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Biomedical subjects

C L Galli

Publications and source records attributed to C L Galli.

At least 37 records · Page 2Linked to original sources

Epidermal cytokines in experimental contact dermatitis.

Topical exposure to a variety of xenobiotics may result in irritant as well as allergic contact dermatitis both in rodents and in humans. Despite their induction by different mechanisms, they cannot be differentiated by macroscopic appearance and, by histological examination they are both generally characterized by a perivascular mononuclear cell infiltrate and capillary hyperpermeability. Recently, cytokines, a family of inducible glycoproteins that play a pivotal role in immune and inflammatory reactions, have been identified as useful tools for differentiation of irritant and allergic contact dermatitis. In this article the role of cytokines in the development and differentiation of irritant and allergic contact dermatitis is discussed.

Animals↗

Dying neural cells activate glia through the release of a protease product.

The close relationship between neurodegeneration and gliosis could play a relevant role in propagating the degenerative event in the brain. Although there is evidence of the neurotoxicity of activated glia, the ability of damaged neurons to modulate glial response remains unexplored. Exposure of primary glial cells to damaged or dead hippocampal neurons was followed by glial release of tumor necrosis factor-alpha (TNF-alpha). This release was reduced by a partial prevention of neural death. By contrast, no TNF-alpha was released when glial cells were exposed to damaged murine fibroblasts. Exposure of glial cells to the cerebrospinal fluid (CSF) of patients with Alzheimer's disease was also followed by TNF-alpha release, while the CSF of subjects with nondegenerative brain disorders evoked no response. These data suggest that damaged neurons both in vitro and in vivo release factor(s) that activate glial response. Heat treatment of sonicated neurons or use of a mixture of protease inhibitors, among them the caspase inhibitors Z-DEVD-FMK and Z-YVAD-FMK, prevented TNF-alpha release from glial cells. We conclude that a primary neurodegenerative event may induce glial response by releasing a neurospecific protein factor via activation of a caspase.

Alzheimer Disease↗

Evaluation of the presence of bovine proteins in human milk as a possible cause of allergic symptoms in breast-fed children.

BACKGROUND: It is generally believed that the elimination of certain foods from the diet of mothers during the lactation period produces a significant improvement in breast-fed children who develop allergic symptoms. Several studies have shown the presence of food proteins in human milk; on the other hand, no study has been able to correlate unequivocally the presence of these allergens in human milk with newborn sensitization. OBJECTIVE: The aim of this study was to evaluate the presence of bovine proteins in breast milk. METHODS: Milk samples were separated by sodium dodecyl sulfate polyacrylamide gel electrophoresis (SDS-PAGE). To detect bovine proteins in human milk, immunoblotting was performed by using monoclonal antibodies (MA) specific for beta-lactoglobulin and bovine caseins. RESULTS: The results of this study do not confirm the presence of bovine proteins in breast milk suggested by other authors and shows unequivocally that the conflicting results reported in the literature about the presence of betalactoglobulin in human milk are due to cross-reactivity between bovine milk proteins and human proteins. CONCLUSIONS: Components other than bovine betalactoglobulin or caseins could be involved in the induction of allergic symptoms in exclusively breast-fed children.

Adult↗

Patulin in apple-based foods: occurrence and safety evaluation.

Patulin is a mycotoxin produced by certain species of Penicillium and Aspergillus, often detectable in mouldy fruits and their derivatives. On the basis of a PMTDI of 0.4 microgram/kg bw, limit values of 50 micrograms/kg or 50 micrograms/l of patulin have been set in fruit derivatives. To estimate the quantity of patulin that can be taken in with the diet, we analysed by HPLC samples of apples and apple derivatives which are most likely to be contaminated with patulin. In apple juices and in homogenized baby-foods, the mycotoxin concentration was always below the established limits, while in some samples of juice with pulp the mycotoxin content exceeded the safe levels. In rotten apples, not only was the amount of patulin extraordinarily high in the rotten area, but the mycotoxin had also spread to the part unaffected by mould. The data presented in this study indicate that the intake of patulin with apple derivatives is usually below the tolerable level of 0.4 microgram/kg bw/day, but since the patulin content in apples can vary considerably, the quality of fruits used in the production of apple derivatives should be strictly controlled in order not to exceed the safe limits.

