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Biomedical subjects

J Mallol

Publications and source records attributed to J Mallol.

At least 37 records · Page 2Linked to original sources

Worldwide variations in the prevalence of symptoms of atopic eczema in the International Study of Asthma and Allergies in Childhood.

BACKGROUND: Little is known about the prevalence of atopic eczema outside Northern Europe. OBJECTIVES: We sought to describe the magnitude and variation in the prevalence of atopic eczema symptoms throughout the world. METHODS: A cross-sectional questionnaire survey was conducted on random samples of schoolchildren aged 6 to 7 years and 13 to 14 years from centers in 56 countries throughout the world. Those children with a positive response to being questioned about the presence of an itchy relapsing skin rash in the last 12 months that had affected their skin creases were considered to have atopic eczema. Children whose atopic eczema symptoms resulted in sleep disturbance for 1 or more nights per week were considered to have severe atopic eczema. RESULTS: Complete data was available for 256,410 children aged 6 to 7 years in 90 centers and 458,623 children aged 13 to 14 years in 153 centers. The prevalence range for symptoms of atopic eczema was from less than 2% in Iran to over 16% in Japan and Sweden in the 6 to 7 year age range and less than 1% in Albania to over 17% in Nigeria for the 13 to 14 year age range. Higher prevalences of atopic eczema symptoms were reported in Australasia and Northern Europe, and lower prevalences were reported in Eastern and Central Europe and Asia. Similar patterns were seen for symptoms of severe atopic eczema. CONCLUSIONS: Atopic eczema is a common health problem for children and adolescents throughout the world. Symptoms of atopic eczema exhibit wide variations in prevalence both within and between countries inhabited by similar ethnic groups, suggesting that environmental factors may be critical in determining disease expression. Studies that include objective skin examinations are required to confirm these findings.

Adolescent↗

Expression of A2B adenosine receptors in human lymphocytes: their role in T cell activation.

Extracellular adenosine has a key role in the development and function of the cells of the immune system. Many of the adenosine actions seem to be mediated by specific surface receptors positively coupled to adenylate cyclase: A2A and A2B. Despite the fact that A2A receptors (A2ARs) can be easily studied due to the availability of the specific agonist CGS21680, a pharmacological and physiological characterization of adenosine A2B receptors (A2BRs) in lymphocytes has not been possible due to the lack of suitable reagents. Here we report the generation and characterization of a polyclonal antipeptide antibody raised against the third extracellular loop of the A2BR human clone which is useful for immunocytochemical studies. This antibody has permitted the detection of A2BR+ cells in lymphocyte samples isolated from human peripheral blood. The pharmacology of cAMP-producing compounds is consistent with the presence of functional A2BRs but not of A2A receptors in these human cells. The percentage of A2BR-expressing cells was similar in the CD4(+) or CD8(+) T cell subpopulations. Interestingly activation signals delivered by either phytohemagglutinin or anti-T cell receptor/CD3 complex antibodies led to a significant increase in both the percentage of cells expressing the receptor and the intensity of the labeling. These receptors are functional since interleukin-2 production in these cells is reduced by NECA but not by R-PIA or CGS21680. These results show that A2BR expression is regulated in T cell activation and suggest that the role of adenosine in lymphocyte deactivation is mediated by A2BRs.

Adenosine↗

Adenosine deaminase and A1 adenosine receptors internalize together following agonist-induced receptor desensitization.

