Related Experiment Video
Updated: Jan 19, 2026

Author Spotlight: Understanding Retinal Vessel Resilience and Disease Progression
Published on: January 12, 2024
Glycyrrhizin protects IGFBP-3 knockout mice from retinal damage
Li Liu1, Youde Jiang1, Jena J Steinle1
1Department of Ophthalmology, Visual, and Anatomical Sciences, Wayne State University School of Medicine, Detroit, MI 48201, USA.
Abstract:
We previously reported that insulin-like growth factor binding protein 3 (IGFBP-3) knockout (KO) mice have neuronal and vascular damage to the retina. We also reported that glycyrrhizin, a high mobility growth factor binding protein 1 (HMGB1) inhibitor, is protective to the diabetic retina. In this study, we investigated whether glycyrrhizin could reduce neuronal and vascular damage in the IGFBP-3 KO mouse retina. We used measurements of retinal thickness, cell number in the ganglion cell layer, degenerate capillaries, reactive oxygen species (ROS) and protein levels of HMGB1, tumor necrosis factor alpha (TNFα), interleukin-1-beta (IL-1β) and sirtuin 1 (SIRT1) to determine whether glycyrrhizin could protect the retina. Data show that glycyrrhizin in the drinking water was effective in reducing neuronal damage at 2 months and vascular damage at 6 months. Glycyrrhizin reduced ROS levels at 6 months, and reduced levels of HMGB1, TNFα, and IL-1β at both 2 and 6 months. Taken together, the data suggest that glycyrrhizin is protective to the retina of IGFBP-3 KO mice through anti-inflammatory mechanisms.
Related Concept Videos
04:36An Assay to Detect Protection of the Retinal Vasculature from Diabetes-Related Death in Mice
09:31A Novel Light Damage Paradigm for Use in Retinal Regeneration Studies in Adult Zebrafish
07:29Dosage-Adjusted Resistance Training in Mice with a Reduced Risk of Muscle Damage
04:25A Mice Model of Chlorhexidine Gluconate-Induced Peritoneal Damage
07:58Establishment of a Surgically-induced Model in Mice to Investigate the Protective Role of Progranulin in Osteoarthritis
10:16Intravital Video Microscopy Measurements of Retinal Blood Flow in Mice

