Biomedical subjects
S Salmen
Publications and source records attributed to S Salmen.
[Control of inhaled triggering factors decreases prolonged drug therapy requirements in patients with asthma].
The past decade of research has led to a greater understanding of the pathogenesis of asthma and, in particular, the pivotal role of the underlying inflammatory process. Along with inheritance in atopic patients, the presence of inhaled triggering allergens are considered the predominant predisposing factors in the development of the disease. We have conducted a longitudinal clinical therapeutic study, which included 45 pediatrics patients with asthma, in order to evaluate whether the removal of any potential inhaled triggering factor, could decrease the requirement of drug based anti-inflammatory therapy. Patients admitted in this study presented at least, two monthly asthma attacks during the last four months. A single treatment with theophylline (group A), beclomethasone (group B) or salbutamol (group C), was prescribed during the first 2 weeks, along with specific instructions to avoid inhaled allergens. Regardless of the drug used, patients showed impressive and prolonged clinical improvement during 6 months, reduction of total IgE serum levels in the three groups (p < 0.02; 0.005 and 0.02 respectively) and favorable modification of force expiratory volume at the first second, forced vital capacity and flow expiratory peak. During the observation period a constant monitoring of mites allergens concentrations was performed, showing a decrease of these antigens, associated with clinical improvement, and only in those patients who remained symptomatic (group A 31%, group B 29% and group C 9%), failures performing the measures designed to reduce their exposure to environmental allergens, was demonstrated. These results suggest that reduction of inhaled triggering factors may decrease the requirement of anti-inflammatory drug therapy to control the symptoms in patients with asthma.
Autosomal recessive chronic granulomatous disease caused by novel mutations in NCF-2, the gene encoding the p67-phox component of phagocyte NADPH oxidase.
Chronic granulomatous disease (CGD) is a rare inherited immunodeficiency disease that leads to severe recurrent infections. CGD is caused by defects in the phagocyte NADPH oxidase, a multiprotein enzyme that reduces oxygen to superoxide, a precursor of microbicidal oxidants. Less than 6% of CGD patients have an autosomal recessive form of the disease caused by mutations in NCF-2. This gene encodes p67-phox, a cytosolic oxidase subunit that associates with membrane-bound flavocytochrome b558 and regulates electron transfer. We studied six patients from five families with p67-phox deficiency and identified seven different mutant alleles. Patients from three of the kindreds were homozygous for their respective mutation, although the parents of only one family were known to be related. Five of the mutations have not previously been identified: (1) a missense mutation (383C-->T) in exon 5, (2) a nonsense mutation (196C-->T) in exon 3, (3) a missense mutation (230G-->A) in exon 3, (4) a nonsense mutation (298C-->T) in exon 4, and (5) a dinucleotide deletion (835-836 AC) from exon 9. Phagocytes from each of the patients analyzed failed to generate a measurable respiratory burst and had no detectable p67-phox protein. Our results further demonstrate that there is great heterogeneity among the mutations in p67-phox-deficient CGD patients, with no evidence for mutational hot-spots or a founder effect. Our data also support the hypothesis that the stability of p67-phox is particularly sensitive to missense mutations that cause amino acid substitutions within its N-terminal domain. In contrast, mutations predicting single amino acid changes elsewhere in the protein generally represent benign polymorphisms.
Effect of human immunodeficiency virus type 1 on intracellular activation and superoxide production by neutrophils.
The immunopathogenesis of AIDS is associated with the development of opportunistic infections by intracellular pathogens that can invade and reproduce freely because of impaired cellular functions. Neutrophils from asymptomatic human immunodeficiency virus (HIV) type 1-infected persons and from symptomatic patients with AIDS were found to retain normal phagocytosis activity while producing significantly less superoxide than neutrophils from HIV-1-negative subjects, when stimulated through Fc receptors or protein kinase C. After priming with a synthetic HIV-1 envelope peptide and stimulation via the Fc receptor, the neutrophils from HIV-1-negative controls had suppressed superoxide production, reduced phosphorylation of two unidentified cellular proteins, and increased expression of a third phosphoprotein. These results suggest that HIV-1 can produce direct functional damage of neutrophils through binding of envelope components to the cell membrane.
[The NADPH-oxidase complex in chronic granulomatous disease: preliminary description of a cluster in Mérida-Venezuela].