Chromatography, High Pressure Liquid↗

Proteolysis of alphas-casein as a marker of Grana Padano cheese ripening.

Since casein proteolysis has a critical role in defining the typical characteristics of Grana Padano cheese, we evaluated the hydrolysis of alphas-casein during the ripening process. Thanks to the high specificity of the anti-alphas((alphas1 + alphas2)-casein monoclonal antibody and amino acid sequence determination, it was possible to identify three main alphas-casein-derived polypeptides in cheese: alphaa, alphab, and alphac. Their production by the three enzymes most involved in cheese proteolysis (pepsin, chymosin, and plasmin) was evaluated by performing in vitro digestions. Data showed that alphaa was released in cheese mainly by the chymosin attack, while alphab and alphac were due to the action of plasmin. A significant correlation between the abundance of some polypeptides and ripening process was shown.

Amino Acid Sequence↗

Liquid chromatographic determination of imazosulfuron in drinking water and in soil using ultraviolet detection.

Reversed-phase liquid chromatography (LC) is used to determine a relatively new sulfonylureic herbicide, imazosulfuron, 1-(2-chloroimidazo-[1,2-a] pyridin-3-ylsulfonyl)-3-(4,6-dimethoxy-2-pyrimidinyl)-urea (TH-913), in drinking water and in soil. TH-913 is extracted from water using solid-phase extraction on C18 bonded silica. Soil samples (20 g) are extracted with 300 ml of methanol-water (50:50) and the acidified extracts are transferred onto Sep-Pak C18 and processed as described for water samples. Off-line desorption is done with 20 ml of methanol-water (50:50). The eluate is evaporated to dryness, the residue dissolved in acetonitrile and analysed by LC with UV detection at 238 nm. The recoveries of TH-913 from water were over 95% (at 0.05 microg/l level) and from soil over 90% (at 0.005 mg/kg level).

Chromatography, Liquid↗

A defective protein kinase C anchoring system underlying age-associated impairment in TNF-alpha production in rat macrophages.

The ability of macrophages to secrete cytokines is important in host responses to infections inflammatory stimuli, both of which are altered with aging. In this study, age-associated changes in the release of TNF-alpha from LPS-stimulated rat alveolar macrophages were determined and correlated with a decrease in the level of RACK1, the anchoring protein involved in protein kinase C translocation and activation. Macrophages from aged rats produced approximately 50% less TNF-alpha than those from young rats. This effect was observed independently from the concentration of LPS used and the time considered. The decrease observed was associated with a defective PKC translocation, due to a reduction in the expression of RACK1, whereas no differences were detected in the expression of LPS receptor (CD14) or total PKC isoforms (alpha and betaIotaIota) in old and young rats. Use of RACK1 antisense oligonucleotide reduced the ability of young macrophages to respond to LPS, further supporting the idea that a deficit in RACK1 contributes to the functional impairment in aged macrophages and that age-induced macrophage immunodeficiencies are associated with alteration in signal transduction pathways.

Aging↗

Cross-reactivity between milk proteins from different animal species.

BACKGROUND: Cow's milk allergy is quite frequent in the first years of human life. When breast-feeding is not possible, a cow's milk substitute must be provided for allergic subjects. Different alternatives to cow's milk have been suggested as protein sources (soy, hydrolysed proteins, goat's milk, etc.), but all these dietetic solutions are not without risks for polyallergic or more sensitive subjects. OBJECTIVE: To obtain new information on the suitability of other mammalian milks for allergic children, we evaluated the cross-reactivity between milk proteins from different animal species. METHODS: Milk samples were analysed by sodium dodecyl sulphate polyacrylamide gel electrophoresis (SDS-PAGE). To detect antibody-antigen complexes, immunoblotting was performed by using sera from children allergic to cow's and ewe's milk (RAST class >/= 4) and monoclonal antibodies (MoAb) specific for bovine proteins (caseins and beta-lactoglobulin). RESULTS: IgEs from children allergic to cow's milk are capable of recognizing most part of milk proteins from mammals bred in European countries (ewe, goat, buffalo), while no serum used in this study contains IgEs reacting with camel's milk proteins. Camel's milk was also not recognized from circulating IgEs from a child specifically allergic to ewe's milk. Specific antibovine monoclonal antibodies cross-reacted with proteins from other mammalian species, apart from those of camel. CONCLUSIONS: Homologies in amino acidic composition could justify the cross-reactivity observed between proteins from different animal species. On the other hand, the phylogenetic difference could be responsible for the failed recognition of camel's proteins by circulating IgEs and monoclonal antibodies.

