Home LiteratureArticle Details
PMID: 22371245 Published · epublish English Journal Article Review

The long-term renal and cardiovascular consequences of prematurity.

Nature reviews. Nephrology ·Vol. 8 ·No. 5 ·2012-02-28 ·Pages 265-74

Abitbol CL, Rodriguez MM

Abstract

Infants born prematurely at <37 weeks' gestation account for over 80% of infants weighing <2,500 g at birth-low birth weight (LBW) infants. This designation remains the surrogate marker for developmental origins of adult disease. Landmark studies spanning four decades have shown that individuals born with a LBW are more likely to develop cardiovascular and renal disease in later life, which is believed to be related to 'developmental programming' of such adult disease during vulnerable periods of growth in utero and in the early postnatal period. There has long been ambiguity regarding the distinction between infants with intrauterine growth restriction and preterm infants since both show a low nephron endowment that is associated with subsequent hypertension and chronic kidney disease. Knowledge is growing specific to the preterm infant and the developmental associations of being born preterm with the interruption of normal organogenesis relative to the vascular tree and kidney. Both systems develop by branching morphogenesis and interruptions lead to considerable deficits in their structure and function. These developmental aberrations can lead to endothelial dysfunction, hypertension, proteinuria and metabolic abnormalities that persist throughout life. This Review will examine the effect of preterm birth on the development of cardiovascular and kidney disease in later life and will also discuss potential early interventions to alter the progression of disease.

