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Published in: BMC Pulmonary Medicine 1/2018

Open Access 01-12-2018 | Research article

Clinical expression of cystic fibrosis in a large cohort of Italian siblings

Authors: Vito Terlizzi, Marco Lucarelli, Donatello Salvatore, Adriano Angioni, Arianna Bisogno, Cesare Braggion, Roberto Buzzetti, Vincenzo Carnovale, Rosaria Casciaro, Giuseppe Castaldo, Natalia Cirilli, Mirella Collura, Carla Colombo, Antonella Miriam Di Lullo, Ausilia Elce, Vincenzina Lucidi, Elisa Madarena, Rita Padoan, Serena Quattrucci, Valeria Raia, Manuela Seia, Lisa Termini, Federica Zarrilli

Published in: BMC Pulmonary Medicine | Issue 1/2018

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Abstract

Background

A clinical heterogeneity was reported in patients with Cystic Fibrosis (CF) with the same CFTR genotype and between siblings with CF.

Methods

We investigated all clinical aspects in a cohort of 101 pairs of siblings with CF (including 6 triplets) followed since diagnosis.

Results

Severe lung disease had a 22.2% concordance in sib-pairs, occurred early and the FEV1% at 12 years was predictive of the severity of lung disease in the adulthood. Similarly, CF liver disease occurred early (median: 15 years) and showed a concordance of 27.8% in sib-pairs suggesting a scarce contribution of genetic factors; in fact, only 2/15 patients with liver disease in discordant sib-pairs had a deficiency of alpha-1-antitrypsin (a known modifier gene of CF liver phenotype). CF related diabetes was found in 22 pairs (in 6 in both the siblings). It occurred later (median: 32.5 years) and is strongly associated with liver disease. Colonization by P. aeruginosa and nasal polyposis that required surgery had a concordance > 50% in sib-pairs and were poorly correlated to other clinical parameters. The pancreatic status was highly concordant in pairs of siblings (i.e., 95.1%) but a different pancreatic status was observed in patients with the same CFTR mutations. This suggests a close relationship of the pancreatic status with the “whole” CFTR genotype, including mutations in regulatory regions that may modulate the levels of CFTR expression. Finally, a severe course of CF was evident in a number of patients with pancreatic sufficiency.

Conclusions

Physicians involved in care of patients with CF and in genetic counseling must be aware of the clinical heterogeneity of CF even in sib-pairs that, at the state of the art, is difficult to explain.
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Literature
2.
go back to reference Veit G, Avramescu RG, Chiang AN, Houck SA, Cai Z, Peters KW, et al. From CFTR biology toward combinatorial pharmacotherapy: expanded classification of cystic fibrosis mutations. Mol Biol Cell. 2016;27:424–33.CrossRef Veit G, Avramescu RG, Chiang AN, Houck SA, Cai Z, Peters KW, et al. From CFTR biology toward combinatorial pharmacotherapy: expanded classification of cystic fibrosis mutations. Mol Biol Cell. 2016;27:424–33.CrossRef
3.
go back to reference Cutting GR. Cystic fibrosis genetics: from molecular understanding to clinical application. Nat Rev Genet. 2015;16:45–56.CrossRef Cutting GR. Cystic fibrosis genetics: from molecular understanding to clinical application. Nat Rev Genet. 2015;16:45–56.CrossRef
4.
go back to reference Koch C, Cuppens H, Rainisio M, Madessani U, Harms H, Hodson M, et al. Investigators of the ERCF: comparison of major disease manifestations between patients with different classes of mutations. Pediatr Pulmonol. 2001;31:1–12.CrossRef Koch C, Cuppens H, Rainisio M, Madessani U, Harms H, Hodson M, et al. Investigators of the ERCF: comparison of major disease manifestations between patients with different classes of mutations. Pediatr Pulmonol. 2001;31:1–12.CrossRef
5.
