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Assessment of Child Anthropometry in a Large Epidemiologic Study
Published on: February 2, 2017
Early Weight Gain, Linear Growth, and Mid-Childhood Blood Pressure: A Prospective Study in Project Viva
Wei Perng1, Sheryl L Rifas-Shiman2, Michael S Kramer2
1From the Department of Nutritional Sciences, University of Michigan School of Public Health, Ann Arbor, MI (W.P.); Obesity Prevention Program, Department of Population Medicine, Harvard Medical School/Harvard Pilgrim Health Care Institute, Boston, MA (S.L.R.-S., E.O., M.W.G.); Departments of Pediatrics and Epidemiology, Biostatistics and Occupational Health, McGill University Faculty of Medicine, Montreal, Quebec, Canada (M.S.K.); Novo Nordisk Foundation Center for Basic Metabolic Research, Health and Medical Sciences, University of Copenhagen, Denmark (L.K.H.); Institute of Preventive Medicine; Bispebjerg and Frederiksberg Hospitals, The Capital Region, Copenhagen, Denmark (L.K.H.); Department of Nutrition, T.H. Chan Harvard School of Public Health, Boston, MA (E.O., M.W.G.); and Department of Pediatric Newborn Medicine, Brigham and Women's Hospital, Boston, MA (M.B.B.). perngwei@umich.edu.
Insights
Rapid body mass index gain in early infancy and preschool years is linked to higher childhood systolic blood pressure. These findings emphasize early life adiposity management for long-term cardiovascular health.
Area of Science:
- Pediatrics
- Cardiovascular Health
- Growth and Development
Background:
- Childhood hypertension and prehypertension are increasing.
- Early life factors like birth weight and rapid weight gain influence future blood pressure.
- The specific timing of postnatal weight gain and linear growth's role in blood pressure remain understudied.
Purpose of the Study:
- To investigate the association between early life body mass index (BMI) and length/height z-score gains during specific intervals and mid-childhood blood pressure.
- To determine if birth size modifies these associations.
- To inform strategies for preventing elevated blood pressure in children.
Main Methods:
- Analysis of 957 participants from the Project Viva prebirth cohort.
- Examined BMI z-score and length/height z-score gains from birth to 3 years across four intervals.
- Assessed associations with mid-childhood systolic and diastolic blood pressure, adjusting for confounders and evaluating birth size interactions.
Main Results:
- Increased BMI z-score gain between birth and 6 months was associated with higher systolic blood pressure (0.81 mm Hg per z-score gain).
- Increased BMI z-score gain between 2 and 3 years was also associated with higher systolic blood pressure (1.61 mm Hg per z-score gain).
- Length/height gain showed no significant association with mid-childhood blood pressure; no effect modification by birth size was observed.
Conclusions:
- Rapid BMI gain in early infancy and the preschool period may elevate mid-childhood systolic blood pressure.
- These associations appear independent of birth size.
- Interventions targeting early life adiposity may be crucial for mitigating future blood pressure and cardiovascular risks.
Abstract:
In recent years, the prevalence of hypertension and prehypertension increased markedly among children and adolescents, highlighting the importance of identifying determinants of elevated blood pressure early in life. Low birth weight and rapid early childhood weight gain are associated with higher future blood pressure. However, few studies have examined the timing of postnatal weight gain in relation to later blood pressure, and little is known regarding the contribution of linear growth. We studied 957 participants in Project Viva, an ongoing US prebirth cohort. We examined the relations of gains in body mass index z-score and length/height z-score during 4 early life age intervals (birth to 6 months, 6 months to 1 year, 1 to 2 years, and 2 to 3 years) with blood pressure during mid-childhood (6-10 years) and evaluated whether these relations differed by birth size. After accounting for confounders, each additional z-score gain in body mass index during birth to 6 months and 2 to 3 years was associated with 0.81 (0.15, 1.46) and 1.61 (0.33, 2.89) mm Hg higher systolic blood pressure, respectively. Length/height gain was unrelated to mid-childhood blood pressure, and there was no evidence of effect modification by birth size for body mass index or length/height z-score gain. Our findings suggest that more rapid gain in body mass index during the first 6 postnatal months and in the preschool years may lead to higher systolic blood pressure in mid-childhood, regardless of size at birth. Strategies to reduce accrual of excess adiposity during early life may reduce mid-childhood blood pressure, which may also impact adult blood pressure and cardiovascular health.
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