MeSH Terms
Cardiovascular Diseases/epidemiology,physiopathology Female Gestational Age Humans Infant, Low Birth Weight/physiology Infant, Newborn Infant, Premature/physiology Kidney/embryology,growth & development Kidney Diseases/epidemiology,physiopathology Kidney Glomerulus/embryology,growth & development Metabolic Syndrome Nephrons/growth & development,pathology Organogenesis/physiology Pregnancy Premature Birth/physiopathology Prognosis Risk Factors
Authors & Affiliations
2 authors, click to expand affiliations / ORCID
Abitbol Carolyn L
Division of Pediatric Nephrology, Department of Pediatrics, Holtz Children's Hospital, University of Miami Miller School of Medicine, Miami, FL 33101, USA. [email protected]
Rodriguez Maria M
References (111)
111 references, click to expand
  1. To catch up or not to catch up: is this the question? Lessons from animal models.
    Curr Opin Endocrinol Diabetes Obes. 2007 Feb;14(1):23-9 PMID: 17940415
  2. Congenital oligonephropathy and the etiology of adult hypertension and progressive renal injury.
    Am J Kidney Dis. 1994 Feb;23(2):171-5 PMID: 8311070
  3. Preterm birth contributes to increased vascular resistance and higher blood pressure in adolescent girls.
    Pediatr Res. 2005 Nov;58(5):845-9 PMID: 16183828
  4. Fructose induces the inflammatory molecule ICAM-1 in endothelial cells.
    J Am Soc Nephrol. 2008 Sep;19(9):1712-20 PMID: 18508964
  5. Programming by early nutrition: an experimental approach.
    J Nutr. 1998 Feb;128(2 Suppl):401S-406S PMID: 9478036
  6. Microalbuminuria and lower glomerular filtration rate at young adult age in subjects born very premature and after intrauterine growth retardation.
    J Am Soc Nephrol. 2005 Sep;16(9):2762-8 PMID: 15987756
  7. Renal function and kidney length in preterm infants with nephrocalcinosis: a longitudinal study.
    Pediatr Nephrol. 2011 Oct;26(10):1873-80 PMID: 21533868
  8. Human nephron number: implications for health and disease.
    Pediatr Nephrol. 2011 Sep;26(9):1529-33 PMID: 21604189
  9. Is low birth weight an antecedent of CKD in later life? A systematic review of observational studies.
    Am J Kidney Dis. 2009 Aug;54(2):248-61 PMID: 19339091
  10. Catch-up growth in childhood and death from coronary heart disease: longitudinal study.
    BMJ. 1999 Feb 13;318(7181):427-31 PMID: 9974455
  11. The impact of birth weight and gestational age on blood pressure in adult life: a population-based study of 49-year-old men.
    Am J Hypertens. 1998 Aug;11(8 Pt 1):946-53 PMID: 9715787
  12. Increased systolic daily ambulatory blood pressure in adult women born preterm.
    Pediatr Nephrol. 2005 Feb;20(2):232-3 PMID: 15583945
  13. Fructose-induced metabolic syndrome is associated with glomerular hypertension and renal microvascular damage in rats.
    Am J Physiol Renal Physiol. 2007 Jan;292(1):F423-9 PMID: 16940562
  14. Obesity and preterm birth: additive risks in the progression of kidney disease in children.
    Pediatr Nephrol. 2009 Jul;24(7):1363-70 PMID: 19214591
  15. The multidimensional nature of renal disease: rates and associations of albuminuria in an Australian Aboriginal community.
    Kidney Int. 1998 Oct;54(4):1296-304 PMID: 9767547
  16. Accelerated maturation and abnormal morphology in the preterm neonatal kidney.
    J Am Soc Nephrol. 2011 Jul;22(7):1365-74 PMID: 21636639
  17. Effect of intrauterine growth restriction on kidney function at young adult age: the Nord Trøndelag Health (HUNT 2) Study.
    Am J Kidney Dis. 2008 Jan;51(1):10-20 PMID: 18155528
  18. Growth in utero, blood pressure in childhood and adult life, and mortality from cardiovascular disease.
    BMJ. 1989 Mar 4;298(6673):564-7 PMID: 2495113
  19. Flow-mediated dilation in 9- to 11-year-old children: the influence of intrauterine and childhood factors.
    Circulation. 1997 Oct 7;96(7):2233-8 PMID: 9337195
  20. Profiling proteinuria in pediatric patients.
    Pediatr Nephrol. 2006 Jul;21(7):995-1002 PMID: 16773413
  21. Nephrocalcinosis in preterm neonates.
    Pediatr Nephrol. 2010 Feb;25(2):221-30 PMID: 18797936
  22. Relationship between weight at birth and the number and size of renal glomeruli in humans: a histomorphometric study.
    Kidney Int. 2000 Aug;58(2):770-3 PMID: 10916101
  23. Implications of recent clinical trials for the National Cholesterol Education Program Adult Treatment Panel III guidelines.
    Circulation. 2004 Jul 13;110(2):227-39 PMID: 15249516
  24. Is nephrocalcinosis in preterm neonates harmful for long-term blood pressure and renal function?
    Pediatrics. 2007 Mar;119(3):468-75 PMID: 17332199