go back to reference McKone EF, Goss CH, Aitken ML. CFTR genotype as a predictor of prognosis in cystic fibrosis. Chest. 2006;130:1441–7.CrossRef McKone EF, Goss CH, Aitken ML. CFTR genotype as a predictor of prognosis in cystic fibrosis. Chest. 2006;130:1441–7.CrossRef
6.
go back to reference Mekus F, Ballmann M, Bronsveld I, Bijman J, Veeze H, Tümmler B. Categories of delta F508 homozygous cystic fibrosis twin and sibling pairs with distinct phenotypic characteristics. Twin Res. 2000;3:277–93.CrossRef Mekus F, Ballmann M, Bronsveld I, Bijman J, Veeze H, Tümmler B. Categories of delta F508 homozygous cystic fibrosis twin and sibling pairs with distinct phenotypic characteristics. Twin Res. 2000;3:277–93.CrossRef
7.
go back to reference Giordano S, Amato F, Elce A, Monti M, Iannone C, Pucci P, et al. Molecular and functional analysis of the large 5’ promoter region of CFTR gene revealed pathogenic mutations in CF and CFTR-related disorders. J Mol Diagn. 2013;15:331–40.CrossRef Giordano S, Amato F, Elce A, Monti M, Iannone C, Pucci P, et al. Molecular and functional analysis of the large 5’ promoter region of CFTR gene revealed pathogenic mutations in CF and CFTR-related disorders. J Mol Diagn. 2013;15:331–40.CrossRef
8.
go back to reference Amato F, Seia M, Giordano S, Elce A, Zarrilli F, Castaldo G, et al. Gene mutation in MicroRNA target sites of CFTR gene: a novel pathogenetic mechanism in cystic fibrosis? PlosONE. 2013;8:e60448.CrossRef Amato F, Seia M, Giordano S, Elce A, Zarrilli F, Castaldo G, et al. Gene mutation in MicroRNA target sites of CFTR gene: a novel pathogenetic mechanism in cystic fibrosis? PlosONE. 2013;8:e60448.CrossRef
9.
go back to reference Lucarelli M, Porcaro L, Biffignandi A, Costantino L, Giannone V, Alberti L, et al. A new targeted CFTR mutation panel based on next generation sequencing technology. J Mol Diagn. 2017;19:788–800.CrossRef Lucarelli M, Porcaro L, Biffignandi A, Costantino L, Giannone V, Alberti L, et al. A new targeted CFTR mutation panel based on next generation sequencing technology. J Mol Diagn. 2017;19:788–800.CrossRef
10.
go back to reference Rossi T, Grandoni F, Mazzilli F, Quattrucci S, Antonelli M, Strom R, et al. High frequency of (TG)mTn variant tracts in the cystic fibrosis transmembrane conductance regulator gene in men with high semen viscosity. Fertil Steril. 2004;82:1316–22.CrossRef Rossi T, Grandoni F, Mazzilli F, Quattrucci S, Antonelli M, Strom R, et al. High frequency of (TG)mTn variant tracts in the cystic fibrosis transmembrane conductance regulator gene in men with high semen viscosity. Fertil Steril. 2004;82:1316–22.CrossRef
11.
go back to reference Lucarelli M, Bruno SM, Pierandrei S, Ferraguti G, Stamato A, Narzi F, et al. A genotypic-oriented view of CFTR genetics highlights specific mutational patterns underlying clinical macro-categories of cystic fibrosis. Mol Med. 2015;21:257–75.CrossRef Lucarelli M, Bruno SM, Pierandrei S, Ferraguti G, Stamato A, Narzi F, et al. A genotypic-oriented view of CFTR genetics highlights specific mutational patterns underlying clinical macro-categories of cystic fibrosis. Mol Med. 2015;21:257–75.CrossRef
12.
go back to reference Lucarelli M, Narzi L, Pierandrei S, Bruno SM, Stamato A, d’Avanzo M, et al. A new complex allele of the CFTR gene partially explains the variable phenotype of the L997F mutation. Genet Med. 2010;12:548–55.CrossRef Lucarelli M, Narzi L, Pierandrei S, Bruno SM, Stamato A, d’Avanzo M, et al. A new complex allele of the CFTR gene partially explains the variable phenotype of the L997F mutation. Genet Med. 2010;12:548–55.CrossRef
13.