A1 adenosine receptors (A1Rs) and adenosine deaminase (ADA; EC 3.5.4. 4) interact on the cell surface of DDT1MF-2 smooth muscle cells. The interaction facilitates ligand binding and signaling via A1R, but it is not known whether it has a role in homologous desensitization of A1Rs. Here we show that chronic exposure of DDT1MF-2 cells to the A1R agonist, N6-(R)-(phenylisopropyl)adenosine (R-PIA), caused a rapid aggregation or clustering of A1 receptor molecules on the cell membrane, which was enhanced by pretreatment with ADA. Colocalization between A1R and ADA occurred in the R-PIA-induced clusters. Interestingly, colocalization between A1R and ADA also occurred in intracellular vesicles after internalization of both protein molecules in response to R-PIA. Agonist-induced aggregation of A1Rs was mediated by phosphorylation of A1Rs, which was enhanced and accelerated in the presence of ADA. Ligand-induced second-messenger desensitization of A1Rs was also accelerated in the presence of exogenous ADA, and it correlated well with receptor phosphorylation. However, although phosphorylation of A1R returned to its basal state within minutes, desensitization continued for hours. The loss of cell-surface binding sites (sequestration) induced by the agonist was time-dependent (t1/2= 10 +/- 1 h) and was accelerated by ADA. All of these results strongly suggest that ADA plays a key role in the regulation of A1Rs by accelerating ligand-induced desensitization and internalization and provide evidence that the two cell surface proteins internalize via the same endocytic pathway.

Adenosine↗

Dipropylcyclopentylxanthine triggers apoptosis in cells from patients with myeloid leukaemia.

1,3-Dipropyl-8-cyclopentylxanthine (DPCPX), a xanthine analogue used as a selective antagonist of adenosine receptors, caused apoptosis in a variety of leukaemia-derived cell lines as well as in cells from patients with myeloid leukaemia. Apoptosis was assessed by flow cytometry, by DNA fragmentation and by accumulation of histones, H2A, H2B, R3 and H4, in the nucleoplasm of cells. Cell cycle analysis indicated that apoptosis occurred irrespective of the cell cycle phase. DPCPX did not trigger apoptosis in resting human peripheral blood lymphocytes; neither did it potentiate the apoptotic effect of phytohemagglutinin (PHA), when these cells were activated by PHA. These results indicate that DPCPX may be useful in the therapy of proliferative disorders of the hematopoietic system.

Journal Article↗

Cell surface adenosine deaminase: much more than an ectoenzyme.

During the last 10 years, adenosine deaminase (ADA), an enzyme considered to be cytosolic, has been found on the cell surface of many cells, therefore it can be considered an ectoenzyme. EctoADA, which seems to be identical to intracellular ADA and has a globular structure, does not interact with membranes but with membrane proteins. Two of these cell surface receptors for ectoADA have been identified: CD26 and A1 adenosine receptors (A1R). Apart from degradation of extracellular adenosine another functional role of ectoADA has been assigned. EctoADA is able to transmit signals when interacting with either CD26 or A1R. In this way, it acts as a co-stimulatory molecule which facilitates a variety of specific signalling events in different cell types. The heterogeneous distribution of the enzyme in the nervous system indicates that ectoADA may be a neuroregulatory molecule. On the other hand, ectoADA might act as a bridge between two different cells thus raising the possibility that it may be important for the development of the nervous system.

Adenosine Deaminase↗

Calcium mobilization in Jurkat cells via A2b adenosine receptors.

1. A functional study of cell surface A2b adenosine receptors was performed on the T cell leukaemia line, Jurkat. 2. A2b receptors were coupled both to the adenylate cyclase system and to intracellular calcium channels. In fact, the agonist of A2b receptors, 5'-N-ethylcarboxamidoadenosine (NECA), led to a transient accumulation of intracellular calcium by an inositol phosphate-independent mechanism. 3. The NECA-induced accumulation of cGMP was not responsible for the calcium mobilization via A2b receptors. 4. The calcium response elicited by activation of A2b receptors was independent of that evoked by activation of the T cell receptor. 5. These findings not only delineate a novel transduction mechanism for adenosine but also support a specific role for adenosine in modulating signals elicited via the T cell receptor.

Adenosine-5'-(N-ethylcarboxamide)↗

Dipropylcyclopentylxanthine triggers apoptosis in Jurkat T cells by a receptor-independent mechanism.