  25. Lung development and adult lung diseases.
    Chest. 2007 Aug;132(2):651-6 PMID: 17699136
  26. Early nutrition in preterm infants and later blood pressure: two cohorts after randomised trials.
    Lancet. 2001 Feb 10;357(9254):413-9 PMID: 11273059
  27. Proteinuria: not a small problem in the little ones.
    Clin J Am Soc Nephrol. 2009 Apr;4(4):696-7 PMID: 19339420
  28. Vascular mechanisms in the developmental programming of cardio-vascular disease.
    Pediatr Med Chir. 2005 Sep-Oct;27(5):18-23 PMID: 16913620
  29. Comparison of different definitions of pediatric metabolic syndrome: relation to abdominal adiposity, insulin resistance, adiponectin, and inflammatory biomarkers.
    J Pediatr. 2008 Feb;152(2):177-84 PMID: 18206686
  30. Human intrauterine renal growth expressed in absolute number of glomeruli assessed by the disector method and Cavalieri principle.
    Lab Invest. 1991 Jun;64(6):777-84 PMID: 2046329
  31. Low birth weight infants and the developmental programming of hypertension: a focus on vascular factors.
    Semin Perinatol. 2010 Jun;34(3):188-92 PMID: 20494734
  32. Impaired synthesis of elastin in walls of aorta and large conduit arteries during early development as an initiating event in pathogenesis of systemic hypertension.
    Lancet. 1997 Sep 27;350(9082):953-5 PMID: 9314885
  33. Nephron number: variability is the rule. Causes and consequences.
    Lab Invest. 1999 May;79(5):515-27 PMID: 10334563
  34. Insulin sensitivity and secretion are related to catch-up growth in small-for-gestational-age infants at age 1 year: results from a prospective cohort.
    J Clin Endocrinol Metab. 2003 Aug;88(8):3645-50 PMID: 12915649
  35. Weight gain in the first week of life and overweight in adulthood: a cohort study of European American subjects fed infant formula.
    Circulation. 2005 Apr 19;111(15):1897-903 PMID: 15837942
  36. Increased blood pressure but normal renal function in adult women born preterm.
    Pediatr Nephrol. 2000 Dec;15(3-4):215-20 PMID: 11149114
  37. Microalbuminuria in adults after prenatal exposure to the Dutch famine.
    J Am Soc Nephrol. 2005 Jan;16(1):189-94 PMID: 15548563
  38. Proteinuria as a predictor of disease progression in children with hypodysplastic nephropathy. Data from the Ital Kid Project.
    Pediatr Nephrol. 2004 Feb;19(2):172-7 PMID: 14673629
  39. Marked interindividual variability in renal maturation of preterm infants: lessons from autopsy.
    J Matern Fetal Neonatal Med. 2010 Oct;23 Suppl 3:129-33 PMID: 20836739
  40. Low birth weight increases risk for end-stage renal disease.
    J Am Soc Nephrol. 2008 Jan;19(1):151-7 PMID: 18057216
  41. Nephron number, glomerular volume, renal disease and hypertension.
    Curr Opin Nephrol Hypertens. 2008 May;17(3):258-65 PMID: 18408476
  42. Abnormal retinal vascularisation in preterm children as a general vascular phenomenon.
    Lancet. 1998 Dec 5;352(9143):1827 PMID: 9851388
  43. Postnatal renal function in preterm newborns: a role of diseases, drugs and therapeutic interventions.
    Pediatr Nephrol. 2006 Jul;21(7):931-8 PMID: 16773403
  44. Elevated blood pressure in offspring born premature to hypertensive pregnancy: is endothelial dysfunction the underlying vascular mechanism?
    Hypertension. 2010 Jul;56(1):159-65 PMID: 20479334
  45. Metabolic syndrome and the risk for chronic kidney disease among nondiabetic adults.
    J Am Soc Nephrol. 2005 Jul;16(7):2134-40 PMID: 15901764
  46. Could uric acid have a role in acute renal failure?
    Clin J Am Soc Nephrol. 2007 Jan;2(1):16-21 PMID: 17699382
  47. Spectrum of renal diseases associated with extreme forms of insulin resistance.
    Clin J Am Soc Nephrol. 2006 Jul;1(4):616-22 PMID: 17699267
  48. Birth weight: a predictive medicine consideration for the disparities in CKD.
    Am J Kidney Dis. 2009 Aug;54(2):191-3 PMID: 19619841
  49. Long-term effects of neonatal drugs on the kidney.
    J Matern Fetal Neonatal Med. 2010 Oct;23 Suppl 3:87-9 PMID: 20653340
  50. The early origins of chronic heart failure: impaired placental growth and initiation of insulin resistance in childhood.
    Eur J Heart Fail. 2010 Aug;12(8):819-25 PMID: 20504866
  51. Preterm birth attenuates association between low birth weight and endothelial dysfunction.
    Circulation. 2003 Aug 26;108(8):996-1001 PMID: 12925463
  52. Nutritional programming of the metabolic syndrome.
    Nat Rev Endocrinol. 2009 Nov;5(11):604-10 PMID: 19786987
  53. The developing kidney and environmental toxins.
    Pediatrics. 2004 Apr;113(4 Suppl):1084-91 PMID: 15060203
  54. Early nutrition and leptin concentrations in later life.