go back to reference Terlizzi V, Castaldo G, Salvatore D, Lucarelli M, Raia V, Angioni A, et al. Genotype-phenotype correlation and functional studies in patients with cystic fibrosis bearing CFTR complex alleles. J Med Genet. 2017;54:224–35.CrossRef Terlizzi V, Castaldo G, Salvatore D, Lucarelli M, Raia V, Angioni A, et al. Genotype-phenotype correlation and functional studies in patients with cystic fibrosis bearing CFTR complex alleles. J Med Genet. 2017;54:224–35.CrossRef
14.
go back to reference Salvatore F, Scudiero O, Castaldo G. Genotype-phenotype correlation in cystic fibrosis: the role of modifier genes. Am J Med Genet. 2002;111:88–95.CrossRef Salvatore F, Scudiero O, Castaldo G. Genotype-phenotype correlation in cystic fibrosis: the role of modifier genes. Am J Med Genet. 2002;111:88–95.CrossRef
15.
go back to reference Blackman SM, Deering-Brose R, McWilliams R, Naughton K, Coleman B, Lai T, et al. Relative contribution of genetic and non-genetic modifiers to intestinal obstruction in cystic fibrosis. Gastroenterology. 2006;131:1030–9.CrossRef Blackman SM, Deering-Brose R, McWilliams R, Naughton K, Coleman B, Lai T, et al. Relative contribution of genetic and non-genetic modifiers to intestinal obstruction in cystic fibrosis. Gastroenterology. 2006;131:1030–9.CrossRef
16.
go back to reference Zielenski J, Markiewicz D, Yuan X, Patel M, Sun L, Aznarez I, et al. Meconium ileus in cystic fibrosis neonates is associated with polymorphic markers in the calcium-activated potassium channel (KCNN4) gene. JPGN. 2004;39:S405–6. Zielenski J, Markiewicz D, Yuan X, Patel M, Sun L, Aznarez I, et al. Meconium ileus in cystic fibrosis neonates is associated with polymorphic markers in the calcium-activated potassium channel (KCNN4) gene. JPGN. 2004;39:S405–6.
17.
go back to reference Philp AR, Riquelme TT, Millar-Büchner P, González R, Sepúlveda FV, Pablo Cid L, et al. Kcnn4 is a modifier gene of intestinal cystic fibrosis preventing lethality in the Cftr-F508del mouse. Sci Rep. 2018;8:9320.CrossRef Philp AR, Riquelme TT, Millar-Büchner P, González R, Sepúlveda FV, Pablo Cid L, et al. Kcnn4 is a modifier gene of intestinal cystic fibrosis preventing lethality in the Cftr-F508del mouse. Sci Rep. 2018;8:9320.CrossRef
18.
go back to reference Blackman SM, Hsu S, Vanscoy LL, Collaco JM, Ritter SE, Naughton K, et al. Genetic modifiers play a substantial role in diabetes complicating cystic fibrosis. J Clin Endocrinol Metab. 2009;94:1302–9.CrossRef Blackman SM, Hsu S, Vanscoy LL, Collaco JM, Ritter SE, Naughton K, et al. Genetic modifiers play a substantial role in diabetes complicating cystic fibrosis. J Clin Endocrinol Metab. 2009;94:1302–9.CrossRef
19.
go back to reference Bartlett JR, Friedman KJ, Ling SC, Pace RG, Bell SC, Bourke B, et al. Genetic modifiers of liver disease in cystic fibrosis. JAMA. 2009;302:1076–83.CrossRef Bartlett JR, Friedman KJ, Ling SC, Pace RG, Bell SC, Bourke B, et al. Genetic modifiers of liver disease in cystic fibrosis. JAMA. 2009;302:1076–83.CrossRef
20.
