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Biomedical subjects

Alkis Togias

Publications and source records attributed to Alkis Togias.

At least 19 recordsLinked to original sources

Upper airway microbiome interacts with GSDMB and ORMDL3 asthma risk SNPs to influence early-life wheeze risk.

BACKGROUND: Single-nucleotide polymorphisms (SNPs) in the chromosome 17q12-q21 region and, independently, early-life nasal microbiota dominated by Moraxella, Streptococcus, or Haemophilus (MSH) increase risk of chronic wheeze and asthma development. OBJECTIVE: We sought to determine whether 17q12-q21 risk SNPs and nasal microbiota interact to modulate childhood wheeze risk. METHODS: Nasal wash samples from 12-month-old infants in 2 birth cohorts, COAST (Childhood Origins of Asthma; n = 180) and URECA (Urban Environment and Childhood Asthma; n = 139), underwent 16S ribosomal RNA variable region 4 sequencing. Nasal microbiota dominated by MSH or Corynebacterium, Dolosigranulum, Staphylococcus, or Bacillus (CDSB) were assessed. Paired blood was genotyped for 9 17q12-q21 risk SNPs. Logistic regression tested interactions between 17q12-q21 SNPs and MSH or CDSB on wheeze risk in the first 3 years of life. A549 lung epithelial cells, CRISPR-edited to encode the rs7216389 risk genotype (rs7216389TT) were compared to the heterozygous (rs7216389CT) line using bulk RNA sequencing. RESULTS: SNPs, particularly those in the ORMDL3 (rs8076131; odds ratio [OR]: 1.72; 95% CI: 1.09-2.71; Pint = .031) and GSDMB (rs2305480; OR: 1.72; 95% CI: 1.09-2.71; Pint = 0.042; and rs7216389; OR: 1.73; 95% CI: 1.09-2.70; Pint = .047) genes, interact with MSH microbiota to increase early-life wheeze risk (false discovery rate Pint = .016 for all), while interactions with CDSB reduce risk. A549 airway epithelial cells homozygous for rs7216389TT exhibited decreased expression of genes involved in antimicrobial responses and neutrophil recruitment and evidence increased microbial adherence compared with the heterozygous cell line. CONCLUSION: Airway microbiota interact with SNPs at the 17q12-q21 locus in genes involved in sphingolipid metabolism and intracellular antimicrobial responses, to modulate wheeze risk.

Humans↗

Deep inspiration-induced changes in lung volume decrease with severity of asthma.

We have previously reported that the magnitude of deep inspiration (DI)-induced bronchodilation is only slightly reduced in mild asthmatics, compared to healthy subjects. The aim of this study was to evaluate whether increased severity of asthma is associated with impairment in the ability of DI to induce changes in lung volume. Thirty-six consecutive asthmatics recruited from the Pulmonary and the Allergy Outpatient Clinics of the Institute of Respiratory Diseases of the University of Palermo were divided into 3 groups: Intermittent (I), Mild Persistent (MP) and Moderate-Severe (MS), based on GINA guidelines. Single dose methacholine (Mch) bronchoprovocations were performed in the absence of DI, to induce at least 15% reduction in inspiratory vital capacity (IVC) from baseline. The post-Mch IVC was followed by 4 consecutive DI and by another IVC, to determine the bronchodilatory effect of DI. The bronchodilatory effect of DI was found to significantly decrease with increasing severity of asthma (I: 68+/-5.4%, MP: 45+/-7.2%, MS: 4+/-15.6%; ANOVA: P<0.0001). Bronchodilation by DI, but not FEV(1) or FEV(1)/FVC, was also inversely correlated to symptom scores (r=-0.42, P=0.01) and to weekly salbutamol usage (r=-0.47, P=0.004). These observations provide support to the hypothesis that the attenuation of the bronchodilatory effect of DI contributes to the severity of the clinical manifestations of asthma.

Adolescent↗

A graphical assessment of p-values from sliding window haplotype tests of association to identify asthma susceptibility loci on chromosome 11q.

