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1.
Respir Res ; 24(1): 184, 2023 Jul 12.
Article in English | MEDLINE | ID: mdl-37438758

ABSTRACT

Asthma exacerbations in children are associated with respiratory viral infection and atopy, resulting in systemic immune activation and infiltration of immune cells into the airways. The gene networks driving the immune activation and subsequent migration of immune cells into the airways remains incompletely understood. Cellular and molecular profiling of PBMC was employed on paired samples obtained from atopic asthmatic children (n = 19) during acute virus-associated exacerbations and later during convalescence. Systems level analyses were employed to identify coexpression networks and infer the drivers of these networks, and validation was subsequently obtained via independent samples from asthmatic children. During exacerbations, PBMC exhibited significant changes in immune cell abundance and upregulation of complex interlinked networks of coexpressed genes. These were associated with priming of innate immunity, inflammatory and remodelling functions. We identified activation signatures downstream of bacterial LPS, glucocorticoids and TGFB1. We also confirmed that LPS binding protein was upregulated at the protein-level in plasma. Multiple gene networks known to be involved positively or negatively in asthma pathogenesis, are upregulated in circulating PBMC during acute exacerbations, supporting the hypothesis that systemic pre-programming of potentially pathogenic as well as protective functions of circulating immune cells preceeds migration into the airways. Enhanced sensitivity to LPS is likely to modulate the severity of acute asthma exacerbations through exposure to environmental LPS.


Subject(s)
Asthma , Hypersensitivity, Immediate , Humans , Child , Lipopolysaccharides , Leukocytes, Mononuclear , Asthma/diagnosis , Asthma/genetics , Cell Movement , Convalescence
2.
J Med Virol ; 93(6): 3647-3655, 2021 06.
Article in English | MEDLINE | ID: mdl-33314189

ABSTRACT

Altered host immune responses are considered to play a key role in the pathogenesis of acute lower respiratory infections (ALRI). The existing literature on cytokine responses in ALRI is largely focussed on adults from developed countries and there are few reports describing the role of cytokines in childhood ALRI, particularly in African or human immunodeficiency virus (HIV)-infected populations. To measure systemic cytokine levels in blood plasma from young South African children with and without ALRI and with and without HIV to determine associations between cytokine responses and disease status and respiratory viral identification. Blood plasma samples were collected from 106 hospitalized ALRI cases and 54 non-ALRI controls less than 2 years of age. HIV status was determined. Blood plasma concentrations of 19 cytokines, 7 chemokines, and 4 growth factors (epidermal growth factor, fibroblast growth factor-basic, hepatocyte growth factor, and vascular endothelial) were measured using The Human Cytokine 30-Plex Panel. Common respiratory viruses were identified by PCR. Mean cytokine concentrations for G-CSF, interferon (IFN)-γ, interleukin (IL)-5, and MCP-1 were significantly higher in ALRI cases than in nonrespiratory controls. Within the ALRI cases, several cytokines were higher in children with a virus compared with children without a virus. Mean cytokine concentrations for IFN-α, IFN-γ, IL-4, IL-5, IL-13, tumour necrosis factor-α, and MIP-1α were significantly lower in HIV-infected cases than in HIV-uninfected cases, while IP-10 and monokine induced by interferon-γ were significantly higher in HIV-infected cases than in HIV-uninfected cases. Certain cytokines are likely to play an important role in the host immune response to ALRI. HIV-infected children have impaired inflammatory responses to respiratory infections compared with HIV-uninfected children.


Subject(s)
Cytokines/blood , Cytokines/immunology , HIV Infections/immunology , Respiratory Tract Infections/immunology , Acute Disease , Case-Control Studies , Chemokines/blood , Chemokines/immunology , Cytokines/genetics , Female , HIV Infections/blood , Hospitalization/statistics & numerical data , Humans , Infant , Male , Prospective Studies , Respiratory Tract Infections/virology
3.
J Immunol ; 202(6): 1845-1858, 2019 03 15.
Article in English | MEDLINE | ID: mdl-30745463

ABSTRACT

Asthma exacerbations are triggered by rhinovirus infections. We employed a systems biology approach to delineate upper-airway gene network patterns underlying asthma exacerbation phenotypes in children. Cluster analysis unveiled distinct IRF7hi versus IRF7lo molecular phenotypes, the former exhibiting robust upregulation of Th1/type I IFN responses and the latter an alternative signature marked by upregulation of cytokine and growth factor signaling and downregulation of IFN-γ. The two phenotypes also produced distinct clinical phenotypes. For IRF7lo children, symptom duration prior to hospital presentation was more than twice as long from initial symptoms (p = 0.011) and nearly three times as long for cough (p < 0.001), the odds ratio of admission to hospital was increased more than 4-fold (p = 0.018), and time to recurrence was shorter (p = 0.015). In summary, our findings demonstrate that asthma exacerbations in children can be divided into IRF7hi versus IRF7lo phenotypes with associated differences in clinical phenotypes.