go back to reference Corvol H, Blackman SM, Boëlle PY, Gallins PJ, Pace RG, Stonebraker JR, et al. Genome-wide association meta-analysis identifies five modifier loci of lung disease severity in cystic fibrosis. Nat Commun. 2015;6:8382.CrossRef Corvol H, Blackman SM, Boëlle PY, Gallins PJ, Pace RG, Stonebraker JR, et al. Genome-wide association meta-analysis identifies five modifier loci of lung disease severity in cystic fibrosis. Nat Commun. 2015;6:8382.CrossRef
21.
go back to reference Collaco JM, Blackman SM, McGready J, Naughton KM, Cutting GR. Quantification of the relative contribution of environmental and genetic factors to variation in cystic fibrosis lung function. J Pediatr. 2010;157:802–7.CrossRef Collaco JM, Blackman SM, McGready J, Naughton KM, Cutting GR. Quantification of the relative contribution of environmental and genetic factors to variation in cystic fibrosis lung function. J Pediatr. 2010;157:802–7.CrossRef
22.
go back to reference Green DM, Collaco JM, KE MD, Naughton KM, Blackman SM, Cutting GR. Heritability of respiratory infection with Pseudomonas aeruginosa in cystic fibrosis. J Pediatr. 2012;161:290–5.CrossRef Green DM, Collaco JM, KE MD, Naughton KM, Blackman SM, Cutting GR. Heritability of respiratory infection with Pseudomonas aeruginosa in cystic fibrosis. J Pediatr. 2012;161:290–5.CrossRef
23.
go back to reference Eakin MN, Riekert KA. The impact of medication adherence on lung health outcomes in cystic fibrosis. Curr Opin Pulm Med. 2013;19:687–91.CrossRef Eakin MN, Riekert KA. The impact of medication adherence on lung health outcomes in cystic fibrosis. Curr Opin Pulm Med. 2013;19:687–91.CrossRef
24.
go back to reference Schechter MS. Nongenetic influences on cystic fibrosis outcomes. Curr Opin Pulm Med. 2011;17:448–54.PubMed Schechter MS. Nongenetic influences on cystic fibrosis outcomes. Curr Opin Pulm Med. 2011;17:448–54.PubMed
25.
go back to reference Farrell PM, White TB, Ren CL, Hempstead SE, Accurso F, Derichs N, et al. Diagnosis of cystic fibrosis: consensus guidelines from the Cystic Fibrosis Foundation. J Pediatr. 2017;181S:S4–S15.e1.CrossRef Farrell PM, White TB, Ren CL, Hempstead SE, Accurso F, Derichs N, et al. Diagnosis of cystic fibrosis: consensus guidelines from the Cystic Fibrosis Foundation. J Pediatr. 2017;181S:S4–S15.e1.CrossRef
26.
go back to reference LeGrys VA, Yankaskas JR, Quittell LM, Marshall BC, Mogayzel PJ Jr. Cystic Fibrosis Foundation. Diagnostic sweat testing: the Cystic Fibrosis Foundation guidelines. J Pediatr. 2007;151:85–9.CrossRef LeGrys VA, Yankaskas JR, Quittell LM, Marshall BC, Mogayzel PJ Jr. Cystic Fibrosis Foundation. Diagnostic sweat testing: the Cystic Fibrosis Foundation guidelines. J Pediatr. 2007;151:85–9.CrossRef
27.
go back to reference Tomaiuolo R, Sangiuolo F, Bombieri C, Bonizzato A, Cardillo G, Raia V, et al. Epidemiology and a novel procedure for large scale analysis of CFTR rearrangements in classic and atypical CF patients: a multicentric Italian study. J Cyst Fibros. 2008;7:347–51.CrossRef Tomaiuolo R, Sangiuolo F, Bombieri C, Bonizzato A, Cardillo G, Raia V, et al. Epidemiology and a novel procedure for large scale analysis of CFTR rearrangements in classic and atypical CF patients: a multicentric Italian study. J Cyst Fibros. 2008;7:347–51.CrossRef
28.