BACKGROUND: Past work on asthmatic African American families revealed a strong linkage peak with modest evidence of association on chromosome 11q. Here, we perform tests of association for asthma and a panel of 609 SNPs in African American subjects using a sliding window approach. While efficient in screening a region of dense genotyping, this approach does create some problems: high numbers of tests, assimilating thousands of results, and questions about setting priorities on regions with association signals. RESULTS: We present a newly developed tool, Graphical Assessment of Sliding P-values or GrASP, which uses color display to indicate the width of the sliding windows, significance of individual tests, density of SNP coverage and location of known genes that simplifies some of these issues, and use it to identify regions of interest in these data. CONCLUSION: We demonstrate that GrASP makes it easier to visualize, summarize and prioritize regions of interest from sliding window haplotype analysis, based jointly on the p-value from all the tests from these windows and the building of haplotypes of significance in the region. Using this approach, five regions yielded strong evidence for linkage and association with asthma, including the prior peak linkage region.

Black or African American↗

Localization of nerve growth factor and its receptors in the human nasal mucosa.

BACKGROUND: Nerve growth factor (NGF) is a pluripotent mediator, the levels of which are elevated in nasal lavage fluids of individuals with allergic rhinitis at baseline. Levels of NGF increase after allergen challenge. OBJECTIVE: In the current study, we tested the hypotheses that mast cells are the main source of human nasal NGF, and that NGF can potentially affect mucosal elements other than nerves. METHODS: Immunostaining with antibodies against NGF, tryptase, CD3, eosinophil cationic protein, and the high-affinity (tyrosine kinase A) and low-affinity (p75) receptors for NGF was performed by using human nasal turbinate sections. RESULTS: Double immunofluorescence staining demonstrated NGF in only 2% (median) (1.3, 2.3; 25th, 75th percentiles) of mast cells, 0.2% (0, 0.4) of T cells, but in 62.2% (56.5, 68) of activated eosinophils. With immunohistology, NGF expression was consistently strongest in the submucosal glands and lesser in the epithelial lining. Both high-affinity and low-affinity receptors for NGF were localized not only on nerves, as expected, but also on nasal epithelium, submucosal glands, and some interstitial cells, but not on vascular endothelium. CONCLUSION: This study demonstrates that submucosal glands, nasal epithelium, and eosinophils constitute the major sources of NGF in the human nasal mucosa. That NGF receptors are found in cells other than nerves supports the notion that the role of this neurotrophin is broader than simple modulation of the sensorineural system. CLINICAL IMPLICATIONS: The distribution of NGF and its receptors and its established release during allergic reactions suggest that this factor participates in the pathophysiology of allergic rhinitis.

CD3 Complex↗

Epithelial shedding is associated with nasal reactions to cold, dry air.

BACKGROUND: Cold, dry air (CDA) can cause symptoms of rhinitis and obstructive airway responses. The pathophysiology of these reactions is not understood. One hypothesis is that the respiratory mucosa of individuals with CDA sensitivity cannot compensate for the loss of water that occurs on exposure to the stimulus, leading to epithelial damage. OBJECTIVE: To test for an association between nasal reactions to CDA and the number of epithelial cells recovered in nasal fluids. METHODS: Ten CDA-sensitive subjects received nasal provocations with CDA and warm, moist air; 10 CDA-insensitive subjects received CDA; and 10 subjects with allergic rhinitis received allergen and diluent challenges. Nasal lavage cytology was performed at baseline and after the challenge. Symptoms were recorded and histamine, [3H]-N-alpha-tosyl-L-arginine methyl ester-esterase activity, tryptase, and albumin were assayed in nasal lavages. RESULTS: A 6-fold increase in nasal lavage epithelial cells was found in the CDA-sensitive group after CDA (P < .01), but not after warm, moist air. No changes were observed in the CDA-insensitive group, or after allergen or diluent in allergic rhinitis. CONCLUSION: Epithelial cell shedding accompanies clinical responses to CDA in the human nose. This supports the hypothesis that the airway mucosa of CDA-sensitive individuals cannot compensate for the water loss that occurs under extreme conditions leading to epithelial damage. CLINICAL IMPLICATIONS: A defect in mucosal water homeostasis may need to be considered in individuals who get excessive nasal symptoms when exposed to cold and dry, windy environment.

