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Published on: June 13, 2013
The Serine Protease HTRA-1 Is a Biomarker for ROP and Mediates Retinal Neovascularization
Leah A Owen1, Kinsey Shirer2, Samuel A Collazo3
1Department of Ophthalmology and Visual Sciences, University of Utah, Salt Lake City, UT, United States.
Insights
Elevated high-temperature requirement-A serine peptidase-1 (HTRA-1) in preterm infants is linked to retinopathy of prematurity (ROP) risk. This protein may explain how preeclampsia protects against ROP, offering a potential prevention target.
Area of Science:
- Ophthalmology
- Neonatology
- Vascular Biology
Background:
- Retinopathy of prematurity (ROP) is a leading cause of blindness in preterm infants.
- Current treatments for ROP are limited, and prevention strategies are lacking.
- Maternal preeclampsia offers natural protection against ROP, but the underlying mechanisms are poorly understood.
Purpose of the Study:
- To investigate the role of angiogenesis mediators in preeclampsia-mediated protection against ROP.
- To identify specific proteins associated with ROP risk and preeclampsia status.
Main Methods:
- Analysis of peripheral blood protein expression (HTRA-1, IGF-1, TGFβ-1, VEGF-A) in maternal-infant pairs.
- Validation in a larger cohort of preterm infants and functional studies in a murine model of ROP.
- RT-PCR and transgenic mouse models to assess HtrA-1 expression and function in retinopathy.
Main Results:
- Elevated high-temperature requirement-A serine peptidase-1 (HTRA-1) was associated with increased ROP risk and absence of preeclampsia.
- A dose-response relationship was observed between infant HTRA-1 levels and ROP risk.
- HtrA-1 expression was upregulated in the retina during ROP, and its overexpression worsened disease severity in mice.
Conclusions:
- HTRA-1 may be a key mediator in preeclampsia-associated ROP protection.
- HTRA-1 represents a potential therapeutic target for preventing ROP in preterm infants.
Abstract:
Retinopathy of prematurity (ROP) is a blinding aberrancy of retinal vascular maturation in preterm infants. Despite delayed onset after preterm birth, representing a window for therapeutic intervention, we cannot prevent or cure ROP blindness. A natural form of ROP protection exists in the setting of early-onset maternal preeclampsia, though is not well characterized. As ischemia is a central feature in both ROP and preeclampsia, we hypothesized that angiogenesis mediators may underlie this protection. To test our hypothesis we analyzed peripheral blood expression of candidate proteins with suggested roles in preeclamptic and ROP pathophysiology and with a proposed angiogenesis function (HTRA-1, IGF-1, TGFβ-1, and VEGF-A). Analysis in a discovery cohort of 40 maternal-infant pairs found that elevated HTRA-1 (high-temperature requirement-A serine peptidase-1) was significantly associated with increased risk of ROP and the absence of preeclampsia, thus fitting a model of preeclampsia-mediated ROP protection. We validated these findings and further demonstrated a dose-response between systemic infant HTRA-1 expression and risk for ROP development in a larger and more diverse validation cohort consisting of preterm infants recruited from two institutions. Functional analysis in the oxygen-induced retinopathy (OIR) murine model of ROP supported our systemic human findings at the local tissue level, demonstrating that HtrA-1 expression is elevated in both the neurosensory retina and retinal pigment epithelium by RT-PCR in the ROP disease state. Finally, transgenic mice over-expressing HtrA-1 demonstrate greater ROP disease severity in this model. Thus, HTRA-1 may underlie ROP protection in preeclampsia and represent an avenue for disease prevention, which does not currently exist.
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