    Am J Clin Nutr. 2002 Jun;75(6):993-9 PMID: 12036804
  55. An overview of mortality and sequelae of preterm birth from infancy to adulthood.
    Lancet. 2008 Jan 19;371(9608):261-9 PMID: 18207020
  56. Epidemiology of preterm birth and its clinical subtypes.
    J Matern Fetal Neonatal Med. 2006 Dec;19(12):773-82 PMID: 17190687
  57. Role of the kidney in the prenatal and early postnatal programming of hypertension.
    Am J Physiol Renal Physiol. 2010 Feb;298(2):F235-47 PMID: 19794108
  58. Nephron mass and cardiovascular and renal disease risks.
    Semin Nephrol. 2009 Jul;29(4):445-54 PMID: 19615565
  59. Is slower early growth beneficial for long-term cardiovascular health?
    Circulation. 2004 Mar 9;109(9):1108-13 PMID: 14993136
  60. Longitudinal changes in insulin sensitivity and secretion from birth to age three years in small- and appropriate-for-gestational-age children.
    Diabetologia. 2005 Dec;48(12):2609-14 PMID: 16283238
  61. The stressed neonatal kidney: from pathophysiology to clinical management of neonatal vasomotor nephropathy.
    Pediatr Nephrol. 2000 Mar;14(3):227-39 PMID: 10752764
  62. Structural skin capillary rarefaction in essential hypertension.
    Hypertension. 1999 Apr;33(4):998-1001 PMID: 10205237
  63. Low gestational age associated with abnormal retinal vascularization and increased blood pressure in adult women.
    Pediatr Res. 2002 Jun;51(6):675-80 PMID: 12032260
  64. Adult cardiovascular risk factors in premature babies.
    Lancet. 2000 Jun 17;355(9221):2135-6 PMID: 10902631
  65. The impact of early nutrition in premature infants on later childhood insulin sensitivity and growth.
    Pediatrics. 2006 Nov;118(5):1943-9 PMID: 17079565
  66. Low-fructose diet lowers blood pressure and inflammation in patients with chronic kidney disease.
    Nephrol Dial Transplant. 2012 Feb;27(2):608-12 PMID: 21613382
  67. Low birth weight and the developing vascular tree: a systematic review.
    Acta Paediatr. 2008 Sep;97(9):1165-72 PMID: 18554273
  68. Glomerular number and size in relation to age, kidney weight, and body surface in normal man.
    Anat Rec. 1992 Feb;232(2):194-201 PMID: 1546799
  69. Independent effects of prematurity on metabolic and cardiovascular risk factors in short small-for-gestational-age children.
    J Clin Endocrinol Metab. 2008 Feb;93(2):452-8 PMID: 18029462
  70. Oligonephropathy: from a rare childhood disorder to a possible health problem in the adult.
    Isr Med Assoc J. 2002 Mar;4(3):191-5 PMID: 11908261
  71. Angiotensin blockade as sole treatment for proteinuric kidney disease in children.
    Nephrol Dial Transplant. 2007 May;22(5):1332-7 PMID: 17299000
  72. Comparative renal histomorphometry: a case study of oligonephropathy of prematurity.
    Pediatr Nephrol. 2005 Jul;20(7):945-9 PMID: 15856326
  73. Decreased umbilical artery compliance and igf-I plasma levels in infants with intrauterine growth restriction - implications for fetal programming of hypertension.
    Placenta. 2009 Feb;30(2):136-41 PMID: 19070892
  74. Glucose regulation in young adults with very low birth weight.
    N Engl J Med. 2007 May 17;356(20):2053-63 PMID: 17507704
  75. The effect of fructose on renal biology and disease.
    J Am Soc Nephrol. 2010 Dec;21(12):2036-9 PMID: 21115612
  76. Intrauterine growth of live-born Caucasian infants at sea level: standards obtained from measurements in 7 dimensions of infants born between 25 and 44 weeks of gestation.
    J Pediatr. 1969 Jun;74(6):901-10 PMID: 5781799
  77. Clinical outcomes of near-term infants.
    Pediatrics. 2004 Aug;114(2):372-6 PMID: 15286219
  78. Sugar-sweetened beverages, serum uric acid, and blood pressure in adolescents.
    J Pediatr. 2009 Jun;154(6):807-13 PMID: 19375714
  79. Generating expected growth curves and Z-scores for premature infants.
    J Perinatol. 2010 Nov;30(11):741-50 PMID: 20237488
  80. Effects of low birth weight in 8- to 13-year-old children: implications in endothelial function and uric acid levels.
    Hypertension. 2006 Jul;48(1):45-50 PMID: 16682609
  81. Early detection of microalbuminuria and hypertension in children of very low birthweight.
    J Matern Fetal Neonatal Med. 2009 Feb;22(2):83-8 PMID: 19253159
  82. Cardiovascular risk factors at age 30 following pre-term birth.
    Int J Epidemiol. 2007 Aug;36(4):907-15 PMID: 17468503
  83. Histomorphometric analysis of postnatal glomerulogenesis in extremely preterm infants.
    Pediatr Dev Pathol. 2004 Jan-Feb;7(1):17-25 PMID: 15255031
  84. Hyperuricemia induces endothelial dysfunction.
    Kidney Int. 2005 May;67(5):1739-42 PMID: 15840020
