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Updated: May 24, 2026

Oxygen-Induced Retinopathy Model for Ischemic Retinal Diseases in Rodents
Published on: September 16, 2020
Topotecan hydrochloride effects on retinal vessels in newborn rats
N Pescosolido1, A Pascarella, G Scarsella
1Department of Cardiovascular, Respiratory, Nephrology and Geriatric Sciences, Sapienza University of Rome, Rome, Italy.
Abstract:
A physiological system, i.e. rodent retina during vessel formation and hierarchical organization, was utilised for assaying antiangiogenic properties of Topotecan, a topoisomerase I inhibitor, capable of inhibiting tumoral growth in animal models of retinoblastoma. In particular we analysed possible differences in effectiveness and side effects among different drug dosages and ways of administration. In the present research only qualitative analyses were undertaken. After preliminary experiments, in which suckling animals subcutaneously treated with Topotecan dosages comprised between 9 and 3 mg/kg underwent high lethality and extremely severe systemic damages, 7 day-old rats were subcutaneously, intravenously or peribulbary injected with a single dose of 1 mg/kg; retinal vessels were visualized in retinal fluorangio-graphies taken 1 and 2 weeks after treatment. The most important and frequent alterations were found to affect radial vessels, which showed non-perfused and/or regionally mislocated segments, together with abnormal branching and enlargements in retinal periphery; persistence of capillary-free periarteriolar regions, non-vascularised regions and spots of extravascular FITC were also detected. Despite the high individual variability the alterations were substantially similar among the different ways of drug administration, while they appeared milder in 21 day-old rats, with respect to younger ones. The extensive vascular remodelling found after Topotecan administration, besides demonstrating the antiangiogenic properties of this chemioterapic drug, confirms the rodent retina as a highly valuable model system for studying angiogenesis modulation.
Insights
Topotecan, a chemotherapy drug, exhibits antiangiogenic properties by disrupting retinal vessel formation in rats. This study confirms the rodent retina
Area of Science:
- Ophthalmology
- Pharmacology
- Developmental Biology
Background:
- Topotecan is a topoisomerase I inhibitor used in cancer therapy.
- Retinoblastoma is a pediatric eye cancer.
- Angiogenesis is crucial for tumor growth and is a target for cancer therapy.
Purpose of the Study:
- To evaluate the antiangiogenic effects of Topotecan in a rodent retina model.
- To assess the impact of different dosages and administration routes of Topotecan.
- To investigate potential differences in effectiveness and side effects.
Main Methods:
- Rodent retina used as a physiological system to study vessel formation.
- Topotecan administered via subcutaneous, intravenous, or peribulbar injection at 1 mg/kg.
- Retinal vasculature visualized using fluorescein angiography at 1 and 2 weeks post-treatment.
Main Results:
- Topotecan induced significant alterations in retinal vasculature, including radial vessel damage, abnormal branching, and non-perfused segments.
- Similar vascular changes were observed across different administration routes.
- Younger rats (7-day-old) showed more pronounced effects than older rats (21-day-old).
Conclusions:
- Topotecan demonstrates significant antiangiogenic properties in the rodent retina.
- The rodent retina serves as a valuable model for studying angiogenesis modulation.
- Drug administration route had less impact than age on observed vascular alterations.