Adult↗

The structural basis of airways hyperresponsiveness in asthma.

We hypothesized that structural airway remodeling contributes to airways hyperresponsiveness (AHR) in asthma. Small, medium, and large airways were analyzed by computed tomography in 21 asthmatic volunteers under baseline conditions (FEV1 = 64% predicted) and after maximum response to albuterol (FEV1 = 76% predicted). The difference in pulmonary function between baseline and albuterol was an estimate of AHR to the baseline smooth muscle tone (BSMT). BSMT caused an increase in residual volume (RV) that was threefold greater than the decrease in forced vital capacity (FVC) because of a simultaneous increase in total lung capacity (TLC). The decrease in FVC with BSMT was the major determinant of the baseline FEV1 (P < 0.0001). The increase in RV correlated inversely with the relaxed luminal diameter of the medium airways (P = 0.009) and directly with the wall thickness of the large airways (P = 0.001). The effect of BSMT on functional residual capacity (FRC) controlled the change in TLC relative to the change in RV. When the FRC increased with RV, TLC increased and FVC was preserved. When the relaxed large airways were critically narrowed, FRC and TLC did not increase and FVC fell. With critical large airways narrowing, the FRC was already elevated from dynamic hyperinflation before BSMT and did not increase further with BSMT. FEV1/FVC in the absence of BSMT correlated directly with large airway luminal diameter and inversely with the fall in FVC with BSMT. These findings suggest that dynamic hyperinflation caused by narrowing of large airways is a major determinant of AHR in asthma.

Adrenergic beta-Agonists↗

Rhinosinusitis: developing guidance for clinical trials.

The Rhinosinusitis Initiative was developed by 5 national societies. The current guidance document is an expansion of the 2004 publication "Rhinosinusitis: Establishing definitions for clinical research and patient care" and provides templates for clinical trials in antimicrobial, anti-inflammatory, and symptom-relieving therapies for the following: (1) acute presumed bacterial rhinosinusitis, (2) chronic rhinosinusitis (CRS) without nasal polyps, (3) CRS with nasal polyps, and (4) classic allergic fungal rhinosinusitis. In addition to the templates for clinical trials and proposed study designs, the Rhinosinusitis Initiative has developed 6 appendices, which address (1) health outcomes, (2) nasal endoscopy and staging of CRS, (3) radiologic imaging, (4) microbiology, (5) laboratory measures, and (6) biostatistical methods.

Chronic Disease↗

The role of the nervous system in rhinitis.

The nose provides defensive and homeostatic functions requiring rapid responses to physical and chemical stimuli. As a result, it is armed with a complex nervous system that includes sensory, parasympathetic, and sympathetic nerves. Sensory nerves transmit signals from the mucosa, generating sensations, such as pruritus; motor reflexes, such as sneezing; and parasympathetic and sympathetic reflexes that affect the glandular and vascular nasal apparatuses. Reflexes directed to the nose are also generated by inputs from other body regions. Hence all symptoms that constitute the nosologic entity of rhinitis can be triggered through neural pathways. In addition, neural signals generated in the nose can influence distal physiology, such as that of the bronchial tree and the cardiovascular system. Neural function can be chronically upregulated in the presence of mucosal inflammation, acutely with an allergic reaction, or even in the absence of inflammation, as in cases of nonallergic rhinitis. Upregulation of the nasal nervous system can occur at various levels of the reflex pathways, resulting in exaggerated responses (neural hyperresponsiveness), as well as in increased capacity for generation of neurogenic inflammation, a phenomenon that depends on the release of neuropeptides on antidromic stimulation of nociceptive sensory nerves. The molecular mechanisms of hyperresponsiveness are not understood, but several inflammatory products appear to be playing a role. Neurotrophins, such as the nerve growth factor, are prime candidates as mediators of neural hyperresponsiveness. The many interactions between the nervous and immune systems contribute to nasal physiology but also to nasal disease.

