Global birth prevalence and mortality from inborn errors of metabolism: a systematic analysis of the evidence

Мировая распространённость при рождении и смертность от врождённых ошибок метаболизма: систематический анализ имеющихся данных
Igor Rudan, Elizabeth Wastnedge, Davies Adeloye, Donald Waters, Daisy Woolham, Smruti Patel
2018-11-14

birth prevalencecase fatality rateinborn errors of metabolismparental consanguinitysystematic review and meta-analysis
BACKGROUND: Inborn errors of metabolism (IEM) are a group of over 500 heterogeneous disorders resulting from a defect in functioning of an intermediate metabolic pathway. Individually rare, their cumulative incidence is thought to be high, but it has not yet been estimated globally. Although outcomes can often be good if recognised early, IEM carry a high fatality rate if not diagnosed. As a result, IEM may contribute significantly to the burden of non-communicable childhood morbidity. METHODS: We conducted a systematic literature review of birth prevalence and case fatality of IEM globally, with search dates set from 1980 to 2017. Using random-effects meta-analysis, we estimated birth prevalence of separate classes of IEM and all-cause IEM, split by geographical region. We also estimated levels of parental consanguinity in IEM cases and global case fatality rates and resultant child deaths from all-cause IEM. FINDINGS: 49 studies met our selection criteria. We estimate the global birth prevalence of all-cause IEM to be 50.9 per 100 000 live births (95% confidence intervals (CI) = 43.4-58.4). Regional pooled birth prevalence rates showed the highest rates of IEM to be in the Eastern Mediterranean region (75.7 per 100 000 live births, 95% CI = 50.0-101.4), correlating with a higher observed rate of parental consanguinity in studies from this area. We estimate case fatality rates to be 33% or higher in low- and middle-income countries (LMICs), resulting in a minimum of 23 529 deaths from IEM per year globally (95% CI = 20 382-27 427), accounting for 0.4% of all child deaths worldwide. CONCLUSIONS: IEM represent a significant cause of global child morbidity and mortality, comprising a notable proportion of child deaths currently not delineated in global modelling efforts. Our data highlight the need for policy focus on enhanced laboratory capacity for screening and diagnosis, community interventions to tackle parental consanguinity, and increased awareness and knowledge regarding management of IEM, particularly in LMICs.
1
Eastern Mediterranean region shows highest pooled IEM birth prevalence: 75.7 per 100,000 live births (95% CI 50.0–101.4), correlated with higher parental consanguinity.
2
Estimated case fatality rates in low- and middle-income countries (LMICs) are 33% or higher for IEM.
3
Global birth prevalence of all-cause inborn errors of metabolism (IEM) estimated at 50.9 per 100,000 live births (95% CI 43.4–58.4).
4
IEM cause an estimated minimum of 23,529 child deaths per year globally (95% CI 20,382–27,427), representing 0.4% of all child deaths worldwide.
5
Recommendations: strengthen laboratory screening/diagnosis, address parental consanguinity, and increase IEM management awareness—particularly in LMICs.

Inborn errors of metabolism (IEM) in liveborn children globally

Global birth prevalence, regional variation, parental consanguinity association, and case fatality/mortality burden of IEM

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2018-11-14
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Igor Rudan
Elizabeth Wastnedge
Davies Adeloye
Donald Waters
Daisy Woolham
Smruti Patel
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