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Salvianolic acid B inhibits ototoxic drug–induced ototoxicity by suppression of the mitochondrial apoptosis pathway

机译:Salvianolic acid B通过抑制线粒体细胞凋亡途径抑制耳毒性药物诱导的耳毒性

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It has been claimed that salvianolic acid B (Sal B), a natural bioactive antioxidant, exerts protective effects in various types of cells. This study aims to evaluate the antioxidant and anti‐apoptosis effects of Sal B in a cultured HEI‐OC1 cell line and in transgenic zebrafish ( Brn3C : EGFP). A CCK‐8 assay, Annexin V Apoptosis Detection Kit, TUNEL and caspase‐3/7 staining, respectively, examined apoptosis and cell viability. The levels of reactive oxygen species (ROS) were evaluated by CellROX and MitoSOX Red staining. JC‐1 staining was employed to detect the mitochondrial membrane potential (ΔΨm). Western blotting was used to assess expressions of Bax and Bcl‐2. The expression pattern of p‐PI3K and p‐Akt was determined by immunofluorescent staining. We found that Sal B protected against neomycin‐ and cisplatin‐induced apoptotic features, enhanced cell viability and accompanied with decreased caspase‐3 activity in the HEI‐OC1 cells.?Supplementary experiments determined that Sal B reduced ROS production (increased ΔΨm), promoted Bcl‐2 expression and down‐regulated the expression of Bax, as well as activated PI3K/AKT signalling pathways in neomycin‐ and cisplatin‐injured HEI‐OC1 cells. Moreover, Sal B markedly decreased the TUNEL signal and protected against neomycin‐ and cisplatin‐induced neuromast HC loss in the transgenic zebrafish. These results unravel a novel role for Sal B as an otoprotective agent against ototoxic drug–induced HC apoptosis, offering a potential use in the treatment of hearing loss.
机译:已声称,Salvianolic酸B(SAL B),天然生物活性抗氧化剂,在各种类型的细胞中发挥保护作用。本研究旨在评估SAL B在培养的HEI-OC1细胞系和转基因斑马鱼(BRN3C:EGFP)中的抗氧化剂和抗凋亡作用。 CCK-8测定,附睾Ⅴ凋亡检测试剂盒,TUNEL和CASPASE-3/7染色,检查凋亡和细胞活力。通过Cellrox和Mitosox红染色评估反应性氧物质(ROS)的水平。使用JC-1染色来检测线粒体膜电位(Δψm)。用于评估Bax和Bcl-2的表达的蛋白质印迹。通过免疫荧光染色测定p-pi3k和p-akt的表达模式。我们发现SAL B免受新霉素和顺铂诱导的凋亡特征,增强的细胞活力,并伴随着Hei-OC1细胞中的Caspase-3活性降低。促进Sal B减少了Sal B减少了ROS生产(Δψm增加) Bcl-2表达和下调群体的表达,以及在新霉素和顺铂损伤Hei-OC1细胞中的活性PI3K / AKT信号传导途径。此外,Sal B显着降低了TUNEL信号,并防止了转基因斑马鱼中的新霉素和顺铂诱导的神经孢子HC损失。这些结果对Sal B作为卵毒性药物诱导的HC细胞凋亡的耳保护剂解开了一种新的作用,在治疗听力损失时提供潜在使用。

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