1,3-Dipropyl-8-cyclopentylxanthine (DPCPX), a xanthine analog used as selective antagonist of adenosine receptors, caused apoptosis in a human leukemia T cell line. Jurkat cells treated with DPCPX underwent apoptosis as demonstrated by flow cytometry, by DNA fragmentation and by accumulation of histones, H2A, H2B, H3 and H4, in the nucleoplasm of cells. Cell cycle and cell sorting analyses indicated an arrest of cells in G(2)/M followed by the appearance of apoptotic cells in G(1) and G(2)/M phases. The mechanism of programmed cell death does not seem to be mediated by signal transduction events at the plasma membrane since it did not involve activation of cell membrane receptors and modification of the intracellular levels of Ca(2+) or cAMP. Apoptosis by incorporation into DNA of a derivative of DPCPX is suggested in basis of the presence of radioactivity label in the DNA obtained from cells preincubated with [(3)H]DPCPX.

Journal Article↗

Modulation of GH4 cell cycle via A1 adenosine receptors.

Identification and characterization of A1 adenosine receptors (A1Rs) in a tumor cell line derived from rat pituitary (GH4 cells) was performed by ligand binding and immunocytochemistry. Subsequently, the involvement of A1Rs in the regulation of cell proliferation was studied in these cells. The agonist N6-(R)-phenylisopropyladenosine (R-PIA) did not modify the number of cultured cells, but it regulated the kinetics of the cell cycle. By means of experiments of pulse and of pulse and chase with bromodeoxyuridine and further labeling with Hoechst 33258, propidium iodide, and/or fluorescein-conjugated antibodies against bromodeoxyuridine, it was demonstrated that R-PIA, via A1Rs, accelerated progression from G0/G1 to S phase and from S to G2/M phase of the cell cycle, whereas the initiation of a new cycle occurred at the same time in treated and untreated cells. As a consequence, R-PIA did not change the total length of the cycle. This is the first description of cell cycle regulation without modification of cell proliferation. Although pertussis toxin blocked the R-PIA-induced inhibition of cyclic AMP production in these cells, it did not affect the R-PIA action on the cell cycle. In contrast, cholera toxin mimicked the action of R-PIA. Thus, it is likely that regulation of the cell cycle via A1Rs is mediated by heterotrimeric G proteins different from those that mediate inhibition of adenylate cyclase. Due to the fact that cells in G0/G1 phase were less susceptible to secretory signals, adenosine, in an autocrine manner and by regulating the cell cycle kinetics, may contribute to the modulation of the secretory capacity of pituitary cells.

Adenosine↗

Regulation of L-type calcium channels in GH4 cells via A1 adenosine receptors.

Identification of A1 adenosine receptors (A1Rs) in a tumor cell line derived from rat pituitary (GH4 cells) was performed by ligand binding and immunological experiments. Subsequently, the involvement of A1Rs in the regulation of calcium conductance was studied in these cells. The agonist N6-(R)-(2-phenylisopropyl)adenosine (R-PIA) did not modify the intracellular calcium basal levels, whereas it inhibited the increase produced by 15 mM KCl depolarization. The antagonist 1,3-dipropyl-8-cyclopentylxanthine led to the opening of voltage-dependent cell surface calcium channels in the absence of exogenous KCl. The channels were of the L type because the effect was abolished by calciseptine and by verapamil. These results suggest that endogenous adenosine exerts a tonic inhibitory effect on calcium transport. This was confirmed by the high adenosine concentration found in cell supernatants (up to 1 microM) and by the calcium mobilization produced by exogenously added adenosine deaminase. In depolarizing conditions, the calcium peak in the presence of adenosine deaminase was reduced when cells were preincubated with R-PIA, thus suggesting that A1R activation regulates the intensity of depolarization. These results demonstrate that adenosine is an important regulator of the physiological state of pituitary tumor cells by modulating, in an autocrine manner, the activity of L-type voltage-dependent calcium channels.