Subject(s)
Asthma/genetics , Interferon Regulatory Factor-7/genetics , Respiratory Sounds/genetics , Respiratory Tract Infections , Adolescent , Asthma/immunology , Case-Control Studies , Child , Child, Preschool , Cluster Analysis , Female , Gene Regulatory Networks , Humans , Infant , Infant, Newborn , Male , Phenotype , Respiratory Sounds/immunology , Respiratory Tract Infections/complications , Respiratory Tract Infections/genetics , Respiratory Tract Infections/immunology , Transcriptome
4.
J Med Virol ; 89(4): 582-588, 2017 04.
Article in English | MEDLINE | ID: mdl-27677921

ABSTRACT

Human rhinovirus (RV) is commonly associated with severe acute lower respiratory infections (ALRI) in children. We aimed to describe the distribution of RV species and associations between RV species and clinical features in children hospitalized with clinically severe pneumonia (CSP) in Morocco. Nasopharyngeal aspirates (NPAs) were collected from 700 children, 2-59 months of age, admitted with CSP to the Hôpital d'Enfants de Rabat in Morocco. At least one respiratory virus was identified in 92% of children, of which RV was the most common (53%). PCR assays, sequencing, and phylogenetic tree analyses were carried out on 183 RV-positive NPAs to determine RV species and genotypes. Of 157 successfully genotyped NPAs, 60 (38.2%) were RV-A, 8 (5.1%) were RV-B, and 89 (56.7%) were RV-C. Wheezing and cyanosis were more common in RV-C-positive than RV-A-positive children (80.9% vs. 56.7%; P = 0.001 for wheezing and 10.1% vs. 0%; P = 0.011 for cyanosis). Physician's discharge diagnosis of pneumonia was more frequent among RV-A-positive (40.0%) than RV-C-positive children (20.2%; P = 0.009). RV-A and RV-C showed distinct seasonal patterns. Our findings suggest that RV-C is associated with wheezing illness while RV-A is associated with pneumonia. J. Med. Virol. 89:582-588, 2017. © 2016 Wiley Periodicals, Inc.


Subject(s)
Asthma/virology , Genotype , Picornaviridae Infections/pathology , Picornaviridae Infections/virology , Pneumonia, Viral/virology , Rhinovirus/classification , Rhinovirus/isolation & purification , Child, Preschool , Cyanosis , Female , Hospitalization , Humans , Infant , Male , Morocco , Nasopharynx/virology , Phylogeny , Polymerase Chain Reaction , RNA, Viral/genetics , Respiratory Sounds , Sequence Analysis, DNA
5.
Trop Med Int Health ; 21(9): 1171-80, 2016 09.
Article in English | MEDLINE | ID: mdl-27353724

ABSTRACT

OBJECTIVES: To describe the prevalence of human rhinovirus (RV) species in children hospitalised with pneumonia in Manhiça, Mozambique, and the associations between RV species and demographic, clinical and laboratory features. METHODS: Nasopharyngeal aspirates were collected from children 0 to 10 years of age (n = 277) presenting to Manhiça District Hospital with clinical pneumonia. Blood samples were collected for HIV and malaria testing, blood culture and full blood counts, and a chest X-ray was performed. A panel of common respiratory viruses was investigated using two independent multiplex RT-PCR assays with primers specific for each virus and viral type. RV species and genotypes were identified by seminested PCR assays, sequencing and phylogenetic tree analyses. RESULTS: At least one respiratory virus was identified in 206 (74.4%) children hospitalised with clinical pneumonia. RV was the most common virus identified in both HIV-infected (17 of 38, 44.7%) and HIV-uninfected (74 of 237, 31.2%; P = 0.100) children. RV-A was the most common RV species identified (47 of 275, 17.0%), followed by RV-C (35/275, 12.6%) and RV-B (8/275, 2.9%). Clinical presentation of the different RV species was similar and overlapping, with no particular species being associated with specific clinical features. CONCLUSIONS: RV-A and RV-C were the most common respiratory viruses identified in children hospitalised with clinical pneumonia in Manhiça. Clinical presentation of RV-A and RV-C was similar and overlapping.


