumocyte death occurs in normal alveoli of IPF/UIP and could be the principal cause of several events that account for the histological, clinical, and functional alterations seen in IPF/UIP. CONCLUSIONS: In conclusion, numerous type II pneumocytes from the normal alveoli of most patients with IPF/UIP actively undergo programmed cell death. This finding may shed new light on the pathogenesis of this disease, with implications mainly for the treatment of affected patients.

Aged↗

Large unilamellar vesicles as trehalose-stabilised vehicles for vaccines: storage time and in vivo studies.

Liposomes, as a pharmaceutical formulation must display a long shelf life. The recombinant heat-shock protein from Mycobacterium leprae (18-kDa hsp) or its N-acylated derivative, when entrapped within or externally associated with large unilamellar vesicles, acts as a T-epitope source. Freeze-fracture electron microscopy shows unequivocally that trehalose avoids aggregation and fusion of these vesicles. Formulations containing trehalose retained up to 98% of the entrapped protein. The highest antibody level is obtained with formulations containing trehalose. The adjuvant effect depends on the liposomal membrane integrity.

Acylation↗

Mitochondrial metabolism impairment in muscle fibres of rats chronically intoxicated with Senna occidentalis seeds.

The chronic administration of S. occidentalis seeds was found to induce a mitochondrial myopathy in hens. This study was undertaken to determine if the chronic treatment with S. occidentalis seeds of rats (as a mammalian model) would induce a mitochondrial myopathy similar to those described in humans and to determine if the histological changes could be correlated with the amount of ingested seeds. Twenty-one days old rats were fed S. occidentalis seeds at different diet concentrations (1, 2, 3%). Rats fed 1% S. occidentalis seeds had only a few COX-negative muscle fibers in the pectoralis major muscle. Rats fed 3% Senna occidentalis seeds had a greater number of COX-negative fibers. Rats fed 2% had an intermediate number of COX-negative fibers. Activity of SDH and NADH-tr were decreased in rats of groups 2% and 3%. Our data indicate that a progressive mitochondrial metabolism impairment can be produced in rats fed S. occidentalis seeds and that this impairment can be correlated with the amount of ingested seeds.

Administration, Oral↗

Mechanisms of albuminuria in the chronic nitric oxide inhibition model.

Chronic nitric oxide (NO) inhibition causes hypertension and renal injury. Concomitant salt overload promotes massive albuminuria. We investigated the mechanisms whereby these treatments impair glomerular permselectivity. Adult male Munich-Wistar rats received either a standard-salt (SS; 0.5% Na) or high-salt (HS; 3.1% Na) diet and either no treatment or the NO inhibitor N(omega)-nitro-L-arginine methyl ester (L-NAME). At 30 days, albuminuria was moderate, the density of fixed anionic sites at the glomerular basement membrane (GBM), estimated by cationic ferritin binding, declined by approximately 35%, and the fractional clearance of 70-kDa neutral dextran (phi) rose moderately in rats receiving L-NAME and SS. Rats given L-NAME and HS exhibited massive albuminuria, whereas phi was nearly tripled. Depletion of GBM anionic sites was also seen in these rats. The GBM was thickened in both L-NAME-treated groups. These abnormalities were largely reversed after cessation of treatments. These results indicate that chronic L-NAME treatment promotes reversible albuminuria by impairing both glomerular size and charge selectivity. These effects likely reflect functional rather than structural disruption of the glomerular wall.

Albuminuria↗

Early expression of ubiquitin in myofibers of rats in organophosphate intoxication.

