Literature DB >> 22578058

Plasminogen activator inhibitor-1, fibrinogen, and lung function in adolescents with asthma and obesity.

Fengyang Huang1, Blanca Estela del-Río-Navarro, Saúl Torres Alcántara, José Alfredo Pérez Ontiveros, Dino Roberto Pietropaolo Cienfuegos, Santos Albel Bello González, Santiago Villafaña, Guadalupe Bravo, Enrique Hong.   

Abstract

BACKGROUND: Obesity promotes a low-grade systemic inflammatory state that may act on the lung to exacerbate asthma. There is little information on the relationship between systemic inflammation and lung function in children and adolescents.
OBJECTIVES: To explore the relationship among fibrinogen, plasminogen activator inhibitor-1 (PAI-1), lung function in adolescents with the presence of asthma, and/or obesity.
METHODS: Totally 178 adolescents (boys and girls) were involved; four groups were divided according to their diagnosis: non-obese and non-asthmatic controls (n = 38), non-obese asthmatics (n = 31), obese non-asthmatics (n = 62), obese asthmatics (n = 47). The levels of PAI-1 and fibrinogen were determined in blood samples. The lung function was evaluated with spirometry by measuring forced expiratory volume in 1 s (FEV1), forced vital capacity (FVC), and forced expiratory flows between 25 and75% (FEF(25-75%)).
RESULTS: Compared to healthy controls, obese adolescents with or without asthma show higher levels of fibrinogen (289.2 ± 61.5, 328.4 ± 54.9, and 324.9 ± 68.9 mg/dL, respectively), PAI-1 (36.0 ± 17.3, 53.2 ± 22.3, and 52.6 ± 24.7 ng/mL, respectively), and the reduced FEV1/FVC ratio (87.7 ± 7.7, 81.6 ± 8.6, and 81.7 ± 6.9, respectively). In the whole studied subjects, FEV1/FVC ratio shows significant inverse correlation with PAI-1 (r = -0.185), fibrinogen (r = -0.157), body mass index (BMI; r = -0.303), insulin(r = -0.198), and HOMA (r = -0.173). In the 78 asthmatic subjects, FVC correlates positively with BMI.
CONCLUSION: Our data demonstrate that the degree of systemic inflammation and the degree of obesity in the whole studied adolescents groups correlate negatively with lung function, suggesting an obstructive pulmonary pattern. Further studies are needed to identify the pathophysiological mechanism for such association.

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Year:  2012        PMID: 22578058     DOI: 10.3109/07435800.2012.654555

Source DB:  PubMed          Journal:  Endocr Res        ISSN: 0743-5800            Impact factor:   1.720


  4 in total

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Authors:  Nandini Vijayakanthi; John M Greally; Deepa Rastogi
Journal:  Pediatrics       Date:  2016-04-08       Impact factor: 7.124

2.  DNA methylation and genetic polymorphisms of the Leptin gene interact to influence lung function outcomes and asthma at 18 years of age.

Authors:  Nandini Mukherjee; Gabrielle A Lockett; Simon K Merid; Erik Melén; Göran Pershagen; John W Holloway; Syed Hasan Arshad; Susan Ewart; Hongmei Zhang; Wilfried Karmaus
Journal:  Int J Mol Epidemiol Genet       Date:  2016-03-23

3.  Plasma metabolite profiles in children with current asthma.

Authors:  R S Kelly; J E Sordillo; J Lasky-Su; A Dahlin; W Perng; S L Rifas-Shiman; S T Weiss; D R Gold; A A Litonjua; M-F Hivert; E Oken; A C Wu
Journal:  Clin Exp Allergy       Date:  2018-07-03       Impact factor: 5.018

4.  PAI-1 gain-of-function genotype, factors increasing PAI-1 levels, and airway obstruction: The GALA II Cohort.

Authors:  M G Sherenian; S H Cho; A Levin; J-Y Min; S S Oh; D Hu; J Galanter; S Sen; S Huntsman; C Eng; J R Rodriguez-Santana; D Serebrisky; P C Avila; R Kalhan; L J Smith; L N Borrell; M A Seibold; L Keoki Williams; E G Burchard; R Kumar
Journal:  Clin Exp Allergy       Date:  2017-07-03       Impact factor: 5.018

  4 in total

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