Subject(s)
Genotype , Hospitalization , Pneumonia/virology , Rhinovirus/genetics , Child, Preschool , Female , Humans , Infant , Infant, Newborn , Male , Mozambique/epidemiology , Multiplex Polymerase Chain Reaction , Phylogeny , Pneumonia/epidemiology , Prevalence , Species Specificity
6.
J Allergy Clin Immunol ; 134(1): 25-32, 2014 Jul.
Article in English | MEDLINE | ID: mdl-24767874

ABSTRACT

BACKGROUND: Asthma exacerbations are associated with human rhinovirus (HRV) infections, and more severe exacerbations are associated with HRV-C. We have previously shown that the HRV-C-specific antibody response is low in healthy adult sera and that most of the antibody to HRV-C is cross-reactive with HRV-A. OBJECTIVES: To compare the antibody response to each HRV species in asthmatic and nonasthmatic children in whom the type of HRV infection was known. METHODS: Total and specific IgG1 binding to HRV viral capsid protein antigens of HRV-A, -B, and -C were tested in the plasma from nonasthmatic children (n = 47) and children presenting to the emergency department with asthma exacerbations (n = 96). HRV, found in most of the children at the time of their exacerbation (72%), was analyzed using molecular typing. RESULTS: Asthmatic children had higher antibody responses to HRV. The titers specific to HRV-A, and to a lesser extent HRV-B, were higher than in nonasthmatic controls. The species-specific responses to HRV-C were markedly lower than titers to HRV-A and HRV-B in both asthmatic and nonasthmatic children (P < .001). The titers both at presentation and after convalescence were not associated with the HRV genotype detected during the exacerbation. CONCLUSIONS: The higher total anti-HRV antibody titers of asthmatic children and their higher anti-HRV-A and -B titers show their development of a heightened antiviral immune response. The low species-specific HRV-C titers found in all groups, even when the virus was found, point to a different and possibly less efficacious immune response to this species.


Subject(s)
Antibodies, Viral/blood , Asthma/immunology , Immunoglobulin G/blood , Picornaviridae Infections/immunology , Rhinovirus/immunology , Adolescent , Asthma/complications , Asthma/pathology , Asthma/virology , Capsid Proteins/immunology , Child , Child, Preschool , Cross Reactions , Female , Humans , Immunity, Humoral , Infant , Male , Picornaviridae Infections/complications , Picornaviridae Infections/pathology , Picornaviridae Infections/virology , Protein Binding , Rhinovirus/classification , Severity of Illness Index , Species Specificity
7.
Am J Respir Crit Care Med ; 188(11): 1358-64, 2013 Dec 01.
Article in English | MEDLINE | ID: mdl-23992536

ABSTRACT

RATIONALE: Human rhinovirus species C (HRV-C) is the most common cause of acute wheezing exacerbations in young children presenting to hospital, but its impact on subsequent respiratory illnesses has not been defined. OBJECTIVES: To determine whether acute wheezing exacerbations due to HRV-C are associated with increased hospital attendances due to acute respiratory illnesses (ARIs). METHODS: Clinical information and nasal samples were collected prospectively from 197 children less than 5 years of age, presenting to hospital with an acute wheezing episode. Information on hospital attendances with an ARI before and after recruitment was subsequently obtained. MEASUREMENTS AND MAIN RESULTS: HRV was the most common virus identified at recruitment (n = 135 [68.5%]). From the 120 (88.9%) samples that underwent typing, HRV-C was the most common HRV species identified, present in 81 (67.5%) samples. Children with an HRV-related wheezing illness had an increased risk of readmission with an ARI (relative risk, 3.44; 95% confidence interval, 1.17-10.17; P = 0.03) compared with those infected with any other virus. HRV-C, compared with any other virus, was associated with an increased risk of a respiratory hospital admission before (49.4% vs. 27.3%, respectively; P = 0.004) and within 12 months (34.6% vs. 17.0%; P = 0.01) of recruitment. Risk for subsequent ARI admissions was further increased in atopic subjects (relative risk, 6.82; 95% confidence interval, 2.16-21.55; P = 0.001). Admission risks were not increased for other HRV species. CONCLUSIONS: HRV-C-related wheezing illnesses were associated with an increased risk of prior and subsequent hospital respiratory admissions. These associations are consistent with HRV-C causing recurrent severe wheezing illnesses in children who are more susceptible to ARIs.