go back to reference Lucarelli M, Narzi L, Piergentili R, Ferraguti G, Grandoni F, Quattrucci S, et al. A 96-well formatted method for exon and exon/intron boundary full sequencing of the CFTR gene. Anal Biochem. 2006;353:226–35.CrossRef Lucarelli M, Narzi L, Piergentili R, Ferraguti G, Grandoni F, Quattrucci S, et al. A 96-well formatted method for exon and exon/intron boundary full sequencing of the CFTR gene. Anal Biochem. 2006;353:226–35.CrossRef
29.
go back to reference Ferraguti G, Pierandrei S, Bruno SM, Ceci F, Strom R, Lucarelli M. A template for mutational data analysis of the CFTR gene. Clin Chem Lab Med. 2011;49:1447–51.CrossRef Ferraguti G, Pierandrei S, Bruno SM, Ceci F, Strom R, Lucarelli M. A template for mutational data analysis of the CFTR gene. Clin Chem Lab Med. 2011;49:1447–51.CrossRef
30.
go back to reference Dequeker E, Stuhrmann M, Morris MA, Casals T, Castellani C, Claustres M, et al. Best practice guidelines for molecular genetic diagnosis of cystic fibrosis and CFTR-related disorders: updated European recommendations. Eur J Hum Genet. 2009;17:51–65.CrossRef Dequeker E, Stuhrmann M, Morris MA, Casals T, Castellani C, Claustres M, et al. Best practice guidelines for molecular genetic diagnosis of cystic fibrosis and CFTR-related disorders: updated European recommendations. Eur J Hum Genet. 2009;17:51–65.CrossRef
31.
go back to reference Elce A, Boccia A, Cardillo G, Giordano S, Tomaiuolo R, Paolella G, et al. Three novel CFTR polymorphic repeats improve segregation analysis for cystic fibrosis. Clin Chem. 2009;55:1372–9.CrossRef Elce A, Boccia A, Cardillo G, Giordano S, Tomaiuolo R, Paolella G, et al. Three novel CFTR polymorphic repeats improve segregation analysis for cystic fibrosis. Clin Chem. 2009;55:1372–9.CrossRef
32.
go back to reference Quanjer PH, Stanojevic S, Cole TJ, Baur X, Hall GL, Culver BH, et al. ERS global lung function initiative. Multi-ethnic reference values for spirometry for the 3–95 year age range: the global lung function 2012 equations. Eur Respir J. 2012;40:1324–43.CrossRef Quanjer PH, Stanojevic S, Cole TJ, Baur X, Hall GL, Culver BH, et al. ERS global lung function initiative. Multi-ethnic reference values for spirometry for the 3–95 year age range: the global lung function 2012 equations. Eur Respir J. 2012;40:1324–43.CrossRef
33.
go back to reference Schluchter MD, Konstan MW, Drumm ML, Yankaskas JR, Knowles MR. Classifying severity of cystic fibrosis lung disease using longitudinal pulmonary function data. Am J Respir Crit Care Med. 2006;174:780–6.CrossRef Schluchter MD, Konstan MW, Drumm ML, Yankaskas JR, Knowles MR. Classifying severity of cystic fibrosis lung disease using longitudinal pulmonary function data. Am J Respir Crit Care Med. 2006;174:780–6.CrossRef
34.
go back to reference Wang X, Dockery DW, WypiJ D, Fay ME, Ferris BG. Pulmonary function between 6 and 18 years of age. Pediatr Pulmunol. 1993;15:75–88.CrossRef Wang X, Dockery DW, WypiJ D, Fay ME, Ferris BG. Pulmonary function between 6 and 18 years of age. Pediatr Pulmunol. 1993;15:75–88.CrossRef
35.
go back to reference Konstan MW, Wagener JS, Van Devanter DR. Characterizing aggressiveness and predicting future progression of CF lung disease. J Cyst Fibros. 2009;8(Suppl 1):S15–9.CrossRef Konstan MW, Wagener JS, Van Devanter DR. Characterizing aggressiveness and predicting future progression of CF lung disease. J Cyst Fibros. 2009;8(Suppl 1):S15–9.CrossRef
36.
