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Published on: July 5, 2022
Paediatric diabetes subtypes in a consanguineous population: a single-centre cohort study from Kurdistan, Iraq
Shenali A Amaratunga1, Tara Hussein Tayeb2,3, Rozhan N Muhamad Sediq2,3
1Department of Paediatrics, 2nd Faculty of Medicine, Charles University in Prague and Motol University Hospital, Prague, Czech Republic. shenali.amaratunga@fnmotol.cz.
Insights
In a consanguineous population, type 1 diabetes remains most common in children. Genetic testing revealed distinct monogenic diabetes causes in neonatal and syndromic cases, differing from non-consanguineous populations.
Area of Science:
- Pediatric Endocrinology
- Human Genetics
- Metabolic Disorders
Background:
- Monogenic diabetes accounts for 1-6% of pediatric diabetes in non-consanguineous populations.
- The genetic landscape of monogenic diabetes in consanguineous populations is less understood.
- This study investigates diabetes subtypes and genetic causes in a high-consanguinity region.
Purpose of the Study:
- To evaluate diabetes subtypes in a consanguineous pediatric population.
- To determine the consanguinity rate among children with diabetes.
- To identify genetic causes of syndromic and neonatal diabetes in this cohort.
Main Methods:
- Cross-sectional data collection at a single pediatric diabetic clinic in Iraq.
- Analysis of patient files for 754 individuals with diabetes (up to 16 years old).
- Next-generation sequencing for genetic testing in families with neonatal and syndromic diabetes.
Main Results:
- 36.5% of participants with known consanguinity were from consanguineous families.
- Type 1 diabetes was the most prevalent subtype (94.7%), with 35% born to consanguineous parents.
- Genetic causes were found in 83% of tested neonatal diabetes and 57% of syndromic diabetes cases, with distinct genes identified.
Conclusions:
- Clinically defined type 1 diabetes is the predominant subtype in this highly consanguineous pediatric population.
- Monogenic diabetes in this cohort is often caused by homozygous variants in genes different from those in non-consanguineous populations.
- Diagnostic criteria for syndromic diabetes in consanguineous populations may require revision to include features like short stature and hepatosplenomegaly.
Aims/Hypothesis:
Monogenic diabetes is estimated to account for 1-6% of paediatric diabetes cases in primarily non-consanguineous populations, while the incidence and genetic spectrum in consanguineous regions are insufficiently defined. In this single-centre study we aimed to evaluate diabetes subtypes, obtain the consanguinity rate and study the genetic background of individuals with syndromic and neonatal diabetes in a population with a high rate of consanguinity.
Methods:
Data collection was carried out cross-sectionally in November 2021 at the paediatric diabetic clinic, Dr Jamal Ahmad Rashed Hospital, in Sulaimani, Kurdistan, Iraq. At the time of data collection, 754 individuals with diabetes (381 boys) aged up to 16 years were registered. Relevant participant data was obtained from patient files. Consanguinity status was known in 735 (97.5%) participants. Furthermore, 12 families of children with neonatal diabetes and seven families of children with syndromic diabetes consented to genetic testing by next-generation sequencing. Prioritised variants were evaluated using the American College of Medical Genetics and Genomics guidelines and confirmed by Sanger sequencing.
Results:
A total of 269 of 735 participants (36.5%) with known consanguinity status were offspring of consanguineous families. An overwhelming majority of participants (714/754, 94.7%) had clinically defined type 1 diabetes (35% of them were born to consanguineous parents), whereas only eight (1.1%) had type 2 diabetes (38% consanguineous). Fourteen (1.9%) had neonatal diabetes (50% consanguineous), seven (0.9%) had syndromic diabetes (100% consanguineous) and 11 (1.5%) had clinically defined MODY (18% consanguineous). We found that consanguinity was significantly associated with syndromic diabetes (p=0.0023) but not with any other diabetes subtype. The genetic cause was elucidated in ten of 12 participants with neonatal diabetes who consented to genetic testing (homozygous variants in GLIS3 [sibling pair], PTF1A and ZNF808 and heterozygous variants in ABCC8 and INS) and four of seven participants with syndromic diabetes (homozygous variants in INSR, SLC29A3 and WFS1 [sibling pair]). In addition, a participant referred as syndromic diabetes was diagnosed with mucolipidosis gamma and probably has type 2 diabetes.
Conclusions/Interpretation:
This unique single-centre study confirms that, even in a highly consanguineous population, clinically defined type 1 diabetes is the prevailing paediatric diabetes subtype. Furthermore, a pathogenic cause of monogenic diabetes was identified in 83% of tested participants with neonatal diabetes and 57% of participants with syndromic diabetes, with most variants being homozygous. Causative genes in our consanguineous participants were markedly different from genes reported from non-consanguineous populations and also from those reported in other consanguineous populations. To correctly diagnose syndromic diabetes in consanguineous populations, it may be necessary to re-evaluate diagnostic criteria and include additional phenotypic features such as short stature and hepatosplenomegaly.
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