Subject(s)
Respiratory Hypersensitivity/diagnosis , Respiratory Sounds/etiology , Respiratory Tract Infections/complications , Rhinovirus/classification , Acute Disease , Asthma/diagnosis , Asthma/immunology , Asthma/microbiology , Bronchiolitis/complications , Bronchiolitis/diagnosis , Bronchiolitis/microbiology , Child, Preschool , Disease Progression , Emergency Service, Hospital/statistics & numerical data , Female , Follow-Up Studies , Hospitalization/statistics & numerical data , Hospitals, Pediatric/statistics & numerical data , Humans , Infant , Male , Nasal Mucosa/microbiology , Patient Readmission/statistics & numerical data , Respiratory Hypersensitivity/complications , Respiratory Hypersensitivity/microbiology , Respiratory Tract Infections/microbiology , Rhinovirus/isolation & purification , Risk Assessment , Western Australia
9.
J Pediatr ; 160(1): 82-7, 2012 Jan.
Article in English | MEDLINE | ID: mdl-21855894

ABSTRACT

OBJECTIVE: To examine the influence of viral respiratory infection (VRI) on treatment response in acute asthma in children. STUDY DESIGN: A total of 218 children (mean age, 6.6 years) with acute asthma were recruited. Symptoms were recorded, an asthma severity score was determined, and whenever possible, a per-nasal aspirate was obtained for detection of viruses. Each child's response to inhaled ß(2)-agonists was assessed after 6, 12, and 24 hours. RESULTS: The 168 children with VRI symptoms received more treatment with inhaled ß(2)-agonists after 6 hours (P = .010), 12 hours (P = .002), and 24 hours (P = .0005) compared with the 50 children without such symptoms. Asthma severity did not differ between the 2 groups. A per-nasal aspirate was obtained from 77% of the children. The most frequently identified virus was rhinovirus (61.4%). Among children with symptoms of a VRI, those with rhinovirus had an impaired response to ß(2)-agonists at 6 hours (P = .032). CONCLUSION: Children with acute asthma and symptoms of VRI respond less effectively to ß(2)-agonists after 6, 12, or 24 hours and thus may benefit from more intense therapy and monitoring.


Subject(s)
Adrenergic beta-2 Receptor Agonists/therapeutic use , Asthma/complications , Asthma/drug therapy , Respiratory Tract Infections/complications , Respiratory Tract Infections/virology , Virus Diseases/complications , Acute Disease , Child , Female , Humans , Male , Prospective Studies , Treatment Failure
10.
J Immunol ; 183(4): 2793-800, 2009 Aug 15.
Article in English | MEDLINE | ID: mdl-19620293

ABSTRACT

Severe asthma exacerbations in children requiring hospitalization are typically associated with viral infection and occur almost exclusively among atopics, but the significance of these comorbidities is unknown. We hypothesized that underlying interactions between immunoinflammatory pathways related to responses to aeroallergen and virus are involved, and that evidence of these interactions is detectable in circulating cells during exacerbations. To address this hypothesis we used a genomics-based approach involving profiling of PBMC subpopulations collected during exacerbation vs convalescence by microarray and flow cytometry. We demonstrate that circulating T cells manifest the postactivated "exhausted" phenotype during exacerbations, whereas monocyte/dendritic cell populations display up-regulated CCR2 expression accompanied by phenotypic changes that have strong potential for enhancing local inflammation after their recruitment to the atopic lung. Notably, up-regulation of FcepsilonR1, which is known to markedly amplify capacity for allergen uptake/presentation to Th2 effector cells via IgE-mediated allergen capture, and secondarily programming of IL-4/IL-13-dependent IL-13R(+) alternatively activated macrophages that have been demonstrated in experimental settings to be a potent source of autocrine IL-13 production. We additionally show that this disease-associated activation profile can be reproduced in vitro by cytokine exposure of atopic monocytes, and furthermore that IFN-alpha can exert both positive and negative roles in the process. Our findings suggest that respiratory viral infection in atopic children may initiate an atopy-dependent cascade that amplifies and sustains airway inflammation initiated by innate antiviral immunity via harnessing underlying atopy-associated mechanisms. These interactions may account for the unique susceptibility of atopics to severe viral-induced asthma exacerbations.