The degenerative process of the myofibers of the diaphragm of rats intoxicated with the organophosphate isofenphos, a compound that inhibits esterases, was studied at different intervals of intoxication. Early disorganization of the intermyofibrillar network and of the myofilaments, as well as dilatation of organelles, were observed by use of transmission electron microscopy. These changes precede macrophage invasion of the muscle fibers. Early expression of ubiquitin was observed in segments of muscle fibers by immunohistochemistry. Bands of polyubiquitin complexes in muscle homogenates were observed by immunoblotting. These bands disappeared in later stages of intoxication. A 42.5-kDa band corresponds to actin, as observed by immunoblotting using antisarcometric actin. This indicates relatively large amounts of polyubiquitin complex associated with sarcomeric actin in muscle fibers in early stages of intoxication. Based on these results it seems that actin is an important target in organophosphate-induced myofiber degradation and that the degradation of this protein-by the polyubiquitin pathway-may play an important role in the early disorganization of the sarcomere, as observed by electron microscopy. A possible role of the ubiquitin proteolytic pathway is that of trying to eliminate proteins modified in the early phases of muscle fiber degeneration, which is a necessary step for regeneration of the posterior segmental muscle.

Actins↗

Sarcoplasmic lipase and non-specific esterase inhibition in myofibers of rats intoxicated with the organophosphate isofenphos.

The expression of sarcoplasmic esterases, lipases as well as the lipid content in the myofibers of the diaphragm of rats intoxicated with the organophosphate isofenphos was studied. Lipid accumulation was documented at light, electron microsopic and by morphometric studies. The distribution of these lipid droplets was irregular and abundant in myofibers with numerous mitochondria (predominantly oxidative fibers). Histochemical inhibition of sarcoplasmic esterases and lipases was observed in the intoxicated animals. This sarcoplasmic inhibition of esterases occurs roughly in parallel to the inhibition of plasma cholinesterase activity. The inhibition of sarcoplasmic lipases may explain, at least partially, the accumulation of lipids. This inhibition probably makes difficult the use of lipids as fuel, especially in the oxidative fibers. In contrast to the small amount of muscle necrosis, (1.30+/-0.745), metabolic muscle impairment was intense and extensive, i.e., decreased activities of esterases and lipases in the sarcoplasm, that should contribute to muscle weakness. Therefore, because segmental necrosis was most prominent in oxidative fibers (and these fibers use lipids as the principal fuel and contain the greater amount of lipases in the sarcoplasm), it is possible that inhibition of activity of lipases is responsible for the segmental necrosis. Although the exact role of these metabolic changes is not known, it is possible that they contribute not only to the induction and evolution of muscle cell necrosis but also to the muscle weakness and clinical impairment of animals and humans in the acute intoxication by these compounds.

Animals↗

Structural elements common to mitosis and apoptosis.

Both mitotic and apoptotic cells display hypercondensation of the chromatin and loss of the nuclear envelope (Lazebnik et al., 1993). Herein, we describe a third similarity between the two processes. We have observed, initially in apoptotic cells of the PC-12 lineage clusters of 40-60 (approximately 50) nm vesicles adjoined by a minor contingent of tubule vesicular elements of 100-200 nm which are indistinguishable from their vesicular counterparts in mitotic PC-12 cells. The clusters of approximately 50 nm vesicles were subsequently observed in all studied rat tissue cells in apoptosis (plasma cells and macrophages, secretory epithelial cells from pancreatic acini, ventral lobe of prostate and mammary gland). Clusters of approximately 50 nm vesicles comparable to those of the PC-12 cells were found in HeLa cells treated with human alfa TNF, in WEHI-3 cells exposed to VM 26 (a teneposide) (Sesso et al., 1997) and in HL-60 cells treated with thapsigargin. PC-12 and HeLa cells affixed to coverslips were double labelled and examined with the fluorescence microscope to reveal simultaneously the disposition of the chromatin with Hoechst stain and the distribution of the fluorescence of Golgi or of Golgi-associated proteins. A common pattern of fluorescence was observed in a minor proportion of apoptotic cells using three different antibodies used. The label frequently appeared as finely dispersed granules in the cytoplasm. In some apoptotic cells, relatively coarse granules were observed. This pattern of label distribution is compatible with the disposition of vesicular clusters we have encountered in apoptotic PC-12 cells sectioned serially or semi serially. In such sections of both mitotic and apoptotic PC-12 cells, we noticed that the conglomerates of 50 nm vesicles were frequently associated with cisternae of the rough ER. Vesicles of similar size were also noted pinching off from the extremities of Golgi cisternae reduced in size. These cisternae diminish in length and width when they are in the process of disassembling at the very beginning of mitosis and in apoptosis.