Humans↗

Rhinosinusitis: Developing guidance for clinical trials.

The Rhinosinusitis Initiative was developed by 5 national societies. The current guidance document is an expansion of the 2004 publication, "Rhinosinusitis: Establishing definitions for clinical research and patient care" and provides templates for clinical trials in antimicrobial, anti-inflammatory, and symptom-relieving therapies for the following: (1) acute presumed bacterial rhinosinusitis, (2) chronic rhinosinusitis (CRS) without nasal polyps, (3) CRS with nasal polyps, and (4) classic allergic fungal rhinosinusitis. In addition to the templates for clinical trials and proposed study designs, the Rhinosinusitis Initiative has developed 6 appendices, which address (1) health outcomes, (2) nasal endoscopy and staging of CRS, (3) radiologic imaging, (4) microbiology, (5) laboratory measures, and (6) biostatistical methods.

Chronic Disease↗

Inhaled corticosteroids and the beneficial effect of deep inspiration in asthma.

Deep inspiration-induced bronchoprotection and bronchodilation are impaired in asthma. We evaluated the effect of inhaled glucocorticosteroids on these phenomena. Two groups of subjects with asthma, 9 with moderate/severe hyperresponsiveness to methacholine, and 12 with mild/borderline hyperresponsiveness to methacholine, received inhaled fluticasone (880 microg daily) for 12 weeks. Serial bronchoprovocations were performed at Weeks 0, 6, and 12. The impact of deep inspirations on the airway response to methacholine was evaluated on the basis of inspiratory vital capacity and FEV(1). Fluticasone produced a wide spectrum of changes in the beneficial effects of deep inspiration, but the mean changes were not significant. The magnitude of the steroid-induced changes in bronchoprotection by deep inspiration correlated with baseline log PC(20) (the provocative concentration of methacholine causing a 20% fall in FEV(1); higher log PC(20) predicted improvement of the deep inspiration effect). The steroid-induced changes led to the emergence of strong positive correlations between the effects of deep inspiration and the methacholine log PC(20) that did not exist at baseline. We conclude that deep inspiration-induced bronchoprotection can be restored by inhaled glucocorticosteroids only in individuals with mild hyperresponsiveness. After steroid treatment, the beneficial effects of deep inspiration become significant determinants of the magnitude of airway hyperresponsiveness.

Administration, Inhalation↗

Association between reduced bronchodilatory effect of deep inspiration and loss of alveolar attachments.

BACKGROUND: We have previously shown that the bronchodilatory effect of deep inspiration is attenuated in individuals with COPD. This study was designed to investigate whether the impairment in this effect is associated with loss of alveolar attachments. METHODS: We measured deep inspiration (DI)-induced bronchodilation in 15 individuals with and without COPD (67 +/- 2.2 yrs of age, mean +/- SEM) undergoing lobar resection for peripheral pulmonary nodule. Prior to surgery, we measured TLCO and determined the bronchodilatory effect of deep inspiration after constricting the airways with methacholine. The number of destroyed alveolar attachments, as well as airway wall area and airway smooth muscle area, were determined in tumor-free, peripheral lung tissue. RESULTS: The bronchodilatory effect of deep inspiration correlated inversely with the % destroyed attachments (r = -0.51, p = 0.05) and directly with the airway smooth muscle area (r = 0.59, p = 0.03), but not with the total wall area (r = 0.39, p = 0.15). CONCLUSION: We postulate that attenuation of airway stretch due to loss of alveolar attachments contributes to the loss of the bronchodilatory effect of lung inflation in COPD.

Aged↗

Objective monitoring of nasal patency and nasal physiology in rhinitis.