Subject(s)
Asthma/immunology , Asthma/virology , Hypersensitivity, Immediate/immunology , Hypersensitivity, Immediate/virology , Immunity, Innate , Inflammation Mediators/metabolism , Signal Transduction/immunology , Acute Disease , Adenovirus Infections, Human/immunology , Adenovirus Infections, Human/metabolism , Adenovirus Infections, Human/pathology , Adolescent , Asthma/pathology , Child , Child, Preschool , Female , Gene Expression Regulation, Viral/immunology , Humans , Hypersensitivity, Immediate/pathology , Immunity, Innate/genetics , Inflammation Mediators/physiology , Influenza, Human/immunology , Influenza, Human/metabolism , Influenza, Human/pathology , Male , Paramyxoviridae Infections/immunology , Paramyxoviridae Infections/metabolism , Paramyxoviridae Infections/pathology , Respiratory Syncytial Virus Infections/immunology , Respiratory Syncytial Virus Infections/metabolism , Respiratory Syncytial Virus Infections/pathology , Signal Transduction/genetics
11.
Pediatr Infect Dis J ; 40(10): 873-879, 2021 10 01.
Article in English | MEDLINE | ID: mdl-34321447

ABSTRACT

BACKGROUND: Acute wheezing is one of the most common hospital presentations for young children. Respiratory syncytial virus (RSV) and rhinovirus (RV) species A, B and the more recently described species C are implicated in the majority of these presentations. However, the relative importance and age-specificities of these viruses have not been defined. Hence, this study aimed to establish these relationships in a large cohort of prospectively recruited hospitalized children. METHODS: The study cohort was 390 children 0-16 years of age presenting with acute wheezing to a children's emergency department, 96.4% being admitted. A nonwheezing control population of 190 was also recruited. Nasal samples were analyzed for viruses. RESULTS: For the first 6 months of life, RSV was the dominant virus associated with wheezing (P < 0.001). From 6 months to 2 years, RSV, RV-A and RV-C were all common but none predominated. From 2 to 6 years, RV-C was the dominant virus detected (50-60% of cases), 2-3 times more common than RV-A and RSV, RSV decreasing to be absent from 4 to 7 years. RV-B was rare at all ages. RV-C was no longer dominant in children more than 10 years of age. Overall, RV-C was associated with lower mean oxygen saturation than any other virus (P < 0.001). Controls had no clear age distribution of viruses. CONCLUSION: This study establishes a clear profile of age specificity of virus infections causing moderate to severe wheezing in children: RSV as the dominant cause in the first 6 months and RV-C in preschool-age children.


Subject(s)
Hospitalization/statistics & numerical data , Respiratory Sounds/etiology , Respiratory Syncytial Virus, Human/pathogenicity , Rhinovirus/pathogenicity , Acute Disease , Adolescent , Age Factors , Child , Child, Preschool , Cohort Studies , Female , Humans , Infant , Infant, Newborn , Male , Nose/virology , Oxygen Saturation , Picornaviridae Infections/complications , Picornaviridae Infections/virology , Prospective Studies , Respiratory Syncytial Virus Infections/complications , Respiratory Syncytial Virus Infections/virology
12.
J Asthma ; 47(9): 1049-56, 2010 Nov.
Article in English | MEDLINE | ID: mdl-20858151

ABSTRACT

BACKGROUND: The glutathione S-transferase enzymes (GSTs) play an important role in the detoxification of environmental tobacco smoke (ETS), which contributes to airway inflammation, a key component of asthma. Genetic variation in GST genes may influence individuals' ability to detoxify environmental pollutants. OBJECTIVE: To examine the role of polymorphisms in GSTP1 (Ile105Val and Ala114Val), alone and in combination with ETS exposure, on atopy and asthma severity. METHODS: GSTP1 Ile105Val and Ala114Val were genotyped and ETS exposure was assessed by parental questionnaire, which was validated by urinary cotinine measurements. Associations between ETS exposure, GSTP1 polymorphisms, and their interaction on atopy and asthma severity were investigated. RESULTS: For the functional GSTP1 105 SNP, those with the Ile/Ile genotype had odds for atopy of 2.77 (p = .054) when assessed by genotype alone, which increased to 9.02 (p = .050) when ETS was included, relative to individuals with other genotypes. Likewise, compared to children with other GSTP1 114 genotypes, those with Ala/Ala genotype had a 5.47-fold (p = .002) increased risk of atopy (p = .020) when assessed by genotype alone, increasing to 9.17-fold when ETS was included. The 105 Ile/Ile individuals all had the AA (105 Ile/Ile and 114 Ala/Ala) haplotype group; therefore, the odds for atopy were the same. Individuals without any *C haplotype (105 Val and 114 Val allele) who were exposed to ETS had a 9.17-fold increased risk of atopy when compared with individuals with at least one *C haplotype and not exposed to ETS (p = .020). CONCLUSION: There were significant interactions between GSTP1 SNPs, atopy, and ETS exposure in this cohort.