Animals↗

One fate of bloodstream trypomastigote forms of Trypanosoma cruzi after immune clearance: an ultrastructural study.

The fate of bloodstream forms of Trypanosoma cruzi in tissues of mice was studied after immune elimination from circulation. Observations using transmission electron microscopy showed platelet thrombi occluding small vessels in the lung, liver, and spleen, and phagocytosed parasites in different stages of destruction within macrophages, neutrophils, and eosinophils. It is suggested that no particular cell population is a potential effector, but that different cells act in concert to destroy the parasites. The mechanism of this destruction might be related to intra- and extracellular mechanisms with trypanolytic activity.

Animals↗

Morphological and morphometric studies in pancreatic acinar cells of the rat at successive post-mortem intervals. The early appearance of a previously undescribed Golgi complex associated tubular vesicular structure.

Structural alterations in rat pancreatic acinar cells were studied in thin section at 0.5, 1, 4, 8, 12, 24 and 48 h post-mortem (PM). Morphometric analyses were performed both by light and electron microscopy, at 0.5 and 1 h PM. The parameters evaluated were: a) nuclear, cytoplasmic and cellular volumes; b) volume density and absolute volume of the rough endoplasmic reticulum (RER), mitochondria, zymogen granules (ZG), Golgi complex and its subcompartments [cisternae, condensing vacuole (CV) and 56-nm diameter vesicles], dense bodies (lysosome-like structures, electron-dense vacuoles and unidentifiable granules) and cytoplasmic matrix; c) surface density, surface/volume ratio and total surface area of the RER, mitochondria, ZG, Golgi cisternae, 56-nm diameter vesicles lying at the rough ER-Golgi interface, CV, and apical and basolateral membranes. Between 0.5 and 48 h, the mitochondria were dilated, junctional complexes were preserved and autophagic vacuoles were rare or absent. Flocculent densities were present in the mitochondria and chromatin condensation was observed at 4 h PM. In thin sections from samples obtained between 0.5 and 12 h, we consistently observed a membrane bounded structure formed by tubules and vesicles, designated as a tubular vesicular structure (TVS). These TVS's were observed at positions corresponding to the 4th Golgi cisterna. Fibrillar aggregates and a reduction in the number of 56-nm vesicles on the cis side of the Golgi were seen. Morphometry revealed a 60-70% reduction in the numerical density of the 56-nm vesicles between zero (control) and 0.5 h PM. These analyses also showed a 70% increase in the total volume and 57% increase in the total membrane surface of the Golgi cisternae in the PM period. The current results suggest that during the early PM (0.5 h) there is transport between Golgi compartments, and the 56-nm diameter vesicles fuse with the cisternae.

Animals↗

Postnatal development of the rat sublingual glands. A morphometric and radioautographic study.

The postnatal development of rat sublingual glands was analyzed by morphometric and radioautographic studies. The absolute number of each cell type was evaluated by the Aherne II morphometric method for cell counting and labeling indices of these cell types were determined in radioautographs from animals injected with 3H-thymidine. The quantitative cell population kinetic studies were accompanied by morphologic analysis of the modifications in each gland structure. The data concerning evolution of number of each cell type were submitted to analysis by least squares fit-exponential curve. The exponential equations duplication times for the acinar, serous demilune, intercalated duct, striated duct and stroma cells from 2 to 30 days of age were 7.5, 9.0, 10.8 and 9.5 days, respectively. On the other hand, the mean labeling indices for the same cell types during the same period were 9.5%, 5.8%, 7.2%, 3.3% and 4.3%, respectively. Thus, the intercalated duct cells exhibited the second highest labeling index and the slowest growth rate, while the striated duct cells showed the lowest labeling index and the third highest duplication time. The fact that the striated duct cell labeling index does not explain the relatively short duplication time of these cells, suggests that cells from other neighboring morphologic compartments, probably from intercalated duct, migrate and differentiate into striated ducts cells.