Nasal obstruction can be monitored objectively by measurement of nasal airflow, as evaluated by nasal peak flow, or as airways resistance/conductance as evaluated by rhinomanometry. Peak flow can be measured during inspiration or expiration. Of these measurements, nasal inspiratory peak flow is the best validated technique for home monitoring in clinical trials. The equipment is portable, relatively inexpensive, and simple to use. One disadvantage, however, is that nasal inspiratory peak flow is influenced by lower airway as well as upper airway function. Rhinomanometry is a more sensitive technique that is specific for nasal measurements. The equipment, however, requires an operator, is more expensive, and is not portable. Thus, it is applicable only for clinic visit measures in clinical trials. Measurements require patient cooperation and coordination, and not all can achieve repeatable results. Thus, this objective measure is best suited to laboratory challenge studies involving smaller numbers of selected volunteers. A nonphysiological measure of nasal patency is acoustic rhinometry. This sonic echo technique measures internal nasal luminal volume and the minimum cross-sectional area. The derivation of these measures from the reflected sound waves requires complex mathematical transformation and makes several theoretical assumptions. Despite this, however, such measures correlate well with the nasal physiological measures, and the nasal volume measures have been shown to relate well to results obtained by imaging techniques such as computed tomography scanning or magnetic resonance imaging. Like rhinomanometry, acoustic rhinometry is not suitable for home monitoring and can be applied only to clinic visit measures or for laboratory nasal challenge monitoring. It has advantages in being easy to use, in requiring little patient cooperation, and in providing repeatable results. In addition to nasal obstruction, allergic rhinitis is recognized to be associated with impaired mucociliary clearance and altered nasal responsiveness. Measures exist for the monitoring of these aspects of nasal dysfunction. Although measures of mucociliary clearance are simple to perform, they have a poor record of reproducibility. Their incorporation into clinical trials is thus questionable, although positive outcomes from therapeutic intervention have been reported. Measures of nasal responsiveness are at present largely confined to research studies investigating disease mechanisms in allergic and nonallergic rhinitis. The techniques are insufficiently standardized to be applied to multicenter clinical trials but could be used in limited-center studies to gain insight into the regulatory effects of different therapeutic modalities.

Humans↗

Genetic variants of the T-cell immunoglobulin mucin 1 but not the T-cell immunoglobulin mucin 3 gene are associated with asthma in an African American population.

BACKGROUND: The T-cell immunoglobulin mucin ( TIM ) proteins and their genetic variants have been suggested to play a role in regulating allergic diseases. OBJECTIVE: Genetic association of the sequence variants for TIM-1 and TIM-3 genes with asthma in an African American population was investigated. METHODS: Both case-control and family-based association analyses were performed for a total of 7 polymorphisms, including 3 single nucleotide polymorphism (SNPs) and 1 insertion/deletion polymorphism in the TIM-1 and 3 SNPs in the TIM-3 genes. The exposure to hepatitis A virus as judged by seropositivity was also examined. RESULTS: In the case-control design, the frequencies of the TT genotype for SNP rs2277025 and the homozygous deletion variant (157delMTTTVP) in the fourth exon of the TIM-1 gene were higher among patients with patients with asthma compared with the controls (odds ratio [OR], 2.779, P = .016; and OR, 3.09, P = .022, respectively). This association was substantiated by haplotype analysis of these and 2 additional SNPs (OR, 2.48; P = .004), and also by family-based tests for the allele and haplotype carrying 157delMTTTVP (P = .009 and P = .048, respectively). Furthermore, this association seems to exist even in the hepatitis A virus-seronegative subjects in our data. None of the 3 variants in TIM-3 genes yielded significant association with either asthma or asthma-related phenotypes. CONCLUSION: Our findings suggest that the genetic variants of the TIM-1 but not the TIM-3 gene contribute to asthma susceptibility in this African-American population.

Adult↗

Reduced airway responsiveness in nonelite runners.