Subject(s)
Asthma/genetics , Glutathione S-Transferase pi/genetics , Inhalation Exposure/adverse effects , Tobacco Smoke Pollution/adverse effects , Acute Disease , Adolescent , Anti-Asthmatic Agents/therapeutic use , Asthma/drug therapy , Asthma/etiology , Child , Child, Preschool , Cohort Studies , Cotinine/urine , Female , Haplotypes , Humans , Hypersensitivity, Immediate/etiology , Hypersensitivity, Immediate/genetics , Male , Polymorphism, Single Nucleotide , Severity of Illness Index
13.
PLoS One ; 14(10): e0223990, 2019.
Article in English | MEDLINE | ID: mdl-31622414

ABSTRACT

Acute viral wheeze in children is a major cause of hospitalisation and a major risk factor for the development of asthma. However, the role of the respiratory tract microbiome in the development of acute wheeze is unclear. To investigate whether severe wheezing episodes in children are associated with bacterial dysbiosis in the respiratory tract, oropharyngeal swabs were collected from 109 children with acute wheezing attending the only tertiary paediatric hospital in Perth, Australia. The bacterial community from these samples was explored using next generation sequencing and compared to samples from 75 non-wheezing controls. No significant difference in bacterial diversity was observed between samples from those with wheeze and healthy controls. Within the wheezing group, attendance at kindergarten or preschool was however, associated with increased bacterial diversity. Rhinovirus (RV) infection did not have a significant effect on bacterial community composition. A significant difference in bacterial richness was observed between children with RV-A and RV-C infection, however this is likely due to the differences in age group between the patient cohorts. The bacterial community within the oropharynx was found to be diverse and heterogeneous. Age and attendance at day care or kindergarten were important factors in driving bacterial diversity. However, wheeze and viral infection were not found to significantly relate to the bacterial community. Bacterial airway microbiome is highly variable in early life and its role in wheeze remains less clear than viral influences.


Subject(s)
Bacteria/classification , Dysbiosis/diagnosis , Oropharynx/microbiology , Respiratory Tract Infections/virology , Virus Diseases/complications , Adolescent , Australia , Bacteria/genetics , Child , Child, Preschool , Female , High-Throughput Nucleotide Sequencing , Hospitals, Pediatric , Humans , Infant , Infant, Newborn , Male , RNA, Ribosomal, 16S/genetics , Respiratory Sounds , Respiratory Tract Infections/complications , Tertiary Care Centers
14.
J Asthma ; 45(5): 383-8, 2008 Jun.
Article in English | MEDLINE | ID: mdl-18569231

ABSTRACT

The aim of this study was to determine the influence of single nucleotide polymorphisms in the beta(2)-adrenoceptor gene, on the response to inhaled beta(2)-agonists in children with acute asthma. We hypothesised that children with polymorphisms that generate enhanced receptor downregulation in vitro, Gly16 and Gln27, would have a slower response to beta(2)-agonist therapy during acute asthma. One hundred and forty-eight children with acute asthma were recruited and genotyped for beta(2)Arg16Gly and beta(2)Gln27Glu. For Gln27Glu, individuals Gln27Gln took longest to stretch out to 1, 2 and 4 hourly beta(2)-agonists, followed by heterozygotes who were intermediate and Glu27Glu who responded most rapidly (1 hourly: 2.6 hr vs. 2.0 vs. 1.4, p = 0.02; 2 hourly: 10.6 hr vs. 10.7 vs. 6.8, p = 0.07; 4 hourly: 29.8 hr vs. 28.5 vs. 24.3, p = 0.30). The ability to prospectively identify children who respond less effectively to beta (2)-agonists during an acute asthma attack has the potential to allow the generation of genotype-specific treatment pathways.


Subject(s)
Adrenergic beta-Agonists/administration & dosage , Asthma/drug therapy , Asthma/genetics , Polymorphism, Genetic , Receptors, Adrenergic, beta-2/genetics , Adolescent , Asthma/diagnosis , Asthma/mortality , Child , Child, Preschool , Cohort Studies , Female , Genetic Predisposition to Disease/epidemiology , Humans , Kaplan-Meier Estimate , Male , Predictive Value of Tests , Probability , Receptors, Adrenergic, beta-2/metabolism , Respiratory Function Tests , Retrospective Studies , Risk Assessment , Sensitivity and Specificity , Severity of Illness Index , Survival Analysis , Treatment Outcome
15.
J Clin Virol ; 81: 58-63, 2016 08.
Article in English | MEDLINE | ID: mdl-27317881

