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Original Article

Association of SP-B gene 9306 A/G polymorphism (rs7316) and risk of RDS

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Pages 2965-2970 | Received 30 May 2017, Accepted 23 Jul 2017, Published online: 07 Aug 2017

References

  • Hallman M, Haataja R. Genetic basis of respiratory distress syndrome. Front Biosci. 2007;12:2670–2682.
  • Fatahi N, Dalili H, Kalani M, et al. Association of SP-C gene codon 186 polymorphism (rs1124) and risk of RDS. J Matern Fetal Neonatal Med. 2016. DOI:10.1080/14767058.2016.1256994
  • Lyra PP, Diniz EM, Abe-Sandes K, et al. Surfactant protein B gene polymorphism in preterm babies with respiratory distress syndrome. Braz J Med Biol Res. 2011;44(1):66–72.
  • Gong MN. Genetic epidemiology of acute respiratory distress syndrome: implications for future prevention and treatment. Clin Chest Med. 2006;27(4):705–724.
  • Hallman M. Premature birth and diseases in premature infants: common genetic background? J Matern Fetal Neonatal Med. 2012;25(Suppl1):21–24.
  • Floros J, Fan R, Diangelo S, et al. Surfactant protein (SP) B associations and interactions with SP-A in white and black subjects with respiratory distress syndrome. Pediatr Int. 2001;43(6):567–576.
  • Avery ME, Mead J. Surface properties in relation to atelectasis and hyaline membrane disease. AMA J Dis Child. 1959;97(5,part1):517–523.
  • Hallman M. The surfactant system protects both fetus and newborn. Neonatology. 2013;103(4):320–326.
  • Chang HY, Li F, Li FS, et al. Genetic polymorphisms of SP-A, SP-B, and SP-D and risk of respiratory distress syndrome in preterm neonates. Med Sci Monit. 2016;22:5091–5100.
  • Ketko AK, Donn SM. Surfactant-associated proteins: structure, function and clinical implications. Curr Pediatr Rev. 2014;10(2):162–167.
  • Lin Z, deMello DE, Batanian JR, et al. Aberrant SP-B mRNA in lung tissue of patients with congenital alveolar proteinosis (CAP). Clin Genet. 2000;57(5):359–369.
  • Lyra PP, Vaz FA, Moreira PE, et al. Comparison of surfactant protein B polymorphisms of healthy term newborns with preterm newborns having respiratory distress syndrome. Braz J Med Biol Res. 2007;40(6):779–786.
  • Haataja R, Rämet M, Marttila R, et al. Surfactant proteins A and B as interactive genetic determinants of neonatal respiratory distress syndrome. Hum Mol Genet. 2000;9(18):2751–2760.
  • Wood DW, Downes JJ, Lecks HI. A clinical scoring system for the diagnosis of respiratory failure. Preliminary report on childhood status asthmaticus. Am J Dis Child. 1972;123(3):227–228.
  • Kero PO, Mäkinen EO. Comparison between clinical and radiological classification of infants with the respiratory distress syndrome (RDS). Eur J Pediatr. 1979;130(4):271–278.
  • Nayeri F, Dalili H, Nili F, et al. Risk factors for neonatal mortality among very low birth weight neonates. Acta Med Iran. 2013;51(5):297–302.
  • Nayeri FS, Esmaeilnia Shirvani T, Aminnezhad M, et al. Comparison of INSURE method with conventional mechanical ventilation after surfactant administration in preterm infants with respiratory distress syndrome: therapeutic challenge. Acta Med Iran. 2014;52(8):596–600.
  • Amini E, Nayeri FS, Hemati A, et al. Comparison of high frequency positive pressure mechanical ventilation (HFPPV) with conventional method in the treatment of neonatal respiratory failure. Iran Red Crescent Med J. 2013;15(3):183–186.
  • Condò V, Cipriani S, Colnaghi M, et al. Neonatal respiratory distress syndrome: are risk factors the same in preterm and term infants? J Matern Fetal Neonatal Med. 2017;30(11):1267–1272.
  • Pereyra S, Bertoni B, Sapiro R. Interactions between environmental factors and maternal-fetal genetic variations: strategies to elucidate risks of preterm birth. Eur J Obstet Gynecol Reprod Biol. 2016;202:20–25.
  • Capece A, Vasieva O, Meher S, et al. Pathway analysis of genetic factors associated with spontaneous preterm birth and pre-labor preterm rupture of membranes. PLoS One. 2014;9(9):e108578.
  • Pennell CE, Vadillo-Ortega F, Olson DM, et al. Preterm Birth Genome Project (PGP) – validation of resources for preterm birth genome-wide studies. J Perinat Med. 2013;41(1):45–49.
  • Uzun A, Dewan AT, Istrail S, et al. Pathway-based genetic analysis of preterm birth. Genomics. 2013;101(3):163–170.
  • Rashidi-Nezhad A, Azimi C, Alimoghaddam K, et al. TGF-beta codon 25 polymorphism and the risk of graft-versus-host disease after allogenic hematopoietic stem cell transplantation. Iran J Allergy Asthma Immunol. 2010;9(1):1–6.
  • Nkadi PO, Merritt TA, Pillers DA. An overview of pulmonary surfactant in the neonate: genetics, metabolism, and the role of surfactant in health and disease. Mol Genet Metab. 2009;97(2):95–101.
  • Khoor A, Stahlman MT, Gray ME, et al. Temporal-spatial distribution of SP-B and SP-C proteins and mRNAs in developing respiratory epithelium of human lung. J Histochem Cytochem. 1994;42(9):1187–1199.
  • Liley HG, White RT, Warr RG, et al. Regulation of messenger RNAs for the hydrophobic surfactant proteins in human lung. J Clin Invest. 1989;83(4):1191–1197.
  • Noori-Daloii MR, Rashidi-Nezhad A, Izadi P, et al. Transforming growth factor-beta1 codon 10 polymorphism is associated with acute GVHD after allogenic BMT in Iranian population. Ann Transplant. 2007;12(4):5–10.

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