go back to reference Lee TW, Brownlee KG, Conway SP, Denton M, Littlewood JM. Evaluation of a new definition for chronic Pseudomonas aeruginosa infection in cystic fibrosis patients. J Cyst Fibros. 2003;2:29–34.CrossRef Lee TW, Brownlee KG, Conway SP, Denton M, Littlewood JM. Evaluation of a new definition for chronic Pseudomonas aeruginosa infection in cystic fibrosis patients. J Cyst Fibros. 2003;2:29–34.CrossRef
37.
go back to reference Morinville VD, Husain SZ, Bai H, Barth B, Alhosh R, Durie PR, et al. Definitions of pediatric pancreatitis and survey of present clinical practices. J Pediatr Gastroenterol Nutr. 2012;55:261–5.CrossRef Morinville VD, Husain SZ, Bai H, Barth B, Alhosh R, Durie PR, et al. Definitions of pediatric pancreatitis and survey of present clinical practices. J Pediatr Gastroenterol Nutr. 2012;55:261–5.CrossRef
38.
go back to reference Debray D, Kelly D, Houwen R, Strandvik B, Colombo C. Best practice guidance for the diagnosis and management of cystic fibrosis-associated liver disease. J Cyst Fibros. 2011;10:S29–36.CrossRef Debray D, Kelly D, Houwen R, Strandvik B, Colombo C. Best practice guidance for the diagnosis and management of cystic fibrosis-associated liver disease. J Cyst Fibros. 2011;10:S29–36.CrossRef
39.
go back to reference Kelly A, Moran A. Update on cystic fibrosis-related diabetes. J Cyst Fibros. 2013;12:318–31.CrossRef Kelly A, Moran A. Update on cystic fibrosis-related diabetes. J Cyst Fibros. 2013;12:318–31.CrossRef
40.
go back to reference Castellani C, Cuppens H, Macek M, Cassiman JJ, Kerem E, Durie P, et al. Consensus on the use and interpretation of cystic fibrosis mutation analysis in clinical practice. J Cyst Fibros. 2008;7:179–96.CrossRef Castellani C, Cuppens H, Macek M, Cassiman JJ, Kerem E, Durie P, et al. Consensus on the use and interpretation of cystic fibrosis mutation analysis in clinical practice. J Cyst Fibros. 2008;7:179–96.CrossRef
41.
go back to reference Terlizzi V, Carnovale V, Castaldo G, Castellani C, Cirilli N, Colombo C, et al. Clinical expression of patients with the D1152H CFTR mutation. J Cyst Fibrosis. 2015;14:447–52.CrossRef Terlizzi V, Carnovale V, Castaldo G, Castellani C, Cirilli N, Colombo C, et al. Clinical expression of patients with the D1152H CFTR mutation. J Cyst Fibrosis. 2015;14:447–52.CrossRef
42.
go back to reference Castellani C, Assael BM. Cystic fibrosis: a clinical view. Cell Mol Life Sci. 2017;74:129–40.CrossRef Castellani C, Assael BM. Cystic fibrosis: a clinical view. Cell Mol Life Sci. 2017;74:129–40.CrossRef
43.
go back to reference Walkowiak J, Lisowska A, Blaszczynski M. The changing face of the exocrine pancreas in cystic fibrosis: pancreatic sufficiency, pancreatitis and genotype. Eur J Gastroenterol Hepatol. 2008;20:157–60.CrossRef Walkowiak J, Lisowska A, Blaszczynski M. The changing face of the exocrine pancreas in cystic fibrosis: pancreatic sufficiency, pancreatitis and genotype. Eur J Gastroenterol Hepatol. 2008;20:157–60.CrossRef
44.
go back to reference Terlizzi V, Tosco A, Tomaiuolo R, Sepe A, Amato N, Casale A, et al. Prediction of acute pancreatitis risk based on PIP score in children with cystic fibrosis. J Cyst Fibros. 2014;13:579–84.CrossRef Terlizzi V, Tosco A, Tomaiuolo R, Sepe A, Amato N, Casale A, et al. Prediction of acute pancreatitis risk based on PIP score in children with cystic fibrosis. J Cyst Fibros. 2014;13:579–84.CrossRef
45.
