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Rho-Associated Protein Kinase Inhibitor Treatment Promotes Proliferation and Phagocytosis in Trabecular Meshwork Cells

机译:RHO相关的蛋白激酶抑制剂治疗促进了小梁网状细胞中的增殖和吞噬作用

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Purpose Continuous reductions in trabecular meshwork (TM) cellularity inhibit aqueous humor (AH) outflow, which is the main cause of primary open-angle glaucoma. Rho-associated protein kinase inhibitor (ROCKi) targets the TM to reduce intraocular pressure (IOP) and increase AH outflow facility. However, the underlying mechanisms are not entirely clear. Here, we aimed to investigate the effect of a ROCKi (Y-27632) on TM cell proliferation and phagocytosis. Methods Immortalized human TM (iHTM) cells, glaucomatous TM (GTM _(3)) cells, and primary human TM (pTM) cells were cultured and identified. The effects of various concentrations of Y-27632 on F-actin cytoskeleton were assessed using immunofluorescence. Cell proliferation effects were evaluated using a cell counting kit-8 (CCK8), cell counting, and Ki67 immunostaining. Cell phagocytosis was evaluated using immunofluorescence and flow cytometry in immortalized TM cells. C57BL/6J and Tg- MYOC ~(Y437H) mice were used to investigate the proliferative effects of Y-27632 on TM cells in vivo . The effect of Y-27632 on IOP was monitored for 2 weeks, and the outflow facility was detected 2 weeks after IOP measurement. TM cells in mice were counted using immunohistochemistry. Results Y-27632 (100 μM) significantly promoted the proliferation of both immortal TM cells and pTM cells. In GTM _(3) cells, phagocytosis was significantly greater in the Y-27632 group than in the control group, nearly reaching the level of phagocytosis in iHTM, as determined using immunofluorescence and flow cytometry. In Tg- MYOC ~(Y437H) mice, treatment with Y-27632 significantly decreased IOP and increased outflow facility, which greatly influenced the long-term IOP-lowering effect. The number of TM cells in Tg- MYOC ~(Y437H) mice was significantly improved after Y-27632 administration. Conclusion Y-27632 promoted cell proliferation and phagocytosis of TM cells, and its proliferative effect was demonstrated in a transgenic mouse model. These results revealed a new IOP-lowering mechanism of Y-27632 through effects on TM cells, suggesting the potential for a correlation between TM cellularity and long-term recovery of IOP.
机译:目的连续减少小梁网状(TM)细胞性抑制含水幽默(AH)流出,这是主要开口角膜胶质瘤的主要原因。 RHO相关的蛋白激酶抑制剂(ROCKI)靶向TM以减少眼内压(IOP)并增加αH流出设施。但是,潜在机制并不完全清楚。在这里,我们的目的是探讨Rocki(Y-27632)对TM细胞增殖和吞噬作用的影响。方法使人TM(IHTM)细胞永生化(IHTM)细胞,培养和鉴定初级人体TM(GTM _(3))细胞和原发性人TM(PTM)细胞。使用免疫荧光评估各种浓度Y-27632对F-actin细胞骨架的影响。使用细胞计数试剂盒-8(CCK8),细胞计数和Ki67免疫染色来评估细胞增殖效应。使用免疫荧光和流式细胞术在永生化的TM细胞中评估细胞吞噬作用。 C57BL / 6J和TG-METOC〜(Y437H)小鼠用于研究y-27632在体内TM细胞上的增殖作用。监测Y-27632对IOP的影响2周,在IOP测量后2周检测到流出设施。使用免疫组化计数小鼠中的TM细胞。结果Y-27632(100μm)显着促进了不朽的TM细胞和PTM细胞的增殖。在GTM _(3)细胞中,Y-27632组吞噬作用显着大于对照组,几乎达到使用免疫荧光和流式细胞术测定的IHTM中的吞噬作用水平。在TG-myoc〜(Y437H)小鼠中,用y-27632治疗显着降低了IOP和越来越多的流出设施,大大影响了降低IOP降低效果。在Y-27632施用后,TG-METOC〜(Y437H)小鼠中的TM细胞数显着改善。结论Y-27632促进TM细胞的细胞增殖和吞噬作用,在转基因小鼠模型中证明了其增殖作用。这些结果揭示了y-27632通过对Tm细胞的影响的新的IOP降低机制,表明TM细胞性与IOP的长期回收之间的相关性。

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