Adenosine↗

Comparison of radiochemical purity control methods for 99Tcm radiopharmaceuticals used in hospital radiopharmacies.

The free fraction of pertechnetate in 99Tcm radiopharmaceuticals has to be tested for quality control reasons in line with the European Pharmacopoeia. Such quality control is often performed by miniaturized chromatographic methods. There are several recommended methods in the literature for quality control of the same radiopharmaceuticals, though it is unlikely that all methods are equivalent. Some of these methods were compared, taking into account different parameters (spot size, time required, analytical artifacts, true separation and shape of the chromatographic peaks, ease of handling), to verify the best method for the control of each radiopharmaceutical. It would appear that instant thin layer chromatography silica gel is the best support for these miniaturized methods, using MEK as solvent to check DTPA, DMSA, gluconate, pyrophosphate, medronate and phytate; NaCl 20% solution is the best solvent for IDA derivatives, human albumin and albumin particles (microspheres, macroaggregates).

Chromatography↗

Worldwide variations in prevalence of symptoms of allergic rhinoconjunctivitis in children: the International Study of Asthma and Allergies in Childhood (ISAAC).

BACKGROUND: As part of the International Study of Asthma and Allergies in Childhood (ISAAC), prevalence surveys were conducted among representative samples of school children from locations in Europe, Asia, Africa, Australia, North and South America. SUBJECTS: 257,800 children aged 6-7 years from 91 centres in 38 countries, and 463,801 children aged 13-14 years from 155 centres in 56 countries. METHODS: Written symptom questionnaires were translated from English into the local language for self-completion by the 13-14-year-olds and completion by the parents of the 6-7-year-olds. Rhinitis was described as a problem with sneezing, or a runny, or blocked nose when you (your child) DID NOT have a cold or the flu. Additional questions were asked about rhinitis associated with itchy-watery eyes, interference with activities and a history of hay fever ever. RESULTS: The prevalence of rhinitis with itchy-watery eyes ("rhinoconjunctivitis") in the past year varied across centres from 0.8% to 14.9% in the 6-7-year-olds and from 1.4% to 39.7% in the 13-14-year-olds. Within each age group, the global pattern was broadly consistent across each of the symptom categories. In centres of higher prevalence there was great variability in the proportion of rhinoconjunctivitis labelled as hay fever. The lowest prevalences of rhinoconjunctivitis were found in parts of eastern Europe, south and central Asia. High prevalences were reported from centres in several regions. CONCLUSION: These results suggest substantial worldwide variations in the prevalence and labelling of symptoms of allergic rhinoconjunctivitis which require further study. These differences, if real, may offer important clues to environmental influences on allergy.

Adolescent↗

Ligand-induced phosphorylation, clustering, and desensitization of A1 adenosine receptors.

Through immunocytochemistry with the use of antibodies against A1 adenosine receptors (A1Rs) and confocal microscopy, we show that stimulation of A1Rs by the agonist (R)-phenylisopropyladenosine [(R)-PIA] caused a rapid (5-15 min) aggregation (clustering) of receptor molecules on the surface of DDT1MF-2 cells. Internalization of the chronically stimulated receptor was slower and occurred concomitantly, with a time-dependent decrease (50%) in the number of cell surface [3H](R)-PIA binding sites. The reduction of binding sites was due partly (30%) to internalization and partly (20%) to the presence of desensitized cell surface receptor molecules that were unable to bind the ligand. Chronic exposure of DDT1MF-2 cells to 50 nM (R)-PIA produced functional desensitization, as deduced from second messenger production assays. Quantification of the content of A1Rs by immunoblotting and flow cytometry in cells pretreated with 50 nM (R)-PIA indicates a time-dependent slow down-regulation of the receptor. Receptor clustering and agonist-induced receptor phosphorylation, which occurred in serine and tyrosine, were simultaneous. The finding that activators of protein kinase A or C were able to induce functional desensitization of A1Rs, phosphorylate A1Rs in serine and threonine, and trigger clustering of the receptor suggests that phosphorylation of A1Rs in serine/threonine is involved in desensitization-related events.

