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Prediabetes and the big baby
1The Sir George E Clark Metabolic Unit, Royal Victoria Hospital, Belfast, UK. david.hadden@royalhospitals.n-i.nhs.uk
Insights
Prediabetes and large babies are persistent challenges linked to maternal hyperglycemia. Early life nutritional stresses, like kwashiorkor, may also induce insulin resistance, impacting long-term health.
Area of Science:
- Endocrinology
- Maternal-Fetal Medicine
- Nutritional Science
Background:
- The global rise of Type 2 diabetes highlights the significance of prediabetes.
- Historical research by Jackson et al. on maternal hyperglycemia and fetal outcomes remains relevant.
- Understanding the pathophysiology of fetal macrosomia and stillbirth in diabetic pregnancies is crucial.
Observation:
- Maternal hyperglycemia alone does not fully explain fetal macrosomia.
- Freinkel's concepts of 'facilitated anabolism' and 'accelerated starvation' describe fetal protective mechanisms during pregnancy.
- Kwashiorkor, a form of childhood malnutrition, shares similarities with pregnancy-related nutritional stresses, including insulin resistance.
Findings:
- Evidence suggests insulin resistance in both macrosomic fetuses of hyperglycemic mothers and children with kwashiorkor.
- Adaptive physiological changes during early development may have pathological consequences.
- Worldwide efforts are standardizing criteria for hyperglycemia in pregnancy, screening, and treatment.
Implications:
- The persistent challenge of prediabetes and large babies necessitates continued research.
- Understanding early life nutritional influences on insulin resistance is key to preventing future diabetes.
- Further investigation into the complex interplay between maternal health, fetal development, and long-term metabolic outcomes is warranted.
Abstract:
The concept of prediabetes has come to the fore again with the worldwide epidemic of Type 2 diabetes. The careful observations of W. P. U. Jackson and his colleagues in Cape Town, South Africa 50 years ago still deserve attention. Maternal hyperglycaemia cannot be the only cause of fetal macrosomia, and the pathophysiological reason for the unexplained stillbirth in late diabetic pregnancy still eludes us. The biochemical concepts of 'facilitated anabolism' and 'accelerated starvation' were developed by Freinkel as explanations of the protective mechanisms for the baby during the stresses of pregnancy. Some of these nutritional stresses may also occur in the particular form of early childhood malnutrition known in Africa as kwashiorkor, where subcutaneous fat deposition, carbohydrate intolerance, islet hyperplasia and sudden death may follow a period of excess carbohydrate and deficient protein intake. Different feeding practices in different parts of the world make comparisons uncertain, but there is evidence for insulin resistance in both the macrosomic fetus of the hyperglycaemic mother and in the child with established kwashiorkor. These adaptive changes in early development may play both a physiological and a pathological role. Worldwide studies of hyperglycaemia in pregnancy are gradually establishing acceptable diagnostic criteria, appropriate screening procedures and an evidence base for treatment. Nevertheless the challenge of prediabetes and the big baby is still with us--in Jackson's words--'diabetes mellitus is a fascinating condition-the more we know about it the less we understand it'.
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