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2 result(s) for "González-Quevedo, Nereida"
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Should MASP-2 Deficiency Be Considered a Primary Immunodeficiency? Relevance of the Lectin Pathway
Mannose-binding lectin (MBL)-associated serine protease-2 (MASP-2) is an indispensable enzyme for the activation of the lectin pathway of complement. Its deficiency is classified as a primary immunodeficiency associated to pyogenic bacterial infections, inflammatory lung disease, and autoimmunity. In Europeans, MASP-2 deficiency, due to homozygosity for c.359A > G (p.D120G), occurs in 7 to 14/10,000 individuals. We analyzed the presence of the p.D120G mutation in adults (increasing the sample size of our previous studies) and children. Different groups of patients (1495 adults hospitalized with community-acquired pneumonia, 186 adults with systemic lupus erythematosus, 103 pediatric patients with invasive pneumococcal disease) and control individuals (1119 healthy adult volunteers, 520 adult patients without history of relevant infectious diseases, and a pediatric control group of 311 individuals) were studied. Besides our previously reported MASP-2-deficient healthy adults, we found a new p.D120G homozygous individual from the pediatric control group. We also reviewed p.D120G homozygous individuals reported so far: a total of eleven patients with a highly heterogeneous range of disorders and nine healthy controls (including our four MASP-2-deficient individuals) have been identified by chance in association studies. Individuals with complete deficiencies of several pattern recognition molecules of the lectin pathway (MBL, collectin-10 and collectin-11, and ficolin-3) as well as of MASP-1 and MASP-3 have also been reviewed. Cumulative evidence suggests that MASP-2, and even other components of the LP, are largely redundant in human defenses and that individuals with MASP-2 deficiency do not seem to be particularly prone to infectious or autoimmune diseases.
Variants at the promoter of the interleukin-6 gene are associated with severity and outcome of pneumococcal community-acquired pneumonia
Purpose Conflicting results about the role of genetic variability at IL6 , particularly the -174 G/C single nucleotide polymorphism (SNP), in sepsis have been reported. We studied the genetic variability at IL6 in patients with community-acquired pneumonia (CAP) and pneumococcal CAP (P-CAP). Methods This was a multicenter, prospective observational study. IL6 -174 was analyzed in 1,227 white Spanish patients with CAP (306 with P-CAP). IL6 1753 C/G ( N  = 750), 2954 G/C ( N  = 845), and haplotypes defined by these SNPs were also studied. Results In CAP patients the genotype -174 GG were associated with protection against acute respiratory distress syndrome (ARDS) ( p  = 0.008, OR = 0.4, 95% CI 0.2–0.8). No other significant associations were observed. However, in patients with P-CAP multivariate analysis adjusted for age, gender, co-morbidity, hospital of origin, and severity (pneumonia severity index, PSI) showed that the IL6 -174 GG genotype was protective against the development of ARDS ( p  = 0.002, OR = 0.25, 95% CI 0.07–0.79), septic shock ( p  = 0.006, OR = 0.46, 95% CI 0.18–0.79), and multiple organ dysfunction syndrome ( p  = 0.02, OR = 0.53, 95% CI 0.27–0.89). P-CAP patients homozygous for IL6 -174 G also showed a higher survival in a logistic regression analysis adjusted for age, gender, co-morbidity, hospital of origin, and PSI ( p  = 0.048, OR = 0.27, 95% CI 0.07–0.98). Conclusions Our results indicate that the IL-6 -174 GG genotype is associated with lower severity and mortality in patients with P-CAP. This effect was higher than that observed in patients with CAP irrespective of the causal pathogen involved. Our results highlight the importance of the causal pathogen in genetic epidemiological studies in sepsis.