ABSTRACT

BACKGROUND: Human rhinovirus (RV) is the most common respiratory virus and has been associated with frequent and severe acute lower respiratory infections (ALRI). The prevalence of RV species among HIV-infected children in South Africa is unknown. OBJECTIVES: To describe the prevalence of respiratory viruses, including RV species, associated with HIV status and other clinical symptoms in children less than two years of age with and without ALRI in Pretoria, South Africa. STUDY DESIGN: Nasopharyngeal aspirates were collected from 105 hospitalized ALRI cases and 53 non-ALRI controls less than two years of age. HIV status was determined. Common respiratory viruses were identified by PCR, and RV species and genotypes were identified by semi-nested PCR, sequencing and phylogenetic tree analyses. RESULTS: Respiratory viruses were more common among ALRI cases than controls (83.8% vs. 69.2%; p=0.041). RV was the most commonly identified virus in cases with pneumonia (45.6%) or bronchiolitis (52.1%), regardless of HIV status, as well as in controls (39.6%). RV-A was identified in 26.7% of cases and 15.1% of controls while RV-C was identified in 21.0% of cases and 18.9% of controls. HIV-infected children were more likely to be diagnosed with pneumonia than bronchiolitis (p<0.01). RSV was not identified in any HIV-infected cases (n=15) compared with 30.6% of HIV-uninfected cases (n=85, p=0.013), and was identified more frequently in bronchiolitis than in pneumonia cases (43.8% vs. 12.3%; p<0.01). CONCLUSIONS: RV-A and RV-C are endemic in South African children and HIV infection may be protective against RSV and bronchiolitis.


Subject(s)
HIV Infections/epidemiology , HIV Infections/virology , Respiratory Tract Infections/epidemiology , Respiratory Tract Infections/virology , Child, Preschool , Coinfection/epidemiology , Coinfection/virology , Female , Humans , Infant , Infant, Newborn , Male , Picornaviridae Infections/epidemiology , Picornaviridae Infections/virology , Prevalence , Prospective Studies , Rhinovirus/genetics , South Africa/epidemiology
16.
Int J Pediatr Child Health ; 3(1): 10-18, 2015 Aug.
Article in English | MEDLINE | ID: mdl-28018912

ABSTRACT

INTRODUCTION: It is unclear if children with a rhinovirus (RV)-induced wheezing exacerbation are more susceptible to viruses longitudinally, and whether a parental history of asthma and/or allergy impacts their susceptibility. The objective of this study was to determine if RV, RV-A and RV-C related wheezing exacerbations in children were associated with prior or subsequent viral detections and investigate the role of parental history of asthma and allergy. MATERIALS AND METHODS: Children presenting to hospital with acute wheeze were prospectively recruited and tested for respiratory viruses. Data on viruses detected in other respiratory samples (May 1997 to December 2012) were collected from hospital microbiology records and additional RV testing was performed on stored hospital respiratory samples (September 2009 to December 2012). A positive parental history was defined as either parent with self-reported asthma and/or allergy. RESULTS: At recruitment, RV was detected in 69.2% of samples from children with an acute wheezing episode (n=373, 0-16 years of age), with RV-C the most common virus (65.5%). Children with a history of parental asthma and/or allergy and RV at recruitment had a 14-fold increased incidence rate ratio (IRR) of subsequent RV detection (IRR 14.0, 95% CI 1.9-104.1; p=0.01) compared with children without RV at recruitment. Children without this parental history had a reduced incident rate ratio for samples assessed during this time (IRR 0.5, 95% CI 0.3-0.9; p=0.03). CONCLUSION: Children with a parental history of asthma and/or allergy may become more susceptible to recurrent symptomatic RV infections.

