Role of Insulinlike Growth Factor 1 in Fetal Development and in the Early Postnatal Life of Premature Infants
- PMID: 27603537
- PMCID: PMC5779855
- DOI: 10.1055/s-0036-1586109
Role of Insulinlike Growth Factor 1 in Fetal Development and in the Early Postnatal Life of Premature Infants
Abstract
The neonatal period of very preterm infants is often characterized by a difficult adjustment to extrauterine life, with an inadequate nutrient supply and insufficient levels of growth factors, resulting in poor growth and a high morbidity rate. Long-term multisystem complications include cognitive, behavioral, and motor dysfunction as a result of brain damage as well as visual and hearing deficits and metabolic disorders that persist into adulthood. Insulinlike growth factor 1 (IGF-1) is a major regulator of fetal growth and development of most organs especially the central nervous system including the retina. Glucose metabolism in the developing brain is controlled by IGF-1 which also stimulates differentiation and prevents apoptosis. Serum concentrations of IGF-1 decrease to very low levels after very preterm birth and remain low for most of the perinatal development. Strong correlations have been found between low neonatal serum concentrations of IGF-1 and poor brain and retinal growth as well as poor general growth with multiorgan morbidities, such as intraventricular hemorrhage, retinopathy of prematurity, bronchopulmonary dysplasia, and necrotizing enterocolitis. Experimental and clinical studies indicate that early supplementation with IGF-1 can improve growth in catabolic states and reduce brain injury after hypoxic/ischemic events. A multicenter phase II study is currently underway to determine whether intravenous replacement of human recombinant IGF-1 up to normal intrauterine serum concentrations can improve growth and development and reduce prematurity-associated morbidities.
Thieme Medical Publishers 333 Seventh Avenue, New York, NY 10001, USA.
Conflict of interest statement
Conflict of Interest
Prevention of retinopathy of prematurity by administering insulinlike growth factor 1 are covered by the patent owned by or licensed to Premacure AB, Uppsala, Sweden. A. H., D. L., I. H. P., and A. L. H. own shares in the company with financial interest in Premacure AB. A. H., D. L., I. H. P., B. H., and L. E. H. S. work as consultants for Shire Pharmaceuticals (Shire, Lexington, MA).
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References
-
- Laviola L, Natalicchio A, Perrini S, Giorgino F. Abnormalities of IGF-I signaling in the pathogenesis of diseases of the bone, brain, and fetoplacental unit in humans. Am J Physiol Endocrinol Metab. 2008;295(5):E991–E999. - PubMed
-
- Torres-Aleman I, Villalba M, Nieto-Bona MP. Insulin-like growth factor-I modulation of cerebellar cell populations is developmentally stage-dependent and mediated by specific intracellular pathways. Neuroscience. 1998;83(2):321–334. - PubMed
-
- Rajaram S, Baylink DJ, Mohan S. Insulin-like growth factor-binding proteins in serum and other biological fluids: regulation and functions. Endocr Rev. 1997;18(6):801–831. - PubMed
-
- Firth SM, Baxter RC. Cellular actions of the insulin-like growth factor binding proteins. Endocr Rev. 2002;23(6):824–854. - PubMed
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