Adenosine↗

[The kinetic characteristics of the erythrocyte glutathione S-transferase system as a function of sex and the tobacco habit].

BACKGROUND: Erythrocytic glutathion S-transferase (GST) plays an important role as a protective mechanism against oxidative stress. The present study was conducted to evaluate the influence of both smoking habit and sex upon the kinetic characteristics of the enzyme. SUBJECTS AND METHODS: 176 healthy subjects (100 men and 76 women), smokers and nonsmokers, were included. Enzyme parameters were calculated in erythrocytic haemolysates using 1-chloro-2,4-dinitrobenzene (CDNB) and glutathion (GSH) as substrates. Haemoglobin (Hb) was removed by affinity chromatography. In samples coming from 51 men and 42 women the native haemolysate was subjected to thermal shock (52 degrees C) and the enzyme parameters were compared with those obtained in the non-denatured samples. RESULTS: In non-denatured samples, Km (mM) and Vmax (mumol/min/g Hb) values for CDNB were significantly higher (p < 0.001) in smokers than in non smokers, especially in women. Thus, respectively for Km and Vmax (mean +/- standard deviation): for men non smokers, 1.43 +/- 0.54, 1.63 +/- 0.42 and smokers, 1.74 +/- 0.5, 1.8 +/- 0.69; for women, non smokers 1.42 +/- 0.56, 1.57 +/- 0.46 and smokers, 2.05 +/- 0.59, 2.51 +/- 0.6. Thermal denaturation diminished the enzyme activity in all cases and modified the Km values, these results were opposite to those obtained in the non-denatured samples. Thus, for Km and Vmax respectively: for men, smokers, 1.6 +/- 0.71 and 0.9 +/- 0.32 and non smokers, 1.4 +/- 0.66 and 0.53 +/- 0.29; for women, non smokers, 2.00 +/- 0.58, 1.13 +/- 0.29 and smokers 1.22 +/- 0.77, 0.52 +/- 0.23. The GSt content was similar in the four groups studied (3.75 +/- 1.15 mumol SH/g Hb). CONCLUSIONS: The greater thermolability of GST activity and the increase in the Km values observed in smokers, especially in women, should be considered as indicative of an increased risk for the erythrocytes against oxidative stress.

Adult↗

The cluster-arranged cooperative model: a model that accounts for the kinetics of binding to A1 adenosine receptors.

To explain the equilibrium binding and binding kinetics of ligands to membrane receptors, a number of models have been proposed, none of which is able to adequately describe the experimental findings, in particular the apparent negative cooperativity of ligand binding. In this paper, a new model, the cluster-arranged cooperative model, is presented whose main characteristic is that it explains the existence of negative cooperativity in the binding of ligands to the receptor molecule. The model is based on our findings of agonist binding to A1 adenosine receptors and of ligand-induced clustering of these receptors on the cell surface. The model assumes the existence of two conformational forms of the receptor in an equilibrium which depends on the concentration of the ligand. In this way, negative cooperativity is explained by the transmission of the information between receptor molecules through the structure of the membrane. The model is able to predict the thermodynamic binding and binding kinetics of [3H]-(R)-(phenylisopropyl)adenosine to A1 adenosine receptors in the presence and absence of guanylyl imidodiphosphate. In the presence of the guanine nucleotide analogue, the linear Scatchard plots obtained for [3H]-(R)-(phenylisopropyl)adenosine binding are explained by the disappearance of cooperativity, thus suggesting that G proteins are important for the existence of negative cooperativity in ligand binding. Among other predictions, the model justifies early events in homologous desensitization since high ligand concentrations would lead to the saturation of the receptor in a low-affinity conformation that does not signal. Our model can likely explain the behavior of a number of heptaspanning and tyrosine-kinase receptors exhibiting complex binding kinetics.