Chronic Granulomatous Disease (CGD) is a primary immunodeficiency characterized by an unusual predisposition to develop bacterial and fungal infections due to a failure of phagocytic leukocytes to generate superoxide, required for the intracellular killing of microorganisms. The lack of superoxide production is secondary to a defect in the NADPH-oxidase enzymatic complex activation, as a result of mutations of any of the components. Both, X-linked and autosomal recessive patterns of inheritance have been demonstrated in this disease, being the X-linked the most frequent and characterized by mutations in gp91phox. Mutations in p47phox, p67phox and p22phox have been shown in the autosomal recessive pattern. The molecular and genetic characteristic of NADPH-oxidase complex and its pathology in CGD are reviewed along with a brief description of the preliminary findings in two families from Mérida, Venezuela.
Dermatophagoides sp. and IgE anti-D. pteronyssinus and D. farinae detection in a Venezuelan community at more than 2000 m above the sea level.
BACKGROUND: It has been reported that the concentration of Dermatophagoides sp. population, the main trigger of asthma in sensitized atopic subjects, is inversely related with altitude and probably directly with humidity and that this population are scarcely found over 1750 m above sea level. OBJECTIVE: We studied the presence of Dermatophagoides sp. in a Venezuelan community between 2040 and 2600 m above sea level, and also the IgE response to D. pteronnyssinus and D. farinae in atopic subjects living on that region. METHODS: The presence of Dermatophagoides sp. was determined by microscopic identification of mites in dust, obtained by brushing the mattresses surface in 93 randomly selected houses between 2040 and 2600 m above sea level. The indoor relative humidity was also measured. The specific IgE serum levels were studied in 65 subjects classified as asthmatics, allergic non-asthmatics and non-allergic. RESULTS: A mean concentration of 188 mites/g of room dust was determined in 82.4% of houses with an indoor relative humidity ranging from 89% and 92% independently of altitude. The density of Dermatophagoides sp. was sufficiently high to sensitize the atopic subjects, IgE levels were 6.8 PRU mean value for asthmatic, against 0.38 PRU in non-atopic. CONCLUSIONS: We conclude that: (a) Dermatophagoides sp. can be found up to 2600 m above sea level in a Venezuelan neotropical region where a high indoor relative humidity is characteristic of most dwellings; (b) sensitization by D. pteronyssinus and D. farinae were demonstrated in atopic subjects resident at that region.
Induction of anergy in resting human T lymphocytes by immobilized anti-CD3 antibodies.
How the T cell receptor (TcR)/CD3 complex mediates not only the induction of T cell activation but also suppressive effects like T cell anergy or apoptosis is not well understood. Here we describe a series of preincubation and restimulation experiments which demonstrate that primary stimulation of resting, unseparated human T cells with mitogenic doses of immobilized anti-CD3 antibodies induces hyporesponsiveness upon restimulation of the cells. Various costimuli can prevent this type of anergy to a variable degree if present during the preincubation period, phorbol 12-myristate 13-acetate (PMA) being the most and anti-CD4 antibody the least effective. If employed together with anti-CD3 antibody during the restimulation phase of the assay, interleukin (IL)-2, IL-4 and anti-CD28 antibody break anergy almost completely. Proliferation induced by a submitogenic dose of anti-CD3 antibody supplemented by costimulatory signals (anti-CD2, anti-CD4, anti-CD28, IL-2, IL-4 or PMA) does not result in hyporesponsiveness. Taken together, these results support a modified view of the two-signal model for T cell activation according to which anergy induction in resting T cells occurs if primary proliferation is induced by high density triggering of the TcR/CD3 complex in the absence of accessory signals. We discuss possible implications of these findings for the induction of peripheral tolerance.
[Prevalence of antibodies against hepatitis C virus in multitransfused patients].
We have done a study in order two know the prevalence of anti-hepatitis C virus antibodies in polytransfused patients with hemophilia, leukemia and hemolytic anemia, along with 17 healthy donors, without previous history of transfusions. We analyzed samples from 10 hemophilic patients and 12 from leukemia, lymphoma and hemolytic anemia, all of them had received blood or blood products, at least six months before the study. Using a second generation ELISA, 4 positive sample (3 hemophilic and 1 lymphoma) were detected (10.26%), which represent a prevalence of 30% in the hemophilic group, in contrast with the prevalence detected in other countries. A very significant statistic association was demonstrated, between the positive ELISA, the amount of the transfused product (P < 0.0004) and the type of blood product used for transfusion (crioprecipited, P = 0.000, plasma P = 0.000).