Animals↗

Sodium arsenate induces overproduction of interleukin-1alpha in murine keratinocytes: role of mitochondria.

It has recently been demonstrated that arsenic induces overexpression of keratinocyte-derived growth factors, which are likely to have a significant role in arsenic-induced skin hyperkeratoses and cancer. The mechanism(s) involved in this induction are, however, still elusive. The purpose of this study was to investigate the early intracellular events that follow in vitro treatment with sodium arsenate in a murine keratinocyte cell line (HEL30), which leads to cytokine overproduction. First, we observed that sodium arsenate induced a concentration-dependent production of interleukin-1alpha and a significant increase in cell proliferation, that could be suppressed by the addition of a neutralizing antibody against murine interleukin-1alpha, confirming the ability of arsenic to induce keratinocyte growth-promoting cytokines. Electron microscopic analysis revealed that arsenate induced a dramatic alteration in keratinocyte mitochondria. This effect could be prevented by rotenone pretreatment, which suggests the possible involvement of mitochondria-derived reactive oxygen species. Arsenic induced a concentration- and time-dependent increase in cellular oxidative activity, which was followed by activation of redox-sensitive transcription factors such as nuclear factor-kappaB and activator protein-1, that are essential for interleukin-1alpha synthesis. Prior treatment with rotenone or prolonged treatment with ethidium bromide, an inhibitor of mitochondrial DNA and RNA synthesis, to deplete cells of functional mitochondria, completely prevented sodium arsenate-induced interleukin-1alpha production, this indicates the pivotal role of these organelles in sodium arsenate-induced keratinocyte growth factors.

Animals↗

Protein profiles in breast milk from mothers delivering term and preterm babies.

During the last few years, advances in the care of low-birth-weight and preterm neonates has stimulated research on the best dietetic program to improve survival and to reduce handicap incidence. At present, fortification of human milk with artificial formulas is the most usual dietetic solution. As yet, however, little is known about the composition of milk from mothers giving birth prematurely. The aim of this study was the quantification of different proteins in human milk during the lactation period. By use of an electrophoretic method, lactoferrin (LF), alpha-lactalbumin, beta-casein, and lysozyme concentrations were measured in milk from mothers delivering normally (TM) or prematurely (PM). LF concentration in milk from TM presented higher values in the very first days and a fast decrease to d 10. After d 10, the concentration reached a plateau. In milk from PM, the LF concentration in the first days was lower than for TM. Similar profiles of alpha-lactalbumin, beta-casein, and lysozyme concentrations were found in milk from TM and PM. A general higher variability in PM samples was observed both between different mothers and for the same woman during the lactation period. Lactation profiles for four human milk proteins are described here. No significant difference was observed (apart from LF in the very first days) between preterm and term milk samples, confirming the unsuitability of unfortified breast milk for preterm neonates.

Birth Weight↗

Cytokines and irritant contact dermatitis.

Skin irritation is a complex phenomenon that involves resident epidermal cells, fibroblasts of dermis, and endothelial cells as well as invading leukocytes interacting with each other under the control of a network of cytokines and lipid mediators. Keratinocytes play an important role in the initiation and perpetuation of skin inflammatory reactions through the release of, and responses to cytokines. While resting keratinocytes produce some cytokines constitutively, a variety of environmental stimuli, such as tumor promoters, ultraviolet light and chemical agents, can induce epidermal keratinocytes to release inflammatory cytokines (IL-1, TNF-alpha), chemotactic cytokines (IL-8, IP-10), growth promoting cytokines (IL-6, IL-7, IL-15, GM-CSF, TGF-alpha) and cytokines regulating humoral vs. cellular immunity (IL-10, IL-12, IL-18). The role of cytokines in xenobiotics-induced skin irritation and the early molecular events that follow the treatment with irritant compounds will be discussed.

Calcium↗

Selective induction of cell-associated interleukin-1alpha in murine keratinocytes by chemical allergens.

