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The relationship between poor growth rate and increased risk of Type 2 diabetes, insulin resistance and obesity
Roselle L Cripps1, Susan E Ozanne
1Department of Clinical Biochemistry, University of Cambridge, Box 232, Level 4, Addenbrookes Hospital, Hills Road, Cambridge CB2 2QR, UK. rlc34@cam.ac.uk.
Insights
Low birth weight and rapid early growth increase the risk of developing Type 2 diabetes and obesity. Improving prenatal and early-life nutrition can help prevent these metabolic conditions.
Area of Science:
- Metabolic health
- Developmental origins of health and disease
Background:
- Type 2 diabetes, obesity, and metabolic syndrome are rising in younger populations, increasing mortality and healthcare costs.
- A strong link exists between low birth weight and increased risk of developing Type 2 diabetes, obesity, and hypertension.
- Rapid postnatal growth following poor fetal growth is increasingly recognized as detrimental.
Purpose of the Study:
- To review evidence linking fetal and early-life growth to adult metabolic syndrome, Type 2 diabetes, and obesity.
- To discuss epidemiological studies and animal models supporting this association.
- To explore potential mechanisms and interventions for prevention.
Main Methods:
- Review of epidemiological studies.
- Analysis of data from animal models.
- Examination of evidence on prenatal and early-life nutrition and growth.
Main Results:
- Consistent evidence from human and animal studies supports a link between suboptimal fetal and early-life growth and later metabolic disease.
- Rapid postnatal catch-up growth after poor fetal development exacerbates this risk.
- Interventions targeting prenatal nutrition and steady early-life growth show promise.
Conclusions:
- Improving prenatal nutrition and ensuring appropriate early-life growth are critical for reducing the incidence of Type 2 diabetes and obesity.
- Informed lifestyle choices by high-risk individuals can mitigate metabolic risks.
- Combined interventions in pregnancy, early life, and risk management can significantly lower the clinical burden of metabolic syndrome and its comorbidities.
Abstract:
Type 2 diabetes, obesity and the metabolic syndrome are rapidly escalating in progressively younger individuals, leading to increased mortality, morbidity and healthcare costs. Research into preventing as well as treating these conditions is of the utmost importance. The link between low birth weight and the subsequent increased risk of developing Type 2 diabetes and obesity, as well as other features of the metabolic syndrome such as hypertension, is well established. This review discusses the evidence from both epidemiological studies and animal models supporting this link, as well as potential mechanisms. More recently, increasing focus has been on the detrimental effect of rapid postnatal growth after poor fetal growth. Improving prenatal nutrition and maintaining a steady and appropriate growth rate in early life could dramatically decrease the rates of Type 2 diabetes, obesity and other metabolic complications. Individuals who are at high risk because of their fetal and prenatal growth could, if informed, be able to make improved life choices. A combination of improved fetal and early-life nutrition and appropriate risk management for high-risk individuals could reduce the huge clinical burden of these conditions. This review will focus on the evidence suggesting a link between fetal and early-life growth and the risk of developing Type 2 diabetes, obesity and other factors of the metabolic syndrome in adult life. This evidence exists from a wide range of epidemiological studies as well as from a variety of animal models. Interventions both during pregnancy and early life as well as informed life choices in those at risk could dramatically reduce the huge clinical burden of obesity and its comorbidities.
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