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Updated: Dec 22, 2025

Müller Glia Cell Activation in a Laser-induced Retinal Degeneration and Regeneration Model in Zebrafish
Published on: October 27, 2017
Apigenin Regulates Activation of Microglia and Counteracts Retinal Degeneration
Onuma Chumsakul1, Kanaho Wakayama2, Asano Tsuhako2
1Pharmacological Research Group, Basic Research Development Division, Rohto Pharmaceutical Co., Ltd., Kizugawa, Kyoto, Japan.
Abstract:
Photoreceptor degeneration is a major cause of blindness. Microglia are known to play key roles in the pathogenesis and progression of neural degeneration. We examined the possible use of apigenin, which is a naturally occurring flavonoid, for the treatment of photoreceptor degeneration through regulation of microglial activities. As in vitro analyses, BV2 and MG5 mouse microglia cell lines were stimulated in the presence or absence of apigenin, and their activation profile was examined. In vivo study was done using rd1 photoreceptor degeneration model, and apigenin was administered by intravitreal injection, and pathological feature was examined. Cell survival was not affected by apigenin in either BV2 and MG5. Apigenin suppressed lipopolysaccharide (LPS)-induced chemokine production in both BV2 and MG5 cells, but phagocytosis was suppressed in MG5 cells but not in BV2 cells. Apigenin inhibited LPS-induced M1 activation but could not drive microglia toward the M2 phenotype. Apigenin suppressed the expression of miR-155 in a dose-dependent manner. Furthermore, the Ets protein level was suppressed by treatment of BV2 cells with apigenin. When rd1 mice were treated with apigenin by intravitreal injection, the expression of inflammatory chemokines in the retina was reduced, and activation of microglia and Müller glia was suppressed. Furthermore, the thickness of the outer nuclear layer of the retina of rd1 mice was thicker in apigenin-treated retinas. Taken together, local administration of apigenin to the retina is a potential therapeutic treatment for photoreceptor degeneration, which involves downregulation of microglia in the retina when photoreceptors are damaged.
Insights
Apigenin, a natural flavonoid, shows potential for treating photoreceptor degeneration by regulating microglia. This treatment reduced retinal inflammation and preserved photoreceptor structure in a mouse model.
Area of Science:
- Neuroscience
- Ophthalmology
- Immunology
Background:
- Photoreceptor degeneration is a leading cause of blindness.
- Microglia play a critical role in the progression of neural degeneration.
- Apigenin, a natural flavonoid, is investigated for its therapeutic potential.
Purpose of the Study:
- To evaluate apigenin's efficacy in treating photoreceptor degeneration.
- To investigate apigenin's mechanism of action via microglial regulation.
Main Methods:
- In vitro studies using BV2 and MG5 mouse microglia cell lines stimulated with apigenin and lipopolysaccharide (LPS).
- In vivo study using the rd1 mouse model of photoreceptor degeneration with intravitreal apigenin injection.
- Analysis of microglial activation, chemokine production, phagocytosis, miR-155 expression, and retinal pathology.
Main Results:
- Apigenin suppressed LPS-induced chemokine production and M1 microglial activation in vitro.
- Apigenin reduced retinal inflammatory chemokines and suppressed microglia and Müller glia activation in vivo.
- Intravitreal apigenin treatment preserved the outer nuclear layer thickness in rd1 mice.
Conclusions:
- Local administration of apigenin to the retina is a promising therapeutic strategy for photoreceptor degeneration.
- Apigenin exerts therapeutic effects by downregulating microglial activation in the damaged retina.