Cytokines may be useful tools to discriminate between irritant and allergic contact dermatitis. In the mouse only, it has been demonstrated by other, that contact sensitizers up-regulated keratinocytes-derived interleukin-1alpha (IL-1), macrophage inflammatory protein-2 and interferon induced protein 10 mRNAs. The purpose of this study was to investigate the possibility to use in vitro IL-1 production by a murine keratinocyte cell line for preliminary screening of chemicals for their irritant and/or allergic potential. We investigated the effects of five relevant skin allergens (dinitrochlorobenzene, oxazolone, nickel sulfate, penicillin G and eugenol), two skin irritants (benzalkonium chloride, and methylsalicilate) and two compounds with no sensitizing activity (glycerol and ethanol) on IL-1 production in HEL30 cells. Twenty four hours following treatment, both IL-1 release in conditioned media and cell-associated IL-1 were measured by a specific sandwich ELISA. Under our experimental conditions, only contact sensitizers were able to increase in a dose dependent fashion cell-associated IL-1, confirming the in vivo findings. Both skin irritants and allergens induced the release of IL-1, because of the irritative properties of both chemicals, while ethanol and glycerol failed to induce changes in IL-1 production, confirming the specificity of the proposed test. Taken together, these data indicate that it may be realistic to consider potential skin allergens those chemicals which are able to increase cell-associated IL-1, to consider skin irritants those chemicals which induce only IL-1 release, and to exclude as potential allergens or irritants those chemicals which fail to induce changes in IL-1 production.

Allergens↗

Glia increase degeneration of hippocampal neurons through release of tumor necrosis factor-alpha.

This study characterizes the role of glial cells in chemically induced neurodegeneration. We evaluated the effect of trimethyltin, a trisubstituted organotin compound that elicits distinct lesions in the central nervous system in vivo, on a sandwich co-culture of neurons and glia. Exposure of a 98% pure culture of rat hippocampal neurons to 0.1-1 microM trimethyltin for 24 h caused neural cell death and nuclear changes typical of apoptosis; at these doses glial cells viability was not affected but the cells released significant amounts of tumor necrosis factor-alpha (TNF-alpha). Neuronal apoptosis and TNF-alpha release from glial cells both increased when the two cell types were exposed together to trimethyltin, which indicates synergy. Treatment of a neuron-glia co-culture with TNF-alpha antibody prevented the increase in neuronal apoptosis, and TNF-alpha administration induced apoptosis in hippocampal cells. We conclude that glial cells and TNF-alpha both modulate trimethyltin-induced neurodegeneration.

Animals↗

Heat treatment modifies the allergenicity of beef and bovine serum albumin.

The effect of heat on the allergenicity of beef and bovine serum albumin was investigated among 10 toddlers skin prick test (SPT)-positive to raw and cooked beef. The meat-allergy diagnosis was confirmed during double-blind, placebo-controlled food challenge (DBPCFC) with 180 g of beef cooked for 5 min at 100 degrees C. SPT with homogenized and freeze-dried beef, and heated and unheated bovine serum albumin were performed. Both heated and unheated bovine serum albumin, homogenized beef, and freeze-dried beef were used in trial DBPCFC. All children were SPT-positive to unheated bovine serum albumin. Seven were positive to heated bovine serum albumin, one to freeze-dried beef, and none to homogenized beef. DBPCFCs were negative for homogenized beef and freeze-dried beef, positive for unheated bovine serum albumin in five patients, and positive for heated albumin in four children. We conclude that heating reduces sensitization to beef and bovine serum albumin but does not abolish reactivity to albumin under home conditions. However, industrially heat-treated and sterilized homogenized beef and freeze-dried beef may be suitable substitutes in beef-allergic children's diets.

Allergens↗

Effects of structure modifications on IgE binding properties of serum albumins.

BACKGROUND: Bovine serum albumin (BSA) is one of the most widely studied proteins; its structure is well-known and its antigenic characteristics have been described in studies performed in in vitro and animal models. The aim of our work was to evaluate the role of BSA conformation in its antigenicity (recognition by circulating IgEs from allergic children). METHODS: This study was performed using electrophoresis associated with the immunoblotting technique, where sera from children sensitized to BSA (as shown by double-blind placebo-controlled food challenge) were used. RESULTS AND DISCUSSION: Heat treatment and chemical denaturation (SDS treatment) are not able to decrease the BSA capability to bind circulating IgEs. Only by reducing treatment with 2-mercaptoethanol is it possible to modify but not to eliminate the antigenicity of this protein. The reactivity to other serum albumins from different animal species was also investigated and in this study we show a direct correlation between the number of IgE-mediated responses observed in immunoblotting and the percentage of sequence identity (phylogenetic similarity) of serum albumins. CONCLUSION: Data obtained in this research indicate that serum albumin antigenicity is only partially correlated to its native three-dimensional structure.

