TY - JOUR
T1 - The Changing Landscape of Neonatal Diabetes Mellitus in Italy Between 2003 and 2022
AU - on behalf of Diabetes Study Group of Italian Society for Pediatric Endocrinology and Diabetes (ISPED)
AU - Rapini, Novella
AU - Delvecchio, Maurizio
AU - Mucciolo, Mafalda
AU - Ruta, Rosario
AU - Rabbone, Ivana
AU - Cherubini, Valentino
AU - Zucchini, Stefano
AU - Cianfarani, Stefano
AU - Prandi, Elena
AU - Schiaffini, Riccardo
AU - Bizzarri, Carla
AU - Piccini, Barbara
AU - Maltoni, Giulio
AU - Predieri, Barbara
AU - Minuto, Nicola
AU - Paola, Rossella Di
AU - Giordano, Mara
AU - Tinto, Nadia
AU - Grasso, Valeria
AU - Russo, Lucia
AU - Tiberi, Valentina
AU - Scaramuzza, Andrea
AU - Frontino, Giulio
AU - Maggio, Maria Cristina
AU - Musolino, Gianluca
AU - Piccinno, Elvira
AU - Tinti, Davide
AU - Carrera, Paola
AU - Mozzillo, Enza
AU - Cappa, Marco
AU - Iafusco, Dario
AU - Bonfanti, Riccardo
AU - Novelli, Antonio
AU - Barbetti, Fabrizio
N1 - Publisher Copyright:
© The Author(s) 2024. Published by Oxford University Press on behalf of the Endocrine Society.
PY - 2024/9/1
Y1 - 2024/9/1
N2 - Context: In the last decade the Sanger method of DNA sequencing has been replaced by next-generation sequencing (NGS). NGS is valuable in conditions characterized by high genetic heterogeneity such as neonatal diabetes mellitus (NDM). Objective: To compare results of genetic analysis of patients with NDM and congenital severe insulin resistance (c.SIR) identified in Italy in 2003-2012 (Sanger) vs 2013-2022 (NGS). Methods: We reviewed clinical and genetic records of 104 cases with diabetes onset before 6 months of age (NDM + c.SIR) of the Italian dataset. Results: Fifty-five patients (50 NDM + 5 c.SIR) were identified during 2003-2012 and 49 (46 NDM + 3 c.SIR) in 2013-2022. Twenty-year incidence was 1:103 340 (NDM) and 1:1 240 082 (c.SIR) live births. Frequent NDM/c.SIR genetic defects (KCNJ11, INS, ABCC8, 6q24, INSR) were detected in 41 and 34 probands during 2003-2012 and 2013-2022, respectively. We identified a pathogenic variant in rare genes in a single proband (GATA4) (1/42 or 2.4%) during 2003-2012 and in 8 infants (RFX6, PDX1, GATA6, HNF1B, FOXP3, IL2RA, LRBA, BSCL2) during 2013-2022 (8/42 or 19%, P = .034 vs 2003-2012). Notably, among rare genes 5 were recessive. Swift and accurate genetic diagnosis led to appropriate treatment: patients with autoimmune NDM (FOXP3, IL2RA, LRBA) were subjected to bone marrow transplant; patients with pancreas agenesis/hypoplasia (RFX6, PDX1) were supplemented with pancreatic enzymes, and the individual with lipodystrophy caused by BSCL2 was started on metreleptin. Conclusion: NGS substantially improved diagnosis and precision therapy of monogenic forms of neonatal diabetes and c.SIR in Italy.
AB - Context: In the last decade the Sanger method of DNA sequencing has been replaced by next-generation sequencing (NGS). NGS is valuable in conditions characterized by high genetic heterogeneity such as neonatal diabetes mellitus (NDM). Objective: To compare results of genetic analysis of patients with NDM and congenital severe insulin resistance (c.SIR) identified in Italy in 2003-2012 (Sanger) vs 2013-2022 (NGS). Methods: We reviewed clinical and genetic records of 104 cases with diabetes onset before 6 months of age (NDM + c.SIR) of the Italian dataset. Results: Fifty-five patients (50 NDM + 5 c.SIR) were identified during 2003-2012 and 49 (46 NDM + 3 c.SIR) in 2013-2022. Twenty-year incidence was 1:103 340 (NDM) and 1:1 240 082 (c.SIR) live births. Frequent NDM/c.SIR genetic defects (KCNJ11, INS, ABCC8, 6q24, INSR) were detected in 41 and 34 probands during 2003-2012 and 2013-2022, respectively. We identified a pathogenic variant in rare genes in a single proband (GATA4) (1/42 or 2.4%) during 2003-2012 and in 8 infants (RFX6, PDX1, GATA6, HNF1B, FOXP3, IL2RA, LRBA, BSCL2) during 2013-2022 (8/42 or 19%, P = .034 vs 2003-2012). Notably, among rare genes 5 were recessive. Swift and accurate genetic diagnosis led to appropriate treatment: patients with autoimmune NDM (FOXP3, IL2RA, LRBA) were subjected to bone marrow transplant; patients with pancreas agenesis/hypoplasia (RFX6, PDX1) were supplemented with pancreatic enzymes, and the individual with lipodystrophy caused by BSCL2 was started on metreleptin. Conclusion: NGS substantially improved diagnosis and precision therapy of monogenic forms of neonatal diabetes and c.SIR in Italy.
KW - autoimmune neonatal diabetes mellitus
KW - congenital severe insulin resistance
KW - molecular genetics
KW - monogenic diabetes
KW - neonatal diabetes mellitus
UR - http://www.scopus.com/inward/record.url?scp=85197737590&partnerID=8YFLogxK
U2 - 10.1210/clinem/dgae095
DO - 10.1210/clinem/dgae095
M3 - Article
SN - 0021-972X
VL - 109
SP - 2349
EP - 2357
JO - Journal of Clinical Endocrinology and Metabolism
JF - Journal of Clinical Endocrinology and Metabolism
IS - 9
ER -