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Updated: Aug 29, 2026

Modeling Cataract Surgery in Mice
Published on: December 1, 2023
Histone methyltransferase inhibitors prevent lens opacity in diabetic cataract rats
Haoran Chai1, Yaoyao Guo2, Rui Luo3
1Department of ophthalmology, Nanchang University Queen Mary School, No. 1299, Xuefu Avenue, Honggutan District, Nanchang City, Jiangxi Province 330031, China.
Objective:
To investigate the effect and mechanism of histone methylation on galactose-induced lens opacity.
Methods:
Lenses from SD rats were cultured in 30 mM galactose medium to induce opacification, with intervention using four histone methyltransferase inhibitors (GSK126, Pinometostat, GSK3326595, BIX-01294). Lens opacity, structural changes (HE staining/transmission electron microscopy (TEM)), differentially expressed genes (high-throughput sequencing), and validated targets (qPCR) were analyzed. A diabetic cataract (DC) rat model was established via intraperitoneal galactose injection, with BIX-01294 intervention. Ocular lesions (fundus/slit-lamp examination), lens structure (HE staining), AR/TNF-α levels (ELISA), and Pikfyve mRNA expression (qPCR) were assessed. Ex vivo, YM201636 (a Pikfyve inhibitor) was used to intervene in galactose-induced opacity, with opacity observation and structural evaluation (HE staining/TEM).
Results:
The four histone methyltransferase inhibitors ameliorated lens opacity to varying degrees. HE staining and TEM results showed that histone methyltransferase inhibitors alleviated lens injury, with BIX-01294 exhibiting the most pronounced effect. High-throughput sequencing of the model group and the BIX-01294 intervention group revealed that after BIX-01294 treatment, 113 genes were upregulated and 60 genes were downregulated. qPCR validation showed that mRNA expression levels of Pth1r, Fam111a, Pikfyve, and H19 were significantly downregulated after BIX-01294 intervention. Furthermore, BIX-01294 intervention reduced lens injury, decreased AR activity and TNF-α content, and lowered Pikfyve mRNA expression in DC rats. Intervention with YM201636 (a Pikfyve inhibitor) alleviated galactose-induced lens opacity and improved lens damage in vitro.
Conclusion:
Histone methyltransferases are involved in lens opacity in DC rats by regulating Pikfyve gene expression.
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