PURPOSE: The effects of endurance training on airway responsiveness in nonasthmatic subjects are poorly defined. We hypothesized that airway responsiveness may differ between none-lite endurance athletes and sedentary subjects, and studied healthy, nonelite runners and sedentary controls by single-dose methacholine challenges carried out in the absence of deep inspirations, in that deep inspirations are known to oppose airway narrowing in nonasthmatic subjects. METHODS: A total of 20 nonasthmatic none-lite runners (mean age+/- SD: 43.0+/- 8.5 yr; training volume: 68 km.wk; range: 40-100; racing experience: 11+/- 8 yr) and 20 sedentary controls (age: 44.0+/- 20.6 yr) were studied, all of them being normo-reactive to standard methacholine challenge up to 25 mg.mL concentration. All subjects were studied at rest; six runners were also studied about 1 h after completing the Palermo marathon (December 8, 2001). The primary outcome of the study was the inspiratory vital capacity (IVC) obtained after single-dose methacholine inhalation at the end of 20 min of deep inspiration prohibition. RESULTS: At rest, IVC decreased by 10.5+/-8.1% after challenge with methacholine at 75 mg.mL in athletes, and by 24.3+/-16.1% after a methacholine concentration of 52+/-5.7 mg.mL in sedentary controls (P=0.002). The decreased response to methacholine in runners did not correlate with static lung volumes, amount of weekly training, or running experience. CONCLUSION: Methacholine challenge under deep inspiration prohibition revealed that endurance training attenuates airway responsiveness in nonasthmatic, none-lite runners. Airway hyporesponsiveness was potentiated after the marathon, suggesting involvement of humoral (i.e., catecholamine levels), airway factors (i.e., nitric oxide), or both in modulating airway tone after exercise.

Adult↗

Sequence variants of the gene encoding chemoattractant receptor expressed on Th2 cells (CRTH2) are associated with asthma and differentially influence mRNA stability.

The gene, CRTH2, encoding a receptor for prostaglandin D(2) (PGD(2)), is located within the peak linkage region for asthma on chromosome (Chr.) 11q reported in African American families. Family-based analysis of asthma and two common SNPs [G1544C and G1651A (rs545659)] in the 3'-untranslated region of CRTH2 showed significant evidence of linkage in the presence of disequilibrium for the 1651G allele (P = 0.003) of SNP rs545659. Haplotype analysis yielded additional evidence of linkage disequilibrium for the 1544G-1651G haplotype (P < 0.001). Population-based case-control analyses were conducted in two independent populations, and demonstrated significant association of the 1544G-1651G haplotype with asthma in an African American population (P = 0.004), and in a population of Chinese children (P < 0.001). Moreover, in the Chinese children the frequency of the 1651G allele in near-fatal asthmatics was significantly higher than mild-to-moderate asthmatics (P = 0.001) and normal controls (P < 0.001). The 1651G allele of SNP re545659 was also associated with a higher degree of bronchial hyperresponsiveness (P < 0.027). Transcriptional pulsing experiments showed that the 1544G-1651G haplotype confers a significantly higher level of reporter mRNA stability, when compared with a non-transmitted haplotype (1544C-1651A), suggesting that the CRTH2 gene on Chr. 11q is a strong candidate gene for asthma.

3' Untranslated Regions↗

The role of lung inflation in airway hyperresponsiveness and in asthma.

Airway hyperresponsiveness (AHR) is a fundamental phenomenon in asthma that can explain many aspects of the clinical manifestations of the disease. Several theories on the mechanisms of AHR have been proposed, but the true nature of this problem is yet to be defined. During the past decade, the role of lung inflation in airway physiology and its relationship to AHR have attracted major attention. Deep inspirations are known to exert strong beneficial effects on the airways of healthy humans. These effects appear to be of dual nature: bronchoprotective and bronchodilatory. The bronchoprotective effect of deep inspiration is lost in asthma, even in mild disease. It is also lost in individuals with rhinitis and AHR, but no asthma. Therefore, the loss of bronchoprotection is related to AHR. The bronchodilatory effect of deep inspiration is somewhat reduced in mild asthma and is only lost in severe disease, in the presence of significant airway obstruction. Current research is focused on the elucidation of the physiologic mechanisms behind lung inflation-induced bronchoprotection and bronchodilation and on the causes of their loss. This information could open new horizons in asthma therapy and prevention.

Airway Obstruction↗