Aging↗

Effect of oxytocin on transepithelial transport of water and Na+ in distinct ventral regions of frog skin (Rana catesbeiana).

Thoracic, abdominal, and pelvic fragments of ventral skin of Rana catesbeiana were analysed regarding the effect of oxytocin on: (1) transepithelial water transport; (2) short-circuit current; (3) skin conductance and electrical potential difference; (4) Na+ conductance, the electromotive force of the Na+ transport mechanism, and shunt conductance; (5) short-circuit current responses to fast Na+ by K+ replacement in the outer compartment, and (6) epithelial microstructure. Unstimulated water and Na+ permeabilities were low along the ventral skin. Hydrosmotic and natriferic responses to oxytocin increased from thorax to pelvis. Unstimulated Na+ conductance was greater in pelvis than in abdomen, the other electrical parameters being essentially similar in both skin fragments. Contribution of shunt conductance to total skin conductance was higher in abdominal than in pelvic skin. Oxytocininduced increases of total skin conductance, Na+ conductance, and shunt conductance in pelvis were significantly larger than in abdomen. An oscillatory behaviour of the short-circuit current was observed only in oxytocin-treated pelvic skins. Decrease of epithelial thickness and increase of mitochondria-rich cell number were observed from thorax to pelvis. Oxytocin-induced increases of interspaces were more conspicuous in pelvis and abdomen than in thorax.

Animals↗

In human hepatocellular carcinoma cells the total membrane surface area of each major organelle is a particular allometric function of the cytoplasmic volume. A morphometric study.

Morphometric analysis by both light and electron microscopy was performed in cells from five cases of human, hepatocellular carcinoma (HCC) and in three control cases. In each case, three fragments were examined individually and the following morphometric parameters evaluated: a) nuclear, cytoplasmic and cell volumes; b) volume density and absolute volume of the rough ER, smooth ER, mitochondria, Golgi apparatus, peroxisomes, dense bodies and cytoplasmic matrix; c) surface density, surface/ volume ratio, and total surface area of rough ER, smooth ER and outer mitochondrial membranes. The parameters obtained from HCC cases showed ample scatter of data, all control values lying within the interval between the extreme values for the various parameters. Both the original and the logarithmically transformed data on volume and total membrane surface area of organelles (y) and of the cytoplasmic volume (x) were regressed using first degree regression equations. The original values for volume and total surface area of rough ER, total ER and mitochondria were linearly related to the corresponding values for cytoplasmic volume. The allometric analysis carried out with the logarithms also revealed significant regressions between cytoplasmic volume and smooth ER parameters not detectable when using the original x and y values. It showed, in addition, that in progressively larger cytoplasmic volumes, the cisternae of both rough and smooth ER tend to appear more compacted and a higher portion of the total ER membrane tends to be constituted of smooth ER. Within the wide range of variation in cytoplasmic volume of the HCC cells, the volume and total surface of the organelles do not vary randomly. These data indicate that in the small, normal-sized and large tumoral cells the mechanisms responsible for the cytoplasmic volume and for the corresponding total volume and membrane surface area of each major organelle are interdependent. Such an interdependence gives no support to ideas implying that the variation in size of cancer cells, an element of pleomorphism, would result of anarchical intracellular synthetic and/or degradative conditions.

Carcinoma, Hepatocellular↗

Inverted ductal papilloma of minor salivary gland origin: morphological aspects and cytokeratin expression.

Ultrastructural features and cytokeratin expression of inverted ductal papillomas of minor salivary gland origin were studied. Under the electron microscope, an increased number of desmosomes and mucus-like granules in some cells were the most striking features. Immunohistochemical study revealed that tumor cells displayed strongly positive reactions with cytokeratins 13 and 14, and less strong reactions with cytokeratins 7, 8, 18 and 5D3. These results support the hypothesis that an inverted ductal papilloma can be derived from the proximal portion of a salivary gland excretory duct.

Adult↗