Oxygen-Induced Retinopathy in Mice: Amplification by Neonatal IGF-I Deficit and Attenuation by IGF-I Administration

被引:0
作者
Sophie Vanhaesebrouck
Hans Daniëls
Lieve Moons
Christine Vanhole
Peter Carmeliet
Francis De Zegher
机构
[1] Neonatal Intensive Care Unit,
[2] University Hospital Gasthuisberg,undefined
[3] Vesalius Research Center,undefined
[4] University of Leuven,undefined
来源
Pediatric Research | 2009年 / 65卷
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摘要
In preterms, low serum levels of IGF (IGF-I) correlate with retinopathy of prematurity (ROP). In mice, IGF-I is a prerequisite for normal retinal development. We further explored the link between IGF-I and oxygen-induced retinopathy (OIR). To assess the role of endogenous IGF-I, pups were redistributed into smaller versus larger litters at birth; in one subgroup, we measured body weight and circulating IGF-I; in another, we applied hyperoxia and assessed retinal neovascularization (NV). To screen for the potential role of exogenous IGF-I, we administered a single bolus of rhIGF-I on postnatal day (P) 4 to pups in normal litters, and applied hyperoxia; body weight and IGF-I were measured; maturation and NV were assessed. Neonatal mice in larger litters had a lower body weight than mice in smaller litters; they had lower levels of circulating IGF-I, and developed more OIR (p = 0.002). Mice who had received rhIGF-I, weighed more and had higher endogenous IGF-I levels; they matured faster and developed less OIR (p = 0.00001). These findings in mice are the first to support the notion that higher availability of endogenous or exogenous IGF-I reduces OIR risk, and thus sharpen the perspective that ROP may be preventable by briefly up-regulating IGF-I after birth.
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页码:307 / 310
页数:3
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[41]   Aging impairs IGF-I receptor activation and induces skeletal resistance to IGF-I [J].
Cao, Jay J. ;
Kurimoto, Pamela ;
Boudignon, Benjamin ;
Rosen, Clifford ;
Lima, Florence ;
Halloran, Bernard P. .
JOURNAL OF BONE AND MINERAL RESEARCH, 2007, 22 (08) :1271-1279
[42]   IMMUNOCYTOCHEMICAL EVIDENCE FOR THE PRESENCE OF IGF-I AND IGF-I RECEPTORS IN HUMAN ENDOCRINE TUMORS [J].
NILSSON, O ;
WANGBERG, B ;
WIGANDER, A ;
AHLMAN, H .
ACTA PHYSIOLOGICA SCANDINAVICA, 1992, 144 (02) :211-212
[43]   Resection-induced colonic adaptation is augmented by IGF-I and associated with upregulation of colonic IGF-I mRNA [J].
Mantell, MP ;
Ziegler, TR ;
Adamson, WT ;
Roth, JA ;
Zhang, W ;
Frankel, W ;
Bain, A ;
Chow, JC ;
Smith, RJ ;
Rombeau, JL .
AMERICAN JOURNAL OF PHYSIOLOGY-GASTROINTESTINAL AND LIVER PHYSIOLOGY, 1995, 269 (06) :G974-G980
[44]   BIOCHEMISTRY OF IGF-I AND IGF-II [J].
JIRACEK, J .
CHEMICKE LISTY, 1993, 87 (07) :493-503
[45]   HETEROGENEITY OF IGF-I, IGF-I RECEPTOR AND IGF BINDING-PROTEIN GENE-EXPRESSION IN KIDNEY [J].
RABKIN, R ;
BRODY, M ;
LU, L ;
CHAN, C ;
GILLETT, NA .
JOURNAL OF THE AMERICAN SOCIETY OF NEPHROLOGY, 1994, 5 (03) :793-793
[46]   IGF-I as an emerging target [J].
Yee, D. .
EJC SUPPLEMENTS, 2008, 6 (12) :3-3
[47]   EXPRESSION OF IGF-I IN LIVER [J].
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ILAN, J .
MOLECULAR AND CELLULAR BIOLOGY OF INSULIN-LIKE GROWTH FACTORS AND THEIR RECEPTORS, 1989, :129-139
[48]   Overview of the IGF-I system [J].
Cohen, P .
HORMONE RESEARCH, 2006, 65 :3-8
[49]   IGF-I and neonatal morbidity in very preterm newbons [J].
de Jong, B ;
Naulaers, G ;
Allegaert, K ;
Cossey, V ;
Devlieger, H ;
Vanhole, C .
PEDIATRIC RESEARCH, 2003, 54 (04) :562-562
[50]   IGF-I and diabetes in adolescence [J].
Dunger, DB ;
Acerini, CL .
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