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Updated: Dec 7, 2025

Monitoring Dynamic Growth of Retinal Vessels in Oxygen-Induced Retinopathy Mouse Model
Published on: April 2, 2021
IGF1, serum glucose, and retinopathy of prematurity in extremely preterm infants
Bertan Cakir1, William Hellström2, Yohei Tomita1
1Department of Ophthalmology, Boston Children's Hospital, Harvard Medical School, Boston, Massachusetts, USA.
Insights
High blood sugar and insulin issues in premature infants are linked to lower IGF1 levels and worse retinopathy of prematurity (ROP). IGF1 therapy may help prevent ROP by improving retinal healing and reducing abnormal blood vessel growth.
Area of Science:
- Neonatal Medicine
- Ophthalmology
- Endocrinology
Background:
- Hyperglycemia, insulin insensitivity, and low IGF1 are risk factors for retinopathy of prematurity (ROP) in extremely preterm infants.
- The complex interactions between these factors and ROP development require further investigation.
Purpose of the Study:
- To investigate the association between early postnatal hyperglycemia, insulin sensitivity, IGF1 levels, and ROP severity in extremely preterm infants.
- To explore the mechanistic role of insulin signaling and IGF1 in a mouse model of hyperglycemia-induced retinopathy.
Main Methods:
- Serum glucose, parenteral glucose intake, and IGF1 levels were monitored in 117 extremely preterm infants.
- A mouse model with oxygen-induced retinopathy was used to study the effects of hyperglycemia/hypoinsulinemia and recombinant human IGF1 (rh-IGF1) treatment on retinal neovascularization and IGF1 signaling.
Main Results:
- Higher infant plasma glucose levels correlated with increased parenteral glucose intake and were associated with lower IGF1 levels at day 28.
- ROP was more prevalent and severe in infants with higher glucose levels.
- In mice, hyperglycemia/hypoinsulinemia reduced liver IGF1 expression and worsened retinopathy, while rh-IGF1 treatment improved vascular regrowth and reduced neovascularization.
Conclusions:
- Early postnatal hyperglycemia and insulin insensitivity in extremely preterm infants are linked to lower IGF1 and increased ROP severity.
- IGF1 supplementation shows potential as a therapeutic strategy to improve retinal vascularization and prevent severe ROP.
Abstract:
BACKGROUNDHyperglycemia, insulin insensitivity, and low IGF1 levels in extremely preterm infants are associated with an increased risk of retinopathy of prematurity (ROP), but the interactions are incompletely understood.METHODSIn 117 extremely preterm infants, serum glucose levels and parenteral glucose intake were recoded daily in the first postnatal week. Serum IGF1 levels were measured weekly. Mice with oxygen-induced retinopathy alone versus oxygen-induced retinopathy plus streptozotocin-induced hyperglycemia/hypoinsulinemia were assessed for glucose, insulin, IGF1, IGFBP1, and IGFBP3 in blood and liver. Recombinant human IGF1 was injected to assess the effect on glucose and retinopathy.RESULTSThe highest mean plasma glucose tertile of infants positively correlated with parenteral glucose intake [r(39) = 0.67, P < 0.0001]. IGF1 plasma levels were lower in the high tertile compared with those in low and intermediate tertiles at day 28 (P = 0.038 and P = 0.03). In high versus lower glucose tertiles, ROP was more prevalent (34 of 39 versus 19 of 39) and more severe (ROP stage 3 or higher; 71% versus 32%). In oxygen-induced retinopathy, hyperglycemia/hypoinsulinemia decreased liver IGF1 expression (P < 0.0001); rh-IGF1 treatment improved normal vascular regrowth (P = 0.027) and reduced neovascularization (P < 0.0001).CONCLUSIONIn extremely preterm infants, high early postnatal plasma glucose levels and signs of insulin insensitivity were associated with lower IGF1 levels and increased ROP severity. In a hyperglycemia retinopathy mouse model, decreased insulin signaling suppressed liver IGF1 production, lowered serum IGF1 levels, and increased neovascularization. IGF1 supplementation improved retinal revascularization and decreased pathological neovascularization. The data support IGF1 as a potential treatment for prevention of ROP.TRIAL REGISTRATIONClinicalTrials.gov NCT02760472 (Donna Mega).FUNDINGThis study has been supported by the Swedish Medical Research Council (14940, 4732, 20144-01-3, and 21144-01-3), a Swedish government grant (ALFGB2770), Lund medical faculty grants (ALFL, 11615 and 11601), the Skåne Council Foundation for Research and Development, the Linnéa and Josef Carlsson Foundation, the Knut and Alice Wallenberg Foundation, the NIH/National Eye Institute (EY022275, EY017017, EY017017-13S1, and P01 HD18655), European Commission FP7 project 305485 PREVENT-ROP, Deutsche Forschungsgemeinschaft (CA-1940/1-1), and Stiftelsen De Blindas Vänner.
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