Amino Acid Sequence↗

Role of mitochondria and calcium ions in tributyltin-induced gene regulatory pathways.

Tributyltin (TBT) salts are potent skin irritants both in humans and rodents. Data in the literature indicate mitochondria as target of TBT effects. Here, we investigate the early intracellular molecular events that follow TBT treatment and the relevance of calcium ions and mitochondria in gene-regulatory signaling pathways. Confluent HEL30 cells were treated with increasing doses of TBT (0-5 microM). At different times thereafter, the level of intracellular Ca2+, the cellular oxidative activity, nuclear factor-kappaB (NF-kappaB) activation, and IL-1alpha production were measured. TBT induced a dose-related increase of intracellular Ca2+ that reached the plateau 4 min following treatment. The increase of intracellular Ca2+ was followed by an increase in cellular oxidative activity as measured by DCFH oxidation (15 min) that preceded NF-kappaB activation (30 min) and IL-1alpha production (4 hr). All these events can be almost completely abrogated by BAPTA, an intracellular Ca2+ chelator. Furthermore, the modulation of cellular oxidative activity induced by TBT observed with rotenone, an inhibitor of the electron entry from complex I to ubiquinone, or after prolonged treatment with ethidium bromide, an inhibitor of mitochondrial DNA and RNA synthesis, indicates mitochondria as an important intracellular source of reactive oxygen species. These findings indicate the rise in intracellular Ca2+ as the starting event and indicate the role of mitochondria as the source of second messenger molecules essential for TBT-induced NF-kappaB activation and IL-1alpha production.

Analysis of Variance↗

Thyroid peroxidase as toxicity target for dithiocarbamates.

In vivo ethylenebisdithiocarbamates and ETU are toxic to the thyroid gland. Since the molecular target of these compounds is thought to be thyroid peroxidase (TPO) which catalyzes the transfer of iodine to thyroglobulin, we examined the effect of these compounds on peroxidative activity in Chinese hamster ovary (CHO) cells transfected with the human TPO gene. The activity was inhibited by 50 microM ETU, 5 microM ziram and 5 microM zineb, the last-mentioned effect being irreversible in the absence of iodide. Thiram had no effect. By contrast, the iodinating activity of TPO was blocked only by 5 microM ETU and 50 microM zineb but not by the other compounds. The effect on TPO-catalysed iodination could explain the differences in thyrotoxicity of these compounds in vivo.

Animals↗

Effect of technological treatments on digestibility and allergenicity of meat-based baby foods.

OBJECTIVE: When suitability prepared according to particular characteristics of hygiene and digestibility, meat is an important food for human weaning. The present knowledge on meat digestibility and allergenicity are not enough to justify removal of meat from a child's diet when there is risk but no clinical evidence of allergy. Based on these considerations, the role of technological treatments on digestibility and allergenicity of meat-based baby foods is considered. SUBJECTS: Eight children (five males and three females) suffering from atopic dermatitis (AD), aged 3.8 to 7.1 years (mean age 4.86 +/- 1.10 years). STUDY DESIGN AND METHODS: An in vitro multienzymatic digestibility assay was used to evaluate proteolysis in meat samples (from four different animal species). The experimental design included raw, steam-cooked (home-made and industrial cooking), homogenized (strained) and freeze-dried meat samples. Skin prick test (SPT) was performed to evaluate positive responses to meat samples (raw, cooked, strained and freeze-dried) from four animal species. RESULTS: Our data indicate that enzymatic attack is strongly affected by heat treatment as shown in steam-cooked meat samples. On the other hand, blending, homogenization and freeze-drying processes are able to partially reverse the phenomenon. Data on modification of sodium dodecyl sulfate-polyacrylamide gel rlectrophoresis (SDS-PAGE) protein pattern during the multienzymatic assay are reported. Cooking and technological treatments reduce positive responses obtained in SPT. CONCLUSIONS: Technological treatments improve digestibility and reduce antigenicity of meat products.

Animals↗