Animals↗

Adenosine deaminase affects ligand-induced signalling by interacting with cell surface adenosine receptors.

Adenosine deaminase (ADA) is not only a cytosolic enzyme but can be found as an ecto-enzyme. At the plasma membrane, an adenosine deaminase binding protein (CD26, also known as dipeptidylpeptidase IV) has been identified but the functional role of this ADA/CD26 complex is unclear. Here by confocal microscopy, affinity chromatography and coprecipitation experiments we show that A1 adenosine receptor (A1R) is a second ecto-ADA binding protein. Binding of ADA to A1R increased its affinity for the ligand thus suggesting that ADA was needed for an effective coupling between A1R and heterotrimeric G proteins. This was confirmed by the fact that ASA, independently of its catalytic behaviour, enhanced the ligand-induced second messenger production via A1R. These findings demonstrate that, apart from the cleavage of adenosine, a further role of ecto-adenosine deaminase on the cell surface is to facilitate the signal transduction via A1R.

Adenosine Deaminase↗

Aerosol deposition in infants with cystic fibrosis.

Twenty asymptomatic infants with cystic fibrosis (CF) were studied to determine the amount of radiolabeled aerosol [99m technetium diethylenetriamine penta acetic acid (Tc99m DTPA)] deposited in the respiratory system and its distribution. Aerosols were generated by jet nebulization systems that were used in the wards and the laboratory. Subjects were studied in three groups: group A (n = 10) was sedated with chloral hydrate; children inhaled an aerosol of 7.7 microns mass median diameter (MMD); group B (n = 5) was not sedated, using the same nebulization system (same aerosol particle size as group A); and group C (n = 5) was not sedated; these children inhaled an aerosol with an MMD of 3.6 microns. Normal saline plus 4 mCi of Tc99m bound to DTPA was added to each nebulizer. A closed system was used to collect the expired aerosol. Radioactivity in each infant and in the equipment was measured with a gamma camera on completion of nebulization. In groups A and B, the percentages of the total dose deposited in the lung were 0.97 +/- 0.35% and 0.76 +/- 0.36%, respectively. In group C, 2.0 +/- 0.71% was deposited in the lung (P < 0.01). Deposition in the nose, mouth, and pharynx was least in group C (P < 0.01). In groups A and B, the intrathoracic deposition occurred predominantly in the trachea and main bronchi, whereas in group C, significantly more aerosol was deposited in the lung region. There was marked inter-subject variability in the percentage of aerosol deposition within the three groups. There was no correlation between percentage of aerosol deposited in the respiratory system and age, height, or weight. Sedation did not have a significant effect on deposition of aerosol in infants. This study indicates that only a small proportion of nebulized solution is deposited in the lungs of infants and that this proportion is influenced by the particle size of the aerosol. The smaller particle size (3.6 microns MMD) was deposited in the lung better than large particles.

Aerosols↗

Adenosine deaminase interacts with A1 adenosine receptors in pig brain cortical membranes.

Adenosine deaminase is an enzyme of purine metabolism that has largely been considered to be cytosolic. A few years ago, adenosine deaminase was reported to appear on the surface of cells. Recently, it has been demonstrated that adenosine deaminase interacts with a type II membrane protein known as either CD26 or dipeptidylpeptidase IV. In this study, by immunoprecipitation and affinity chromatography it is shown that adenosine deaminase and A1 adenosine receptors interact in pig brain cortical membranes. This is the first report in brain demonstrating an interaction between a degradative ectoenzyme and the receptor whose ligand is the enzyme substrate. By means of this interaction adenosine deaminase leads to the appearance of the high-affinity site of the receptor, which corresponds to the receptor-G protein complex. Thus, it seems that adenosine deaminase is necessary for coupling A1 adenosine receptors to heterotrimeric G proteins.

Adenosine Deaminase↗