  85. Reductions in caloric intake and early postnatal growth prevent glucose intolerance and obesity associated with low birthweight.
    Diabetologia. 2006 Aug;49(8):1974-84 PMID: 16761107
  86. Mechanisms of disease: in utero programming in the pathogenesis of hypertension.
    Nat Clin Pract Nephrol. 2006 Dec;2(12):700-7 PMID: 17124527
  87. Hypothesis: Uric acid, nephron number, and the pathogenesis of essential hypertension.
    Kidney Int. 2004 Jul;66(1):281-7 PMID: 15200435
  88. Very low birth weight is a risk factor for secondary focal segmental glomerulosclerosis.
    Clin J Am Soc Nephrol. 2009 Jan;4(1):71-6 PMID: 19019999
  89. Extracellular matrix changes in the umbilical arteries of growth-restricted fetuses.
    Am J Obstet Gynecol. 2005 Apr;192(4):1053-9 PMID: 15846179
  90. The kidney from prenatal to adult life: perinatal programming and reduction of number of nephrons during development.
    Am J Nephrol. 2009;30(2):162-70 PMID: 19339773
  91. Characteristics of arterial stiffness in very low birth weight premature infants.
    Pediatr Res. 2006 Nov;60(5):592-6 PMID: 16988197
  92. Premature birth and later insulin resistance.
    N Engl J Med. 2004 Nov 18;351(21):2179-86 PMID: 15548778
  93. The worldwide incidence of preterm birth: a systematic review of maternal mortality and morbidity.
    Bull World Health Organ. 2010 Jan;88(1):31-8 PMID: 20428351
  94. The role of uric acid in pediatric hypertension.
    J Ren Nutr. 2007 Jan;17(1):79-83 PMID: 17198939
  95. Glomerular hyperfiltration: a new marker of metabolic risk.
    Kidney Int. 2007 Apr;71(8):816-21 PMID: 17332732
  96. Long-term follow-up of extremely low birth weight infants with neonatal renal failure.
    Pediatr Nephrol. 2003 Sep;18(9):887-93 PMID: 12836091
  97. Reappraisal of the pathogenesis and consequences of hyperuricemia in hypertension, cardiovascular disease, and renal disease.
    Am J Kidney Dis. 1999 Feb;33(2):225-34 PMID: 10023633
  98. Renal function and volume of infants born with a very low birth-weight: a preliminary cross-sectional study.
    Acta Paediatr. 2010 Aug;99(8):1192-8 PMID: 20337778
  99. Evidence of arteriolar narrowing in low-birth-weight children.
    Circulation. 2008 Jul 29;118(5):518-24 PMID: 18625895
  100. Branching morphogenesis and kidney disease.
    Development. 2004 Apr;131(7):1449-62 PMID: 15023929
  101. Preterm birth, vascular function, and risk factors for atherosclerosis.
    Lancet. 2001 Oct 6;358(9288):1159-60 PMID: 11597675
  102. Multi-hit nature of chronic renal disease.
    Curr Opin Nephrol Hypertens. 2000 Mar;9(2):85-97 PMID: 10757212
  103. The preterm parturition syndrome and its implications for understanding the biology, risk assessment, diagnosis, treatment and prevention of preterm birth.
    J Matern Fetal Neonatal Med. 2009;22 Suppl 2:5-23 PMID: 19951079
  104. Association of preterm birth with long-term survival, reproduction, and next-generation preterm birth.
    JAMA. 2008 Mar 26;299(12):1429-36 PMID: 18364485
  105. Long-term renal follow-up of extremely low birth weight infants.
    Pediatr Nephrol. 2005 May;20(5):579-84 PMID: 15782301
  106. The metabolic syndrome in children and adolescents - an IDF consensus report.
    Pediatr Diabetes. 2007 Oct;8(5):299-306 PMID: 17850473
  107. The future of very preterm infants: learning from the past.
    JAMA. 2008 Mar 26;299(12):1477-8 PMID: 18364492
  108. Nephron number in patients with primary hypertension.
    N Engl J Med. 2003 Jan 9;348(2):101-8 PMID: 12519920
  109. Reduced brachial flow-mediated vasodilation in young adult ex extremely low birth weight preterm: a condition predictive of increased cardiovascular risk?
    J Matern Fetal Neonatal Med. 2010 Oct;23 Suppl 3:121-4 PMID: 20925458
  110. What causes racial disparities in very preterm birth? A biosocial perspective.
    Epidemiol Rev. 2009;31:84-98 PMID: 19477907
  111. Nephron mass as a risk factor for progression of renal disease.
    Kidney Int Suppl. 1997 Dec;63:S124-7 PMID: 9407439
Article Info
Journal
Nature reviews. Nephrology
Abbr.
Nat Rev Nephrol
ISSN
1759-507X
Published
2012-02-28
Epub
2012-00-28
Pages
265-74
Language
English
Region
England
NLM ID
101500081
Subset
IM
Analysis Services
Analysis Services

Contact

No. 2 Wenbo Road, Zhangqiu District, Jinan, Shandong

Qilu Normal University · Genelibs Bioinformatics Lab

750 Shunhua Rd, Jinan

2F, Bldg F, University Science Park

Tel: 0531-88819269

WeChat Official Account

Follow our WeChat subscription account for real-time updates and the latest in medical and biological research.


Business Email

E-mail: [email protected]