go back to reference Tomaiuolo AC, Sofia VM, Surace C, Majo F, Genovese S, Petrocchi S, et al. Relationship between CFTR and CTRC variants and the clinical phenotype in late-onset cystic fibrosis disease with chronic pancreatitis. J Mol Diagn. 2015;17:171–8.CrossRef Tomaiuolo AC, Sofia VM, Surace C, Majo F, Genovese S, Petrocchi S, et al. Relationship between CFTR and CTRC variants and the clinical phenotype in late-onset cystic fibrosis disease with chronic pancreatitis. J Mol Diagn. 2015;17:171–8.CrossRef
46.
go back to reference Sofia VM, Da Sacco L, Surace C, Tomaiuolo AC, Genovese S, Grotta S, et al. Extensive molecular analysis suggested the strong genetic heterogeneity of idiopathic chronic pancreatitis. Mol Med. 2016;26:22. Sofia VM, Da Sacco L, Surace C, Tomaiuolo AC, Genovese S, Grotta S, et al. Extensive molecular analysis suggested the strong genetic heterogeneity of idiopathic chronic pancreatitis. Mol Med. 2016;26:22.
47.
go back to reference Norkina O, De Lisle RC. Potential genetic modifiers of the cystic fibrosis intestinal inflammatory phenotype on mouse chromosomes 1, 9, and 10. BMC Genet. 2005;6:29.CrossRef Norkina O, De Lisle RC. Potential genetic modifiers of the cystic fibrosis intestinal inflammatory phenotype on mouse chromosomes 1, 9, and 10. BMC Genet. 2005;6:29.CrossRef
48.
go back to reference Dorfman R, Li W, Sun L, Wang Y, Sandford A, Paré PD, et al. Modifier gene study of meconium ileus in cystic fibrosis: statistical considerations and gene mapping results. Hum Genet. 2009;126:763–78.CrossRef Dorfman R, Li W, Sun L, Wang Y, Sandford A, Paré PD, et al. Modifier gene study of meconium ileus in cystic fibrosis: statistical considerations and gene mapping results. Hum Genet. 2009;126:763–78.CrossRef
49.
go back to reference Vanscoy LL, Balckman SM, Collaco JM, et al. Heriability of lung disease severity in cystic fibrosis. Am J Respir Crit Care Med. 2007;175:1036–43.CrossRef Vanscoy LL, Balckman SM, Collaco JM, et al. Heriability of lung disease severity in cystic fibrosis. Am J Respir Crit Care Med. 2007;175:1036–43.CrossRef
50.
go back to reference Kerem E, Viviani L, Zolin A, MacNeill S, Hatziagorou E, Ellemunter H, et al. Factors associated with FEV1 decline in cystic fibrosis: analysis of the ECFS patient registry. Eur Respir J. 2014;43:125–13.CrossRef Kerem E, Viviani L, Zolin A, MacNeill S, Hatziagorou E, Ellemunter H, et al. Factors associated with FEV1 decline in cystic fibrosis: analysis of the ECFS patient registry. Eur Respir J. 2014;43:125–13.CrossRef
51.
go back to reference Mott LS, Graniel KG, Park J, de Klerk NH, Sly PD, Murray CP, et al. Assessment of early bronchiectasis in young children with cystic fibrosis is dependent on lung volume. Chest. 2013;144:1193–8.CrossRef Mott LS, Graniel KG, Park J, de Klerk NH, Sly PD, Murray CP, et al. Assessment of early bronchiectasis in young children with cystic fibrosis is dependent on lung volume. Chest. 2013;144:1193–8.CrossRef
52.
go back to reference Sly PD, Brennan S, Gangell C, de Klerk N, Murray C, Mott L, et al. Lung disease at diagnosis in infants with cystic fibrosis detected by newborn screening. Am J Respir Crit Care Med. 2009;180:146–52.CrossRef Sly PD, Brennan S, Gangell C, de Klerk N, Murray C, Mott L, et al. Lung disease at diagnosis in infants with cystic fibrosis detected by newborn screening. Am J Respir Crit Care Med. 2009;180:146–52.CrossRef
53.