17.
Pediatr Infect Dis J ; 31(7): 673-9, 2012 Jul.
Article in English | MEDLINE | ID: mdl-22481423

ABSTRACT

BACKGROUND: Human rhinovirus (HRV) species C (HRV-C) have been associated with frequent and severe acute lower respiratory infections and asthma in hospitalized children. The prevalence of HRV-C among healthy children and whether this varies with ethnicity is unknown. OBJECTIVE: To describe the prevalence of HRV species and their associations with demographic, environmental and socioeconomic factors in healthy Aboriginal and non-Aboriginal children. METHODS: Respiratory viruses and bacteria were identified in 1006 nasopharyngeal aspirates collected from a cohort of 79 Aboriginal and 88 non-Aboriginal Western Australian children before 2 years of age. HRV-positive nasopharyngeal aspirates were typed for HRV species and genotypes. Longitudinal growth models incorporating generalized estimating equations were used to investigate associations between HRV species and potential risk factors. RESULTS: Of the 159 typed specimens, we identified 83 (52.2%) human rhinovirus species A (HRV-A), 26 (16.4%), human rhinovirus species B and 50 (31.4%) HRV-C. HRV-C was associated with upper respiratory symptoms in Aboriginal (odds ratio, 3.77; 95% confidence interval:1.05-13.55) and non-Aboriginal children (odds ratio, 5.85; 95% confidence interval: 2.33-14.66). HRV-A and HRV-C were associated with carriage of respiratory bacteria. In Aboriginal children, HRV-A was more common in the summer and in those whose mothers were employed prior to delivery. In non-Aboriginal children, day-care attendance and exclusive breast-feeding at age 6-8 weeks were associated with detection of HRV-A, and gestational smoking with detection of HRV-C. CONCLUSIONS: Factors associated with the presence of HRV differ between Aboriginal and non-Aboriginal children. In contrast to HRV-A, HRV-C is associated with upper respiratory symptoms suggesting that HRV-C is likely to be implicated in respiratory illness.


Subject(s)
Picornaviridae Infections/epidemiology , Picornaviridae Infections/virology , Rhinovirus/isolation & purification , Adult , Australia/epidemiology , Bacteria/classification , Bacteria/isolation & purification , Child, Preschool , Ethnicity , Female , Genotype , Humans , Infant , Infant, Newborn , Male , Nasopharynx/microbiology , Nasopharynx/virology , Prevalence , Rhinovirus/classification , Rhinovirus/genetics , Risk Factors
18.
Article in English | MEDLINE | ID: mdl-19524426

ABSTRACT

Cysteinyl leukotrienes (cysLTs) are pro-inflammatory mediators with increasing evidence for a role in childhood acute asthma. This study examined the influence of polymorphisms in cysLT pathway genes on urinary leukotriene E(4) (uLTE(4)) levels and clinical status in acute asthmatic children. Children aged 2-16 years were recruited during an asthma attack (n=205). Where possible, asthma severity scores were assigned, ALOX5AP G-336A, ALOX5 G-1708A, LTC4S A-444C and G-1072A, GPX4 C718T, and CYSTLTR1 T927C genotypes were determined and uLTE(4) was measured in acute and convalescent samples. uLTE(4) levels were higher acutely compared with convalescence (acute GM: 115.7pg/mg creatinine; 95% CI 88.6-151.1, convalescence GM: 66.4pg/mg creatinine; 95% CI 51.5-85.6; n=50 paired samples, p=0.003) and paired sample analysis showed genotype-specific effects with significantly increased uLTE(4) for LTC(4)S-444AA (acute GM: 127.9pg/mg creatinine; 95% CI 91.8-178.3, convalescence GM: 68.2pg/mg creatinine; 95% CI 50.5-92.0; n=32, p=0.002), LTC(4)S-1072 GG (acute GM: 126.7pg/mg creatinine; 95% CI 95.4-168.3, convalescence GM: 78.9pg/mg creatinine; 95% CI 59.7-104.1; n=39, p=0.019) and CYSLTR1 927 TT/T_ (acute GM: 96.8pg/mg creatinine; 95% CI 73.8-126.9, convalescence GM: 62.4pg/mg creatinine; 95% CI 46.8-83.3; n=28, p=0.036) but not AC/CC, GA/AA, or TC/CC/C_, respectively. When we compared the allele frequencies of the CYSLTR1 SNP between asthmatics and non-asthmatics, the 927C allele was found to be a risk allele for asthma (OR=2.13, 95% CI: 1.06-4.26, p=0.033). Genotypes were not associated with acute or convalescent uLTE(4) levels alone and neither the SNPs nor uLTE(4) correlated with acute asthma severity. Leukotriene pathway gene polymorphisms may influence the magnitude of cysLT production during an attack, yet their influence alone may not be substantial enough to alter the severity of exacerbations.


Subject(s)
Asthma/genetics , Asthma/physiopathology , Cysteine/biosynthesis , Glutathione Transferase/genetics , Leukotrienes/metabolism , Receptors, Leukotriene/genetics , Acute Disease , Adolescent , Child , Child, Preschool , Cohort Studies , Female , Humans , Leukotriene E4/urine , Leukotrienes/biosynthesis , Male , Polymorphism, Single Nucleotide
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