go back to reference Blackman SM, Commander CW, Watson C, et al. Genetic modifiers of cystic fibrosis-related diabetes. Diabetes. 2013;62:3627–35.CrossRef Blackman SM, Commander CW, Watson C, et al. Genetic modifiers of cystic fibrosis-related diabetes. Diabetes. 2013;62:3627–35.CrossRef
54.
go back to reference Picard E, Aviram M, Yahav Y, Rivlin J, Blau H, Bentur L, et al. Familial concordance of phenotype and microbial variation among siblings with CF. Ped Pulmunol. 2004;38:292–7.CrossRef Picard E, Aviram M, Yahav Y, Rivlin J, Blau H, Bentur L, et al. Familial concordance of phenotype and microbial variation among siblings with CF. Ped Pulmunol. 2004;38:292–7.CrossRef
55.
go back to reference Minicucci L, Lorini R, Giannattasio A, Colombo C, Iapichino L, Reali MF, et al. Liver disease as risk factor for cystic fibrosis-related diabetes development. Acta Pediatr. 2007;96:736–9.CrossRef Minicucci L, Lorini R, Giannattasio A, Colombo C, Iapichino L, Reali MF, et al. Liver disease as risk factor for cystic fibrosis-related diabetes development. Acta Pediatr. 2007;96:736–9.CrossRef
56.
go back to reference Terliesner N, Vogel M, Steighardt A, Gausche R, Henn C, Hentschel J, et al. Cystic-fibrosis related-diabetes (CFRD) is preceded by and associated with growth failure and deteriorating lung function. J Pediatr Endocrinol Metab. 2017;30:815–21.CrossRef Terliesner N, Vogel M, Steighardt A, Gausche R, Henn C, Hentschel J, et al. Cystic-fibrosis related-diabetes (CFRD) is preceded by and associated with growth failure and deteriorating lung function. J Pediatr Endocrinol Metab. 2017;30:815–21.CrossRef
57.
go back to reference Hunt WR, Helfman BR, McCarty NA, Hansen JM. Advanced glycation end products are elevated in cystic fibrosis-related diabetes and correlate with worse lung function. J Cyst Fibros. 2016;15:681–8.CrossRef Hunt WR, Helfman BR, McCarty NA, Hansen JM. Advanced glycation end products are elevated in cystic fibrosis-related diabetes and correlate with worse lung function. J Cyst Fibros. 2016;15:681–8.CrossRef
58.
go back to reference Baldan A, Lo Presti AR, Belpinati F, Castellani C, Bettin MD, Xumerle L, et al. IFRD1 gene polymorphisms are associated with nasal polyposis in cystic fibrosis patients. Rhinology. 2015;53:359–64.CrossRef Baldan A, Lo Presti AR, Belpinati F, Castellani C, Bettin MD, Xumerle L, et al. IFRD1 gene polymorphisms are associated with nasal polyposis in cystic fibrosis patients. Rhinology. 2015;53:359–64.CrossRef
Metadata
Title
Clinical expression of cystic fibrosis in a large cohort of Italian siblings
Authors
Vito Terlizzi
Marco Lucarelli
Donatello Salvatore
Adriano Angioni
Arianna Bisogno
Cesare Braggion
Roberto Buzzetti
Vincenzo Carnovale
Rosaria Casciaro
Giuseppe Castaldo
Natalia Cirilli
Mirella Collura
Carla Colombo
Antonella Miriam Di Lullo
Ausilia Elce
Vincenzina Lucidi
Elisa Madarena
Rita Padoan
Serena Quattrucci
Valeria Raia
Manuela Seia
Lisa Termini
Federica Zarrilli
Publication date
01-12-2018
Publisher
BioMed Central
Published in
BMC Pulmonary Medicine / Issue 1/2018
Electronic ISSN: 1471-2466
DOI
https://doi.org/10.1186/s12890-018-0766-6

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